var $hx_exports = typeof exports != "undefined" ? exports : typeof window != "undefined" ? window : typeof self != "undefined" ? self : this; (function ($global) { "use strict"; $hx_exports["xrfragment"] = $hx_exports["xrfragment"] || {}; var EReg = function(r,opt) { this.r = new RegExp(r,opt.split("u").join("")); }; EReg.__name__ = true; EReg.prototype = { match: function(s) { if(this.r.global) { this.r.lastIndex = 0; } this.r.m = this.r.exec(s); this.r.s = s; return this.r.m != null; } ,split: function(s) { var d = "#__delim__#"; return s.replace(this.r,d).split(d); } }; var HxOverrides = function() { }; HxOverrides.__name__ = true; HxOverrides.cca = function(s,index) { var x = s.charCodeAt(index); if(x != x) { return undefined; } return x; }; HxOverrides.substr = function(s,pos,len) { if(len == null) { len = s.length; } else if(len < 0) { if(pos == 0) { len = s.length + len; } else { return ""; } } return s.substr(pos,len); }; HxOverrides.now = function() { return Date.now(); }; Math.__name__ = true; var Reflect = function() { }; Reflect.__name__ = true; Reflect.field = function(o,field) { try { return o[field]; } catch( _g ) { return null; } }; Reflect.fields = function(o) { var a = []; if(o != null) { var hasOwnProperty = Object.prototype.hasOwnProperty; for( var f in o ) { if(f != "__id__" && f != "hx__closures__" && hasOwnProperty.call(o,f)) { a.push(f); } } } return a; }; Reflect.deleteField = function(o,field) { if(!Object.prototype.hasOwnProperty.call(o,field)) { return false; } delete(o[field]); return true; }; var Std = function() { }; Std.__name__ = true; Std.string = function(s) { return js_Boot.__string_rec(s,""); }; Std.parseInt = function(x) { if(x != null) { var _g = 0; var _g1 = x.length; while(_g < _g1) { var i = _g++; var c = x.charCodeAt(i); if(c <= 8 || c >= 14 && c != 32 && c != 45) { var nc = x.charCodeAt(i + 1); var v = parseInt(x,nc == 120 || nc == 88 ? 16 : 10); if(isNaN(v)) { return null; } else { return v; } } } } return null; }; var StringTools = function() { }; StringTools.__name__ = true; StringTools.isSpace = function(s,pos) { var c = HxOverrides.cca(s,pos); if(!(c > 8 && c < 14)) { return c == 32; } else { return true; } }; StringTools.ltrim = function(s) { var l = s.length; var r = 0; while(r < l && StringTools.isSpace(s,r)) ++r; if(r > 0) { return HxOverrides.substr(s,r,l - r); } else { return s; } }; StringTools.rtrim = function(s) { var l = s.length; var r = 0; while(r < l && StringTools.isSpace(s,l - r - 1)) ++r; if(r > 0) { return HxOverrides.substr(s,0,l - r); } else { return s; } }; StringTools.trim = function(s) { return StringTools.ltrim(StringTools.rtrim(s)); }; StringTools.replace = function(s,sub,by) { return s.split(sub).join(by); }; var haxe_iterators_ArrayIterator = function(array) { this.current = 0; this.array = array; }; haxe_iterators_ArrayIterator.__name__ = true; haxe_iterators_ArrayIterator.prototype = { hasNext: function() { return this.current < this.array.length; } ,next: function() { return this.array[this.current++]; } }; var js_Boot = function() { }; js_Boot.__name__ = true; js_Boot.__string_rec = function(o,s) { if(o == null) { return "null"; } if(s.length >= 5) { return "<...>"; } var t = typeof(o); if(t == "function" && (o.__name__ || o.__ename__)) { t = "object"; } switch(t) { case "function": return ""; case "object": if(((o) instanceof Array)) { var str = "["; s += "\t"; var _g = 0; var _g1 = o.length; while(_g < _g1) { var i = _g++; str += (i > 0 ? "," : "") + js_Boot.__string_rec(o[i],s); } str += "]"; return str; } var tostr; try { tostr = o.toString; } catch( _g ) { return "???"; } if(tostr != null && tostr != Object.toString && typeof(tostr) == "function") { var s2 = o.toString(); if(s2 != "[object Object]") { return s2; } } var str = "{\n"; s += "\t"; var hasp = o.hasOwnProperty != null; var k = null; for( k in o ) { if(hasp && !o.hasOwnProperty(k)) { continue; } if(k == "prototype" || k == "__class__" || k == "__super__" || k == "__interfaces__" || k == "__properties__") { continue; } if(str.length != 2) { str += ", \n"; } str += s + k + " : " + js_Boot.__string_rec(o[k],s); } s = s.substring(1); str += "\n" + s + "}"; return str; case "string": return o; default: return String(o); } }; var xrfragment_Parser = $hx_exports["xrfragment"]["Parser"] = function() { }; xrfragment_Parser.__name__ = true; xrfragment_Parser.parse = function(key,value,store) { var Frag_h = Object.create(null); Frag_h["#"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_PREDEFINED_VIEW | xrfragment_XRF.PV_EXECUTE; Frag_h["prio"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_INT; Frag_h["src"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_URL; Frag_h["href"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_URL | xrfragment_XRF.T_PREDEFINED_VIEW; Frag_h["class"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_STRING; Frag_h["pos"] = xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.ROUNDROBIN | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.T_STRING_OBJ | xrfragment_XRF.METADATA | xrfragment_XRF.NAVIGATOR; Frag_h["q"] = xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_STRING | xrfragment_XRF.METADATA; Frag_h["scale"] = xrfragment_XRF.QUERY_OPERATOR | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.ROUNDROBIN | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.METADATA; Frag_h["rot"] = xrfragment_XRF.QUERY_OPERATOR | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.ROUNDROBIN | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.METADATA | xrfragment_XRF.NAVIGATOR; Frag_h["mov"] = xrfragment_XRF.QUERY_OPERATOR | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.ROUNDROBIN | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.METADATA; Frag_h["show"] = xrfragment_XRF.QUERY_OPERATOR | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.ROUNDROBIN | xrfragment_XRF.T_INT | xrfragment_XRF.METADATA; Frag_h["env"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_STRING | xrfragment_XRF.METADATA; Frag_h["t"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.ROUNDROBIN | xrfragment_XRF.T_VECTOR2 | xrfragment_XRF.NAVIGATOR | xrfragment_XRF.METADATA; Frag_h["gravity"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.METADATA; Frag_h["physics"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.METADATA; Frag_h["fov"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_INT | xrfragment_XRF.NAVIGATOR | xrfragment_XRF.METADATA; Frag_h["clip"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_VECTOR2 | xrfragment_XRF.NAVIGATOR | xrfragment_XRF.METADATA; Frag_h["fog"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_VECTOR2 | xrfragment_XRF.NAVIGATOR | xrfragment_XRF.METADATA; Frag_h["bg"] = xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_VECTOR3 | xrfragment_XRF.NAVIGATOR | xrfragment_XRF.METADATA; Frag_h["namespace"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_STRING; Frag_h["SPDX"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_STRING; Frag_h["unit"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_STRING; Frag_h["description"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_STRING; Frag_h["session"] = xrfragment_XRF.ASSET | xrfragment_XRF.T_URL | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.NAVIGATOR | xrfragment_XRF.METADATA | xrfragment_XRF.PROMPT; var isPVDynamic = value.length == 0 && key.length > 0 && !Object.prototype.hasOwnProperty.call(Frag_h,key); var isPVDefault = value.length == 0 && key.length > 0 && key == "#"; if(isPVDynamic) { var v = new xrfragment_XRF(key,xrfragment_XRF.PV_EXECUTE | xrfragment_XRF.NAVIGATOR); v.validate(key); store[key] = v; return true; } if(key.split(".").length > 1 && value.split(".").length > 1) { store[key] = new xrfragment_XRF(key,xrfragment_XRF.ASSET | xrfragment_XRF.PV_OVERRIDE | xrfragment_XRF.T_STRING | xrfragment_XRF.PROP_BIND); return true; } var v = new xrfragment_XRF(key,Frag_h[key]); if(Object.prototype.hasOwnProperty.call(Frag_h,key)) { if(!v.validate(value)) { console.log("src/xrfragment/Parser.hx:83:","⚠ fragment '" + key + "' has incompatible value (" + value + ")"); return false; } store[key] = v; if(xrfragment_Parser.debug) { console.log("src/xrfragment/Parser.hx:87:","✔ " + key + ": " + v.string); } } else { if(typeof(value) == "string") { v.guessType(v,value); } store["_" + key] = v; } return true; }; var xrfragment_Query = $hx_exports["xrfragment"]["Query"] = function(str) { this.isNumber = new EReg("^[0-9\\.]+$",""); this.isClass = new EReg("^[-]?class$",""); this.isRoot = new EReg("^[-]?/",""); this.isExclude = new EReg("^-",""); this.isProp = new EReg("^.*:[><=!]?",""); this.q = { }; this.str = ""; if(str != null) { this.parse(str); } }; xrfragment_Query.__name__ = true; xrfragment_Query.prototype = { toObject: function() { return this.q; } ,expandAliases: function(token) { var classAlias = new EReg("^(-)?\\.",""); if(classAlias.match(token)) { return StringTools.replace(token,".","class:"); } else { return token; } } ,get: function() { return this.q; } ,parse: function(str) { var _gthis = this; var token = str.split(" "); var q = { }; var process = function(str,prefix) { if(prefix == null) { prefix = ""; } str = StringTools.trim(str); var k = str.split(":")[0]; var v = str.split(":")[1]; var filter = { }; if(q[prefix + k]) { filter = q[prefix + k]; } filter["rules"] = filter["rules"] != null ? filter["rules"] : []; if(_gthis.isProp.match(str)) { var oper = ""; if(str.indexOf("*") != -1) { oper = "*"; } if(str.indexOf(">") != -1) { oper = ">"; } if(str.indexOf("<") != -1) { oper = "<"; } if(str.indexOf(">=") != -1) { oper = ">="; } if(str.indexOf("<=") != -1) { oper = "<="; } if(_gthis.isExclude.match(k)) { oper = "!="; k = HxOverrides.substr(k,1,null); } else { v = HxOverrides.substr(v,oper.length,null); } if(oper.length == 0) { oper = "="; } if(_gthis.isClass.match(k)) { filter[prefix + k] = oper != "!="; q[v] = filter; } else { var rule = { }; if(_gthis.isNumber.match(v)) { rule[oper] = parseFloat(v); } else { rule[oper] = v; } filter["rules"].push(rule); q[k] = filter; } return; } else { filter["id"] = _gthis.isExclude.match(str) ? false : true; filter["root"] = _gthis.isRoot.match(str); if(_gthis.isExclude.match(str)) { str = HxOverrides.substr(str,1,null); } if(_gthis.isRoot.match(str)) { str = HxOverrides.substr(str,1,null); } q[str] = filter; } }; var _g = 0; var _g1 = token.length; while(_g < _g1) { var i = _g++; process(this.expandAliases(token[i])); } return this.q = q; } ,test: function(obj) { var qualify = false; var _g = 0; var _g1 = Reflect.fields(obj); while(_g < _g1.length) { var k = _g1[_g]; ++_g; var v = Std.string(Reflect.field(obj,k)); if(this.testProperty(k,v)) { qualify = true; } } var _g = 0; var _g1 = Reflect.fields(obj); while(_g < _g1.length) { var k = _g1[_g]; ++_g; var v = Std.string(Reflect.field(obj,k)); if(this.testProperty(k,v,true)) { qualify = false; } } return qualify; } ,testProperty: function(property,value,exclude) { var conds = 0; var fails = 0; var qualify = 0; var testprop = function(expr) { conds += 1; fails += expr ? 0 : 1; return expr; }; if(this.q[value] != null) { var v = this.q[value]; if(v[property] != null) { return v[property]; } } var _g = 0; var _g1 = Reflect.fields(this.q); while(_g < _g1.length) { var k = _g1[_g]; ++_g; var filter = Reflect.field(this.q,k); if(filter.rules == null) { continue; } var rules = filter.rules; var _g2 = 0; while(_g2 < rules.length) { var rule = rules[_g2]; ++_g2; if(exclude) { if(Reflect.field(rule,"!=") != null && testprop((value == null ? "null" : "" + value) == Std.string(Reflect.field(rule,"!="))) && exclude) { ++qualify; } } else { if(Reflect.field(rule,"*") != null && testprop(parseFloat(value) != null)) { ++qualify; } if(Reflect.field(rule,">") != null && testprop(parseFloat(value) > parseFloat(Reflect.field(rule,">")))) { ++qualify; } if(Reflect.field(rule,"<") != null && testprop(parseFloat(value) < parseFloat(Reflect.field(rule,"<")))) { ++qualify; } if(Reflect.field(rule,">=") != null && testprop(parseFloat(value) >= parseFloat(Reflect.field(rule,">=")))) { ++qualify; } if(Reflect.field(rule,"<=") != null && testprop(parseFloat(value) <= parseFloat(Reflect.field(rule,"<=")))) { ++qualify; } if(Reflect.field(rule,"=") != null && (testprop(value == Reflect.field(rule,"=")) || testprop(parseFloat(value) == parseFloat(Reflect.field(rule,"="))))) { ++qualify; } } } } return qualify > 0; } }; var xrfragment_URI = $hx_exports["xrfragment"]["URI"] = function() { }; xrfragment_URI.__name__ = true; xrfragment_URI.parse = function(url,filter) { var store = { }; if(url == null || url.indexOf("#") == -1) { return store; } var fragment = url.split("#"); var splitArray = fragment[1].split("&"); var _g = 0; var _g1 = splitArray.length; while(_g < _g1) { var i = _g++; var splitByEqual = splitArray[i].split("="); var regexPlus = new EReg("\\+","g"); var key = splitByEqual[0]; var value = ""; if(splitByEqual.length > 1) { var s = regexPlus.split(splitByEqual[1]).join(" "); value = decodeURIComponent(s.split("+").join(" ")); } var ok = xrfragment_Parser.parse(key,value,store); } if(filter != null && filter != 0) { var _g = 0; var _g1 = Reflect.fields(store); while(_g < _g1.length) { var key = _g1[_g]; ++_g; var xrf = store[key]; if(!xrf.is(filter)) { Reflect.deleteField(store,key); } } } return store; }; var xrfragment_XRF = $hx_exports["xrfragment"]["XRF"] = function(_fragment,_flags) { this.fragment = _fragment; this.flags = _flags; }; xrfragment_XRF.__name__ = true; xrfragment_XRF.set = function(flag,flags) { return flags | flag; }; xrfragment_XRF.unset = function(flag,flags) { return flags & ~flag; }; xrfragment_XRF.prototype = { is: function(flag) { return (this.flags & flag) != 0; } ,validate: function(value) { this.guessType(this,value); if(value.split("|").length > 1) { this.args = []; var args = value.split("|"); var _g = 0; var _g1 = args.length; while(_g < _g1) { var i = _g++; var x = new xrfragment_XRF(this.fragment,this.flags); this.guessType(x,args[i]); this.args.push(x); } } if(this.fragment == "q") { this.query = new xrfragment_Query(value).get(); } var ok = true; if(!