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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
Yin-Chia Yeh65405092017-01-13 15:42:28 -080023#include <chrono>
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080024#include <android/hidl/manager/1.0/IServiceManager.h>
25#include <hidl/ServiceManagement.h>
26
27namespace android {
28
29using namespace ::android::hardware::camera;
30using namespace ::android::hardware::camera::common::V1_0;
31
32namespace {
33// Hardcoded name for the passthrough HAL implementation, since it can't be discovered via the
34// service manager
35const std::string kLegacyProviderName("legacy/0");
36
37// Slash-separated list of provider types to consider for use via the old camera API
38const std::string kStandardProviderTypes("internal/legacy");
39
40} // anonymous namespace
41
42CameraProviderManager::HardwareServiceInteractionProxy
43CameraProviderManager::sHardwareServiceInteractionProxy{};
44
45CameraProviderManager::~CameraProviderManager() {
46}
47
48status_t CameraProviderManager::initialize(wp<CameraProviderManager::StatusListener> listener,
49 ServiceInteractionProxy* proxy) {
Yin-Chia Yeh65405092017-01-13 15:42:28 -080050 int numProviders = 0;
51 {
52 std::lock_guard<std::mutex> lock(mInterfaceMutex);
53 if (proxy == nullptr) {
54 ALOGE("%s: No valid service interaction proxy provided", __FUNCTION__);
55 return BAD_VALUE;
56 }
57 mListener = listener;
58 mServiceProxy = proxy;
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080059
Yin-Chia Yeh65405092017-01-13 15:42:28 -080060 // Registering will trigger notifications for all already-known providers
61 bool success = mServiceProxy->registerForNotifications(
62 /* instance name, empty means no filter */ "",
63 this);
64 if (!success) {
65 ALOGE("%s: Unable to register with hardware service manager for notifications "
66 "about camera providers", __FUNCTION__);
67 return INVALID_OPERATION;
68 }
69 numProviders = mProviders.size();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080070 }
71
Yin-Chia Yeh65405092017-01-13 15:42:28 -080072 if (numProviders == 0) {
73 // Remote provider might have not been initialized
74 // Wait for a bit and see if we get one registered
75 std::mutex mtx;
76 std::unique_lock<std::mutex> lock(mtx);
77 mProviderRegistered.wait_for(lock, std::chrono::seconds(15));
78 if (mProviders.size() == 0) {
79 ALOGI("%s: Unable to get one registered provider within timeout!",
80 __FUNCTION__);
81 std::lock_guard<std::mutex> lock(mInterfaceMutex);
82 // See if there's a passthrough HAL, but let's not complain if there's not
83 addProvider(kLegacyProviderName, /*expected*/ false);
84 }
85 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -080086
87 return OK;
88}
89
90int CameraProviderManager::getCameraCount() const {
91 std::lock_guard<std::mutex> lock(mInterfaceMutex);
92 int count = 0;
93 for (auto& provider : mProviders) {
94 count += provider->mDevices.size();
95 }
96 return count;
97}
98
99int CameraProviderManager::getStandardCameraCount() const {
100 std::lock_guard<std::mutex> lock(mInterfaceMutex);
101 int count = 0;
102 for (auto& provider : mProviders) {
103 if (kStandardProviderTypes.find(provider->getType()) != std::string::npos) {
104 count += provider->mDevices.size();
105 }
106 }
107 return count;
108}
109
110std::vector<std::string> CameraProviderManager::getCameraDeviceIds() const {
111 std::lock_guard<std::mutex> lock(mInterfaceMutex);
112 std::vector<std::string> deviceIds;
113 for (auto& provider : mProviders) {
114 for (auto& deviceInfo : provider->mDevices) {
115 deviceIds.push_back(deviceInfo->mId);
116 }
117 }
118 return deviceIds;
119}
120
121bool CameraProviderManager::isValidDevice(const std::string &id, uint16_t majorVersion) const {
122 std::lock_guard<std::mutex> lock(mInterfaceMutex);
123 return isValidDeviceLocked(id, majorVersion);
124}
125
126bool CameraProviderManager::isValidDeviceLocked(const std::string &id, uint16_t majorVersion) const {
127 for (auto& provider : mProviders) {
128 for (auto& deviceInfo : provider->mDevices) {
129 if (deviceInfo->mId == id && deviceInfo->mVersion.get_major() == majorVersion) {
130 return true;
131 }
132 }
133 }
134 return false;
135}
136
137bool CameraProviderManager::hasFlashUnit(const std::string &id) const {
138 std::lock_guard<std::mutex> lock(mInterfaceMutex);
139
140 auto deviceInfo = findDeviceInfoLocked(id);
141 if (deviceInfo == nullptr) return false;
142
143 return deviceInfo->hasFlashUnit();
144}
145
146status_t CameraProviderManager::getResourceCost(const std::string &id,
147 CameraResourceCost* cost) const {
148 std::lock_guard<std::mutex> lock(mInterfaceMutex);
149
150 auto deviceInfo = findDeviceInfoLocked(id);
151 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
152
153 *cost = deviceInfo->mResourceCost;
