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Yin-Chia Yeh4717c472017-02-13 10:56:40 -08001/*
2 * Copyright (C) 2017 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#define LOG_TAG "CameraHardwareInterface"
17//#define LOG_NDEBUG 0
18
19#include <inttypes.h>
Eino-Ville Talvala1a2f15d2017-03-23 15:37:22 -070020#include <grallocusage/GrallocUsageConversion.h>
21
Yin-Chia Yeh4717c472017-02-13 10:56:40 -080022#include "CameraHardwareInterface.h"
23
24namespace android {
25
26using namespace hardware::camera::device::V1_0;
27using namespace hardware::camera::common::V1_0;
28using hardware::hidl_handle;
29
30CameraHardwareInterface::~CameraHardwareInterface()
31{
32 ALOGI("Destroying camera %s", mName.string());
33 if (mDevice) {
34 int rc = mDevice->common.close(&mDevice->common);
35 if (rc != OK)
36 ALOGE("Could not close camera %s: %d", mName.string(), rc);
37 }
38 if (mHidlDevice != nullptr) {
39 mHidlDevice->close();
40 mHidlDevice.clear();
41 cleanupCirculatingBuffers();
42 }
43}
44
45status_t CameraHardwareInterface::initialize(CameraModule *module)
46{
47 if (mHidlDevice != nullptr) {
48 ALOGE("%s: camera hardware interface has been initialized to HIDL path!", __FUNCTION__);
49 return INVALID_OPERATION;
50 }
51 ALOGI("Opening camera %s", mName.string());
52 camera_info info;
53 status_t res = module->getCameraInfo(atoi(mName.string()), &info);
54 if (res != OK) {
55 return res;
56 }
57
58 int rc = OK;
59 if (module->getModuleApiVersion() >= CAMERA_MODULE_API_VERSION_2_3 &&
60 info.device_version > CAMERA_DEVICE_API_VERSION_1_0) {
61 // Open higher version camera device as HAL1.0 device.
62 rc = module->openLegacy(mName.string(),
63 CAMERA_DEVICE_API_VERSION_1_0,
64 (hw_device_t **)&mDevice);
65 } else {
66 rc = module->open(mName.string(), (hw_device_t **)&mDevice);
67 }
68 if (rc != OK) {
69 ALOGE("Could not open camera %s: %d", mName.string(), rc);
70 return rc;
71 }
72 initHalPreviewWindow();
73 return rc;
74}
75
76status_t CameraHardwareInterface::initialize(sp<CameraProviderManager> manager) {
77 if (mDevice) {
78 ALOGE("%s: camera hardware interface has been initialized to libhardware path!",
79 __FUNCTION__);
80 return INVALID_OPERATION;
81 }
82
83 ALOGI("Opening camera %s", mName.string());
84
Steven Moreland5ff9c912017-03-09 23:13:00 -080085 status_t ret = manager->openSession(mName.string(), this, &mHidlDevice);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -080086 if (ret != OK) {
87 ALOGE("%s: openSession failed! %s (%d)", __FUNCTION__, strerror(-ret), ret);
88 }
89 return ret;
90}
91
92status_t CameraHardwareInterface::setPreviewScalingMode(int scalingMode)
93{
94 int rc = OK;
95 mPreviewScalingMode = scalingMode;
96 if (mPreviewWindow != nullptr) {
97 rc = native_window_set_scaling_mode(mPreviewWindow.get(),
98 scalingMode);
99 }
100 return rc;
101}
102
103status_t CameraHardwareInterface::setPreviewTransform(int transform) {
104 int rc = OK;
105 mPreviewTransform = transform;
106 if (mPreviewWindow != nullptr) {
107 rc = native_window_set_buffers_transform(mPreviewWindow.get(),
108 mPreviewTransform);
109 }
110 return rc;
111}
112
113/**
114 * Implementation of android::hardware::camera::device::V1_0::ICameraDeviceCallback
115 */
116hardware::Return<void> CameraHardwareInterface::notifyCallback(
117 NotifyCallbackMsg msgType, int32_t ext1, int32_t ext2) {
118 sNotifyCb((int32_t) msgType, ext1, ext2, (void*) this);
119 return hardware::Void();
120}
121
122hardware::Return<uint32_t> CameraHardwareInterface::registerMemory(
123 const hardware::hidl_handle& descriptor,
124 uint32_t bufferSize, uint32_t bufferCount) {
125 if (descriptor->numFds != 1) {
126 ALOGE("%s: camera memory descriptor has numFds %d (expect 1)",
127 __FUNCTION__, descriptor->numFds);
128 return 0;
129 }
130 if (descriptor->data[0] < 0) {
131 ALOGE("%s: camera memory descriptor has FD %d (expect >= 0)",
132 __FUNCTION__, descriptor->data[0]);
133 return 0;
134 }
135
136 camera_memory_t* mem = sGetMemory(descriptor->data[0], bufferSize, bufferCount, this);
137 sp<CameraHeapMemory> camMem(static_cast<CameraHeapMemory *>(mem->handle));
138 int memPoolId = camMem->mHeap->getHeapID();
139 if (memPoolId < 0) {
140 ALOGE("%s: CameraHeapMemory has FD %d (expect >= 0)", __FUNCTION__, memPoolId);
141 return 0;
142 }
143 mHidlMemPoolMap.insert(std::make_pair(memPoolId, mem));
144 return memPoolId;
145}
146
147hardware::Return<void> CameraHardwareInterface::unregisterMemory(uint32_t memId) {
148 if (mHidlMemPoolMap.count(memId) == 0) {