((this.args) instanceof Array)) { if(this.is(xrfragment_XRF.T_VECTOR3) && !(typeof(this.x) == "number" && typeof(this.y) == "number" && typeof(this.z) == "number")) { ok = false; } if(this.is(xrfragment_XRF.T_VECTOR2) && !(typeof(this.x) == "number" && typeof(this.y) == "number")) { ok = false; } var tmp; if(this.is(xrfragment_XRF.T_INT)) { var v = this.int; tmp = !(typeof(v) == "number" && ((v | 0) === v)); } else { tmp = false; } if(tmp) { ok = false; } } return ok; } ,guessType: function(v,str) { v.string = str; if(str.split(",").length > 1) { var xyz = str.split(","); if(xyz.length > 0) { v.x = parseFloat(xyz[0]); } if(xyz.length > 1) { v.y = parseFloat(xyz[1]); } if(xyz.length > 2) { v.z = parseFloat(xyz[2]); } } if(xrfragment_XRF.isColor.match(str)) { v.color = str; } if(xrfragment_XRF.isFloat.match(str)) { v.float = parseFloat(str); } if(xrfragment_XRF.isInt.match(str)) { v.int = Std.parseInt(str); } } }; if(typeof(performance) != "undefined" ? typeof(performance.now) == "function" : false) { HxOverrides.now = performance.now.bind(performance); } String.__name__ = true; Array.__name__ = true; js_Boot.__toStr = ({ }).toString; xrfragment_Parser.error = ""; xrfragment_Parser.debug = false; xrfragment_XRF.ASSET = 1; xrfragment_XRF.PROP_BIND = 2; xrfragment_XRF.QUERY_OPERATOR = 4; xrfragment_XRF.PROMPT = 8; xrfragment_XRF.ROUNDROBIN = 16; xrfragment_XRF.NAVIGATOR = 32; xrfragment_XRF.METADATA = 64; xrfragment_XRF.PV_OVERRIDE = 128; xrfragment_XRF.PV_EXECUTE = 256; xrfragment_XRF.T_COLOR = 8192; xrfragment_XRF.T_INT = 16384; xrfragment_XRF.T_FLOAT = 32768; xrfragment_XRF.T_VECTOR2 = 65536; xrfragment_XRF.T_VECTOR3 = 131072; xrfragment_XRF.T_URL = 262144; xrfragment_XRF.T_PREDEFINED_VIEW = 524288; xrfragment_XRF.T_STRING = 1048576; xrfragment_XRF.T_STRING_OBJ = 2097152; xrfragment_XRF.T_STRING_OBJ_PROP = 4194304; xrfragment_XRF.isColor = new EReg("^#([A-Fa-f0-9]{6}|[A-Fa-f0-9]{3})$",""); xrfragment_XRF.isInt = new EReg("^[0-9]+$",""); xrfragment_XRF.isFloat = new EReg("^[0-9]+\\.[0-9]+$",""); xrfragment_XRF.isVector = new EReg("([,]+|\\w)",""); xrfragment_XRF.isUrl = new EReg("(://)?\\..*",""); xrfragment_XRF.isUrlOrPretypedView = new EReg("(^#|://)?\\..*",""); xrfragment_XRF.isString = new EReg(".*",""); })({}); var xrfragment = $hx_exports["xrfragment"]; // SPDX-License-Identifier: MPL-2.0 // Copyright (c) 2023 Leon van Kammen/NLNET var xrf = {} xrf.init = function(opts){ opts = opts || {} xrf.Parser.debug = xrf.debug for ( let i in opts ) xrf[i] = opts[i] xrf.emit('init',opts) return xrf.query } xrf.query = function(){ // framework implementations can override this function, see src/3rd/js/three/index.sj alert("queries are not implemented (yet) for this particular framework") } xrf.roundrobin = (frag, store) => { if( !frag.args || frag.args.length == 0 ) return 0 if( !store.rr ) store.rr = {} let label = frag.fragment if( store.rr[label] ) return store.rr[label].next() store.rr[label] = frag.args store.rr[label].next = () => { store.rr[label].index = (store.rr[label].index + 1) % store.rr[label].length return store.rr[label].index } return store.rr[label].index = 0 } // map library functions to xrf for ( let i in xrfragment ) xrf[i] = xrfragment[i] /* * (promise-able) EVENTS * * example: * * xrf.addEventListener('foo',(e) => { * // let promise = e.promise() * console.log("navigating to: "+e.detail.destination.url) * // promise.resolve() * // promise.reject("not going to happen") * }) * * xrf.emit('foo',123) * xrf.emit('foo',123).then(...).catch(...).finally(...) */ xrf.addEventListener = function(eventName, callback) { if( !this._listeners ) this._listeners = [] if (!this._listeners[eventName]) { // create a new array for this event name if it doesn't exist yet this._listeners[eventName] = []; } // add the callback to the listeners array for this event name this._listeners[eventName].push(callback); }; xrf.emit = function(eventName, data){ if( typeof data != 'object' ) throw 'emit() requires passing objects' return xrf.emit.promise(eventName,data) } xrf.emit.normal = function(eventName, data) { if( !xrf._listeners ) xrf._listeners = [] var callbacks = xrf._listeners[eventName] if (callbacks) { for (var i = 0; i < callbacks.length; i++) { callbacks[i](data); } } }; xrf.emit.promise = function(e, opts){ opts.XRF = xrf // always pass root XRF obj return new Promise( (resolve, reject) => { opts.promise = () => { opts.promise.halted = true return { resolve, reject } } xrf.emit.normal(e, opts) if( !opts.promise.halted ) resolve() }) } /*! rasterizeHTML.js - v1.3.1 - 2023-07-06 * http://www.github.com/cburgmer/rasterizeHTML.js * Copyright (c) 2023 Christoph Burgmer; Licensed MIT */ !function(o,i){void 0===o&&void 0!==window&&(o=window),"function"==typeof define&&define.amd?define(["url","xmlserializer","sane-domparser-error","inlineresources"],function(e,t,n,r){return o.rasterizeHTML=i(e,t,n,r)}):"object"==typeof module&&module.exports?module.exports=i(require("url"),require("xmlserializer"),require("sane-domparser-error"),require("inlineresources")):o.rasterizeHTML=i(o.url,o.xmlserializer,o.sanedomparsererror,o.inlineresources)}(this,function(e,t,n,r){var o=function(n){"use strict";var o={},t=[];o.joinUrl=function(e,t){return e?n.resolve(e,t):t},o.getConstantUniqueIdFor=function(e){return t.indexOf(e)<0&&t.push(e),t.indexOf(e)},o.clone=function(e){var t,n={};for(t in 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"+e.map(function(e){return e+'="'+t[e]+'"'}).join(" "):""}function o(e,t,n){var r,o,i=u.serializeToString(e);return c.validateXHTML(i),(e=(r=t,o=Math.round(r.viewportWidth),e=Math.round(r.viewportHeight),{x:-r.left,y:-r.top,width:o,height:e})).style=(e.style||"")+"float: left;",e.externalResourcesRequired=!0,'"+i+""}var i={};return i.getSvgForDocument=function(e,t,n){return r.rewriteTagNameSelectorsToLowerCase(e),o(e,t,n)},i.drawDocumentAsSvg=function(t,n){return["hover","active","focus","target"].forEach(function(e){n[e]&&r.fakeUserAction(t,n[e],e)}),c.calculateDocumentContentSize(t,n).then(function(e){return i.getSvgForDocument(t,e,n.zoom)})},i}(i,e,t),n,r))});xrf.frag = {} xrf.model = {} xrf.init = ((init) => function(opts){ init(opts) if( opts.loaders ) Object.values(opts.loaders).map( xrf.patchLoader ) xrf.patchRenderer(opts.renderer) xrf.navigator.init() // return xrfragment lib as 'xrf' query functor (like jquery) for ( let i in xrf ) xrf.query[i] = xrf[i] return xrf.query })(xrf.init) xrf.patchRenderer = function(renderer){ renderer.xr.addEventListener( 'sessionstart', () => xrf.baseReferenceSpace = renderer.xr.getReferenceSpace() ); renderer.xr.enabled = true; renderer.render = ((render) => function(scene,camera){ if( xrf.model && xrf.model.render ) xrf.model.render(scene,camera) render(scene,camera) })(renderer.render.bind(renderer)) } xrf.patchLoader = function(loader){ if( loader.prototype.load.xrf_patched ) return // prevent patching aliased loaders twice loader.prototype.load = ((load) => function(url, onLoad, onProgress, onError){ load.call( this, url, (model) => { onLoad(model); xrf.parseModel(model,url) }, onProgress, onError) })(loader.prototype.load) loader.prototype.load.xrf_patched = true } xrf.getFile = (url) => url.split("/").pop().replace(/#.