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1 /*
2  * Copyright (C) 2012 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 // Utility classes for camera2 HAL testing
18 
19 #define LOG_TAG "Camera2_test_utils"
20 #define LOG_NDEBUG 0
21 
22 #include "utils/Log.h"
23 #include "camera2_utils.h"
24 #include <dlfcn.h>
25 
26 namespace android {
27 namespace camera2 {
28 namespace tests {
29 
30 /**
31  * MetadataQueue
32  */
33 
MetadataQueue()34 MetadataQueue::MetadataQueue():
35             mDevice(NULL),
36             mFrameCount(0),
37             mCount(0),
38             mStreamSlotCount(0),
39             mSignalConsumer(true)
40 {
41     camera2_request_queue_src_ops::dequeue_request = consumer_dequeue;
42     camera2_request_queue_src_ops::request_count = consumer_buffer_count;
43     camera2_request_queue_src_ops::free_request = consumer_free;
44 
45     camera2_frame_queue_dst_ops::dequeue_frame = producer_dequeue;
46     camera2_frame_queue_dst_ops::cancel_frame = producer_cancel;
47     camera2_frame_queue_dst_ops::enqueue_frame = producer_enqueue;
48 }
49 
~MetadataQueue()50 MetadataQueue::~MetadataQueue() {
51     freeBuffers(mEntries.begin(), mEntries.end());
52     freeBuffers(mStreamSlot.begin(), mStreamSlot.end());
53 }
54 
55 // Interface to camera2 HAL as consumer (input requests/reprocessing)
getToConsumerInterface()56 const camera2_request_queue_src_ops_t* MetadataQueue::getToConsumerInterface() {
57     return static_cast<camera2_request_queue_src_ops_t*>(this);
58 }
59 
setFromConsumerInterface(camera2_device_t * d)60 void MetadataQueue::setFromConsumerInterface(camera2_device_t *d) {
61     mDevice = d;
62 }
63 
getToProducerInterface()64 const camera2_frame_queue_dst_ops_t* MetadataQueue::getToProducerInterface() {
65     return static_cast<camera2_frame_queue_dst_ops_t*>(this);
66 }
67 
68 // Real interfaces
enqueue(camera_metadata_t * buf)69 status_t MetadataQueue::enqueue(camera_metadata_t *buf) {
70     Mutex::Autolock l(mMutex);
71 
72     mCount++;
73     mEntries.push_back(buf);
74     notEmpty.signal();
75 
76     if (mSignalConsumer && mDevice != NULL) {
77         mSignalConsumer = false;
78 
79         mMutex.unlock();
80         ALOGV("%s: Signaling consumer", __FUNCTION__);
81         mDevice->ops->notify_request_queue_not_empty(mDevice);
82         mMutex.lock();
83     }
84     return OK;
85 }
86 
getBufferCount()87 int MetadataQueue::getBufferCount() {
88     Mutex::Autolock l(mMutex);
89     if (mStreamSlotCount > 0) {
90         return CAMERA2_REQUEST_QUEUE_IS_BOTTOMLESS;
91     }
92     return mCount;
93 }
94 
dequeue(camera_metadata_t ** buf,bool incrementCount)95 status_t MetadataQueue::dequeue(camera_metadata_t **buf, bool incrementCount) {
96     Mutex::Autolock l(mMutex);
97 
98     if (mCount == 0) {
99         if (mStreamSlotCount == 0) {
100             ALOGV("%s: Empty", __FUNCTION__);
101             *buf = NULL;
102             mSignalConsumer = true;
103             return OK;
104         }
105         ALOGV("%s: Streaming %d frames to queue", __FUNCTION__,
106               mStreamSlotCount);
107 
108         for (List<camera_metadata_t*>::iterator slotEntry = mStreamSlot.begin();
109                 slotEntry != mStreamSlot.end();
110                 slotEntry++ ) {
111             size_t entries = get_camera_metadata_entry_count(*slotEntry);
112             size_t dataBytes = get_camera_metadata_data_count(*slotEntry);
113 
114             camera_metadata_t *copy = allocate_camera_metadata(entries, dataBytes);
115             append_camera_metadata(copy, *slotEntry);
