VS Code extension that previews Archify diagrams from their JSON sources (live, as you type) and opens rendered Archify HTML in a viewer tab. Bundles the Archify 3.0.1 renderer and runs it on VS Code's Node runtime. Adds validation diagnostics, JSON schema help, source-link navigation, export saving, render-to-file and open-in-browser commands. Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
939 lines
42 KiB
JavaScript
939 lines
42 KiB
JavaScript
import path from 'node:path';
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import { fileURLToPath } from 'node:url';
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import { esc, renderDefinitions, renderSemanticSigil, textUnits } from '../shared/utils.mjs';
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import { animateAttr, focusEdgeAttrs, focusNodeAttrs, focusNodeTitle, loadDiagramWithBrandMarks, writeDiagram, svgAccessibleText, svgRootAttrs } from '../shared/cli.mjs';
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import { recordDiagnostic, throwDiagnosticProblems } from '../shared/diagnostics.mjs';
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import { createRouter } from '../architecture/routing.mjs';
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import { createLifecycleGridRouter } from './grid-routing.mjs';
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import { placeAutomaticLabels, reservedLabelRect } from '../architecture/labels.mjs';
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import { legendFootprint, resolveLegend, renderLegend as renderResolvedLegend } from '../shared/legend.mjs';
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import { availableNodeTextWidth, fittedNodeFontSize, minimumNodeTextWidth, nodeLabelLayout } from '../shared/text-fit.mjs';
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import { brandLabelFitWidth, brandMarkFor, brandMetadataFor, brandTopRailProblem, renderBrandMark } from '../shared/brand-marks.mjs';
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import { translateMessage as i18nText } from '../shared/i18n.mjs';
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import { DESKTOP_READER_DIAGRAM_WIDTH, MIN_PROJECTED_NODE_TEXT_PX } from '../shared/desktop-readability.mjs';
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import {
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asArray,
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isFinitePoint,
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rectsOverlap,
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cleanEndpointSideProblems,
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cleanFlowProblems,
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cleanCrossingProblems,
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cleanAmbiguousCorridorProblems,
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cleanBorderRunProblems,
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cleanRouteRhythmProblems,
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cleanLabelRouteClearanceProblems,
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cleanLabelCanvasContainmentProblems,
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suggestLabelObstacleFix,
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suggestLabelPairFix,
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anchor,
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automaticPortSpread,
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legacyDefaultFromSide as defaultFromSide,
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legacyDefaultToSide as defaultToSide,
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chosenSide,
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roundedPath,
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routePointsValue,
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authoredStraightRouteAttrs,
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labelPoint,
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arrowClassMap,
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edgeLabelAccent
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} from '../shared/geometry.mjs';
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const __dirname = path.dirname(fileURLToPath(import.meta.url));
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const { diagram: lifecycle, template, outPath, sourceEvidence } = await loadDiagramWithBrandMarks({
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rendererDir: __dirname,
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diagramType: 'lifecycle',
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defaultExample: 'agent-run.lifecycle.json'
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});
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// v2 sets state text one step larger; its canvas width is then budgeted
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// from the smallest fitted text so the desktop Reader keeps it legible.
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const stateTextFit = lifecycle.schema_version === 2 ? {
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labelPreferred: 11,
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labelMinimum: 9,
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sublabelPreferred: 8,
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sublabelMinimum: 7,
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tagPreferred: 8,
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tagMinimum: 7,
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step: 8,
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} : {
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labelPreferred: 10,
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labelMinimum: 8,
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sublabelPreferred: 7,
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sublabelMinimum: 6,
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tagPreferred: 7,
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tagMinimum: 6,
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step: 7,
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};
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// schema_version 2 replaces the three fixed bands (main/event/outcome, with
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// non-main lanes sharing one band and lower columns offset by +2) with one
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// row per populated lane on a shared 0..4 column grid. v1 keeps its exact
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// state geometry; only presentation (colors, markers, legend, sigil side)
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// is shared between versions.
