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Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001/*
2 * Copyright (C) 2016 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 "CameraProviderManager"
18#define ATRACE_TAG ATRACE_TAG_CAMERA
19//#define LOG_NDEBUG 0
20
21#include "CameraProviderManager.h"
22
Shuzhen Wangf9d2c022018-08-21 12:07:35 -070023#include <android/hardware/camera/device/3.5/ICameraDevice.h>
24
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -080025#include <algorithm>
Yin-Chia Yeh65405092017-01-13 15:42:28 -080026#include <chrono>
Emilian Peevcbf174b2019-01-25 14:38:59 -080027#include "common/DepthPhotoProcessor.h"
28#include <dlfcn.h>
Peter Kalauskasa29c1352018-10-10 12:05:42 -070029#include <future>
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -070030#include <inttypes.h>
Shuzhen Wangf9d2c022018-08-21 12:07:35 -070031#include <hardware/camera_common.h>
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080032#include <hidl/ServiceManagement.h>
Emilian Peev71c73a22017-03-21 16:35:51 +000033#include <functional>
34#include <camera_metadata_hidden.h>
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -080035#include <android-base/parseint.h>
Peter Kalauskasa29c1352018-10-10 12:05:42 -070036#include <android-base/logging.h>
37#include <cutils/properties.h>
38#include <hwbinder/IPCThreadState.h>
39#include <utils/Trace.h>
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080040
Shuzhen Wang68ac7ad2019-01-30 14:03:28 -080041#include "api2/HeicCompositeStream.h"
42
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080043namespace android {
44
45using namespace ::android::hardware::camera;
46using namespace ::android::hardware::camera::common::V1_0;
Peter Kalauskasa29c1352018-10-10 12:05:42 -070047using std::literals::chrono_literals::operator""s;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080048
49namespace {
50// Hardcoded name for the passthrough HAL implementation, since it can't be discovered via the
51// service manager
52const std::string kLegacyProviderName("legacy/0");
Yin-Chia Yehd78041a2018-01-20 13:45:38 -080053const std::string kExternalProviderName("external/0");
Peter Kalauskasa29c1352018-10-10 12:05:42 -070054const bool kEnableLazyHal(property_get_bool("ro.camera.enableLazyHal", false));
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080055} // anonymous namespace
56
Emilian Peev538c90e2018-12-17 18:03:19 +000057const float CameraProviderManager::kDepthARTolerance = .1f;
58
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080059CameraProviderManager::HardwareServiceInteractionProxy
60CameraProviderManager::sHardwareServiceInteractionProxy{};
61
62CameraProviderManager::~CameraProviderManager() {
63}
64
65status_t CameraProviderManager::initialize(wp<CameraProviderManager::StatusListener> listener,
66 ServiceInteractionProxy* proxy) {
Yin-Chia Yeh4c5b1c72017-01-31 13:20:56 -080067 std::lock_guard<std::mutex> lock(mInterfaceMutex);
68 if (proxy == nullptr) {
69 ALOGE("%s: No valid service interaction proxy provided", __FUNCTION__);
70 return BAD_VALUE;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080071 }
Yin-Chia Yeh4c5b1c72017-01-31 13:20:56 -080072 mListener = listener;
73 mServiceProxy = proxy;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080074
Yin-Chia Yeh4c5b1c72017-01-31 13:20:56 -080075 // Registering will trigger notifications for all already-known providers
76 bool success = mServiceProxy->registerForNotifications(
77 /* instance name, empty means no filter */ "",
78 this);
79 if (!success) {
80 ALOGE("%s: Unable to register with hardware service manager for notifications "
81 "about camera providers", __FUNCTION__);
82 return INVALID_OPERATION;
Yin-Chia Yeh65405092017-01-13 15:42:28 -080083 }
Emilian Peev5d7e5152017-02-22 15:37:48 +000084
Eino-Ville Talvala65665362017-02-24 13:07:56 -080085 // See if there's a passthrough HAL, but let's not complain if there's not
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -070086 addProviderLocked(kLegacyProviderName, /*expected*/ false);
Yin-Chia Yehd78041a2018-01-20 13:45:38 -080087 addProviderLocked(kExternalProviderName, /*expected*/ false);
Eino-Ville Talvala65665362017-02-24 13:07:56 -080088
Peter Kalauskasa29c1352018-10-10 12:05:42 -070089 IPCThreadState::self()->flushCommands();
90
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080091 return OK;
92}
93
94int CameraProviderManager::getCameraCount() const {
95 std::lock_guard<std::mutex> lock(mInterfaceMutex);
96 int count = 0;
97 for (auto& provider : mProviders) {
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -080098 count += provider->mUniqueCameraIds.size();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080099 }
100 return count;
101}
102
103std::vector<std::string> CameraProviderManager::getCameraDeviceIds() const {
104 std::lock_guard<std::mutex> lock(mInterfaceMutex);
105 std::vector<std::string> deviceIds;
106 for (auto& provider : mProviders) {
Yin-Chia Yehdc3134e2017-03-23 15:26:59 -0700107 for (auto& id : provider->mUniqueCameraIds) {
108 deviceIds.push_back(id);
109 }
110 }
111 return deviceIds;
112}
113
Emilian Peevf53f66e2017-04-11 14:29:43 +0100114std::vector<std::string> CameraProviderManager::getAPI1CompatibleCameraDeviceIds() const {
Yin-Chia Yehdc3134e2017-03-23 15:26:59 -0700115 std::lock_guard<std::mutex> lock(mInterfaceMutex);
116 std::vector<std::string> deviceIds;
117 for (auto& provider : mProviders) {
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700118 std::vector<std::string> providerDeviceIds = provider->mUniqueAPI1CompatibleCameraIds;
119
120 // API1 app doesn't handle logical and physical camera devices well. So
121 // for each [logical, physical1, physical2, ...] id combo, only take the
122 // first id advertised by HAL, and filter out the rest.
123 filterLogicalCameraIdsLocked(providerDeviceIds);
124
125 deviceIds.insert(deviceIds.end(), providerDeviceIds.begin(), providerDeviceIds.end());
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800126 }
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -0800127
128 std::sort(deviceIds.begin(), deviceIds.end(),
129 [](const std::string& a, const std::string& b) -> bool {
130 uint32_t aUint = 0, bUint = 0;
131 bool aIsUint = base::ParseUint(a, &aUint);
132 bool bIsUint = base::ParseUint(b, &bUint);
133
134 // Uint device IDs first
135 if (aIsUint && bIsUint) {
136 return aUint < bUint;
137 } else if (aIsUint) {
138 return true;
139 } else if (bIsUint) {
140 return false;
141 }
142 // Simple string compare if both id are not uint
143 return a < b;
144 });
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800145 return deviceIds;
146}
147
148bool CameraProviderManager::isValidDevice(const std::string &id, uint16_t majorVersion) const {
149 std::lock_guard<std::mutex> lock(mInterfaceMutex);
150 return isValidDeviceLocked(id, majorVersion);
151}
152
153bool CameraProviderManager::isValidDeviceLocked(const std::string &id, uint16_t majorVersion) const {
154 for (auto& provider : mProviders) {
155 for (auto& deviceInfo : provider->mDevices) {
156 if (deviceInfo->mId == id && deviceInfo->mVersion.get_major() == majorVersion) {
157 return true;
158 }
159 }
160 }
161 return false;
162}
163
164bool CameraProviderManager::hasFlashUnit(const std::string &id) const {
165 std::lock_guard<std::mutex> lock(mInterfaceMutex);
166
167 auto deviceInfo = findDeviceInfoLocked(id);
168 if (deviceInfo == nullptr) return false;
169
170 return deviceInfo->hasFlashUnit();
171}
172
173status_t CameraProviderManager::getResourceCost(const std::string &id,
174 CameraResourceCost* cost) const {
175 std::lock_guard<std::mutex> lock(mInterfaceMutex);
176
177 auto deviceInfo = findDeviceInfoLocked(id);
178 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
179
180 *cost = deviceInfo->mResourceCost;
181 return OK;
182}
183
184status_t CameraProviderManager::getCameraInfo(const std::string &id,
185 hardware::CameraInfo* info) const {
186 std::lock_guard<std::mutex> lock(mInterfaceMutex);
187
188 auto deviceInfo = findDeviceInfoLocked(id);
189 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
190
191 return deviceInfo->getCameraInfo(info);
192}
193
Emilian Peev35ae8262018-11-08 13:11:32 +0000194status_t CameraProviderManager::isSessionConfigurationSupported(const std::string& id,
195 const hardware::camera::device::V3_4::StreamConfiguration &configuration,
196 bool *status /*out*/) const {
197 std::lock_guard<std::mutex> lock(mInterfaceMutex);
198
199 auto deviceInfo = findDeviceInfoLocked(id);
200 if (deviceInfo == nullptr) {
201 return NAME_NOT_FOUND;
202 }
203
204 return deviceInfo->isSessionConfigurationSupported(configuration, status);
205}
206
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800207status_t CameraProviderManager::getCameraCharacteristics(const std::string &id,
208 CameraMetadata* characteristics) const {
209 std::lock_guard<std::mutex> lock(mInterfaceMutex);
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700210 return getCameraCharacteristicsLocked(id, characteristics);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800211}
212
213status_t CameraProviderManager::getHighestSupportedVersion(const std::string &id,
214 hardware::hidl_version *v) {
215 std::lock_guard<std::mutex> lock(mInterfaceMutex);
216
217 hardware::hidl_version maxVersion{0,0};
218 bool found = false;
219 for (auto& provider : mProviders) {
220 for (auto& deviceInfo : provider->mDevices) {
221 if (deviceInfo->mId == id) {
222 if (deviceInfo->mVersion > maxVersion) {
223 maxVersion = deviceInfo->mVersion;
224 found = true;
225 }
226 }
227 }
228 }
229 if (!found) {
230 return NAME_NOT_FOUND;
231 }
232 *v = maxVersion;
233 return OK;
234}
235
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700236bool CameraProviderManager::supportSetTorchMode(const std::string &id) const {
Yin-Chia Yehdc3134e2017-03-23 15:26:59 -0700237 std::lock_guard<std::mutex> lock(mInterfaceMutex);
Yin-Chia Yehdc3134e2017-03-23 15:26:59 -0700238 for (auto& provider : mProviders) {
239 auto deviceInfo = findDeviceInfoLocked(id);
240 if (deviceInfo != nullptr) {
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700241 return provider->mSetTorchModeSupported;
Yin-Chia Yehdc3134e2017-03-23 15:26:59 -0700242 }
243 }
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700244 return false;
Yin-Chia Yehdc3134e2017-03-23 15:26:59 -0700245}
246
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800247status_t CameraProviderManager::setTorchMode(const std::string &id, bool enabled) {
248 std::lock_guard<std::mutex> lock(mInterfaceMutex);
249
250 auto deviceInfo = findDeviceInfoLocked(id);
251 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
252
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700253 // Pass the camera ID to start interface so that it will save it to the map of ICameraProviders
254 // that are currently in use.