116             mEntries.push_back(copy);
117         }
118         mCount = mStreamSlotCount;
119     }
120     ALOGV("MetadataQueue: deque (%d buffers)", mCount);
121     camera_metadata_t *b = *(mEntries.begin());
122     mEntries.erase(mEntries.begin());
123 
124     if (incrementCount) {
125         add_camera_metadata_entry(b,
126                 ANDROID_REQUEST_FRAME_COUNT,
127                 (void**)&mFrameCount, 1);
128         mFrameCount++;
129     }
130 
131     *buf = b;
132     mCount--;
133 
134     return OK;
135 }
136 
waitForBuffer(nsecs_t timeout)137 status_t MetadataQueue::waitForBuffer(nsecs_t timeout) {
138     Mutex::Autolock l(mMutex);
139     status_t res;
140     while (mCount == 0) {
141         res = notEmpty.waitRelative(mMutex,timeout);
142         if (res != OK) return res;
143     }
144     return OK;
145 }
146 
setStreamSlot(camera_metadata_t * buf)147 status_t MetadataQueue::setStreamSlot(camera_metadata_t *buf) {
148     if (buf == NULL) {
149         freeBuffers(mStreamSlot.begin(), mStreamSlot.end());
150         mStreamSlotCount = 0;
151         return OK;
152     }
153     if (mStreamSlotCount > 1) {
154         List<camera_metadata_t*>::iterator deleter = ++mStreamSlot.begin();
155         freeBuffers(++mStreamSlot.begin(), mStreamSlot.end());
156         mStreamSlotCount = 1;
157     }
158     if (mStreamSlotCount == 1) {
159         free_camera_metadata( *(mStreamSlot.begin()) );
160         *(mStreamSlot.begin()) = buf;
161     } else {
162         mStreamSlot.push_front(buf);
163         mStreamSlotCount = 1;
164     }
165     return OK;
166 }
167 
setStreamSlot(const List<camera_metadata_t * > & bufs)168 status_t MetadataQueue::setStreamSlot(const List<camera_metadata_t*> &bufs) {
169     if (mStreamSlotCount > 0) {
170         freeBuffers(mStreamSlot.begin(), mStreamSlot.end());
171     }
172     mStreamSlot = bufs;
173     mStreamSlotCount = mStreamSlot.size();
174 
175     return OK;
176 }
177 
freeBuffers(List<camera_metadata_t * >::iterator start,List<camera_metadata_t * >::iterator end)178 status_t MetadataQueue::freeBuffers(List<camera_metadata_t*>::iterator start,
179                                     List<camera_metadata_t*>::iterator end) {
180     while (start != end) {
181         free_camera_metadata(*start);
182         start = mStreamSlot.erase(start);
183     }
184     return OK;
185 }
186 
getInstance(const camera2_request_queue_src_ops_t * q)187 MetadataQueue* MetadataQueue::getInstance(
188         const camera2_request_queue_src_ops_t *q) {
189     const MetadataQueue* cmq = static_cast<const MetadataQueue*>(q);
190     return const_cast<MetadataQueue*>(cmq);
191 }
192 
getInstance(const camera2_frame_queue_dst_ops_t * q)193 MetadataQueue* MetadataQueue::getInstance(
194         const camera2_frame_queue_dst_ops_t *q) {
195     const MetadataQueue* cmq = static_cast<const MetadataQueue*>(q);
196     return const_cast<MetadataQueue*>(cmq);
197 }
198 
consumer_buffer_count(const camera2_request_queue_src_ops_t * q)199 int MetadataQueue::consumer_buffer_count(
200         const camera2_request_queue_src_ops_t *q) {
201     MetadataQueue *queue = getInstance(q);
202     return queue->getBufferCount();
203 }
204 
consumer_dequeue(const camera2_request_queue_src_ops_t * q,camera_metadata_t ** buffer)205 int MetadataQueue::consumer_dequeue(const camera2_request_queue_src_ops_t *q,
206         camera_metadata_t **buffer) {
207     MetadataQueue *queue = getInstance(q);
208     return queue->dequeue(buffer, true);
209 }
210 