154 return OK;
155}
156
157status_t CameraProviderManager::getCameraInfo(const std::string &id,
158 hardware::CameraInfo* info) const {
159 std::lock_guard<std::mutex> lock(mInterfaceMutex);
160
161 auto deviceInfo = findDeviceInfoLocked(id);
162 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
163
164 return deviceInfo->getCameraInfo(info);
165}
166
167status_t CameraProviderManager::getCameraCharacteristics(const std::string &id,
168 CameraMetadata* characteristics) const {
169 std::lock_guard<std::mutex> lock(mInterfaceMutex);
170
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800171 auto deviceInfo = findDeviceInfoLocked(id, /*minVersion*/ {3,0}, /*maxVersion*/ {4,0});
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800172 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
173
174 return deviceInfo->getCameraCharacteristics(characteristics);
175}
176
177status_t CameraProviderManager::getHighestSupportedVersion(const std::string &id,
178 hardware::hidl_version *v) {
179 std::lock_guard<std::mutex> lock(mInterfaceMutex);
180
181 hardware::hidl_version maxVersion{0,0};
182 bool found = false;
183 for (auto& provider : mProviders) {
184 for (auto& deviceInfo : provider->mDevices) {
185 if (deviceInfo->mId == id) {
186 if (deviceInfo->mVersion > maxVersion) {
187 maxVersion = deviceInfo->mVersion;
188 found = true;
189 }
190 }
191 }
192 }
193 if (!found) {
194 return NAME_NOT_FOUND;
195 }
196 *v = maxVersion;
197 return OK;
198}
199
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800200status_t CameraProviderManager::setTorchMode(const std::string &id, bool enabled) {
201 std::lock_guard<std::mutex> lock(mInterfaceMutex);
202
203 auto deviceInfo = findDeviceInfoLocked(id);
204 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
205
206 return deviceInfo->setTorchMode(enabled);
207}
208
Yin-Chia Yeh067428c2017-01-13 15:19:24 -0800209status_t CameraProviderManager::setUpVendorTags() {
210 // TODO (b/34275821): support aggregating vendor tags for more than one provider
211 for (auto& provider : mProviders) {
212 hardware::hidl_vec<VendorTagSection> vts;
213 Status status;
214 provider->mInterface->getVendorTags(
215 [&](auto s, const auto& vendorTagSecs) {
216 status = s;
217 if (s == Status::OK) {
218 vts = vendorTagSecs;
219 }
220 });
221
222 if (status != Status::OK) {
223 return mapToStatusT(status);
224 }
225
226 VendorTagDescriptor::clearGlobalVendorTagDescriptor();
227
228 // Read all vendor tag definitions into a descriptor
229 sp<VendorTagDescriptor> desc;
230 status_t res;
231 if ((res = HidlVendorTagDescriptor::createDescriptorFromHidl(vts, /*out*/desc))
232 != OK) {
233 ALOGE("%s: Could not generate descriptor from vendor tag operations,"
234 "received error %s (%d). Camera clients will not be able to use"
235 "vendor tags", __FUNCTION__, strerror(res), res);
236 return res;
237 }
238
239 // Set the global descriptor to use with camera metadata
240 VendorTagDescriptor::setAsGlobalVendorTagDescriptor(desc);
241 }
242 return OK;
243}
244
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800245status_t CameraProviderManager::openSession(const std::string &id,
246 const sp<hardware::camera::device::V3_2::ICameraDeviceCallback>& callback,
247 /*out*/
248 sp<hardware::camera::device::V3_2::ICameraDeviceSession> *session) {
249
250 std::lock_guard<std::mutex> lock(mInterfaceMutex);
251
252 auto deviceInfo = findDeviceInfoLocked(id,
253 /*minVersion*/ {3,0}, /*maxVersion*/ {4,0});
254 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
255
256 auto *deviceInfo3 = static_cast<ProviderInfo::DeviceInfo3*>(deviceInfo);
257
258 Status status;
259 deviceInfo3->mInterface->open(callback, [&status, &session]
260 (Status s, const sp<device::V3_2::ICameraDeviceSession>& cameraSession) {
261 status = s;
262 if (status == Status::OK) {
263 *session = cameraSession;
264 }
265 });
266 return mapToStatusT(status);
267}
268
269status_t CameraProviderManager::openSession(const std::string &id,
270 const sp<hardware::camera::device::V1_0::ICameraDeviceCallback>& callback,
271 /*out*/
272 sp<hardware::camera::device::V1_0::ICameraDevice> *session) {
273
274 std::lock_guard<std::mutex> lock(mInterfaceMutex);
275
276 auto deviceInfo = findDeviceInfoLocked(id,
277 /*minVersion*/ {1,0}, /*maxVersion*/ {2,0});
278 if (deviceInfo == nullptr) return NAME_NOT_FOUND;
279
280 auto *deviceInfo1 = static_cast<ProviderInfo::DeviceInfo1*>(deviceInfo);
281
282 Status status = deviceInfo1->mInterface->open(callback);
283 if (status == Status::OK) {
284 *session = deviceInfo1->mInterface;
285 }
286 return mapToStatusT(status);
287}
288
289
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800290hardware::Return<void> CameraProviderManager::onRegistration(
291 const hardware::hidl_string& /*fqName*/,
292 const hardware::hidl_string& name,