255 const sp<provider::V2_4::ICameraProvider> interface =
256 deviceInfo->mParentProvider->startProviderInterface();
257 if (interface == nullptr) {
258 return DEAD_OBJECT;
259 }
260 saveRef(DeviceMode::TORCH, deviceInfo->mId, interface);
261
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800262 return deviceInfo->setTorchMode(enabled);
263}
264
Yin-Chia Yeh067428c2017-01-13 15:19:24 -0800265status_t CameraProviderManager::setUpVendorTags() {
Emilian Peev71c73a22017-03-21 16:35:51 +0000266 sp<VendorTagDescriptorCache> tagCache = new VendorTagDescriptorCache();
267
Yin-Chia Yeh067428c2017-01-13 15:19:24 -0800268 for (auto& provider : mProviders) {
Peter Kalauskas1b3c9072018-11-07 12:41:53 -0800269 tagCache->addVendorDescriptor(provider->mProviderTagid, provider->mVendorTagDescriptor);
Yin-Chia Yeh067428c2017-01-13 15:19:24 -0800270 }
Emilian Peev71c73a22017-03-21 16:35:51 +0000271
272 VendorTagDescriptorCache::setAsGlobalVendorTagCache(tagCache);
273
Yin-Chia Yeh067428c2017-01-13 15:19:24 -0800274 return OK;
275}
276
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800277status_t CameraProviderManager::openSession(const std::string &id,
Peter Kalauskasb7bd4382018-11-15 17:19:48 -0800278 const sp<device::V3_2::ICameraDeviceCallback>& callback,
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800279 /*out*/
Peter Kalauskasb7bd4382018-11-15 17:19:48 -0800280 sp<device::V3_2::ICameraDeviceSession> *session) {
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800281
282 std::lock_guard<std::mutex> lock(mInterfaceMutex);
283
284 auto deviceInfo = findDeviceInfoLocked(id,
285 /*minVersion*/ {3,0}, /*maxVersion*/ {4,0});
286 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
287
288 auto *deviceInfo3 = static_cast<ProviderInfo::DeviceInfo3*>(deviceInfo);
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700289 const sp<provider::V2_4::ICameraProvider> provider =
290 deviceInfo->mParentProvider->startProviderInterface();
291 if (provider == nullptr) {
292 return DEAD_OBJECT;
293 }
294 saveRef(DeviceMode::CAMERA, id, provider);
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800295
296 Status status;
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -0700297 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700298 auto interface = deviceInfo3->startDeviceInterface<
299 CameraProviderManager::ProviderInfo::DeviceInfo3::InterfaceT>();
300 if (interface == nullptr) {
301 return DEAD_OBJECT;
302 }
303
304 ret = interface->open(callback, [&status, &session]
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800305 (Status s, const sp<device::V3_2::ICameraDeviceSession>& cameraSession) {
306 status = s;
307 if (status == Status::OK) {
308 *session = cameraSession;
309 }
310 });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -0700311 if (!ret.isOk()) {
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700312 removeRef(DeviceMode::CAMERA, id);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -0700313 ALOGE("%s: Transaction error opening a session for camera device %s: %s",
314 __FUNCTION__, id.c_str(), ret.description().c_str());
315 return DEAD_OBJECT;
316 }
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800317 return mapToStatusT(status);
318}
319
320status_t CameraProviderManager::openSession(const std::string &id,
Peter Kalauskasb7bd4382018-11-15 17:19:48 -0800321 const sp<device::V1_0::ICameraDeviceCallback>& callback,
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800322 /*out*/
Peter Kalauskasb7bd4382018-11-15 17:19:48 -0800323 sp<device::V1_0::ICameraDevice> *session) {
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800324
325 std::lock_guard<std::mutex> lock(mInterfaceMutex);
326
327 auto deviceInfo = findDeviceInfoLocked(id,
328 /*minVersion*/ {1,0}, /*maxVersion*/ {2,0});
329 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
330
331 auto *deviceInfo1 = static_cast<ProviderInfo::DeviceInfo1*>(deviceInfo);
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700332 const sp<provider::V2_4::ICameraProvider> provider =
333 deviceInfo->mParentProvider->startProviderInterface();
334 if (provider == nullptr) {
335 return DEAD_OBJECT;
336 }
337 saveRef(DeviceMode::CAMERA, id, provider);
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800338
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700339 auto interface = deviceInfo1->startDeviceInterface<
340 CameraProviderManager::ProviderInfo::DeviceInfo1::InterfaceT>();
341 if (interface == nullptr) {
342 return DEAD_OBJECT;
343 }
344 hardware::Return<Status> status = interface->open(callback);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -0700345 if (!status.isOk()) {
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700346 removeRef(DeviceMode::CAMERA, id);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -0700347 ALOGE("%s: Transaction error opening a session for camera device %s: %s",
348 __FUNCTION__, id.c_str(), status.description().c_str());
349 return DEAD_OBJECT;
350 }
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800351 if (status == Status::OK) {
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700352 *session = interface;
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800353 }
354 return mapToStatusT(status);
355}
356
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700357void CameraProviderManager::saveRef(DeviceMode usageType, const std::string &cameraId,
358 sp<provider::V2_4::ICameraProvider> provider) {
359 if (!kEnableLazyHal) {
360 return;
361 }
362 ALOGI("Saving camera provider %s for camera device %s", provider->descriptor, cameraId.c_str());
363 std::lock_guard<std::mutex> lock(mProviderInterfaceMapLock);
364 std::unordered_map<std::string, sp<provider::V2_4::ICameraProvider>> *primaryMap, *alternateMap;
365 if (usageType == DeviceMode::TORCH) {
366 primaryMap = &mTorchProviderByCameraId;
367 alternateMap = &mCameraProviderByCameraId;
368 } else {
369 primaryMap = &mCameraProviderByCameraId;
370 alternateMap = &mTorchProviderByCameraId;
371 }
372 auto id = cameraId.c_str();
373 (*primaryMap)[id] = provider;
374 auto search = alternateMap->find(id);
375 if (search != alternateMap->end()) {
376 ALOGW("%s: Camera device %s is using both torch mode and camera mode simultaneously. "
377 "That should not be possible", __FUNCTION__, id);
378 }
379 ALOGV("%s: Camera device %s connected", __FUNCTION__, id);
380}
381
382void CameraProviderManager::removeRef(DeviceMode usageType, const std::string &cameraId) {
383 if (!kEnableLazyHal) {
384 return;
385 }
386 ALOGI("Removing camera device %s", cameraId.c_str());
387 std::unordered_map<std::string, sp<provider::V2_4::ICameraProvider>> *providerMap;
388 if (usageType == DeviceMode::TORCH) {
389 providerMap = &mTorchProviderByCameraId;
390 } else {
391 providerMap = &mCameraProviderByCameraId;
392 }
393 std::lock_guard<std::mutex> lock(mProviderInterfaceMapLock);
394 auto search = providerMap->find(cameraId.c_str());
395 if (search != providerMap->end()) {
Peter Kalauskas26af1a52019-01-25 06:57:01 -0800396 // Drop the reference to this ICameraProvider. This is safe to do immediately (without an
397 // added delay) because hwservicemanager guarantees to hold the reference for at least five
398 // more seconds. We depend on this behavior so that if the provider is unreferenced and
399 // then referenced again quickly, we do not let the HAL exit and then need to immediately
400 // restart it. An example when this could happen is switching from a front-facing to a
401 // rear-facing camera. If the HAL were to exit during the camera switch, the camera could
402 // appear janky to the user.
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700403 providerMap->erase(cameraId.c_str());
Peter Kalauskas26af1a52019-01-25 06:57:01 -0800404 IPCThreadState::self()->flushCommands();
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700405 } else {
406 ALOGE("%s: Asked to remove reference for camera %s, but no reference to it was found. This "
407 "could mean removeRef was called twice for the same camera ID.", __FUNCTION__,
408 cameraId.c_str());
409 }
410}
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800411
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800412hardware::Return<void> CameraProviderManager::onRegistration(
413 const hardware::hidl_string& /*fqName*/,
414 const hardware::hidl_string& name,
415 bool /*preexisting*/) {
Shuzhen Wang6ba8eb22018-07-08 13:10:44 -0700416 std::lock_guard<std::mutex> providerLock(mProviderLifecycleLock);
Emilian Peevaee727d2017-05-04 16:35:48 +0100417 {
418 std::lock_guard<std::mutex> lock(mInterfaceMutex);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800419
Emilian Peevaee727d2017-05-04 16:35:48 +0100420 addProviderLocked(name);
421 }
422
423 sp<StatusListener> listener = getStatusListener();
424 if (nullptr != listener.get()) {
425 listener->onNewProviderRegistered();
426 }
427
Peter Kalauskasa29c1352018-10-10 12:05:42 -0700428 IPCThreadState::self()->flushCommands();
429
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800430 return hardware::Return<void>();
431}
432
433status_t CameraProviderManager::dump(int fd, const Vector<String16>& args) {
434 std::lock_guard<std::mutex> lock(mInterfaceMutex);
435
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800436 for (auto& provider : mProviders) {
437 provider->dump(fd, args);
438 }
439 return OK;
440}
441
442CameraProviderManager::ProviderInfo::DeviceInfo* CameraProviderManager::findDeviceInfoLocked(
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800443 const std::string& id,
444 hardware::hidl_version minVersion, hardware::hidl_version maxVersion) const {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800445 for (auto& provider : mProviders) {
446 for (auto& deviceInfo : provider->mDevices) {
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800447 if (deviceInfo->mId == id &&
448 minVersion <= deviceInfo->mVersion && maxVersion >= deviceInfo->mVersion) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800449 return deviceInfo.get();
450 }
451 }
452 }
453 return nullptr;
454}
455
Emilian Peev71c73a22017-03-21 16:35:51 +0000456metadata_vendor_id_t CameraProviderManager::getProviderTagIdLocked(
457 const std::string& id, hardware::hidl_version minVersion,
458 hardware::hidl_version maxVersion) const {
459 metadata_vendor_id_t ret = CAMERA_METADATA_INVALID_VENDOR_ID;
460
461 std::lock_guard<std::mutex> lock(mInterfaceMutex);
462 for (auto& provider : mProviders) {
463 for (auto& deviceInfo : provider->mDevices) {
464 if (deviceInfo->mId == id &&
465 minVersion <= deviceInfo->mVersion &&
466 maxVersion >= deviceInfo->mVersion) {
467 return provider->mProviderTagid;
468 }
469 }
470 }
471
472 return ret;
473}
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800474
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700475void CameraProviderManager::ProviderInfo::DeviceInfo3::queryPhysicalCameraIds() {
476 camera_metadata_entry_t entryCap;
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700477
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700478 entryCap = mCameraCharacteristics.find(ANDROID_REQUEST_AVAILABLE_CAPABILITIES);
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700479 for (size_t i = 0; i < entryCap.count; ++i) {
480 uint8_t capability = entryCap.data.u8[i];
481 if (capability == ANDROID_REQUEST_AVAILABLE_CAPABILITIES_LOGICAL_MULTI_CAMERA) {
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700482 mIsLogicalCamera = true;
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700483 break;
484 }
485 }
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700486 if (!mIsLogicalCamera) {
487 return;
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700488 }
489
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700490 camera_metadata_entry_t entryIds = mCameraCharacteristics.find(
491 ANDROID_LOGICAL_MULTI_CAMERA_PHYSICAL_IDS);
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700492 const uint8_t* ids = entryIds.data.u8;
493 size_t start = 0;
494 for (size_t i = 0; i < entryIds.count; ++i) {
495 if (ids[i] == '\0') {
496 if (start != i) {
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700497 mPhysicalIds.push_back((const char*)ids+start);
Shuzhen Wange8aceb52018-05-21 12:00:56 -0700498 }
499 start = i+1;
500 }
501 }
Shuzhen Wang03d8cc12018-09-12 14:17:09 -0700502}
503
Jayant Chowdharyf949ddd2019-01-29 14:34:11 -0800504bool CameraProviderManager::ProviderInfo::DeviceInfo3::isPublicallyHiddenSecureCamera() {
505 camera_metadata_entry_t entryCap;
506 entryCap = mCameraCharacteristics.find(ANDROID_REQUEST_AVAILABLE_CAPABILITIES);
507 if (entryCap.count != 1) {
508 // Do NOT hide this camera device if the capabilities specify anything more
509 // than ANDROID_REQUEST_AVAILABLE_CAPABILITIES_SECURE_IMAGE_DATA.
510 return false;
511 }
512 return entryCap.data.u8[0] == ANDROID_REQUEST_AVAILABLE_CAPABILITIES_SECURE_IMAGE_DATA;
513}
514
Emilian Peev4c6d2b52019-01-04 17:13:56 +0000515void CameraProviderManager::ProviderInfo::DeviceInfo3::getSupportedSizes(
516 const CameraMetadata& ch, uint32_t tag, android_pixel_format_t format,
517 std::vector<std::tuple<size_t, size_t>> *sizes/*out*/) {
518 if (sizes == nullptr) {
519 return;
520 }
521
522 auto scalerDims = ch.find(tag);
523 if (scalerDims.count > 0) {
524 // Scaler entry contains 4 elements (format, width, height, type)
525 for (size_t i = 0; i < scalerDims.count; i += 4) {
526 if ((scalerDims.data.i32[i] == format) &&
527 (scalerDims.data.i32[i+3] ==
528 ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS_OUTPUT)) {
529 sizes->push_back(std::make_tuple(scalerDims.data.i32[i+1],
530 scalerDims.data.i32[i+2]));
531 }
532 }
533 }
534}
535
536void CameraProviderManager::ProviderInfo::DeviceInfo3::getSupportedDurations(
537 const CameraMetadata& ch, uint32_t tag, android_pixel_format_t format,
538 const std::vector<std::tuple<size_t, size_t>>& sizes,
539 std::vector<int64_t> *durations/*out*/) {
540 if (durations == nullptr) {
541 return;
542 }
543
544 auto availableDurations = ch.find(tag);
545 if (availableDurations.count > 0) {
546 // Duration entry contains 4 elements (format, width, height, duration)
547 for (size_t i = 0; i < availableDurations.count; i += 4) {
548 for (const auto& size : sizes) {
549 int64_t width = std::get<0>(size);
550 int64_t height = std::get<1>(size);
551 if ((availableDurations.data.i64[i] == format) &&
552 (availableDurations.data.i64[i+1] == width) &&
553 (availableDurations.data.i64[i+2] == height)) {
554 durations->push_back(availableDurations.data.i64[i+3]);
555 }
556 }
557 }
558 }
559}
560void CameraProviderManager::ProviderInfo::DeviceInfo3::getSupportedDynamicDepthDurations(
561 const std::vector<int64_t>& depthDurations, const std::vector<int64_t>& blobDurations,
562 std::vector<int64_t> *dynamicDepthDurations /*out*/) {
563 if ((dynamicDepthDurations == nullptr) || (depthDurations.size() != blobDurations.size())) {
564 return;
565 }
566
567 // Unfortunately there is no direct way to calculate the dynamic depth stream duration.
568 // Processing time on camera service side can vary greatly depending on multiple
569 // variables which are not under our control. Make a guesstimate by taking the maximum
570 // corresponding duration value from depth and blob.
571 auto depthDuration = depthDurations.begin();
572 auto blobDuration = blobDurations.begin();
573 dynamicDepthDurations->reserve(depthDurations.size());
574 while ((depthDuration != depthDurations.end()) && (blobDuration != blobDurations.end())) {
575 dynamicDepthDurations->push_back(std::max(*depthDuration, *blobDuration));
576 depthDuration++; blobDuration++;
577 }
578}
579
580void CameraProviderManager::ProviderInfo::DeviceInfo3::getSupportedDynamicDepthSizes(
581 const std::vector<std::tuple<size_t, size_t>>& blobSizes,
582 const std::vector<std::tuple<size_t, size_t>>& depthSizes,
583 std::vector<std::tuple<size_t, size_t>> *dynamicDepthSizes /*out*/,
584 std::vector<std::tuple<size_t, size_t>> *internalDepthSizes /*out*/) {
585 if (dynamicDepthSizes == nullptr || internalDepthSizes == nullptr) {
586 return;
587 }
588
589 // The dynamic depth spec. does not mention how close the AR ratio should be.
590 // Try using something appropriate.
Emilian Peev538c90e2018-12-17 18:03:19 +0000591 float ARTolerance = kDepthARTolerance;
Emilian Peev4c6d2b52019-01-04 17:13:56 +0000592
593 for (const auto& blobSize : blobSizes) {
594 float jpegAR = static_cast<float> (std::get<0>(blobSize)) /
595 static_cast<float>(std::get<1>(blobSize));
596 bool found = false;
597 for (const auto& depthSize : depthSizes) {
598 if (depthSize == blobSize) {
599 internalDepthSizes->push_back(depthSize);
600 found = true;
601 break;
602 } else {
603 float depthAR = static_cast<float> (std::get<0>(depthSize)) /
604 static_cast<float>(std::get<1>(depthSize));
605 if (std::fabs(jpegAR - depthAR) <= ARTolerance) {
606 internalDepthSizes->push_back(depthSize);
607 found = true;
608 break;
609 }
610 }
611 }
612
613 if (found) {
614 dynamicDepthSizes->push_back(blobSize);
615 }
616 }
617}
618
Emilian Peevcbf174b2019-01-25 14:38:59 -0800619bool CameraProviderManager::ProviderInfo::DeviceInfo3::isDepthPhotoLibraryPresent() {
620 static bool libraryPresent = false;
621 static bool initialized = false;
622 if (initialized) {
623 return libraryPresent;
624 } else {
625 initialized = true;
626 }
627
628 void* depthLibHandle = dlopen(camera3::kDepthPhotoLibrary, RTLD_NOW | RTLD_LOCAL);
629 if (depthLibHandle == nullptr) {
630 return false;
631 }
632
633 auto processFunc = dlsym(depthLibHandle, camera3::kDepthPhotoProcessFunction);
634 if (processFunc != nullptr) {
635 libraryPresent = true;
636 } else {
637 libraryPresent = false;
638 }
639 dlclose(depthLibHandle);
640
641 return libraryPresent;
642}
643
Emilian Peev4c6d2b52019-01-04 17:13:56 +0000644status_t CameraProviderManager::ProviderInfo::DeviceInfo3::addDynamicDepthTags() {
645 uint32_t depthExclTag = ANDROID_DEPTH_DEPTH_IS_EXCLUSIVE;
646 uint32_t depthSizesTag = ANDROID_DEPTH_AVAILABLE_DEPTH_STREAM_CONFIGURATIONS;
647 auto& c = mCameraCharacteristics;
648 std::vector<std::tuple<size_t, size_t>> supportedBlobSizes, supportedDepthSizes,
649 supportedDynamicDepthSizes, internalDepthSizes;
650 auto chTags = c.find(ANDROID_REQUEST_AVAILABLE_CHARACTERISTICS_KEYS);
651 if (chTags.count == 0) {
652 ALOGE("%s: Supported camera characteristics is empty!", __FUNCTION__);
653 return BAD_VALUE;
654 }
655
656 bool isDepthExclusivePresent = std::find(chTags.data.i32, chTags.data.i32 + chTags.count,
657 depthExclTag) != (chTags.data.i32 + chTags.count);
658 bool isDepthSizePresent = std::find(chTags.data.i32, chTags.data.i32 + chTags.count,
Emilian Peeva1185162019-01-30 16:41:43 -0800659 depthSizesTag) != (chTags.data.i32 + chTags.count);
Emilian Peev4c6d2b52019-01-04 17:13:56 +0000660 if (!(isDepthExclusivePresent && isDepthSizePresent)) {
661 // No depth support, nothing more to do.