*/,'') xrf.parseModel = function(model,url){ let file = xrf.getFile(url) model.file = file // eval embedded XR fragments model.scene.traverse( (mesh) => xrf.eval.mesh(mesh,model) ) // add animations model.clock = new xrf.THREE.Clock(); model.mixer = new xrf.THREE.AnimationMixer(model.scene) model.animations.map( (anim) => model.mixer.clipAction( anim ).play() ) model.render = function(){ model.mixer.update( model.clock.getDelta() ) xrf.navigator.material.selection.color.r = (1.0 + Math.sin( model.clock.getElapsedTime() * 10 ))/2 } } xrf.getLastModel = () => xrf.model.last xrf.eval = function( url, model, flags ){ // evaluate fragments in url model = model || xrf.model let { THREE, camera } = xrf let frag = xrf.URI.parse( url, flags || xrf.XRF.NAVIGATOR ) let opts = {frag, mesh:xrf.camera, model, camera: xrf.camera, scene: xrf.scene, renderer: xrf.renderer, THREE: xrf.THREE } xrf.emit('eval',opts) .then( () => { for ( let k in frag ){ xrf.eval.fragment(k,opts) } }) } xrf.eval.mesh = (mesh,model) => { // evaluate embedded fragments (metadata) inside mesh of model if( mesh.userData ){ let frag = {} for( let k in mesh.userData ) xrf.Parser.parse( k, mesh.userData[k], frag ) for( let k in frag ){ let opts = {frag, mesh, model, camera: xrf.camera, scene: xrf.scene, renderer: xrf.renderer, THREE: xrf.THREE } mesh.userData.XRF = frag // allow fragment impl to access XRF obj already xrf.emit('eval',opts) .then( () => xrf.eval.fragment(k,opts) ) } } } xrf.eval.fragment = (k, opts ) => { // evaluate one fragment let frag = opts.frag[k]; // call native function (xrf/env.js e.g.), or pass it to user decorator let func = xrf.frag[k] || function(){} if( xrf[k] ) xrf[k]( func, frag, opts) else func( frag, opts) } xrf.reset = () => { const disposeObject = (obj) => { if (obj.children.length > 0) obj.children.forEach((child) => disposeObject(child)); if (obj.geometry) obj.geometry.dispose(); if (obj.material) { if (obj.material.map) obj.material.map.dispose(); obj.material.dispose(); } obj.clear() obj.removeFromParent() return true }; let nodes = [] xrf.scene.traverse( (child) => child.isXRF ? nodes.push(child) : false ) nodes.map( disposeObject ) // leave non-XRF objects intact xrf.interactive = xrf.InteractiveGroup( xrf.THREE, xrf.renderer, xrf.camera) xrf.add( xrf.interactive) } xrf.parseUrl = (url) => { const urlObj = new URL( url.match(/:\/\//) ? url : String(`https://fake.com/${url}`).replace(/\/\//,'/') ) let dir = url.substring(0, url.lastIndexOf('/') + 1) const file = urlObj.pathname.substring(urlObj.pathname.lastIndexOf('/') + 1); const hash = url.match(/#/) ? url.replace(/.*#/,'') : '' const ext = file.split('.').pop() return {urlObj,dir,file,hash,ext} } xrf.add = (object) => { object.isXRF = true // mark for easy deletion when replacing scene xrf.scene.add(object) } // wrapper to survive in/outside modules xrf.InteractiveGroup = function(THREE,renderer,camera){ let { Group, Matrix4, Raycaster, Vector2 } = THREE const _pointer = new Vector2(); const _event = { type: '', data: _pointer }; class InteractiveGroup extends Group { constructor( renderer, camera ) { super(); if( !renderer || !camera ) return // extract camera when camera-rig is passed camera.traverse( (n) => String(n.type).match(/Camera/) ? camera = n : null ) const scope = this; const raycaster = new Raycaster(); const tempMatrix = new Matrix4(); function nocollide(){ if( nocollide.tid ) return // ratelimit _event.type = "nocollide" scope.children.map( (c) => c.dispatchEvent(_event) ) nocollide.tid = setTimeout( () => nocollide.tid = null, 100 ) } // Pointer Events const element = renderer.domElement; function onPointerEvent( event ) { //event.stopPropagation(); const rect = renderer.domElement.getBoundingClientRect(); _pointer.x = ( event.clientX - rect.left ) / rect.width * 2 - 1; _pointer.y = - ( event.clientY - rect.top ) / rect.height * 2 + 1; raycaster.setFromCamera( _pointer, camera ); const intersects = raycaster.intersectObjects( scope.children, false ); if ( intersects.length > 0 ) { const intersection = intersects[ 0 ]; const object = intersection.object; const uv = intersection.uv; _event.type = event.type; _event.data.set( uv.x, 1 - uv.y ); object.dispatchEvent( _event ); }else nocollide() } element.addEventListener( 'pointerdown', onPointerEvent ); element.addEventListener( 'pointerup', onPointerEvent ); element.addEventListener( 'pointermove', onPointerEvent ); element.addEventListener( 'mousedown', onPointerEvent ); element.addEventListener( 'mouseup', onPointerEvent ); element.addEventListener( 'mousemove', onPointerEvent ); element.addEventListener( 'click', onPointerEvent ); // WebXR Controller Events // TODO: Dispatch pointerevents too const events = { 'move': 'mousemove', 'select': 'click', 'selectstart': 'mousedown', 'selectend': 'mouseup' }; function onXRControllerEvent( event ) { const controller = event.target; tempMatrix.identity().extractRotation( controller.matrixWorld ); raycaster.ray.origin.setFromMatrixPosition( controller.matrixWorld ); raycaster.ray.direction.set( 0, 0, - 1 ).applyMatrix4( tempMatrix ); const intersections = raycaster.intersectObjects( scope.children, false ); if ( intersections.length > 0 ) { const intersection = intersections[ 0 ]; const object = intersection.object; const uv = intersection.uv; _event.type = events[ event.type ]; _event.data.set( uv.x, 1 - uv.y ); if( _event.type != "mousemove" ){ console.log(event.type+" => "+_event.type) } object.dispatchEvent( _event ); }else nocollide() } const controller1 = renderer.xr.getController( 0 ); controller1.addEventListener( 'move', onXRControllerEvent ); controller1.addEventListener( 'select', onXRControllerEvent ); controller1.addEventListener( 'selectstart', onXRControllerEvent ); controller1.addEventListener( 'selectend', onXRControllerEvent ); const controller2 = renderer.xr.getController( 1 ); controller2.addEventListener( 'move', onXRControllerEvent ); controller2.addEventListener( 'select', onXRControllerEvent ); controller2.addEventListener( 'selectstart', onXRControllerEvent ); controller2.addEventListener( 'selectend', onXRControllerEvent ); } } return new InteractiveGroup(renderer,camera) } xrf.navigator = {} xrf.navigator.to = (url,flags,loader,data) => { if( !url ) throw 'xrf.navigator.to(..) no url given' return new Promise( (resolve,reject) => { let {urlObj,dir,file,hash,ext} = xrf.parseUrl(url) if( !file || xrf.model.file == file ){ // we're already loaded xrf.eval( url, xrf.model, flags ) // and eval local URI XR fragments return resolve(xrf.model) } if( xrf.model && xrf.model.scene ) xrf.model.scene.visible = false if( !loader ){ const Loader = xrf.loaders[ext] if( !Loader ) throw 'xrfragment: no loader passed to xrfragment for extension .'+ext loader = loader || new Loader().setPath( dir ) } // force relative path if( dir ) dir = dir[0] == '.' ? dir : `.