Team:Cornell/javascripts/mycodraw

From 2013.igem.org

(Difference between revisions)
Line 1: Line 1:
 +
var P_TURN = 0.1;
 +
var P_SPLIT = 0.1/256;
 +
var P_TRAIL = 1.0;
 +
var P_DIE = 0.01;
 +
var mc = 0x44;
 +
var myc = [mc, mc, mc];
 +
var invertFood = false;
 +
var invertMyc = true;
 +
var antialias = true;
 +
var l = 50;
 +
var bleedHue = 0;
 +
var overEat = 1;
 +
//var alive = true;
 +
//var started = false;
-
function mycoDraw(canvas)
+
var w;
 +
var h;
 +
var food;
 +
var draw;
 +
var cx;
 +
var cy;
 +
 
 +
var tips;
 +
var trls;
 +
var dirs;
 +
var trns;
 +
var spts;
 +
var jins;
 +
var tins;
 +
var trqs;
 +
var trcs;
 +
var trailCounts;
 +
 
 +
function mycoDraw()
{
{
 +
var src_canvas = document.getElementById("mycosource");
 +
w = src_canvas.children[0].width;
 +
h = src_canvas.children[0].height;
 +
src_canvas.width = w;
 +
src_canvas.height = h;
 +
food = src_canvas.getContext("2d");
 +
food.drawImage(src_canvas.children[0], 0, 0);
 +
var canvas = document.getElementById("mycodraw");
var canvas = document.getElementById("mycodraw");
-
var img = canvas.children[0];
+
canvas.width = w;
-
canvas.width = img.width;
+
canvas.height = h;
-
canvas.height = img.height;
+
draw = canvas.getContext("2d");
-
var context = canvas.getContext("2d");
+
draw.fillStyle = "#F2F2F2";
-
alert(img.src);
+
draw.fillRect(0, 0, canvas.width, canvas.height);
-
context.drawImage(img, 0, 0);
+
-
alert(img.src);
+
cx = width/2;
 +
cy = height/2;
 +
 