consumer_free(const camera2_request_queue_src_ops_t * q,camera_metadata_t * old_buffer)211 int MetadataQueue::consumer_free(const camera2_request_queue_src_ops_t *q,
212         camera_metadata_t *old_buffer) {
213     free_camera_metadata(old_buffer);
214     return OK;
215 }
216 
producer_dequeue(const camera2_frame_queue_dst_ops_t * q,size_t entries,size_t bytes,camera_metadata_t ** buffer)217 int MetadataQueue::producer_dequeue(const camera2_frame_queue_dst_ops_t *q,
218         size_t entries, size_t bytes,
219         camera_metadata_t **buffer) {
220     camera_metadata_t *new_buffer =
221             allocate_camera_metadata(entries, bytes);
222     if (new_buffer == NULL) return NO_MEMORY;
223     *buffer = new_buffer;
224         return OK;
225 }
226 
producer_cancel(const camera2_frame_queue_dst_ops_t * q,camera_metadata_t * old_buffer)227 int MetadataQueue::producer_cancel(const camera2_frame_queue_dst_ops_t *q,
228         camera_metadata_t *old_buffer) {
229     free_camera_metadata(old_buffer);
230     return OK;
231 }
232 
producer_enqueue(const camera2_frame_queue_dst_ops_t * q,camera_metadata_t * filled_buffer)233 int MetadataQueue::producer_enqueue(const camera2_frame_queue_dst_ops_t *q,
234         camera_metadata_t *filled_buffer) {
235     MetadataQueue *queue = getInstance(q);
236     return queue->enqueue(filled_buffer);
237 }
238 
239 /**
240  * NotifierListener
241  */
242 
NotifierListener()243 NotifierListener::NotifierListener() {
244 }
245 
getNotificationsFrom(camera2_device * dev)246 status_t NotifierListener::getNotificationsFrom(camera2_device *dev) {
247     if (!dev) return BAD_VALUE;
248     status_t err;
249     err = dev->ops->set_notify_callback(dev,
250             notify_callback_dispatch,
251             (void*)this);
252     return err;
253 }
254 
getNextNotification(int32_t * msg_type,int32_t * ext1,int32_t * ext2,int32_t * ext3)255 status_t NotifierListener::getNextNotification(int32_t *msg_type,
256         int32_t *ext1,
257         int32_t *ext2,
258         int32_t *ext3) {
259     Mutex::Autolock l(mMutex);
260     if (mNotifications.size() == 0) return BAD_VALUE;
261     return getNextNotificationLocked(msg_type, ext1, ext2, ext3);
262 }
263 
waitForNotification(int32_t * msg_type,int32_t * ext1,int32_t * ext2,int32_t * ext3)264 status_t NotifierListener::waitForNotification(int32_t *msg_type,
265         int32_t *ext1,
266         int32_t *ext2,
267         int32_t *ext3) {
268     Mutex::Autolock l(mMutex);
269     while (mNotifications.size() == 0) {
270         mNewNotification.wait(mMutex);
271     }
272     return getNextNotificationLocked(msg_type, ext1, ext2, ext3);
273 }
274 
numNotifications()275 int NotifierListener::numNotifications() {
276     Mutex::Autolock l(mMutex);
277     return mNotifications.size();
278 }
279 
getNextNotificationLocked(int32_t * msg_type,int32_t * ext1,int32_t * ext2,int32_t * ext3)280 status_t NotifierListener::getNextNotificationLocked(int32_t *msg_type,
281         int32_t *ext1,
282         int32_t *ext2,
283         int32_t *ext3) {
284     *msg_type = mNotifications.begin()->msg_type;
285     *ext1 = mNotifications.begin()->ext1;
286     *ext2 = mNotifications.begin()->ext2;
287     *ext3 = mNotifications.begin()->ext3;
288     mNotifications.erase(mNotifications.begin());
289     return OK;
290 }
291 
onNotify(int32_t msg_type,int32_t ext1,int32_t ext2,int32_t ext3)292 void NotifierListener::onNotify(int32_t msg_type,
293         int32_t ext1,
294         int32_t ext2,
295         int32_t ext3) {
296     Mutex::Autolock l(mMutex);
297     mNotifications.push_back(Notification(msg_type, ext1, ext2, ext3));