149 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, memId);
150 return hardware::Void();
151 }
152 camera_memory_t* mem = mHidlMemPoolMap.at(memId);
153 sPutMemory(mem);
154 mHidlMemPoolMap.erase(memId);
155 return hardware::Void();
156}
157
158hardware::Return<void> CameraHardwareInterface::dataCallback(
159 DataCallbackMsg msgType, uint32_t data, uint32_t bufferIndex,
160 const hardware::camera::device::V1_0::CameraFrameMetadata& metadata) {
161 if (mHidlMemPoolMap.count(data) == 0) {
162 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, data);
163 return hardware::Void();
164 }
165 camera_frame_metadata_t md;
166 md.number_of_faces = metadata.faces.size();
167 md.faces = (camera_face_t*) metadata.faces.data();
168 sDataCb((int32_t) msgType, mHidlMemPoolMap.at(data), bufferIndex, &md, this);
169 return hardware::Void();
170}
171
172hardware::Return<void> CameraHardwareInterface::dataCallbackTimestamp(
173 DataCallbackMsg msgType, uint32_t data,
174 uint32_t bufferIndex, int64_t timestamp) {
175 if (mHidlMemPoolMap.count(data) == 0) {
176 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, data);
177 return hardware::Void();
178 }
179 sDataCbTimestamp(timestamp, (int32_t) msgType, mHidlMemPoolMap.at(data), bufferIndex, this);
180 return hardware::Void();
181}
182
183hardware::Return<void> CameraHardwareInterface::handleCallbackTimestamp(
184 DataCallbackMsg msgType, const hidl_handle& frameData, uint32_t data,
185 uint32_t bufferIndex, int64_t timestamp) {
186 if (mHidlMemPoolMap.count(data) == 0) {
187 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, data);
188 return hardware::Void();
189 }
190 sp<CameraHeapMemory> mem(static_cast<CameraHeapMemory *>(mHidlMemPoolMap.at(data)->handle));
191 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*)
192 mem->mBuffers[bufferIndex]->pointer();
193 md->pHandle = const_cast<native_handle_t*>(frameData.getNativeHandle());
194 sDataCbTimestamp(timestamp, (int32_t) msgType, mHidlMemPoolMap.at(data), bufferIndex, this);
195 return hardware::Void();
196}
197
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700198hardware::Return<void> CameraHardwareInterface::handleCallbackTimestampBatch(
199 DataCallbackMsg msgType,
200 const hardware::hidl_vec<hardware::camera::device::V1_0::HandleTimestampMessage>& messages) {
201 std::vector<android::HandleTimestampMessage> msgs;
202 msgs.reserve(messages.size());
203
204 for (const auto& hidl_msg : messages) {
205 if (mHidlMemPoolMap.count(hidl_msg.data) == 0) {
206 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, hidl_msg.data);
207 return hardware::Void();
208 }
209 sp<CameraHeapMemory> mem(
210 static_cast<CameraHeapMemory *>(mHidlMemPoolMap.at(hidl_msg.data)->handle));
211
212 if (hidl_msg.bufferIndex >= mem->mNumBufs) {
213 ALOGE("%s: invalid buffer index %d, max allowed is %d", __FUNCTION__,
214 hidl_msg.bufferIndex, mem->mNumBufs);
215 return hardware::Void();
216 }
217 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*)
218 mem->mBuffers[hidl_msg.bufferIndex]->pointer();
219 md->pHandle = const_cast<native_handle_t*>(hidl_msg.frameData.getNativeHandle());
220
221 msgs.push_back({hidl_msg.timestamp, mem->mBuffers[hidl_msg.bufferIndex]});
222 }
223
224 mDataCbTimestampBatch((int32_t) msgType, msgs, mCbUser);
225 return hardware::Void();
226}
227
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800228std::pair<bool, uint64_t> CameraHardwareInterface::getBufferId(
229 ANativeWindowBuffer* anb) {
230 std::lock_guard<std::mutex> lock(mBufferIdMapLock);
231
232 buffer_handle_t& buf = anb->handle;
233 auto it = mBufferIdMap.find(buf);
234 if (it == mBufferIdMap.end()) {
235 uint64_t bufId = mNextBufferId++;
236 mBufferIdMap[buf] = bufId;
237 mReversedBufMap[bufId] = anb;
238 return std::make_pair(true, bufId);
239 } else {
240 return std::make_pair(false, it->second);
241 }
242}
243
244void CameraHardwareInterface::cleanupCirculatingBuffers() {
245 std::lock_guard<std::mutex> lock(mBufferIdMapLock);
246 mBufferIdMap.clear();
247 mReversedBufMap.clear();
248}
249
250hardware::Return<void>
251CameraHardwareInterface::dequeueBuffer(dequeueBuffer_cb _hidl_cb) {
252 ANativeWindow *a = mPreviewWindow.get();
253 if (a == nullptr) {
254 ALOGE("%s: preview window is null", __FUNCTION__);
255 return hardware::Void();
256 }
257 ANativeWindowBuffer* anb;
258 int rc = native_window_dequeue_buffer_and_wait(a, &anb);
259 Status s = Status::INTERNAL_ERROR;
260 uint64_t bufferId = 0;
261 uint32_t stride = 0;
262 hidl_handle buf = nullptr;