293 bool /*preexisting*/) {
294 std::lock_guard<std::mutex> lock(mInterfaceMutex);
295
296 addProvider(name);
Yin-Chia Yeh65405092017-01-13 15:42:28 -0800297 mProviderRegistered.notify_one();
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800298 return hardware::Return<void>();
299}
300
301status_t CameraProviderManager::dump(int fd, const Vector<String16>& args) {
302 std::lock_guard<std::mutex> lock(mInterfaceMutex);
303
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800304 for (auto& provider : mProviders) {
305 provider->dump(fd, args);
306 }
307 return OK;
308}
309
310CameraProviderManager::ProviderInfo::DeviceInfo* CameraProviderManager::findDeviceInfoLocked(
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800311 const std::string& id,
312 hardware::hidl_version minVersion, hardware::hidl_version maxVersion) const {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800313 for (auto& provider : mProviders) {
314 for (auto& deviceInfo : provider->mDevices) {
Eino-Ville Talvala0b1cb142016-12-19 16:29:17 -0800315 if (deviceInfo->mId == id &&
316 minVersion <= deviceInfo->mVersion && maxVersion >= deviceInfo->mVersion) {
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800317 return deviceInfo.get();
318 }
319 }
320 }
321 return nullptr;
322}
323
324
325status_t CameraProviderManager::addProvider(const std::string& newProvider, bool expected) {
326 for (const auto& providerInfo : mProviders) {
327 if (providerInfo->mProviderName == newProvider) {
328 ALOGW("%s: Camera provider HAL with name '%s' already registered", __FUNCTION__,
329 newProvider.c_str());
330 return ALREADY_EXISTS;
331 }
332 }
333 sp<provider::V2_4::ICameraProvider> interface =
334 mServiceProxy->getService(newProvider);
335
336 if (interface == nullptr) {
337 if (expected) {
338 ALOGW("%s: Camera provider HAL '%s' is not actually available", __FUNCTION__,
339 newProvider.c_str());
340 return BAD_VALUE;
341 } else {
342 // Not guaranteed to be found, so not an error if it wasn't
343 return OK;
344 }
345 }
346
347 sp<ProviderInfo> providerInfo =
348 new ProviderInfo(newProvider, interface, this);
349 status_t res = providerInfo->initialize();
350 if (res != OK) {
351 return res;
352 }
353
354 mProviders.push_back(providerInfo);
355
356 return OK;
357}
358
359status_t CameraProviderManager::removeProvider(const std::string& provider) {
360 for (auto it = mProviders.begin(); it != mProviders.end(); it++) {
361 if ((*it)->mProviderName == provider) {
362 mProviders.erase(it);
363 return OK;
364 }
365 }
366 ALOGW("%s: Camera provider HAL with name '%s' is not registered", __FUNCTION__,
367 provider.c_str());
368 return NAME_NOT_FOUND;
369}
370
371/**** Methods for ProviderInfo ****/
372
373
374CameraProviderManager::ProviderInfo::ProviderInfo(
375 const std::string &providerName,
376 sp<provider::V2_4::ICameraProvider>& interface,
377 CameraProviderManager *manager) :
378 mProviderName(providerName),
379 mInterface(interface),
380 mManager(manager) {
381 (void) mManager;
382}
383
384status_t CameraProviderManager::ProviderInfo::initialize() {
385 status_t res = parseProviderName(mProviderName, &mType, &mId);
386 if (res != OK) {
387 ALOGE("%s: Invalid provider name, ignoring", __FUNCTION__);
388 return BAD_VALUE;
389 }
Yin-Chia Yeh65405092017-01-13 15:42:28 -0800390 ALOGI("Connecting to new camera provider: %s, isRemote? %d",
391 mProviderName.c_str(), mInterface->isRemote());
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800392 Status status = mInterface->setCallback(this);
393 if (status != Status::OK) {
394 ALOGE("%s: Unable to register callbacks with camera provider '%s'",
395 __FUNCTION__, mProviderName.c_str());
396 return mapToStatusT(status);
397 }
398 // TODO: Register for hw binder death notifications as well
399
400 // Get initial list of camera devices, if any
401 std::vector<std::string> devices;
402 mInterface->getCameraIdList([&status, &devices](
403 Status idStatus,
404 const hardware::hidl_vec<hardware::hidl_string>& cameraDeviceNames) {
405 status = idStatus;
406 if (status == Status::OK) {
407 for (size_t i = 0; i < cameraDeviceNames.size(); i++) {
408 devices.push_back(cameraDeviceNames[i]);
409 }
410 } });
411
412 if (status != Status::OK) {
413 ALOGE("%s: Unable to query for camera devices from provider '%s'",
414 __FUNCTION__, mProviderName.c_str());
415 return mapToStatusT(status);
416 }
417
418 for (auto& device : devices) {
419 status_t res = addDevice(device);
420 if (res != OK) {
421 ALOGE("%s: Unable to enumerate camera device '%s': %s (%d)",
422 __FUNCTION__, device.c_str(), strerror(-res), res);
423 }
424 }
425
426 ALOGI("Camera provider %s ready with %zu camera devices",
427 mProviderName.c_str(), mDevices.size());
428
429 return OK;
430}
431
