473 lines
13 KiB
JavaScript
473 lines
13 KiB
JavaScript
import { joinCamel } from "./utils.mjs";
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export function apply(data, para, argv) {
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const parsed = parse(data, argv);
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let tagSet = new Set();
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for (const prime of parsed.primes.values()) {
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if (!prime.tag) continue;
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if (!tagSet.has(prime.tag)) tagSet.add(prime.tag);
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else throw new Error(`CV tag conflict: ${prime.tag}`);
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}
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const variantSelector = {};
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parsed.defaultComposite.resolve(para, parsed.selectorTree, parsed.composites, variantSelector);
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if (argv.shape.serifs === "slab") {
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const slabComp = parsed.composites.get("slab");
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slabComp.resolve(para, parsed.selectorTree, parsed.composites, variantSelector);
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}
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if (argv.variants) {
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const userComposite = new Composite("{user}", argv.variants);
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userComposite.resolve(para, parsed.selectorTree, parsed.composites, variantSelector);
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}
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para.variants = {
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selectorTree: parsed.selectorTree,
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primes: parsed.primes,
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composites: parsed.composites
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};
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para.variantSelector = variantSelector;
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}
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export function parse(data, argv) {
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const primes = new Map();
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const selectorTree = new SelectorTree();
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for (const k in data.prime) {
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const p = new Prime(k, data.prime[k]);
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p.register(selectorTree);
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primes.set(k, p);
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}
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const defaultComposite = new Composite("{default}", data.default);
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const composites = new Map();
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for (const k in data.composite) {
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const comp = new Composite(k, data.composite[k]);
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composites.set(k, comp);
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}
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if (argv && argv.compositesFromBuildPlan) {
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for (const k in argv.compositesFromBuildPlan) {
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const key = `buildPlans.${k}`;
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const comp = new Composite(key, argv.compositesFromBuildPlan[k]);
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composites.set(key, comp);
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}
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}
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return { selectorTree: selectorTree, primes, composites, defaultComposite };
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}
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class SelectorTree {
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constructor() {
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this.m_mapping = new Map();
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}
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get(kPrime, kVariant) {
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if (!this.m_mapping.has(kPrime)) return undefined;
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return this.m_mapping.get(kPrime).get(kVariant);
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}
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set(kPrime, kVariant, prime, variant) {
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if (!this.m_mapping.has(kPrime)) this.m_mapping.set(kPrime, new Map());
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this.m_mapping.get(kPrime).set(kVariant, [prime, variant]);
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}
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*[Symbol.iterator]() {
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for (const m of this.m_mapping.values()) yield* m.values();
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}
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}
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class Prime {
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constructor(key, cfg) {
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this.key = key;
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this.sampler = cfg.sampler;
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this.samplerExplain = cfg.samplerExplain;
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this.isSpecial = cfg.isSpecial || false;
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this.description = cfg.description || null;
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this.ligatureSampler = / /.test(cfg.sampler || "");
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this.descSampleText = this.ligatureSampler
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? cfg.sampler.split(" ").filter(x => !!x.trim())
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: [...(cfg.sampler || "")];
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this.tag = cfg.tag;
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this.slopeDependent = !!cfg.slopeDependent;
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this.hotChars = cfg.hotChars ? [...cfg.hotChars] : this.descSampleText;
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this.variants = new Map();
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let variantConfig = cfg.variants;
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if (!variantConfig && cfg["variants-buildup"]) {
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const vb = new VariantBuilder(cfg["variants-buildup"]);
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variantConfig = vb.process();
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}
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if (!variantConfig) throw new Error(`Missing variants in ${key}`);
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for (const varKey in variantConfig) {
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const variant = variantConfig[varKey];
