sprite color mixing; make timers and tweens workable
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ecd31eeafa
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05a596746e
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@ -53,7 +53,7 @@ var component = {
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component.sprite = Object.copy(component, {
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pos:[0,0],
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color:[1,1,1],
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color:[1,1,1,1],
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layer:0,
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enabled:true,
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path: "",
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@ -64,10 +64,12 @@ component.sprite = Object.copy(component, {
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component.sprite.impl = {
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set path(x) {
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cmd(12,this.id,prototypes.resani(this.gameobject.__proto__.toString(), x),this.rect);
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//cmd(12,this.id,prototypes.resani(this.gameobject.__proto__.toString(), x),this.rect);
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cmd(12,this.id,x,this.rect);
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},
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get path() {
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return prototypes.resavi(this.gameobject.__proto__.toString(), cmd(116,this.id));
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return cmd(116,this.id);
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//return prototypes.resavi(this.gameobject.__proto__.toString(), cmd(116,this.id));
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},
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toString() { return "sprite"; },
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hide() { this.enabled = false; },
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@ -76,7 +78,7 @@ component.sprite.impl = {
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get enabled() { return cmd(114,this.id); },
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set enabled(x) { cmd(20,this.id,x); },
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set color(x) { cmd(96,this.id,x); },
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get color() {return undefined; },
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get color() {return cmd(148,this.id);},
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get pos() { return cmd(111, this.id); },
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set pos(x) { cmd(37,this.id,x); },
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set layer(x) { cmd(60, this.id, x); },
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@ -240,15 +240,19 @@ var timer = {
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}
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var t = Object.create(this);
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assign_impl(t, this.impl);
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// assign_impl(t, this.impl);
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t.callback = fn;
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var guardfn = function() {
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if (typeof t.callback === 'function')
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if (typeof t.callback === 'function') {
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t.callback();
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if (!t.loop) t.kill();
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}
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else
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Log.warn("Timer trying to execute without a function.");
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};
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t.id = make_timer(guardfn, secs, app);
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t.loop = loop;
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return t;
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},
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@ -258,7 +262,7 @@ var timer = {
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var t = this.make(fn, secs, obj, 0, app);
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t.start();
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},
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impl: {
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// impl: {
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get remain() { return cmd(32, this.id); },
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get on() { return cmd(33, this.id); },
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get loop() { return cmd(34, this.id); },
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@ -271,17 +275,17 @@ var timer = {
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set time(x) { cmd(28, this.id, x); },
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get time() { return cmd(29, this.id); },
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get pct() { return this.remain / this.time; },
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},
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// },
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remain: 0,
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on: false,
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loop: false,
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start(){},
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stop(){},
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kill(){},
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pause(){},
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time: 0,
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pct: 0,
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// remain: 0,
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// on: false,
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// loop: false,
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// start(){},
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// stop(){},
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// kill(){},
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// pause(){},
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// time: 0,
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// pct: 0,
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};
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timer.doc = {
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@ -480,7 +484,7 @@ var Register = {
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}
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n.unregister = function(fn) {
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entries = entries.filter(function(e) { return e.fn !== f; });
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entries = entries.filter(function(e) { return e.fn !== fn; });
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}
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n.unregister_obj = function(obj) {
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@ -528,7 +532,7 @@ var Signal = {
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register_collide(3,fn,obj,go.body);
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},
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clera_obj(obj) {
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clear_obj(obj) {
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this.signals.filter(function(x) { return x[1] !== obj; });
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},
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@ -767,6 +771,8 @@ Game.doc.stop = "Stop game simulation. This does the same thing as 'pause', and
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Game.doc.play = "Resume or start game simulation.";
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Game.doc.editor_mode = "Set to true for the game to only update on input; otherwise the game updates every frame.";
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Game.doc.dt = "Current frame dt.";
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Game.doc.view_camera = "Set the camera for the current view.";
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Game.doc.camera = "Current camera.";
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Window.doc = {};
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Window.doc.width = "Width of the game window.";
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@ -416,6 +416,8 @@ var Tween = {
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defn.fn = function(dt) {
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defn.accum += dt;
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defn.pct = (defn.accum % defn.time) / defn.time;
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if (defn.loop === 'none' && defn.accum >= defn.time)
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defn.stop();
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var t = defn.whole ? defn.ease(defn.pct) : defn.pct;
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@ -429,54 +431,26 @@ var Tween = {
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obj[target] = tvals[i].lerp(tvals[i+1], nval);
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};
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defn.restart = function() { defn.accum = 0; };
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defn.stop = function() { defn.pause(); defn.restart(); };
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defn.pause = function() { Register.update.unregister(defn.fn); };
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var playing = false;
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Register.update.register(defn.fn, defn);
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return defn;
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},
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embed(obj, target, tvals, options) {