263 if (rc == OK) {
264 s = Status::OK;
265 auto pair = getBufferId(anb);
266 buf = (pair.first) ? anb->handle : nullptr;
267 bufferId = pair.second;
268 stride = anb->stride;
269 }
270
271 _hidl_cb(s, bufferId, buf, stride);
272 return hardware::Void();
273}
274
275hardware::Return<Status>
276CameraHardwareInterface::enqueueBuffer(uint64_t bufferId) {
277 ANativeWindow *a = mPreviewWindow.get();
278 if (a == nullptr) {
279 ALOGE("%s: preview window is null", __FUNCTION__);
280 return Status::INTERNAL_ERROR;
281 }
282 if (mReversedBufMap.count(bufferId) == 0) {
283 ALOGE("%s: bufferId %" PRIu64 " not found", __FUNCTION__, bufferId);
284 return Status::ILLEGAL_ARGUMENT;
285 }
286 int rc = a->queueBuffer(a, mReversedBufMap.at(bufferId), -1);
287 if (rc == 0) {
288 return Status::OK;
289 }
290 return Status::INTERNAL_ERROR;
291}
292
293hardware::Return<Status>
294CameraHardwareInterface::cancelBuffer(uint64_t bufferId) {
295 ANativeWindow *a = mPreviewWindow.get();
296 if (a == nullptr) {
297 ALOGE("%s: preview window is null", __FUNCTION__);
298 return Status::INTERNAL_ERROR;
299 }
300 if (mReversedBufMap.count(bufferId) == 0) {
301 ALOGE("%s: bufferId %" PRIu64 " not found", __FUNCTION__, bufferId);
302 return Status::ILLEGAL_ARGUMENT;
303 }
304 int rc = a->cancelBuffer(a, mReversedBufMap.at(bufferId), -1);
305 if (rc == 0) {
306 return Status::OK;
307 }
308 return Status::INTERNAL_ERROR;
309}
310
311hardware::Return<Status>
312CameraHardwareInterface::setBufferCount(uint32_t count) {
313 ANativeWindow *a = mPreviewWindow.get();
314 if (a != nullptr) {
315 // Workaround for b/27039775
316 // Previously, setting the buffer count would reset the buffer
317 // queue's flag that allows for all buffers to be dequeued on the
318 // producer side, instead of just the producer's declared max count,
319 // if no filled buffers have yet been queued by the producer. This
320 // reset no longer happens, but some HALs depend on this behavior,
321 // so it needs to be maintained for HAL backwards compatibility.
322 // Simulate the prior behavior by disconnecting/reconnecting to the
323 // window and setting the values again. This has the drawback of
324 // actually causing memory reallocation, which may not have happened
325 // in the past.
326 native_window_api_disconnect(a, NATIVE_WINDOW_API_CAMERA);
327 native_window_api_connect(a, NATIVE_WINDOW_API_CAMERA);
328 if (mPreviewScalingMode != NOT_SET) {
329 native_window_set_scaling_mode(a, mPreviewScalingMode);
330 }
331 if (mPreviewTransform != NOT_SET) {
332 native_window_set_buffers_transform(a, mPreviewTransform);
333 }
334 if (mPreviewWidth != NOT_SET) {
335 native_window_set_buffers_dimensions(a,
336 mPreviewWidth, mPreviewHeight);
337 native_window_set_buffers_format(a, mPreviewFormat);
338 }
339 if (mPreviewUsage != 0) {
340 native_window_set_usage(a, mPreviewUsage);
341 }
342 if (mPreviewSwapInterval != NOT_SET) {
343 a->setSwapInterval(a, mPreviewSwapInterval);
344 }
345 if (mPreviewCrop.left != NOT_SET) {
346 native_window_set_crop(a, &(mPreviewCrop));
347 }
348 }
349 int rc = native_window_set_buffer_count(a, count);
350 if (rc == OK) {
351 cleanupCirculatingBuffers();
352 return Status::OK;
353 }
354 return Status::INTERNAL_ERROR;
355}
356
357hardware::Return<Status>
358CameraHardwareInterface::setBuffersGeometry(
359 uint32_t w, uint32_t h, hardware::graphics::common::V1_0::PixelFormat format) {
360 Status s = Status::INTERNAL_ERROR;
361 ANativeWindow *a = mPreviewWindow.get();
362 if (a == nullptr) {
363 ALOGE("%s: preview window is null", __FUNCTION__);
364 return s;
365 }
366 mPreviewWidth = w;
367 mPreviewHeight = h;
368 mPreviewFormat = (int) format;
369 int rc = native_window_set_buffers_dimensions(a, w, h);
370 if (rc == OK) {
371 rc = native_window_set_buffers_format(a, mPreviewFormat);
372 }
373 if (rc == OK) {
374 cleanupCirculatingBuffers();
375 s = Status::OK;
376 }
377 return s;
378}
379
380hardware::Return<Status>
381CameraHardwareInterface::setCrop(int32_t left, int32_t top, int32_t right, int32_t bottom) {
382 Status s = Status::INTERNAL_ERROR;
383 ANativeWindow *a = mPreviewWindow.get();
384 if (a == nullptr) {
385 ALOGE("%s: preview window is null", __FUNCTION__);
386 return s;
387 }
388 mPreviewCrop.left = left;
389 mPreviewCrop.top = top;
390 mPreviewCrop.right = right;
391 mPreviewCrop.bottom = bottom;
392 int rc = native_window_set_crop(a, &mPreviewCrop);
393 if (rc == OK) {
394 s = Status::OK;
395 }
396 return s;
397}
398
399hardware::Return<Status>
