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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>
Yin-Chia Yeh06760662017-04-17 17:37:03 -070020#include <media/hardware/HardwareAPI.h> // For VideoNativeHandleMetadata
Yin-Chia Yeh4717c472017-02-13 10:56:40 -080021#include "CameraHardwareInterface.h"
22
23namespace android {
24
25using namespace hardware::camera::device::V1_0;
26using namespace hardware::camera::common::V1_0;
27using hardware::hidl_handle;
28
29CameraHardwareInterface::~CameraHardwareInterface()
30{
31 ALOGI("Destroying camera %s", mName.string());
32 if (mDevice) {
33 int rc = mDevice->common.close(&mDevice->common);
34 if (rc != OK)
35 ALOGE("Could not close camera %s: %d", mName.string(), rc);
36 }
37 if (mHidlDevice != nullptr) {
38 mHidlDevice->close();
39 mHidlDevice.clear();
40 cleanupCirculatingBuffers();
41 }
42}
43
Yin-Chia Yeh4717c472017-02-13 10:56:40 -080044status_t CameraHardwareInterface::initialize(sp<CameraProviderManager> manager) {
45 if (mDevice) {
46 ALOGE("%s: camera hardware interface has been initialized to libhardware path!",
47 __FUNCTION__);
48 return INVALID_OPERATION;
49 }
50
51 ALOGI("Opening camera %s", mName.string());
52
Steven Moreland5ff9c912017-03-09 23:13:00 -080053 status_t ret = manager->openSession(mName.string(), this, &mHidlDevice);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -080054 if (ret != OK) {
55 ALOGE("%s: openSession failed! %s (%d)", __FUNCTION__, strerror(-ret), ret);
56 }
57 return ret;
58}
59
60status_t CameraHardwareInterface::setPreviewScalingMode(int scalingMode)
61{
62 int rc = OK;
63 mPreviewScalingMode = scalingMode;
64 if (mPreviewWindow != nullptr) {
65 rc = native_window_set_scaling_mode(mPreviewWindow.get(),
66 scalingMode);
67 }
68 return rc;
69}
70
71status_t CameraHardwareInterface::setPreviewTransform(int transform) {
72 int rc = OK;
73 mPreviewTransform = transform;
74 if (mPreviewWindow != nullptr) {
75 rc = native_window_set_buffers_transform(mPreviewWindow.get(),
76 mPreviewTransform);
77 }
78 return rc;
79}
80
81/**
82 * Implementation of android::hardware::camera::device::V1_0::ICameraDeviceCallback
83 */
84hardware::Return<void> CameraHardwareInterface::notifyCallback(
85 NotifyCallbackMsg msgType, int32_t ext1, int32_t ext2) {
86 sNotifyCb((int32_t) msgType, ext1, ext2, (void*) this);
87 return hardware::Void();
88}
89
90hardware::Return<uint32_t> CameraHardwareInterface::registerMemory(
91 const hardware::hidl_handle& descriptor,
92 uint32_t bufferSize, uint32_t bufferCount) {
93 if (descriptor->numFds != 1) {
94 ALOGE("%s: camera memory descriptor has numFds %d (expect 1)",
95 __FUNCTION__, descriptor->numFds);
96 return 0;
97 }
98 if (descriptor->data[0] < 0) {
99 ALOGE("%s: camera memory descriptor has FD %d (expect >= 0)",
100 __FUNCTION__, descriptor->data[0]);
101 return 0;
102 }
103
104 camera_memory_t* mem = sGetMemory(descriptor->data[0], bufferSize, bufferCount, this);
105 sp<CameraHeapMemory> camMem(static_cast<CameraHeapMemory *>(mem->handle));
106 int memPoolId = camMem->mHeap->getHeapID();
107 if (memPoolId < 0) {
108 ALOGE("%s: CameraHeapMemory has FD %d (expect >= 0)", __FUNCTION__, memPoolId);
109 return 0;
110 }
Yin-Chia Yehb2a65612017-09-07 16:30:46 -0700111 std::lock_guard<std::mutex> lock(mHidlMemPoolMapLock);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800112 mHidlMemPoolMap.insert(std::make_pair(memPoolId, mem));
113 return memPoolId;
114}
115
116hardware::Return<void> CameraHardwareInterface::unregisterMemory(uint32_t memId) {
Yin-Chia Yehb2a65612017-09-07 16:30:46 -0700117 std::lock_guard<std::mutex> lock(mHidlMemPoolMapLock);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800118 if (mHidlMemPoolMap.count(memId) == 0) {
119 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, memId);
120 return hardware::Void();
121 }
122 camera_memory_t* mem = mHidlMemPoolMap.at(memId);
123 sPutMemory(mem);
124 mHidlMemPoolMap.erase(memId);
125 return hardware::Void();
126}
127
128hardware::Return<void> CameraHardwareInterface::dataCallback(
129 DataCallbackMsg msgType, uint32_t data, uint32_t bufferIndex,
130 const hardware::camera::device::V1_0::CameraFrameMetadata& metadata) {
Yin-Chia Yehb2a65612017-09-07 16:30:46 -0700131 std::lock_guard<std::mutex> lock(mHidlMemPoolMapLock);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800132 if (mHidlMemPoolMap.count(data) == 0) {
133 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, data);
134 return hardware::Void();