298     mNewNotification.signal();
299 }
300 
notify_callback_dispatch(int32_t msg_type,int32_t ext1,int32_t ext2,int32_t ext3,void * user)301 void NotifierListener::notify_callback_dispatch(int32_t msg_type,
302         int32_t ext1,
303         int32_t ext2,
304         int32_t ext3,
305         void *user) {
306     NotifierListener *me = reinterpret_cast<NotifierListener*>(user);
307     me->onNotify(msg_type, ext1, ext2, ext3);
308 }
309 
310 /**
311  * StreamAdapter
312  */
313 
314 #ifndef container_of
315 #define container_of(ptr, type, member) \
316     (type *)((char*)(ptr) - offsetof(type, member))
317 #endif
318 
StreamAdapter(sp<IGraphicBufferProducer> consumer)319 StreamAdapter::StreamAdapter(sp<IGraphicBufferProducer> consumer):
320         mState(UNINITIALIZED), mDevice(NULL),
321         mId(-1),
322         mWidth(0), mHeight(0), mFormat(0)
323 {
324     mConsumerInterface = new Surface(consumer);
325     camera2_stream_ops::dequeue_buffer = dequeue_buffer;
326     camera2_stream_ops::enqueue_buffer = enqueue_buffer;
327     camera2_stream_ops::cancel_buffer = cancel_buffer;
328     camera2_stream_ops::set_crop = set_crop;
329 }
330 
~StreamAdapter()331 StreamAdapter::~StreamAdapter() {
332     disconnect();
333 }
334 
connectToDevice(camera2_device_t * d,uint32_t width,uint32_t height,int format)335 status_t StreamAdapter::connectToDevice(camera2_device_t *d,
336         uint32_t width, uint32_t height, int format) {
337     if (mState != UNINITIALIZED) return INVALID_OPERATION;
338     if (d == NULL) {
339         ALOGE("%s: Null device passed to stream adapter", __FUNCTION__);
340         return BAD_VALUE;
341     }
342 
343     status_t res;
344 
345     mWidth = width;
346     mHeight = height;
347     mFormat = format;
348 
349     // Allocate device-side stream interface
350 
351     uint32_t id;
352     uint32_t formatActual; // ignored
353     uint32_t usage;
354     uint32_t maxBuffers = 2;
355     res = d->ops->allocate_stream(d,
356             mWidth, mHeight, mFormat, getStreamOps(),
357             &id, &formatActual, &usage, &maxBuffers);
358     if (res != OK) {
359         ALOGE("%s: Device stream allocation failed: %s (%d)",
360                 __FUNCTION__, strerror(-res), res);
361         mState = UNINITIALIZED;
362         return res;
363     }
364     mDevice = d;
365 
366     mId = id;
367     mUsage = usage;
368     mMaxProducerBuffers = maxBuffers;
369 
370     // Configure consumer-side ANativeWindow interface
371 
372     res = native_window_api_connect(mConsumerInterface.get(),
373             NATIVE_WINDOW_API_CAMERA);
374     if (res != OK) {
375         ALOGE("%s: Unable to connect to native window for stream %d",
376                 __FUNCTION__, mId);
377         mState = ALLOCATED;
378         return res;
379     }
380 
381     res = native_window_set_usage(mConsumerInterface.get(), mUsage);
382     if (res != OK) {
383         ALOGE("%s: Unable to configure usage %08x for stream %d",
384                 __FUNCTION__, mUsage, mId);
385         mState = CONNECTED;
386         return res;
387     }
388 
389     res = native_window_set_buffers_geometry(mConsumerInterface.get(),
390             mWidth, mHeight, mFormat);
391     if (res != OK) {
392         ALOGE("%s: Unable to configure buffer geometry"
393                 " %d x %d, format 0x%x for stream %d",
394                 __FUNCTION__, mWidth, mHeight, mFormat, mId);
395         mState = CONNECTED;
396         return res;
397     }
398 
399     int maxConsumerBuffers;
400     res = mConsumerInterface->query(mConsumerInterface.get(),