Eino-Ville Talvala1a2f15d2017-03-23 15:37:22 -0700400CameraHardwareInterface::setUsage(hardware::camera::device::V1_0::ProducerUsageFlags usage) {
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800401 Status s = Status::INTERNAL_ERROR;
402 ANativeWindow *a = mPreviewWindow.get();
403 if (a == nullptr) {
404 ALOGE("%s: preview window is null", __FUNCTION__);
405 return s;
406 }
Eino-Ville Talvala1a2f15d2017-03-23 15:37:22 -0700407 mPreviewUsage = ::android_convertGralloc1To0Usage(usage, /*consumerUsage*/ 0);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800408 int rc = native_window_set_usage(a, mPreviewUsage);
409 if (rc == OK) {
410 cleanupCirculatingBuffers();
411 s = Status::OK;
412 }
413 return s;
414}
415
416hardware::Return<Status>
417CameraHardwareInterface::setSwapInterval(int32_t interval) {
418 Status s = Status::INTERNAL_ERROR;
419 ANativeWindow *a = mPreviewWindow.get();
420 if (a == nullptr) {
421 ALOGE("%s: preview window is null", __FUNCTION__);
422 return s;
423 }
424 mPreviewSwapInterval = interval;
425 int rc = a->setSwapInterval(a, interval);
426 if (rc == OK) {
427 s = Status::OK;
428 }
429 return s;
430}
431
432hardware::Return<void>
433CameraHardwareInterface::getMinUndequeuedBufferCount(getMinUndequeuedBufferCount_cb _hidl_cb) {
434 ANativeWindow *a = mPreviewWindow.get();
435 if (a == nullptr) {
436 ALOGE("%s: preview window is null", __FUNCTION__);
437 return hardware::Void();
438 }
439 int count = 0;
440 int rc = a->query(a, NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &count);
441 Status s = Status::INTERNAL_ERROR;
442 if (rc == OK) {
443 s = Status::OK;
444 }
445 _hidl_cb(s, count);
446 return hardware::Void();
447}
448
449hardware::Return<Status>
450CameraHardwareInterface::setTimestamp(int64_t timestamp) {
451 Status s = Status::INTERNAL_ERROR;
452 ANativeWindow *a = mPreviewWindow.get();
453 if (a == nullptr) {
454 ALOGE("%s: preview window is null", __FUNCTION__);
455 return s;
456 }
457 int rc = native_window_set_buffers_timestamp(a, timestamp);
458 if (rc == OK) {
459 s = Status::OK;
460 }
461 return s;
462}
463
464status_t CameraHardwareInterface::setPreviewWindow(const sp<ANativeWindow>& buf)
465{
466 ALOGV("%s(%s) buf %p", __FUNCTION__, mName.string(), buf.get());
467 if (CC_LIKELY(mHidlDevice != nullptr)) {
468 mPreviewWindow = buf;
469 if (buf != nullptr) {
470 if (mPreviewScalingMode != NOT_SET) {
471 setPreviewScalingMode(mPreviewScalingMode);
472 }
473 if (mPreviewTransform != NOT_SET) {
474 setPreviewTransform(mPreviewTransform);
475 }
476 }
477 return CameraProviderManager::mapToStatusT(
478 mHidlDevice->setPreviewWindow(buf.get() ? this : nullptr));
479 } else if (mDevice) {
480 if (mDevice->ops->set_preview_window) {
481 mPreviewWindow = buf;
482 if (buf != nullptr) {
483 if (mPreviewScalingMode != NOT_SET) {
484 setPreviewScalingMode(mPreviewScalingMode);
485 }
486 if (mPreviewTransform != NOT_SET) {
487 setPreviewTransform(mPreviewTransform);
488 }
489 }
490 mHalPreviewWindow.user = this;
491 ALOGV("%s &mHalPreviewWindow %p mHalPreviewWindow.user %p",__FUNCTION__,
492 &mHalPreviewWindow, mHalPreviewWindow.user);
493 return mDevice->ops->set_preview_window(mDevice,
494 buf.get() ? &mHalPreviewWindow.nw : 0);
495 }
496 }
497 return INVALID_OPERATION;
498}
499
500void CameraHardwareInterface::setCallbacks(notify_callback notify_cb,
501 data_callback data_cb,
502 data_callback_timestamp data_cb_timestamp,
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700503 data_callback_timestamp_batch data_cb_timestamp_batch,
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800504 void* user)
505{
506 mNotifyCb = notify_cb;
507 mDataCb = data_cb;
508 mDataCbTimestamp = data_cb_timestamp;
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700509 mDataCbTimestampBatch = data_cb_timestamp_batch;
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800510 mCbUser = user;
511
512 ALOGV("%s(%s)", __FUNCTION__, mName.string());
513
514 if (mDevice && mDevice->ops->set_callbacks) {
515 mDevice->ops->set_callbacks(mDevice,
516 sNotifyCb,
517 sDataCb,
518 sDataCbTimestamp,
519 sGetMemory,
520 this);
521 }
522}
523
524void CameraHardwareInterface::enableMsgType(int32_t msgType)
525{
526 ALOGV("%s(%s)", __FUNCTION__, mName.string());
527 if (CC_LIKELY(mHidlDevice != nullptr)) {
528 mHidlDevice->enableMsgType(msgType);
529 } else if (mDevice && mDevice->ops->enable_msg_type) {
530 mDevice->ops->enable_msg_type(mDevice, msgType);
531 }
532}
533
534void CameraHardwareInterface::disableMsgType(int32_t msgType)