135 }
136 camera_frame_metadata_t md;
137 md.number_of_faces = metadata.faces.size();
138 md.faces = (camera_face_t*) metadata.faces.data();
139 sDataCb((int32_t) msgType, mHidlMemPoolMap.at(data), bufferIndex, &md, this);
140 return hardware::Void();
141}
142
143hardware::Return<void> CameraHardwareInterface::dataCallbackTimestamp(
144 DataCallbackMsg msgType, uint32_t data,
145 uint32_t bufferIndex, int64_t timestamp) {
Yin-Chia Yehb2a65612017-09-07 16:30:46 -0700146 std::lock_guard<std::mutex> lock(mHidlMemPoolMapLock);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800147 if (mHidlMemPoolMap.count(data) == 0) {
148 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, data);
149 return hardware::Void();
150 }
151 sDataCbTimestamp(timestamp, (int32_t) msgType, mHidlMemPoolMap.at(data), bufferIndex, this);
152 return hardware::Void();
153}
154
155hardware::Return<void> CameraHardwareInterface::handleCallbackTimestamp(
156 DataCallbackMsg msgType, const hidl_handle& frameData, uint32_t data,
157 uint32_t bufferIndex, int64_t timestamp) {
Yin-Chia Yehb2a65612017-09-07 16:30:46 -0700158 std::lock_guard<std::mutex> lock(mHidlMemPoolMapLock);
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800159 if (mHidlMemPoolMap.count(data) == 0) {
160 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, data);
161 return hardware::Void();
162 }
163 sp<CameraHeapMemory> mem(static_cast<CameraHeapMemory *>(mHidlMemPoolMap.at(data)->handle));
164 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*)
165 mem->mBuffers[bufferIndex]->pointer();
166 md->pHandle = const_cast<native_handle_t*>(frameData.getNativeHandle());
167 sDataCbTimestamp(timestamp, (int32_t) msgType, mHidlMemPoolMap.at(data), bufferIndex, this);
168 return hardware::Void();
169}
170
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700171hardware::Return<void> CameraHardwareInterface::handleCallbackTimestampBatch(
172 DataCallbackMsg msgType,
173 const hardware::hidl_vec<hardware::camera::device::V1_0::HandleTimestampMessage>& messages) {
174 std::vector<android::HandleTimestampMessage> msgs;
175 msgs.reserve(messages.size());
176
Yin-Chia Yehb2a65612017-09-07 16:30:46 -0700177 std::lock_guard<std::mutex> lock(mHidlMemPoolMapLock);
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700178 for (const auto& hidl_msg : messages) {
179 if (mHidlMemPoolMap.count(hidl_msg.data) == 0) {
180 ALOGE("%s: memory pool ID %d not found", __FUNCTION__, hidl_msg.data);
181 return hardware::Void();
182 }
183 sp<CameraHeapMemory> mem(
184 static_cast<CameraHeapMemory *>(mHidlMemPoolMap.at(hidl_msg.data)->handle));
185
186 if (hidl_msg.bufferIndex >= mem->mNumBufs) {
187 ALOGE("%s: invalid buffer index %d, max allowed is %d", __FUNCTION__,
188 hidl_msg.bufferIndex, mem->mNumBufs);
189 return hardware::Void();
190 }
191 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*)
192 mem->mBuffers[hidl_msg.bufferIndex]->pointer();
193 md->pHandle = const_cast<native_handle_t*>(hidl_msg.frameData.getNativeHandle());
194
195 msgs.push_back({hidl_msg.timestamp, mem->mBuffers[hidl_msg.bufferIndex]});
196 }
197
198 mDataCbTimestampBatch((int32_t) msgType, msgs, mCbUser);
199 return hardware::Void();
200}
201
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800202std::pair<bool, uint64_t> CameraHardwareInterface::getBufferId(
203 ANativeWindowBuffer* anb) {
204 std::lock_guard<std::mutex> lock(mBufferIdMapLock);
205
206 buffer_handle_t& buf = anb->handle;
207 auto it = mBufferIdMap.find(buf);
208 if (it == mBufferIdMap.end()) {
209 uint64_t bufId = mNextBufferId++;
210 mBufferIdMap[buf] = bufId;
211 mReversedBufMap[bufId] = anb;
212 return std::make_pair(true, bufId);
213 } else {
214 return std::make_pair(false, it->second);
215 }
216}
217
218void CameraHardwareInterface::cleanupCirculatingBuffers() {
219 std::lock_guard<std::mutex> lock(mBufferIdMapLock);
220 mBufferIdMap.clear();
221 mReversedBufMap.clear();
222}
223
224hardware::Return<void>
225CameraHardwareInterface::dequeueBuffer(dequeueBuffer_cb _hidl_cb) {
226 ANativeWindow *a = mPreviewWindow.get();
227 if (a == nullptr) {
228 ALOGE("%s: preview window is null", __FUNCTION__);
229 return hardware::Void();
230 }
231 ANativeWindowBuffer* anb;
232 int rc = native_window_dequeue_buffer_and_wait(a, &anb);
233 Status s = Status::INTERNAL_ERROR;
234 uint64_t bufferId = 0;
235 uint32_t stride = 0;
236 hidl_handle buf = nullptr;
237 if (rc == OK) {
238 s = Status::OK;
239 auto pair = getBufferId(anb);
