1 /*
2 * Copyright (c) 2023 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15 #include "test_camera_base.h"
16 using namespace std;
17
18 const std::vector<int32_t> DATA_BASE = {
19 OHOS_CAMERA_STREAM_ID,
20 OHOS_SENSOR_COLOR_CORRECTION_GAINS,
21 OHOS_SENSOR_EXPOSURE_TIME,
22 OHOS_CONTROL_EXPOSURE_MODE,
23 OHOS_CONTROL_AE_EXPOSURE_COMPENSATION,
24 OHOS_CONTROL_FOCUS_MODE,
25 OHOS_CONTROL_METER_MODE,
26 OHOS_CONTROL_FLASH_MODE,
27 OHOS_CONTROL_FPS_RANGES,
28 OHOS_CONTROL_AWB_MODE,
29 OHOS_CONTROL_AF_REGIONS,
30 OHOS_CONTROL_METER_POINT,
31 OHOS_CONTROL_VIDEO_STABILIZATION_MODE,
32 OHOS_CONTROL_FOCUS_STATE,
33 OHOS_CONTROL_EXPOSURE_STATE,
34 };
35
TestCameraBase()36 TestCameraBase::TestCameraBase()
37 {
38 }
39
GetCurrentLocalTimeStamp()40 uint64_t TestCameraBase::GetCurrentLocalTimeStamp()
41 {
42 std::chrono::time_point<std::chrono::system_clock, std::chrono::milliseconds> tp =
43 std::chrono::time_point_cast<std::chrono::milliseconds>(std::chrono::system_clock::now());
44 auto tmp = std::chrono::duration_cast<std::chrono::milliseconds>(tp.time_since_epoch());
45 return tmp.count();
46 }
47
StoreImage(const unsigned char * bufStart,const uint32_t size) const48 void TestCameraBase::StoreImage(const unsigned char *bufStart, const uint32_t size) const
49 {
50 constexpr uint32_t pathLen = 64;
51 char path[pathLen] = {0};
52 #ifdef CAMERA_BUILT_ON_OHOS_LITE
53 char prefix[] = "/userdata/photo/";
54 #else
55 char prefix[] = "/data/";
56 #endif
57
58 int imgFD = 0;
59 int ret = 0;
60
61 struct timeval start = {};
62 gettimeofday(&start, nullptr);
63 if (sprintf_s(path, sizeof(path), "%spicture_%ld.jpeg", prefix, start.tv_usec) < 0) {
64 CAMERA_LOGE("sprintf_s error .....");
65 return;
66 }
67
68 imgFD = open(path, O_RDWR | O_CREAT, 00766); // 00766:file operate permission
69 if (imgFD == -1) {
70 CAMERA_LOGE("demo test:open image file error %{public}s.....", strerror(errno));
71 return;
72 }
73
74 CAMERA_LOGD("demo test:StoreImage %{public}s size == %{public}d", path, size);
75
76 ret = write(imgFD, bufStart, size);
77 if (ret == -1) {
78 CAMERA_LOGE("demo test:write image file error %{public}s.....", strerror(errno));
79 }
80
81 close(imgFD);
82 }
83
StoreVideo(const unsigned char * bufStart,const uint32_t size) const84 void TestCameraBase::StoreVideo(const unsigned char *bufStart, const uint32_t size) const
85 {
86 int ret = 0;
87
88 ret = write(videoFd_, bufStart, size);
89 if (ret == -1) {
90 CAMERA_LOGE("demo test:write video file error %{public}s.....", strerror(errno));
91 }
92 CAMERA_LOGD("demo test:StoreVideo size == %{public}d", size);
93 }
94
OpenVideoFile()95 void TestCameraBase::OpenVideoFile()
96 {
97 constexpr uint32_t pathLen = 64;
98 char path[pathLen] = {0};
99 #ifdef CAMERA_BUILT_ON_OHOS_LITE
100 char prefix[] = "/userdata/video/";
101 #else
102 char prefix[] = "/data/";
103 #endif
104 auto seconds = time(nullptr);
105 if (sprintf_s(path, sizeof(path), "%svideo%ld.h264", prefix, seconds) < 0) {
106 CAMERA_LOGE("%{public}s: sprintf failed", __func__);
107 return;
108 }
109 videoFd_ = open(path, O_RDWR | O_CREAT, 00766); // 00766:file operate permission
110 if (videoFd_ < 0) {
111 CAMERA_LOGE("demo test: StartVideo open %s %{public}s failed", path, strerror(errno));
112 }
113 }
114
CloseFd()115 void TestCameraBase::CloseFd()
116 {
117 close(videoFd_);
118 videoFd_ = -1;
119 }
120
PrintFaceDetectInfo(const unsigned char * bufStart,const uint32_t size) const121 void TestCameraBase::PrintFaceDetectInfo(const unsigned char *bufStart, const uint32_t size) const
122 {
123 common_metadata_header_t* data = reinterpret_cast<common_metadata_header_t*>(
124 const_cast<unsigned char*>(bufStart));
125 if (data->item_count > MAX_ITEM_CAPACITY || data->data_count > MAX_DATA_CAPACITY) {
126 CAMERA_LOGE("demo test: invalid item_count or data_count");
127 return;
128 }
129 camera_metadata_item_t entry;
130 int ret = 0;
131 ret = FindCameraMetadataItem(data, OHOS_STATISTICS_FACE_DETECT_SWITCH, &entry);
132 if (ret != 0) {