535{
536 ALOGV("%s(%s)", __FUNCTION__, mName.string());
537 if (CC_LIKELY(mHidlDevice != nullptr)) {
538 mHidlDevice->disableMsgType(msgType);
539 } else if (mDevice && mDevice->ops->disable_msg_type) {
540 mDevice->ops->disable_msg_type(mDevice, msgType);
541 }
542}
543
544int CameraHardwareInterface::msgTypeEnabled(int32_t msgType)
545{
546 ALOGV("%s(%s)", __FUNCTION__, mName.string());
547 if (CC_LIKELY(mHidlDevice != nullptr)) {
548 return mHidlDevice->msgTypeEnabled(msgType);
549 } else if (mDevice && mDevice->ops->msg_type_enabled) {
550 return mDevice->ops->msg_type_enabled(mDevice, msgType);
551 }
552 return false;
553}
554
555status_t CameraHardwareInterface::startPreview()
556{
557 ALOGV("%s(%s)", __FUNCTION__, mName.string());
558 if (CC_LIKELY(mHidlDevice != nullptr)) {
559 return CameraProviderManager::mapToStatusT(
560 mHidlDevice->startPreview());
561 } else if (mDevice && mDevice->ops->start_preview) {
562 return mDevice->ops->start_preview(mDevice);
563 }
564 return INVALID_OPERATION;
565}
566
567void CameraHardwareInterface::stopPreview()
568{
569 ALOGV("%s(%s)", __FUNCTION__, mName.string());
570 if (CC_LIKELY(mHidlDevice != nullptr)) {
571 mHidlDevice->stopPreview();
572 } else if (mDevice && mDevice->ops->stop_preview) {
573 mDevice->ops->stop_preview(mDevice);
574 }
575}
576
577int CameraHardwareInterface::previewEnabled()
578{
579 ALOGV("%s(%s)", __FUNCTION__, mName.string());
580 if (CC_LIKELY(mHidlDevice != nullptr)) {
581 return mHidlDevice->previewEnabled();
582 } else if (mDevice && mDevice->ops->preview_enabled) {
583 return mDevice->ops->preview_enabled(mDevice);
584 }
585 return false;
586}
587
588status_t CameraHardwareInterface::storeMetaDataInBuffers(int enable)
589{
590 ALOGV("%s(%s)", __FUNCTION__, mName.string());
591 if (CC_LIKELY(mHidlDevice != nullptr)) {
592 return CameraProviderManager::mapToStatusT(
593 mHidlDevice->storeMetaDataInBuffers(enable));
594 } else if (mDevice && mDevice->ops->store_meta_data_in_buffers) {
595 return mDevice->ops->store_meta_data_in_buffers(mDevice, enable);
596 }
597 return enable ? INVALID_OPERATION: OK;
598}
599
600status_t CameraHardwareInterface::startRecording()
601{
602 ALOGV("%s(%s)", __FUNCTION__, mName.string());
603 if (CC_LIKELY(mHidlDevice != nullptr)) {
604 return CameraProviderManager::mapToStatusT(
605 mHidlDevice->startRecording());
606 } else if (mDevice && mDevice->ops->start_recording) {
607 return mDevice->ops->start_recording(mDevice);
608 }
609 return INVALID_OPERATION;
610}
611
612/**
613 * Stop a previously started recording.
614 */
615void CameraHardwareInterface::stopRecording()
616{
617 ALOGV("%s(%s)", __FUNCTION__, mName.string());
618 if (CC_LIKELY(mHidlDevice != nullptr)) {
619 mHidlDevice->stopRecording();
620 } else if (mDevice && mDevice->ops->stop_recording) {
621 mDevice->ops->stop_recording(mDevice);
622 }
623}
624
625/**
626 * Returns true if recording is enabled.
627 */
628int CameraHardwareInterface::recordingEnabled()
629{
630 ALOGV("%s(%s)", __FUNCTION__, mName.string());
631 if (CC_LIKELY(mHidlDevice != nullptr)) {
632 return mHidlDevice->recordingEnabled();
633 } else if (mDevice && mDevice->ops->recording_enabled) {
634 return mDevice->ops->recording_enabled(mDevice);
635 }
636 return false;
637}
638
639void CameraHardwareInterface::releaseRecordingFrame(const sp<IMemory>& mem)
640{
641 ALOGV("%s(%s)", __FUNCTION__, mName.string());
642 ssize_t offset;
643 size_t size;
644 sp<IMemoryHeap> heap = mem->getMemory(&offset, &size);
645 int heapId = heap->getHeapID();
646 int bufferIndex = offset / size;
647 if (CC_LIKELY(mHidlDevice != nullptr)) {
648 if (size == sizeof(VideoNativeHandleMetadata)) {
649 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*) mem->pointer();
650 // Caching the handle here because md->pHandle will be subject to HAL's edit
651 native_handle_t* nh = md->pHandle;
652 hidl_handle frame = nh;
653 mHidlDevice->releaseRecordingFrameHandle(heapId, bufferIndex, frame);
654 native_handle_close(nh);
655 native_handle_delete(nh);
656 } else {
657 mHidlDevice->releaseRecordingFrame(heapId, bufferIndex);
658 }
659 } else if (mDevice && mDevice->ops->release_recording_frame) {
660 void *data = ((uint8_t *)heap->base()) + offset;
661 return mDevice->ops->release_recording_frame(mDevice, data);
662 }
663}
664
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700665void CameraHardwareInterface::releaseRecordingFrameBatch(const std::vector<sp<IMemory>>& frames)
666{
667 ALOGV("%s(%s)", __FUNCTION__, mName.string());