401             NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &maxConsumerBuffers);
402     if (res != OK) {
403         ALOGE("%s: Unable to query consumer undequeued"
404                 " buffer count for stream %d", __FUNCTION__, mId);
405         mState = CONNECTED;
406         return res;
407     }
408     mMaxConsumerBuffers = maxConsumerBuffers;
409 
410     ALOGV("%s: Producer wants %d buffers, consumer wants %d", __FUNCTION__,
411             mMaxProducerBuffers, mMaxConsumerBuffers);
412 
413     int totalBuffers = mMaxConsumerBuffers + mMaxProducerBuffers;
414 
415     res = native_window_set_buffer_count(mConsumerInterface.get(),
416             totalBuffers);
417     if (res != OK) {
418         ALOGE("%s: Unable to set buffer count for stream %d",
419                 __FUNCTION__, mId);
420         mState = CONNECTED;
421         return res;
422     }
423 
424     // Register allocated buffers with HAL device
425     buffer_handle_t *buffers = new buffer_handle_t[totalBuffers];
426     ANativeWindowBuffer **anwBuffers = new ANativeWindowBuffer*[totalBuffers];
427     int bufferIdx = 0;
428     for (; bufferIdx < totalBuffers; bufferIdx++) {
429         res = native_window_dequeue_buffer_and_wait(mConsumerInterface.get(),
430                 &anwBuffers[bufferIdx]);
431         if (res != OK) {
432             ALOGE("%s: Unable to dequeue buffer %d for initial registration for"
433                     "stream %d", __FUNCTION__, bufferIdx, mId);
434             mState = CONNECTED;
435             goto cleanUpBuffers;
436         }
437         buffers[bufferIdx] = anwBuffers[bufferIdx]->handle;
438     }
439 
440     res = mDevice->ops->register_stream_buffers(mDevice,
441             mId,
442             totalBuffers,
443             buffers);
444     if (res != OK) {
445         ALOGE("%s: Unable to register buffers with HAL device for stream %d",
446                 __FUNCTION__, mId);
447         mState = CONNECTED;
448     } else {
449         mState = ACTIVE;
450     }
451 
452 cleanUpBuffers:
453     for (int i = 0; i < bufferIdx; i++) {
454         res = mConsumerInterface->cancelBuffer(mConsumerInterface.get(),
455                 anwBuffers[i], -1);
456     }
457     delete anwBuffers;
458     delete buffers;
459 
460     return res;
461 }
462 
disconnect()463 status_t StreamAdapter::disconnect() {
464     status_t res;
465     if (mState >= ALLOCATED) {
466         res = mDevice->ops->release_stream(mDevice, mId);
467         if (res != OK) {
468             ALOGE("%s: Unable to release stream %d",
469                     __FUNCTION__, mId);
470             return res;
471         }
472     }
473     if (mState >= CONNECTED) {
474         res = native_window_api_disconnect(mConsumerInterface.get(),
475                 NATIVE_WINDOW_API_CAMERA);
476         if (res != OK) {
477             ALOGE("%s: Unable to disconnect stream %d from native window",
478                     __FUNCTION__, mId);
479             return res;
480         }
481     }
482     mId = -1;
483     mState = DISCONNECTED;
484     return OK;
485 }
486 
getId()487 int StreamAdapter::getId() {
488     return mId;
489 }
490 
getStreamOps()491 const camera2_stream_ops *StreamAdapter::getStreamOps() {
492     return static_cast<camera2_stream_ops *>(this);
493 }
494 
toANW(const camera2_stream_ops_t * w)495 ANativeWindow* StreamAdapter::toANW(const camera2_stream_ops_t *w) {
496     return static_cast<const StreamAdapter*>(w)->mConsumerInterface.get();
497 }
498 
dequeue_buffer(const camera2_stream_ops_t * w,buffer_handle_t ** buffer)499 int StreamAdapter::dequeue_buffer(const camera2_stream_ops_t *w,