133 CAMERA_LOGE("demo test: get OHOS_STATISTICS_FACE_DETECT_SWITCH error");
134 return;
135 }
136 uint8_t switchValue = *(entry.data.u8);
137 CAMERA_LOGI("demo test: switchValue=%{public}d", switchValue);
138
139 ret = FindCameraMetadataItem(data, OHOS_STATISTICS_FACE_RECTANGLES, &entry);
140 if (ret != 0) {
141 CAMERA_LOGE("demo test: get OHOS_STATISTICS_FACE_RECTANGLES error");
142 return;
143 }
144 uint32_t rectCount = entry.count;
145 CAMERA_LOGI("demo test: rectCount=%{public}d", rectCount);
146 std::vector<std::vector<float>> faceRectangles;
147 std::vector<float> faceRectangle;
148 for (int i = 0; i < rectCount; i++) {
149 faceRectangle.push_back(*(entry.data.f + i));
150 }
151 faceRectangles.push_back(faceRectangle);
152 for (std::vector<std::vector<float>>::iterator it = faceRectangles.begin(); it < faceRectangles.end(); it++) {
153 for (std::vector<float>::iterator innerIt = (*it).begin(); innerIt < (*it).end(); innerIt++) {
154 CAMERA_LOGI("demo test: innerIt : %{public}f", *innerIt);
155 }
156 }
157
158 ret = FindCameraMetadataItem(data, OHOS_STATISTICS_FACE_IDS, &entry);
159 if (ret != 0) {
160 CAMERA_LOGE("demo test: get OHOS_STATISTICS_FACE_IDS error");
161 return;
162 }
163 uint32_t idCount = entry.count;
164 CAMERA_LOGI("demo test: idCount=%{public}d", idCount);
165 std::vector<int32_t> faceIds;
166 for (int i = 0; i < idCount; i++) {
167 faceIds.push_back(*(entry.data.i32 + i));
168 }
169 for (auto it = faceIds.begin(); it != faceIds.end(); it++) {
170 CAMERA_LOGI("demo test: faceIds : %{public}d", *it);
171 }
172 }
173
SaveYUV(char * type,unsigned char * buffer,int32_t size)174 int32_t TestCameraBase::SaveYUV(char* type, unsigned char* buffer, int32_t size)
175 {
176 int ret;
177 char path[PATH_MAX] = {0};
178 ret = sprintf_s(path, sizeof(path) / sizeof(path[0]), "/mnt/yuv/%s_%lld.yuv", type, GetCurrentLocalTimeStamp());
179 if (ret < 0) {
180 CAMERA_LOGE("%s, sprintf_s failed, errno = %s.", __FUNCTION__, strerror(errno));
181 return -1;
182 }
183 CAMERA_LOGI("%s, save yuv to file %s", __FUNCTION__, path);
184 system("mkdir -p /mnt/yuv");
185 int imgFd = open(path, O_RDWR | O_CREAT, 00766); // 00766: file permissions
186 if (imgFd == -1) {
187 CAMERA_LOGI("%s, open file failed, errno = %s.", __FUNCTION__, strerror(errno));
188 return -1;
189 }
190 ret = write(imgFd, buffer, size);
191 if (ret == -1) {
192 CAMERA_LOGI("%s, write file failed, error = %s", __FUNCTION__, strerror(errno));
193 close(imgFd);
194 return -1;
195 }
196 close(imgFd);
197 return 0;
198 }
199
DoFbMunmap(unsigned char * addr)200 int TestCameraBase::DoFbMunmap(unsigned char* addr)
201 {
202 int ret;
203 unsigned int size = vinfo_.xres * vinfo_.yres * vinfo_.bits_per_pixel / 8; // 8:picture size;
204 CAMERA_LOGI("main test:munmapped size = %d", size);
205 ret = (munmap(addr, finfo_.smem_len));
206 return ret;
207 }
208
DoFbMmap(int * pmemfd)209 unsigned char* TestCameraBase::DoFbMmap(int* pmemfd)
210 {
211 unsigned char* ret;
212 int screensize = vinfo_.xres * vinfo_.yres * vinfo_.bits_per_pixel / 8; // 8:picture size
213 ret = static_cast<unsigned char*>(mmap(nullptr, screensize, PROT_READ | PROT_WRITE, MAP_SHARED, *pmemfd, 0));
214 if (ret == MAP_FAILED) {
215 CAMERA_LOGE("main test:do_mmap: pmem mmap() failed: %s (%d)", strerror(errno), errno);
216 return nullptr;
217 }
218 CAMERA_LOGI("main test:do_mmap: pmem mmap fd %d len %u", *pmemfd, screensize);
219 return ret;
220 }
221
FBLog()222 void TestCameraBase::FBLog()
223 {
224 CAMERA_LOGI("the fixed information is as follow:");
225 CAMERA_LOGI("id=%s", finfo_.id);
226 CAMERA_LOGI("sem_start=%lx", finfo_.smem_start);
227 CAMERA_LOGI("smem_len=%u", finfo_.smem_len);
228 CAMERA_LOGI("type=%u", finfo_.type);
229 CAMERA_LOGI("line_length=%u", finfo_.line_length);
230 CAMERA_LOGI("mmio_start=%lu", finfo_.mmio_start);
231 CAMERA_LOGI("mmio_len=%d", finfo_.mmio_len);
232 CAMERA_LOGI("visual=%d", finfo_.visual);
233
234 CAMERA_LOGI("variable information is as follow:");