 +
tips = new Array();
 +
trls = new Array();
 +
dirs = new Array();
 +
trns = new Array();
 +
spts = new Array();
 +
jins = new Array();
 +
tins = new Array();
 +
trqs = new Array();
 +
trcs = new Array();
 +
trailCounts = new Array();
 +
 +
for(var i = 0; i < 100; i++)
 +
{
 +
tips.push([Math.random()*w,Math.random()*h]);
 +
trls.push(new Array(l));
 +
dirs.push(Math.floor(Math.random()*360));
 +
trns.push(Math.random() > 0.5);
 +
spts.push(10);
 +
trailCounts.push(0);
 +
}
 +
 +
var speed = 10;
 +
for(var t = 0; tips.length > 0; t = (l > 0 ? (t+1)%l : 0))
 +
{
 +
for(var i = tips.length-1; i >= 0; i--)
 +
{
 +
var p = tips[i];
 +
var trl = trls[i];
 +
if(l > 0) trl[t] = p;
 +
spts[i] = spts[i] - 1;
 +
 +
var vals = colorPovar(p, null, 1.0, dirs[i]); //the main strand-coloring call
 +
var out = vals[0];
 +
if(out > 0.45) //turns the tips around if they hit the edge
 +
{
 +
var dx = p[0] - cx;
 +
var dy = p[1] - cy;
 +
var theta = Math.floor(Math.abs((Math.atan(dy/dx)/Math.PI)*180));
 +
if(dx > 0 == dy < 0)
 +
{ theta = 180*(dx > 0 ? 1 : 2) - theta; }
 +
if(dx > 0 && dy > 0)
 +
{ theta = theta + 180; }
 +
dirs[i] = theta;
 +
}
 +
var wp = vals[1];
 +
var ref = [vals[2], vals[3], vals[4]];
 +
 +
if(trailCounts[i] == 0 && Math.random() < P_TRAIL &&
 +
vals[3] > 0.4 && vals[4] > 0.5 &&
 +
( Math.abs(vals[2] - bleedHue) < 0.05 ||
 +
Math.abs(Math.abs(vals[2]-1.0) - bleedhue) < 0.05)
 +
))
 +
{
 +
trailCounts[i] = l;
 +
jins.push(0);
 +
tins.push(t);
 +
trqs.push(trls[i].slice(0))
 +
trcs.push(ref);
 +
}
 +
else
 +
{ trailCounts[i] = Math.max(trailCounts[i]-1, 0); }
 +
 +
if(Math.random() < P_TURN*wp*wp*wp*wp) { trns[i] = !trns[i]; }
 +
if(Math.random() < P_SPLIT*(wp*256)/(tips.length/50) && spts[i] < 1)
 +
{
 +
spts[i] = 10;
 +
trls.push(trls[i].slice(0));
 +
tips.push(p.slice(0));
 +
dirs.push(dirs[i]);
 +
trns.push(!trns[i]);
 +
spts.push(10);
 +
trailCounts.push(0);
 +
}
 +
if(out < 0.1 && Math.random() < P_DIE*(1.0-wp))
 +
{
 +
tips.splice(i, 1);
 +
trls.splice(i, 1);
 +
dirs.splice(i, 1);
 +
trns.splice(i, 1);
 +
spts.splice(i, 1);
 +
trailCounts.splice(i, 1);
 +
//original: prvar dead
 +
}
 +
else
 +
{
 +
var turn = Math.floor(Math.random()*5);
 +
dirs[i] = (dirs[i] + (trns[i] ? turn : -1*turn))%360;
 +
var xd = wp*Math.cos(((dirs[i])/180.0)*Math.PI);
 +
var yd = wp*Math.sin(((dirs[i])/180.0)*Math.PI);
 +
tips[i] = [p[0] + xd, p[1] + yd];
 +
}
 +
}
 +
if(l > 0) //trail-coloring
 +
{
 +
for(var i = tins.length - 1; i >= 0; i--)
 +
{
 +
colorPovar(trqs[i][(tins[i]+(l-1)-jins[i])%l], trcs[i], trailStrength*(1.0-((1.0*jins[i])/(1.0*l))), 0);
 +
jins[i] = jins[i]+1;
 +
if(jins[i] == l) //this trail is completed
 +
{
 +
jins.splice(i, 1);
 +
tins.splice(i, 1);
 +
trqs.splice(i, 1);
 +
trcs.splice(i, 1);
 +
}
 +
}
 +
}
 +
if(speed > 1.0)
 +
{
 +
pausecomp(Math.floor(speed + 0.5));
 +
speed = speed*0.999;
 +
}
 +
}
}
}
 +
 +
function colorPovar(p, ref, strength, dir)                                               
 +
{                                                                                                                         
 +
var rets = new Array(5);
 +
if(p == null)
 +
return rets;
 +
var dx1 = p[0]-0.5;
 +
var dx2 = p[0]+0.5;
 +
var dy1 = p[1]-0.5;
 +
var dy2 = p[1]+0.5;
 +
var x1 = Math.floor(dx1 - (dx1 < 0 ? 1 : 0));
 +
var x2 = Math.floor(dx2 - (dx2 < 0 ? 1 : 0));
 +
var y1 = Math.floor(dy1 - (dy1 < 0 ? 1 : 0));
 +
var y2 = Math.floor(dy2 - (dy2 < 0 ? 1 : 0));
 +
var x = [x2, x1, x1, x2, x1-1, x1, x2, x2+1];
 +
var y = [y2, y2, y1, y1, 0, 0, 0, 0];
 +
var mx = ((x1+x2)/2.0) + 0.5;
 +
var my = ((y1+y2)/2.0) + 0.5;
 +
//percentages in each nearby pixel, numbered in this fashion:
 +
//    x1  x2
 +
// y1  3 | 4
 +
//    --•--
 +
// y2  2 | 1
 +
var p1 = (dx2-mx)*(dy2-my);
 +
var p2 = (mx-dx1)*(dy2-my);
 +
var p3 = (dx2-mx)*(my-dy1);
 +
var p4 = (mx-dx1)*(my-dy1);
 +
var pj = [p1, p2, p3, p4, 0, 0, 0, 0];
 +
if((0 <= dir && dir < 90) || (180 <= dir && dir < 270))
 +
{
 +
y[4] = y2;
 +
y[5] = y2+1;
 +
y[6] = y1-1;
 +
y[7] = y1;
 +
pj[4] = p2*overEat;
 +
pj[5] = p2*overEat;
 +
pj[6] = p4*overEat;
 +
pj[7] = p4*overEat;
 +
}
 +
else
 +
{
 +
y[4] = y1;
 +
y[5] = y1-1;
 +
y[6] = y2+1;
 +
y[7] = y2;
 +
pj[4] = p3*overEat;
 +
pj[5] = p3*overEat;
 +
pj[6] = p1*overEat;
 +
pj[7] = p1*overEat;
 +
}
 +
if(!antialias)
 +
{
 +
var ps = new Array();
 +
for(var j = 0; j < 4; j++)
 +
ps.push(pj[j]);
 +
ps.sort();
 +
for(var j = 0; j < 4; j++)
 +
if(pj[j] == ps[3])
 +
pj[j] = 1.0;
 +
else
 +
pj[j] = 0.0;
 +
}
 +
var rgb = new Array();
 +
var wd = 0.0;
 +
var wp = 0.0;
 +
if(ref == null)
 +
{
 +
rgb.push(food.getImageData(x2, y2, 1, 1).data);
 +
rgb.push(food.getImageData(x1, y2, 1, 1).data);
 +
rgb.push(food.getImageData(x1, y1, 1, 1).data);
 +
rgb.push(food.getImageData(x2, y1, 1, 1).data);
 +
var hue = 0;
 +
var saturation = 0;
 +
var brightness = 0;
 +
for(var j = 0; j < 4; j++)
 +
{
 +
var hsb = RGBtoHSB(rgb[j]);
 +
hue += hsb[0]*pj[j];
 +
saturation += hsb[1]*pj[j];
 +
brightness += hsb[2]*pj[j];
 +
}
 +
 +
rets[2] = hue;
 +
rets[3] = saturation;
 +
rets[4] = brightness;
 +
 +
var dr = 0;
 +
var dg = 0;
 +
var db = 0;
 +
for(var j = 0; j < 4; j++)
 +
{
 +
dr += pj[j]*Math.floor(c[j].getRed());
 +
dg += pj[j]*Math.floor(c[j].getGreen());
 +
db += pj[j]*Math.floor(c[j].getBlue());
 +
}
 +
var r = Math.floor(dr);
 +
var g = Math.floor(dg);
 +
var b = Math.floor(db);
 +
 +
wd = Math.min(256.0, Math.floor(((r + g + b)/3)) + 25.6);
 +
wp = wd/256.0;
 +
 +
if(false) wp = 1.0 - wp; //invertFood
 +
}
 +
 +
var inside = new Array(8);
 +
for(var j = 0; j < 8; j++)
 +
{
 +
inside[j] = x[j] < w && y[j] < h;
 +
inside[j] = inside[j] && x[j] >= 0 && y[j] >= 0;
 +
 +
if(inside[j])
 +
{
 +
if(ref == null) // if this is a strand-drawing call
 +
{
 +
var origColor = food.getImageData(x[j], y[j], 1, 1).data;
 +
//Color origColor = new Color(food.getRGB(x[j], y[j]));
 +
// if(true) //invertMyc
 +
// {
 +
var addColor = addRGB(origColor, myc, pj[j]);
 +
var addedColor = subRGB(addColor, origColor, 1.0);
 +
var imgd = food.getImageData(x[j], y[j], 1, 1);
 +
imgd.data.splice(0, 3, addColor[0], addColor[1], addColor[2]);
 +
food.putImageData(imgd);
 +
//Color addColor = addRGB(origColor, myc, pj[j]);
 +
//Color addedColor = subRGB(addColor, origColor, 1.0);
 +
//food.setRGB(x[j], y[j], addColor.getRGB());
 +
if(j < 5)
 +
{
 +
imgd = draw.getImageData(x[j], y[j], 1, 1);
 +
var subbedColor = subRGB(imgd.data, addedColor, 1.0);
 +
imgd.data.splice(0, 3, subbedColor[0], subbedColor[1], subbedColor[2]);
 +
draw.putImageData(imgd);
 +
}
 +
//draw.setRGB(x[j], y[j], subRGB(new Color(draw.getRGB(x[j], y[j])), addedColor, 1.0).getRGB());
 +
// }
 +
//else
 +
//{
 +
// Color subColor = subRGB(origColor, myc, pj[j]);
 +
// Color subbedColor = subRGB(origColor, subColor, 1.0);
 +
// food.setRGB(x[j], y[j], subColor.getRGB());
 +
// if(j < 5)
 +
// draw.setRGB(x[j], y[j], addRGB(new Color(draw.getRGB(x[j], y[j])), subbedColor, 1.0).getRGB());
 +
//}
 +
}
 +
else //if this is a trail-drawing call
 +
{
 +
var imgd = draw.getImageData(x[j], y[j], 1, 1);
 +
var addedColor = addHSB(imgd.data, ref, strength);
 +
imgd.data.splice(0,3, addedColor[0], addedColor[1], addedColor[2]);
 +
 +
//draw.setRGB(x[j], y[j], addHSB(
 +
// new Color(image.getRGB(x[j],y[j])),
 +
// new Color(food.getRGB(x[j],y[j])),
 +
// new Color(draw.getRGB(x[j],y[j])),
