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1 /*
2  * Copyright (c) 2021-2024 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_display.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 
TestDisplay()36 TestDisplay::TestDisplay()
37 {
38 }
39 
GetCurrentLocalTimeStamp()40 uint64_t TestDisplay::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 TestDisplay::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 .....\n");
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.....\n", strerror(errno));
71         return;
72     }
73 
74     CAMERA_LOGD("demo test:StoreImage %{public}s size == %{public}d\n", path, size);
75 
76     ret = write(imgFD, bufStart, size);
77     if (ret == -1) {
78         CAMERA_LOGE("demo test:write image file error %{public}s.....\n", strerror(errno));
79     }
80 
81     close(imgFD);
82 }
83 
StoreVideo(const unsigned char * bufStart,const uint32_t size) const84 void TestDisplay::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.....\n", strerror(errno));
91     }
92     CAMERA_LOGD("demo test:StoreVideo size == %{public}d\n", size);
93 }
94 
StartStreamUpdate(int wide,int hight)95 void TestDisplay::StartStreamUpdate(int wide, int hight)
96 {
97     if (streamCustomerPreview_ == nullptr) {
98             streamCustomerPreview_ = std::make_shared<StreamCustomer>();
99         }
100         OHOS::sptr<OHOS::IBufferProducer> producer = streamCustomerPreview_->CreateProducer();
101         producer->SetQueueSize(8); // 8:set bufferQueue size
102 
103         std::vector<StreamInfo> streamInfos;
104         StreamInfo streamInfo = {};
105         streamInfo.streamId_ = STREAM_ID_PREVIEW;
106         streamInfo.width_ = wide; // 320:picture width
107         streamInfo.height_ = hight; // 240:picture height
108         streamInfo.format_ = PIXEL_FMT_RGBA_8888;
109         streamInfo.dataspace_ = 8; // 8:picture dataspace
110         streamInfo.intent_ = PREVIEW;
111         streamInfo.tunneledMode_ = 5; // 5:tunnel mode
112         streamInfo.bufferQueue_ = new BufferProducerSequenceable(producer);
113         ASSERT_NE(streamInfo.bufferQueue_, nullptr);
114         std::vector<StreamInfo>().swap(streamInfos);
115         streamInfos.push_back(streamInfo);
116         rc = (CamRetCode)streamOperator->CreateStreams(streamInfos);
117         EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
118         // Submit stream information
119         rc = (CamRetCode)streamOperator->CommitStreams(NORMAL, ability_);
120         EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
121 }
122 
OpenVideoFile()123 void TestDisplay::OpenVideoFile()
124 {
125     constexpr uint32_t pathLen = 64;
126     char path[pathLen] = {0};
127 #ifdef CAMERA_BUILT_ON_OHOS_LITE
128     char prefix[] = "/userdata/video/";
129 #else
130     char prefix[] = "/data/";
131 #endif
132     auto seconds = time(nullptr);
133     if (sprintf_s(path, sizeof(path), "%svideo%ld.h264", prefix, seconds) < 0) {
134         CAMERA_LOGE("%{public}s: sprintf  failed", __func__);
135         return;
136     }
137     videoFd_ = open(path, O_RDWR | O_CREAT, 00766); // 00766:file operate permission
138     if (videoFd_ < 0) {
139         CAMERA_LOGE("demo test: StartVideo open %s %{public}s failed", path, strerror(errno));
140     }
141 }
142 
CloseFd()143 void TestDisplay::CloseFd()
144 {
145     close(videoFd_);
146     videoFd_ = -1;
147 }
148 
PrintFaceDetectInfo(const unsigned char * bufStart,const uint32_t size) const149 void TestDisplay::PrintFaceDetectInfo(const unsigned char *bufStart, const uint32_t size) const
150 {
151     common_metadata_header_t* data = reinterpret_cast<common_metadata_header_t*>(
152         const_cast<unsigned char*>(bufStart));
153     camera_metadata_item_t entry;
154     int ret = 0;
155     ret = FindCameraMetadataItem(data, OHOS_STATISTICS_FACE_DETECT_SWITCH, &entry);
156     if (ret != 0) {
157         CAMERA_LOGE("demo test: get OHOS_STATISTICS_FACE_DETECT_SWITCH error\n");
158         return;
159     }
160     uint8_t switchValue = *(entry.data.u8);
161     CAMERA_LOGI("demo test: switchValue=%{public}d", switchValue);
162 
163     ret = FindCameraMetadataItem(data, OHOS_STATISTICS_FACE_RECTANGLES, &entry);
164     if (ret != 0) {
165         CAMERA_LOGE("demo test: get OHOS_STATISTICS_FACE_RECTANGLES error\n");
166         return;
167     }
168     uint32_t rectCount = entry.count;
169     CAMERA_LOGI("demo test: rectCount=%{public}d", rectCount);