235 CAMERA_LOGI("The xres is :%u", vinfo_.xres);
236 CAMERA_LOGI("The yres is :%u", vinfo_.yres);
237 CAMERA_LOGI("xres_virtual=%u", vinfo_.xres_virtual);
238 CAMERA_LOGI("yres_virtual=%u", vinfo_.yres_virtual);
239 CAMERA_LOGI("xoffset=%u", vinfo_.xoffset);
240 CAMERA_LOGI("yoffset=%u", vinfo_.yoffset);
241 CAMERA_LOGI("bits_per_pixel is :%u", vinfo_.bits_per_pixel);
242 CAMERA_LOGI("red.offset=%u", vinfo_.red.offset);
243 CAMERA_LOGI("red.length=%u", vinfo_.red.length);
244 CAMERA_LOGI("red.msb_right=%u", vinfo_.red.msb_right);
245 CAMERA_LOGI("green.offset=%d", vinfo_.green.offset);
246 CAMERA_LOGI("green.length=%d", vinfo_.green.length);
247 CAMERA_LOGI("green.msb_right=%d", vinfo_.green.msb_right);
248 CAMERA_LOGI("blue.offset=%d", vinfo_.blue.offset);
249 CAMERA_LOGI("blue.length=%d", vinfo_.blue.length);
250 CAMERA_LOGI("blue.msb_right=%d", vinfo_.blue.msb_right);
251 CAMERA_LOGI("transp.offset=%d", vinfo_.transp.offset);
252 CAMERA_LOGI("transp.length=%d", vinfo_.transp.length);
253 CAMERA_LOGI("transp.msb_right=%d", vinfo_.transp.msb_right);
254 CAMERA_LOGI("height=%x", vinfo_.height);
255 }
256
FBInit()257 OHOS::Camera::RetCode TestCameraBase::FBInit()
258 {
259 fbFd_ = open("/dev/fb0", O_RDWR);
260 if (fbFd_ < 0) {
261 CAMERA_LOGE("main test:cannot open framebuffer %s file node", "/dev/fb0");
262 return RC_ERROR;
263 }
264
265 if (ioctl(fbFd_, FBIOGET_VSCREENINFO, &vinfo_) < 0) {
266 CAMERA_LOGE("main test:cannot retrieve vscreenInfo!");
267 close(fbFd_);
268 fbFd_ = -1;
269 return RC_ERROR;
270 }
271
272 if (ioctl(fbFd_, FBIOGET_FSCREENINFO, &finfo_) < 0) {
273 CAMERA_LOGE("main test:can't retrieve fscreenInfo!");
274 close(fbFd_);
275 fbFd_ = -1;
276 return RC_ERROR;
277 }
278
279 FBLog();
280
281 CAMERA_LOGI("main test:allocating display buffer memory");
282 displayBuf_ = DoFbMmap(&fbFd_);
283 if (displayBuf_ == nullptr) {
284 CAMERA_LOGE("main test:error displayBuf_ mmap error");
285 close(fbFd_);
286 fbFd_ = -1;
287 return RC_ERROR;
288 }
289 return RC_OK;
290 }
291
ProcessImage(unsigned char * p,unsigned char * fbp)292 void TestCameraBase::ProcessImage(unsigned char* p, unsigned char* fbp)
293 {
294 unsigned char* in = p;
295 int width = 640; // 640:Displays the size of the width
296 int height = 480; // 480:Displays the size of the height
297 int istride = 1280; // 1280:Initial value of span
298 int x, y, j;
299 int y0, u, v, r, g, b;
300 int32_t location = 0;
301 int xpos = (vinfo_.xres - width) / 2;
302 int ypos = (vinfo_.yres - height) / 2;
303 int yPos, uPos, vPos;
304 int yPosIncrement, uPosIncrement, vPosIncrement;
305
306 yPos = 0; // 0:Pixel initial value
307 uPos = 1; // 1:Pixel initial value
308 vPos = 3; // 3:Pixel initial value
309 yPosIncrement = 2; // 2:yPos increase value
310 uPosIncrement = 4; // 4:uPos increase value
311 vPosIncrement = 4; // 4:vPos increase value
312
313 for (y = ypos; y < (height + ypos); y++) {
314 for (j = 0, x = xpos; j < width; j++, x++) {
315 location = (x + vinfo_.xoffset) * (vinfo_.bits_per_pixel / 8) + // 8: The bytes for each time
316 (y + vinfo_.yoffset) * finfo_.line_length; // add one y number of rows at a time
317
318 y0 = in[yPos];
319 u = in[uPos] - 128; // 128:display size
320 v = in[vPos] - 128; // 128:display size
321
322 r = RANGE_LIMIT(y0 + v + ((v * 103) >> 8)); // 103,8:display range
323 g = RANGE_LIMIT(y0 - ((u * 88) >> 8) - ((v * 183) >> 8)); // 88,8,183:display range
324 b = RANGE_LIMIT(y0 + u + ((u * 198) >> 8)); // 198,8:display range
325
326 fbp[location + 1] = ((r & 0xF8) | (g >> 5)); // 5:display range
327 fbp[location + 0] = (((g & 0x1C) << 3) | (b >> 3)); // 3:display range
328
329 yPos += yPosIncrement;
330
331 if (j & 0x01) {
332 uPos += uPosIncrement;
333 vPos += vPosIncrement;
334 }
335 }
336
337 yPos = 0; // 0:Pixel initial value
338 uPos = 1; // 1:Pixel initial value
339 vPos = 3; // 3:Pixel initial value
340 in += istride; // add one y number of rows at a time
341 }
342 }
343