240 buf = (pair.first) ? anb->handle : nullptr;
241 bufferId = pair.second;
242 stride = anb->stride;
243 }
244
245 _hidl_cb(s, bufferId, buf, stride);
246 return hardware::Void();
247}
248
249hardware::Return<Status>
250CameraHardwareInterface::enqueueBuffer(uint64_t bufferId) {
251 ANativeWindow *a = mPreviewWindow.get();
252 if (a == nullptr) {
253 ALOGE("%s: preview window is null", __FUNCTION__);
254 return Status::INTERNAL_ERROR;
255 }
256 if (mReversedBufMap.count(bufferId) == 0) {
257 ALOGE("%s: bufferId %" PRIu64 " not found", __FUNCTION__, bufferId);
258 return Status::ILLEGAL_ARGUMENT;
259 }
260 int rc = a->queueBuffer(a, mReversedBufMap.at(bufferId), -1);
261 if (rc == 0) {
262 return Status::OK;
263 }
264 return Status::INTERNAL_ERROR;
265}
266
267hardware::Return<Status>
268CameraHardwareInterface::cancelBuffer(uint64_t bufferId) {
269 ANativeWindow *a = mPreviewWindow.get();
270 if (a == nullptr) {
271 ALOGE("%s: preview window is null", __FUNCTION__);
272 return Status::INTERNAL_ERROR;
273 }
274 if (mReversedBufMap.count(bufferId) == 0) {
275 ALOGE("%s: bufferId %" PRIu64 " not found", __FUNCTION__, bufferId);
276 return Status::ILLEGAL_ARGUMENT;
277 }
278 int rc = a->cancelBuffer(a, mReversedBufMap.at(bufferId), -1);
279 if (rc == 0) {
280 return Status::OK;
281 }
282 return Status::INTERNAL_ERROR;
283}
284
285hardware::Return<Status>
286CameraHardwareInterface::setBufferCount(uint32_t count) {
287 ANativeWindow *a = mPreviewWindow.get();
288 if (a != nullptr) {
289 // Workaround for b/27039775
290 // Previously, setting the buffer count would reset the buffer
291 // queue's flag that allows for all buffers to be dequeued on the
292 // producer side, instead of just the producer's declared max count,
293 // if no filled buffers have yet been queued by the producer. This
294 // reset no longer happens, but some HALs depend on this behavior,
295 // so it needs to be maintained for HAL backwards compatibility.
296 // Simulate the prior behavior by disconnecting/reconnecting to the
297 // window and setting the values again. This has the drawback of
298 // actually causing memory reallocation, which may not have happened
299 // in the past.
300 native_window_api_disconnect(a, NATIVE_WINDOW_API_CAMERA);
301 native_window_api_connect(a, NATIVE_WINDOW_API_CAMERA);
302 if (mPreviewScalingMode != NOT_SET) {
303 native_window_set_scaling_mode(a, mPreviewScalingMode);
304 }
305 if (mPreviewTransform != NOT_SET) {
306 native_window_set_buffers_transform(a, mPreviewTransform);
307 }
308 if (mPreviewWidth != NOT_SET) {
309 native_window_set_buffers_dimensions(a,
310 mPreviewWidth, mPreviewHeight);
311 native_window_set_buffers_format(a, mPreviewFormat);
312 }
313 if (mPreviewUsage != 0) {
314 native_window_set_usage(a, mPreviewUsage);
315 }
316 if (mPreviewSwapInterval != NOT_SET) {
317 a->setSwapInterval(a, mPreviewSwapInterval);
318 }
319 if (mPreviewCrop.left != NOT_SET) {
320 native_window_set_crop(a, &(mPreviewCrop));
321 }
322 }
323 int rc = native_window_set_buffer_count(a, count);
324 if (rc == OK) {
325 cleanupCirculatingBuffers();
326 return Status::OK;
327 }
328 return Status::INTERNAL_ERROR;
329}
330
331hardware::Return<Status>
332CameraHardwareInterface::setBuffersGeometry(
333 uint32_t w, uint32_t h, hardware::graphics::common::V1_0::PixelFormat format) {
334 Status s = Status::INTERNAL_ERROR;
335 ANativeWindow *a = mPreviewWindow.get();
336 if (a == nullptr) {
337 ALOGE("%s: preview window is null", __FUNCTION__);
338 return s;
339 }
340 mPreviewWidth = w;
341 mPreviewHeight = h;
342 mPreviewFormat = (int) format;
343 int rc = native_window_set_buffers_dimensions(a, w, h);
344 if (rc == OK) {
345 rc = native_window_set_buffers_format(a, mPreviewFormat);
346 }
347 if (rc == OK) {
348 cleanupCirculatingBuffers();
349 s = Status::OK;
350 }
351 return s;
352}
353
354hardware::Return<Status>
355CameraHardwareInterface::setCrop(int32_t left, int32_t top, int32_t right, int32_t bottom) {
356 Status s = Status::INTERNAL_ERROR;
357 ANativeWindow *a = mPreviewWindow.get();
358 if (a == nullptr) {
359 ALOGE("%s: preview window is null", __FUNCTION__);
360 return s;
361 }
362 mPreviewCrop.left = left;
363 mPreviewCrop.top = top;
364 mPreviewCrop.right = right;
365 mPreviewCrop.bottom = bottom;
366 int rc = native_window_set_crop(a, &mPreviewCrop);
367 if (rc == OK) {
368 s = Status::OK;
369 }
370 return s;
371}
372
373hardware::Return<Status>