662 return OK;
663 }
664
665 auto depthExclusiveEntry = c.find(depthExclTag);
666 if (depthExclusiveEntry.count > 0) {
667 if (depthExclusiveEntry.data.u8[0] != ANDROID_DEPTH_DEPTH_IS_EXCLUSIVE_FALSE) {
668 // Depth support is exclusive, nothing more to do.
669 return OK;
670 }
671 } else {
672 ALOGE("%s: Advertised depth exclusive tag but value is not present!", __FUNCTION__);
673 return BAD_VALUE;
674 }
675
676 getSupportedSizes(c, ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS, HAL_PIXEL_FORMAT_BLOB,
677 &supportedBlobSizes);
678 getSupportedSizes(c, depthSizesTag, HAL_PIXEL_FORMAT_Y16, &supportedDepthSizes);
679 if (supportedBlobSizes.empty() || supportedDepthSizes.empty()) {
680 // Nothing to do in this case.
681 return OK;
682 }
683
684 getSupportedDynamicDepthSizes(supportedBlobSizes, supportedDepthSizes,
685 &supportedDynamicDepthSizes, &internalDepthSizes);
686 if (supportedDynamicDepthSizes.empty()) {
Emilian Peev4c6d2b52019-01-04 17:13:56 +0000687 // Nothing more to do.
688 return OK;
689 }
690
Emilian Peevcbf174b2019-01-25 14:38:59 -0800691 if(!isDepthPhotoLibraryPresent()) {
692 // Depth photo processing library is not present, nothing more to do.
693 return OK;
694 }
695
Emilian Peev4c6d2b52019-01-04 17:13:56 +0000696 std::vector<int32_t> dynamicDepthEntries;
697 for (const auto& it : supportedDynamicDepthSizes) {
698 int32_t entry[4] = {HAL_PIXEL_FORMAT_BLOB, static_cast<int32_t> (std::get<0>(it)),
699 static_cast<int32_t> (std::get<1>(it)),
700 ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS_OUTPUT };
701 dynamicDepthEntries.insert(dynamicDepthEntries.end(), entry, entry + 4);
702 }
703
704 std::vector<int64_t> depthMinDurations, depthStallDurations;
705 std::vector<int64_t> blobMinDurations, blobStallDurations;
706 std::vector<int64_t> dynamicDepthMinDurations, dynamicDepthStallDurations;
707
708 getSupportedDurations(c, ANDROID_DEPTH_AVAILABLE_DEPTH_MIN_FRAME_DURATIONS,
709 HAL_PIXEL_FORMAT_Y16, internalDepthSizes, &depthMinDurations);
710 getSupportedDurations(c, ANDROID_SCALER_AVAILABLE_MIN_FRAME_DURATIONS,
711 HAL_PIXEL_FORMAT_BLOB, supportedDynamicDepthSizes, &blobMinDurations);
712 if (blobMinDurations.empty() || depthMinDurations.empty() ||
713 (depthMinDurations.size() != blobMinDurations.size())) {
714 ALOGE("%s: Unexpected number of available depth min durations! %zu vs. %zu",
715 __FUNCTION__, depthMinDurations.size(), blobMinDurations.size());
716 return BAD_VALUE;
717 }
718
719 getSupportedDurations(c, ANDROID_DEPTH_AVAILABLE_DEPTH_STALL_DURATIONS,
720 HAL_PIXEL_FORMAT_Y16, internalDepthSizes, &depthStallDurations);
721 getSupportedDurations(c, ANDROID_SCALER_AVAILABLE_STALL_DURATIONS,
722 HAL_PIXEL_FORMAT_BLOB, supportedDynamicDepthSizes, &blobStallDurations);
723 if (blobStallDurations.empty() || depthStallDurations.empty() ||
724 (depthStallDurations.size() != blobStallDurations.size())) {
725 ALOGE("%s: Unexpected number of available depth stall durations! %zu vs. %zu",
726 __FUNCTION__, depthStallDurations.size(), blobStallDurations.size());
727 return BAD_VALUE;
728 }
729
730 getSupportedDynamicDepthDurations(depthMinDurations, blobMinDurations,
731 &dynamicDepthMinDurations);
732 getSupportedDynamicDepthDurations(depthStallDurations, blobStallDurations,
733 &dynamicDepthStallDurations);
734 if (dynamicDepthMinDurations.empty() || dynamicDepthStallDurations.empty() ||
735 (dynamicDepthMinDurations.size() != dynamicDepthStallDurations.size())) {
736 ALOGE("%s: Unexpected number of dynamic depth stall/min durations! %zu vs. %zu",
737 __FUNCTION__, dynamicDepthMinDurations.size(), dynamicDepthStallDurations.size());
738 return BAD_VALUE;
739 }
740
741 std::vector<int64_t> dynamicDepthMinDurationEntries;
742 auto itDuration = dynamicDepthMinDurations.begin();
743 auto itSize = supportedDynamicDepthSizes.begin();
744 while (itDuration != dynamicDepthMinDurations.end()) {
745 int64_t entry[4] = {HAL_PIXEL_FORMAT_BLOB, static_cast<int32_t> (std::get<0>(*itSize)),
746 static_cast<int32_t> (std::get<1>(*itSize)), *itDuration};
747 dynamicDepthMinDurationEntries.insert(dynamicDepthMinDurationEntries.end(), entry,
748 entry + 4);
749 itDuration++; itSize++;
750 }
751
752 std::vector<int64_t> dynamicDepthStallDurationEntries;
753 itDuration = dynamicDepthStallDurations.begin();
754 itSize = supportedDynamicDepthSizes.begin();
755 while (itDuration != dynamicDepthStallDurations.end()) {
756 int64_t entry[4] = {HAL_PIXEL_FORMAT_BLOB, static_cast<int32_t> (std::get<0>(*itSize)),
757 static_cast<int32_t> (std::get<1>(*itSize)), *itDuration};
758 dynamicDepthStallDurationEntries.insert(dynamicDepthStallDurationEntries.end(), entry,
759 entry + 4);
760 itDuration++; itSize++;
761 }
762
763 c.update(ANDROID_DEPTH_AVAILABLE_DYNAMIC_DEPTH_STREAM_CONFIGURATIONS,
764 dynamicDepthEntries.data(), dynamicDepthEntries.size());
765 c.update(ANDROID_DEPTH_AVAILABLE_DYNAMIC_DEPTH_MIN_FRAME_DURATIONS,
766 dynamicDepthMinDurationEntries.data(), dynamicDepthMinDurationEntries.size());
767 c.update(ANDROID_DEPTH_AVAILABLE_DYNAMIC_DEPTH_STALL_DURATIONS,
768 dynamicDepthStallDurationEntries.data(), dynamicDepthStallDurationEntries.size());
769
770 std::vector<int32_t> supportedChTags;
771 supportedChTags.reserve(chTags.count + 3);
772 supportedChTags.insert(supportedChTags.end(), chTags.data.i32,
773 chTags.data.i32 + chTags.count);
774 supportedChTags.push_back(ANDROID_DEPTH_AVAILABLE_DYNAMIC_DEPTH_STREAM_CONFIGURATIONS);
775 supportedChTags.push_back(ANDROID_DEPTH_AVAILABLE_DYNAMIC_DEPTH_MIN_FRAME_DURATIONS);
776 supportedChTags.push_back(ANDROID_DEPTH_AVAILABLE_DYNAMIC_DEPTH_STALL_DURATIONS);
777 c.update(ANDROID_REQUEST_AVAILABLE_CHARACTERISTICS_KEYS, supportedChTags.data(),
778 supportedChTags.size());
779
780 return OK;
781}
782
Shuzhen Wang268a1362018-10-16 16:32:59 -0700783status_t CameraProviderManager::ProviderInfo::DeviceInfo3::fixupMonochromeTags() {
784 status_t res = OK;
785 auto& c = mCameraCharacteristics;
786
787 // Override static metadata for MONOCHROME camera with older device version
788 if (mVersion.get_major() == 3 && mVersion.get_minor() < 5) {
789 camera_metadata_entry cap = c.find(ANDROID_REQUEST_AVAILABLE_CAPABILITIES);
790 for (size_t i = 0; i < cap.count; i++) {
791 if (cap.data.u8[i] == ANDROID_REQUEST_AVAILABLE_CAPABILITIES_MONOCHROME) {
792 // ANDROID_SENSOR_INFO_COLOR_FILTER_ARRANGEMENT
793 uint8_t cfa = ANDROID_SENSOR_INFO_COLOR_FILTER_ARRANGEMENT_MONO;
794 res = c.update(ANDROID_SENSOR_INFO_COLOR_FILTER_ARRANGEMENT, &cfa, 1);
795 if (res != OK) {
796 ALOGE("%s: Failed to update COLOR_FILTER_ARRANGEMENT: %s (%d)",
797 __FUNCTION__, strerror(-res), res);
798 return res;
799 }
800
801 // ANDROID_REQUEST_AVAILABLE_CHARACTERISTICS_KEYS
802 const std::vector<uint32_t> sKeys = {
803 ANDROID_SENSOR_REFERENCE_ILLUMINANT1,
804 ANDROID_SENSOR_REFERENCE_ILLUMINANT2,
805 ANDROID_SENSOR_CALIBRATION_TRANSFORM1,
806 ANDROID_SENSOR_CALIBRATION_TRANSFORM2,
807 ANDROID_SENSOR_COLOR_TRANSFORM1,
808 ANDROID_SENSOR_COLOR_TRANSFORM2,
809 ANDROID_SENSOR_FORWARD_MATRIX1,
810 ANDROID_SENSOR_FORWARD_MATRIX2,
811 };
812 res = removeAvailableKeys(c, sKeys,
813 ANDROID_REQUEST_AVAILABLE_CHARACTERISTICS_KEYS);
814 if (res != OK) {
815 ALOGE("%s: Failed to update REQUEST_AVAILABLE_CHARACTERISTICS_KEYS: %s (%d)",
816 __FUNCTION__, strerror(-res), res);
817 return res;
818 }
819
820 // ANDROID_REQUEST_AVAILABLE_REQUEST_KEYS
821 const std::vector<uint32_t> reqKeys = {
822 ANDROID_COLOR_CORRECTION_MODE,
823 ANDROID_COLOR_CORRECTION_TRANSFORM,
824 ANDROID_COLOR_CORRECTION_GAINS,
825 };
826 res = removeAvailableKeys(c, reqKeys, ANDROID_REQUEST_AVAILABLE_REQUEST_KEYS);
827 if (res != OK) {
828 ALOGE("%s: Failed to update REQUEST_AVAILABLE_REQUEST_KEYS: %s (%d)",
829 __FUNCTION__, strerror(-res), res);
830 return res;
831 }
832
833 // ANDROID_REQUEST_AVAILABLE_RESULT_KEYS
834 const std::vector<uint32_t> resKeys = {
835 ANDROID_SENSOR_GREEN_SPLIT,
836 ANDROID_SENSOR_NEUTRAL_COLOR_POINT,
837 ANDROID_COLOR_CORRECTION_MODE,
838 ANDROID_COLOR_CORRECTION_TRANSFORM,
839 ANDROID_COLOR_CORRECTION_GAINS,
840 };
841 res = removeAvailableKeys(c, resKeys, ANDROID_REQUEST_AVAILABLE_RESULT_KEYS);
842 if (res != OK) {
843 ALOGE("%s: Failed to update REQUEST_AVAILABLE_RESULT_KEYS: %s (%d)",
844 __FUNCTION__, strerror(-res), res);
845 return res;
846 }
847
848 // ANDROID_SENSOR_BLACK_LEVEL_PATTERN
849 camera_metadata_entry blEntry = c.find(ANDROID_SENSOR_BLACK_LEVEL_PATTERN);
850 for (size_t j = 1; j < blEntry.count; j++) {
851 blEntry.data.i32[j] = blEntry.data.i32[0];
852 }
853 }
854 }
855 }
856 return res;
857}
858
859status_t CameraProviderManager::ProviderInfo::DeviceInfo3::removeAvailableKeys(
860 CameraMetadata& c, const std::vector<uint32_t>& keys, uint32_t keyTag) {
861 status_t res = OK;
862
863 camera_metadata_entry keysEntry = c.find(keyTag);
864 if (keysEntry.count == 0) {
865 ALOGE("%s: Failed to find tag %u: %s (%d)", __FUNCTION__, keyTag, strerror(-res), res);
866 return res;
867 }
868 std::vector<int32_t> vKeys;
869 vKeys.reserve(keysEntry.count);
870 for (size_t i = 0; i < keysEntry.count; i++) {
871 if (std::find(keys.begin(), keys.end(), keysEntry.data.i32[i]) == keys.end()) {
872 vKeys.push_back(keysEntry.data.i32[i]);
873 }
874 }
875 res = c.update(keyTag, vKeys.data(), vKeys.size());
876 return res;
877}
878
Shuzhen Wang68ac7ad2019-01-30 14:03:28 -0800879status_t CameraProviderManager::ProviderInfo::DeviceInfo3::fillHeicStreamCombinations(
880 std::vector<int32_t>* outputs,
881 std::vector<int64_t>* durations,
882 std::vector<int64_t>* stallDurations,
883 const camera_metadata_entry& halStreamConfigs,
884 const camera_metadata_entry& halStreamDurations) {
885 if (outputs == nullptr || durations == nullptr || stallDurations == nullptr) {
886 return BAD_VALUE;
887 }
888
889 static bool supportInMemoryTempFile =
890 camera3::HeicCompositeStream::isInMemoryTempFileSupported();
891 if (!supportInMemoryTempFile) {
892 ALOGI("%s: No HEIC support due to absence of in memory temp file support",
893 __FUNCTION__);
894 return OK;
895 }
896
897 for (size_t i = 0; i < halStreamConfigs.count; i += 4) {
898 int32_t format = halStreamConfigs.data.i32[i];
899 // Only IMPLEMENTATION_DEFINED and YUV_888 can be used to generate HEIC
900 // image.