 +
// ref,
 +
// strength).getRGB());
 +
}
 +
}
 +
}
 +
var out = 0;
 +
for(var j = 0; j < 4; j++)
 +
if(!inside[j]) out += 0.25;
 +
rets[0] = out;
 +
rets[1] = wp;
 +
return rets;                                                                                                       
 +
}   
 +
 +
function addRGB(c1, c2, weight)
 +
{
 +
return [Math.min(c1[0] + Math.floor(c2[0]*weight + 0.5), 0xFF),
 +
Math.min(c1[1] + Math.floor(c2[1]*weight + 0.5), 0xFF),
 +
Math.min(c1[2] + Math.floor(c2[2]*weight + 0.5), 0xFF)];
 +
 +
// return new Color(
 +
// Math.min(c1.getRed()+ (int)(c2.getRed()*weight + 0.5) , 0xFF),
 +
// Math.min(c1.getGreen()+ (int)(c2.getGreen()*weight + 0.5) , 0xFF),
 +
// Math.min(c1.getBlue()+ (int)(c2.getBlue()*weight + 0.5) , 0xFF));
 +
 +
}     
 +
 +
function subRGB(c1, c2, weight)
 +
{
 +
return [Math.min(c1[0] - Math.floor(c2[0]*weight + 0.5), 0xFF),
 +
Math.min(c1[1] - Math.floor(c2[1]*weight + 0.5), 0xFF),
 +
Math.min(c1[2] - Math.floor(c2[2]*weight + 0.5), 0xFF)];
 +
 +
// return new Color(
 +
// Math.max(c1.getRed()- (int)(c2.getRed()*weight + 0.5) , 0x00),
 +
// Math.max(c1.getGreen()- (int)(c2.getGreen()*weight + 0.5) , 0x00),
 +
// Math.max(c1.getBlue()- (int)(c2.getBlue()*weight + 0.5) , 0x00));
 +
 +
}
 +
 +
function addHSB(cd, cr, weight)
 +
{
 +
hd = RGBtoHSB(c1);
 +
hr = RGBtoHSB(c2);
 +
return HSBtoRGB(0,
 +
Math.max((hd[1] + hr[1]*weight)/(1.0+weight), hd[1]),
 +
hd[2]);
 +
 +
// float[] hsbDraw = Color.RGBtoHSB(draw.getRed(), draw.getGreen(), draw.getBlue(), null);
 +
// float[] hsbRef = Color.RGBtoHSB(ref.getRed(), ref.getGreen(), ref.getBlue(), null);
 +
// return Color.getHSBColor(bleedHue,
 +
// Math.max((float)((hsbDraw[1] + hsbRef[1]*weight)/(1.0+weight)), hsbDraw[1]), //adds weight of the ref to saturation
 +
// hsbDraw[2]);
 +
 +
}
 +
 +
function RGBtoHSB(rgb)
 +
{
 +
var r = rgb[0]/255;
 +
var g = rgb[1]/255;
 +
var b = rgb[2]/255;
 +
var min = Math.min(r, g, b);
 +
var max = Math.max(r, g, b);
 +
var del = max - min;
 +
var hsb = new Array(3);
 +
hsb[2] = max;
 +
if(del == 0)
 +
{
 +
hsb[0] = 0;
 +
hsb[1] = 0;
 +
}
 +
else
 +
{
 +
hsb[1] = del/max;
 +
 +
var delR = (((max - r)/6) + (del/2))/del
 +
var delG = (((max - g)/6) + (del/2))/del
 +
var delB = (((max - b)/6) + (del/2))/del
 +
 +
if(r == max) hsb[0] = delB - delG;
 +
else if(g == max) hsb[0] = (1/3) + delR - delB;
 +
else if(b == max) hsb [0] = (2/3) + delG + delR;
 +
 +
if(hsb[0] < 0) hsb[0] = hsb[0] + 1;
 +
if(hsb[0] > 1) hsb[0] = hsb[0] - 1;
 +
}
 +
return hsb;
 +
}
 +
 +
function HSBtoRGB(hsb)
 +
{
 +
var h = hsb[0];
 +
var s = hsb[1];
 +
var v = hsb[2];
 +
 +
var r = v;
 +
var g = v;
 +
var b = v;
 +
 +
if(s != 0)
 +
{
 +
var sh = h*6;
 +
if(sh == 6) sh = 0;
 +
var hi = Math.floor(sh);
 +
var v1 = v * (1 - s);
 +
var v2 = v * (1 - s * (sh - hi));
 +
var v3 = v * (1 - s * (1 - (sh - hi)));
 +
 +
if ( hi == 0 ) {r = v; g = v3; b = v1; }
 +
else if ( hi == 1 ) {r = v2; g = v; b = v1; }
 +
else if ( hi == 2 ) {r = v1; g = v; b = v3; }
 +
else if ( hi == 3 ) {r = v1; g = v2; b = v; }
 +
else if ( hi == 4 ) {r = v3; g = v1; b = v; }
 +
else {r = v; g = v1; b = v2; }
 +
}
 +
 +
return [Math.floor(r*255), Math.floor(g*255), Math.floor(b*255)];
 +
}
 +
 +
function pausecomp(ms)
 +
{
 +
ms += new Date().getTime();
 +
while (new Date() < ms){}
 +
}
 +
 +
 +
 +
//function mycoDraw(canvas)
 +
//{
 +
// var canvas = document.getElementById("mycodraw");
 +
// var img = canvas.children[0];
 +
// canvas.width = img.width;
 +
// canvas.height = img.height;
 +
// var context = canvas.getContext("2d");
 +
// alert(img.src);
 +
// context.drawImage(img, 0, 0);
 +
// alert(img.src);
 +
//}