${dir}` url = url.replace(dir,"") loader = loader || new Loader().setPath( dir ) const onLoad = (model) => { xrf.reset() // clear xrf objects from scene model.file = file // only change url when loading *another* file if( xrf.model ) xrf.navigator.pushState( `${dir}${file}`, hash ) xrf.model = model // spec: 1. execute the default predefined view '#' (if exist) (https://xrfragment.org/#predefined_view) xrf.frag.defaultPredefinedView({model,scene:model.scene}) // spec: 2. execute predefined view(s) from URL (https://xrfragment.org/#predefined_view) xrf.eval( url, model ) // and eval URI XR fragments xrf.add( model.scene ) if( !hash.match(/pos=/) ) xrf.eval( '#pos=0,0,0' ) // set default position if not specified resolve(model) } if( data ) loader.parse(data, "", onLoad ) else loader.load(url, onLoad ) }) } xrf.navigator.init = () => { if( xrf.navigator.init.inited ) return window.addEventListener('popstate', function (event){ xrf.navigator.to( document.location.search.substr(1) + document.location.hash ) }) xrf.navigator.material = { selection: new xrf.THREE.LineBasicMaterial({color:0xFF00FF,linewidth:2}) } xrf.navigator.init.inited = true } xrf.navigator.updateHash = (hash) => { if( hash == document.location.hash || hash.match(/\|/) ) return // skip unnecesary pushState triggers console.log(`URL: ${document.location.search.substr(1)}#${hash}`) document.location.hash = hash xrf.emit('updateHash', {hash} ) } xrf.navigator.pushState = (file,hash) => { if( file == document.location.search.substr(1) ) return // page is in its default state console.log("pushstate") window.history.pushState({},`${file}#${hash}`, document.location.pathname + `?${file}#${hash}` ) } xrf.frag.bg = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts console.log("└ bg "+v.x+","+v.y+","+v.z); if( scene.background ) delete scene.background scene.background = new THREE.Color( v.x, v.y, v.z ) } xrf.frag.clip = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts if( v.x == 0 ) v.x = 1; // THREE.js .near restriction console.log("└ clip "+v.x+","+v.y); camera.near = v.x camera.far = v.y camera.updateProjectionMatrix(); } xrf.frag.env = function(v, opts){ let { mesh, model, camera, scene, renderer, THREE} = opts let env = mesh.getObjectByName(v.string) if( !env ) return console.warn("xrf.env "+v.string+" not found") env.material.map.mapping = THREE.EquirectangularReflectionMapping; scene.environment = env.material.map //scene.texture = env.material.map renderer.toneMapping = THREE.ACESFilmicToneMapping; renderer.toneMappingExposure = 2; console.log(` └ applied image '${v.string}' as environment map`) } xrf.frag.fog = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts console.log("└ fog "+v.x+","+v.y); if( v.x == 0 && v.y == 0 ){ if( scene.fog ) delete scene.fog scene.fog = null; }else scene.fog = new THREE.Fog( scene.background, v.x, v.y ); } xrf.frag.fov = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts console.log("└ fov "+v.int); camera.fov = v.int; camera.updateProjectionMatrix(); } /** * * navigation, portals & mutations * * | fragment | type | scope | example value | * |`href`| string (uri or predefined view) | 🔒 |`#pos=1,1,0`
`#pos=1,1,0&rot=90,0,0`
`#pos=pyramid`
`#pos=lastvisit|pyramid`
`://somefile.gltf#pos=1,1,0`
| * * [[» example implementation|https://github.com/coderofsalvation/xrfragment/blob/main/src/3rd/three/xrf/href.js]]
* [[» example 3D asset|https://github.com/coderofsalvation/xrfragment/blob/main/example/assets/href.gltf#L192]]
* [[» discussion|https://github.com/coderofsalvation/xrfragment/issues/1]]
* * [img[xrfragment.jpg]] * * * !!!spec 1.0 * * 1. an ''external''- or ''file URI'' fully replaces the current scene and assumes `pos=0,0,0&rot=0,0,0` by default (unless specified) * * 2. navigation should not happen when queries (`q=`) are present in local url: queries will apply (`pos=`, `rot=` e.g.) to the targeted object(s) instead. * * 3. navigation should not happen ''immediately'' when user is more than 2 meter away from the portal/object containing the href (to prevent accidental navigation e.g.) * * 4. URL navigation should always be reflected in the client (in case of javascript: see [[here|https://github.com/coderofsalvation/xrfragment/blob/dev/src/3rd/three/navigator.js]] for an example navigator). * * 5. In XR mode, the navigator back/forward-buttons should be always visible (using a wearable e.g., see [[here|https://github.com/coderofsalvation/xrfragment/blob/dev/example/aframe/sandbox/index.html#L26-L29]] for an example wearable) * * [img[navigation.png]] * */ xrf.frag.href = function(v, opts){ opts.embedded = v // indicate embedded XR fragment let { mesh, model, camera, scene, renderer, THREE} = opts if( mesh.userData.XRF.href.exec ) return // mesh already initialized const world = { pos: new THREE.Vector3(), scale: new THREE.Vector3(), quat: new THREE.Quaternion() } // detect equirectangular image let texture = mesh.material && mesh.material.map ? mesh.material.map : null if( texture && texture.source.data.height == texture.source.data.width/2 ){ texture.mapping = THREE.ClampToEdgeWrapping texture.needsUpdate = true // poor man's equi-portal mesh.material = new THREE.ShaderMaterial( { side: THREE.DoubleSide, uniforms: { pano: { value: texture }, selected: { value: false }, }, vertexShader: ` vec3 portalPosition; varying vec3 vWorldPosition; varying float vDistanceToCenter; varying float vDistance; void main() { vDistanceToCenter = clamp(length(position - vec3(0.0, 0.0, 0.0)), 0.0, 1.0); portalPosition = (modelMatrix * vec4(0.0, 0.0, 0.0, 1.0)).xyz; vDistance = length(portalPosition - cameraPosition); vWorldPosition = (modelMatrix * vec4(position, 1.0)).xyz; gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0); } `, fragmentShader: ` #define RECIPROCAL_PI2 0.15915494 uniform sampler2D pano; uniform bool selected; varying float vDistanceToCenter; varying float vDistance; varying vec3 vWorldPosition; void main() { vec3 direction = normalize(vWorldPosition - cameraPosition); vec2 sampleUV; sampleUV.y = -clamp(direction.y * 0.5 + 0.5, 0.0, 1.0); sampleUV.x = atan(direction.z, -direction.x) * -RECIPROCAL_PI2; sampleUV.x += 0.33; // adjust focus to AFRAME's a-scene.components.screenshot.capture() vec4 color = texture2D(pano, sampleUV); // Convert color to grayscale (lazy lite approach to not having to match tonemapping/shaderstacking of THREE.js) float luminance = 0.2126 * color.r + 0.7152 * color.g + 0.0722 * color.b; vec4 grayscale_color = selected ? color : vec4(vec3(luminance) + vec3(0.33), color.a); gl_FragColor = grayscale_color; } `, }); mesh.material.needsUpdate = true }else if( mesh.material){ mesh.material = mesh.material.clone() } let click = mesh.userData.XRF.href.exec = (e) => { let isLocal = v.string[0] == '#' let lastPos = `pos=${camera.position.x.toFixed(1)},${camera.position.y.toFixed(1)},${camera.position.z.toFixed(1)}` xrf .emit('href',{click:true,mesh,xrf:v}) // let all listeners agree .then( () => { const flags = v.string[0] == '#' ? xrf.XRF.PV_OVERRIDE : undefined //const flags = v.string[0] == '#' && v.string.match(/(\||#q)/) ? xrf.XRF.PV_OVERRIDE : undefined if( !v.string.match(/pos=/) ) v.string += `${v.string[0] == '#' ? '&' : '#'}${lastPos}` // always commit last position console.log(v.string) xrf.navigator.to(v.string,flags) // let's surf to HREF! }) } let selected = (state) => () => { if( mesh.selected == state ) return // nothing changed if( mesh.material ){ if( mesh.material.uniforms ) mesh.material.uniforms.selected.value = state else mesh.material.color.r = mesh.material.color.g = mesh.material.color.b = state ? 