901 if (format != HAL_PIXEL_FORMAT_IMPLEMENTATION_DEFINED &&
902 format != HAL_PIXEL_FORMAT_YCBCR_420_888) {
903 continue;
904 }
905
906 bool sizeAvail = false;
907 for (size_t j = 0; j < outputs->size(); j+= 4) {
908 if ((*outputs)[j+1] == halStreamConfigs.data.i32[i+1] &&
909 (*outputs)[j+2] == halStreamConfigs.data.i32[i+2]) {
910 sizeAvail = true;
911 break;
912 }
913 }
914 if (sizeAvail) continue;
915
916 int64_t stall = 0;
917 bool useHeic, useGrid;
918 if (camera3::HeicCompositeStream::isSizeSupportedByHeifEncoder(
919 halStreamConfigs.data.i32[i+1], halStreamConfigs.data.i32[i+2],
920 &useHeic, &useGrid, &stall)) {
921 if (useGrid != (format == HAL_PIXEL_FORMAT_YCBCR_420_888)) {
922 continue;
923 }
924
925 // HEIC configuration
926 int32_t config[] = {HAL_PIXEL_FORMAT_BLOB, halStreamConfigs.data.i32[i+1],
927 halStreamConfigs.data.i32[i+2], 0 /*isInput*/};
928 outputs->insert(outputs->end(), config, config + 4);
929
930 // HEIC minFrameDuration
931 for (size_t j = 0; j < halStreamDurations.count; j += 4) {
932 if (halStreamDurations.data.i64[j] == format &&
933 halStreamDurations.data.i64[j+1] == halStreamConfigs.data.i32[i+1] &&
934 halStreamDurations.data.i64[j+2] == halStreamConfigs.data.i32[i+2]) {
935 int64_t duration[] = {HAL_PIXEL_FORMAT_BLOB, halStreamConfigs.data.i32[i+1],
936 halStreamConfigs.data.i32[i+2], halStreamDurations.data.i64[j+3]};
937 durations->insert(durations->end(), duration, duration+4);
938 break;
939 }
940 }
941
942 // HEIC stallDuration
943 int64_t stallDuration[] = {HAL_PIXEL_FORMAT_BLOB, halStreamConfigs.data.i32[i+1],
944 halStreamConfigs.data.i32[i+2], stall};
945 stallDurations->insert(stallDurations->end(), stallDuration, stallDuration+4);
946 }
947 }
948 return OK;
949}
950
951status_t CameraProviderManager::ProviderInfo::DeviceInfo3::deriveHeicTags() {
952 auto& c = mCameraCharacteristics;
953
954 camera_metadata_entry halHeicSupport = c.find(ANDROID_HEIC_INFO_SUPPORTED);
955 if (halHeicSupport.count > 1) {
956 ALOGE("%s: Invalid entry count %zu for ANDROID_HEIC_INFO_SUPPORTED",
957 __FUNCTION__, halHeicSupport.count);
958 return BAD_VALUE;
959 } else if (halHeicSupport.count == 0 ||
960 halHeicSupport.data.u8[0] == ANDROID_HEIC_INFO_SUPPORTED_FALSE) {
961 // Camera HAL doesn't support mandatory stream combinations for HEIC.
962 return OK;
963 }
964
965 camera_metadata_entry maxJpegAppsSegments =
966 c.find(ANDROID_HEIC_INFO_MAX_JPEG_APP_SEGMENTS_COUNT);
967 if (maxJpegAppsSegments.count != 1 || maxJpegAppsSegments.data.u8[0] == 0 ||
968 maxJpegAppsSegments.data.u8[0] > 16) {
969 ALOGE("%s: ANDROID_HEIC_INFO_MAX_JPEG_APP_SEGMENTS_COUNT must be within [1, 16]",
970 __FUNCTION__);
971 return BAD_VALUE;
972 }
973
974 // Populate HEIC output configurations and its related min frame duration
975 // and stall duration.
976 std::vector<int32_t> heicOutputs;
977 std::vector<int64_t> heicDurations;
978 std::vector<int64_t> heicStallDurations;
979
980 camera_metadata_entry halStreamConfigs =
981 c.find(ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS);
982 camera_metadata_entry minFrameDurations =
983 c.find(ANDROID_SCALER_AVAILABLE_MIN_FRAME_DURATIONS);
984
985 status_t res = fillHeicStreamCombinations(&heicOutputs, &heicDurations, &heicStallDurations,
986 halStreamConfigs, minFrameDurations);
987 if (res != OK) {
988 ALOGE("%s: Failed to fill HEIC stream combinations: %s (%d)", __FUNCTION__,
989 strerror(-res), res);
990 return res;
991 }
992
993 c.update(ANDROID_HEIC_AVAILABLE_HEIC_STREAM_CONFIGURATIONS,
994 heicOutputs.data(), heicOutputs.size());
995 c.update(ANDROID_HEIC_AVAILABLE_HEIC_MIN_FRAME_DURATIONS,
996 heicDurations.data(), heicDurations.size());
997 c.update(ANDROID_HEIC_AVAILABLE_HEIC_STALL_DURATIONS,
998 heicStallDurations.data(), heicStallDurations.size());
999
1000 return OK;
1001}
1002
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07001003bool CameraProviderManager::isLogicalCamera(const std::string& id,
1004 std::vector<std::string>* physicalCameraIds) {
1005 std::lock_guard<std::mutex> lock(mInterfaceMutex);
1006
1007 auto deviceInfo = findDeviceInfoLocked(id);
1008 if (deviceInfo == nullptr) return false;
1009
1010 if (deviceInfo->mIsLogicalCamera && physicalCameraIds != nullptr) {
1011 *physicalCameraIds = deviceInfo->mPhysicalIds;
1012 }
1013 return deviceInfo->mIsLogicalCamera;
Shuzhen Wange8aceb52018-05-21 12:00:56 -07001014}
1015
Jayant Chowdharyf949ddd2019-01-29 14:34:11 -08001016bool CameraProviderManager::isPublicallyHiddenSecureCamera(const std::string& id) {
1017 std::lock_guard<std::mutex> lock(mInterfaceMutex);
1018
1019 auto deviceInfo = findDeviceInfoLocked(id);
1020 if (deviceInfo == nullptr) {
1021 return false;
1022 }
1023 return deviceInfo->mIsPublicallyHiddenSecureCamera;
1024}
1025
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001026bool CameraProviderManager::isHiddenPhysicalCamera(const std::string& cameraId) {
1027 for (auto& provider : mProviders) {
1028 for (auto& deviceInfo : provider->mDevices) {
1029 if (deviceInfo->mId == cameraId) {
1030 // cameraId is found in public camera IDs advertised by the
1031 // provider.
1032 return false;
1033 }
1034 }
1035 }
1036
1037 for (auto& provider : mProviders) {
1038 for (auto& deviceInfo : provider->mDevices) {
1039 CameraMetadata info;
1040 status_t res = deviceInfo->getCameraCharacteristics(&info);
1041 if (res != OK) {
1042 ALOGE("%s: Failed to getCameraCharacteristics for id %s", __FUNCTION__,
1043 deviceInfo->mId.c_str());
1044 return false;
1045 }
1046
1047 std::vector<std::string> physicalIds;
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07001048 if (deviceInfo->mIsLogicalCamera) {
1049 if (std::find(deviceInfo->mPhysicalIds.begin(), deviceInfo->mPhysicalIds.end(),
1050 cameraId) != deviceInfo->mPhysicalIds.end()) {
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001051 int deviceVersion = HARDWARE_DEVICE_API_VERSION(
1052 deviceInfo->mVersion.get_major(), deviceInfo->mVersion.get_minor());
1053 if (deviceVersion < CAMERA_DEVICE_API_VERSION_3_5) {
1054 ALOGE("%s: Wrong deviceVersion %x for hiddenPhysicalCameraId %s",
1055 __FUNCTION__, deviceVersion, cameraId.c_str());
1056 return false;
1057 } else {
1058 return true;
1059 }
1060 }
1061 }
1062 }
1063 }
1064
1065 return false;
1066}
1067
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001068status_t CameraProviderManager::addProviderLocked(const std::string& newProvider, bool expected) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001069 for (const auto& providerInfo : mProviders) {
1070 if (providerInfo->mProviderName == newProvider) {
1071 ALOGW("%s: Camera provider HAL with name '%s' already registered", __FUNCTION__,
1072 newProvider.c_str());
1073 return ALREADY_EXISTS;
1074 }
1075 }
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001076
1077 sp<provider::V2_4::ICameraProvider> interface;
1078 interface = mServiceProxy->getService(newProvider);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001079
1080 if (interface == nullptr) {
1081 if (expected) {
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001082 ALOGE("%s: Camera provider HAL '%s' is not actually available", __FUNCTION__,
1083 newProvider.c_str());
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001084 return BAD_VALUE;
1085 } else {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001086 return OK;
1087 }
1088 }
1089
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001090 sp<ProviderInfo> providerInfo = new ProviderInfo(newProvider, this);
1091 status_t res = providerInfo->initialize(interface);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001092 if (res != OK) {
1093 return res;
1094 }
1095
1096 mProviders.push_back(providerInfo);
1097
1098 return OK;
1099}
1100
1101status_t CameraProviderManager::removeProvider(const std::string& provider) {
Shuzhen Wang6ba8eb22018-07-08 13:10:44 -07001102 std::lock_guard<std::mutex> providerLock(mProviderLifecycleLock);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001103 std::unique_lock<std::mutex> lock(mInterfaceMutex);
1104 std::vector<String8> removedDeviceIds;
1105 status_t res = NAME_NOT_FOUND;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001106 for (auto it = mProviders.begin(); it != mProviders.end(); it++) {
1107 if ((*it)->mProviderName == provider) {
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001108 removedDeviceIds.reserve((*it)->mDevices.size());
1109 for (auto& deviceInfo : (*it)->mDevices) {
1110 removedDeviceIds.push_back(String8(deviceInfo->mId.c_str()));
1111 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001112 mProviders.erase(it);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001113 res = OK;
1114 break;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001115 }
1116 }
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001117 if (res != OK) {
1118 ALOGW("%s: Camera provider HAL with name '%s' is not registered", __FUNCTION__,
1119 provider.c_str());
1120 } else {
1121 // Inform camera service of loss of presence for all the devices from this provider,
1122 // without lock held for reentrancy
1123 sp<StatusListener> listener = getStatusListener();
1124 if (listener != nullptr) {
1125 lock.unlock();
1126 for (auto& id : removedDeviceIds) {
1127 listener->onDeviceStatusChanged(id, CameraDeviceStatus::NOT_PRESENT);
1128 }
1129 }
1130 }
1131 return res;
1132}
1133
1134sp<CameraProviderManager::StatusListener> CameraProviderManager::getStatusListener() const {
1135 return mListener.promote();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001136}
1137
1138/**** Methods for ProviderInfo ****/
1139
1140
1141CameraProviderManager::ProviderInfo::ProviderInfo(
1142 const std::string &providerName,
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001143 CameraProviderManager *manager) :
1144 mProviderName(providerName),
Emilian Peev71c73a22017-03-21 16:35:51 +00001145 mProviderTagid(generateVendorTagId(providerName)),
Emilian Peevcdb74a62017-05-11 20:29:52 +01001146 mUniqueDeviceCount(0),
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001147 mManager(manager) {
1148 (void) mManager;
1149}
1150
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001151status_t CameraProviderManager::ProviderInfo::initialize(
1152 sp<provider::V2_4::ICameraProvider>& interface) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001153 status_t res = parseProviderName(mProviderName, &mType, &mId);
1154 if (res != OK) {
1155 ALOGE("%s: Invalid provider name, ignoring", __FUNCTION__);
1156 return BAD_VALUE;
1157 }
Yin-Chia Yeh65405092017-01-13 15:42:28 -08001158 ALOGI("Connecting to new camera provider: %s, isRemote? %d",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001159 mProviderName.c_str(), interface->isRemote());
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001160 // cameraDeviceStatusChange callbacks may be called (and causing new devices added)
1161 // before setCallback returns
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001162 hardware::Return<Status> status = interface->setCallback(this);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001163 if (!status.isOk()) {
1164 ALOGE("%s: Transaction error setting up callbacks with camera provider '%s': %s",
1165 __FUNCTION__, mProviderName.c_str(), status.description().c_str());
1166 return DEAD_OBJECT;
1167 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001168 if (status != Status::OK) {
1169 ALOGE("%s: Unable to register callbacks with camera provider '%s'",
1170 __FUNCTION__, mProviderName.c_str());
1171 return mapToStatusT(status);
1172 }
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001173
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001174 hardware::Return<bool> linked = interface->linkToDeath(this, /*cookie*/ mId);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001175 if (!linked.isOk()) {
1176 ALOGE("%s: Transaction error in linking to camera provider '%s' death: %s",
1177 __FUNCTION__, mProviderName.c_str(), linked.description().c_str());
1178 return DEAD_OBJECT;
1179 } else if (!linked) {
1180 ALOGW("%s: Unable to link to provider '%s' death notifications",
1181 __FUNCTION__, mProviderName.c_str());
1182 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001183
1184 // Get initial list of camera devices, if any
1185 std::vector<std::string> devices;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001186 hardware::Return<void> ret = interface->getCameraIdList([&status, this, &devices](
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001187 Status idStatus,
1188 const hardware::hidl_vec<hardware::hidl_string>& cameraDeviceNames) {
1189 status = idStatus;
1190 if (status == Status::OK) {
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001191 for (auto& name : cameraDeviceNames) {
1192 uint16_t major, minor;
1193 std::string type, id;
1194 status_t res = parseDeviceName(name, &major, &minor, &type, &id);
1195 if (res != OK) {
1196 ALOGE("%s: Error parsing deviceName: %s: %d", __FUNCTION__, name.c_str(), res);
1197 status = Status::INTERNAL_ERROR;