432const std::string& CameraProviderManager::ProviderInfo::getType() const {
433 return mType;
434}
435
436status_t CameraProviderManager::ProviderInfo::addDevice(const std::string& name,
437 CameraDeviceStatus initialStatus, /*out*/ std::string* parsedId) {
438
439 ALOGI("Enumerating new camera device: %s", name.c_str());
440
441 uint16_t major, minor;
442 std::string type, id;
443
444 status_t res = parseDeviceName(name, &major, &minor, &type, &id);
445 if (res != OK) {
446 return res;
447 }
448 if (type != mType) {
449 ALOGE("%s: Device type %s does not match provider type %s", __FUNCTION__,
450 type.c_str(), mType.c_str());
451 return BAD_VALUE;
452 }
453 if (mManager->isValidDeviceLocked(id, major)) {
454 ALOGE("%s: Device %s: ID %s is already in use for device major version %d", __FUNCTION__,
455 name.c_str(), id.c_str(), major);
456 return BAD_VALUE;
457 }
458
459 std::unique_ptr<DeviceInfo> deviceInfo;
460 switch (major) {
461 case 1:
462 deviceInfo = initializeDeviceInfo<DeviceInfo1>(name, id, minor);
463 break;
464 case 3:
465 deviceInfo = initializeDeviceInfo<DeviceInfo3>(name, id, minor);
466 break;
467 default:
468 ALOGE("%s: Device %s: Unknown HIDL device HAL major version %d:", __FUNCTION__,
469 name.c_str(), major);
470 return BAD_VALUE;
471 }
472 if (deviceInfo == nullptr) return BAD_VALUE;
473 deviceInfo->mStatus = initialStatus;
474
475 mDevices.push_back(std::move(deviceInfo));
476
477 if (parsedId != nullptr) {
478 *parsedId = id;
479 }
480 return OK;
481}
482
483status_t CameraProviderManager::ProviderInfo::dump(int fd, const Vector<String16>&) const {
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -0800484 dprintf(fd, "== Camera Provider HAL %s (v2.4) static info: %zu devices: ==\n",
485 mProviderName.c_str(), mDevices.size());
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800486
487 for (auto& device : mDevices) {
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -0800488 dprintf(fd, "== Camera HAL device %s (v%d.%d) static information: ==\n", device->mName.c_str(),
489 device->mVersion.get_major(), device->mVersion.get_minor());
490 dprintf(fd, " Resource cost: %d\n", device->mResourceCost.resourceCost);
491 if (device->mResourceCost.conflictingDevices.size() == 0) {
492 dprintf(fd, " Conflicting devices: None\n");
493 } else {
494 dprintf(fd, " Conflicting devices:\n");
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800495 for (size_t i = 0; i < device->mResourceCost.conflictingDevices.size(); i++) {
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -0800496 dprintf(fd, " %s\n",
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800497 device->mResourceCost.conflictingDevices[i].c_str());
498 }
499 }
Eino-Ville Talvalad00111e2017-01-31 11:59:12 -0800500 dprintf(fd, " API1 info:\n");
501 dprintf(fd, " Has a flash unit: %s\n",
502 device->hasFlashUnit() ? "true" : "false");
503 hardware::CameraInfo info;
504 status_t res = device->getCameraInfo(&info);
505 if (res != OK) {
506 dprintf(fd, " <Error reading camera info: %s (%d)>\n",
507 strerror(-res), res);
508 } else {
509 dprintf(fd, " Facing: %s\n",
510 info.facing == hardware::CAMERA_FACING_BACK ? "Back" : "Front");
511 dprintf(fd, " Orientation: %d\n", info.orientation);
512 }
513 CameraMetadata info2;
514 res = device->getCameraCharacteristics(&info2);
515 if (res == INVALID_OPERATION) {
516 dprintf(fd, " API2 not directly supported\n");
517 } else if (res != OK) {
518 dprintf(fd, " <Error reading camera characteristics: %s (%d)>\n",
519 strerror(-res), res);
520 } else {
521 dprintf(fd, " API2 camera characteristics:\n");
522 info2.dump(fd, /*verbosity*/ 2, /*indentation*/ 4);
523 }
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800524 }
525 return OK;
526}
527
528hardware::Return<void> CameraProviderManager::ProviderInfo::cameraDeviceStatusChange(
529 const hardware::hidl_string& cameraDeviceName,
530 CameraDeviceStatus newStatus) {
531 sp<StatusListener> listener;
532 std::string id;
533 {
Yin-Chia Yeh52778d42016-12-22 18:20:43 -0800534 std::lock_guard<std::mutex> lock(mManager->mStatusListenerMutex);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800535 bool known = false;
536 for (auto& deviceInfo : mDevices) {
537 if (deviceInfo->mName == cameraDeviceName) {
538 ALOGI("Camera device %s status is now %s, was %s", cameraDeviceName.c_str(),
539 deviceStatusToString(newStatus), deviceStatusToString(deviceInfo->mStatus));
540 deviceInfo->mStatus = newStatus;
541 // TODO: Handle device removal (NOT_PRESENT)
542 id = deviceInfo->mId;
543 known = true;
544 break;
545 }
546 }
547 // Previously unseen device; status must not be NOT_PRESENT
548 if (!known) {
549 if (newStatus == CameraDeviceStatus::NOT_PRESENT) {
550 ALOGW("Camera provider %s says an unknown camera device %s is not present. Curious.",
551 mProviderName.c_str(), cameraDeviceName.c_str());