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this.variants.set(varKey, new PrimeVariant(varKey, cfg.tag, variant));
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}
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}
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register(tree) {
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for (const [k, v] of this.variants) tree.set(this.key, k, this, v);
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if (this.tag) {
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for (const v of this.variants.values()) if (v.rank) tree.set(this.tag, v.rank, this, v);
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}
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}
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toJson() {
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const gr = {
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key: this.key,
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sampler: this.sampler,
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samplerExplain: this.samplerExplain,
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isSpecial: this.isSpecial,
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description: this.description,
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tag: this.tag,
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slopeDependent: this.slopeDependent,
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ligatureSampler: this.ligatureSampler,
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descSampleText: this.descSampleText,
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hotChars: this.hotChars,
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variants: []
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};
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for (const variant of this.variants.values()) {
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gr.variants.push({
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key: variant.key,
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rank: variant.rank,
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groupRank: variant.groupRank,
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description: variant.description,
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snapshotFeatureApplication: variant.snapshotFeatureApplication
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});
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}
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gr.variants.sort((a, b) => (a.rank || 0x7fffffff) - (b.rank || 0x7fffffff));
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return gr;
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}
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}
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class PrimeVariant {
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constructor(key, tag, cfg) {
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this.key = key;
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this.tag = tag;
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this.description = cfg.description;
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this.rank = cfg.rank;
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this.groupRank = cfg.groupRank || 0;
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this.selector = cfg.selector;
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this.nonDeriving = cfg.nonDeriving;
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this.snapshotFeatureApplication = cfg.snapshotFeatureApplication;
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}
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resolveFor(para, gn) {
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let vs = {};
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this.resolve(para, vs);
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return vs[gn];
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}
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resolve(para, vs) {
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Object.assign(vs, this.selector);
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}
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}
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class Composite {
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constructor(key, cfg) {
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this.key = key;
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this.tag = cfg.tag;
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this.description = cfg.description;
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this.inherits = cfg.inherits;
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this.design = cfg.design;
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this.upright = cfg.upright || cfg["upright-oblique"];
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this.oblique = cfg.oblique || cfg["upright-oblique"];
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this.italic = cfg.italic;
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const slabOverrideCfg = cfg["slab-override"] || {};
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this.slabOverride = {
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design: slabOverrideCfg.design,
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override: slabOverrideCfg.upright || slabOverrideCfg["upright-oblique"],
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oblique: slabOverrideCfg.oblique || slabOverrideCfg["upright-oblique"],
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italic: slabOverrideCfg.italic
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};
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}
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decompose(para, selTree) {
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const ans = [];
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const cfg = Object.assign(
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{},
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this.design,
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this.decomposeSlope(this, para),
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!para.slab ? {} : this.slabOverride.design,
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!para.slab ? {} : this.decomposeSlope(this.slabOverride, para)
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);
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for (const [k, v] of Object.entries(cfg)) {
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const pv = selTree.get(k, v);
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if (!pv) throw new Error(`Composite ${this.key} cannot be resolved: ${[k, v]}.`);
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ans.push(pv);
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}
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return ans;
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}
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decomposeSlope(base, para) {
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return para.isItalic ? base.italic : para.isOblique ? base.oblique : base.upright;
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}
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resolve(para, selTree, catalog, vs) {
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if (this.inherits) {
