328 lines
12 KiB
JavaScript
328 lines
12 KiB
JavaScript
import { stressorToString } from './util.js';
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// RFC §1.3.4.5: SHAPE = [PREFIX (":" / ";")] Node 1*(";" Node)
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// Node = x "," y ["*" z] ["!"]
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// PREFIX+colon is the duration/resolution; optional START+semicolon follows.
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function _serializeShape(shape) {
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if (!shape) return null;
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const nodes = shape.coords.map(c => {
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let s = `${c.x},${c.y}`;
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if (c.z !== undefined && c.z !== 1) s += `*${c.z}`;
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if (c.isSharp) s += '!';
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return s;
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}).join(';');
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let prefix = '';
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if (shape.length != null) prefix = `${shape.length}:`;
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if (shape.start != null) prefix += `${shape.start};`;
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return prefix + nodes;
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}
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// RFC §3.2.1.1.6-7: FM = FREQUENCY ["f"/"F"] ["@" OSC] ["[" SHAPE "]"] ";" MOD ":" BASE
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function _serializeModulation(m) {
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let s = String(m.frequency ?? '');
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if (m.oscillator) s += `@${m.oscillator}`;
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if (m.shape) s += `[${_serializeShape(m.shape)}]`;
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s += `;${m.mod_share ?? ''}:${m.base_share ?? ''}`;
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if (m.init_phase != null) s += m.init_phase >= 0 ? `+${m.init_phase}` : String(m.init_phase);
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return s;
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}
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// RFC §3.2.1.1: O, A, S, R, FM go directly in the variation MAPPING.
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function _basicPropLines(bp) {
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if (!bp) return [];
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const lines = [];
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if (bp.oscillator) lines.push(`O: ${bp.oscillator}`);
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const a = _serializeShape(bp.A);
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if (a) lines.push(`A: "${a}"`);
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const s = _serializeShape(bp.S);
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if (s) lines.push(`S: "${s}"`);
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const r = _serializeShape(bp.R);
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if (r) lines.push(`R: "${r}"`);
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for (const fm of (bp.fmModulations ?? [])) lines.push(`FM: "${_serializeModulation(fm)}"`);
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for (const am of (bp.amModulations ?? [])) lines.push(`AM: "${_serializeModulation(am)}"`);
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return lines;
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}
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// RFC §3.2.1.2: label name (3+ lowercase chars) is the MAPPING KEY directly.
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function _labelSpecLines(ls) {
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const inner = _basicPropLines(ls.basicProperties);
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if (!inner.length) return [`${ls.label}:`];
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return [`${ls.label}:`, ...inner.map(l => ` ${l}`)];
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}
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// RFC §3.2.1.3: VOLUMES, TIMBRE are variation properties, not instrument-level.
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function _variationLines(v) {
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const lines = [];
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if (v.dependsOn) lines.push(`ATTR: ${v.dependsOn}`);
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lines.push(..._basicPropLines(v.basicProperties));
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for (const ls of (v.labelSpecs ?? [])) lines.push(..._labelSpecLines(ls));
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if (v.spread?.length) lines.push(`SPREAD: [${v.spread.join(', ')}]`);
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if (v.railsbackCurve) { const rc = _serializeShape(v.railsbackCurve); if (rc) lines.push(`RAILSBACK_CURVE: "${rc}"`); }
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const vol = _serializeShape(v.volumes);
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if (vol) lines.push(`VOLUMES: "${vol}"`);
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const timbre = _serializeShape(v.timbre);
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if (timbre) lines.push(`TIMBRE: "${timbre}"`);
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for (const fm of (v.fmModulations ?? [])) lines.push(`FM: "${_serializeModulation(fm)}"`);
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for (const am of (v.amModulations ?? [])) lines.push(`AM: "${_serializeModulation(am)}"`);
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for (const sv of (v.subvariations ?? [])) lines.push(..._variationLines(sv));
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return lines;
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}
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// VOLUMES, TIMBRE, FM are variation properties (RFC §3.2.1.3). The AST parser
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// stores them on the instrument because they appear at depth 01 (root variation
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// is implicit when no character: wrapper exists). Promote them into a synthetic
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// root variation here so the export structure is RFC-correct.