2.0 : 1.0 } // update mouse cursor if( !renderer.domElement.lastCursor ) renderer.domElement.lastCursor = renderer.domElement.style.cursor renderer.domElement.style.cursor = state ? 'pointer' : renderer.domElement.lastCursor xrf .emit('href',{selected:state,mesh,xrf:v}) // let all listeners agree .then( () => mesh.selected = state ) } mesh.addEventListener('click', click ) mesh.addEventListener('mousemove', selected(true) ) mesh.addEventListener('nocollide', selected(false) ) // lazy add mesh (because we're inside a recursive traverse) setTimeout( (mesh) => { mesh.getWorldPosition(world.pos) mesh.getWorldScale(world.scale) mesh.getWorldQuaternion(world.quat); mesh.position.copy(world.pos) mesh.scale.copy(world.scale) mesh.setRotationFromQuaternion(world.quat); xrf.interactive.add(mesh) }, 10, mesh ) } /** * > above solutions were abducted from [[this|https://i.imgur.com/E3En0gJ.png]] and [[this|https://i.imgur.com/lpnTz3A.png]] survey result * * !!!Demo * * <$videojs controls="controls" aspectratio="16:9" preload="auto" poster="" fluid="fluid" class="vjs-big-play-centered"> * * * * > capture of aframe/sandbox */ xrf.frag.mov = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts if( frag.q ){ // only operate on queried object(s) frag.q.getObjects().map( (o) => { o.position.add( new THREE.Vector3( v.x, v.y, v.z ) ) }) } } xrf.frag.pos = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts if( frag.q ){ // only operate on queried object(s) // apply roundrobin (if any) if( v.args ) v = v.args[ xrf.roundrobin(v,model) ] frag.q.getObjects().map( (o) => { // if object has no parent (name == 'Scene') use absolute positioning, otherwise relative to parent o.position.x = o.parent.name == 'Scene' ? v.x : o.positionOriginal.x + v.x o.position.y = o.parent.name == 'Scene' ? v.z : o.positionOriginal.y + v.z o.position.z = o.parent.name == 'Scene' ? v.y : o.positionOriginal.z + v.y }) }else{ camera.position.x = v.x camera.position.y = v.y camera.position.z = v.z } } xrf.frag.defaultPredefinedView = (opts) => { let {scene,model} = opts; let frag = {} xrf.Parser.parse("#","",frag) xrf.frag.updatePredefinedView({frag,model,scene}) } xrf.frag.updatePredefinedView = (opts) => { let {frag,scene,model} = opts // spec: https://xrfragment.org/#Selection%20of%20interest const selectionOfInterest = (frag,scene,mesh) => { let id = frag.string let oldSelection if(!id) return id // important: ignore empty strings if( mesh.selection ) oldSelection = mesh.selection // Selection of Interest if predefined_view matches object name if( mesh.visible && (id == mesh.name || id.substr(1) == mesh.userData.class) ){ xrf.emit('selection',{...opts,frag}) .then( () => { const margin = 1.2 mesh.scale.multiplyScalar( margin ) mesh.selection = new xrf.THREE.BoxHelper(mesh,0xff00ff) mesh.scale.divideScalar( margin ) mesh.selection.material.dispose() mesh.selection.material = xrf.navigator.material.selection mesh.selection.isXRF = true scene.add(mesh.selection) }) } return oldSelection } // spec: https://xrfragment.org/#predefined_view const predefinedView = (frag,scene,mesh) => { let id = frag.string || frag.fragment id = `#${id}` if( id == '##' ) id = '#'; // default predefined view if( !id ) return // prevent empty matches if( mesh.userData[id] ){ // get alias frag = xrf.URI.parse( mesh.userData[id], xrf.XRF.NAVIGATOR | xrf.XRF.PV_OVERRIDE | xrf.XRF.METADATA ) xrf.emit('predefinedView',{...opts,frag}) .then( () => { for ( let k in frag ){ let opts = {frag, model, camera: xrf.camera, scene: xrf.scene, renderer: xrf.renderer, THREE: xrf.THREE } if( frag[k].is( xrf.XRF.PV_EXECUTE ) && scene.XRF_PV_ORIGIN != k ){ // cyclic detection traverseScene(frag[k],scene) // recurse predefined views }else xrf.eval.fragment(k,opts) } }) } } const traverseScene = (v,scene) => { let remove = [] if( !scene ) return scene.traverse( (mesh) => { remove.push( selectionOfInterest( v, scene, mesh ) ) predefinedView( v , scene, mesh ) }) remove.filter( (e) => e ).map( (selection) => { scene.remove(selection) }) } let pviews = [] for ( let i in frag ) { let v = frag[i] if( v.is( xrf.XRF.PV_EXECUTE ) ){ scene.XRF_PV_ORIGIN = v.string if( v.args ) v = v.args[ xrf.roundrobin(v,xrf.model) ] // wait for nested instances to arrive at the scene ? traverseScene(v,scene) if( v.string ) pviews.push(v.string) }else if( v.is( xrf.XRF.NAVIGATOR ) ) pviews.push(`${i}=${v.string}`) } if( pviews.length ) xrf.navigator.updateHash( pviews.join("&") ) } // react to url changes //xrf.addEventListener('updateHash', (opts) => { // console.log("update hash"); // console.dir(opts) // let frag = xrf.URI.parse( opts.hash, xrf.XRF.NAVIGATOR | xrf.XRF.PV_OVERRIDE | xrf.XRF.METADATA ) // xrf.frag.updatePredefinedView({frag,scene:xrf.scene}) //}) // clicking href url with predefined view xrf.addEventListener('href', (opts) => { if( !opts.click || opts.xrf.string[0] != '#' ) return let frag = xrf.URI.parse( opts.xrf.string, xrf.XRF.NAVIGATOR | xrf.XRF.PV_OVERRIDE | xrf.XRF.METADATA ) xrf.frag.updatePredefinedView({frag,scene:xrf.scene,href:opts.xrf}) }) //let updateUrl = (opts) => { // console.dir(opts) //} // //xrf.addEventListener('predefinedView', updateUrl ) //xrf.addEventListener('selection', updateUrl ) // spec: https://xrfragment.org/#queries xrf.frag.q = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts console.log(" └ running query ") let qobjs = Object.keys(v.query) // convience function for other fragments (which apply to the query) frag.q.getObjects = () => { let objs = [] scene.traverse( (o) => { for ( let name in v.query ) { let qobj = v.query[name]; if( qobj.class && o.userData.class && o.userData.class == name ) objs.push(o) else if( qobj.id && o.name == name ) objs.push(o) } }) return objs.filter( (o) => o ) // return and filter out empty .map( (o) => { if( !o.positionOriginal ) o.positionOriginal = o.position.clone() return o }) } // spec: https://xrfragment.org/#src const instanceScene = () => { v.scene = new THREE.Group() for ( let i in v.query ) { let target = v.query[i] if( !scene.getObjectByName(i) && i != '*' ) return console.log(` └ mesh not found: ${i}`) if( i == '*' ){ let cloneScene = scene.clone() // add interactive elements (href's e.g.) *TODO* this is called by both internal/external src's v.scene.add( xrf.interactive.clone() ) cloneScene.children.forEach( (child) => v.scene.getObjectByName(child.name) ? null : v.scene.add(child) ) target.mesh = v.scene }else{ if( !v.scene.getObjectByName(i) && target.id === true ){ console.log(` └ query-ing mesh: ${i}`) v.scene.add( target.mesh = scene.getObjectByName(i).clone() ) } } if( target.id != undefined && target.mesh ){ target.mesh.position.set(0,0,0) target.mesh.rotation.set(0,0,0) } } // hide negative selectors let negative = [] v.scene.traverse( (mesh) => { for ( let i in v.query ) { if( mesh.name == i && v.query[i].id === false ) negative.push(mesh) } }) negative.map( (mesh) => mesh.visible = false ) } // spec: https://xrfragment.org/#queries const showHide = () => { let q = frag.q.query scene.traverse( (mesh) => { for ( let i in q ) { let isMeshId = q[i].id != undefined let isMeshClass = q[i].class != undefined let isMeshProperty = q[i].rules != undefined && q[i].rules.length && !isMeshId && !isMeshClass if( q[i].root && mesh.isSRC ) continue; // ignore nested object for root-items (queryseletor '/foo' e.g.) if( isMeshId && i == mesh.name ) mesh.visible = q[i].id if( isMeshClass && i == mesh.userData.class ) mesh.visible = q[i].class if( isMeshProperty && mesh.userData[i] ) mesh.visible = (new xrf.Query(frag.q.string)).testProperty(i,mesh.userData[i]) } }) } const doLocalInstancing = opts.embedded && opts.embedded.fragment == 'src' && opts.embedded.string[0] == '#' if( doLocalInstancing ) instanceScene() // spec : https://xrfragment.org/#src else showHide() // spec : https://xrfragment.org/#queries } xrf.frag.rot = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts // apply roundrobin (if any) if( v.args ) v = v.args[ xrf.roundrobin(v,model) ] if( frag.q ){ // only operate on queried object(s) frag.q.getObjects().map( (o) => { o.rotation.set( v.x * Math.PI / 180, v.y * Math.PI / 180, v.z * Math.PI / 180 ) }) }else{ console.log(" └ setting camera rotation to "+v.string) camera.rotation.set( v.x * Math.PI / 180, v.y * Math.PI / 180, v.z * Math.PI / 180 ) camera.updateMatrixWorld() } } xrf.frag.scale = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts // apply roundrobin (if any) if( v.args ) v = v.args[ xrf.roundrobin(v,model) ] if( frag.q ){ // only operate on queried object(s) frag.q.getObjects().map( (o) => { o.scale.x = v.x o.scale.y = v.y o.scale.z = v.z }) } } xrf.frag.show = function(v, opts){ let { frag, mesh, model, camera, scene, renderer, THREE} = opts // apply roundrobin (if any) if( v.args ) v = v.args[ xrf.roundrobin(v,model) ] if( frag.q ){ // only operate on queried object(s) frag.q.getObjects().map( (o) => { o.visible = v.int == 1; }) } } // *TODO* use webgl instancing xrf.frag.src = function(v, opts){ opts.embedded = v // indicate embedded XR fragment let { mesh, model, camera, scene, renderer, THREE} = opts console.log(" └ instancing src") let src = new THREE.Group() let frag = xrfragment.URI.parse(v.string) const localSRC = () => { setTimeout( () => { // scale URI XR Fragments inside src-value for( var i in frag ){ xrf.eval.fragment(i, Object.assign(opts,{frag, model,scene})) } if( frag.q.query ){ let srcScene = frag.q.scene // three/xrf/q.js initializes .scene if( !srcScene || !srcScene.visible ) return console.log(" └ inserting "+i+" (srcScene)") srcScene.position.set(0,0,0) srcScene.rotation.set(0,0,0) srcScene.traverse( (m) => { m.isSRC = true if( m.userData && (m.userData.src || m.userData.href) ) return ;//delete m.userData.src // prevent infinite recursion xrf.eval.mesh(m,{scene,recursive:true}) }) if( srcScene.visible ) src.add( srcScene ) } xrf.frag.src.scale( src, opts ) },10) } const externalSRC = () => { fetch(v.string, { method: 'HEAD' }) .then( (res) => { console.log(`loading src ${v.string}`) let mimetype = res.headers.get('Content-type') console.log("src mimetype: "+mimetype) return xrf.frag.src.type[ mimetype ] ? xrf.frag.src.type[ mimetype ](v.string,opts) : xrf.frag.src.type.unknown(v.string,opts) }) .finally( () => { }) .catch( console.error ) } if( v.string[0] == "#" ) localSRC() // current file else externalSRC() // external file } // scale embedded XR fragments https://xrfragment.org/#scaling%20of%20instanced%20objects xrf.frag.src.scale = function(scene, opts, url){ let { mesh, model, camera, renderer, THREE} = opts let restrictToBoundingBox = mesh.geometry if( url ){ let frag = xrfragment.URI.parse(url) console.log("parse url:"+url) console.log("children:"+scene.children.length) // scale URI XR Fragments (queries) inside src-value for( var i in frag ){ xrf.eval.fragment(i, Object.assign(opts,{frag, model:{scene},scene})) } //if( frag.q ) scene = frag.q.scene //xrf.add( model.scene ) xrf.eval( '#', {scene} ) // execute the default projection '#' (if exist) xrf.eval( url, {scene} ) // and eval URI XR fragments //if( !hash.match(/pos=/) ) // xrf.eval( '#pos=0,0,0' ) // set default position if not specified } if( restrictToBoundingBox ){ // spec 3 of https://xrfragment.org/#src // spec 1 of https://xrfragment.org/#scaling%20of%20instanced%20objects // normalize instanced objectsize to boundingbox let bboxMesh = new THREE.Box3().setFromObject(mesh); let bboxScene = new THREE.Box3().setFromObject(scene); let maxScene = bboxScene.max.y > bboxScene.max.x ? bboxScene.max.y : bboxScene.max.x let maxMesh = bboxMesh.max.y > bboxMesh.max.x ? bboxMesh.max.y : bboxMesh.max.x let factor = maxMesh > maxScene ? maxScene / maxMesh : maxMesh / maxScene scene.scale.multiplyScalar( factor ) }else{ // spec 4 of https://xrfragment.org/#src // spec 2 of https://xrfragment.org/#scaling%20of%20instanced%20objects scene.scale.multiply( mesh.scale ) } scene.isXRF = model.scene.isSRC = true mesh.add( scene ) if( !opts.recursive && mesh.material ) mesh.material.visible = false // lets hide the preview object because deleting disables animations+nested objs } /* * replace the src-mesh with the contents of the src */ xrf.frag.src.type = {} /* * mimetype: unknown */ xrf.frag.src.type['unknown'] = function( url, opts ){ return new Promise( (resolve,reject) => { reject(`${url} mimetype not supported (yet)`) }) } /* * mimetype: model/gltf+json */ xrf.frag.src.type['model/gltf+json'] = function( url, opts ){ return new Promise( (resolve,reject) => { let {urlObj,dir,file,hash,ext} = xrf.parseUrl(url) let loader const Loader = xrf.loaders[ext] if( !Loader ) throw 'xrfragment: no loader passed to xrfragment for extension .'+ext if( !dir.match("://") ){ // force relative path dir = dir[0] == '.' ? dir : `.