RefractiveIndex/src/CamFrameRateAnalysis.cpp

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/*
~ author: dviid
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~ contact: dviid@labs.ciid.dk
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*/
#include "CamFrameRateAnalysis.h"
#include "ofMain.h"
#include "Poco/Timer.h"
#include "Poco/Thread.h"
#include "RefractiveIndex.h"
using Poco::Timer;
using Poco::TimerCallback;
using Poco::Thread;
void CamFrameRateAnalysis::setup(int camWidth, int camHeight)
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{
DELTA_T_SAVE = 1000/30;
NUM_PHASE = 1;
NUM_RUN = 1;
NUM_SAVE_PER_RUN = 100;
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create_dir();
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_frame_cnt = 0;
_frame_cnt_max = ofGetFrameRate() * ((DELTA_T_SAVE * NUM_SAVE_PER_RUN) / 1000);
c = 0;
}
void CamFrameRateAnalysis::synthesize()
{
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Timer* save_timer;
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TimerCallback<CamFrameRateAnalysis> save_callback(*this, &CamFrameRateAnalysis::save_cb);
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// RUN ROUTINE
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for(int i = 0; i < NUM_RUN; i++) {
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_run_cnt = i;
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cout << "RUN NUM = " << i;
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save_timer = new Timer(0, DELTA_T_SAVE); // timing interval for saving files
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save_timer->start(save_callback);
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_RUN_DONE = false;
_frame_cnt = 0; _save_cnt = 0;
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while(!_RUN_DONE)
Thread::sleep(3);
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save_timer->stop();
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}
}
// this runs at frame rate = 33 ms for 30 FPS
void CamFrameRateAnalysis::draw()
{
/// *** TODO *** ///
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// still need to deal with latency frames here - i.e.: there are frames
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/// *** TODO *** ///
float totalTime=_frame_cnt_max/2;
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float numSteps=10;
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vector<float>stepLengths;
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//c must increase until frame_cnt_max * 0.5 and then decrease afterwards
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if (_frame_cnt < _frame_cnt_max)
{
ofSetColor(c, c, c);
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ofRect(0, 0, ofGetWidth(), ofGetHeight());
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c = 255.0 * (_frame_cnt_max - _frame_cnt)/(_frame_cnt_max);
cout<<_frame_cnt<<endl;
}
_frame_cnt++;
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}
// this runs at save_cb timer rate = DELTA_T_SAVE
void CamFrameRateAnalysis::save_cb(Timer& timer)
{
_save_cnt++;
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//cout << "c_last... " << c << endl;
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string file_name = ofToString(_save_cnt,2)+"_"+ ofToString(c,2)+"_"+ofToString(_run_cnt,2)+".jpg";
string thisLocation = RefractiveIndex::_location;
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ofSaveImage(RefractiveIndex::_pixels, _whole_file_path+"/"+file_name, OF_IMAGE_QUALITY_BEST);
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if(_save_cnt >= NUM_SAVE_PER_RUN)
_RUN_DONE = true;
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}