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var defn = Object.create(this.default);
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Object.assign(defn, options);
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defn.update_vals = function(vals) {
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defn.vals = vals;
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if (defn.loop === 'circle')
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defn.vals.push(defn.vals[0]);
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else if (defn.loop === 'yoyo') {
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for (var i = defn.vals.length-2; i >= 0; i--)
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defn.vals.push(defn.vals[i]);
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}
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defn.slices = defn.vals.length - 1;
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defn.slicelen = 1 / defn.slices;
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defn.play = function() {
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if (playing) return;
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Register.update.register(defn.fn, defn);
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playing = true;
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};
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defn.restart = function() {
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defn.accum = 0;
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obj[target] = tvals[0];
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};
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defn.stop = function() { if (!playing) return; defn.pause(); defn.restart(); };
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defn.pause = function() {
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if (!playing) return;
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Register.update.unregister(defn.fn);
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playing = false;
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};
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defn.update_vals(tvals);
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defn.time_s = Date.now();
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Object.defineProperty(obj, target, {
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get() {
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defn.accum = (Date.now() - defn.time_s)/1000;
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defn.pct = (defn.accum % defn.time) / defn.time;
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var t = defn.whole ? defn.ease(defn.pct) : defn.pct;
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var nval = t / defn.slicelen;
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var i = Math.trunc(nval);
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nval -= i;
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if (!defn.whole)
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nval = defn.ease(nval);
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return defn.vals[i].lerp(defn.vals[i+1],nval);
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},
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});
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return defn;
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},
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};
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Tween.make = Tween.start;
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@ -144,6 +144,7 @@ int cpshape_enabled(cpShape *c) {
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}
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struct rgba shape_color(cpShape *shape) {
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if (!cpshape_enabled(shape)) return disabled_color;
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switch (cpBodyGetType(cpShapeGetBody(shape))) {
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case CP_BODY_TYPE_DYNAMIC:
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// cpBodySleep(cpShapeGetBody(shape));
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@ -195,6 +195,16 @@ struct rgba js2color(JSValue v) {
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return color;
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}
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JSValue color2js(struct rgba color)
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{
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JSValue arr = JS_NewArray(js);
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js_setprop_num(arr,0,JS_NewFloat64(js,(double)color.r/255));
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js_setprop_num(arr,1,JS_NewFloat64(js,(double)color.g/255));
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js_setprop_num(arr,2,JS_NewFloat64(js,(double)color.b/255));
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js_setprop_num(arr,3,JS_NewFloat64(js,(double)color.a/255));
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return arr;
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}
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struct boundingbox js2bb(JSValue v)
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{
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struct boundingbox bb;
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@ -1110,6 +1120,9 @@ JSValue duk_cmd(JSContext *js, JSValueConst this, int argc, JSValueConst *argv)
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case 147:
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exit(js2int(argv[1]));
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break;
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case 148:
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ret = color2js(id2sprite(js2int(argv[1]))->color);
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break;
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}
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if (str)
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@ -11,7 +11,7 @@ struct timer {
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void *data;
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int owndata;
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int next;
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int app;
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int app; /* True if this timer is an "app" timer, and should always update; otherwise, only update with game time */
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};
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int timer_make(double interval, void (*callback)(void *param), void *param, int own, int app);
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@ -154,13 +154,12 @@ int frame_fps() {
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static void process_frame()
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{
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double elapsed = stm_sec(stm_laptime(&frame_t));
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physlag += elapsed;
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input_poll(0);
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/* Timers all update every frame - once per monitor refresh */
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timer_update(elapsed, timescale);
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if (sim_play == SIM_PLAY || sim_play == SIM_STEP && stm_sec(stm_diff(frame_t, updatelast)) > updateMS) {
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if (sim_play == SIM_PLAY || sim_play == SIM_STEP) {
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if (stm_sec(stm_diff(frame_t, updatelast)) > updateMS) {
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double dt = stm_sec(stm_diff(frame_t, updatelast));
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updatelast = frame_t;
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prof_start(&prof_update);
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@ -171,7 +170,8 @@ static void process_frame()
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sim_pause();
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}
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while ((sim_play == SIM_PLAY || sim_play == SIM_STEP) && physlag > physMS) {
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physlag += elapsed;
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while (physlag > physMS) {
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physlag -= physMS;
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prof_start(&prof_physics);
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phys_step = 1;
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@ -180,6 +180,7 @@ static void process_frame()
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phys_step = 0;
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prof(&prof_physics);
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}
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}
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prof_start(&prof_draw);
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window_render(&mainwin);
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@ -378,5 +379,5 @@ int main(int argc, char **argv) {
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double apptime()
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{
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return stm_sec(stm_diff(start_t, stm_now()));
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return stm_sec(stm_diff(stm_now(), start_t));
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}
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@ -31,7 +31,7 @@ void main()
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if (color.a <= 0.1f)
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discard;
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color = mix(color, fcolor, 0.01);
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color *=fcolor;
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}
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@end
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