LcdDrawScreen(unsigned char * displayBuf,unsigned char * addr)344 void TestCameraBase::LcdDrawScreen(unsigned char* displayBuf, unsigned char* addr)
345 {
346 ProcessImage(addr, displayBuf);
347 }
348
BufferCallback(unsigned char * addr,int choice)349 void TestCameraBase::BufferCallback(unsigned char* addr, int choice)
350 {
351 if (choice == PREVIEW_MODE) {
352 LcdDrawScreen(displayBuf_, addr);
353 return;
354 } else {
355 LcdDrawScreen(displayBuf_, addr);
356 std::cout << "==========[test log] capture start saveYuv......" << std::endl;
357 SaveYUV("capture", reinterpret_cast<unsigned char*>(addr), bufSize_);
358 std::cout << "==========[test log] capture end saveYuv......" << std::endl;
359 return;
360 }
361 }
362
Init()363 void TestCameraBase::Init()
364 {
365 CAMERA_LOGD("TestCameraBase::Init().");
366 if (cameraHost == nullptr) {
367 constexpr const char *demoServiceName = "camera_service";
368 cameraHost = ICameraHost::Get(demoServiceName, false);
369 CAMERA_LOGI("Camera::CameraHost::CreateCameraHost()");
370 if (cameraHost == nullptr) {
371 CAMERA_LOGE("CreateCameraHost failed.");
372 return;
373 }
374 CAMERA_LOGI("CreateCameraHost success.");
375 }
376
377 OHOS::sptr<DemoCameraHostCallback> cameraHostCallback = new DemoCameraHostCallback();
378 OHOS::Camera::RetCode ret = cameraHost->SetCallback(cameraHostCallback);
379 if (ret != HDI::Camera::V1_0::NO_ERROR) {
380 CAMERA_LOGE("SetCallback failed.");
381 return;
382 } else {
383 CAMERA_LOGI("SetCallback success.");
384 }
385
386 if (cameraDevice == nullptr) {
387 cameraHost->GetCameraIds(cameraIds);
388 cameraHost->GetCameraAbility(cameraIds.front(), ability_);
389 MetadataUtils::ConvertVecToMetadata(ability_, ability);
390 const OHOS::sptr<DemoCameraDeviceCallback> callback = new DemoCameraDeviceCallback();
391 rc = (CamRetCode)cameraHost->OpenCamera(cameraIds.front(), callback, cameraDevice);
392 if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
393 CAMERA_LOGE("OpenCamera failed, rc = %{public}d", rc);
394 return;
395 }
396 CAMERA_LOGI("OpenCamera success.");
397 }
398 }
399
UsbInit()400 void TestCameraBase::UsbInit()
401 {
402 if (cameraHost == nullptr) {
403 constexpr const char *demoServiceName = "camera_service";
404 cameraHost = ICameraHost::Get(demoServiceName, false);
405 if (cameraHost == nullptr) {
406 std::cout << "==========[test log] CreateCameraHost failed." << std::endl;
407 return;
408 }
409 std::cout << "==========[test log] CreateCameraHost success." << std::endl;
410 }
411
412 OHOS::sptr<DemoCameraHostCallback> cameraHostCallback = new DemoCameraHostCallback();
413 OHOS::Camera::RetCode ret = cameraHost->SetCallback(cameraHostCallback);
414 if (ret != HDI::Camera::V1_0::NO_ERROR) {
415 std::cout << "==========[test log] SetCallback failed." << std::endl;
416 return;
417 } else {
418 std::cout << "==========[test log] SetCallback success." << std::endl;
419 }
420 }
421
GetCameraAbility()422 std::shared_ptr<CameraAbility> TestCameraBase::GetCameraAbility()
423 {
424 if (cameraDevice == nullptr) {
425 OHOS::Camera::RetCode ret = cameraHost->GetCameraIds(cameraIds);
426 if (ret != HDI::Camera::V1_0::NO_ERROR) {
427 std::cout << "==========[test log]GetCameraIds failed." << std::endl;
428 return ability;
429 } else {
430 std::cout << "==========[test log]GetCameraIds success." << std::endl;
431 }
432 if (cameraIds.size() == 0) {
433 std::cout << "==========[test log]camera device list is empty." << std::endl;
434 return ability;
435 }
436 if (cameraIds.size() > 0) {
437 ret = cameraHost->GetCameraAbility(cameraIds.back(), ability_);
438 if (ret != HDI::Camera::V1_0::NO_ERROR) {
439 std::cout << "==========[test log]GetCameraAbility failed, rc = " << rc << std::endl;
440 }
441 MetadataUtils::ConvertVecToMetadata(ability_, ability);
442 }
443 }
444 return ability;
445 }
446
OpenUsbCamera()447 void TestCameraBase::OpenUsbCamera()
448 {
449 if (cameraDevice == nullptr) {
450 cameraHost->GetCameraIds(cameraIds);
451 if (cameraIds.size() > 0) {
452 cameraHost->GetCameraAbility(cameraIds.back(), ability_);