552 return hardware::Void();
553 }
554 addDevice(cameraDeviceName, newStatus, &id);
555 }
556 listener = mManager->mListener.promote();
557 }
558 // Call without lock held to allow reentrancy into provider manager
559 if (listener != nullptr) {
560 listener->onDeviceStatusChanged(String8(id.c_str()), newStatus);
561 }
562 return hardware::Void();
563}
564
565hardware::Return<void> CameraProviderManager::ProviderInfo::torchModeStatusChange(
566 const hardware::hidl_string& cameraDeviceName,
567 TorchModeStatus newStatus) {
568 sp<StatusListener> listener;
569 std::string id;
570 {
Yin-Chia Yeh52778d42016-12-22 18:20:43 -0800571 std::lock_guard<std::mutex> lock(mManager->mStatusListenerMutex);
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -0800572 bool known = false;
573 for (auto& deviceInfo : mDevices) {
574 if (deviceInfo->mName == cameraDeviceName) {
575 ALOGI("Camera device %s torch status is now %s", cameraDeviceName.c_str(),
576 torchStatusToString(newStatus));
577 id = deviceInfo->mId;
578 known = true;
579 break;
580 }
581 }
582 if (!known) {
583 ALOGW("Camera provider %s says an unknown camera %s now has torch status %d. Curious.",
584 mProviderName.c_str(), cameraDeviceName.c_str(), newStatus);
585 return hardware::Void();
586 }
587 listener = mManager->mListener.promote();
588 }
589 // Call without lock held to allow reentrancy into provider manager
590 if (listener != nullptr) {
591 listener->onTorchStatusChanged(String8(id.c_str()), newStatus);
592 }
593 return hardware::Void();
594}
595
596
597template<class DeviceInfoT>
598std::unique_ptr<CameraProviderManager::ProviderInfo::DeviceInfo>
599 CameraProviderManager::ProviderInfo::initializeDeviceInfo(
600 const std::string &name,
601 const std::string &id, uint16_t minorVersion) const {
602 Status status;
603
604 auto cameraInterface =
605 getDeviceInterface<typename DeviceInfoT::InterfaceT>(name);
606 if (cameraInterface == nullptr) return nullptr;
607
608 CameraResourceCost resourceCost;
609 cameraInterface->getResourceCost([&status, &resourceCost](
610 Status s, CameraResourceCost cost) {
611 status = s;
612 resourceCost = cost;
613 });
614 if (status != Status::OK) {
615 ALOGE("%s: Unable to obtain resource costs for camera device %s: %s", __FUNCTION__,
616 name.c_str(), statusToString(status));
617 return nullptr;
618 }
619 return std::unique_ptr<DeviceInfo>(
620 new DeviceInfoT(name, id, minorVersion, resourceCost, cameraInterface));
621}
622
623template<class InterfaceT>
624sp<InterfaceT>
625CameraProviderManager::ProviderInfo::getDeviceInterface(const std::string &name) const {
626 ALOGE("%s: Device %s: Unknown HIDL device HAL major version %d:", __FUNCTION__,
627 name.c_str(), InterfaceT::version.get_major());
628 return nullptr;
629}
630
631template<>
632sp<device::V1_0::ICameraDevice>
633CameraProviderManager::ProviderInfo::getDeviceInterface
634 <device::V1_0::ICameraDevice>(const std::string &name) const {
635 Status status;
636 sp<device::V1_0::ICameraDevice> cameraInterface;
637 mInterface->getCameraDeviceInterface_V1_x(name, [&status, &cameraInterface](
638 Status s, sp<device::V1_0::ICameraDevice> interface) {
639 status = s;
640 cameraInterface = interface;
641 });
642 if (status != Status::OK) {
643 ALOGE("%s: Unable to obtain interface for camera device %s: %s", __FUNCTION__,
644 name.c_str(), statusToString(status));
645 return nullptr;
646 }
647 return cameraInterface;
648}
649
650template<>
651sp<device::V3_2::ICameraDevice>
652CameraProviderManager::ProviderInfo::getDeviceInterface
653 <device::V3_2::ICameraDevice>(const std::string &name) const {
654 Status status;
655 sp<device::V3_2::ICameraDevice> cameraInterface;
656 mInterface->getCameraDeviceInterface_V3_x(name, [&status, &cameraInterface](
657 Status s, sp<device::V3_2::ICameraDevice> interface) {
658 status = s;
659 cameraInterface = interface;
660 });
661 if (status != Status::OK) {
662 ALOGE("%s: Unable to obtain interface for camera device %s: %s", __FUNCTION__,
663 name.c_str(), statusToString(status));
664 return nullptr;
665 }
666 return cameraInterface;
667}
668
669CameraProviderManager::ProviderInfo::DeviceInfo::~DeviceInfo() {}
670
671template<class InterfaceT>
672status_t CameraProviderManager::ProviderInfo::DeviceInfo::setTorchMode(InterfaceT& interface,
673 bool enabled) {
674 Status s = interface->setTorchMode(enabled ? TorchMode::ON : TorchMode::OFF);
675 return mapToStatusT(s);
676}
677
678CameraProviderManager::ProviderInfo::DeviceInfo1::DeviceInfo1(const std::string& name,
679 const std::string &id,
680 uint16_t minorVersion,
681 const CameraResourceCost& resourceCost,
682 sp<InterfaceT> interface) :
683 DeviceInfo(name, id, hardware::hidl_version{1, minorVersion}, resourceCost),
684 mInterface(interface) {
685 // Get default parameters and initialize flash unit availability