Chia-I Wu67a0c0e2017-04-06 13:37:01 -0700374CameraHardwareInterface::setUsage(hardware::graphics::common::V1_0::BufferUsage usage) {
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800375 Status s = Status::INTERNAL_ERROR;
376 ANativeWindow *a = mPreviewWindow.get();
377 if (a == nullptr) {
378 ALOGE("%s: preview window is null", __FUNCTION__);
379 return s;
380 }
Yin-Chia Yeh47cf8e62017-04-04 13:00:03 -0700381 mPreviewUsage = (int) usage;
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800382 int rc = native_window_set_usage(a, mPreviewUsage);
383 if (rc == OK) {
384 cleanupCirculatingBuffers();
385 s = Status::OK;
386 }
387 return s;
388}
389
390hardware::Return<Status>
391CameraHardwareInterface::setSwapInterval(int32_t interval) {
392 Status s = Status::INTERNAL_ERROR;
393 ANativeWindow *a = mPreviewWindow.get();
394 if (a == nullptr) {
395 ALOGE("%s: preview window is null", __FUNCTION__);
396 return s;
397 }
398 mPreviewSwapInterval = interval;
399 int rc = a->setSwapInterval(a, interval);
400 if (rc == OK) {
401 s = Status::OK;
402 }
403 return s;
404}
405
406hardware::Return<void>
407CameraHardwareInterface::getMinUndequeuedBufferCount(getMinUndequeuedBufferCount_cb _hidl_cb) {
408 ANativeWindow *a = mPreviewWindow.get();
409 if (a == nullptr) {
410 ALOGE("%s: preview window is null", __FUNCTION__);
411 return hardware::Void();
412 }
413 int count = 0;
414 int rc = a->query(a, NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &count);
415 Status s = Status::INTERNAL_ERROR;
416 if (rc == OK) {
417 s = Status::OK;
418 }
419 _hidl_cb(s, count);
420 return hardware::Void();
421}
422
423hardware::Return<Status>
424CameraHardwareInterface::setTimestamp(int64_t timestamp) {
425 Status s = Status::INTERNAL_ERROR;
426 ANativeWindow *a = mPreviewWindow.get();
427 if (a == nullptr) {
428 ALOGE("%s: preview window is null", __FUNCTION__);
429 return s;
430 }
431 int rc = native_window_set_buffers_timestamp(a, timestamp);
432 if (rc == OK) {
433 s = Status::OK;
434 }
435 return s;
436}
437
438status_t CameraHardwareInterface::setPreviewWindow(const sp<ANativeWindow>& buf)
439{
440 ALOGV("%s(%s) buf %p", __FUNCTION__, mName.string(), buf.get());
441 if (CC_LIKELY(mHidlDevice != nullptr)) {
442 mPreviewWindow = buf;
443 if (buf != nullptr) {
444 if (mPreviewScalingMode != NOT_SET) {
445 setPreviewScalingMode(mPreviewScalingMode);
446 }
447 if (mPreviewTransform != NOT_SET) {
448 setPreviewTransform(mPreviewTransform);
449 }
450 }
451 return CameraProviderManager::mapToStatusT(
452 mHidlDevice->setPreviewWindow(buf.get() ? this : nullptr));
453 } else if (mDevice) {
454 if (mDevice->ops->set_preview_window) {
455 mPreviewWindow = buf;
456 if (buf != nullptr) {
457 if (mPreviewScalingMode != NOT_SET) {
458 setPreviewScalingMode(mPreviewScalingMode);
459 }
460 if (mPreviewTransform != NOT_SET) {
461 setPreviewTransform(mPreviewTransform);
462 }
463 }
464 mHalPreviewWindow.user = this;
465 ALOGV("%s &mHalPreviewWindow %p mHalPreviewWindow.user %p",__FUNCTION__,
466 &mHalPreviewWindow, mHalPreviewWindow.user);
467 return mDevice->ops->set_preview_window(mDevice,
468 buf.get() ? &mHalPreviewWindow.nw : 0);
469 }
470 }
471 return INVALID_OPERATION;
472}
473
474void CameraHardwareInterface::setCallbacks(notify_callback notify_cb,
475 data_callback data_cb,
476 data_callback_timestamp data_cb_timestamp,
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700477 data_callback_timestamp_batch data_cb_timestamp_batch,
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800478 void* user)
479{
480 mNotifyCb = notify_cb;
481 mDataCb = data_cb;
482 mDataCbTimestamp = data_cb_timestamp;
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700483 mDataCbTimestampBatch = data_cb_timestamp_batch;
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800484 mCbUser = user;
485
486 ALOGV("%s(%s)", __FUNCTION__, mName.string());
487
488 if (mDevice && mDevice->ops->set_callbacks) {
489 mDevice->ops->set_callbacks(mDevice,
490 sNotifyCb,
491 sDataCb,
492 sDataCbTimestamp,
493 sGetMemory,
494 this);
495 }
496}
497
498void CameraHardwareInterface::enableMsgType(int32_t msgType)
499{
500 ALOGV("%s(%s)", __FUNCTION__, mName.string());
501 if (CC_LIKELY(mHidlDevice != nullptr)) {
502 mHidlDevice->enableMsgType(msgType);
503 } else if (mDevice && mDevice->ops->enable_msg_type) {
504 mDevice->ops->enable_msg_type(mDevice, msgType);
505 }
506}
507
508void CameraHardwareInterface::disableMsgType(int32_t msgType)
509{
510 ALOGV("%s(%s)", __FUNCTION__, mName.string());