170     std::vector<std::vector<float>> faceRectangles;
171     std::vector<float> faceRectangle;
172     for (int i = 0; i < rectCount; i++) {
173         faceRectangle.push_back(*(entry.data.f + i));
174     }
175     faceRectangles.push_back(faceRectangle);
176     for (std::vector<std::vector<float>>::iterator it = faceRectangles.begin(); it < faceRectangles.end(); it++) {
177         for (std::vector<float>::iterator innerIt = (*it).begin(); innerIt < (*it).end(); innerIt++) {
178             CAMERA_LOGI("demo test: innerIt : %{public}f", *innerIt);
179         }
180     }
181 
182     ret = FindCameraMetadataItem(data, OHOS_STATISTICS_FACE_IDS, &entry);
183     if (ret != 0) {
184         CAMERA_LOGE("demo test: get OHOS_STATISTICS_FACE_IDS error\n");
185         return;
186     }
187     uint32_t idCount = entry.count;
188     CAMERA_LOGI("demo test: idCount=%{public}d", idCount);
189     std::vector<int32_t> faceIds;
190     for (int i = 0; i < idCount; i++) {
191         faceIds.push_back(*(entry.data.i32 + i));
192     }
193     for (auto it = faceIds.begin(); it != faceIds.end(); it++) {
194         CAMERA_LOGI("demo test: faceIds : %{public}d", *it);
195     }
196 }
197 
SaveYUV(char * type,unsigned char * buffer,int32_t size)198 int32_t TestDisplay::SaveYUV(char* type, unsigned char* buffer, int32_t size)
199 {
200     int ret;
201     char path[PATH_MAX] = {0};
202     ret = sprintf_s(path, sizeof(path) / sizeof(path[0]), "/mnt/yuv/%s_%lld.yuv", type, GetCurrentLocalTimeStamp());
203     if (ret < 0) {
204         CAMERA_LOGE("%s, sprintf_s failed, errno = %s.", __FUNCTION__, strerror(errno));
205         return -1;
206     }
207     CAMERA_LOGI("%s, save yuv to file %s", __FUNCTION__, path);
208     system("mkdir -p /mnt/yuv");
209     int imgFd = open(path, O_RDWR | O_CREAT, 00766); // 00766: file permissions
210     if (imgFd == -1) {
211         CAMERA_LOGI("%s, open file failed, errno = %s.", __FUNCTION__, strerror(errno));
212         return -1;
213     }
214     ret = write(imgFd, buffer, size);
215     if (ret == -1) {
216         CAMERA_LOGI("%s, write file failed, error = %s", __FUNCTION__, strerror(errno));
217         close(imgFd);
218         return -1;
219     }
220     close(imgFd);
221     return 0;
222 }
223 
DoFbMunmap(unsigned char * addr)224 int TestDisplay::DoFbMunmap(unsigned char* addr)
225 {
226     int ret;
227     unsigned int size = vinfo_.xres * vinfo_.yres * vinfo_.bits_per_pixel / 8; // 8:picture size;
228     CAMERA_LOGI("main test:munmapped size = %d\n", size);
229     ret = (munmap(addr, finfo_.smem_len));
230     return ret;
231 }
232 
DoFbMmap(int * pmemfd)233 unsigned char* TestDisplay::DoFbMmap(int* pmemfd)
234 {
235     unsigned char* ret;
236     int screensize = vinfo_.xres * vinfo_.yres * vinfo_.bits_per_pixel / 8; // 8:picture size
237     ret = static_cast<unsigned char*>(mmap(NULL, screensize, PROT_READ | PROT_WRITE, MAP_SHARED, *pmemfd, 0));
238     if (ret == MAP_FAILED) {
239         CAMERA_LOGE("main test:do_mmap: pmem mmap() failed: %s (%d)\n", strerror(errno), errno);
240         return nullptr;
241     }
242     CAMERA_LOGI("main test:do_mmap: pmem mmap fd %d len %u\n", *pmemfd, screensize);
243     return ret;
244 }
245 
FBLog()246 void TestDisplay::FBLog()
247 {
248     CAMERA_LOGI("the fixed information is as follow:\n");
249     CAMERA_LOGI("id=%s\n", finfo_.id);
250     CAMERA_LOGI("sem_start=%lx\n", finfo_.smem_start);
251     CAMERA_LOGI("smem_len=%u\n", finfo_.smem_len);
252     CAMERA_LOGI("type=%u\n", finfo_.type);
253     CAMERA_LOGI("line_length=%u\n", finfo_.line_length);
254     CAMERA_LOGI("mmio_start=%lu\n", finfo_.mmio_start);
255     CAMERA_LOGI("mmio_len=%d\n", finfo_.mmio_len);
256     CAMERA_LOGI("visual=%d\n", finfo_.visual);
257 
258     CAMERA_LOGI("variable information is as follow:\n");
259     CAMERA_LOGI("The xres is :%u\n", vinfo_.xres);
260     CAMERA_LOGI("The yres is :%u\n", vinfo_.yres);
261     CAMERA_LOGI("xres_virtual=%u\n", vinfo_.xres_virtual);
262     CAMERA_LOGI("yres_virtual=%u\n", vinfo_.yres_virtual);
263     CAMERA_LOGI("xoffset=%u\n", vinfo_.xoffset);
264     CAMERA_LOGI("yoffset=%u\n", vinfo_.yoffset);
265     CAMERA_LOGI("bits_per_pixel is :%u\n", vinfo_.bits_per_pixel);
266     CAMERA_LOGI("red.offset=%u\n", vinfo_.red.offset);
267     CAMERA_LOGI("red.length=%u\n", vinfo_.red.length);
268     CAMERA_LOGI("red.msb_right=%u\n", vinfo_.red.msb_right);
