340 lines
11 KiB
TypeScript
340 lines
11 KiB
TypeScript
/*
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* Verrückte Turing-Maschinen — A turing complete game
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* Copyright (C) 2016 Christian Fraß <vidofnir@folksprak.org>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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module mod_vtm
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{
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export module mod_manifestation
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{
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export module mod_svg
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{
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export module mod_aktor
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{
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/**
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* @author kcf <vidofnir@folksprak.org>
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*/
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export type typ_aktor =
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{
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aufbau : mod_vtm.mod_aufbau.mod_aktor.typ_aktor;
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stelle : mod_vtm.mod_aufbau.mod_stelle.typ_stelle;
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}
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;
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/**
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* @author kcf <vidofnir@folksprak.org>
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*/
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function erstellen
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(
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aufbau : mod_vtm.mod_aufbau.mod_aktor.typ_aktor,
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stelle : mod_vtm.mod_aufbau.mod_stelle.typ_stelle
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)
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: typ_aktor
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{
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return {
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"aufbau": aufbau,
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"stelle": stelle
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};
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}
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/**
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* @author kcf <vidofnir@folksprak.org>
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*/
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export function erstellen_manifestation
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(
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aufbau : mod_vtm.mod_aufbau.mod_aktor.typ_aktor,
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stelle : mod_vtm.mod_aufbau.mod_stelle.typ_stelle
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)
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: typ_manifestation<mod_vtm.mod_aufbau.mod_aktor.typ_aktor>
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{
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return {
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"art": "aktor",
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"angaben": erstellen(aufbau, stelle),
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};
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}
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/**
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* @author kcf <vidofnir@folksprak.org>
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*/
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function darstellen(aktor_ : typ_aktor) : lib_xml.typ_knoten
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{
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let aktor : mod_vtm.mod_aufbau.mod_aktor.typ_aktor = aktor_.aufbau;
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let knoten_rahmen = function () : lib_xml.typ_knoten
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{
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return (
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pfad
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(
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mod_vtm.mod_helfer.sequenz(6).map(i => lib_vektor.polar(((i+0.5)/6) * (2*Math.PI), 0.5)),
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true,
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{
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"class": "rahmen"
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}
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)
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);
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}
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;
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let kinder_feld : Array<lib_xml.typ_knoten> = [];
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lib_aufruf.fallunterscheidung<void>
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(
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aktor,
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{
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"erzeuger": (angaben) =>
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{
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kinder_feld.push(knoten_rahmen());
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let richtung : mod_vtm.mod_aufbau.mod_richtung.typ_richtung = mod_vtm.mod_aufbau.mod_aktor.mod_erzeuger.richtung_lesen(angaben);
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let knoten_pfeil : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"path",
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{
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"d": form_pfeil,
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"class": (
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[
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"pfeil",
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"erzeuger",
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].join(" ")
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),
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"transform": (
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[
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"rotate(" + ((richtung/6) * 360).toFixed(float_praezission) + ")",
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"translate(-0.2, 0)",
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"scale(0.12)",
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].join(" ")
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),
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}
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)
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);
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kinder_feld.push(knoten_pfeil);
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}
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,
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"befoerderer": (angaben) =>
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{
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kinder_feld.push(knoten_rahmen());
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let richtung : mod_vtm.mod_aufbau.mod_richtung.typ_richtung = mod_vtm.mod_aufbau.mod_aktor.mod_befoerderer.richtung_lesen(angaben);
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let knoten_pfeil : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"path",
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{
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"d": form_pfeil,
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"class": (
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[
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"pfeil",
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"neutral",
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].join(" ")
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),
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"transform": (
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[
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"rotate(" + ((richtung/6) * 360).toFixed(float_praezission) + ")",
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"translate(-0.2, 0)",
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"scale(0.12)",
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].join(" ")
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),
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}
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)
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);
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kinder_feld.push(knoten_pfeil);
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}
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,
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"schreiber": (angaben) =>
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{
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kinder_feld.push(knoten_rahmen());
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let richtung : mod_vtm.mod_aufbau.mod_richtung.typ_richtung = mod_vtm.mod_aufbau.mod_aktor.mod_schreiber.richtung_lesen(angaben);
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let symbol : mod_vtm.mod_aufbau.mod_symbol.typ_symbol = mod_vtm.mod_aufbau.mod_aktor.mod_schreiber.symbol_lesen(angaben);
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let knoten_pfeil : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"path",
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{
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"d": form_pfeil,
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"class": (
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[
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"pfeil",
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"symbol_" + symbol.toFixed(0),
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].join(" ")
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),
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"transform": (
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[
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"rotate(" + ((richtung/6) * 360).toFixed(float_praezission) + ")",