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if (!catalog.has(this.inherits)) {
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throw new Error(`Cannot find composite variant: ${this.inherits}`);
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}
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catalog.get(this.inherits).resolve(para, selTree, catalog, vs);
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}
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for (const [prime, variant] of this.decompose(para, selTree)) {
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variant.resolve(para, vs);
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}
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}
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}
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///////////////////////////////////////////////////////////////////////////////////////////////////
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///
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/// Systematic Variant Building
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///
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class VariantBuilder {
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constructor(cfg) {
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this.entry = cfg.entry;
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this.descriptionLeader = cfg.descriptionLeader;
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this.stages = new Map();
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for (const [key, stage] of Object.entries(cfg.stages)) {
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this.stages.set(key, new VbStage(key, stage));
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}
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}
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process() {
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const globalState = new VbGlobalState(this.entry, this.stages);
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const localState = new VbLocalState();
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localState.descriptionLeader = this.descriptionLeader;
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globalState.stages.get(this.entry).accept(globalState, localState);
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let ans = {};
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for (const item of globalState.sink) {
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let cfg = item.createPrimeVariant();
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if (!cfg.key) throw new Error("Invalid variant key");
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if (ans[cfg.key]) throw new Error("Duplicate variant : " + cfg.key);
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ans[cfg.key] = cfg;
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}
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return ans;
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}
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}
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class VbStage {
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constructor(stage, raw) {
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this.stage = stage;
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this.defaultAlternative = new VbStageAlternative(this.stage, "*", {});
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this.alternatives = new Map();
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for (const k in raw) {
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if (k === "*") {
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this.defaultAlternative = new VbStageAlternative(this.stage, "*", raw[k]);
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} else {
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this.alternatives.set(k, new VbStageAlternative(this.stage, k, raw[k]));
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}
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}
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for (const v of this.alternatives.values()) v.fallback(this.defaultAlternative);
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}
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accept(globalState, localState) {
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let variantList = Array.from(this.alternatives.values());
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variantList.sort((a, b) => (a.rank || 0) - (b.rank || 0));
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for (const v of variantList) {
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const ans = v.tryAccept(globalState, localState);
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if (ans) globalState.stages.get(ans.stage).accept(globalState, ans);
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}
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}
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}
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class VbStageAlternative {
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constructor(stage, key, raw) {
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this.stage = stage;
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this.key = key;
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this.rank = raw.rank;
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this.groupRank = raw.groupRank;
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this.next = raw.next;
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this.mode = raw.mode;
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this.enableIf = raw.enableIf;
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this.disableIf = raw.disableIf;
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if (key !== "*") this.keyAffix = raw.keyAffix ?? key;
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this.descriptionAffix = raw.descriptionAffix;
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this.descriptionJoiner = raw.descriptionJoiner || "with";
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this.selectorAffix = raw.selectorAffix;
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}
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fallback(defaultAlternative) {
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this.next = this.next || defaultAlternative.next;
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this.mode = this.mode || defaultAlternative.mode || "append";
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this.keyAffix = this.keyAffix || defaultAlternative.keyAffix;
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this.descriptionAffix = this.descriptionAffix || defaultAlternative.descriptionAffix;
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this.descriptionJoiner = this.descriptionJoiner || defaultAlternative.descriptionJoiner;
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}
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tryAccept(globalState, localState) {
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// Reject if disable conditions match
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if (this.enableIf && !this.evalCondition(this.enableIf, localState)) return null;
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if (this.disableIf && this.evalCondition(this.disableIf, localState)) return null;
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// Accept this alternative.