269     CAMERA_LOGI("green.offset=%d\n", vinfo_.green.offset);
270     CAMERA_LOGI("green.length=%d\n", vinfo_.green.length);
271     CAMERA_LOGI("green.msb_right=%d\n", vinfo_.green.msb_right);
272     CAMERA_LOGI("blue.offset=%d\n", vinfo_.blue.offset);
273     CAMERA_LOGI("blue.length=%d\n", vinfo_.blue.length);
274     CAMERA_LOGI("blue.msb_right=%d\n", vinfo_.blue.msb_right);
275     CAMERA_LOGI("transp.offset=%d\n", vinfo_.transp.offset);
276     CAMERA_LOGI("transp.length=%d\n", vinfo_.transp.length);
277     CAMERA_LOGI("transp.msb_right=%d\n", vinfo_.transp.msb_right);
278     CAMERA_LOGI("height=%x\n", vinfo_.height);
279 }
280 
FBInit()281 OHOS::Camera::RetCode TestDisplay::FBInit()
282 {
283     fbFd_ = open("/dev/fb0", O_RDWR);
284     if (fbFd_ < 0) {
285         CAMERA_LOGE("main test:cannot open framebuffer %s file node\n", "/dev/fb0");
286         return RC_ERROR;
287     }
288 
289     if (ioctl(fbFd_, FBIOGET_VSCREENINFO, &vinfo_) < 0) {
290         CAMERA_LOGE("main test:cannot retrieve vscreenInfo!\n");
291         close(fbFd_);
292         return RC_ERROR;
293     }
294 
295     if (ioctl(fbFd_, FBIOGET_FSCREENINFO, &finfo_) < 0) {
296         CAMERA_LOGE("main test:can't retrieve fscreenInfo!\n");
297         close(fbFd_);
298         return RC_ERROR;
299     }
300 
301     FBLog();
302 
303     CAMERA_LOGI("main test:allocating display buffer memory\n");
304     displayBuf_ = DoFbMmap(&fbFd_);
305     if (displayBuf_ == nullptr) {
306         CAMERA_LOGE("main test:error displayBuf_ mmap error\n");
307         close(fbFd_);
308         return RC_ERROR;
309     }
310     return RC_OK;
311 }
312 
ProcessImage(unsigned char * p,unsigned char * fbp)313 void TestDisplay::ProcessImage(unsigned char* p, unsigned char* fbp)
314 {
315     unsigned char* in = p;
316     int width = 640; // 640:Displays the size of the width
317     int height = 480; // 480:Displays the size of the height
318     int istride = 1280; // 1280:Initial value of span
319     int x, y, j;
320     int y0, u, v, r, g, b;
321     int32_t location = 0;
322     int xpos = (vinfo_.xres - width) / 2;
323     int ypos = (vinfo_.yres - height) / 2;
324     int yPos, uPos, vPos;
325     int yPosIncrement, uPosIncrement, vPosIncrement;
326 
327     yPos = 0; // 0:Pixel initial value
328     uPos = 1; // 1:Pixel initial value
329     vPos = 3; // 3:Pixel initial value
330     yPosIncrement = 2; // 2:yPos increase value
331     uPosIncrement = 4; // 4:uPos increase value
332     vPosIncrement = 4; // 4:vPos increase value
333 
334     for (y = ypos; y < (height + ypos); y++) {
335         for (j = 0, x = xpos; j < width; j++, x++) {
336             location = (x + vinfo_.xoffset) * (vinfo_.bits_per_pixel / 8) + // 8: The bytes for each time
337             (y + vinfo_.yoffset) * finfo_.line_length; // add one y number of rows at a time
338 
339             y0 = in[yPos];
340             u = in[uPos] - 128; // 128:display size
341             v = in[vPos] - 128; // 128:display size
342 
343             r = RANGE_LIMIT(y0 + v + ((v * 103) >> 8)); // 103,8:display range
344             g = RANGE_LIMIT(y0 - ((u * 88) >> 8) - ((v * 183) >> 8)); // 88,8,183:display range
345             b = RANGE_LIMIT(y0 + u + ((u * 198) >> 8)); // 198,8:display range
346 
347             fbp[location + 1] = ((r & 0xF8) | (g >> 5)); // 5:display range
348             fbp[location + 0] = (((g & 0x1C) << 3) | (b >> 3)); // 3:display range
349 
350             yPos += yPosIncrement;
351 
352             if (j & 0x01) {
353                 uPos += uPosIncrement;
354                 vPos += vPosIncrement;
355             }
356         }
357 
358         yPos = 0; // 0:Pixel initial value
359         uPos = 1; // 1:Pixel initial value
360         vPos = 3; // 3:Pixel initial value
361         in += istride; // add one y number of rows at a time
362     }
363 }
364 
LcdDrawScreen(unsigned char * displayBuf,unsigned char * addr)365 void TestDisplay::LcdDrawScreen(unsigned char* displayBuf, unsigned char* addr)
366 {
367     ProcessImage(addr, displayBuf);
368 }
369 
BufferCallback(unsigned char * addr,int choice)370 void TestDisplay::BufferCallback(unsigned char* addr, int choice)
371 {
372     if (choice == PREVIEW_MODE) {
373         LcdDrawScreen(displayBuf_, addr);
374         return;
375     } else {
376         LcdDrawScreen(displayBuf_, addr);
377         std::cout << "==========[test log] capture start saveYuv......" << std::endl;