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"translate(-0.2, 0)",
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"scale(0.12)",
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].join(" ")
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),
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}
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)
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);
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kinder_feld.push(knoten_pfeil);
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}
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,
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"leser": (angaben) =>
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{
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kinder_feld.push(knoten_rahmen());
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let richtung : mod_vtm.mod_aufbau.mod_richtung.typ_richtung = mod_vtm.mod_aufbau.mod_aktor.mod_leser.richtung_lesen(angaben);
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let symbol_links : mod_vtm.mod_aufbau.mod_symbol.typ_symbol = mod_vtm.mod_aufbau.mod_aktor.mod_leser.symbol_links_lesen(angaben);
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let symbol_rechts : mod_vtm.mod_aufbau.mod_symbol.typ_symbol = mod_vtm.mod_aufbau.mod_aktor.mod_leser.symbol_rechts_lesen(angaben);
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let ausgaenge : Array<{summand : mod_vtm.mod_aufbau.mod_richtung.typ_richtung, symbol : lib_fehlermonade.typ_fehlermonade<mod_vtm.mod_aufbau.mod_symbol.typ_symbol>;}> =
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[
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{
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"summand": 0,
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"symbol": lib_fehlermonade.erstellen_nichts<mod_vtm.mod_aufbau.mod_symbol.typ_symbol>(),
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},
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{
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"summand": +2,
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"symbol": lib_fehlermonade.erstellen_schlicht<mod_vtm.mod_aufbau.mod_symbol.typ_symbol>(symbol_links),
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},
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{
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"summand": -2,
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"symbol": lib_fehlermonade.erstellen_schlicht<mod_vtm.mod_aufbau.mod_symbol.typ_symbol>(symbol_rechts),
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},
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]
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;
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ausgaenge.forEach
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(
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eintrag =>
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{
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let winkel : float = ((mod_vtm.mod_aufbau.mod_richtung.addieren(richtung, eintrag.summand) / 6) * 360);
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let knoten_pfeil : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"path",
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{
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"d": form_pfeil,
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"class": (
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[
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"pfeil",
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(
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lib_fehlermonade.voll<mod_aufbau.mod_symbol.typ_symbol>(eintrag.symbol)
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? "symbol_" + lib_fehlermonade.lesen<mod_aufbau.mod_symbol.typ_symbol>(eintrag.symbol).toFixed(0)
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: "neutral"
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),
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].join(" ")
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),
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"transform": (
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[
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"rotate(" + winkel.toFixed(float_praezission) + ")",
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"translate(0.1, 0)",
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"scale(0.075)",
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].join(" ")
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),
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}
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)
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);
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kinder_feld.push(knoten_pfeil);
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}
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)
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;
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}
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,
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"verwerfer": (angaben) =>
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{
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kinder_feld.push(knoten_rahmen());
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let knoten_kreis : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"circle",
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{
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"cx": (0.0).toFixed(float_praezission),
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"cy": (0.0).toFixed(float_praezission),
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"r": (0.25).toFixed(float_praezission),
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"class": (
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[
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"kreis",
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"negativ",
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].join(" ")
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),
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}
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)
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);
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kinder_feld.push(knoten_kreis);
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}
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,
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"annehmer": (angaben) =>
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{
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kinder_feld.push(knoten_rahmen());
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let knoten_kreis : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"circle",
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{
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"cx": (0.0).toFixed(float_praezission),
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"cy": (0.0).toFixed(float_praezission),
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"r": (0.25).toFixed(float_praezission),
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"class": (
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[
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"kreis",
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"positiv",
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].join(" ")
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),
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}
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)
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);
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kinder_feld.push(knoten_kreis);
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}
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,
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}
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)
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;
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let position : mod_position.typ_position = mod_position.von_stelle(aktor_.stelle);
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let knoten_feld : lib_xml.typ_knoten = (
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lib_xml.erstellen_normal
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(
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"g",
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{
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"class": "feld",
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"rel": mod_vtm.mod_aufbau.mod_stelle.hash(aktor_.stelle),
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"transform": (
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"translate"
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+ "("
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+ position.x.toFixed(float_praezission)
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+ ", "
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+ position.y.toFixed(float_praezission)
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+ ")"
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),
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},
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kinder_feld
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)
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);
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return knoten_feld;
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}
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/**
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* @author kcf <vidofnir@folksprak.org>
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*/
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implementierung_manifestation["aktor"] =
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{
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"darstellen": (manifestation) => darstellen(manifestation.angaben),
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"binden": (manifestation) => {},
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}
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;
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}
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}
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}
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}
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