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const isV2 = lifecycle.schema_version === 2;
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const authoredViewBox = lifecycle.meta?.viewBox;
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const layout = {
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phaseY: 126,
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eventY: 278,
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outcomeY: 450,
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phaseW: 118,
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phaseH: 62,
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eventW: 126,
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eventH: 58,
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outcomeW: 118,
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outcomeH: 58,
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phaseXs: [94, 248, 402, 556, 710],
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eventXs: [402, 556, 710],
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outcomeXs: [402, 556, 710]
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};
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const layoutV2 = {
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stateW: 140,
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stateH: 64,
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marginX: 60,
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minGap: 64,
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floorGap: 44,
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firstRowTop: 56,
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rowPitch: 184,
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};
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function transitionLabelWidth(transition) {
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const longestLine = Math.max(textUnits(transition.label), textUnits(transition.note || ''));
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return Math.max(32, longestLine * 4.9 + 12);
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}
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function stateFontSizes(state, width) {
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return {
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label: fittedNodeFontSize(state.label, brandLabelFitWidth(state, width), stateTextFit.labelPreferred, stateTextFit.labelMinimum),
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sublabel: fittedNodeFontSize(state.sublabel, width, stateTextFit.sublabelPreferred, stateTextFit.sublabelMinimum),
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tag: fittedNodeFontSize(state.tag, width, stateTextFit.tagPreferred, stateTextFit.tagMinimum),
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};
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}
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// v2 column centers. A gap between two columns widens until the label of a
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// same-row neighbour transition fits beside its line; the whole canvas then
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// stays inside the desktop readability budget of its smallest state text.
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const v2ColumnCenters = (() => {
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if (!isV2) return [];
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const authored = asArray(lifecycle.states);
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const widths = [0, 1, 2, 3, 4].map((col) => Math.max(
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layoutV2.stateW, ...authored.filter((state) => state.col === col).map((state) => state.width || 0),
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));
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const cols = authored.map((state) => state.col).filter((col) => Number.isInteger(col) && col >= 0 && col <= 4);
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const lastCol = cols.length ? Math.max(...cols) : 0;
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const gaps = [0, 1, 2, 3].map(() => layoutV2.minGap);
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const byId = new Map(authored.map((state) => [state.id, state]));
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for (const transition of asArray(lifecycle.transitions)) {
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const [from, to] = [byId.get(transition.from), byId.get(transition.to)];
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if (!(transition.label || transition.note) || !from || !to || from.lane !== to.lane
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|| !Number.isInteger(from.col) || !Number.isInteger(to.col) || Math.abs(from.col - to.col) !== 1) continue;
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const gap = Math.min(from.col, to.col);
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if (gap >= 0 && gap < 4) gaps[gap] = Math.max(gaps[gap], Math.ceil(transitionLabelWidth(transition) + 24));
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}
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const smallestText = Math.min(stateTextFit.step, ...authored.flatMap((state) => (
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Object.values(stateFontSizes(state, state.width || layoutV2.stateW))
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)));
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const budget = Math.floor(DESKTOP_READER_DIAGRAM_WIDTH * smallestText / MIN_PROJECTED_NODE_TEXT_PX);
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const fixed = layoutV2.marginX * 2 + widths.slice(0, lastCol + 1).reduce((sum, width) => sum + width, 0);
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const used = gaps.slice(0, lastCol);
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const excess = fixed + used.reduce((sum, gap) => sum + gap, 0) - budget;
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const slack = used.reduce((sum, gap) => sum + gap - layoutV2.floorGap, 0);
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if (excess > 0 && slack > 0) {
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const ratio = Math.min(1, excess / slack);
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for (let index = 0; index < used.length; index += 1) {
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gaps[index] = Math.floor(gaps[index] - (gaps[index] - layoutV2.floorGap) * ratio);
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}
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}
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const centers = [];
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let x = layoutV2.marginX;
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for (let col = 0; col <= 4; col += 1) {
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centers.push(x + widths[col] / 2);
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x += widths[col] + (gaps[col] ?? 0);
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}
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return centers;
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})();
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// Rows render in authored lane order with `main` first and `terminal` last;
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// lanes without states get no row and no title.
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function laneRowOrder() {
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const lanes = asArray(lifecycle.lanes);
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const populated = new Set(asArray(lifecycle.states).map((state) => state.lane));
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const ordered = [];
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if (populated.has('main')) ordered.push('main');
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for (const lane of lanes) {
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if (lane.id !== 'main' && lane.id !== 'terminal' && populated.has(lane.id)) ordered.push(lane.id);
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}
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if (populated.has('terminal')) ordered.push('terminal');
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return ordered;
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}
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const v2RowTop = new Map(isV2
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? laneRowOrder().map((laneId, index) => [laneId, layoutV2.firstRowTop + index * layoutV2.rowPitch])
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: []);
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const typeClass = {
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start: 'c-frontend',
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active: 'c-frontend',
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waiting: 'c-cloud',
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decision: 'c-database',
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success: 'c-backend',
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failure: 'c-security',
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neutral: 'c-external',
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external: 'c-external'
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};
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const textClass = {
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start: 't-frontend',
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active: 't-frontend',
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waiting: 't-cloud',
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decision: 't-database',
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success: 't-backend',
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failure: 't-security',
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neutral: 't-muted',
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external: 't-muted'
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};
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// Lane semantics are fixed: lane id "main" maps to the top phase band, lane id
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// "terminal" maps to the bottom outcome band, and every other lane shares the
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// middle event band (separated visually via yOffset). v1 only.