378         SaveYUV("capture", reinterpret_cast<unsigned char*>(addr), bufSize_);
379         std::cout << "==========[test log] capture end saveYuv......" << std::endl;
380         return;
381     }
382 }
383 
Init()384 void TestDisplay::Init()
385 {
386     CAMERA_LOGD("TestDisplay::Init().");
387     if (cameraHost == nullptr) {
388         constexpr const char *DEMO_SERVICE_NAME = "camera_service";
389         cameraHost = ICameraHost::Get(DEMO_SERVICE_NAME, false);
390         CAMERA_LOGI("Camera::CameraHost::CreateCameraHost()");
391         if (cameraHost == nullptr) {
392             CAMERA_LOGE("CreateCameraHost failed.");
393             return;
394         }
395         CAMERA_LOGI("CreateCameraHost success.");
396     }
397 
398     OHOS::sptr<DemoCameraHostCallback> cameraHostCallback = new DemoCameraHostCallback();
399     OHOS::Camera::RetCode ret = cameraHost->SetCallback(cameraHostCallback);
400     if (ret != HDI::Camera::V1_0::NO_ERROR) {
401         CAMERA_LOGE("SetCallback failed.");
402         return;
403     } else {
404         CAMERA_LOGI("SetCallback success.");
405     }
406 
407     if (cameraDevice == nullptr) {
408         cameraHost->GetCameraIds(cameraIds);
409         cameraHost->GetCameraAbility(cameraIds.front(), ability_);
410         MetadataUtils::ConvertVecToMetadata(ability_, ability);
411         const OHOS::sptr<DemoCameraDeviceCallback> callback = new DemoCameraDeviceCallback();
412         rc = (CamRetCode)cameraHost->OpenCamera(cameraIds.front(), callback, cameraDevice);
413         if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
414             CAMERA_LOGE("OpenCamera failed, rc = %{public}d", rc);
415             return;
416         }
417         CAMERA_LOGI("OpenCamera success.");
418     }
419 }
420 
UsbInit()421 void TestDisplay::UsbInit()
422 {
423     if (cameraHost == nullptr) {
424         constexpr const char *DEMO_SERVICE_NAME = "camera_service";
425         cameraHost = ICameraHost::Get(DEMO_SERVICE_NAME, false);
426         if (cameraHost == nullptr) {
427             std::cout << "==========[test log] CreateCameraHost failed." << std::endl;
428             return;
429         }
430         std::cout << "==========[test log] CreateCameraHost success." << std::endl;
431     }
432 
433     OHOS::sptr<DemoCameraHostCallback> cameraHostCallback = new DemoCameraHostCallback();
434     OHOS::Camera::RetCode ret = cameraHost->SetCallback(cameraHostCallback);
435     if (ret != HDI::Camera::V1_0::NO_ERROR) {
436         std::cout << "==========[test log] SetCallback failed." << std::endl;
437         return;
438     } else {
439         std::cout << "==========[test log] SetCallback success." << std::endl;
440     }
441 }
442 
GetCameraAbility()443 std::shared_ptr<CameraAbility> TestDisplay::GetCameraAbility()
444 {
445     if (cameraDevice == nullptr) {
446         OHOS::Camera::RetCode ret = cameraHost->GetCameraIds(cameraIds);
447         if (ret != HDI::Camera::V1_0::NO_ERROR) {
448             std::cout << "==========[test log]GetCameraIds failed." << std::endl;
449             return ability;
450         } else {
451             std::cout << "==========[test log]GetCameraIds success." << std::endl;
452         }
453         if (cameraIds.size() == 0) {
454             std::cout << "==========[test log]camera device list is empty." << std::endl;
455             return ability;
456         }
457         if (cameraIds.size() > 1) {
458             ret = cameraHost->GetCameraAbility(cameraIds.back(), ability_);
459             if (ret != HDI::Camera::V1_0::NO_ERROR) {
460                 std::cout << "==========[test log]GetCameraAbility failed, rc = " << rc << std::endl;
461             }
462             MetadataUtils::ConvertVecToMetadata(ability_, ability);
463         }
464     }
465     return ability;
466 }
467 
OpenUsbCamera()468 void TestDisplay::OpenUsbCamera()
469 {
470     if (cameraDevice == nullptr) {
471         cameraHost->GetCameraIds(cameraIds);
472         if (cameraIds.size() > 1) {
473             cameraHost->GetCameraAbility(cameraIds.back(), ability_);
474             MetadataUtils::ConvertVecToMetadata(ability_, ability);
475             const OHOS::sptr<DemoCameraDeviceCallback> callback = new DemoCameraDeviceCallback();
476             rc = (CamRetCode)cameraHost->OpenCamera(cameraIds.back(), callback, cameraDevice);
477             if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