668 size_t n = frames.size();
669 std::vector<VideoFrameMessage> msgs;
670 msgs.reserve(n);
671 for (auto& mem : frames) {
672 if (CC_LIKELY(mHidlDevice != nullptr)) {
673 ssize_t offset;
674 size_t size;
675 sp<IMemoryHeap> heap = mem->getMemory(&offset, &size);
676 if (size == sizeof(VideoNativeHandleMetadata)) {
677 uint32_t heapId = heap->getHeapID();
678 uint32_t bufferIndex = offset / size;
679 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*) mem->pointer();
680 // Caching the handle here because md->pHandle will be subject to HAL's edit
681 native_handle_t* nh = md->pHandle;
682 VideoFrameMessage msg;
683 msgs.push_back({nh, heapId, bufferIndex});
684 } else {
685 ALOGE("%s only supports VideoNativeHandleMetadata mode", __FUNCTION__);
686 return;
687 }
688 } else {
689 ALOGE("Non HIDL mode do not support %s", __FUNCTION__);
690 return;
691 }
692 }
693
694 mHidlDevice->releaseRecordingFrameHandleBatch(msgs);
695
696 for (auto& msg : msgs) {
697 native_handle_t* nh = const_cast<native_handle_t*>(msg.frameData.getNativeHandle());
698 native_handle_close(nh);
699 native_handle_delete(nh);
700 }
701}
702
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800703status_t CameraHardwareInterface::autoFocus()
704{
705 ALOGV("%s(%s)", __FUNCTION__, mName.string());
706 if (CC_LIKELY(mHidlDevice != nullptr)) {
707 return CameraProviderManager::mapToStatusT(
708 mHidlDevice->autoFocus());
709 } else if (mDevice && mDevice->ops->auto_focus) {
710 return mDevice->ops->auto_focus(mDevice);
711 }
712 return INVALID_OPERATION;
713}
714
715status_t CameraHardwareInterface::cancelAutoFocus()
716{
717 ALOGV("%s(%s)", __FUNCTION__, mName.string());
718 if (CC_LIKELY(mHidlDevice != nullptr)) {
719 return CameraProviderManager::mapToStatusT(
720 mHidlDevice->cancelAutoFocus());
721 } else if (mDevice && mDevice->ops->cancel_auto_focus) {
722 return mDevice->ops->cancel_auto_focus(mDevice);
723 }
724 return INVALID_OPERATION;
725}
726
727status_t CameraHardwareInterface::takePicture()
728{
729 ALOGV("%s(%s)", __FUNCTION__, mName.string());
730 if (CC_LIKELY(mHidlDevice != nullptr)) {
731 return CameraProviderManager::mapToStatusT(
732 mHidlDevice->takePicture());
733 } else if (mDevice && mDevice->ops->take_picture) {
734 return mDevice->ops->take_picture(mDevice);
735 }
736 return INVALID_OPERATION;
737}
738
739status_t CameraHardwareInterface::cancelPicture()
740{
741 ALOGV("%s(%s)", __FUNCTION__, mName.string());
742 if (CC_LIKELY(mHidlDevice != nullptr)) {
743 return CameraProviderManager::mapToStatusT(
744 mHidlDevice->cancelPicture());
745 } else if (mDevice && mDevice->ops->cancel_picture) {
746 return mDevice->ops->cancel_picture(mDevice);
747 }
748 return INVALID_OPERATION;
749}
750
751status_t CameraHardwareInterface::setParameters(const CameraParameters &params)
752{
753 ALOGV("%s(%s)", __FUNCTION__, mName.string());
754 if (CC_LIKELY(mHidlDevice != nullptr)) {
755 return CameraProviderManager::mapToStatusT(
756 mHidlDevice->setParameters(params.flatten().string()));
757 } else if (mDevice && mDevice->ops->set_parameters) {
758 return mDevice->ops->set_parameters(mDevice, params.flatten().string());
759 }
760 return INVALID_OPERATION;
761}
762
763CameraParameters CameraHardwareInterface::getParameters() const
764{
765 ALOGV("%s(%s)", __FUNCTION__, mName.string());
766 CameraParameters parms;
767 if (CC_LIKELY(mHidlDevice != nullptr)) {
768 hardware::hidl_string outParam;
769 mHidlDevice->getParameters(
770 [&outParam](const auto& outStr) {
771 outParam = outStr;
772 });
773 String8 tmp(outParam.c_str());
774 parms.unflatten(tmp);
775 } else if (mDevice && mDevice->ops->get_parameters) {
776 char *temp = mDevice->ops->get_parameters(mDevice);
777 String8 str_parms(temp);
778 if (mDevice->ops->put_parameters)
779 mDevice->ops->put_parameters(mDevice, temp);
780 else
781 free(temp);
782 parms.unflatten(str_parms);
783 }
784 return parms;
785}
786
787status_t CameraHardwareInterface::sendCommand(int32_t cmd, int32_t arg1, int32_t arg2)
788{
789 ALOGV("%s(%s)", __FUNCTION__, mName.string());
790 if (CC_LIKELY(mHidlDevice != nullptr)) {
791 return CameraProviderManager::mapToStatusT(
792 mHidlDevice->sendCommand((CommandType) cmd, arg1, arg2));
793 } else if (mDevice && mDevice->ops->send_command) {
794 return mDevice->ops->send_command(mDevice, cmd, arg1, arg2);
795 }
796 return INVALID_OPERATION;
797}
798
799/**
800 * Release the hardware resources owned by this object. Note that this is
801 * *not* done in the destructor.