453 MetadataUtils::ConvertVecToMetadata(ability_, ability);
454 const OHOS::sptr<DemoCameraDeviceCallback> callback = new DemoCameraDeviceCallback();
455 rc = (CamRetCode)cameraHost->OpenCamera(cameraIds.back(), callback, cameraDevice);
456 if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
457 std::cout << "OpenCamera failed, rc = " << rc << std::endl;
458 return;
459 }
460 std::cout << "OpenCamera success." << std::endl;
461 } else {
462 std::cout << "No usb camera plugged in" << std::endl;
463 }
464 }
465 }
466
SelectOpenCamera(std::string cameraId)467 CamRetCode TestCameraBase::SelectOpenCamera(std::string cameraId)
468 {
469 cameraHost->GetCameraAbility(cameraId, ability_);
470 MetadataUtils::ConvertVecToMetadata(ability_, ability);
471 const OHOS::sptr<DemoCameraDeviceCallback> callback = new DemoCameraDeviceCallback();
472 rc = (CamRetCode)cameraHost->OpenCamera(cameraId, callback, cameraDevice);
473 if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
474 std::cout << "OpenCamera failed, rc = " << rc << std::endl;
475 return rc;
476 }
477 std::cout << "OpenCamera success." << std::endl;
478 return rc;
479 }
480
Close()481 void TestCameraBase::Close()
482 {
483 CAMERA_LOGD("cameraDevice->Close().");
484 if (cameraDevice != nullptr) {
485 cameraDevice->Close();
486 cameraDevice = nullptr;
487 }
488 }
489
OpenCamera()490 void TestCameraBase::OpenCamera()
491 {
492 if (cameraDevice == nullptr) {
493 cameraHost->GetCameraIds(cameraIds);
494 const OHOS::sptr<OHOS::Camera::CameraDeviceCallback> callback = new CameraDeviceCallback();
495 rc = (CamRetCode)cameraHost->OpenCamera(cameraIds.front(), callback, cameraDevice);
496 if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
497 std::cout << "==========[test log] OpenCamera failed, rc = " << rc << std::endl;
498 return;
499 }
500 std::cout << "==========[test log] OpenCamera success." << std::endl;
501 }
502 }
503
CalTime(struct timeval start,struct timeval end)504 float TestCameraBase::CalTime(struct timeval start, struct timeval end)
505 {
506 float timeUse = 0;
507 timeUse = (end.tv_sec - start.tv_sec) * 1000000 + (end.tv_usec - start.tv_usec); // 1000000:time
508 return timeUse;
509 }
510
AchieveStreamOperator()511 void TestCameraBase::AchieveStreamOperator()
512 {
513 // Create and get streamOperator information
514 OHOS::sptr<DemoStreamOperatorCallback> streamOperatorCallback_ = new DemoStreamOperatorCallback();
515 rc = (CamRetCode)cameraDevice->GetStreamOperator(streamOperatorCallback_, streamOperator);
516 EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
517 if (rc == HDI::Camera::V1_0::NO_ERROR) {
518 CAMERA_LOGI("AchieveStreamOperator success.");
519 } else {
520 CAMERA_LOGE("AchieveStreamOperator fail, rc = %{public}d", rc);
521 }
522 }
523
StartStream(std::vector<StreamIntent> intents)524 void TestCameraBase::StartStream(std::vector<StreamIntent> intents)
525 {
526 for (auto& intent : intents) {
527 if (intent == PREVIEW) {
528 if (streamCustomerPreview_ == nullptr) {
529 streamCustomerPreview_ = std::make_shared<StreamCustomer>();
530 }
531 streamInfoPre.streamId_ = STREAM_ID_PREVIEW;
532 streamInfoPre.width_ = PREVIEW_WIDTH; // 640:picture width
533 streamInfoPre.height_ = PREVIEW_HEIGHT; // 480:picture height
534 streamInfoPre.format_ = PIXEL_FMT_RGBA_8888;
535 streamInfoPre.dataspace_ = 8; // 8:picture dataspace
536 streamInfoPre.intent_ = intent;
537 streamInfoPre.tunneledMode_ = 5; // 5:tunnel mode
538 streamInfoPre.bufferQueue_ = new BufferProducerSequenceable(streamCustomerPreview_->CreateProducer());
539 ASSERT_NE(streamInfoPre.bufferQueue_, nullptr);
540 streamInfoPre.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
541 CAMERA_LOGD("preview success.");
542 std::vector<StreamInfo>().swap(streamInfos);
543 streamInfos.push_back(streamInfoPre);
544 } else if (intent == VIDEO) {
545 if (streamCustomerVideo_ == nullptr) {
546 streamCustomerVideo_ = std::make_shared<StreamCustomer>();
547 }
548 streamInfoVideo.streamId_ = STREAM_ID_VIDEO;