686 // Requires powering on the camera device
687 Status status = mInterface->open(nullptr);
688 if (status != Status::OK) {
689 ALOGE("%s: Unable to open camera device %s to check for a flash unit: %s (%d)", __FUNCTION__,
690 mId.c_str(), CameraProviderManager::statusToString(status), status);
691 return;
692 }
693 mInterface->getParameters([this](const hardware::hidl_string& parms) {
694 mDefaultParameters.unflatten(String8(parms.c_str()));
695 });
696
697 const char *flashMode =
698 mDefaultParameters.get(CameraParameters::KEY_SUPPORTED_FLASH_MODES);
699 if (flashMode && strstr(flashMode, CameraParameters::FLASH_MODE_TORCH)) {
700 mHasFlashUnit = true;
701 } else {
702 mHasFlashUnit = false;
703 }
704
705 mInterface->close();
706}
707
708CameraProviderManager::ProviderInfo::DeviceInfo1::~DeviceInfo1() {}
709
710status_t CameraProviderManager::ProviderInfo::DeviceInfo1::setTorchMode(bool enabled) {
711 return DeviceInfo::setTorchMode(mInterface, enabled);
712}
713
714status_t CameraProviderManager::ProviderInfo::DeviceInfo1::getCameraInfo(
715 hardware::CameraInfo *info) const {
716 if (info == nullptr) return BAD_VALUE;
717
718 Status status;
719 device::V1_0::CameraInfo cInfo;
720 mInterface->getCameraInfo([&status, &cInfo](Status s, device::V1_0::CameraInfo camInfo) {
721 status = s;
722 cInfo = camInfo;
723 });
724 if (status != Status::OK) {
725 return mapToStatusT(status);
726 }
727
728 switch(cInfo.facing) {
729 case device::V1_0::CameraFacing::BACK:
730 info->facing = hardware::CAMERA_FACING_BACK;
731 break;
732 case device::V1_0::CameraFacing::EXTERNAL:
733 // Map external to front for legacy API
734 case device::V1_0::CameraFacing::FRONT:
735 info->facing = hardware::CAMERA_FACING_FRONT;
736 break;
737 default:
738 ALOGW("%s: Unknown camera facing: %d", __FUNCTION__, cInfo.facing);
739 info->facing = hardware::CAMERA_FACING_BACK;
740 }
741 info->orientation = cInfo.orientation;
742
743 return OK;
744}
745
746CameraProviderManager::ProviderInfo::DeviceInfo3::DeviceInfo3(const std::string& name,
747 const std::string &id,
748 uint16_t minorVersion,
749 const CameraResourceCost& resourceCost,
750 sp<InterfaceT> interface) :
751 DeviceInfo(name, id, hardware::hidl_version{3, minorVersion}, resourceCost),
752 mInterface(interface) {
753 // Get camera characteristics and initialize flash unit availability
754 Status status;
755 mInterface->getCameraCharacteristics([&status, this](Status s,
756 device::V3_2::CameraMetadata metadata) {
757 status = s;
758 if (s == Status::OK) {
759 camera_metadata_t *buffer =
760 reinterpret_cast<camera_metadata_t*>(metadata.data());
761 mCameraCharacteristics = buffer;
762 }
763 });
764 if (status != Status::OK) {
765 ALOGE("%s: Unable to get camera characteristics for device %s: %s (%d)",
766 __FUNCTION__, mId.c_str(), CameraProviderManager::statusToString(status), status);
767 return;
768 }
769 camera_metadata_entry flashAvailable =
770 mCameraCharacteristics.find(ANDROID_FLASH_INFO_AVAILABLE);
771 if (flashAvailable.count == 1 &&
772 flashAvailable.data.u8[0] == ANDROID_FLASH_INFO_AVAILABLE_TRUE) {
773 mHasFlashUnit = true;
774 } else {
775 mHasFlashUnit = false;
776 }
777}
778
779CameraProviderManager::ProviderInfo::DeviceInfo3::~DeviceInfo3() {}
780
781status_t CameraProviderManager::ProviderInfo::DeviceInfo3::setTorchMode(bool enabled) {
782 return DeviceInfo::setTorchMode(mInterface, enabled);
783}
784
785status_t CameraProviderManager::ProviderInfo::DeviceInfo3::getCameraInfo(
786 hardware::CameraInfo *info) const {
787 if (info == nullptr) return BAD_VALUE;
788
789 camera_metadata_ro_entry facing =
790 mCameraCharacteristics.find(ANDROID_LENS_FACING);
791 if (facing.count == 1) {
792 switch (facing.data.u8[0]) {
793 case ANDROID_LENS_FACING_BACK:
794 info->facing = hardware::CAMERA_FACING_BACK;
795 break;
796 case ANDROID_LENS_FACING_EXTERNAL:
797 // Map external to front for legacy API
798 case ANDROID_LENS_FACING_FRONT:
799 info->facing = hardware::CAMERA_FACING_FRONT;
800 break;
801 }
802 } else {
803 ALOGE("%s: Unable to find android.lens.facing static metadata", __FUNCTION__);
804 return NAME_NOT_FOUND;
805 }
806
807 camera_metadata_ro_entry orientation =
808 mCameraCharacteristics.find(ANDROID_SENSOR_ORIENTATION);
809 if (orientation.count == 1) {
810 info->orientation = orientation.data.i32[0];
811 } else {
812 ALOGE("%s: Unable to find android.sensor.orientation static metadata", __FUNCTION__);
813 return NAME_NOT_FOUND;
814 }
815
816 return OK;
817}
818
819status_t CameraProviderManager::ProviderInfo::DeviceInfo3::getCameraCharacteristics(
820 CameraMetadata *characteristics) const {
821 if (characteristics == nullptr) return BAD_VALUE;
822
823 *characteristics = mCameraCharacteristics;
824 return OK;
825}
826