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function _instrCharacterLines(instr) {
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const variations = instr.variations ?? [];
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const hasRootProps = instr.basicProperties || instr.volumes || instr.timbre ||
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(instr.fmModulations ?? []).length > 0 ||
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(instr.amModulations ?? []).length > 0;
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const syntheticRoot = hasRootProps
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? {
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basicProperties: instr.basicProperties,
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labelSpecs: [], subvariations: [], spread: null,
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dependsOn: null, railsbackCurve: null,
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volumes: instr.volumes,
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timbre: instr.timbre,
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fmModulations: instr.fmModulations ?? [],
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amModulations: instr.amModulations ?? [],
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}
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: null;
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const allVariations = [
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...(syntheticRoot ? [syntheticRoot] : []),
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...variations,
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];
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if (allVariations.length <= 1) {
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const vLines = allVariations.length ? _variationLines(allVariations[0]) : [];
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return vLines.map(l => ` ${l}`);
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}
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// Multiple variations — RFC MAYBE_LIST<VARIATION> as YAML sequence.
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const result = [];
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for (const v of allVariations) {
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const vLines = _variationLines(v);
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if (!vLines.length) continue;
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result.push(` - ${vLines[0]}`);
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for (const l of vLines.slice(1)) result.push(` ${l}`);
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}
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return result;
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}
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// RFC §4.4: embedded instrument key is "instrument NAME:" not "instrument: 'NAME'"
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export function exportInstrument(instr) {
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const lines = [`instrument ${instr.name}:`];
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if (instr.notChangedSince) lines.push(` NOT_CHANGED_SINCE: ${instr.notChangedSince}`);
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lines.push(` character:`);
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lines.push(..._instrCharacterLines(instr));
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return lines.join('\n');
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}
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// RFC §4.3: articles: MAPPING { LABEL: { ATTR: VALUE ... } ... }
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function _serializeArticleValue(v) {
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if (typeof v === 'boolean') return String(v);
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if (typeof v === 'number') return String(v);
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const s = String(v);
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return /[:#\[\]{}&*!,|>'"%@`]/.test(s) ? JSON.stringify(s) : s;
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}
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function _buildArticlesBlock(articles) {
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const lines = ['articles:'];
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for (const art of articles) {
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const props = (art.properties ?? []).filter(p => p.name);
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if (!props.length) continue;
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lines.push(` ${art.name}:`);
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for (const p of props) lines.push(` ${p.name}: ${_serializeArticleValue(p.value)}`);
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}
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return lines.length > 1 ? lines.join('\n') : null;
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}
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function _patchArticles(text, articles) {
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const newBlock = _buildArticlesBlock(articles);
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if (!newBlock) return text;
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const lines = text.split('\n');
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const artIdx = lines.findIndex(l => /^articles\s*:/.test(l));
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if (artIdx !== -1) {
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let end = artIdx + 1;
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while (end < lines.length && (lines[end] === '' || lines[end].startsWith(' ') || lines[end].startsWith('\t'))) end++;
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lines.splice(artIdx, end - artIdx, newBlock);
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} else {
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const instrIdx = lines.findIndex(l => /^instrument\s/.test(l));
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const insertAt = instrIdx !== -1 ? instrIdx : lines.length;
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lines.splice(insertAt, 0, newBlock, '');
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}
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return lines.join('\n');
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}
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// Voice note content in bar documents is left verbatim.
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const META_KEYS = ['title', 'composer', 'source', 'encrypter'];
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function _patchMetadata(text, info) {
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if (!info) return text;
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const lines = text.split('\n');
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const replaced = new Set();
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const out = lines.map(line => {
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for (const key of META_KEYS) {
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if (line.startsWith(key + ':') && info[key] != null && info[key] !== '') {
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replaced.add(key);
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return `${key}: ${info[key]}`;
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}
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}
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return line;
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});
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const prepend = META_KEYS
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.filter(k => !replaced.has(k) && info[k] != null && info[k] !== '')
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.map(k => `${k}: ${info[k]}`);
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if (prepend.length) out.unshift(...prepend);
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return out.join('\n');
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}
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function _patchInstrumentHeader(text, instruments) {
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const lines = text.split('\n');
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const result = [];
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const instrMap = {};
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for (const instr of instruments) {
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instrMap[instr.name] = instr;
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if (instr.name.includes('/')) instrMap[instr.name.split('/').pop()] = instr;
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}
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let i = 0;
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while (i < lines.length) {
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const line = lines[i];
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const m = line.match(/^instrument\s+(.+?)\s*:/);
