X-Git-Url: http://git.osdn.jp/view?a=blobdiff_plain;f=test4%2FPsychlopsMain.cs;h=7a79979e9fee583c16e3e294c5d5468c1ba6b72e;hb=e816f42793839d5dc3eb9cf933bbcb8e104d9fdb;hp=c88008552f0a9baed898e53bd5e86732c3d24463;hpb=dd11e3eedbf6f6fa5804842100af871566142d34;p=psychlops%2Fsilverlight.git diff --git a/test4/PsychlopsMain.cs b/test4/PsychlopsMain.cs index c880085..7a79979 100644 --- a/test4/PsychlopsMain.cs +++ b/test4/PsychlopsMain.cs @@ -1,281 +1,614 @@ -/*using Psychlops; +/* +///+ Prefix linkto BasicCode1 +//// Lines for set up Psychlops environment +using Psychlops; -namespace PsychlopsSilverlight4test +namespace PsychlopsSilverlightApp { public class PsychlopsMain { + ///- Prefix linkto BasicCode1 - Psychlops.Canvas cnvs; - int i; - double x, y, z, t, p, temp, xx, yy; - - //Set Target Initial Value - double TargetEcce = 100.0, TargetSize = 5.0, TargetNumber = 5, Rotate = 0.0; - - //Set Background Initial Value - double DotNumber = 50, thetaSpeed = 3.0, Axis = 0.0, BGRadii = 150, BGSize = 5.0; + ///+ Main Routine + //// Psychlops runs at the first line of this function psychlops_main(). public void psychlops_main() { - cnvs = new Canvas(500, 500); - - //Declare background dots and target - Rectangle[] BGDot = new Rectangle[2048]; - for(int i=0; i<2048; i++){ - BGDot[i]=new Rectangle(); - } - Rectangle[] Target= new Rectangle[10]; - for(int i=0; i<10; i++){ - Target[i]=new Rectangle(); - } - - - //Declare Matrix to keep back ground dots' coordinate value - double[] DotX=new double[2048]; - double[] DotY = new double[2048]; - - - //Set Independent variables to manipulate - - - //Initialize positions of background dots - for(int i=0; i<2048; i++){ - t=2.0*Math.PI*Math.random(1.0); - p=2.0*Math.PI*Math.random(1.0); - DotX[i]=t; - DotY[i]=p; - - x=BGRadii*Math.cos(t)*Math.cos(p); - y=BGRadii*Math.sin(t)*Math.cos(p); - BGDot[i].set(BGSize, BGSize); - BGDot[i].centering().shift(x,y); - } - //Initialize positions of targets - for(int i=0; i<10; i++)Target[i].set(TargetSize, TargetSize); - - double COS, SIN; - DotNumber = 200; - //Main stimulus loop - while(true){ - //Clear the main window - cnvs.clear(Color.green); - - - temp=Axis/360*2*Math.PI; - COS=Math.cos(temp); - SIN=Math.sin(temp); - - //Calculate positions of background dots and set them - for(int i=0; i 0) let2.draw(); + else let3.draw(); + Display.flip(); + } } + ///- Main loop + //AppState::setThreadPriority(AppState::NORMAL); + } + ///- Stimulus drawing function + + ///+ Main function for demo circumstances + //// Psychlops Main function + public void psychlops_main() + { + ///+ Demo circumstances + //// Spells for run demonstration circumstances + Procedure p = new Procedure(); + //p.setDesign(Procedure::DEMO); //Designate that this is a demo. + p.setProcedure(RectLuminance); //The argument name is a name of drawing function. + p.run(); + ///- Demo circumstances } + ///- Main function for demo circumstances + } } -namespace PsychlopsSilverlight4test -{ +/* +//Two types of plaid motion +//E. H. Adelson and J. A. Movshon (1982). +//Phenomenal coherence of moving visual patterns. Nature 300, 523-525 - public class PsychlopsMain +///+ Prefix +//// Include Psychlops Package +using Psychlops; + + namespace PsychlopsSilverlightApp { - Canvas cnvs; - Image img; - Ellipse fixation; - Shape shape; - Color col; - int isize = 100; - double tfreq = 1; - int frames; - RandomDots dots; - Group g; - public void psychlops_main() + public class PsychlopsMain { - cnvs = new Canvas(500, 500); - g = new Group(); - img = new Image(isize * 2, isize * 2); - Figures.drawGrating(ref img, 200, 200, 20, 1, 2, frames * 2.0 * Math.PI / tfreq / 60); - g.append(img); - g.rotation = 50; - fixation = new Ellipse(10, 10); - fixation.fill = Color.red; - //var poly = new Rectangle(100, 100); - var poly = new Letters("日本語"); - //var poly = new Polygon(); poly.append(0, 100); poly.append(-100, 0); poly.append(0, -100); poly.append(100, 0); - //var poly = new Ellipse(100, 100); - //var poly = new Line(0,0,100, 0); - poly.fill = Color.red; - poly.stroke = new Stroke { color = Color.yellow, thick = 1 }; - shape = poly; - - var rng = new Interval(); - var slider = new Psychlops.Widgets.Slider("tesrt", 0 <= rng <= 5); - - dots = new RandomDots(); + ///- Prefix + ///+ Global + // Struct for component paremeters + struct component + { + public double contrast; + public double orientation; + public double lambda; + public double tf; + } + ///- Global - while (true) + ///+ Stimulus drawing function + //// A function for stimulus drawing (main body) + void drawgratingmovie(Image[] img, component c1, component c2, double contrast, int start, int maxframe, double bg_lum, double alpha) { - frames++; + double _xp, _xp2, col1, col2; + double contrast1, contrast2; + double imageheight, imagewidth; + + contrast1 = contrast*c1.contrast/(c1.contrast+c2.contrast); + contrast2 = contrast*c2.contrast/(c1.contrast+c2.contrast); + + imageheight = img[0].getHeight(); + imagewidth = img[0].getWidth(); + + for(int frame=start; frame(2, 120); + Image[,] component_movie = StaticFunctions.NewArray(4, 120); + Image envelope = new Image(), envelope_small = new Image(); + + for(int i=0; i<120; i++) + { + movie[0, i].set(rect_size, rect_size); + movie[1, i].set(rect_size, rect_size); + component_movie[0, i].set(rect_size/2, rect_size/2); + component_movie[1, i].set(rect_size/2, rect_size/2); + component_movie[2, i].set(rect_size/2, rect_size/2); + component_movie[3, i].set(rect_size/2, rect_size/2); + } + envelope.set(rect_size, rect_size); + envelope_small.set(rect_size/2, rect_size/2); + + Letters let1 = new Letters(), let2 = new Letters(), let3 = new Letters(); + let1.str = "Component1"; + let2.str = "Component2"; + let3.str = "Superposition"; + let1.centering().shift(-rect_size*1.25, -rect_size); + //let1.cache(); + let2.centering().shift(rect_size*1.25, -rect_size); + //let2.cache(); + let3.centering().shift(0.0, rect_size*0.75); + //let3.cache(); + + component c1, c2, c0; + c0 = new component{ 0.0,0.0,1.0,1.0 }; //dummy for component movie + ///+ type-I + // Prepare Type-I plaid movie + center_orientation = 0.0; + orientation_offset = Math.PI/6; + contrast[0] = 1.0, contrast[1] = 1.0; + lambda[0] = 30.0, lambda[1] = 30.0; + tf[0] = 1.0; tf[1] = 1.0; + + c1 = {contrast[0], center_orientation-orientation_offset, lambda[0], tf[0]}; + c2 = {contrast[1], center_orientation+orientation_offset, lambda[1], tf[1]}; + + drawgratingmovie(movie[0],c1, c2, 0.5, 0, refresh_int, bg_lum, 1.0); + drawgratingmovie(component_movie[0],c0, c2, 0.5, 0, refresh_int, bg_lum, 1.0); + drawgratingmovie(component_movie[1],c1, c0, 0.5, 0, refresh_int, bg_lum, 1.0); + ///- type-I + + ///+ type-II + // Prepare Type-II plaid movie + center_orientation = -0.0, orientation_offset = Math.PI/12; + contrast[0] = 1.0, contrast[1] = 1.0; + lambda[0] = 30.0, lambda[1] = 30.0; + tf[0] = 1.0; tf[1] = 4.0; + + c1 = {contrast[0], center_orientation-orientation_offset, lambda[0], tf[0]}; + c2 = {contrast[1], center_orientation+orientation_offset, lambda[1], tf[1]}; + + drawgratingmovie(movie[1],c1, c2, 0.5, 0, refresh_int, bg_lum, 1.0); + drawgratingmovie(component_movie[2],c0, c2, 0.5, 0, refresh_int, bg_lum, 1.0); + drawgratingmovie(component_movie[3],c1, c0, 0.5, 0, refresh_int, bg_lum, 1.0); + ///- type-II + + ///+ gaussian + //draw Gaussian envelopes + envelope.clear(new Color(bg_lum)); //clear offscreen image + double _x, _y; + for(int i=0; i0){ + movie[movienum, frame].centering().draw(); + envelope.centering().draw(); + component_movie[movienum*2, frame].centering().shift(-rect_size*0.5, -rect_size).draw(); + envelope_small.centering().shift(-rect_size*0.5, -rect_size).draw(); + component_movie[movienum*2+1, frame].centering().shift(rect_size*0.5, -rect_size).draw(); + envelope_small.centering().shift(rect_size*0.5, -rect_size).draw(); + } - cnvs.clear(new Color(Mouse.left.pressed() ? 