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const ans = localState.clone();
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ans.stage = this.next;
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ans.assignments.set(this.stage, this.key);
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// RankGroup
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if (this.groupRank) ans.groupRank += this.groupRank;
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else if (this.stage === globalState.entry) ans.groupRank += this.rank;
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if (this.keyAffix) ans.addKeyAffix(this.mode, this.evalValue(this.keyAffix, localState));
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if (this.descriptionJoiner && this.descriptionAffix) {
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ans.addDescription(
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this.mode,
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this.evalValue(this.descriptionJoiner, localState),
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this.evalValue(this.descriptionAffix, localState)
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);
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}
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if (this.selectorAffix) {
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for (const [selector, suffix] of Object.entries(this.selectorAffix))
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ans.addSelectorAffix(this.mode, selector, this.evalValue(suffix, localState));
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}
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if (!this.next || this.next === "END") {
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ans.rank = ++globalState.rank;
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globalState.sink.push(ans);
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return null;
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} else {
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return ans;
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}
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}
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evalValue(expr, localState) {
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if (typeof expr === "string") return expr;
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if (expr.if) {
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const condition = this.evalCondition(expr.if, localState);
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if (condition) {
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return this.evalValue(expr.then, localState);
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} else {
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return this.evalValue(expr.else, localState);
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}
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}
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throw new Error(`Invalid value expression: ${expr}`);
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}
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evalCondition(expr, localState) {
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if (!expr) return false;
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for (const branch of expr) {
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let statementMatches = true;
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for (let [k, v] of Object.entries(branch)) {
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v = v.trim();
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if (/^NOT(?=\s)/.test(v)) {
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v = v.slice(3).trim();
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if (localState.assignments.get(k) === v) {
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statementMatches = false;
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break;
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}
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} else {
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if (localState.assignments.get(k) !== v) {
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statementMatches = false;
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break;
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}
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}
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}
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if (statementMatches) return true;
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}
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return false;
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}
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}
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class VbGlobalState {
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constructor(entry, stages) {
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this.entry = entry;
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this.stages = stages;
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this.rank = 0;
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this.sink = [];
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}
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}
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class VbLocalState {
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constructor() {
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this.stage = ".start";
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this.rank = 0;
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this.groupRank = 0;
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this.descriptionLeader = "";
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this.assignments = new Map();
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this.key = [];
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this.descriptions = new Map();
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this.selector = new Map();
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}
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clone() {
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const ans = new VbLocalState();
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ans.stage = this.stage;
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ans.rank = this.rank;
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ans.groupRank = this.groupRank;
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ans.descriptionLeader = this.descriptionLeader;
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ans.assignments = new Map(this.assignments);
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ans.key = [...this.key];
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ans.selector = new Map(this.selector);
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ans.descriptions = new Map();
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for (const [k, v] of this.descriptions) ans.descriptions.set(k, [...v]);
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return ans;
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}
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addKeyAffix(mode, segment) {
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switch (mode) {
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case "append":
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this.key.push(segment);
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return;
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case "prepend":
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this.key.unshift(segment);
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return;
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case "replace":
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this.key = [segment];
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return;
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default:
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throw new Error(`Invalid key affix mode: ${mode}`);
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}
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}
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addDescription(mode, joiner, segment) {
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if (!segment) return;
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if (!this.descriptions.has(joiner)) this.descriptions.set(joiner, []);
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let descriptionSentence = this.descriptions.get(joiner);
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switch (mode) {
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case "append":
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descriptionSentence.push(segment);
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return;
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case "prepend":
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descriptionSentence.unshift(segment);
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return;
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case "replace":
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descriptionSentence.length = 0;
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descriptionSentence.push(segment);
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return;
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default:
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throw new Error(`Invalid description affix mode: ${mode}`);
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}
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}
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addSelectorAffix(mode, selector, value) {
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switch (mode) {
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case "append":
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this.selector.set(selector, joinCamel(this.selector.get(selector), value));
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return;
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case "prepend":
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this.selector.set(selector, joinCamel(value, this.selector.get(selector)));
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return;
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case "replace":
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this.selector.set(selector, value);
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return;
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default:
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throw new Error(`Invalid selector affix mode: ${mode}`);
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}
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}
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produceKey() {
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return this.key.join("-");
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}
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produceDescription() {
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let desc = [];
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for (const [joiner, segments] of this.descriptions) {
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if (!segments.length) continue;
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desc.push(`${joiner} ${arrayToSentence(segments)}`);
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}
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return this.descriptionLeader + " " + desc.join("; ");
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}
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createPrimeVariant() {
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return {
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key: this.produceKey(),
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rank: this.rank,
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groupRank: this.groupRank,
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description: this.produceDescription(),
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selector: Object.fromEntries(this.selector)
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};
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}
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}
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function arrayToSentence(arr) {
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if (arr.length == 1) return arr[0];
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let last = arr.pop();
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return arr.join(", ") + ", and " + last;
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}
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