478                 std::cout << "OpenCamera failed, rc = " << rc << std::endl;
479                 return;
480             }
481             std::cout << "OpenCamera success." << std::endl;
482         } else {
483             std::cout << "No usb camera plugged in" << std::endl;
484         }
485     }
486 }
487 
SelectOpenCamera(std::string cameraId)488 CamRetCode TestDisplay::SelectOpenCamera(std::string cameraId)
489 {
490     cameraHost->GetCameraAbility(cameraId, ability_);
491     MetadataUtils::ConvertVecToMetadata(ability_, ability);
492     const OHOS::sptr<DemoCameraDeviceCallback> callback = new DemoCameraDeviceCallback();
493     rc = (CamRetCode)cameraHost->OpenCamera(cameraId, callback, cameraDevice);
494     if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
495         std::cout << "OpenCamera failed, rc = " << rc << std::endl;
496         return rc;
497     }
498     std::cout << "OpenCamera success." << std::endl;
499     return rc;
500 }
501 
Close()502 void TestDisplay::Close()
503 {
504     CAMERA_LOGD("cameraDevice->Close().");
505     if (cameraDevice != nullptr) {
506         cameraDevice->Close();
507         cameraDevice = nullptr;
508     }
509 }
510 
OpenCamera()511 void TestDisplay::OpenCamera()
512 {
513     if (cameraDevice == nullptr) {
514         cameraHost->GetCameraIds(cameraIds);
515         const OHOS::sptr<OHOS::Camera::CameraDeviceCallback> callback = new CameraDeviceCallback();
516         rc = (CamRetCode)cameraHost->OpenCamera(cameraIds.front(), callback, cameraDevice);
517         if (rc != HDI::Camera::V1_0::NO_ERROR || cameraDevice == nullptr) {
518             std::cout << "==========[test log] OpenCamera failed, rc = " << rc << std::endl;
519             return;
520         }
521         std::cout << "==========[test log]  OpenCamera success." << std::endl;
522     }
523 }
524 
CalTime(struct timeval start,struct timeval end)525 float TestDisplay::CalTime(struct timeval start, struct timeval end)
526 {
527     float timeUse = 0;
528     timeUse = (end.tv_sec - start.tv_sec) * 1000000 + (end.tv_usec - start.tv_usec); // 1000000:time
529     return timeUse;
530 }
531 
AchieveStreamOperator()532 void TestDisplay::AchieveStreamOperator()
533 {
534     // Create and get streamOperator information
535     OHOS::sptr<DemoStreamOperatorCallback> streamOperatorCallback_ = new DemoStreamOperatorCallback();
536     rc = (CamRetCode)cameraDevice->GetStreamOperator(streamOperatorCallback_, streamOperator);
537     EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
538     if (rc == HDI::Camera::V1_0::NO_ERROR) {
539         CAMERA_LOGI("AchieveStreamOperator success.");
540     } else {
541         CAMERA_LOGE("AchieveStreamOperator fail, rc = %{public}d", rc);
542     }
543 }
544 
StartStream(std::vector<StreamIntent> intents)545 void TestDisplay::StartStream(std::vector<StreamIntent> intents)
546 {
547     for (auto& intent : intents) {
548         if (intent == PREVIEW) {
549             if (streamCustomerPreview_ == nullptr) {
550                 streamCustomerPreview_ = std::make_shared<StreamCustomer>();
551             }
552             streamInfoPre.streamId_ = STREAM_ID_PREVIEW;
553             streamInfoPre.width_ = PREVIEW_WIDTH; // 640:picture width
554             streamInfoPre.height_ = PREVIEW_HEIGHT; // 480:picture height
555             streamInfoPre.format_ = PIXEL_FMT_RGBA_8888;
556             streamInfoPre.dataspace_ = 8; // 8:picture dataspace
557             streamInfoPre.intent_ = intent;
558             streamInfoPre.tunneledMode_ = 5; // 5:tunnel mode
559             streamInfoPre.bufferQueue_ = new BufferProducerSequenceable(streamCustomerPreview_->CreateProducer());
560             ASSERT_NE(streamInfoPre.bufferQueue_, nullptr);
561             streamInfoPre.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
562             CAMERA_LOGD("preview success.");
563             std::vector<StreamInfo>().swap(streamInfos);
564             streamInfos.push_back(streamInfoPre);
565         } else if (intent == VIDEO) {
566             if (streamCustomerVideo_ == nullptr) {
567                 streamCustomerVideo_ = std::make_shared<StreamCustomer>();
568             }
569             streamInfoVideo.streamId_ = STREAM_ID_VIDEO;
570             streamInfoVideo.width_ = VIDEO_WIDTH; // 1280:picture width
571             streamInfoVideo.height_ = VIDEO_HEIGHT; // 960:picture height
572             streamInfoVideo.format_ = PIXEL_FMT_RGBA_8888;