1198 } else {
1199 devices.push_back(name);
1200 mProviderPublicCameraIds.push_back(id);
1201 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001202 }
1203 } });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001204 if (!ret.isOk()) {
1205 ALOGE("%s: Transaction error in getting camera ID list from provider '%s': %s",
1206 __FUNCTION__, mProviderName.c_str(), linked.description().c_str());
1207 return DEAD_OBJECT;
1208 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001209 if (status != Status::OK) {
1210 ALOGE("%s: Unable to query for camera devices from provider '%s'",
1211 __FUNCTION__, mProviderName.c_str());
1212 return mapToStatusT(status);
1213 }
1214
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001215 ret = interface->isSetTorchModeSupported(
1216 [this](auto status, bool supported) {
1217 if (status == Status::OK) {
1218 mSetTorchModeSupported = supported;
1219 }
1220 });
1221 if (!ret.isOk()) {
1222 ALOGE("%s: Transaction error checking torch mode support '%s': %s",
1223 __FUNCTION__, mProviderName.c_str(), ret.description().c_str());
1224 return DEAD_OBJECT;
1225 }
1226
1227 mIsRemote = interface->isRemote();
1228
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001229 sp<StatusListener> listener = mManager->getStatusListener();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001230 for (auto& device : devices) {
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001231 std::string id;
Peter Kalauskasb7bd4382018-11-15 17:19:48 -08001232 status_t res = addDevice(device, common::V1_0::CameraDeviceStatus::PRESENT, &id);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001233 if (res != OK) {
1234 ALOGE("%s: Unable to enumerate camera device '%s': %s (%d)",
1235 __FUNCTION__, device.c_str(), strerror(-res), res);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001236 continue;
1237 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001238 }
1239
Peter Kalauskas1b3c9072018-11-07 12:41:53 -08001240 res = setUpVendorTags();
1241 if (res != OK) {
1242 ALOGE("%s: Unable to set up vendor tags from provider '%s'",
1243 __FUNCTION__, mProviderName.c_str());
1244 return res;
1245 }
1246
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001247 ALOGI("Camera provider %s ready with %zu camera devices",
1248 mProviderName.c_str(), mDevices.size());
1249
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001250 mInitialized = true;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001251 if (!kEnableLazyHal) {
1252 // Save HAL reference indefinitely
1253 mSavedInterface = interface;
1254 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001255 return OK;
1256}
1257
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001258const sp<provider::V2_4::ICameraProvider>
1259CameraProviderManager::ProviderInfo::startProviderInterface() {
1260 ATRACE_CALL();
1261 ALOGI("Request to start camera provider: %s", mProviderName.c_str());
1262 if (mSavedInterface != nullptr) {
1263 return mSavedInterface;
1264 }
1265 auto interface = mActiveInterface.promote();
1266 if (interface == nullptr) {
1267 ALOGI("Could not promote, calling getService(%s)", mProviderName.c_str());
1268 interface = mManager->mServiceProxy->getService(mProviderName);
1269 interface->setCallback(this);
1270 hardware::Return<bool> linked = interface->linkToDeath(this, /*cookie*/ mId);
1271 if (!linked.isOk()) {
1272 ALOGE("%s: Transaction error in linking to camera provider '%s' death: %s",
1273 __FUNCTION__, mProviderName.c_str(), linked.description().c_str());
1274 mManager->removeProvider(mProviderName);
1275 return nullptr;
1276 } else if (!linked) {
1277 ALOGW("%s: Unable to link to provider '%s' death notifications",
1278 __FUNCTION__, mProviderName.c_str());
1279 }
1280 mActiveInterface = interface;
1281 } else {
1282 ALOGI("Camera provider (%s) already in use. Re-using instance.", mProviderName.c_str());
1283 }
1284 return interface;
1285}
1286
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001287const std::string& CameraProviderManager::ProviderInfo::getType() const {
1288 return mType;
1289}
1290
1291status_t CameraProviderManager::ProviderInfo::addDevice(const std::string& name,
1292 CameraDeviceStatus initialStatus, /*out*/ std::string* parsedId) {
1293
1294 ALOGI("Enumerating new camera device: %s", name.c_str());
1295
1296 uint16_t major, minor;
1297 std::string type, id;
1298
1299 status_t res = parseDeviceName(name, &major, &minor, &type, &id);
1300 if (res != OK) {
1301 return res;
1302 }
1303 if (type != mType) {
1304 ALOGE("%s: Device type %s does not match provider type %s", __FUNCTION__,
1305 type.c_str(), mType.c_str());
1306 return BAD_VALUE;
1307 }
1308 if (mManager->isValidDeviceLocked(id, major)) {
1309 ALOGE("%s: Device %s: ID %s is already in use for device major version %d", __FUNCTION__,
1310 name.c_str(), id.c_str(), major);
1311 return BAD_VALUE;
1312 }
1313
1314 std::unique_ptr<DeviceInfo> deviceInfo;
1315 switch (major) {
1316 case 1:
Emilian Peev71c73a22017-03-21 16:35:51 +00001317 deviceInfo = initializeDeviceInfo<DeviceInfo1>(name, mProviderTagid,
1318 id, minor);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001319 break;
1320 case 3:
Emilian Peev71c73a22017-03-21 16:35:51 +00001321 deviceInfo = initializeDeviceInfo<DeviceInfo3>(name, mProviderTagid,
1322 id, minor);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001323 break;
1324 default:
1325 ALOGE("%s: Device %s: Unknown HIDL device HAL major version %d:", __FUNCTION__,
1326 name.c_str(), major);
1327 return BAD_VALUE;
1328 }
1329 if (deviceInfo == nullptr) return BAD_VALUE;
1330 deviceInfo->mStatus = initialStatus;
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001331 bool isAPI1Compatible = deviceInfo->isAPI1Compatible();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001332
1333 mDevices.push_back(std::move(deviceInfo));
1334
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001335 mUniqueCameraIds.insert(id);
1336 if (isAPI1Compatible) {
Shuzhen Wang975a39e2018-06-27 14:35:46 -07001337 // addDevice can be called more than once for the same camera id if HAL
1338 // supports openLegacy.
1339 if (std::find(mUniqueAPI1CompatibleCameraIds.begin(), mUniqueAPI1CompatibleCameraIds.end(),
1340 id) == mUniqueAPI1CompatibleCameraIds.end()) {
1341 mUniqueAPI1CompatibleCameraIds.push_back(id);
1342 }
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001343 }
1344
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001345 if (parsedId != nullptr) {
1346 *parsedId = id;
1347 }
1348 return OK;
1349}
1350
Guennadi Liakhovetski6034bf52017-12-07 10:28:29 +01001351void CameraProviderManager::ProviderInfo::removeDevice(std::string id) {
1352 for (auto it = mDevices.begin(); it != mDevices.end(); it++) {
1353 if ((*it)->mId == id) {
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001354 mUniqueCameraIds.erase(id);
1355 if ((*it)->isAPI1Compatible()) {
Shuzhen Wange8aceb52018-05-21 12:00:56 -07001356 mUniqueAPI1CompatibleCameraIds.erase(std::remove(
1357 mUniqueAPI1CompatibleCameraIds.begin(),
1358 mUniqueAPI1CompatibleCameraIds.end(), id));
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001359 }
Guennadi Liakhovetski6034bf52017-12-07 10:28:29 +01001360 mDevices.erase(it);
1361 break;
1362 }
1363 }
1364}
1365
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001366status_t CameraProviderManager::ProviderInfo::dump(int fd, const Vector<String16>&) const {
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001367 dprintf(fd, "== Camera Provider HAL %s (v2.4, %s) static info: %zu devices: ==\n",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001368 mProviderName.c_str(), mIsRemote ? "remote" : "passthrough",
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001369 mDevices.size());
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001370
1371 for (auto& device : mDevices) {
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -08001372 dprintf(fd, "== Camera HAL device %s (v%d.%d) static information: ==\n", device->mName.c_str(),
1373 device->mVersion.get_major(), device->mVersion.get_minor());
1374 dprintf(fd, " Resource cost: %d\n", device->mResourceCost.resourceCost);
1375 if (device->mResourceCost.conflictingDevices.size() == 0) {
1376 dprintf(fd, " Conflicting devices: None\n");
1377 } else {
1378 dprintf(fd, " Conflicting devices:\n");
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001379 for (size_t i = 0; i < device->mResourceCost.conflictingDevices.size(); i++) {
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -08001380 dprintf(fd, " %s\n",
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001381 device->mResourceCost.conflictingDevices[i].c_str());
1382 }
1383 }
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -08001384 dprintf(fd, " API1 info:\n");
1385 dprintf(fd, " Has a flash unit: %s\n",
1386 device->hasFlashUnit() ? "true" : "false");
1387 hardware::CameraInfo info;
1388 status_t res = device->getCameraInfo(&info);
1389 if (res != OK) {
1390 dprintf(fd, " <Error reading camera info: %s (%d)>\n",
1391 strerror(-res), res);
1392 } else {
1393 dprintf(fd, " Facing: %s\n",
1394 info.facing == hardware::CAMERA_FACING_BACK ? "Back" : "Front");
1395 dprintf(fd, " Orientation: %d\n", info.orientation);
1396 }
1397 CameraMetadata info2;
1398 res = device->getCameraCharacteristics(&info2);
1399 if (res == INVALID_OPERATION) {
1400 dprintf(fd, " API2 not directly supported\n");
1401 } else if (res != OK) {
1402 dprintf(fd, " <Error reading camera characteristics: %s (%d)>\n",
1403 strerror(-res), res);
1404 } else {
1405 dprintf(fd, " API2 camera characteristics:\n");
1406 info2.dump(fd, /*verbosity*/ 2, /*indentation*/ 4);
1407 }
Yin-Chia Yeh487785a2018-01-02 12:06:57 -08001408
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001409 // Dump characteristics of non-standalone physical camera
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07001410 if (device->mIsLogicalCamera) {
1411 for (auto& id : device->mPhysicalIds) {
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001412 // Skip if physical id is an independent camera
1413 if (std::find(mProviderPublicCameraIds.begin(), mProviderPublicCameraIds.end(), id)
1414 != mProviderPublicCameraIds.end()) {
1415 continue;
1416 }
1417
1418 CameraMetadata physicalInfo;
1419 status_t status = device->getPhysicalCameraCharacteristics(id, &physicalInfo);
1420 if (status == OK) {
1421 dprintf(fd, " Physical camera %s characteristics:\n", id.c_str());
1422 physicalInfo.dump(fd, /*verbosity*/ 2, /*indentation*/ 4);
1423 }
1424 }
1425 }
1426
Yin-Chia Yeh487785a2018-01-02 12:06:57 -08001427 dprintf(fd, "== Camera HAL device %s (v%d.%d) dumpState: ==\n", device->mName.c_str(),
1428 device->mVersion.get_major(), device->mVersion.get_minor());
1429 res = device->dumpState(fd);
1430 if (res != OK) {
1431 dprintf(fd, " <Error dumping device %s state: %s (%d)>\n",
1432 device->mName.c_str(), strerror(-res), res);
1433 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001434 }
1435 return OK;
1436}
1437
1438hardware::Return<void> CameraProviderManager::ProviderInfo::cameraDeviceStatusChange(
1439 const hardware::hidl_string& cameraDeviceName,
1440 CameraDeviceStatus newStatus) {
1441 sp<StatusListener> listener;
1442 std::string id;
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001443 bool initialized = false;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001444 {
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001445 std::lock_guard<std::mutex> lock(mLock);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001446 bool known = false;
1447 for (auto& deviceInfo : mDevices) {
1448 if (deviceInfo->mName == cameraDeviceName) {
1449 ALOGI("Camera device %s status is now %s, was %s", cameraDeviceName.c_str(),
1450 deviceStatusToString(newStatus), deviceStatusToString(deviceInfo->mStatus));
1451 deviceInfo->mStatus = newStatus;
1452 // TODO: Handle device removal (NOT_PRESENT)
1453 id = deviceInfo->mId;
1454 known = true;
1455 break;
1456 }
1457 }
1458 // Previously unseen device; status must not be NOT_PRESENT
1459 if (!known) {
1460 if (newStatus == CameraDeviceStatus::NOT_PRESENT) {
1461 ALOGW("Camera provider %s says an unknown camera device %s is not present. Curious.",
1462 mProviderName.c_str(), cameraDeviceName.c_str());
1463 return hardware::Void();
1464 }
1465 addDevice(cameraDeviceName, newStatus, &id);
Guennadi Liakhovetski6034bf52017-12-07 10:28:29 +01001466 } else if (newStatus == CameraDeviceStatus::NOT_PRESENT) {
1467 removeDevice(id);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001468 }
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001469 listener = mManager->getStatusListener();
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001470 initialized = mInitialized;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001471 }
1472 // Call without lock held to allow reentrancy into provider manager
Yin-Chia Yehc3e9d6f2018-02-06 10:56:32 -08001473 // Don't send the callback if providerInfo hasn't been initialized.