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if (m) {
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const rawName = m[1].replace(/^'|'$/g, '');
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const instr = instrMap[rawName];
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if (instr && instr.deleted) {
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i++;
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while (i < lines.length && (lines[i].startsWith(' ') || lines[i] === '')) i++;
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} else if (instr && instr.isDirty) {
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i++;
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while (i < lines.length && (lines[i].startsWith(' ') || lines[i] === '')) i++;
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result.push(exportInstrument(instr));
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result.push('');
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} else {
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result.push(line);
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i++;
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}
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} else {
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result.push(line);
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i++;
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}
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}
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return result.join('\n');
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}
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function _patchBarMeta(doc, bar) {
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const props = [];
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const sp = stressorToString(bar.stressor);
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if (sp) props.push(` stress_pattern: ${sp}`);
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if (bar.tempoLevels != null)
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props.push(` beats_per_minute: ${bar.tempoLevels}`);
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const ub = _serializeShape(bar.upperStressBound);
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if (ub) props.push(` upper_stress_bound: ${ub}`);
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const lb = _serializeShape(bar.lowerStressBound);
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if (lb) props.push(` lower_stress_bound: ${lb}`);
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if (bar.tempoShape) { const ts = _serializeShape(bar.tempoShape); if (ts) props.push(` tempo_shape: "${ts}"`); }
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const lines = doc.split('\n');
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const out = [];
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let i = 0;
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let replaced = false;
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while (i < lines.length) {
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if (lines[i] === '_meta:') {
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replaced = true;
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i++;
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while (i < lines.length && lines[i].startsWith(' ')) i++;
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if (props.length) { out.push('_meta:'); out.push(...props); }
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} else {
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out.push(lines[i]);
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i++;
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}
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}
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if (!replaced && props.length) {
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const idIdx = out.findIndex(l => /^_id:/.test(l));
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if (idIdx !== -1) out.splice(idIdx + 1, 0, '_meta:', ...props);
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}
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return out.join('\n');
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}
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function _buildNewBarDoc(bar) {
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const lines = [`_id: ${bar.id}`, '_meta:'];
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const sp = stressorToString(bar.stressor);
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if (sp) lines.push(` stress_pattern: ${sp}`);
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if (bar.tempoLevels != null) lines.push(` beats_per_minute: ${bar.tempoLevels}`);
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return lines.join('\n');
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}
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export function patchScore(rawScoreText, instruments, bars = [], info = null, articles = [], flags = {}) {
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const log = [];
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const SEP = '\n---\n';
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const [header, ...barDocs] = rawScoreText.split(SEP);
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let patchedHeader = _patchMetadata(header, info);
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const dirtyArticles = articles.filter(a => a.isDirty);
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if (dirtyArticles.length || flags.articlesModified) {
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patchedHeader = _patchArticles(patchedHeader, articles);
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for (const a of dirtyArticles) log.push({ level: 'changed', path: `articles / ${a.name}` });
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}
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patchedHeader = _patchInstrumentHeader(patchedHeader, instruments);
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for (const i of instruments) {
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if (i.deleted) log.push({ level: 'changed', path: `instrument / ${i.name} (deleted)` });
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else if (i.isDirty) log.push({ level: 'changed', path: `instrument / ${i.name}` });
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}
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const barMap = {};
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for (const bar of bars) barMap[bar.id] = bar;
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if (!barDocs.length) {
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const newBarDocs = bars.filter(b => b.isNew && !b.deleted).map(b => _buildNewBarDoc(b));
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for (const b of bars.filter(b => b.isNew && !b.deleted)) log.push({ level: 'changed', path: `bar / ${b.id}` });
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return { text: [patchedHeader, ...newBarDocs].join(SEP), log };
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}
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let passedThrough = 0;
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const patchedBarDocs = [];
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for (const doc of barDocs) {
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const m = doc.match(/^_id:\s*(\S+)/m);
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if (!m) { passedThrough++; patchedBarDocs.push(doc); continue; }
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const bar = barMap[m[1]];
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if (!bar) { passedThrough++; patchedBarDocs.push(doc); continue; }
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if (bar.deleted) continue;
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if (!bar.isDirty) { passedThrough++; patchedBarDocs.push(doc); continue; }
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log.push({ level: 'changed', path: `bar / ${bar.id}` });
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patchedBarDocs.push(_patchBarMeta(doc, bar));
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}
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for (const bar of bars.filter(b => b.isNew && !b.deleted)) {
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patchedBarDocs.push(_buildNewBarDoc(bar));
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log.push({ level: 'changed', path: `bar / ${bar.id}` });
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}
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if (passedThrough > 0) {
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log.push({ level: 'info', message: `${passedThrough} bar document${passedThrough !== 1 ? 's' : ''} passed through unchanged` });
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}
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return { text: [patchedHeader, ...patchedBarDocs].join(SEP), log };
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}
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