${dir}` loader = new Loader().setPath( dir ) }else loader = new Loader() const onLoad = (model) => { xrf.frag.src.scale( model.scene, {...opts, model, scene: model.scene}, url ) resolve(model) } loader.load(url, onLoad ) }) } /* * mimetype: image/png * mimetype: image/jpg * mimetype: image/gif */ xrf.frag.src.type['image/png'] = function(url,opts){ let {mesh} = opts let restrictToBoundingBox = mesh.geometry const texture = new THREE.TextureLoader().load( url ); texture.colorSpace = THREE.SRGBColorSpace; //const geometry = new THREE.BoxGeometry(); const material = new THREE.MeshBasicMaterial({ map: texture, transparent: url.match(/(png|gif)/) ? true : false, side: THREE.DoubleSide, color: 0xFFFFFF, opacity:1 }); // stretch image by pinning uv-coordinates to corners if( mesh.geometry ){ if( mesh.geometry.attributes.uv ){ // buffergeometries let uv = mesh.geometry.attributes.uv; // i u v uv.setXY(0, 0, 0 ) uv.setXY(1, 1, 0 ) uv.setXY(2, 0, 1 ) uv.setXY(3, 1, 1 ) }else { console.warn("xrfragment: uv's of ${url} might be off for non-buffer-geometries *TODO*") //if( geometry.faceVertexUvs ){ // *TODO* force uv's of dynamically created geometries (in threejs) //} } } mesh.material = material } xrf.frag.src.type['image/gif'] = xrf.frag.src.type['image/png'] xrf.frag.src.type['image/jpg'] = xrf.frag.src.type['image/png'] window.AFRAME.registerComponent('xrf', { schema: { }, init: function () { if( !AFRAME.XRF ) this.initXRFragments() if( typeof this.data == "string" ){ if( document.location.search || document.location.hash.length > 1 ){ // override url this.data = `${document.location.search.substr(1)}${document.location.hash}` } AFRAME.XRF.navigator.to(this.data) .then( (model) => { let gets = [ ...document.querySelectorAll('[xrf-get]') ] gets.map( (g) => g.emit('update') ) }) } }, initXRFragments: function(){ //window.addEventListener('popstate', clear ) //window.addEventListener('pushstate', clear ) // enable XR fragments let aScene = document.querySelector('a-scene') let XRF = AFRAME.XRF = xrf.init({ THREE, camera: aScene.camera, scene: aScene.object3D, renderer: aScene.renderer, debug: true, loaders: { gltf: THREE.GLTFLoader, // which 3D assets (exts) to check for XR fragments? glb: THREE.GLTFLoader } }) if( !XRF.camera ) throw 'xrfragment: no camera detected, please declare ABOVE entities with xrf-attributes' // override the camera-related XR Fragments so the camera-rig is affected let camOverride = (xrf,v,opts) => { opts.camera = document.querySelector('[camera]').object3D.parent xrf(v,opts) } xrf.pos = camOverride // in order to set the rotation programmatically // we need to disable look-controls xrf.rot = (xrf,v,opts) => { let {frag,renderer} = opts; if( frag.q ) return // camera was not targeted for rotation let look = document.querySelector('[look-controls]') if( look ) look.removeAttribute("look-controls") camOverride(xrf,v,opts) // *TODO* make look-controls compatible, because simply // adding the look-controls will revert to the old rotation (cached somehow?) //setTimeout( () => look.setAttribute("look-controls",""), 100 ) } // convert portal to a-entity so AFRAME // raycaster can find & execute it xrf.href = (xrf,v,opts) => { camOverride(xrf,v,opts) let {mesh,camera} = opts; let el = document.createElement("a-entity") el.setAttribute("xrf-get",mesh.name ) el.setAttribute("class","ray") el.addEventListener("click", mesh.userData.XRF.href.exec ) $('a-scene').appendChild(el) } // cleanup xrf-get objects when resetting scene xrf.reset = ((reset) => () => { reset() console.log("aframe reset") let els = [...document.querySelectorAll('[xrf-get]')] els.map( (el) => document.querySelector('a-scene').removeChild(el) ) })(XRF.reset) // undo lookup-control shenanigans (which blocks updating camerarig position in VR) aScene.addEventListener('enter-vr', () => document.querySelector('[camera]').object3D.parent.matrixAutoUpdate = true ) }, }) window.AFRAME.registerComponent('xrf-button', { schema: { label: { default: 'label' }, width: { default: 0.11 }, toggable: { default: false }, textSize: { default: 0.66 }, color:{ default: '#111' }, textColor:{ default: '#fff' }, hicolor:{ default: '#555555' }, action:{ default: '' } }, init: function() { var el = this.el; var labelEl = this.labelEl = document.createElement('a-entity'); this.color = this.data.color el.setAttribute('geometry', { primitive: 'box', width: this.data.width, height: 0.05, depth: 0.005 }); el.setAttribute('material', { color: this.color, transparent:true, opacity:0.3 }); el.setAttribute('pressable', ''); labelEl.setAttribute('position', '0 0 0.01'); labelEl.setAttribute('text', { value: this.data.label, color: this.data.textColor, align: 'center' }); labelEl.setAttribute('scale', `${this.data.textSize} ${this.data.textSize} ${this.data.textSize}`); this.el.appendChild(labelEl); this.bindMethods(); this.el.addEventListener('stateadded', this.stateChanged); this.el.addEventListener('stateremoved', this.stateChanged); this.el.addEventListener('pressedstarted', this.onPressedStarted); this.el.addEventListener('pressedended', this.onPressedEnded); this.el.addEventListener('mouseenter', (e) => this.onMouseEnter(e) ); this.el.addEventListener('mouseleave', (e) => this.onMouseLeave(e) ); if( this.data.action ){ this.el.addEventListener('click', new Function(this.data.action) ) } }, bindMethods: function() { this.stateChanged = this.stateChanged.bind(this); this.onPressedStarted = this.onPressedStarted.bind(this); this.onPressedEnded = this.onPressedEnded.bind(this); }, update: function(oldData) { if (oldData.label !== this.data.label) { this.labelEl.setAttribute('text', 'value', this.data.label); } }, stateChanged: function() { var color = this.el.is('pressed') ? this.data.hicolor : this.color; this.el.setAttribute('material', { color: color }); }, onMouseEnter: function(){ this.el.setAttribute('material', { color: this.data.hicolor }); }, onMouseLeave: function(){ this.el.setAttribute('material', { color: this.color }); }, onPressedStarted: function() { var el = this.el; el.setAttribute('material', { color: this.data.hicolor }); el.emit('click'); if (this.data.togabble) { if (el.is('pressed')) { el.removeState('pressed'); } else { el.addState('pressed'); } } }, onPressedEnded: function() { if (this.el.is('pressed')) { return; } this.el.setAttribute('material', { color: this.color }); } }); window.AFRAME.registerComponent('xrf-get', { schema: { name: {type: 'string'}, clone: {type: 'boolean', default:false} }, init: function () { var el = this.el; var meshname = this.data.name || this.data; this.el.addEventListener('update', (evt) => { let scene = AFRAME.XRF.scene let mesh = scene.getObjectByName(meshname); if (!mesh){ console.error("mesh with name '"+meshname+"' not found in model") return; } // convert to worldcoordinates mesh.getWorldPosition(mesh.position) mesh.getWorldScale(mesh.scale) mesh.getWorldQuaternion(mesh.quaternion) if( !this.data.clone ) mesh.parent.remove(mesh) mesh.isXRF = true // mark for deletion by xrf this.el.setObject3D('mesh', mesh ); if( !this.el.id ) this.el.setAttribute("id",`xrf-${mesh.name}`) }) if( this.el.className == "ray" ) this.el.emit("update") } }); window.AFRAME.registerComponent('xrf-wear', { schema:{ el: {type:"selector"}, position: {type:"vec3"}, rotation: {type:"vec3"} }, init: function(){ $('a-scene').addEventListener('enter-vr', (e) => this.wear(e) ) $('a-scene').addEventListener('exit-vr', (e) => this.unwear(e) ) }, wear: function(){ if( !this.wearable ){ let d = this.data this.wearable = new THREE.Group() this.el.object3D.children.map( (c) => this.wearable.add(c) ) this.wearable.position.set( d.position.x, d.position.y, d.position.z) this.wearable.rotation.set( d.rotation.x, d.rotation.y, d.rotation.z) } this.data.el.object3D.add(this.wearable) }, unwear: function(){ this.data.el.remove(this.wearable) this.wearable.children.map( (c) => this.el.object3D.add(c) ) delete this.wearable } })