1474 // CameraService will initialize device status after provider is
1475 // initialized
1476 if (listener != nullptr && initialized) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001477 listener->onDeviceStatusChanged(String8(id.c_str()), newStatus);
1478 }
1479 return hardware::Void();
1480}
1481
1482hardware::Return<void> CameraProviderManager::ProviderInfo::torchModeStatusChange(
1483 const hardware::hidl_string& cameraDeviceName,
1484 TorchModeStatus newStatus) {
1485 sp<StatusListener> listener;
1486 std::string id;
1487 {
Yin-Chia Yeh52778d42016-12-22 18:20:43 -08001488 std::lock_guard<std::mutex> lock(mManager->mStatusListenerMutex);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001489 bool known = false;
1490 for (auto& deviceInfo : mDevices) {
1491 if (deviceInfo->mName == cameraDeviceName) {
1492 ALOGI("Camera device %s torch status is now %s", cameraDeviceName.c_str(),
1493 torchStatusToString(newStatus));
1494 id = deviceInfo->mId;
1495 known = true;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001496 if (TorchModeStatus::AVAILABLE_ON != newStatus) {
1497 mManager->removeRef(DeviceMode::TORCH, id);
1498 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001499 break;
1500 }
1501 }
1502 if (!known) {
1503 ALOGW("Camera provider %s says an unknown camera %s now has torch status %d. Curious.",
1504 mProviderName.c_str(), cameraDeviceName.c_str(), newStatus);
1505 return hardware::Void();
1506 }
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001507 listener = mManager->getStatusListener();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001508 }
1509 // Call without lock held to allow reentrancy into provider manager
1510 if (listener != nullptr) {
1511 listener->onTorchStatusChanged(String8(id.c_str()), newStatus);
1512 }
1513 return hardware::Void();
1514}
1515
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001516void CameraProviderManager::ProviderInfo::serviceDied(uint64_t cookie,
1517 const wp<hidl::base::V1_0::IBase>& who) {
1518 (void) who;
1519 ALOGI("Camera provider '%s' has died; removing it", mProviderName.c_str());
1520 if (cookie != mId) {
1521 ALOGW("%s: Unexpected serviceDied cookie %" PRIu64 ", expected %" PRIu32,
1522 __FUNCTION__, cookie, mId);
1523 }
1524 mManager->removeProvider(mProviderName);
1525}
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001526
Peter Kalauskas1b3c9072018-11-07 12:41:53 -08001527status_t CameraProviderManager::ProviderInfo::setUpVendorTags() {
1528 if (mVendorTagDescriptor != nullptr)
1529 return OK;
1530
1531 hardware::hidl_vec<VendorTagSection> vts;
1532 Status status;
1533 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001534 const sp<provider::V2_4::ICameraProvider> interface = startProviderInterface();
1535 if (interface == nullptr) {
1536 return DEAD_OBJECT;
1537 }
1538 ret = interface->getVendorTags(
Peter Kalauskas1b3c9072018-11-07 12:41:53 -08001539 [&](auto s, const auto& vendorTagSecs) {
1540 status = s;
1541 if (s == Status::OK) {
1542 vts = vendorTagSecs;
1543 }
1544 });
1545 if (!ret.isOk()) {
1546 ALOGE("%s: Transaction error getting vendor tags from provider '%s': %s",
1547 __FUNCTION__, mProviderName.c_str(), ret.description().c_str());
1548 return DEAD_OBJECT;
1549 }
1550 if (status != Status::OK) {
1551 return mapToStatusT(status);
1552 }
1553
1554 // Read all vendor tag definitions into a descriptor
1555 status_t res;
1556 if ((res = HidlVendorTagDescriptor::createDescriptorFromHidl(vts, /*out*/mVendorTagDescriptor))
1557 != OK) {
1558 ALOGE("%s: Could not generate descriptor from vendor tag operations,"
1559 "received error %s (%d). Camera clients will not be able to use"
1560 "vendor tags", __FUNCTION__, strerror(res), res);
1561 return res;
1562 }
1563
1564 return OK;
1565}
1566
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001567template<class DeviceInfoT>
1568std::unique_ptr<CameraProviderManager::ProviderInfo::DeviceInfo>
1569 CameraProviderManager::ProviderInfo::initializeDeviceInfo(
Emilian Peev71c73a22017-03-21 16:35:51 +00001570 const std::string &name, const metadata_vendor_id_t tagId,
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001571 const std::string &id, uint16_t minorVersion) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001572 Status status;
1573
1574 auto cameraInterface =
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001575 startDeviceInterface<typename DeviceInfoT::InterfaceT>(name);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001576 if (cameraInterface == nullptr) return nullptr;
1577
1578 CameraResourceCost resourceCost;
1579 cameraInterface->getResourceCost([&status, &resourceCost](
1580 Status s, CameraResourceCost cost) {
1581 status = s;
1582 resourceCost = cost;
1583 });
1584 if (status != Status::OK) {
1585 ALOGE("%s: Unable to obtain resource costs for camera device %s: %s", __FUNCTION__,
1586 name.c_str(), statusToString(status));
1587 return nullptr;
1588 }
Shuzhen Wang47283692018-04-24 18:05:02 -07001589
1590 for (auto& conflictName : resourceCost.conflictingDevices) {
1591 uint16_t major, minor;
1592 std::string type, id;
1593 status_t res = parseDeviceName(conflictName, &major, &minor, &type, &id);
1594 if (res != OK) {
1595 ALOGE("%s: Failed to parse conflicting device %s", __FUNCTION__, conflictName.c_str());
1596 return nullptr;
1597 }
1598 conflictName = id;
1599 }
1600
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001601 return std::unique_ptr<DeviceInfo>(
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001602 new DeviceInfoT(name, tagId, id, minorVersion, resourceCost, this,
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001603 mProviderPublicCameraIds, cameraInterface));
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001604}
1605
1606template<class InterfaceT>
1607sp<InterfaceT>
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001608CameraProviderManager::ProviderInfo::startDeviceInterface(const std::string &name) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001609 ALOGE("%s: Device %s: Unknown HIDL device HAL major version %d:", __FUNCTION__,
1610 name.c_str(), InterfaceT::version.get_major());
1611 return nullptr;
1612}
1613
1614template<>
1615sp<device::V1_0::ICameraDevice>
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001616CameraProviderManager::ProviderInfo::startDeviceInterface
1617 <device::V1_0::ICameraDevice>(const std::string &name) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001618 Status status;
1619 sp<device::V1_0::ICameraDevice> cameraInterface;
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001620 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001621 const sp<provider::V2_4::ICameraProvider> interface = startProviderInterface();
1622 if (interface == nullptr) {
1623 return nullptr;
1624 }
1625 ret = interface->getCameraDeviceInterface_V1_x(name, [&status, &cameraInterface](
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001626 Status s, sp<device::V1_0::ICameraDevice> interface) {
1627 status = s;
1628 cameraInterface = interface;
1629 });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001630 if (!ret.isOk()) {
1631 ALOGE("%s: Transaction error trying to obtain interface for camera device %s: %s",
1632 __FUNCTION__, name.c_str(), ret.description().c_str());
1633 return nullptr;
1634 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001635 if (status != Status::OK) {
1636 ALOGE("%s: Unable to obtain interface for camera device %s: %s", __FUNCTION__,
1637 name.c_str(), statusToString(status));
1638 return nullptr;
1639 }
1640 return cameraInterface;
1641}
1642
1643template<>
1644sp<device::V3_2::ICameraDevice>
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001645CameraProviderManager::ProviderInfo::startDeviceInterface
1646 <device::V3_2::ICameraDevice>(const std::string &name) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001647 Status status;
1648 sp<device::V3_2::ICameraDevice> cameraInterface;
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001649 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001650 const sp<provider::V2_4::ICameraProvider> interface = startProviderInterface();
1651 if (interface == nullptr) {
1652 return nullptr;
1653 }
1654 ret = interface->getCameraDeviceInterface_V3_x(name, [&status, &cameraInterface](
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001655 Status s, sp<device::V3_2::ICameraDevice> interface) {
1656 status = s;
1657 cameraInterface = interface;
1658 });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001659 if (!ret.isOk()) {
1660 ALOGE("%s: Transaction error trying to obtain interface for camera device %s: %s",
1661 __FUNCTION__, name.c_str(), ret.description().c_str());
1662 return nullptr;
1663 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001664 if (status != Status::OK) {
1665 ALOGE("%s: Unable to obtain interface for camera device %s: %s", __FUNCTION__,
1666 name.c_str(), statusToString(status));
1667 return nullptr;
1668 }
1669 return cameraInterface;
1670}
1671
1672CameraProviderManager::ProviderInfo::DeviceInfo::~DeviceInfo() {}
1673
1674template<class InterfaceT>
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001675sp<InterfaceT> CameraProviderManager::ProviderInfo::DeviceInfo::startDeviceInterface() {
1676 sp<InterfaceT> device;
1677 ATRACE_CALL();
1678 if (mSavedInterface == nullptr) {
1679 device = mParentProvider->startDeviceInterface<InterfaceT>(mName);
1680 } else {
1681 device = (InterfaceT *) mSavedInterface.get();
1682 }
1683 return device;
1684}
1685
1686template<class InterfaceT>
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001687status_t CameraProviderManager::ProviderInfo::DeviceInfo::setTorchMode(InterfaceT& interface,
1688 bool enabled) {
1689 Status s = interface->setTorchMode(enabled ? TorchMode::ON : TorchMode::OFF);
1690 return mapToStatusT(s);
1691}
1692
1693CameraProviderManager::ProviderInfo::DeviceInfo1::DeviceInfo1(const std::string& name,
Emilian Peev71c73a22017-03-21 16:35:51 +00001694 const metadata_vendor_id_t tagId, const std::string &id,
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001695 uint16_t minorVersion,
1696 const CameraResourceCost& resourceCost,
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001697 sp<ProviderInfo> parentProvider,
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001698 const std::vector<std::string>& publicCameraIds,
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001699 sp<InterfaceT> interface) :
Emilian Peev71c73a22017-03-21 16:35:51 +00001700 DeviceInfo(name, tagId, id, hardware::hidl_version{1, minorVersion},
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001701 publicCameraIds, resourceCost, parentProvider) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001702 // Get default parameters and initialize flash unit availability
1703 // Requires powering on the camera device
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001704 hardware::Return<Status> status = interface->open(nullptr);
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001705 if (!status.isOk()) {
1706 ALOGE("%s: Transaction error opening camera device %s to check for a flash unit: %s",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001707 __FUNCTION__, id.c_str(), status.description().c_str());
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001708 return;
1709 }
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001710 if (status != Status::OK) {
1711 ALOGE("%s: Unable to open camera device %s to check for a flash unit: %s", __FUNCTION__,
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001712 id.c_str(), CameraProviderManager::statusToString(status));
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001713 return;
1714 }
1715 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001716 ret = interface->getParameters([this](const hardware::hidl_string& parms) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001717 mDefaultParameters.unflatten(String8(parms.c_str()));
1718 });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001719 if (!ret.isOk()) {
1720 ALOGE("%s: Transaction error reading camera device %s params to check for a flash unit: %s",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001721 __FUNCTION__, id.c_str(), status.description().c_str());
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001722 return;
1723 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001724 const char *flashMode =
1725 mDefaultParameters.get(CameraParameters::KEY_SUPPORTED_FLASH_MODES);
1726 if (flashMode && strstr(flashMode, CameraParameters::FLASH_MODE_TORCH)) {
1727 mHasFlashUnit = true;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001728 }
1729
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001730 status_t res = cacheCameraInfo(interface);
1731 if (res != OK) {
1732 ALOGE("%s: Could not cache CameraInfo", __FUNCTION__);
1733 return;
1734 }
1735
1736 ret = interface->close();
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001737 if (!ret.isOk()) {
1738 ALOGE("%s: Transaction error closing camera device %s after check for a flash unit: %s",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001739 __FUNCTION__, id.c_str(), status.description().c_str());
1740 }
1741
1742 if (!kEnableLazyHal) {
1743 // Save HAL reference indefinitely
1744 mSavedInterface = interface;
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001745 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001746}
1747
1748CameraProviderManager::ProviderInfo::DeviceInfo1::~DeviceInfo1() {}
1749
1750status_t CameraProviderManager::ProviderInfo::DeviceInfo1::setTorchMode(bool enabled) {
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001751 return setTorchModeForDevice<InterfaceT>(enabled);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001752}
1753
1754status_t CameraProviderManager::ProviderInfo::DeviceInfo1::getCameraInfo(
1755 hardware::CameraInfo *info) const {
1756 if (info == nullptr) return BAD_VALUE;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001757 *info = mInfo;
1758 return OK;
1759}
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001760
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001761status_t CameraProviderManager::ProviderInfo::DeviceInfo1::cacheCameraInfo(