Revision as of 06:07, 17 June 2013

var P_TURN = 0.1; var P_SPLIT = 0.1/256; var P_TRAIL = 1.0; var P_DIE = 0.01; var mc = 0x44; var myc = [mc, mc, mc]; var invertFood = false; var invertMyc = true; var antialias = true; var l = 50; var bleedHue = 0; var overEat = 1; //var alive = true; //var started = false;

var w; var h; var food; var draw; var cx; var cy;

var tips; var trls; var dirs; var trns; var spts; var jins; var tins; var trqs; var trcs; var trailCounts;

function mycoDraw() { var src_canvas = document.getElementById("mycosource"); w = src_canvas.children[0].width; h = src_canvas.children[0].height; src_canvas.width = w; src_canvas.height = h; food = src_canvas.getContext("2d"); food.drawImage(src_canvas.children[0], 0, 0);

var canvas = document.getElementById("mycodraw"); canvas.width = w; canvas.height = h; draw = canvas.getContext("2d"); draw.fillStyle = "#F2F2F2"; draw.fillRect(0, 0, canvas.width, canvas.height);

cx = width/2; cy = height/2;

tips = new Array(); trls = new Array(); dirs = new Array(); trns = new Array(); spts = new Array(); jins = new Array(); tins = new Array(); trqs = new Array(); trcs = new Array(); trailCounts = new Array();

for(var i = 0; i < 100; i++) { tips.push([Math.random()*w,Math.random()*h]); trls.push(new Array(l)); dirs.push(Math.floor(Math.random()*360)); trns.push(Math.random() > 0.5); spts.push(10); trailCounts.push(0); }

var speed = 10; for(var t = 0; tips.length > 0; t = (l > 0 ? (t+1)%l : 0)) { for(var i = tips.length-1; i >= 0; i--) { var p = tips[i]; var trl = trls[i]; if(l > 0) trl[t] = p; spts[i] = spts[i] - 1;