549 streamInfoVideo.width_ = VIDEO_WIDTH; // 1280:picture width
550 streamInfoVideo.height_ = VIDEO_HEIGHT; // 960:picture height
551 streamInfoVideo.format_ = PIXEL_FMT_RGBA_8888;
552 streamInfoVideo.dataspace_ = 8; // 8:picture dataspace
553 streamInfoVideo.intent_ = intent;
554 streamInfoVideo.encodeType_ = ENCODE_TYPE_H264;
555 streamInfoVideo.tunneledMode_ = 5; // 5:tunnel mode
556 streamInfoVideo.bufferQueue_ = new BufferProducerSequenceable(streamCustomerVideo_->CreateProducer());
557 ASSERT_NE(streamInfoVideo.bufferQueue_, nullptr);
558 streamInfoVideo.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
559 CAMERA_LOGD("video success.");
560 std::vector<StreamInfo>().swap(streamInfos);
561 streamInfos.push_back(streamInfoVideo);
562 } else if (intent == STILL_CAPTURE) {
563 if (streamCustomerCapture_ == nullptr) {
564 streamCustomerCapture_ = std::make_shared<StreamCustomer>();
565 }
566 streamInfoCapture.streamId_ = STREAM_ID_CAPTURE;
567 streamInfoCapture.width_ = CAPTURE_WIDTH; // 1280:picture width
568 streamInfoCapture.height_ = CAPTURE_HEIGHT; // 960:picture height
569 streamInfoCapture.format_ = PIXEL_FMT_RGBA_8888;
570 streamInfoCapture.dataspace_ = 8; // 8:picture dataspace
571 streamInfoCapture.intent_ = intent;
572 streamInfoCapture.encodeType_ = ENCODE_TYPE_JPEG;
573 streamInfoCapture.tunneledMode_ = 5; // 5:tunnel mode
574 streamInfoCapture.bufferQueue_ = new BufferProducerSequenceable(streamCustomerCapture_->CreateProducer());
575 ASSERT_NE(streamInfoCapture.bufferQueue_, nullptr);
576 streamInfoCapture.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
577 CAMERA_LOGD("capture success.");
578 std::vector<StreamInfo>().swap(streamInfos);
579 streamInfos.push_back(streamInfoCapture);
580 } else if (intent == ANALYZE) {
581 if (streamCustomerAnalyze_ == nullptr) {
582 streamCustomerAnalyze_ = std::make_shared<StreamCustomer>();
583 }
584 streamInfoAnalyze.streamId_ = STREAM_ID_ANALYZE;
585 streamInfoAnalyze.width_ = ANALYZE_WIDTH; // 640:picture width
586 streamInfoAnalyze.height_ = ANALYZE_HEIGHT; // 480:picture height
587 streamInfoAnalyze.format_ = PIXEL_FMT_RGBA_8888;
588 streamInfoAnalyze.dataspace_ = 8; // 8:picture dataspace
589 streamInfoAnalyze.intent_ = intent;
590 streamInfoAnalyze.tunneledMode_ = 5; // 5:tunnel mode
591 streamInfoAnalyze.bufferQueue_ = new BufferProducerSequenceable(streamCustomerAnalyze_->CreateProducer());
592 ASSERT_NE(streamInfoAnalyze.bufferQueue_, nullptr);
593 streamInfoAnalyze.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
594 CAMERA_LOGD("analyze success.");
595 std::vector<StreamInfo>().swap(streamInfos);
596 streamInfos.push_back(streamInfoAnalyze);
597 }
598 rc = (CamRetCode)streamOperator->CreateStreams(streamInfos);
599 EXPECT_EQ(false, rc != HDI::Camera::V1_0::NO_ERROR);
600 if (rc == HDI::Camera::V1_0::NO_ERROR) {
601 CAMERA_LOGI("CreateStreams success.");
602 } else {
603 CAMERA_LOGE("CreateStreams fail, rc = %{public}d", rc);
604 }
605
606 rc = (CamRetCode)streamOperator->CommitStreams(NORMAL, ability_);
607 EXPECT_EQ(false, rc != HDI::Camera::V1_0::NO_ERROR);
608 if (rc == HDI::Camera::V1_0::NO_ERROR) {
609 CAMERA_LOGI("CommitStreams success.");
610 } else {
611 CAMERA_LOGE("CommitStreams fail, rc = %{public}d", rc);
612 }
613 }
614 }
615
StartCapture(int streamId,int captureId,bool shutterCallback,bool isStreaming)616 void TestCameraBase::StartCapture(int streamId, int captureId, bool shutterCallback, bool isStreaming)
617 {
618 // Get preview
619 captureInfo.streamIds_ = {streamId};
620 captureInfo.captureSetting_ = ability_;
621 captureInfo.enableShutterCallback_ = shutterCallback;
622 rc = (CamRetCode)streamOperator->Capture(captureId, captureInfo, isStreaming);
623 EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
624 if (rc == HDI::Camera::V1_0::NO_ERROR) {
625 CAMERA_LOGI("check Capture: Capture success, captureId = %{public}d", captureId);
626 } else {
627 CAMERA_LOGE("check Capture: Capture fail, rc = %{public}d, captureId = %{public}d", rc, captureId);
