294 lines
8.8 KiB
C++
Executable File
294 lines
8.8 KiB
C++
Executable File
#include "IResponseAnalysis.h"
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#include "ofMain.h"
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#include "Poco/Timer.h"
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#include "Poco/Thread.h"
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#include "RefractiveIndex.h"
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using Poco::Timer;
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using Poco::TimerCallback;
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using Poco::Thread;
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void IResponseAnalysis::setup(int camWidth, int camHeight)
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{
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NUM_RUN = 1;
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int acq_run_time = 20; // 20 seconds of acquiring per run
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DELTA_T_SAVE = 10*acq_run_time/2; // for 20 seconds, we want this to be around 200 files
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// or 10 times per second = every 100 ms
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_frame_cnt_max = acq_run_time*ofGetFrameRate(); // e.g.: 30 frames per second * 20 seconds = 600 frames
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create_dir();
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_frame_cnt = 0;
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c = 0;
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int anim_time = 5; // 10 seconds
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_anim_cnt_max = anim_time*ofGetFrameRate(); // e.g.: 30 frames per second = 150 frames
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_show_image = false;
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_image_shown = false;
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//for an ofxOpenCv.h image i would like to use..."
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//image3.allocate(RefractiveIndex::_vid_w, RefractiveIndex::_vid_h);
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image1.setUseTexture(false);
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image2.setUseTexture(true);
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}
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void IResponseAnalysis::acquire()
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{
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Timer* save_timer;
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TimerCallback<IResponseAnalysis> save_callback(*this, &IResponseAnalysis::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;
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_frame_cnt = 0; _save_cnt = 0; _anim_cnt = 0;
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while(!_RUN_DONE)
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Thread::sleep(3);
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save_timer->stop();
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_RUN_DONE = false;
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}
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}
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void IResponseAnalysis::synthesise()
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{
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// _saved_filenames has all the file names of all the saved images
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while(!_RUN_DONE)
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Thread::sleep(3);
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}
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void IResponseAnalysis::displayresults()
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{
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for(float i=1;i<_saved_filenames.size();i++){
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cout << "_saved_filenames[i]" << _saved_filenames[i] << endl;
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while(!_image_shown){
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Thread::sleep(2);
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//cout << "!_image_shown" << endl;
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}
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if(!image1.loadImage(_saved_filenames[i])){
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//couldn't load image
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cout << "didn't load image" << endl;
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}
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if(image1.loadImage(_saved_filenames[i])){
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image1.loadImage(_saved_filenames[i]);
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//cout << "_show_image = true;" << endl;
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_show_image = true;
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_image_shown = false;
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}
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}
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}
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// this runs at frame rate = 33 ms for 30 FPS
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void IResponseAnalysis::draw()
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{
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switch (_state) {
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case STATE_ACQUIRING:
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{
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ofEnableAlphaBlending();
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ofColor aColour;
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int _fade_in_frames = _frame_cnt_max/10;
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cout<< "_fade_in_frames" << _fade_in_frames<< endl;
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if (_frame_cnt < _fade_in_frames) {
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aColour.set(255, 255, 255, ofMap(_frame_cnt, 0, _fade_in_frames, 0, 255));
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ofSetColor(aColour);
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ofRect(0, 0, ofGetWidth(), ofGetHeight());
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}
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if (_frame_cnt < _frame_cnt_max)
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{
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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_max - _frame_cnt*_frame_cnt)/(_frame_cnt_max*_frame_cnt_max);
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} else {
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_RUN_DONE = true;
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}
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if (_frame_cnt >= (_frame_cnt_max-_fade_in_frames) && _frame_cnt < _frame_cnt_max) {
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aColour.set(0, 0, 0, ofMap(_frame_cnt-(_frame_cnt_max-_fade_in_frames), 0, _fade_in_frames, 0, 255));
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ofSetColor(aColour);
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ofRect(0, 0, ofGetWidth(), ofGetHeight());
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// cout << "FADE OUT STROBE TIME " << endl;
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}
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ofDisableAlphaBlending();
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_frame_cnt++;
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break;
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}
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case STATE_SYNTHESISING:
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{
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// display animation of something while the synthesis in on-going...
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cout << "RelaxRateAnalysis = STATE_SYNTHESISING...\n";
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// display animation of something while the synthesis in on-going...