var vals = colorPovar(p, null, 1.0, dirs[i]); //the main strand-coloring call var out = vals[0]; if(out > 0.45) //turns the tips around if they hit the edge { var dx = p[0] - cx; var dy = p[1] - cy; var theta = Math.floor(Math.abs((Math.atan(dy/dx)/Math.PI)*180)); if(dx > 0 == dy < 0) { theta = 180*(dx > 0 ? 1 : 2) - theta; } if(dx > 0 && dy > 0) { theta = theta + 180; } dirs[i] = theta; } var wp = vals[1]; var ref = [vals[2], vals[3], vals[4]];

if(trailCounts[i] == 0 && Math.random() < P_TRAIL && vals[3] > 0.4 && vals[4] > 0.5 && ( Math.abs(vals[2] - bleedHue) < 0.05 || Math.abs(Math.abs(vals[2]-1.0) - bleedhue) < 0.05) )) { trailCounts[i] = l; jins.push(0); tins.push(t); trqs.push(trls[i].slice(0)) trcs.push(ref); } else { trailCounts[i] = Math.max(trailCounts[i]-1, 0); }

if(Math.random() < P_TURN*wp*wp*wp*wp) { trns[i] = !trns[i]; } if(Math.random() < P_SPLIT*(wp*256)/(tips.length/50) && spts[i] < 1) { spts[i] = 10; trls.push(trls[i].slice(0)); tips.push(p.slice(0)); dirs.push(dirs[i]); trns.push(!trns[i]); spts.push(10); trailCounts.push(0); } if(out < 0.1 && Math.random() < P_DIE*(1.0-wp)) { tips.splice(i, 1); trls.splice(i, 1); dirs.splice(i, 1); trns.splice(i, 1); spts.splice(i, 1); trailCounts.splice(i, 1); //original: prvar dead } else { var turn = Math.floor(Math.random()*5); dirs[i] = (dirs[i] + (trns[i] ? turn : -1*turn))%360; var xd = wp*Math.cos(((dirs[i])/180.0)*Math.PI); var yd = wp*Math.sin(((dirs[i])/180.0)*Math.PI); tips[i] = [p[0] + xd, p[1] + yd]; } } if(l > 0) //trail-coloring { for(var i = tins.length - 1; i >= 0; i--) { colorPovar(trqs[i][(tins[i]+(l-1)-jins[i])%l], trcs[i], trailStrength*(1.0-((1.0*jins[i])/(1.0*l))), 0); jins[i] = jins[i]+1; if(jins[i] == l) //this trail is completed { jins.splice(i, 1); tins.splice(i, 1); trqs.splice(i, 1); trcs.splice(i, 1); } } } if(speed > 1.0) { pausecomp(Math.floor(speed + 0.5)); speed = speed*0.999; } } }

function colorPovar(p, ref, strength, dir) { var rets = new Array(5); if(p == null) return rets; var dx1 = p[0]-0.5; var dx2 = p[0]+0.5; var dy1 = p[1]-0.5; var dy2 = p[1]+0.5; var x1 = Math.floor(dx1 - (dx1 < 0 ? 1 : 0)); var x2 = Math.floor(dx2 - (dx2 < 0 ? 1 : 0)); var y1 = Math.floor(dy1 - (dy1 < 0 ? 1 : 0)); var y2 = Math.floor(dy2 - (dy2 < 0 ? 1 : 0)); var x = [x2, x1, x1, x2, x1-1, x1, x2, x2+1]; var y = [y2, y2, y1, y1, 0, 0, 0, 0]; var mx = ((x1+x2)/2.0) + 0.5; var my = ((y1+y2)/2.0) + 0.5; //percentages in each nearby pixel, numbered in this fashion: // x1 x2 // y1 3 | 4 // --•-- // y2 2 | 1 var p1 = (dx2-mx)*(dy2-my); var p2 = (mx-dx1)*(dy2-my); var p3 = (dx2-mx)*(my-dy1); var p4 = (mx-dx1)*(my-dy1); var pj = [p1, p2, p3, p4, 0, 0, 0, 0]; if((0 <= dir && dir < 90) || (180 <= dir && dir < 270)) { y[4] = y2; y[5] = y2+1; y[6] = y1-1; y[7] = y1; pj[4] = p2*overEat; pj[5] = p2*overEat; pj[6] = p4*overEat; pj[7] = p4*overEat; } else { y[4] = y1; y[5] = y1-1; y[6] = y2+1; y[7] = y2; pj[4] = p3*overEat; pj[5] = p3*overEat; pj[6] = p1*overEat; pj[7] = p1*overEat; } if(!antialias) { var ps = new Array(); for(var j = 0; j < 4; j++) ps.push(pj[j]); ps.sort(); for(var j = 0; j < 4; j++) if(pj[j] == ps[3]) pj[j] = 1.0; else pj[j] = 0.0; } var rgb = new Array(); var wd = 0.0; var wp = 0.0; if(ref == null) { rgb.push(food.getImageData(x2, y2, 1, 1).data); rgb.push(food.getImageData(x1, y2, 1, 1).data); rgb.push(food.getImageData(x1, y1, 1, 1).data); rgb.push(food.getImageData(x2, y1, 1, 1).data); var hue = 0; var saturation = 0; var brightness = 0; for(var j = 0; j < 4; j++) { var hsb = RGBtoHSB(rgb[j]); hue += hsb[0]*pj[j]; saturation += hsb[1]*pj[j]; brightness += hsb[2]*pj[j]; }