573             streamInfoVideo.dataspace_ = 8; // 8:picture dataspace
574             streamInfoVideo.intent_ = intent;
575             streamInfoVideo.encodeType_ = ENCODE_TYPE_H264;
576             streamInfoVideo.tunneledMode_ = 5; // 5:tunnel mode
577             streamInfoVideo.bufferQueue_ = new BufferProducerSequenceable(streamCustomerVideo_->CreateProducer());
578             ASSERT_NE(streamInfoVideo.bufferQueue_, nullptr);
579             streamInfoVideo.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
580             CAMERA_LOGD("video success.");
581             std::vector<StreamInfo>().swap(streamInfos);
582             streamInfos.push_back(streamInfoVideo);
583         } else if (intent == STILL_CAPTURE) {
584             if (streamCustomerCapture_ == nullptr) {
585                 streamCustomerCapture_ = std::make_shared<StreamCustomer>();
586             }
587             streamInfoCapture.streamId_ = STREAM_ID_CAPTURE;
588             streamInfoCapture.width_ = CAPTURE_WIDTH; // 1280:picture width
589             streamInfoCapture.height_ = CAPTURE_HEIGHT; // 960:picture height
590             streamInfoCapture.format_ = PIXEL_FMT_RGBA_8888;
591             streamInfoCapture.dataspace_ = 8; // 8:picture dataspace
592             streamInfoCapture.intent_ = intent;
593             streamInfoCapture.encodeType_ = ENCODE_TYPE_JPEG;
594             streamInfoCapture.tunneledMode_ = 5; // 5:tunnel mode
595             streamInfoCapture.bufferQueue_ = new BufferProducerSequenceable(streamCustomerCapture_->CreateProducer());
596             ASSERT_NE(streamInfoCapture.bufferQueue_, nullptr);
597             streamInfoCapture.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
598             CAMERA_LOGD("capture success.");
599             std::vector<StreamInfo>().swap(streamInfos);
600             streamInfos.push_back(streamInfoCapture);
601         } else if (intent == ANALYZE) {
602             if (streamCustomerAnalyze_ == nullptr) {
603                 streamCustomerAnalyze_ = std::make_shared<StreamCustomer>();
604             }
605             streamInfoAnalyze.streamId_ = STREAM_ID_ANALYZE;
606             streamInfoAnalyze.width_ = ANALYZE_WIDTH; // 640:picture width
607             streamInfoAnalyze.height_ = ANALYZE_HEIGHT; // 480:picture height
608             streamInfoAnalyze.format_ = PIXEL_FMT_RGBA_8888;
609             streamInfoAnalyze.dataspace_ = 8; // 8:picture dataspace
610             streamInfoAnalyze.intent_ = intent;
611             streamInfoAnalyze.tunneledMode_ = 5; // 5:tunnel mode
612             streamInfoAnalyze.bufferQueue_ = new BufferProducerSequenceable(streamCustomerAnalyze_->CreateProducer());
613             ASSERT_NE(streamInfoAnalyze.bufferQueue_, nullptr);
614             streamInfoAnalyze.bufferQueue_->producer_->SetQueueSize(8); // 8:set bufferQueue size
615             CAMERA_LOGD("analyze success.");
616             std::vector<StreamInfo>().swap(streamInfos);
617             streamInfos.push_back(streamInfoAnalyze);
618         }
619         rc = (CamRetCode)streamOperator->CreateStreams(streamInfos);
620         EXPECT_EQ(false, rc != HDI::Camera::V1_0::NO_ERROR);
621         if (rc == HDI::Camera::V1_0::NO_ERROR) {
622             CAMERA_LOGI("CreateStreams success.");
623         } else {
624             CAMERA_LOGE("CreateStreams fail, rc = %{public}d", rc);
625         }
626 
627         rc = (CamRetCode)streamOperator->CommitStreams(NORMAL, ability_);
628         EXPECT_EQ(false, rc != HDI::Camera::V1_0::NO_ERROR);
629         if (rc == HDI::Camera::V1_0::NO_ERROR) {
630             CAMERA_LOGI("CommitStreams success.");
631         } else {
632             CAMERA_LOGE("CommitStreams fail, rc = %{public}d", rc);
633         }
634     }
635 }
636 
StartCapture(int streamId,int captureId,bool shutterCallback,bool isStreaming)637 void TestDisplay::StartCapture(int streamId, int captureId, bool shutterCallback, bool isStreaming)
638 {
639     // Get preview
640     captureInfo.streamIds_ = {streamId};
641     captureInfo.captureSetting_ = ability_;
642     captureInfo.enableShutterCallback_ = shutterCallback;
643     rc = (CamRetCode)streamOperator->Capture(captureId, captureInfo, isStreaming);
644     EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
645     if (rc == HDI::Camera::V1_0::NO_ERROR) {
646         CAMERA_LOGI("check Capture: Capture success, captureId = %{public}d", captureId);
647     } else {