802 */
803void CameraHardwareInterface::release() {
804 ALOGV("%s(%s)", __FUNCTION__, mName.string());
805 if (CC_LIKELY(mHidlDevice != nullptr)) {
806 mHidlDevice->close();
807 mHidlDevice.clear();
808 } else if (mDevice && mDevice->ops->release) {
809 mDevice->ops->release(mDevice);
810 }
811}
812
813/**
814 * Dump state of the camera hardware
815 */
816status_t CameraHardwareInterface::dump(int fd, const Vector<String16>& /*args*/) const
817{
818 ALOGV("%s(%s)", __FUNCTION__, mName.string());
819 if (CC_LIKELY(mHidlDevice != nullptr)) {
820 native_handle_t* handle = native_handle_create(1,0);
821 handle->data[0] = fd;
822 Status s = mHidlDevice->dumpState(handle);
823 native_handle_delete(handle);
824 return CameraProviderManager::mapToStatusT(s);
825 } else if (mDevice && mDevice->ops->dump) {
826 return mDevice->ops->dump(mDevice, fd);
827 }
828 return OK; // It's fine if the HAL doesn't implement dump()
829}
830
831/**
832 * Methods for legacy (non-HIDL) path follows
833 */
834void CameraHardwareInterface::sNotifyCb(int32_t msg_type, int32_t ext1,
835 int32_t ext2, void *user)
836{
837 ALOGV("%s", __FUNCTION__);
838 CameraHardwareInterface *object =
839 static_cast<CameraHardwareInterface *>(user);
840 object->mNotifyCb(msg_type, ext1, ext2, object->mCbUser);
841}
842
843void CameraHardwareInterface::sDataCb(int32_t msg_type,
844 const camera_memory_t *data, unsigned int index,
845 camera_frame_metadata_t *metadata,
846 void *user)
847{
848 ALOGV("%s", __FUNCTION__);
849 CameraHardwareInterface *object =
850 static_cast<CameraHardwareInterface *>(user);
851 sp<CameraHeapMemory> mem(static_cast<CameraHeapMemory *>(data->handle));
852 if (index >= mem->mNumBufs) {
853 ALOGE("%s: invalid buffer index %d, max allowed is %d", __FUNCTION__,
854 index, mem->mNumBufs);
855 return;
856 }
857 object->mDataCb(msg_type, mem->mBuffers[index], metadata, object->mCbUser);
858}
859
860void CameraHardwareInterface::sDataCbTimestamp(nsecs_t timestamp, int32_t msg_type,
861 const camera_memory_t *data, unsigned index,
862 void *user)
863{
864 ALOGV("%s", __FUNCTION__);
865 CameraHardwareInterface *object =
866 static_cast<CameraHardwareInterface *>(user);
867 // Start refcounting the heap object from here on. When the clients
868 // drop all references, it will be destroyed (as well as the enclosed
869 // MemoryHeapBase.
870 sp<CameraHeapMemory> mem(static_cast<CameraHeapMemory *>(data->handle));
871 if (index >= mem->mNumBufs) {
872 ALOGE("%s: invalid buffer index %d, max allowed is %d", __FUNCTION__,
873 index, mem->mNumBufs);
874 return;
875 }
876 object->mDataCbTimestamp(timestamp, msg_type, mem->mBuffers[index], object->mCbUser);
877}
878
879camera_memory_t* CameraHardwareInterface::sGetMemory(
880 int fd, size_t buf_size, uint_t num_bufs,
881 void *user __attribute__((unused)))
882{
883 CameraHeapMemory *mem;
884 if (fd < 0) {
885 mem = new CameraHeapMemory(buf_size, num_bufs);
886 } else {
887 mem = new CameraHeapMemory(fd, buf_size, num_bufs);
888 }
889 mem->incStrong(mem);
890 return &mem->handle;
891}
892
893void CameraHardwareInterface::sPutMemory(camera_memory_t *data)
894{
895 if (!data) {
896 return;
897 }
898
899 CameraHeapMemory *mem = static_cast<CameraHeapMemory *>(data->handle);
900 mem->decStrong(mem);
901}
902
903ANativeWindow* CameraHardwareInterface::sToAnw(void *user)
904{
905 CameraHardwareInterface *object =
906 reinterpret_cast<CameraHardwareInterface *>(user);
907 return object->mPreviewWindow.get();
908}
909#define anw(n) sToAnw(((struct camera_preview_window *)(n))->user)
910#define hwi(n) reinterpret_cast<CameraHardwareInterface *>(\
911 ((struct camera_preview_window *)(n))->user)
912
913int CameraHardwareInterface::sDequeueBuffer(struct preview_stream_ops* w,
914 buffer_handle_t** buffer, int *stride)
915{
916 int rc;
917 ANativeWindow *a = anw(w);
918 ANativeWindowBuffer* anb;
919 rc = native_window_dequeue_buffer_and_wait(a, &anb);
920 if (rc == OK) {
921 *buffer = &anb->handle;
922 *stride = anb->stride;
923 }
924 return rc;
925}
926
927#ifndef container_of
928#define container_of(ptr, type, member) ({ \
929 const __typeof__(((type *) 0)->member) *__mptr = (ptr); \
930 (type *) ((char *) __mptr - (char *)(&((type *)0)->member)); })
931#endif
932
933int CameraHardwareInterface::sLockBuffer(struct preview_stream_ops* w,
934 buffer_handle_t* /*buffer*/)
935{
936 ANativeWindow *a = anw(w);
937 (void)a;
938 return 0;
939}
940
941int CameraHardwareInterface::sEnqueueBuffer(struct preview_stream_ops* w,
942 buffer_handle_t* buffer)
943{
944 ANativeWindow *a = anw(w);
945 return a->queueBuffer(a,
946 container_of(buffer, ANativeWindowBuffer, handle), -1);
947}
948
949int CameraHardwareInterface::sCancelBuffer(struct preview_stream_ops* w,
950 buffer_handle_t* buffer)
951{
952 ANativeWindow *a = anw(w);
953 return a->cancelBuffer(a,
954 container_of(buffer, ANativeWindowBuffer, handle), -1);
955}
956
957int CameraHardwareInterface::sSetBufferCount(struct preview_stream_ops* w, int count)
958{
959 ANativeWindow *a = anw(w);
960
961 if (a != nullptr) {
962 // Workaround for b/27039775
963 // Previously, setting the buffer count would reset the buffer
964 // queue's flag that allows for all buffers to be dequeued on the
965 // producer side, instead of just the producer's declared max count,
966 // if no filled buffers have yet been queued by the producer. This
967 // reset no longer happens, but some HALs depend on this behavior,
968 // so it needs to be maintained for HAL backwards compatibility.