rets[2] = hue; rets[3] = saturation; rets[4] = brightness;

var dr = 0; var dg = 0; var db = 0; for(var j = 0; j < 4; j++) { dr += pj[j]*Math.floor(c[j].getRed()); dg += pj[j]*Math.floor(c[j].getGreen()); db += pj[j]*Math.floor(c[j].getBlue()); } var r = Math.floor(dr); var g = Math.floor(dg); var b = Math.floor(db);

wd = Math.min(256.0, Math.floor(((r + g + b)/3)) + 25.6); wp = wd/256.0;

if(false) wp = 1.0 - wp; //invertFood }

var inside = new Array(8); for(var j = 0; j < 8; j++) { inside[j] = x[j] < w && y[j] < h; inside[j] = inside[j] && x[j] >= 0 && y[j] >= 0;

if(inside[j]) { if(ref == null) // if this is a strand-drawing call { var origColor = food.getImageData(x[j], y[j], 1, 1).data; //Color origColor = new Color(food.getRGB(x[j], y[j])); // if(true) //invertMyc // { var addColor = addRGB(origColor, myc, pj[j]); var addedColor = subRGB(addColor, origColor, 1.0); var imgd = food.getImageData(x[j], y[j], 1, 1); imgd.data.splice(0, 3, addColor[0], addColor[1], addColor[2]); food.putImageData(imgd); //Color addColor = addRGB(origColor, myc, pj[j]); //Color addedColor = subRGB(addColor, origColor, 1.0); //food.setRGB(x[j], y[j], addColor.getRGB()); if(j < 5) { imgd = draw.getImageData(x[j], y[j], 1, 1); var subbedColor = subRGB(imgd.data, addedColor, 1.0); imgd.data.splice(0, 3, subbedColor[0], subbedColor[1], subbedColor[2]); draw.putImageData(imgd); } //draw.setRGB(x[j], y[j], subRGB(new Color(draw.getRGB(x[j], y[j])), addedColor, 1.0).getRGB()); // } //else //{ // Color subColor = subRGB(origColor, myc, pj[j]); // Color subbedColor = subRGB(origColor, subColor, 1.0); // food.setRGB(x[j], y[j], subColor.getRGB()); // if(j < 5) // draw.setRGB(x[j], y[j], addRGB(new Color(draw.getRGB(x[j], y[j])), subbedColor, 1.0).getRGB()); //} } else //if this is a trail-drawing call { var imgd = draw.getImageData(x[j], y[j], 1, 1); var addedColor = addHSB(imgd.data, ref, strength); imgd.data.splice(0,3, addedColor[0], addedColor[1], addedColor[2]);

//draw.setRGB(x[j], y[j], addHSB( // new Color(image.getRGB(x[j],y[j])), // new Color(food.getRGB(x[j],y[j])), // new Color(draw.getRGB(x[j],y[j])), // ref, // strength).getRGB()); } } } var out = 0; for(var j = 0; j < 4; j++) if(!inside[j]) out += 0.25; rets[0] = out; rets[1] = wp; return rets; }

function addRGB(c1, c2, weight) { return [Math.min(c1[0] + Math.floor(c2[0]*weight + 0.5), 0xFF), Math.min(c1[1] + Math.floor(c2[1]*weight + 0.5), 0xFF), Math.min(c1[2] + Math.floor(c2[2]*weight + 0.5), 0xFF)];