648         CAMERA_LOGE("check Capture: Capture fail, rc = %{public}d, captureId = %{public}d", rc, captureId);
649     }
650     if (captureId == CAPTURE_ID_PREVIEW) {
651         streamCustomerPreview_->ReceiveFrameOn(nullptr);
652     } else if (captureId == CAPTURE_ID_CAPTURE) {
653         streamCustomerCapture_->ReceiveFrameOn([this](const unsigned char *addr, const uint32_t size) {
654             StoreImage(addr, size);
655         });
656     } else if (captureId == CAPTURE_ID_VIDEO) {
657         OpenVideoFile();
658         streamCustomerVideo_->ReceiveFrameOn([this](const unsigned char *addr, const uint32_t size) {
659             StoreVideo(addr, size);
660         });
661     } else if (captureId == CAPTURE_ID_ANALYZE) {
662         streamCustomerAnalyze_->ReceiveFrameOn([this](const unsigned char *addr, const uint32_t size) {
663             PrintFaceDetectInfo(addr, size);
664         });
665     }
666     sleep(2); // 2:sleep two second
667 }
668 
StopStream(std::vector<int> & captureIds,std::vector<int> & streamIds)669 void TestDisplay::StopStream(std::vector<int>& captureIds, std::vector<int>& streamIds)
670 {
671     constexpr uint32_t TIME_FOR_WAIT_CANCEL_CAPTURE = 2;
672     sleep(TIME_FOR_WAIT_CANCEL_CAPTURE);
673     if (sizeof(captureIds) > 0) {
674         for (auto &captureId : captureIds) {
675             if (captureId == CAPTURE_ID_PREVIEW) {
676                 streamCustomerPreview_->ReceiveFrameOff();
677             } else if (captureId == CAPTURE_ID_CAPTURE) {
678                 streamCustomerCapture_->ReceiveFrameOff();
679             } else if (captureId == CAPTURE_ID_VIDEO) {
680                 streamCustomerVideo_->ReceiveFrameOff();
681                 sleep(1);
682                 CloseFd();
683             } else if (captureId == CAPTURE_ID_ANALYZE) {
684                 streamCustomerAnalyze_->ReceiveFrameOff();
685             }
686         }
687         for (const auto &captureId : captureIds) {
688             CAMERA_LOGI("check Capture: CancelCapture success, captureId = %{public}d", captureId);
689             rc = (CamRetCode)streamOperator->CancelCapture(captureId);
690             sleep(TIME_FOR_WAIT_CANCEL_CAPTURE);
691             EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
692             if (rc == HDI::Camera::V1_0::NO_ERROR) {
693                 CAMERA_LOGI("check Capture: CancelCapture success, captureId = %{public}d", captureId);
694             } else {
695                 CAMERA_LOGE("check Capture: CancelCapture fail, rc = %{public}d, captureId = %{public}d",
696                     rc, captureId);
697             }
698         }
699     }
700     sleep(1);
701     if (sizeof(streamIds) > 0) {
702         // release stream
703         rc = (CamRetCode)streamOperator->ReleaseStreams(streamIds);
704         EXPECT_EQ(true, rc == HDI::Camera::V1_0::NO_ERROR);
705         if (rc == HDI::Camera::V1_0::NO_ERROR) {
706             CAMERA_LOGI("check Capture: ReleaseStreams success.");
707         } else {
708             CAMERA_LOGE("check Capture: ReleaseStreams fail, rc = %{public}d, streamIds = %{public}d",
709                 rc, streamIds.front());
710         }
711     }
712 }
713 
PrintStabiliInfo(const std::vector<uint8_t> & result)714 void DemoCameraDeviceCallback::PrintStabiliInfo(const std::vector<uint8_t>& result)
715 {
716     std::shared_ptr<CameraMetadata> metaData;
717     MetadataUtils::ConvertVecToMetadata(result, metaData);
718 
719     if (metaData == nullptr) {
720         CAMERA_LOGE("TestDisplay: result is null");
721         return;
722     }
723     common_metadata_header_t* data = metaData->get();
724     if (data == nullptr) {
725         CAMERA_LOGE("TestDisplay: data is null");
726         return;
727     }
728     uint8_t videoStabiliMode;
729     camera_metadata_item_t entry;
730     int ret = FindCameraMetadataItem(data, OHOS_CONTROL_VIDEO_STABILIZATION_MODE, &entry);
731     if (ret != 0) {
732         CAMERA_LOGE("demo test: get OHOS_CONTROL_EXPOSURE_MODE error\n");
733         return;
734     }
735     videoStabiliMode = *(entry.data.u8);
736     CAMERA_LOGI("videoStabiliMode: %{public}d", static_cast<int>(videoStabiliMode));
737 }
738 
PrintFpsInfo(const std::vector<uint8_t> & result)739 void DemoCameraDeviceCallback::PrintFpsInfo(const std::vector<uint8_t>& result)
740 {
741     std::shared_ptr<CameraMetadata> metaData;
742     MetadataUtils::ConvertVecToMetadata(result, metaData);
743 
