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3 changed files with 90 additions and 30 deletions

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@ -43,7 +43,6 @@ target_link_libraries(webcam PRIVATE
engine
framework
opencv_world300
opencv_ts300
extern
Ws2_32

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@ -9,6 +9,8 @@
#include "opencv2\opencv.hpp"
#include <iostream>
#include <fstream>
#include <filesystem>
using namespace GS;
using namespace GS::Script;
@ -36,10 +38,12 @@ void ProcessWebcamThread::Execute() {
bool temp_not_finish = true;
bool temp_pause = true;
bool temp_record_frame = false;
current_frame_clock = 0.0;
//construction LUT pour synchro avec la clock squirrel
std::ofstream lutFile(outputVideoName+"_lut.bin", std::ios::binary);
__LOG_CAM__ << "NEW RECORDING THREAD "<<videoIndex<<" LAUNCHED \n";
int frame_index = 0;
while (temp_not_finish) {
mutex_not_finish.Lock();
@ -68,6 +72,8 @@ void ProcessWebcamThread::Execute() {
im->release();
lutFile.close();
Platform::Get().Sleep(50); // Laisser le fichier se finaliser
delete im;
}
//*********************************************************
@ -97,12 +103,27 @@ HRESULT EnumerateDevices(REFGUID category, IEnumMoniker **ppEnum)
return hr;
}
int DisplayDeviceInformation(IEnumMoniker *pEnum)
std::string BstrToString(BSTR bstr)
{
if (!bstr) return std::string();
int len = WideCharToMultiByte(CP_UTF8, 0, bstr, -1, NULL, 0, NULL, NULL);
if (len <= 0) return std::string();
std::string result(len - 1, '\0'); // -1 pour exclure le \0 final
WideCharToMultiByte(CP_UTF8, 0, bstr, -1, &result[0], len, NULL, NULL);
return result;
}
std::vector<int> DisplayDeviceInformation(IEnumMoniker *pEnum)
{
IMoniker *pMoniker = NULL;
int return_id_device = -1;
int counter_device = 0;
std::vector<int> camera_ids;
while (pEnum->Next(1, &pMoniker, NULL) == S_OK)
{
IPropertyBag *pPropBag;
@ -124,10 +145,24 @@ int DisplayDeviceInformation(IEnumMoniker *pEnum)
}
if (SUCCEEDED(hr))
{
printf("%S\n", var.bstrVal);
if (wcscmp(var.bstrVal, L"MMP SDK") != 0 && wcscmp(var.bstrVal, L"Oculus Rift") != 0 && wcscmp(var.bstrVal, L"HTC Vive") != 0)
std::string name = BstrToString(var.bstrVal);
printf("%S\n", var.bstrVal);
__LOG_CAM__<<"FOUND CAM ID "<<counter_device<<" NAME "<<name.c_str()<<"\n";
if (
wcsstr(var.bstrVal, L"MMP SDK") == nullptr &&
wcsstr(var.bstrVal, L"Oculus Rift") == nullptr &&
wcsstr(var.bstrVal, L"HTC Vive") == nullptr &&
wcsstr(var.bstrVal, L"RealSense") == nullptr &&
wcsstr(var.bstrVal, L"OBS") == nullptr
){
camera_ids.push_back(counter_device);
return_id_device = counter_device;
}
__LOG_CAM__<<"RETURN DEVICE ID "<<return_id_device<<"\n";
VariantClear(&var);
}
@ -154,7 +189,8 @@ int DisplayDeviceInformation(IEnumMoniker *pEnum)
pMoniker->Release();
++counter_device;
}
return return_id_device;
return camera_ids;
}
@ -172,7 +208,7 @@ bool Webcam::Open(int width_, int height_) {
height = height_;
int id_device = -1;
std::vector<int> id_devices;
HRESULT hr = CoInitializeEx(NULL, COINIT_MULTITHREADED);
if (SUCCEEDED(hr))
{
@ -181,23 +217,38 @@ bool Webcam::Open(int width_, int height_) {
hr = EnumerateDevices(CLSID_VideoInputDeviceCategory, &pEnum);
if (SUCCEEDED(hr))
{
id_device = DisplayDeviceInformation(pEnum);
id_devices = DisplayDeviceInformation(pEnum);
pEnum->Release();
}
CoUninitialize();
}
if (id_device == -1)
if (id_devices.size() == 0)
return false;
InputVideo = new VideoCapture(0);
InputVideo = new VideoCapture();
int device_id = -1;
for (int i = 0; i < id_devices.size(); i++)
{
InputVideo->open(id_devices[i]);
if(InputVideo->isOpened()){
device_id = id_devices[i];
break;
}
}
if(device_id == -1)
return false;
__LOG_CAM__ << "OPEN CAM ID "<<device_id <<"\n";
InputVideo->set(CV_CAP_PROP_FRAME_WIDTH, width);
InputVideo->set(CV_CAP_PROP_FRAME_HEIGHT, height);
InputVideo->set(CAP_PROP_FPS, webcam_fps);
if (!InputVideo->isOpened())
return false;
outputVideo = new VideoWriter;
ReplayInputVideo = new VideoCapture();
@ -220,6 +271,8 @@ void Webcam::Reset(bool _reset_video) {
}
void Webcam::RecordFrame(float _clock) {
if (!thread_process)
return;
thread_process->mutex_record_frame.Lock();
thread_process->record_frame = true;
thread_process->current_frame_clock = _clock;