// return new Color( // Math.min(c1.getRed()+ (int)(c2.getRed()*weight + 0.5) , 0xFF), // Math.min(c1.getGreen()+ (int)(c2.getGreen()*weight + 0.5) , 0xFF), // Math.min(c1.getBlue()+ (int)(c2.getBlue()*weight + 0.5) , 0xFF));

}

function subRGB(c1, c2, weight) { return [Math.min(c1[0] - Math.floor(c2[0]*weight + 0.5), 0xFF), Math.min(c1[1] - Math.floor(c2[1]*weight + 0.5), 0xFF), Math.min(c1[2] - Math.floor(c2[2]*weight + 0.5), 0xFF)];

// return new Color( // Math.max(c1.getRed()- (int)(c2.getRed()*weight + 0.5) , 0x00), // Math.max(c1.getGreen()- (int)(c2.getGreen()*weight + 0.5) , 0x00), // Math.max(c1.getBlue()- (int)(c2.getBlue()*weight + 0.5) , 0x00));

}

function addHSB(cd, cr, weight) { hd = RGBtoHSB(c1); hr = RGBtoHSB(c2); return HSBtoRGB(0, Math.max((hd[1] + hr[1]*weight)/(1.0+weight), hd[1]), hd[2]);

// float[] hsbDraw = Color.RGBtoHSB(draw.getRed(), draw.getGreen(), draw.getBlue(), null); // float[] hsbRef = Color.RGBtoHSB(ref.getRed(), ref.getGreen(), ref.getBlue(), null); // return Color.getHSBColor(bleedHue, // Math.max((float)((hsbDraw[1] + hsbRef[1]*weight)/(1.0+weight)), hsbDraw[1]), //adds weight of the ref to saturation // hsbDraw[2]);

}

function RGBtoHSB(rgb) { var r = rgb[0]/255; var g = rgb[1]/255; var b = rgb[2]/255; var min = Math.min(r, g, b); var max = Math.max(r, g, b); var del = max - min; var hsb = new Array(3); hsb[2] = max; if(del == 0) { hsb[0] = 0; hsb[1] = 0; } else { hsb[1] = del/max;

var delR = (((max - r)/6) + (del/2))/del var delG = (((max - g)/6) + (del/2))/del var delB = (((max - b)/6) + (del/2))/del

if(r == max) hsb[0] = delB - delG; else if(g == max) hsb[0] = (1/3) + delR - delB; else if(b == max) hsb [0] = (2/3) + delG + delR;

if(hsb[0] < 0) hsb[0] = hsb[0] + 1; if(hsb[0] > 1) hsb[0] = hsb[0] - 1; } return hsb; }

function HSBtoRGB(hsb) { var h = hsb[0]; var s = hsb[1]; var v = hsb[2];

var r = v; var g = v; var b = v;

if(s != 0) { var sh = h*6; if(sh == 6) sh = 0; var hi = Math.floor(sh); var v1 = v * (1 - s); var v2 = v * (1 - s * (sh - hi)); var v3 = v * (1 - s * (1 - (sh - hi)));

if ( hi == 0 ) {r = v; g = v3; b = v1; } else if ( hi == 1 ) {r = v2; g = v; b = v1; } else if ( hi == 2 ) {r = v1; g = v; b = v3; } else if ( hi == 3 ) {r = v1; g = v2; b = v; } else if ( hi == 4 ) {r = v3; g = v1; b = v; } else {r = v; g = v1; b = v2; } }

return [Math.floor(r*255), Math.floor(g*255), Math.floor(b*255)]; }

function pausecomp(ms) { ms += new Date().getTime(); while (new Date() < ms){} }


//function mycoDraw(canvas) //{ // var canvas = document.getElementById("mycodraw"); // var img = canvas.children[0]; // canvas.width = img.width; // canvas.height = img.height; // var context = canvas.getContext("2d"); // alert(img.src); // context.drawImage(img, 0, 0); // alert(img.src); //}