1762 sp<CameraProviderManager::ProviderInfo::DeviceInfo1::InterfaceT> interface) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001763 Status status;
1764 device::V1_0::CameraInfo cInfo;
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001765 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001766 ret = interface->getCameraInfo([&status, &cInfo](Status s, device::V1_0::CameraInfo camInfo) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001767 status = s;
1768 cInfo = camInfo;
1769 });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001770 if (!ret.isOk()) {
1771 ALOGE("%s: Transaction error reading camera info from device %s: %s",
1772 __FUNCTION__, mId.c_str(), ret.description().c_str());
1773 return DEAD_OBJECT;
1774 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001775 if (status != Status::OK) {
1776 return mapToStatusT(status);
1777 }
1778
1779 switch(cInfo.facing) {
1780 case device::V1_0::CameraFacing::BACK:
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001781 mInfo.facing = hardware::CAMERA_FACING_BACK;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001782 break;
1783 case device::V1_0::CameraFacing::EXTERNAL:
1784 // Map external to front for legacy API
1785 case device::V1_0::CameraFacing::FRONT:
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001786 mInfo.facing = hardware::CAMERA_FACING_FRONT;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001787 break;
1788 default:
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001789 ALOGW("%s: Device %s: Unknown camera facing: %d",
1790 __FUNCTION__, mId.c_str(), cInfo.facing);
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001791 mInfo.facing = hardware::CAMERA_FACING_BACK;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001792 }
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001793 mInfo.orientation = cInfo.orientation;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001794
1795 return OK;
1796}
1797
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001798status_t CameraProviderManager::ProviderInfo::DeviceInfo1::dumpState(int fd) {
Yin-Chia Yeh487785a2018-01-02 12:06:57 -08001799 native_handle_t* handle = native_handle_create(1,0);
1800 handle->data[0] = fd;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001801 const sp<InterfaceT> interface = startDeviceInterface<InterfaceT>();
1802 if (interface == nullptr) {
1803 return DEAD_OBJECT;
1804 }
1805 hardware::Return<Status> s = interface->dumpState(handle);
Yin-Chia Yeh487785a2018-01-02 12:06:57 -08001806 native_handle_delete(handle);
1807 if (!s.isOk()) {
1808 return INVALID_OPERATION;
1809 }
1810 return mapToStatusT(s);
1811}
1812
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001813CameraProviderManager::ProviderInfo::DeviceInfo3::DeviceInfo3(const std::string& name,
Emilian Peev71c73a22017-03-21 16:35:51 +00001814 const metadata_vendor_id_t tagId, const std::string &id,
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001815 uint16_t minorVersion,
1816 const CameraResourceCost& resourceCost,
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001817 sp<ProviderInfo> parentProvider,
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001818 const std::vector<std::string>& publicCameraIds,
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001819 sp<InterfaceT> interface) :
Emilian Peev71c73a22017-03-21 16:35:51 +00001820 DeviceInfo(name, tagId, id, hardware::hidl_version{3, minorVersion},
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001821 publicCameraIds, resourceCost, parentProvider) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001822 // Get camera characteristics and initialize flash unit availability
1823 Status status;
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001824 hardware::Return<void> ret;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001825 ret = interface->getCameraCharacteristics([&status, this](Status s,
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001826 device::V3_2::CameraMetadata metadata) {
1827 status = s;
1828 if (s == Status::OK) {
1829 camera_metadata_t *buffer =
1830 reinterpret_cast<camera_metadata_t*>(metadata.data());
Yin-Chia Yeh238ef5f2017-04-18 15:01:15 -07001831 size_t expectedSize = metadata.size();
1832 int res = validate_camera_metadata_structure(buffer, &expectedSize);
1833 if (res == OK || res == CAMERA_METADATA_VALIDATION_SHIFTED) {
1834 set_camera_metadata_vendor_id(buffer, mProviderTagid);
1835 mCameraCharacteristics = buffer;
1836 } else {
1837 ALOGE("%s: Malformed camera metadata received from HAL", __FUNCTION__);
1838 status = Status::INTERNAL_ERROR;
1839 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001840 }
1841 });
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001842 if (!ret.isOk()) {
1843 ALOGE("%s: Transaction error getting camera characteristics for device %s"
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001844 " to check for a flash unit: %s", __FUNCTION__, id.c_str(),
Eino-Ville Talvala8d942f92017-03-13 10:09:51 -07001845 ret.description().c_str());
1846 return;
1847 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001848 if (status != Status::OK) {
1849 ALOGE("%s: Unable to get camera characteristics for device %s: %s (%d)",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001850 __FUNCTION__, id.c_str(), CameraProviderManager::statusToString(status), status);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001851 return;
1852 }
Jayant Chowdharyf949ddd2019-01-29 14:34:11 -08001853
1854 mIsPublicallyHiddenSecureCamera = isPublicallyHiddenSecureCamera();
1855
Shuzhen Wang268a1362018-10-16 16:32:59 -07001856 status_t res = fixupMonochromeTags();
1857 if (OK != res) {
1858 ALOGE("%s: Unable to fix up monochrome tags based for older HAL version: %s (%d)",
1859 __FUNCTION__, strerror(-res), res);
1860 return;
1861 }
Emilian Peeva1185162019-01-30 16:41:43 -08001862 auto stat = addDynamicDepthTags();
1863 if (OK != stat) {
1864 ALOGE("%s: Failed appending dynamic depth tags: %s (%d)", __FUNCTION__, strerror(-stat),
1865 stat);
Emilian Peev4c6d2b52019-01-04 17:13:56 +00001866 }
Shuzhen Wang68ac7ad2019-01-30 14:03:28 -08001867 res = deriveHeicTags();
1868 if (OK != res) {
1869 ALOGE("%s: Unable to derive HEIC tags based on camera and media capabilities: %s (%d)",
1870 __FUNCTION__, strerror(-res), res);
1871 }
1872
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001873 camera_metadata_entry flashAvailable =
1874 mCameraCharacteristics.find(ANDROID_FLASH_INFO_AVAILABLE);
1875 if (flashAvailable.count == 1 &&
1876 flashAvailable.data.u8[0] == ANDROID_FLASH_INFO_AVAILABLE_TRUE) {
1877 mHasFlashUnit = true;
1878 } else {
1879 mHasFlashUnit = false;
1880 }
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001881
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07001882 queryPhysicalCameraIds();
Jayant Chowdharyf949ddd2019-01-29 14:34:11 -08001883
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001884 // Get physical camera characteristics if applicable
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001885 auto castResult = device::V3_5::ICameraDevice::castFrom(interface);
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001886 if (!castResult.isOk()) {
1887 ALOGV("%s: Unable to convert ICameraDevice instance to version 3.5", __FUNCTION__);
1888 return;
1889 }
Peter Kalauskasb7bd4382018-11-15 17:19:48 -08001890 sp<device::V3_5::ICameraDevice> interface_3_5 = castResult;
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001891 if (interface_3_5 == nullptr) {
1892 ALOGE("%s: Converted ICameraDevice instance to nullptr", __FUNCTION__);
1893 return;
1894 }
1895
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07001896 if (mIsLogicalCamera) {
1897 for (auto& id : mPhysicalIds) {
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001898 if (std::find(mPublicCameraIds.begin(), mPublicCameraIds.end(), id) !=
1899 mPublicCameraIds.end()) {
1900 continue;
1901 }
1902
1903 hardware::hidl_string hidlId(id);
1904 ret = interface_3_5->getPhysicalCameraCharacteristics(hidlId,
1905 [&status, &id, this](Status s, device::V3_2::CameraMetadata metadata) {
1906 status = s;
1907 if (s == Status::OK) {
1908 camera_metadata_t *buffer =
1909 reinterpret_cast<camera_metadata_t*>(metadata.data());
1910 size_t expectedSize = metadata.size();
1911 int res = validate_camera_metadata_structure(buffer, &expectedSize);
1912 if (res == OK || res == CAMERA_METADATA_VALIDATION_SHIFTED) {
1913 set_camera_metadata_vendor_id(buffer, mProviderTagid);
1914 mPhysicalCameraCharacteristics[id] = buffer;
1915 } else {
1916 ALOGE("%s: Malformed camera metadata received from HAL", __FUNCTION__);
1917 status = Status::INTERNAL_ERROR;
1918 }
1919 }
1920 });
1921
1922 if (!ret.isOk()) {
1923 ALOGE("%s: Transaction error getting physical camera %s characteristics for %s: %s",
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001924 __FUNCTION__, id.c_str(), id.c_str(), ret.description().c_str());
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07001925 return;
1926 }
1927 if (status != Status::OK) {
1928 ALOGE("%s: Unable to get physical camera %s characteristics for device %s: %s (%d)",
1929 __FUNCTION__, id.c_str(), mId.c_str(),
1930 CameraProviderManager::statusToString(status), status);
1931 return;
1932 }
1933 }
1934 }
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001935
1936 if (!kEnableLazyHal) {
1937 // Save HAL reference indefinitely
1938 mSavedInterface = interface;
1939 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001940}
1941
1942CameraProviderManager::ProviderInfo::DeviceInfo3::~DeviceInfo3() {}
1943
1944status_t CameraProviderManager::ProviderInfo::DeviceInfo3::setTorchMode(bool enabled) {
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001945 return setTorchModeForDevice<InterfaceT>(enabled);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001946}
1947
1948status_t CameraProviderManager::ProviderInfo::DeviceInfo3::getCameraInfo(
1949 hardware::CameraInfo *info) const {
1950 if (info == nullptr) return BAD_VALUE;
1951
1952 camera_metadata_ro_entry facing =
1953 mCameraCharacteristics.find(ANDROID_LENS_FACING);
1954 if (facing.count == 1) {
1955 switch (facing.data.u8[0]) {
1956 case ANDROID_LENS_FACING_BACK:
1957 info->facing = hardware::CAMERA_FACING_BACK;
1958 break;
1959 case ANDROID_LENS_FACING_EXTERNAL:
1960 // Map external to front for legacy API
1961 case ANDROID_LENS_FACING_FRONT:
1962 info->facing = hardware::CAMERA_FACING_FRONT;
1963 break;
1964 }
1965 } else {
1966 ALOGE("%s: Unable to find android.lens.facing static metadata", __FUNCTION__);
1967 return NAME_NOT_FOUND;
1968 }
1969
1970 camera_metadata_ro_entry orientation =
1971 mCameraCharacteristics.find(ANDROID_SENSOR_ORIENTATION);
1972 if (orientation.count == 1) {
1973 info->orientation = orientation.data.i32[0];
1974 } else {
1975 ALOGE("%s: Unable to find android.sensor.orientation static metadata", __FUNCTION__);
1976 return NAME_NOT_FOUND;
1977 }
1978
1979 return OK;
1980}
Emilian Peevf53f66e2017-04-11 14:29:43 +01001981bool CameraProviderManager::ProviderInfo::DeviceInfo3::isAPI1Compatible() const {
1982 bool isBackwardCompatible = false;
1983 camera_metadata_ro_entry_t caps = mCameraCharacteristics.find(
1984 ANDROID_REQUEST_AVAILABLE_CAPABILITIES);
1985 for (size_t i = 0; i < caps.count; i++) {
1986 if (caps.data.u8[i] ==
1987 ANDROID_REQUEST_AVAILABLE_CAPABILITIES_BACKWARD_COMPATIBLE) {
1988 isBackwardCompatible = true;
1989 break;
1990 }
1991 }
1992
1993 return isBackwardCompatible;
1994}
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001995
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001996status_t CameraProviderManager::ProviderInfo::DeviceInfo3::dumpState(int fd) {
Yin-Chia Yeh487785a2018-01-02 12:06:57 -08001997 native_handle_t* handle = native_handle_create(1,0);
1998 handle->data[0] = fd;
Peter Kalauskasa29c1352018-10-10 12:05:42 -07001999 const sp<InterfaceT> interface = startDeviceInterface<InterfaceT>();
2000 if (interface == nullptr) {
2001 return DEAD_OBJECT;
2002 }
2003 auto ret = interface->dumpState(handle);
Yin-Chia Yeh487785a2018-01-02 12:06:57 -08002004 native_handle_delete(handle);
2005 if (!ret.isOk()) {
2006 return INVALID_OPERATION;
2007 }
2008 return OK;
2009}
2010
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08002011status_t CameraProviderManager::ProviderInfo::DeviceInfo3::getCameraCharacteristics(
2012 CameraMetadata *characteristics) const {
2013 if (characteristics == nullptr) return BAD_VALUE;
2014
2015 *characteristics = mCameraCharacteristics;
2016 return OK;
2017}
2018
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07002019status_t CameraProviderManager::ProviderInfo::DeviceInfo3::getPhysicalCameraCharacteristics(
2020 const std::string& physicalCameraId, CameraMetadata *characteristics) const {
2021 if (characteristics == nullptr) return BAD_VALUE;
2022 if (mPhysicalCameraCharacteristics.find(physicalCameraId) ==
2023 mPhysicalCameraCharacteristics.end()) {
2024 return NAME_NOT_FOUND;
2025 }
2026
2027 *characteristics = mPhysicalCameraCharacteristics.at(physicalCameraId);
2028 return OK;
2029}
2030
Emilian Peev35ae8262018-11-08 13:11:32 +00002031status_t CameraProviderManager::ProviderInfo::DeviceInfo3::isSessionConfigurationSupported(
2032 const hardware::camera::device::V3_4::StreamConfiguration &configuration,
Peter Kalauskasa29c1352018-10-10 12:05:42 -07002033 bool *status /*out*/) {
2034
2035 const sp<CameraProviderManager::ProviderInfo::DeviceInfo3::InterfaceT> interface =
2036 this->startDeviceInterface<CameraProviderManager::ProviderInfo::DeviceInfo3::InterfaceT>();
2037 if (interface == nullptr) {
2038 return DEAD_OBJECT;
2039 }
2040 auto castResult = device::V3_5::ICameraDevice::castFrom(interface);
Emilian Peev35ae8262018-11-08 13:11:32 +00002041 sp<hardware::camera::device::V3_5::ICameraDevice> interface_3_5 = castResult;
2042 if (interface_3_5 == nullptr) {
2043 return INVALID_OPERATION;
2044 }
2045
2046 status_t res;
2047 Status callStatus;
2048 auto ret = interface_3_5->isStreamCombinationSupported(configuration,
2049 [&callStatus, &status] (Status s, bool combStatus) {
2050 callStatus = s;
2051 *status = combStatus;
2052 });
2053 if (ret.isOk()) {
2054 switch (callStatus) {
2055 case Status::OK:
2056 // Expected case, do nothing.