@ -231,8 +284,7 @@ void Webcam::ResetVideo() {
std::stringstream video_name;
video_name << "./webcam_record_" << index_save_video << ".avi";
// set the codec fourcc
unsigned int ex = outputVideo->fourcc('X', 'V', 'I', 'D');
outputVideo->set(VIDEOWRITER_PROP_QUALITY, 70);
unsigned int ex = outputVideo->fourcc('M', 'J', 'P', 'G');
outputVideo->open(video_name.str(), ex, webcam_fps, Size(width, height), true);
if (!outputVideo->isOpened())
@ -268,10 +320,14 @@ void Webcam::setPause(bool pause) {
bool thread_pause = thread_process->pause;
thread_process->mutex_pause.Unlock();
thread_process->mutex_pause.Lock();
thread_process->pause = pause;
thread_process->mutex_pause.Unlock();
if (!thread_pause && pause) {
__LOG_CAM__ <<"B\n";
Close();
Platform::Get().Sleep(50); // Laisser le fichier se finaliser
__LOG_CAM__ << "REPLAY INPUT RELEASE ./webcam_record_" << index_replay_video << ".avi\n ";
ReplayInputVideo->release();
index_replay_video = index_save_video - 1;
@ -312,11 +368,14 @@ void Webcam::Close() {
thread_process = nullptr;
}
ReplayInputVideo->release();
if(ReplayInputVideo)
ReplayInputVideo->release();
}
uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index) {
//create buffer from lut
bool is_the_last_record = record_index == index_save_video - 1 ;
if(video_times.size() == 0){
//charger lut dans video_times
__LOG_CAM__ << "Chargement LUT: "<<record_name<<"_"<<record_index<<"_lut.bin\n";
@ -327,7 +386,6 @@ uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index)
if (!lutFile.is_open())
{
__LOG_CAM__ << "Cannot open LUT file: " << record_name<<"_lut.bin\n";
return NULL;
}
video_times.clear();
@ -340,6 +398,7 @@ uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index)
lutFile.seekg(size - static_cast<std::streamoff>(sizeof(float)));
lutFile.read(reinterpret_cast<char*>(&end_time), sizeof(float));
__LOG_CAM__ <<"end: "<<(float)end_time<<" asked clock: "<<clock<<"\n";
//read la derniere et premiere clock
lutFile.seekg(0);
@ -352,18 +411,18 @@ uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index)
lutFile.close();
return NULL;
}
else if(clock > end_time){
else if(clock > end_time && !is_the_last_record){
__LOG_CAM__ << "clock > end_time\n";
lutFile.close();
return SetFrame(clock,record_name,record_index+1); //recursive search forward
}
if (record_index != index_replay_video) {
__LOG_H__ << "Changing video\n";
__LOG_CAM__ << "Changing video\n";
index_replay_video = record_index;
std::stringstream video_name;
video_name << record_name << "_" << index_replay_video << ".avi";
__LOG_H__ << record_name << "_" << index_replay_video << ".avi";
__LOG_CAM__ << record_name << "_" << index_replay_video << ".avi\n";
ReplayInputVideo->release();
ReplayInputVideo->open(video_name.str());
}
@ -383,7 +442,8 @@ uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index)
return NULL;
//force reset if clock not in range
if(clock < video_times[0] || clock > video_times[video_times.size() -1]){
if(clock < video_times[0] || (clock > video_times[video_times.size() -1] && !is_the_last_record)){
__LOG_CAM__ << "CLEAR \n";
video_times.clear();
return SetFrame(clock, record_name , 0);
}
@ -392,9 +452,7 @@ uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index)
if (it == video_times.begin())
{
// clock before first frame
__LOG_CAM__ << "clock before first frame\n";
//SetFrame(clock,record_name-1)
return nullptr;
}
@ -405,13 +463,15 @@ uchar *Webcam::SetFrame(float clock, GS::String record_name , int record_index)
__LOG_CAM__ << "ReplayInputVideo not opened\n";
return NULL;
}
__LOG_CAM__ << "Index found "<<index<<"for clock "<<clock<<"\n";
int frameCount = (int)ReplayInputVideo->get(cv::CAP_PROP_FRAME_COUNT) - 1;
ReplayInputVideo->set(cv::CAP_PROP_POS_FRAMES, index);
if (!ReplayInputVideo->read(*ReplayImframe))
{
__LOG_CAM__ << "Failed to read frame at index " << index << "\n";
return NULL;
__LOG_CAM__ << "Failed to read frame at index " << index << "\n";
return NULL;
}
cv::cvtColor(*ReplayImframe, *ReplayIm, CV_BGR2RGBA, 4);

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@ -71,6 +71,7 @@ private:
int index_save_video;
int index_replay_video;
std::vector<float> video_times;
cv::VideoCapture *ReplayInputVideo;
cv::Mat* ReplayIm;