511 if (CC_LIKELY(mHidlDevice != nullptr)) {
512 mHidlDevice->disableMsgType(msgType);
513 } else if (mDevice && mDevice->ops->disable_msg_type) {
514 mDevice->ops->disable_msg_type(mDevice, msgType);
515 }
516}
517
518int CameraHardwareInterface::msgTypeEnabled(int32_t msgType)
519{
520 ALOGV("%s(%s)", __FUNCTION__, mName.string());
521 if (CC_LIKELY(mHidlDevice != nullptr)) {
522 return mHidlDevice->msgTypeEnabled(msgType);
523 } else if (mDevice && mDevice->ops->msg_type_enabled) {
524 return mDevice->ops->msg_type_enabled(mDevice, msgType);
525 }
526 return false;
527}
528
529status_t CameraHardwareInterface::startPreview()
530{
531 ALOGV("%s(%s)", __FUNCTION__, mName.string());
532 if (CC_LIKELY(mHidlDevice != nullptr)) {
533 return CameraProviderManager::mapToStatusT(
534 mHidlDevice->startPreview());
535 } else if (mDevice && mDevice->ops->start_preview) {
536 return mDevice->ops->start_preview(mDevice);
537 }
538 return INVALID_OPERATION;
539}
540
541void CameraHardwareInterface::stopPreview()
542{
543 ALOGV("%s(%s)", __FUNCTION__, mName.string());
544 if (CC_LIKELY(mHidlDevice != nullptr)) {
545 mHidlDevice->stopPreview();
546 } else if (mDevice && mDevice->ops->stop_preview) {
547 mDevice->ops->stop_preview(mDevice);
548 }
549}
550
551int CameraHardwareInterface::previewEnabled()
552{
553 ALOGV("%s(%s)", __FUNCTION__, mName.string());
554 if (CC_LIKELY(mHidlDevice != nullptr)) {
555 return mHidlDevice->previewEnabled();
556 } else if (mDevice && mDevice->ops->preview_enabled) {
557 return mDevice->ops->preview_enabled(mDevice);
558 }
559 return false;
560}
561
562status_t CameraHardwareInterface::storeMetaDataInBuffers(int enable)
563{
564 ALOGV("%s(%s)", __FUNCTION__, mName.string());
565 if (CC_LIKELY(mHidlDevice != nullptr)) {
566 return CameraProviderManager::mapToStatusT(
567 mHidlDevice->storeMetaDataInBuffers(enable));
568 } else if (mDevice && mDevice->ops->store_meta_data_in_buffers) {
569 return mDevice->ops->store_meta_data_in_buffers(mDevice, enable);
570 }
571 return enable ? INVALID_OPERATION: OK;
572}
573
574status_t CameraHardwareInterface::startRecording()
575{
576 ALOGV("%s(%s)", __FUNCTION__, mName.string());
577 if (CC_LIKELY(mHidlDevice != nullptr)) {
578 return CameraProviderManager::mapToStatusT(
579 mHidlDevice->startRecording());
580 } else if (mDevice && mDevice->ops->start_recording) {
581 return mDevice->ops->start_recording(mDevice);
582 }
583 return INVALID_OPERATION;
584}
585
586/**
587 * Stop a previously started recording.
588 */
589void CameraHardwareInterface::stopRecording()
590{
591 ALOGV("%s(%s)", __FUNCTION__, mName.string());
592 if (CC_LIKELY(mHidlDevice != nullptr)) {
593 mHidlDevice->stopRecording();
594 } else if (mDevice && mDevice->ops->stop_recording) {
595 mDevice->ops->stop_recording(mDevice);
596 }
597}
598
599/**
600 * Returns true if recording is enabled.
601 */
602int CameraHardwareInterface::recordingEnabled()
603{
604 ALOGV("%s(%s)", __FUNCTION__, mName.string());
605 if (CC_LIKELY(mHidlDevice != nullptr)) {
606 return mHidlDevice->recordingEnabled();
607 } else if (mDevice && mDevice->ops->recording_enabled) {
608 return mDevice->ops->recording_enabled(mDevice);
609 }
610 return false;
611}
612
613void CameraHardwareInterface::releaseRecordingFrame(const sp<IMemory>& mem)
614{
615 ALOGV("%s(%s)", __FUNCTION__, mName.string());
616 ssize_t offset;
617 size_t size;
618 sp<IMemoryHeap> heap = mem->getMemory(&offset, &size);
619 int heapId = heap->getHeapID();
620 int bufferIndex = offset / size;
621 if (CC_LIKELY(mHidlDevice != nullptr)) {
622 if (size == sizeof(VideoNativeHandleMetadata)) {
623 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*) mem->pointer();
624 // Caching the handle here because md->pHandle will be subject to HAL's edit
625 native_handle_t* nh = md->pHandle;
626 hidl_handle frame = nh;
627 mHidlDevice->releaseRecordingFrameHandle(heapId, bufferIndex, frame);
628 native_handle_close(nh);
629 native_handle_delete(nh);
630 } else {
631 mHidlDevice->releaseRecordingFrame(heapId, bufferIndex);
632 }
633 } else if (mDevice && mDevice->ops->release_recording_frame) {
634 void *data = ((uint8_t *)heap->base()) + offset;
635 return mDevice->ops->release_recording_frame(mDevice, data);
636 }
637}
638
Yin-Chia Yehb5df5472017-03-20 19:32:19 -0700639void CameraHardwareInterface::releaseRecordingFrameBatch(const std::vector<sp<IMemory>>& frames)
640{
641 ALOGV("%s(%s)", __FUNCTION__, mName.string());
642 size_t n = frames.size();