628 }
629 if (captureId == CAPTURE_ID_PREVIEW) {
630 streamCustomerPreview_->ReceiveFrameOn(nullptr);
631 } else if (captureId == CAPTURE_ID_CAPTURE) {
632 streamCustomerCapture_->ReceiveFrameOn([this](const unsigned char *addr, const uint32_t size) {
633 StoreImage(addr, size);
634 });
635 } else if (captureId == CAPTURE_ID_VIDEO) {
636 OpenVideoFile();
637 streamCustomerVideo_->ReceiveFrameOn([this](const unsigned char *addr, const uint32_t size) {
638 StoreVideo(addr, size);
639 });
640 } else if (captureId == CAPTURE_ID_ANALYZE) {
641 streamCustomerAnalyze_->ReceiveFrameOn([this](const unsigned char *addr, const uint32_t size) {
642 PrintFaceDetectInfo(addr, size);
643 });
644 }
645 sleep(2); // 2:sleep two second
646 }
647
StopStream(std::vector<int> & captureIds,std::vector<int> & streamIds)648 void TestCameraBase::StopStream(std::vector<int>& captureIds, std::vector<int>& streamIds)
649 {
650 constexpr uint32_t timeForWaitCancelCapture = 2;
651 sleep(timeForWaitCancelCapture);
652 if (captureIds.size() > 0) {
653 for (const auto &captureId : captureIds) {
654 if (captureId == CAPTURE_ID_PREVIEW) {
655 streamCustomerPreview_->ReceiveFrameOff();
656 } else if (captureId == CAPTURE_ID_CAPTURE) {
657 streamCustomerCapture_->ReceiveFrameOff();
658 } else if (captureId == CAPTURE_ID_VIDEO) {
659 streamCustomerVideo_->ReceiveFrameOff();
660 sleep(1);
661 CloseFd();
662 } else if (captureId == CAPTURE_ID_ANALYZE) {
663 streamCustomerAnalyze_->ReceiveFrameOff();
664 }
665 }
666 for (const auto &captureId : captureIds) {
667 CAMERA_LOGI("check Capture: CancelCapture success, captureId = %{public}d", captureId);
668 rc = (CamRetCode)streamOperator->CancelCapture(captureId);
669 sleep(timeForWaitCancelCapture);
670 EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
671 if (rc == HDI::Camera::V1_0::NO_ERROR) {
672 CAMERA_LOGI("check Capture: CancelCapture success, captureId = %{public}d", captureId);
673 } else {
674 CAMERA_LOGE("check Capture: CancelCapture fail, rc = %{public}d, captureId = %{public}d",
675 rc, captureId);
676 }
677 }
678 }
679 sleep(1);
680 if (streamIds.size() > 0) {
681 // release stream
682 rc = (CamRetCode)streamOperator->ReleaseStreams(streamIds);
683 EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
684 if (rc == HDI::Camera::V1_0::NO_ERROR) {
685 CAMERA_LOGI("check Capture: ReleaseStreams success.");
686 } else {
687 CAMERA_LOGE("check Capture: ReleaseStreams fail, rc = %{public}d, streamIds = %{public}d",
688 rc, streamIds.front());
689 }
690 }
691 }
692
PrintStabiliInfo(const std::vector<uint8_t> & result)693 void DemoCameraDeviceCallback::PrintStabiliInfo(const std::vector<uint8_t>& result)
694 {
695 std::shared_ptr<CameraMetadata> metaData;
696 MetadataUtils::ConvertVecToMetadata(result, metaData);
697
698 if (metaData == nullptr) {
699 CAMERA_LOGE("TestCameraBase: result is null");
700 return;
701 }
702 common_metadata_header_t* data = metaData->get();
703 if (data == nullptr) {
704 CAMERA_LOGE("TestCameraBase: data is null");
705 return;
706 }
707 uint8_t videoStabiliMode;
708 camera_metadata_item_t entry;
709 int ret = FindCameraMetadataItem(data, OHOS_CONTROL_VIDEO_STABILIZATION_MODE, &entry);
710 if (ret != 0) {
711 CAMERA_LOGE("demo test: get OHOS_CONTROL_EXPOSURE_MODE error");
712 return;
713 }
714 videoStabiliMode = *(entry.data.u8);
715 CAMERA_LOGI("videoStabiliMode: %{public}d", static_cast<int>(videoStabiliMode));
716 }
717
PrintFpsInfo(const std::vector<uint8_t> & result)718 void DemoCameraDeviceCallback::PrintFpsInfo(const std::vector<uint8_t>& result)
719 {
720 std::shared_ptr<CameraMetadata> metaData;
721 MetadataUtils::ConvertVecToMetadata(result, metaData);
722
723 if (metaData == nullptr) {
724 CAMERA_LOGE("TestCameraBase: result is null");
725 return;
726 }
727 common_metadata_header_t* data = metaData->get();
728 if (data == nullptr) {
729 CAMERA_LOGE("TestCameraBase: data is null");
730 return;
731 }
732 std::vector<int32_t> fpsRange;