969 // Simulate the prior behavior by disconnecting/reconnecting to the
970 // window and setting the values again. This has the drawback of
971 // actually causing memory reallocation, which may not have happened
972 // in the past.
973 CameraHardwareInterface *hw = hwi(w);
974 native_window_api_disconnect(a, NATIVE_WINDOW_API_CAMERA);
975 native_window_api_connect(a, NATIVE_WINDOW_API_CAMERA);
976 if (hw->mPreviewScalingMode != NOT_SET) {
977 native_window_set_scaling_mode(a, hw->mPreviewScalingMode);
978 }
979 if (hw->mPreviewTransform != NOT_SET) {
980 native_window_set_buffers_transform(a, hw->mPreviewTransform);
981 }
982 if (hw->mPreviewWidth != NOT_SET) {
983 native_window_set_buffers_dimensions(a,
984 hw->mPreviewWidth, hw->mPreviewHeight);
985 native_window_set_buffers_format(a, hw->mPreviewFormat);
986 }
987 if (hw->mPreviewUsage != 0) {
988 native_window_set_usage(a, hw->mPreviewUsage);
989 }
990 if (hw->mPreviewSwapInterval != NOT_SET) {
991 a->setSwapInterval(a, hw->mPreviewSwapInterval);
992 }
993 if (hw->mPreviewCrop.left != NOT_SET) {
994 native_window_set_crop(a, &(hw->mPreviewCrop));
995 }
996 }
997
998 return native_window_set_buffer_count(a, count);
999}
1000
1001int CameraHardwareInterface::sSetBuffersGeometry(struct preview_stream_ops* w,
1002 int width, int height, int format)
1003{
1004 int rc;
1005 ANativeWindow *a = anw(w);
1006 CameraHardwareInterface *hw = hwi(w);
1007 hw->mPreviewWidth = width;
1008 hw->mPreviewHeight = height;
1009 hw->mPreviewFormat = format;
1010 rc = native_window_set_buffers_dimensions(a, width, height);
1011 if (rc == OK) {
1012 rc = native_window_set_buffers_format(a, format);
1013 }
1014 return rc;
1015}
1016
1017int CameraHardwareInterface::sSetCrop(struct preview_stream_ops *w,
1018 int left, int top, int right, int bottom)
1019{
1020 ANativeWindow *a = anw(w);
1021 CameraHardwareInterface *hw = hwi(w);
1022 hw->mPreviewCrop.left = left;
1023 hw->mPreviewCrop.top = top;
1024 hw->mPreviewCrop.right = right;
1025 hw->mPreviewCrop.bottom = bottom;
1026 return native_window_set_crop(a, &(hw->mPreviewCrop));
1027}
1028
1029int CameraHardwareInterface::sSetTimestamp(struct preview_stream_ops *w,
1030 int64_t timestamp) {
1031 ANativeWindow *a = anw(w);
1032 return native_window_set_buffers_timestamp(a, timestamp);
1033}
1034
1035int CameraHardwareInterface::sSetUsage(struct preview_stream_ops* w, int usage)
1036{
1037 ANativeWindow *a = anw(w);
1038 CameraHardwareInterface *hw = hwi(w);
1039 hw->mPreviewUsage = usage;
1040 return native_window_set_usage(a, usage);
1041}
1042
1043int CameraHardwareInterface::sSetSwapInterval(struct preview_stream_ops *w, int interval)
1044{
1045 ANativeWindow *a = anw(w);
1046 CameraHardwareInterface *hw = hwi(w);
1047 hw->mPreviewSwapInterval = interval;
1048 return a->setSwapInterval(a, interval);
1049}
1050
1051int CameraHardwareInterface::sGetMinUndequeuedBufferCount(
1052 const struct preview_stream_ops *w,
1053 int *count)
1054{
1055 ANativeWindow *a = anw(w);
1056 return a->query(a, NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, count);
1057}
1058
1059void CameraHardwareInterface::initHalPreviewWindow()
1060{
1061 mHalPreviewWindow.nw.cancel_buffer = sCancelBuffer;
1062 mHalPreviewWindow.nw.lock_buffer = sLockBuffer;
1063 mHalPreviewWindow.nw.dequeue_buffer = sDequeueBuffer;
1064 mHalPreviewWindow.nw.enqueue_buffer = sEnqueueBuffer;
1065 mHalPreviewWindow.nw.set_buffer_count = sSetBufferCount;
1066 mHalPreviewWindow.nw.set_buffers_geometry = sSetBuffersGeometry;
1067 mHalPreviewWindow.nw.set_crop = sSetCrop;
1068 mHalPreviewWindow.nw.set_timestamp = sSetTimestamp;
1069 mHalPreviewWindow.nw.set_usage = sSetUsage;
1070 mHalPreviewWindow.nw.set_swap_interval = sSetSwapInterval;
1071
1072 mHalPreviewWindow.nw.get_min_undequeued_buffer_count =
1073 sGetMinUndequeuedBufferCount;
1074}
1075
1076}; // namespace android