0.75 : 0.5)); - col.set(Math.random(1.0)); + ///+ draw user interface + let1.draw(0.75); + let2.draw(0.75); + let3.draw(0.75); + stimulus_type.draw(); + stimulus_type2.draw(); + if(stimulus_type2.getSelected())duration_slider.draw(); + ///- draw user interface + Display.flip(); + if(frame++ >= period) frame -= refresh_int; + } + ///- Main loop + + } + ///- Stimulus drawing function + + ///+ Main function for demo circumstances + public void psychlops_main() { + ///+ Demo circumstances + //// Spells for run demonstration circumstances + Procedure p = new Procedure(); + //p.setDesign(Procedure::DEMO); //Designate that this is a demo. + p.setProcedure(drawplaid); //The argument name is a name of drawing function. + p.run(); + ///- Demo circumstances + } + } +} +*/ - /*if (frames % 2 == 0) - { - fixation.centering().shift(100, 100); - fixation.draw(new Stroke(Color.blue, 3)); - }*/ - fixation.centering(); - fixation.draw(Color.red); - //Figures.drawGabor(ref img, 20, 100, 1, 0, frames * 2.0 * Math.PI / tfreq / 60); - //Figures.drawGaussian(ref img, 20, 1); - //Figures.drawGrating(ref img, 200, 200, 20, 1, 2, frames * 2.0 * Math.PI / tfreq / 60); - //img.centering(Mouse.position); - //img.draw(); - //g.centering(Mouse.position).draw(); - //g.rotation += 1; +using Psychlops; +//Position Bias Program +namespace PsychlopsSilverlightApp +{ - shape.centering(Mouse.position).shift(100, 0); - shape.draw(); - if (Keyboard.spc.pressed()) cnvs.var(Mouse.x, 100, 100); + public class PsychlopsMain + { + Canvas cnvs; + Image img, img2, img3; + int isize = 40; + int frames; + Psychlops.Widgets.Slider tfreq; + Psychlops.Widgets.Slider contrast; + Psychlops.Widgets.Slider lambda; + + + + public void psychlops_main() + { + cnvs = new Canvas(300, 600); + Interval rng = new Interval(); + tfreq = new Psychlops.Widgets.Slider("Temporal Frequency(Hz)", -5 <= rng <= 5, 3.0); + contrast = new Psychlops.Widgets.Slider("Contrast", 0.0 <= rng <= 1.0, 0.25); + lambda = new Psychlops.Widgets.Slider("Wave Length", 10.0 <= rng <= 120.0, 30); + + img = new Image(isize * 2, isize * 2); + img2 = new Image(isize * 2, isize * 2); + img3 = new Image(isize * 2, isize * 2); + +<<<<<<< HEAD + var gabor1 = StaticFunctions.NewArray(100); +======= + var gabor1 = StaticFunctions.NewArray(100); +>>>>>>> remotes/psychlopssilverlight/master + foreach(var g in gabor1) + { + g.setSigma(isize / 8).centering().shift(Math.random(300) - 150, Math.random(600) - 300); + g.orientation = Math.random(2*Math.PI); + } - cnvs.var(frames, 0, 20); - slider.value = frames / 100.0; + while (true) + { + cnvs.clear(new Color(0.5)); + + Figures.drawGabor(ref img, isize / 8, 1/lambda, contrast, 0.5 * Math.PI, (double)frames * 2.0 * Math.PI * tfreq / 60); + Figures.drawGabor(ref img2, isize / 8, 1 / lambda, contrast, 0.5 * Math.PI, (double)frames * 2.0 * Math.PI * -tfreq / 60); + Figures.drawGabor(ref img3, isize / 8, 1 / lambda, contrast, 0.5 * Math.PI, (double)frames * 2.0 * Math.PI * tfreq / 60); - /*if (frames % 2 != 0) - { - fixation.shift(100, 100); - fixation.draw(new Stroke(Color.green, 3)); - }*/ - for (int i = 0; i < dots.cood.Length/4; i++) + //img.centering().shift(0, -isize * 1.5).draw(); + //img2.centering().draw(); + //img3.centering().shift(0, isize * 1.5).draw(); + + + foreach (var g in gabor1) { - dots.cood[i].set(Math.random(500), Math.random(500)); + g.wavelength = lambda; + g.phase = (double)frames * 2.0 * Math.PI * tfreq / 60; + g.contrast = contrast; + g.draw(); } - dots.draw(); + + if (!Mouse.left.pressed()) frames++; - cnvs.flip(); - } - } - } + cnvs.flip(); + } + } + } } -