733 camera_metadata_item_t entry;
734 int ret = FindCameraMetadataItem(data, OHOS_CONTROL_FPS_RANGES, &entry);
735 if (ret != 0) {
736 CAMERA_LOGE("demo test: get OHOS_CONTROL_EXPOSURE_MODE error");
737 return;
738 }
739
740 for (int i = 0; i < entry.count; i++) {
741 fpsRange.push_back(*(entry.data.i32 + i));
742 }
743 CAMERA_LOGI("PrintFpsInfo fpsRange: [%{public}d, %{public}d]", fpsRange[0], fpsRange[1]);
744 }
745
746 #ifndef CAMERA_BUILT_ON_OHOS_LITE
OnError(ErrorType type,int32_t errorCode)747 int32_t DemoCameraDeviceCallback::OnError(ErrorType type, int32_t errorCode)
748 {
749 CAMERA_LOGI("demo test: OnError type : %{public}d, errorMsg : %{public}d", type, errorCode);
750 }
751
OnResult(uint64_t timestamp,const std::vector<uint8_t> & result)752 int32_t DemoCameraDeviceCallback::OnResult(uint64_t timestamp, const std::vector<uint8_t>& result)
753 {
754 CAMERA_LOGI("%{public}s, enter.", __func__);
755 PrintStabiliInfo(result);
756 PrintFpsInfo(result);
757 DealCameraMetadata(result);
758 return RC_OK;
759 }
760
OnCameraStatus(const std::string & cameraId,CameraStatus status)761 int32_t DemoCameraHostCallback::OnCameraStatus(const std::string& cameraId, CameraStatus status)
762 {
763 CAMERA_LOGI("%{public}s, enter.", __func__);
764 std::cout << "OnCameraStatus, enter, cameraId = " << cameraId << ", status = " << status << std::endl;
765 return RC_OK;
766 }
767
OnFlashlightStatus(const std::string & cameraId,FlashlightStatus status)768 int32_t DemoCameraHostCallback::OnFlashlightStatus(const std::string& cameraId, FlashlightStatus status)
769 {
770 CAMERA_LOGI("%{public}s, enter. cameraId = %s, status = %d",
771 __func__, cameraId.c_str(), static_cast<int>(status));
772 return RC_OK;
773 }
774
OnCameraEvent(const std::string & cameraId,CameraEvent event)775 int32_t DemoCameraHostCallback::OnCameraEvent(const std::string& cameraId, CameraEvent event)
776 {
777 CAMERA_LOGI("%{public}s, enter. cameraId = %s, event = %d",
778 __func__, cameraId.c_str(), static_cast<int>(event));
779 std::cout << "OnCameraEvent, enter, cameraId = " << cameraId << ", event = " << event<< std::endl;
780 return RC_OK;
781 }
782
OnCaptureStarted(int32_t captureId,const std::vector<int32_t> & streamIds)783 int32_t DemoStreamOperatorCallback::OnCaptureStarted(int32_t captureId, const std::vector<int32_t>& streamIds)
784 {
785 CAMERA_LOGI("%{public}s, enter.", __func__);
786 return RC_OK;
787 }
788
OnCaptureEnded(int32_t captureId,const std::vector<CaptureEndedInfo> & infos)789 int32_t DemoStreamOperatorCallback::OnCaptureEnded(int32_t captureId, const std::vector<CaptureEndedInfo>& infos)
790 {
791 CAMERA_LOGI("%{public}s, enter.", __func__);
792 return RC_OK;
793 }
794
DealCameraMetadata(const std::vector<uint8_t> & settings)795 void DemoCameraDeviceCallback::DealCameraMetadata(const std::vector<uint8_t> &settings)
796 {
797 std::shared_ptr<CameraMetadata> result;
798 MetadataUtils::ConvertVecToMetadata(settings, result);
799 if (result == nullptr) {
800 CAMERA_LOGE("TestCameraBase: result is null");
801 return;
802 }
803 common_metadata_header_t *data = result->get();
804 if (data == nullptr) {
805 CAMERA_LOGE("data is null");
806 return;
807 }
808 for (auto it = DATA_BASE.cbegin(); it != DATA_BASE.cend(); it++) {
809 std::string st = {};
810 st = MetadataItemDump(data, *it);
811 CAMERA_LOGI("%{publid}s", st.c_str());
812 }
813 }
814
OnCaptureError(int32_t captureId,const std::vector<CaptureErrorInfo> & infos)815 int32_t DemoStreamOperatorCallback::OnCaptureError(int32_t captureId, const std::vector<CaptureErrorInfo>& infos)
816 {
817 CAMERA_LOGI("%{public}s, enter.", __func__);
818 return RC_OK;
819 }
820
OnFrameShutter(int32_t captureId,const std::vector<int32_t> & streamIds,uint64_t timestamp)821 int32_t DemoStreamOperatorCallback::OnFrameShutter(int32_t captureId,
822 const std::vector<int32_t>& streamIds, uint64_t timestamp)
823 {
824 CAMERA_LOGI("%{public}s, enter.", __func__);
825 return RC_OK;
826 }
827
828 #endif
829