500         buffer_handle_t** buffer) {
501     int res;
502     int state = static_cast<const StreamAdapter*>(w)->mState;
503     if (state != ACTIVE) {
504         ALOGE("%s: Called when in bad state: %d", __FUNCTION__, state);
505         return INVALID_OPERATION;
506     }
507 
508     ANativeWindow *a = toANW(w);
509     ANativeWindowBuffer* anb;
510     res = native_window_dequeue_buffer_and_wait(a, &anb);
511     if (res != OK) return res;
512 
513     *buffer = &(anb->handle);
514 
515     return res;
516 }
517 
enqueue_buffer(const camera2_stream_ops_t * w,int64_t timestamp,buffer_handle_t * buffer)518 int StreamAdapter::enqueue_buffer(const camera2_stream_ops_t* w,
519         int64_t timestamp,
520         buffer_handle_t* buffer) {
521     int state = static_cast<const StreamAdapter*>(w)->mState;
522     if (state != ACTIVE) {
523         ALOGE("%s: Called when in bad state: %d", __FUNCTION__, state);
524         return INVALID_OPERATION;
525     }
526     ANativeWindow *a = toANW(w);
527     status_t err;
528     err = native_window_set_buffers_timestamp(a, timestamp);
529     if (err != OK) return err;
530     return a->queueBuffer(a,
531             container_of(buffer, ANativeWindowBuffer, handle), -1);
532 }
533 
cancel_buffer(const camera2_stream_ops_t * w,buffer_handle_t * buffer)534 int StreamAdapter::cancel_buffer(const camera2_stream_ops_t* w,
535         buffer_handle_t* buffer) {
536     int state = static_cast<const StreamAdapter*>(w)->mState;
537     if (state != ACTIVE) {
538         ALOGE("%s: Called when in bad state: %d", __FUNCTION__, state);
539         return INVALID_OPERATION;
540     }
541     ANativeWindow *a = toANW(w);
542     return a->cancelBuffer(a,
543             container_of(buffer, ANativeWindowBuffer, handle), -1);
544 }
545 
set_crop(const camera2_stream_ops_t * w,int left,int top,int right,int bottom)546 int StreamAdapter::set_crop(const camera2_stream_ops_t* w,
547         int left, int top, int right, int bottom) {
548     int state = static_cast<const StreamAdapter*>(w)->mState;
549     if (state != ACTIVE) {
550         ALOGE("%s: Called when in bad state: %d", __FUNCTION__, state);
551         return INVALID_OPERATION;
552     }
553     ANativeWindow *a = toANW(w);
554     android_native_rect_t crop = { left, top, right, bottom };
555     return native_window_set_crop(a, &crop);
556 }
557 
558 /**
559  * FrameWaiter
560  */
561 
FrameWaiter()562 FrameWaiter::FrameWaiter():
563         mPendingFrames(0) {
564 }
565 
waitForFrame(nsecs_t timeout)566 status_t FrameWaiter::waitForFrame(nsecs_t timeout) {
567     status_t res;
568     Mutex::Autolock lock(mMutex);
569     while (mPendingFrames == 0) {
570         res = mCondition.waitRelative(mMutex, timeout);
571         if (res != OK) return res;
572     }
573     mPendingFrames--;
574     return OK;
575 }
576 
onFrameAvailable()577 void FrameWaiter::onFrameAvailable() {
578     Mutex::Autolock lock(mMutex);
579     mPendingFrames++;
580     mCondition.signal();
581 }
582 
closeModule(hw_module_t * module)583 int HWModuleHelpers::closeModule(hw_module_t* module) {
584     int status;
585 
586     if (!module) {
587         return -EINVAL;
588     }
589 
590     status = dlclose(module->dso);
591     if (status != 0) {
592         char const *err_str = dlerror();
593         ALOGE("%s dlclose failed, error: %s", __func__, err_str ?: "unknown");
594     }
595 
596     return status;
597 }
598 
599 } // namespace tests
600 } // namespace camera2
601 } // namespace android
602