2057 res = OK;
2058 break;
2059 case Status::METHOD_NOT_SUPPORTED:
2060 res = INVALID_OPERATION;
2061 break;
2062 default:
2063 ALOGE("%s: Session configuration query failed: %d", __FUNCTION__, callStatus);
2064 res = UNKNOWN_ERROR;
2065 }
2066 } else {
2067 ALOGE("%s: Unexpected binder error: %s", __FUNCTION__, ret.description().c_str());
2068 res = UNKNOWN_ERROR;
2069 }
2070
2071 return res;
2072}
2073
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08002074status_t CameraProviderManager::ProviderInfo::parseProviderName(const std::string& name,
2075 std::string *type, uint32_t *id) {
2076 // Format must be "<type>/<id>"
2077#define ERROR_MSG_PREFIX "%s: Invalid provider name '%s'. " \
2078 "Should match '<type>/<id>' - "
2079
2080 if (!type || !id) return INVALID_OPERATION;
2081
2082 std::string::size_type slashIdx = name.find('/');
2083 if (slashIdx == std::string::npos || slashIdx == name.size() - 1) {
2084 ALOGE(ERROR_MSG_PREFIX
2085 "does not have / separator between type and id",
2086 __FUNCTION__, name.c_str());
2087 return BAD_VALUE;
2088 }
2089
2090 std::string typeVal = name.substr(0, slashIdx);
2091
2092 char *endPtr;
2093 errno = 0;
2094 long idVal = strtol(name.c_str() + slashIdx + 1, &endPtr, 10);
2095 if (errno != 0) {
2096 ALOGE(ERROR_MSG_PREFIX
2097 "cannot parse provider id as an integer: %s (%d)",
2098 __FUNCTION__, name.c_str(), strerror(errno), errno);
2099 return BAD_VALUE;
2100 }
2101 if (endPtr != name.c_str() + name.size()) {
2102 ALOGE(ERROR_MSG_PREFIX
2103 "provider id has unexpected length",
2104 __FUNCTION__, name.c_str());
2105 return BAD_VALUE;
2106 }
2107 if (idVal < 0) {
2108 ALOGE(ERROR_MSG_PREFIX
2109 "id is negative: %ld",
2110 __FUNCTION__, name.c_str(), idVal);
2111 return BAD_VALUE;
2112 }
2113
2114#undef ERROR_MSG_PREFIX
2115
2116 *type = typeVal;
2117 *id = static_cast<uint32_t>(idVal);
2118
2119 return OK;
2120}
2121
Emilian Peev71c73a22017-03-21 16:35:51 +00002122metadata_vendor_id_t CameraProviderManager::ProviderInfo::generateVendorTagId(
2123 const std::string &name) {
2124 metadata_vendor_id_t ret = std::hash<std::string> {} (name);
2125 // CAMERA_METADATA_INVALID_VENDOR_ID is not a valid hash value
2126 if (CAMERA_METADATA_INVALID_VENDOR_ID == ret) {
2127 ret = 0;
2128 }
2129
2130 return ret;
2131}
2132
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08002133status_t CameraProviderManager::ProviderInfo::parseDeviceName(const std::string& name,
2134 uint16_t *major, uint16_t *minor, std::string *type, std::string *id) {
2135
2136 // Format must be "device@<major>.<minor>/<type>/<id>"
2137
2138#define ERROR_MSG_PREFIX "%s: Invalid device name '%s'. " \
2139 "Should match 'device@<major>.<minor>/<type>/<id>' - "
2140
2141 if (!major || !minor || !type || !id) return INVALID_OPERATION;
2142
2143 // Verify starting prefix
2144 const char expectedPrefix[] = "device@";
2145
2146 if (name.find(expectedPrefix) != 0) {
2147 ALOGE(ERROR_MSG_PREFIX
2148 "does not start with '%s'",
2149 __FUNCTION__, name.c_str(), expectedPrefix);
2150 return BAD_VALUE;
2151 }
2152
2153 // Extract major/minor versions
2154 constexpr std::string::size_type atIdx = sizeof(expectedPrefix) - 2;
2155 std::string::size_type dotIdx = name.find('.', atIdx);
2156 if (dotIdx == std::string::npos) {
2157 ALOGE(ERROR_MSG_PREFIX
2158 "does not have @<major>. version section",
2159 __FUNCTION__, name.c_str());
2160 return BAD_VALUE;
2161 }
2162 std::string::size_type typeSlashIdx = name.find('/', dotIdx);
2163 if (typeSlashIdx == std::string::npos) {
2164 ALOGE(ERROR_MSG_PREFIX
2165 "does not have .<minor>/ version section",
2166 __FUNCTION__, name.c_str());
2167 return BAD_VALUE;
2168 }
2169
2170 char *endPtr;
2171 errno = 0;
2172 long majorVal = strtol(name.c_str() + atIdx + 1, &endPtr, 10);
2173 if (errno != 0) {
2174 ALOGE(ERROR_MSG_PREFIX
2175 "cannot parse major version: %s (%d)",
2176 __FUNCTION__, name.c_str(), strerror(errno), errno);
2177 return BAD_VALUE;
2178 }
2179 if (endPtr != name.c_str() + dotIdx) {
2180 ALOGE(ERROR_MSG_PREFIX
2181 "major version has unexpected length",
2182 __FUNCTION__, name.c_str());
2183 return BAD_VALUE;
2184 }
2185 long minorVal = strtol(name.c_str() + dotIdx + 1, &endPtr, 10);
2186 if (errno != 0) {
2187 ALOGE(ERROR_MSG_PREFIX
2188 "cannot parse minor version: %s (%d)",
2189 __FUNCTION__, name.c_str(), strerror(errno), errno);
2190 return BAD_VALUE;
2191 }
2192 if (endPtr != name.c_str() + typeSlashIdx) {
2193 ALOGE(ERROR_MSG_PREFIX
2194 "minor version has unexpected length",
2195 __FUNCTION__, name.c_str());
2196 return BAD_VALUE;
2197 }
2198 if (majorVal < 0 || majorVal > UINT16_MAX || minorVal < 0 || minorVal > UINT16_MAX) {
2199 ALOGE(ERROR_MSG_PREFIX
2200 "major/minor version is out of range of uint16_t: %ld.%ld",
2201 __FUNCTION__, name.c_str(), majorVal, minorVal);
2202 return BAD_VALUE;
2203 }
2204
2205 // Extract type and id
2206
2207 std::string::size_type instanceSlashIdx = name.find('/', typeSlashIdx + 1);
2208 if (instanceSlashIdx == std::string::npos) {
2209 ALOGE(ERROR_MSG_PREFIX
2210 "does not have /<type>/ component",
2211 __FUNCTION__, name.c_str());
2212 return BAD_VALUE;
2213 }
2214 std::string typeVal = name.substr(typeSlashIdx + 1, instanceSlashIdx - typeSlashIdx - 1);
2215
2216 if (instanceSlashIdx == name.size() - 1) {
2217 ALOGE(ERROR_MSG_PREFIX
2218 "does not have an /<id> component",
2219 __FUNCTION__, name.c_str());
2220 return BAD_VALUE;
2221 }
2222 std::string idVal = name.substr(instanceSlashIdx + 1);
2223
2224#undef ERROR_MSG_PREFIX
2225
2226 *major = static_cast<uint16_t>(majorVal);
2227 *minor = static_cast<uint16_t>(minorVal);
2228 *type = typeVal;
2229 *id = idVal;
2230
2231 return OK;
2232}
2233
2234
2235
2236CameraProviderManager::ProviderInfo::~ProviderInfo() {
2237 // Destruction of ProviderInfo is only supposed to happen when the respective
2238 // CameraProvider interface dies, so do not unregister callbacks.
2239
2240}
2241
2242status_t CameraProviderManager::mapToStatusT(const Status& s) {
2243 switch(s) {
2244 case Status::OK:
2245 return OK;
2246 case Status::ILLEGAL_ARGUMENT:
2247 return BAD_VALUE;
2248 case Status::CAMERA_IN_USE:
2249 return -EBUSY;
2250 case Status::MAX_CAMERAS_IN_USE:
2251 return -EUSERS;
2252 case Status::METHOD_NOT_SUPPORTED:
2253 return UNKNOWN_TRANSACTION;
2254 case Status::OPERATION_NOT_SUPPORTED:
2255 return INVALID_OPERATION;
2256 case Status::CAMERA_DISCONNECTED:
2257 return DEAD_OBJECT;
2258 case Status::INTERNAL_ERROR:
2259 return INVALID_OPERATION;
2260 }
2261 ALOGW("Unexpected HAL status code %d", s);
2262 return INVALID_OPERATION;
2263}
2264
2265const char* CameraProviderManager::statusToString(const Status& s) {
2266 switch(s) {
2267 case Status::OK:
2268 return "OK";
2269 case Status::ILLEGAL_ARGUMENT:
2270 return "ILLEGAL_ARGUMENT";
2271 case Status::CAMERA_IN_USE:
2272 return "CAMERA_IN_USE";
2273 case Status::MAX_CAMERAS_IN_USE:
2274 return "MAX_CAMERAS_IN_USE";
2275 case Status::METHOD_NOT_SUPPORTED:
2276 return "METHOD_NOT_SUPPORTED";
2277 case Status::OPERATION_NOT_SUPPORTED:
2278 return "OPERATION_NOT_SUPPORTED";
2279 case Status::CAMERA_DISCONNECTED:
2280 return "CAMERA_DISCONNECTED";
2281 case Status::INTERNAL_ERROR:
2282 return "INTERNAL_ERROR";
2283 }
2284 ALOGW("Unexpected HAL status code %d", s);
2285 return "UNKNOWN_ERROR";
2286}
2287
2288const char* CameraProviderManager::deviceStatusToString(const CameraDeviceStatus& s) {
2289 switch(s) {
2290 case CameraDeviceStatus::NOT_PRESENT:
2291 return "NOT_PRESENT";
2292 case CameraDeviceStatus::PRESENT:
2293 return "PRESENT";
2294 case CameraDeviceStatus::ENUMERATING:
2295 return "ENUMERATING";
2296 }
2297 ALOGW("Unexpected HAL device status code %d", s);
2298 return "UNKNOWN_STATUS";
2299}
2300
2301const char* CameraProviderManager::torchStatusToString(const TorchModeStatus& s) {
2302 switch(s) {
2303 case TorchModeStatus::NOT_AVAILABLE:
2304 return "NOT_AVAILABLE";
2305 case TorchModeStatus::AVAILABLE_OFF:
2306 return "AVAILABLE_OFF";
2307 case TorchModeStatus::AVAILABLE_ON:
2308 return "AVAILABLE_ON";
2309 }
2310 ALOGW("Unexpected HAL torch mode status code %d", s);
2311 return "UNKNOWN_STATUS";
2312}
2313
Yin-Chia Yeh067428c2017-01-13 15:19:24 -08002314
2315status_t HidlVendorTagDescriptor::createDescriptorFromHidl(
Peter Kalauskasb7bd4382018-11-15 17:19:48 -08002316 const hardware::hidl_vec<common::V1_0::VendorTagSection>& vts,
Yin-Chia Yeh067428c2017-01-13 15:19:24 -08002317 /*out*/
2318 sp<VendorTagDescriptor>& descriptor) {
2319
2320 int tagCount = 0;
2321
2322 for (size_t s = 0; s < vts.size(); s++) {
2323 tagCount += vts[s].tags.size();
2324 }
2325
2326 if (tagCount < 0 || tagCount > INT32_MAX) {
2327 ALOGE("%s: tag count %d from vendor tag sections is invalid.", __FUNCTION__, tagCount);
2328 return BAD_VALUE;
2329 }
2330
2331 Vector<uint32_t> tagArray;
2332 LOG_ALWAYS_FATAL_IF(tagArray.resize(tagCount) != tagCount,
2333 "%s: too many (%u) vendor tags defined.", __FUNCTION__, tagCount);
2334
2335
2336 sp<HidlVendorTagDescriptor> desc = new HidlVendorTagDescriptor();
2337 desc->mTagCount = tagCount;
2338
2339 SortedVector<String8> sections;
2340 KeyedVector<uint32_t, String8> tagToSectionMap;
2341
2342 int idx = 0;
2343 for (size_t s = 0; s < vts.size(); s++) {
Peter Kalauskasb7bd4382018-11-15 17:19:48 -08002344 const common::V1_0::VendorTagSection& section = vts[s];
Yin-Chia Yeh067428c2017-01-13 15:19:24 -08002345 const char *sectionName = section.sectionName.c_str();
2346 if (sectionName == NULL) {
2347 ALOGE("%s: no section name defined for vendor tag section %zu.", __FUNCTION__, s);
2348 return BAD_VALUE;
2349 }
2350 String8 sectionString(sectionName);
2351 sections.add(sectionString);
2352
2353 for (size_t j = 0; j < section.tags.size(); j++) {
2354 uint32_t tag = section.tags[j].tagId;
2355 if (tag < CAMERA_METADATA_VENDOR_TAG_BOUNDARY) {
2356 ALOGE("%s: vendor tag %d not in vendor tag section.", __FUNCTION__, tag);
2357 return BAD_VALUE;
2358 }
2359
2360 tagArray.editItemAt(idx++) = section.tags[j].tagId;
2361
2362 const char *tagName = section.tags[j].tagName.c_str();
2363 if (tagName == NULL) {
2364 ALOGE("%s: no tag name defined for vendor tag %d.", __FUNCTION__, tag);
2365 return BAD_VALUE;
2366 }
2367 desc->mTagToNameMap.add(tag, String8(tagName));
2368 tagToSectionMap.add(tag, sectionString);
2369
2370 int tagType = (int) section.tags[j].tagType;
2371 if (tagType < 0 || tagType >= NUM_TYPES) {
2372 ALOGE("%s: tag type %d from vendor ops does not exist.", __FUNCTION__, tagType);
2373 return BAD_VALUE;
2374 }
2375 desc->mTagToTypeMap.add(tag, tagType);
2376 }
2377 }
2378
2379 desc->mSections = sections;
2380
2381 for (size_t i = 0; i < tagArray.size(); ++i) {
2382 uint32_t tag = tagArray[i];
2383 String8 sectionString = tagToSectionMap.valueFor(tag);
2384
2385 // Set up tag to section index map
2386 ssize_t index = sections.indexOf(sectionString);
2387 LOG_ALWAYS_FATAL_IF(index < 0, "index %zd must be non-negative", index);
2388 desc->mTagToSectionMap.add(tag, static_cast<uint32_t>(index));
2389
2390 // Set up reverse mapping
2391 ssize_t reverseIndex = -1;
2392 if ((reverseIndex = desc->mReverseMapping.indexOfKey(sectionString)) < 0) {
2393 KeyedVector<String8, uint32_t>* nameMapper = new KeyedVector<String8, uint32_t>();
2394 reverseIndex = desc->mReverseMapping.add(sectionString, nameMapper);
2395 }
2396 desc->mReverseMapping[reverseIndex]->add(desc->mTagToNameMap.valueFor(tag), tag);
2397 }
2398
George Burgess IVa0b84962017-08-29 17:46:19 -07002399 descriptor = std::move(desc);
Yin-Chia Yeh067428c2017-01-13 15:19:24 -08002400 return OK;
2401}
2402
Shuzhen Wange8aceb52018-05-21 12:00:56 -07002403status_t CameraProviderManager::getCameraCharacteristicsLocked(const std::string &id,
2404 CameraMetadata* characteristics) const {
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07002405 auto deviceInfo = findDeviceInfoLocked(id, /*minVersion*/ {3,0}, /*maxVersion*/ {5,0});
2406 if (deviceInfo != nullptr) {
2407 return deviceInfo->getCameraCharacteristics(characteristics);
2408 }
Shuzhen Wange8aceb52018-05-21 12:00:56 -07002409
Shuzhen Wangf9d2c022018-08-21 12:07:35 -07002410 // Find hidden physical camera characteristics
2411 for (auto& provider : mProviders) {
2412 for (auto& deviceInfo : provider->mDevices) {
2413 status_t res = deviceInfo->getPhysicalCameraCharacteristics(id, characteristics);
2414 if (res != NAME_NOT_FOUND) return res;
2415 }
2416 }
2417
2418 return NAME_NOT_FOUND;
Shuzhen Wange8aceb52018-05-21 12:00:56 -07002419}
2420
2421void CameraProviderManager::filterLogicalCameraIdsLocked(
2422 std::vector<std::string>& deviceIds) const
2423{
2424 std::unordered_set<std::string> removedIds;
2425
2426 for (auto& deviceId : deviceIds) {
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07002427 auto deviceInfo = findDeviceInfoLocked(deviceId);
2428 if (deviceInfo == nullptr) continue;
Shuzhen Wange8aceb52018-05-21 12:00:56 -07002429
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07002430 if (!deviceInfo->mIsLogicalCamera) {
Shuzhen Wange8aceb52018-05-21 12:00:56 -07002431 continue;
2432 }
Shuzhen Wang03d8cc12018-09-12 14:17:09 -07002433 // idCombo contains the ids of a logical camera and its physical cameras
2434 std::vector<std::string> idCombo = deviceInfo->mPhysicalIds;
Shuzhen Wange8aceb52018-05-21 12:00:56 -07002435 idCombo.push_back(deviceId);
2436
2437 for (auto& id : deviceIds) {
2438 auto foundId = std::find(idCombo.begin(), idCombo.end(), id);
2439 if (foundId == idCombo.end()) {
2440 continue;
2441 }
2442
2443 idCombo.erase(foundId);
2444 removedIds.insert(idCombo.begin(), idCombo.end());
2445 break;
2446 }
2447 }
2448
2449 deviceIds.erase(std::remove_if(deviceIds.begin(), deviceIds.end(),
2450 [&removedIds](const std::string& s) {return removedIds.find(s) != removedIds.end();}),
2451 deviceIds.end());
2452}
Yin-Chia Yeh067428c2017-01-13 15:19:24 -08002453
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08002454} // namespace android