643 std::vector<VideoFrameMessage> msgs;
644 msgs.reserve(n);
645 for (auto& mem : frames) {
646 if (CC_LIKELY(mHidlDevice != nullptr)) {
647 ssize_t offset;
648 size_t size;
649 sp<IMemoryHeap> heap = mem->getMemory(&offset, &size);
650 if (size == sizeof(VideoNativeHandleMetadata)) {
651 uint32_t heapId = heap->getHeapID();
652 uint32_t bufferIndex = offset / size;
653 VideoNativeHandleMetadata* md = (VideoNativeHandleMetadata*) mem->pointer();
654 // Caching the handle here because md->pHandle will be subject to HAL's edit
655 native_handle_t* nh = md->pHandle;
656 VideoFrameMessage msg;
657 msgs.push_back({nh, heapId, bufferIndex});
658 } else {
659 ALOGE("%s only supports VideoNativeHandleMetadata mode", __FUNCTION__);
660 return;
661 }
662 } else {
663 ALOGE("Non HIDL mode do not support %s", __FUNCTION__);
664 return;
665 }
666 }
667
668 mHidlDevice->releaseRecordingFrameHandleBatch(msgs);
669
670 for (auto& msg : msgs) {
671 native_handle_t* nh = const_cast<native_handle_t*>(msg.frameData.getNativeHandle());
672 native_handle_close(nh);
673 native_handle_delete(nh);
674 }
675}
676
Yin-Chia Yeh4717c472017-02-13 10:56:40 -0800677status_t CameraHardwareInterface::autoFocus()
678{
679 ALOGV("%s(%s)", __FUNCTION__, mName.string());
680 if (CC_LIKELY(mHidlDevice != nullptr)) {
681 return CameraProviderManager::mapToStatusT(
682 mHidlDevice->autoFocus());
683 } else if (mDevice && mDevice->ops->auto_focus) {
684 return mDevice->ops->auto_focus(mDevice);
685 }
686 return INVALID_OPERATION;
687}
688
689status_t CameraHardwareInterface::cancelAutoFocus()
690{
691 ALOGV("%s(%s)", __FUNCTION__, mName.string());
692 if (CC_LIKELY(mHidlDevice != nullptr)) {
693 return CameraProviderManager::mapToStatusT(
694 mHidlDevice->cancelAutoFocus());
695 } else if (mDevice && mDevice->ops->cancel_auto_focus) {
696 return mDevice->ops->cancel_auto_focus(mDevice);
697 }
698 return INVALID_OPERATION;
699}
700
701status_t CameraHardwareInterface::takePicture()
702{
703 ALOGV("%s(%s)", __FUNCTION__, mName.string());
704 if (CC_LIKELY(mHidlDevice != nullptr)) {
705 return CameraProviderManager::mapToStatusT(
706 mHidlDevice->takePicture());
707 } else if (mDevice && mDevice->ops->take_picture) {
708 return mDevice->ops->take_picture(mDevice);
709 }
710 return INVALID_OPERATION;
711}
712
713status_t CameraHardwareInterface::cancelPicture()
714{
715 ALOGV("%s(%s)", __FUNCTION__, mName.string());
716 if (CC_LIKELY(mHidlDevice != nullptr)) {
717 return CameraProviderManager::mapToStatusT(
718 mHidlDevice->cancelPicture());
719 } else if (mDevice && mDevice->ops->cancel_picture) {
720 return mDevice->ops->cancel_picture(mDevice);
721 }
722 return INVALID_OPERATION;
723}
724
725status_t CameraHardwareInterface::setParameters(const CameraParameters &params)
726{
727 ALOGV("%s(%s)", __FUNCTION__, mName.string());
728 if (CC_LIKELY(mHidlDevice != nullptr)) {
729 return CameraProviderManager::mapToStatusT(
730 mHidlDevice->setParameters(params.flatten().string()));
731 } else if (mDevice && mDevice->ops->set_parameters) {
732 return mDevice->ops->set_parameters(mDevice, params.flatten().string());
733 }
734 return INVALID_OPERATION;
735}
736
737CameraParameters CameraHardwareInterface::getParameters() const
738{
739 ALOGV("%s(%s)", __FUNCTION__, mName.string());
740 CameraParameters parms;
741 if (CC_LIKELY(mHidlDevice != nullptr)) {
742 hardware::hidl_string outParam;
743 mHidlDevice->getParameters(
744 [&outParam](const auto& outStr) {
745 outParam = outStr;
746 });
747 String8 tmp(outParam.c_str());
748 parms.unflatten(tmp);
749 } else if (mDevice && mDevice->ops->get_parameters) {
750 char *temp = mDevice->ops->get_parameters(mDevice);
751 String8 str_parms(temp);
752 if (mDevice->ops->put_parameters)
753 mDevice->ops->put_parameters(mDevice, temp);
754 else
755 free(temp);
756 parms.unflatten(str_parms);
757 }
758 return parms;
759}
760
761status_t CameraHardwareInterface::sendCommand(int32_t cmd, int32_t arg1, int32_t arg2)
762{
763 ALOGV("%s(%s)", __FUNCTION__, mName.string());
764 if (CC_LIKELY(mHidlDevice != nullptr)) {
765 return CameraProviderManager::mapToStatusT(
766 mHidlDevice->sendCommand((CommandType) cmd, arg1, arg2));
767 } else if (mDevice && mDevice->ops->send_command) {
768 return mDevice->ops->send_command(mDevice, cmd, arg1, arg2);
769 }
770 return INVALID_OPERATION;
771}
772
773/**
774 * Release the hardware resources owned by this object. Note that this is
775 * *not* done in the destructor.