827status_t CameraProviderManager::ProviderInfo::parseProviderName(const std::string& name,
828 std::string *type, uint32_t *id) {
829 // Format must be "<type>/<id>"
830#define ERROR_MSG_PREFIX "%s: Invalid provider name '%s'. " \
831 "Should match '<type>/<id>' - "
832
833 if (!type || !id) return INVALID_OPERATION;
834
835 std::string::size_type slashIdx = name.find('/');
836 if (slashIdx == std::string::npos || slashIdx == name.size() - 1) {
837 ALOGE(ERROR_MSG_PREFIX
838 "does not have / separator between type and id",
839 __FUNCTION__, name.c_str());
840 return BAD_VALUE;
841 }
842
843 std::string typeVal = name.substr(0, slashIdx);
844
845 char *endPtr;
846 errno = 0;
847 long idVal = strtol(name.c_str() + slashIdx + 1, &endPtr, 10);
848 if (errno != 0) {
849 ALOGE(ERROR_MSG_PREFIX
850 "cannot parse provider id as an integer: %s (%d)",
851 __FUNCTION__, name.c_str(), strerror(errno), errno);
852 return BAD_VALUE;
853 }
854 if (endPtr != name.c_str() + name.size()) {
855 ALOGE(ERROR_MSG_PREFIX
856 "provider id has unexpected length",
857 __FUNCTION__, name.c_str());
858 return BAD_VALUE;
859 }
860 if (idVal < 0) {
861 ALOGE(ERROR_MSG_PREFIX
862 "id is negative: %ld",
863 __FUNCTION__, name.c_str(), idVal);
864 return BAD_VALUE;
865 }
866
867#undef ERROR_MSG_PREFIX
868
869 *type = typeVal;
870 *id = static_cast<uint32_t>(idVal);
871
872 return OK;
873}
874
875status_t CameraProviderManager::ProviderInfo::parseDeviceName(const std::string& name,
876 uint16_t *major, uint16_t *minor, std::string *type, std::string *id) {
877
878 // Format must be "device@<major>.<minor>/<type>/<id>"
879
880#define ERROR_MSG_PREFIX "%s: Invalid device name '%s'. " \
881 "Should match 'device@<major>.<minor>/<type>/<id>' - "
882
883 if (!major || !minor || !type || !id) return INVALID_OPERATION;
884
885 // Verify starting prefix
886 const char expectedPrefix[] = "device@";
887
888 if (name.find(expectedPrefix) != 0) {
889 ALOGE(ERROR_MSG_PREFIX
890 "does not start with '%s'",
891 __FUNCTION__, name.c_str(), expectedPrefix);
892 return BAD_VALUE;
893 }
894
895 // Extract major/minor versions
896 constexpr std::string::size_type atIdx = sizeof(expectedPrefix) - 2;
897 std::string::size_type dotIdx = name.find('.', atIdx);
898 if (dotIdx == std::string::npos) {
899 ALOGE(ERROR_MSG_PREFIX
900 "does not have @<major>. version section",
901 __FUNCTION__, name.c_str());
902 return BAD_VALUE;
903 }
904 std::string::size_type typeSlashIdx = name.find('/', dotIdx);
905 if (typeSlashIdx == std::string::npos) {
906 ALOGE(ERROR_MSG_PREFIX
907 "does not have .<minor>/ version section",
908 __FUNCTION__, name.c_str());
909 return BAD_VALUE;
910 }
911
912 char *endPtr;
913 errno = 0;
914 long majorVal = strtol(name.c_str() + atIdx + 1, &endPtr, 10);
915 if (errno != 0) {
916 ALOGE(ERROR_MSG_PREFIX
917 "cannot parse major version: %s (%d)",
918 __FUNCTION__, name.c_str(), strerror(errno), errno);
919 return BAD_VALUE;
920 }
921 if (endPtr != name.c_str() + dotIdx) {
922 ALOGE(ERROR_MSG_PREFIX
923 "major version has unexpected length",
924 __FUNCTION__, name.c_str());
925 return BAD_VALUE;
926 }
927 long minorVal = strtol(name.c_str() + dotIdx + 1, &endPtr, 10);
928 if (errno != 0) {
929 ALOGE(ERROR_MSG_PREFIX
930 "cannot parse minor version: %s (%d)",
931 __FUNCTION__, name.c_str(), strerror(errno), errno);
932 return BAD_VALUE;
933 }
934 if (endPtr != name.c_str() + typeSlashIdx) {
935 ALOGE(ERROR_MSG_PREFIX
936 "minor version has unexpected length",
937 __FUNCTION__, name.c_str());
938 return BAD_VALUE;
939 }
940 if (majorVal < 0 || majorVal > UINT16_MAX || minorVal < 0 || minorVal > UINT16_MAX) {
941 ALOGE(ERROR_MSG_PREFIX
942 "major/minor version is out of range of uint16_t: %ld.%ld",
943 __FUNCTION__, name.c_str(), majorVal, minorVal);
944 return BAD_VALUE;
945 }
946
947 // Extract type and id
948
949 std::string::size_type instanceSlashIdx = name.find('/', typeSlashIdx + 1);
950 if (instanceSlashIdx == std::string::npos) {
951 ALOGE(ERROR_MSG_PREFIX
952 "does not have /<type>/ component",
953 __FUNCTION__, name.c_str());
954 return BAD_VALUE;
955 }
956 std::string typeVal = name.substr(typeSlashIdx + 1, instanceSlashIdx - typeSlashIdx - 1);
957
958 if (instanceSlashIdx == name.size() - 1) {
959 ALOGE(ERROR_MSG_PREFIX
960 "does not have an /<id> component",
961 __FUNCTION__, name.c_str());
962 return BAD_VALUE;
963 }
964 std::string idVal = name.substr(instanceSlashIdx + 1);
965
966#undef ERROR_MSG_PREFIX
967
968 *major = static_cast<uint16_t>(majorVal);
969 *minor = static_cast<uint16_t>(minorVal);
970 *type = typeVal;
971 *id = idVal;
972
973 return OK;
974}
975
976
977
978CameraProviderManager::ProviderInfo::~ProviderInfo() {
979 // Destruction of ProviderInfo is only supposed to happen when the respective
980 // CameraProvider interface dies, so do not unregister callbacks.