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ofEnableAlphaBlending();
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ofSetRectMode(OF_RECTMODE_CENTER);
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ofPushMatrix();
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ofTranslate(ofGetWidth()/2, ofGetHeight()/2);
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if(_anim_cnt < _anim_cnt_max){
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ofColor aColour;
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int rectSizeW = ofGetWidth()/4;
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int rectSizeH = ofGetHeight()/4;
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int _fade_in_frames = _anim_cnt_max/2;
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int c_anim = 10;
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int fade;
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//ofRotate(ofMap(_anim_cnt/2.0, 0, _anim_cnt_max, 0, 360));
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if (_anim_cnt < _fade_in_frames) {
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cout << "ShadowScapesAnalysis STATE_SYNTHESIZING = FADING IN ANIMATION...\n";
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fade = ofMap(_anim_cnt, 0, _fade_in_frames, 0, 255);
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for (int i=0; i <= 15; i++){
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c_anim = 0+17*i;
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aColour.set(c_anim, c_anim, c_anim, fade);
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ofSetColor(aColour);
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ofRect(0, 0, rectSizeW+10*i, rectSizeH+10*i);
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ofRect(0, 0, rectSizeW-10*i, rectSizeH-10*i);
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}
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}
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if (_anim_cnt >= _fade_in_frames && _anim_cnt <= (_anim_cnt_max-_fade_in_frames)){
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for (int i=0; i <= 15; i++){
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c_anim = 255;
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aColour.set(c_anim, c_anim, c_anim, 255);
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ofSetColor(aColour);
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ofRect(0, 0, rectSizeW+10*i, rectSizeH+10*i);
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ofRect(0, 0, rectSizeW-10*i, rectSizeH-10*i);
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}
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}
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if (_anim_cnt > (_anim_cnt_max-_fade_in_frames) && _anim_cnt <= _anim_cnt_max) {
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cout << "_anim_cnt = " << _anim_cnt-(_anim_cnt_max-_fade_in_frames) << endl;
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fade = ofMap(_anim_cnt-(_anim_cnt_max-_fade_in_frames), 0, _fade_in_frames, 0, 255);
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cout << "fade down = " << fade << endl;
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for (int i=0; i <= 15; i++){
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c_anim = (17*i);
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aColour.set(c_anim, c_anim, c_anim, 255-fade);
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ofSetColor(aColour);
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ofRect(0, 0, rectSizeW+10*i, rectSizeH+10*i);
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ofRect(0, 0, rectSizeW-10*i, rectSizeH-10*i);
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}
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}
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_anim_cnt++;
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} else {
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_RUN_DONE = true;
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_anim_cnt=0;
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}
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ofPopMatrix();
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ofSetRectMode(OF_RECTMODE_CORNER);
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ofDisableAlphaBlending();
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break;
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}
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case STATE_DISPLAY_RESULTS:
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{
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if (_frame_cnt > 2)
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{
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_image_shown = true;
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_frame_cnt=0;
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}
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_frame_cnt++;
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if (_show_image)
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{
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ofEnableAlphaBlending();
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ofSetColor(255, 255, 255, 255);
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image2.setFromPixels(image1.getPixels(),image1.width,image1.height, OF_IMAGE_COLOR);
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image2.draw(0,0, ofGetWidth(), ofGetHeight());
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ofDisableAlphaBlending();
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}
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// display results of the synthesis
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_RUN_DONE = true;
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break;
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}
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default:
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break;
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}
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}
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// this runs at save_cb timer rate = DELTA_T_SAVE
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void IResponseAnalysis::save_cb(Timer& timer)
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{
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_save_cnt++;
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RefractiveIndex::_vidGrabber.grabFrame(); // get a new frame from the camera
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if (RefractiveIndex::_vidGrabber.isFrameNew())
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{
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RefractiveIndex::_pixels = RefractiveIndex::_vidGrabber.getPixelsRef(); //get ofPixels from the camera
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}
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//cout << "IResponseAnalysis::saving...\n";
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string file_name = ofToString(_save_cnt,2)+"_"+ ofToString(c,2)+"_"+ofToString(_run_cnt,2)+".jpg";
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ofSaveImage(RefractiveIndex::_pixels, _whole_file_path+"/"+file_name, OF_IMAGE_QUALITY_BEST);
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_saved_filenames.push_back(_whole_file_path+"/"+file_name);
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}
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