776 */
777void CameraHardwareInterface::release() {
778 ALOGV("%s(%s)", __FUNCTION__, mName.string());
779 if (CC_LIKELY(mHidlDevice != nullptr)) {
780 mHidlDevice->close();
781 mHidlDevice.clear();
782 } else if (mDevice && mDevice->ops->release) {
783 mDevice->ops->release(mDevice);
784 }
785}
786
787/**
788 * Dump state of the camera hardware
789 */
790status_t CameraHardwareInterface::dump(int fd, const Vector<String16>& /*args*/) const
791{
792 ALOGV("%s(%s)", __FUNCTION__, mName.string());
793 if (CC_LIKELY(mHidlDevice != nullptr)) {
794 native_handle_t* handle = native_handle_create(1,0);
795 handle->data[0] = fd;
796 Status s = mHidlDevice->dumpState(handle);
797 native_handle_delete(handle);
798 return CameraProviderManager::mapToStatusT(s);
799 } else if (mDevice && mDevice->ops->dump) {
800 return mDevice->ops->dump(mDevice, fd);
801 }
802 return OK; // It's fine if the HAL doesn't implement dump()
803}
804
805/**
806 * Methods for legacy (non-HIDL) path follows
807 */
808void CameraHardwareInterface::sNotifyCb(int32_t msg_type, int32_t ext1,
809 int32_t ext2, void *user)
810{
811 ALOGV("%s", __FUNCTION__);
812 CameraHardwareInterface *object =
813 static_cast<CameraHardwareInterface *>(user);
814 object->mNotifyCb(msg_type, ext1, ext2, object->mCbUser);
815}
816
817void CameraHardwareInterface::sDataCb(int32_t msg_type,
818 const camera_memory_t *data, unsigned int index,
819 camera_frame_metadata_t *metadata,
820 void *user)
821{
822 ALOGV("%s", __FUNCTION__);
823 CameraHardwareInterface *object =
824 static_cast<CameraHardwareInterface *>(user);
825 sp<CameraHeapMemory> mem(static_cast<CameraHeapMemory *>(data->handle));
826 if (index >= mem->mNumBufs) {
827 ALOGE("%s: invalid buffer index %d, max allowed is %d", __FUNCTION__,
828 index, mem->mNumBufs);
829 return;
830 }
831 object->mDataCb(msg_type, mem->mBuffers[index], metadata, object->mCbUser);
832}
833
834void CameraHardwareInterface::sDataCbTimestamp(nsecs_t timestamp, int32_t msg_type,
835 const camera_memory_t *data, unsigned index,
836 void *user)
837{
838 ALOGV("%s", __FUNCTION__);
839 CameraHardwareInterface *object =
840 static_cast<CameraHardwareInterface *>(user);
841 // Start refcounting the heap object from here on. When the clients
842 // drop all references, it will be destroyed (as well as the enclosed
843 // MemoryHeapBase.
844 sp<CameraHeapMemory> mem(static_cast<CameraHeapMemory *>(data->handle));
845 if (index >= mem->mNumBufs) {
846 ALOGE("%s: invalid buffer index %d, max allowed is %d", __FUNCTION__,
847 index, mem->mNumBufs);
848 return;
849 }
850 object->mDataCbTimestamp(timestamp, msg_type, mem->mBuffers[index], object->mCbUser);
851}
852
853camera_memory_t* CameraHardwareInterface::sGetMemory(
854 int fd, size_t buf_size, uint_t num_bufs,
855 void *user __attribute__((unused)))
856{
857 CameraHeapMemory *mem;
858 if (fd < 0) {
859 mem = new CameraHeapMemory(buf_size, num_bufs);
860 } else {
861 mem = new CameraHeapMemory(fd, buf_size, num_bufs);
862 }
863 mem->incStrong(mem);
864 return &mem->handle;
865}
866
867void CameraHardwareInterface::sPutMemory(camera_memory_t *data)
868{
869 if (!data) {
870 return;
871 }
872
873 CameraHeapMemory *mem = static_cast<CameraHeapMemory *>(data->handle);
874 mem->decStrong(mem);
875}
876
877ANativeWindow* CameraHardwareInterface::sToAnw(void *user)
878{
879 CameraHardwareInterface *object =
880 reinterpret_cast<CameraHardwareInterface *>(user);
881 return object->mPreviewWindow.get();
882}
883#define anw(n) sToAnw(((struct camera_preview_window *)(n))->user)
884#define hwi(n) reinterpret_cast<CameraHardwareInterface *>(\
885 ((struct camera_preview_window *)(n))->user)
886
887int CameraHardwareInterface::sDequeueBuffer(struct preview_stream_ops* w,
888 buffer_handle_t** buffer, int *stride)
889{
890 int rc;
891 ANativeWindow *a = anw(w);
892 ANativeWindowBuffer* anb;
893 rc = native_window_dequeue_buffer_and_wait(a, &anb);
894 if (rc == OK) {
895 *buffer = &anb->handle;
896 *stride = anb->stride;
897 }
898 return rc;
899}
900
901#ifndef container_of
902#define container_of(ptr, type, member) ({ \
903 const __typeof__(((type *) 0)->member) *__mptr = (ptr); \
904 (type *) ((char *) __mptr - (char *)(&((type *)0)->member)); })
905#endif
906
907int CameraHardwareInterface::sLockBuffer(struct preview_stream_ops* w,
908 buffer_handle_t* /*buffer*/)
909{
910 ANativeWindow *a = anw(w);
911 (void)a;
912 return 0;
913}
914
915int CameraHardwareInterface::sEnqueueBuffer(struct preview_stream_ops* w,
916 buffer_handle_t* buffer)
917{
918 ANativeWindow *a = anw(w);
919 return a->queueBuffer(a,
920 container_of(buffer, ANativeWindowBuffer, handle), -1);
921}
922
923int CameraHardwareInterface::sCancelBuffer(struct preview_stream_ops* w,
924 buffer_handle_t* buffer)
925{
926 ANativeWindow *a = anw(w);
927 return a->cancelBuffer(a,
928 container_of(buffer, ANativeWindowBuffer, handle), -1);
929}
930
931int CameraHardwareInterface::sSetBufferCount(struct preview_stream_ops* w, int count)
932{
933 ANativeWindow *a = anw(w);
934
935 if (a != nullptr) {
936 // Workaround for b/27039775
937 // Previously, setting the buffer count would reset the buffer
938 // queue's flag that allows for all buffers to be dequeued on the
939 // producer side, instead of just the producer's declared max count,
940 // if no filled buffers have yet been queued by the producer. This
941 // reset no longer happens, but some HALs depend on this behavior,
942 // so it needs to be maintained for HAL backwards compatibility.