981
982}
983
984status_t CameraProviderManager::mapToStatusT(const Status& s) {
985 switch(s) {
986 case Status::OK:
987 return OK;
988 case Status::ILLEGAL_ARGUMENT:
989 return BAD_VALUE;
990 case Status::CAMERA_IN_USE:
991 return -EBUSY;
992 case Status::MAX_CAMERAS_IN_USE:
993 return -EUSERS;
994 case Status::METHOD_NOT_SUPPORTED:
995 return UNKNOWN_TRANSACTION;
996 case Status::OPERATION_NOT_SUPPORTED:
997 return INVALID_OPERATION;
998 case Status::CAMERA_DISCONNECTED:
999 return DEAD_OBJECT;
1000 case Status::INTERNAL_ERROR:
1001 return INVALID_OPERATION;
1002 }
1003 ALOGW("Unexpected HAL status code %d", s);
1004 return INVALID_OPERATION;
1005}
1006
1007const char* CameraProviderManager::statusToString(const Status& s) {
1008 switch(s) {
1009 case Status::OK:
1010 return "OK";
1011 case Status::ILLEGAL_ARGUMENT:
1012 return "ILLEGAL_ARGUMENT";
1013 case Status::CAMERA_IN_USE:
1014 return "CAMERA_IN_USE";
1015 case Status::MAX_CAMERAS_IN_USE:
1016 return "MAX_CAMERAS_IN_USE";
1017 case Status::METHOD_NOT_SUPPORTED:
1018 return "METHOD_NOT_SUPPORTED";
1019 case Status::OPERATION_NOT_SUPPORTED:
1020 return "OPERATION_NOT_SUPPORTED";
1021 case Status::CAMERA_DISCONNECTED:
1022 return "CAMERA_DISCONNECTED";
1023 case Status::INTERNAL_ERROR:
1024 return "INTERNAL_ERROR";
1025 }
1026 ALOGW("Unexpected HAL status code %d", s);
1027 return "UNKNOWN_ERROR";
1028}
1029
1030const char* CameraProviderManager::deviceStatusToString(const CameraDeviceStatus& s) {
1031 switch(s) {
1032 case CameraDeviceStatus::NOT_PRESENT:
1033 return "NOT_PRESENT";
1034 case CameraDeviceStatus::PRESENT:
1035 return "PRESENT";
1036 case CameraDeviceStatus::ENUMERATING:
1037 return "ENUMERATING";
1038 }
1039 ALOGW("Unexpected HAL device status code %d", s);
1040 return "UNKNOWN_STATUS";
1041}
1042
1043const char* CameraProviderManager::torchStatusToString(const TorchModeStatus& s) {
1044 switch(s) {
1045 case TorchModeStatus::NOT_AVAILABLE:
1046 return "NOT_AVAILABLE";
1047 case TorchModeStatus::AVAILABLE_OFF:
1048 return "AVAILABLE_OFF";
1049 case TorchModeStatus::AVAILABLE_ON:
1050 return "AVAILABLE_ON";
1051 }
1052 ALOGW("Unexpected HAL torch mode status code %d", s);
1053 return "UNKNOWN_STATUS";
1054}
1055
Yin-Chia Yeh067428c2017-01-13 15:19:24 -08001056
1057status_t HidlVendorTagDescriptor::createDescriptorFromHidl(
1058 const hardware::hidl_vec<hardware::camera::common::V1_0::VendorTagSection>& vts,
1059 /*out*/
1060 sp<VendorTagDescriptor>& descriptor) {
1061
1062 int tagCount = 0;
1063
1064 for (size_t s = 0; s < vts.size(); s++) {
1065 tagCount += vts[s].tags.size();
1066 }
1067
1068 if (tagCount < 0 || tagCount > INT32_MAX) {
1069 ALOGE("%s: tag count %d from vendor tag sections is invalid.", __FUNCTION__, tagCount);
1070 return BAD_VALUE;
1071 }
1072
1073 Vector<uint32_t> tagArray;
1074 LOG_ALWAYS_FATAL_IF(tagArray.resize(tagCount) != tagCount,
1075 "%s: too many (%u) vendor tags defined.", __FUNCTION__, tagCount);
1076
1077
1078 sp<HidlVendorTagDescriptor> desc = new HidlVendorTagDescriptor();
1079 desc->mTagCount = tagCount;
1080
1081 SortedVector<String8> sections;
1082 KeyedVector<uint32_t, String8> tagToSectionMap;
1083
1084 int idx = 0;
1085 for (size_t s = 0; s < vts.size(); s++) {
1086 const hardware::camera::common::V1_0::VendorTagSection& section = vts[s];
1087 const char *sectionName = section.sectionName.c_str();
1088 if (sectionName == NULL) {
1089 ALOGE("%s: no section name defined for vendor tag section %zu.", __FUNCTION__, s);
1090 return BAD_VALUE;
1091 }
1092 String8 sectionString(sectionName);
1093 sections.add(sectionString);
1094
1095 for (size_t j = 0; j < section.tags.size(); j++) {
1096 uint32_t tag = section.tags[j].tagId;
1097 if (tag < CAMERA_METADATA_VENDOR_TAG_BOUNDARY) {
1098 ALOGE("%s: vendor tag %d not in vendor tag section.", __FUNCTION__, tag);
1099 return BAD_VALUE;
1100 }
1101
1102 tagArray.editItemAt(idx++) = section.tags[j].tagId;
1103
1104 const char *tagName = section.tags[j].tagName.c_str();
1105 if (tagName == NULL) {
1106 ALOGE("%s: no tag name defined for vendor tag %d.", __FUNCTION__, tag);
1107 return BAD_VALUE;
1108 }
1109 desc->mTagToNameMap.add(tag, String8(tagName));
1110 tagToSectionMap.add(tag, sectionString);
1111
1112 int tagType = (int) section.tags[j].tagType;
1113 if (tagType < 0 || tagType >= NUM_TYPES) {
1114 ALOGE("%s: tag type %d from vendor ops does not exist.", __FUNCTION__, tagType);
1115 return BAD_VALUE;
1116 }
1117 desc->mTagToTypeMap.add(tag, tagType);
1118 }
1119 }
1120
1121 desc->mSections = sections;
1122
1123 for (size_t i = 0; i < tagArray.size(); ++i) {
1124 uint32_t tag = tagArray[i];
1125 String8 sectionString = tagToSectionMap.valueFor(tag);
1126
1127 // Set up tag to section index map
1128 ssize_t index = sections.indexOf(sectionString);
1129 LOG_ALWAYS_FATAL_IF(index < 0, "index %zd must be non-negative", index);
1130 desc->mTagToSectionMap.add(tag, static_cast<uint32_t>(index));
1131
1132 // Set up reverse mapping
1133 ssize_t reverseIndex = -1;
1134 if ((reverseIndex = desc->mReverseMapping.indexOfKey(sectionString)) < 0) {
1135 KeyedVector<String8, uint32_t>* nameMapper = new KeyedVector<String8, uint32_t>();
1136 reverseIndex = desc->mReverseMapping.add(sectionString, nameMapper);
1137 }
1138 desc->mReverseMapping[reverseIndex]->add(desc->mTagToNameMap.valueFor(tag), tag);
1139 }
1140
1141 descriptor = desc;
1142 return OK;
1143}
1144
1145
Eino-Ville Talvala2f09bac2016-12-13 11:29:54 -08001146} // namespace android