744     if (metaData == nullptr) {
745         CAMERA_LOGE("TestDisplay: result is null");
746         return;
747     }
748     common_metadata_header_t* data = metaData->get();
749     if (data == nullptr) {
750         CAMERA_LOGE("TestDisplay: data is null");
751         return;
752     }
753     std::vector<int32_t> fpsRange;
754     camera_metadata_item_t entry;
755     int ret = FindCameraMetadataItem(data, OHOS_CONTROL_FPS_RANGES, &entry);
756     if (ret != 0) {
757         CAMERA_LOGE("demo test: get OHOS_CONTROL_EXPOSURE_MODE error\n");
758         return;
759     }
760 
761     for (int i = 0; i < entry.count; i++) {
762         fpsRange.push_back(*(entry.data.i32 + i));
763     }
764     CAMERA_LOGI("PrintFpsInfo fpsRange: [%{public}d, %{public}d]", fpsRange[0], fpsRange[1]);
765 }
766 
767 #ifndef CAMERA_BUILT_ON_OHOS_LITE
OnError(ErrorType type,int32_t errorCode)768 int32_t DemoCameraDeviceCallback::OnError(ErrorType type, int32_t errorCode)
769 {
770     CAMERA_LOGI("demo test: OnError type : %{public}d, errorMsg : %{public}d", type, errorCode);
771 }
772 
OnResult(uint64_t timestamp,const std::vector<uint8_t> & result)773 int32_t DemoCameraDeviceCallback::OnResult(uint64_t timestamp, const std::vector<uint8_t>& result)
774 {
775     CAMERA_LOGI("%{public}s, enter.", __func__);
776     PrintStabiliInfo(result);
777     PrintFpsInfo(result);
778     DealCameraMetadata(result);
779     return RC_OK;
780 }
781 
OnCameraStatus(const std::string & cameraId,CameraStatus status)782 int32_t DemoCameraHostCallback::OnCameraStatus(const std::string& cameraId, CameraStatus status)
783 {
784     CAMERA_LOGI("%{public}s, enter. cameraId = %{public}s, status = %{public}d",
785         __func__, cameraId.c_str(), static_cast<int>(status));
786     return RC_OK;
787 }
788 
OnFlashlightStatus(const std::string & cameraId,FlashlightStatus status)789 int32_t DemoCameraHostCallback::OnFlashlightStatus(const std::string& cameraId, FlashlightStatus status)
790 {
791     CAMERA_LOGI("%{public}s, enter. cameraId = %{public}s, status = %{public}d",
792         __func__, cameraId.c_str(), static_cast<int>(status));
793     return RC_OK;
794 }
795 
OnCameraEvent(const std::string & cameraId,CameraEvent event)796 int32_t DemoCameraHostCallback::OnCameraEvent(const std::string& cameraId, CameraEvent event)
797 {
798     CAMERA_LOGI("%{public}s, enter. cameraId = %{public}s, event = %{public}d",
799         __func__, cameraId.c_str(), static_cast<int>(event));
800     return RC_OK;
801 }
802 
OnCaptureStarted(int32_t captureId,const std::vector<int32_t> & streamIds)803 int32_t DemoStreamOperatorCallback::OnCaptureStarted(int32_t captureId, const std::vector<int32_t>& streamIds)
804 {
805     CAMERA_LOGI("%{public}s, enter.", __func__);
806     return RC_OK;
807 }
808 
OnCaptureEnded(int32_t captureId,const std::vector<CaptureEndedInfo> & infos)809 int32_t DemoStreamOperatorCallback::OnCaptureEnded(int32_t captureId, const std::vector<CaptureEndedInfo>& infos)
810 {
811     CAMERA_LOGI("%{public}s, enter.", __func__);
812     return RC_OK;
813 }
814 
DealCameraMetadata(const std::vector<uint8_t> & settings)815 void DemoCameraDeviceCallback::DealCameraMetadata(const std::vector<uint8_t> &settings)
816 {
817     std::shared_ptr<CameraMetadata> result;
818     MetadataUtils::ConvertVecToMetadata(settings, result);
819     if (result == nullptr) {
820         CAMERA_LOGE("TestDisplay: result is null");
821         return;
822     }
823     common_metadata_header_t *data = result->get();
824     if (data == nullptr) {
825         CAMERA_LOGE("data is null");
826         return;
827     }
828     for (auto it = DATA_BASE.cbegin(); it != DATA_BASE.cend(); it++) {
829         std::string st = {};
830         st = MetadataItemDump(data, *it);
831         CAMERA_LOGI("%{publid}s", st.c_str());
832     }
833 }
834 
OnCaptureError(int32_t captureId,const std::vector<CaptureErrorInfo> & infos)835 int32_t DemoStreamOperatorCallback::OnCaptureError(int32_t captureId, const std::vector<CaptureErrorInfo>& infos)
836 {
837     CAMERA_LOGI("%{public}s, enter.", __func__);
838     return RC_OK;
839 }
840 
OnFrameShutter(int32_t captureId,const std::vector<int32_t> & streamIds,uint64_t timestamp)841 int32_t DemoStreamOperatorCallback::OnFrameShutter(int32_t captureId,
842     const std::vector<int32_t>& streamIds, uint64_t timestamp)
843 {
844     CAMERA_LOGI("%{public}s, enter.", __func__);
845     return RC_OK;
846 }
847 
848 #endif
849