943 // Simulate the prior behavior by disconnecting/reconnecting to the
944 // window and setting the values again. This has the drawback of
945 // actually causing memory reallocation, which may not have happened
946 // in the past.
947 CameraHardwareInterface *hw = hwi(w);
948 native_window_api_disconnect(a, NATIVE_WINDOW_API_CAMERA);
949 native_window_api_connect(a, NATIVE_WINDOW_API_CAMERA);
950 if (hw->mPreviewScalingMode != NOT_SET) {
951 native_window_set_scaling_mode(a, hw->mPreviewScalingMode);
952 }
953 if (hw->mPreviewTransform != NOT_SET) {
954 native_window_set_buffers_transform(a, hw->mPreviewTransform);
955 }
956 if (hw->mPreviewWidth != NOT_SET) {
957 native_window_set_buffers_dimensions(a,
958 hw->mPreviewWidth, hw->mPreviewHeight);
959 native_window_set_buffers_format(a, hw->mPreviewFormat);
960 }
961 if (hw->mPreviewUsage != 0) {
962 native_window_set_usage(a, hw->mPreviewUsage);
963 }
964 if (hw->mPreviewSwapInterval != NOT_SET) {
965 a->setSwapInterval(a, hw->mPreviewSwapInterval);
966 }
967 if (hw->mPreviewCrop.left != NOT_SET) {
968 native_window_set_crop(a, &(hw->mPreviewCrop));
969 }
970 }
971
972 return native_window_set_buffer_count(a, count);
973}
974
975int CameraHardwareInterface::sSetBuffersGeometry(struct preview_stream_ops* w,
976 int width, int height, int format)
977{
978 int rc;
979 ANativeWindow *a = anw(w);
980 CameraHardwareInterface *hw = hwi(w);
981 hw->mPreviewWidth = width;
982 hw->mPreviewHeight = height;
983 hw->mPreviewFormat = format;
984 rc = native_window_set_buffers_dimensions(a, width, height);
985 if (rc == OK) {
986 rc = native_window_set_buffers_format(a, format);
987 }
988 return rc;
989}
990
991int CameraHardwareInterface::sSetCrop(struct preview_stream_ops *w,
992 int left, int top, int right, int bottom)
993{
994 ANativeWindow *a = anw(w);
995 CameraHardwareInterface *hw = hwi(w);
996 hw->mPreviewCrop.left = left;
997 hw->mPreviewCrop.top = top;
998 hw->mPreviewCrop.right = right;
999 hw->mPreviewCrop.bottom = bottom;
1000 return native_window_set_crop(a, &(hw->mPreviewCrop));
1001}
1002
1003int CameraHardwareInterface::sSetTimestamp(struct preview_stream_ops *w,
1004 int64_t timestamp) {
1005 ANativeWindow *a = anw(w);
1006 return native_window_set_buffers_timestamp(a, timestamp);
1007}
1008
1009int CameraHardwareInterface::sSetUsage(struct preview_stream_ops* w, int usage)
1010{
1011 ANativeWindow *a = anw(w);
1012 CameraHardwareInterface *hw = hwi(w);
1013 hw->mPreviewUsage = usage;
1014 return native_window_set_usage(a, usage);
1015}
1016
1017int CameraHardwareInterface::sSetSwapInterval(struct preview_stream_ops *w, int interval)
1018{
1019 ANativeWindow *a = anw(w);
1020 CameraHardwareInterface *hw = hwi(w);
1021 hw->mPreviewSwapInterval = interval;
1022 return a->setSwapInterval(a, interval);
1023}
1024
1025int CameraHardwareInterface::sGetMinUndequeuedBufferCount(
1026 const struct preview_stream_ops *w,
1027 int *count)
1028{
1029 ANativeWindow *a = anw(w);
1030 return a->query(a, NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, count);
1031}
1032
1033void CameraHardwareInterface::initHalPreviewWindow()
1034{
1035 mHalPreviewWindow.nw.cancel_buffer = sCancelBuffer;
1036 mHalPreviewWindow.nw.lock_buffer = sLockBuffer;
1037 mHalPreviewWindow.nw.dequeue_buffer = sDequeueBuffer;
1038 mHalPreviewWindow.nw.enqueue_buffer = sEnqueueBuffer;
1039 mHalPreviewWindow.nw.set_buffer_count = sSetBufferCount;
1040 mHalPreviewWindow.nw.set_buffers_geometry = sSetBuffersGeometry;
1041 mHalPreviewWindow.nw.set_crop = sSetCrop;
1042 mHalPreviewWindow.nw.set_timestamp = sSetTimestamp;
1043 mHalPreviewWindow.nw.set_usage = sSetUsage;
1044 mHalPreviewWindow.nw.set_swap_interval = sSetSwapInterval;
1045
1046 mHalPreviewWindow.nw.get_min_undequeued_buffer_count =
1047 sGetMinUndequeuedBufferCount;
1048}
1049
1050}; // namespace android