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function bandFor(lane) {
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if (lane === 'main') return 'phase';
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if (lane === 'terminal') return 'outcome';
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return 'event';
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}
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function measureState(state) {
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let width;
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let height;
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let cx;
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let y;
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if (isV2) {
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width = state.width || layoutV2.stateW;
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height = state.height || layoutV2.stateH;
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cx = v2ColumnCenters[state.col] ?? NaN;
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y = (v2RowTop.get(state.lane) ?? NaN) + (state.yOffset || 0);
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} else {
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const isPhase = bandFor(state.lane) === 'phase';
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const isOutcome = bandFor(state.lane) === 'outcome';
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width = state.width || (isPhase ? layout.phaseW : isOutcome ? layout.outcomeW : layout.eventW);
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height = state.height || (isPhase ? layout.phaseH : isOutcome ? layout.outcomeH : layout.eventH);
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const xs = isPhase ? layout.phaseXs : isOutcome ? layout.outcomeXs : layout.eventXs;
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cx = xs[state.col] ?? xs[xs.length - 1];
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y = (
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isPhase ? layout.phaseY :
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isOutcome ? layout.outcomeY :
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layout.eventY
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) + (state.yOffset || 0);
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}
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return {
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...state,
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width,
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height,
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x: cx - width / 2,
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y,
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cx,
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cy: y + height / 2
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};
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}
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const states = new Map(asArray(lifecycle.states).map((state) => [state.id, measureState(state)]));
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const plannedTransitions = asArray(lifecycle.transitions).filter(plannerRouted);
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const v2Rows = laneRowOrder();
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const v2RowOf = (state) => (v2Rows.includes(state.lane) ? v2Rows.indexOf(state.lane) : undefined);
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let useGridRouter = isV2;
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if (isV2) {
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// Route once to learn how many horizontal tracks each row gap carries,
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// then open every gap to fit them before the final routing pass.
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const probe = createLifecycleGridRouter(states, plannedTransitions, {
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rowOf: v2RowOf, columnXs: v2ColumnCenters,
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});
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// Compatible pins keep the grid layout. A conflicting pin sends the whole
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// scene to the side-aware planner so all edges still share port spreading
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// and obstacle reservations.
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useGridRouter = plannedTransitions.every(transition => {
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const sides = probe.connectionSides(transition);
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return ['fromSide', 'toSide'].every(key => !transition[key] || transition[key] === 'auto' || transition[key] === sides[key]);
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});
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let top = layoutV2.firstRowTop;
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v2Rows.forEach((laneId, index) => {
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const rowHeight = Math.max(layoutV2.stateH, ...[...states.values()]
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.filter((state) => state.lane === laneId)
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.map((state) => state.y + state.height - v2RowTop.get(laneId)));
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v2RowTop.set(laneId, top);
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top += rowHeight + Math.max(layoutV2.rowPitch - layoutV2.stateH, useGridRouter ? probe.gapHeight(index) : 0);
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});
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for (const state of asArray(lifecycle.states)) states.set(state.id, measureState(state));
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}
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const laneLabels = new Map(asArray(lifecycle.lanes).map((lane) => [lane.id, lane.label]));
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const authoredOutgoing = new Set(asArray(lifecycle.transitions).map((transition) => transition.from));
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// A state with no authored outgoing transition is terminal in the UML sense.
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// v1 main states rely on the implied phase rail, so a main state is only final
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// at the furthest occupied main column; every other v1 lane is explicit.
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function isFinal(state) {
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if (authoredOutgoing.has(state.id)) return false;
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if (isV2) return true;
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if (bandFor(state.lane) !== 'phase') return true;
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const mainCols = [...states.values()].filter((s) => bandFor(s.lane) === 'phase').map((s) => s.col);
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return state.col === Math.max(...mainCols);
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}
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const LEGEND_CATALOG = [
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'start',
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'active',
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'waiting',
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'decision',
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'success',
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'failure',
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'neutral',
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'external',
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].map((kind) => ({
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kind,
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label: i18nText(lifecycle.meta.locale, `legend.lifecycle.${kind}`),
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swatchWidth: kind === 'start' ? 26 : undefined,
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}));
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// Entries exist before the canvas so an auto-sized v2 viewBox can reserve the
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// measured legend rows below the last row instead of painting over them.
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// The structural `final` entry explains the double border; it follows the
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// kind entries and disappears with them, so a hidden legend stays empty.
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function legendCatalog() {
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const presentKinds = new Set([...states.values()].map((state) => state.type));
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const entries = resolveLegend(lifecycle.meta?.legend, LEGEND_CATALOG, presentKinds);
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if (!entries.length || ![...states.values()].some(isFinal)) return entries;
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return [...entries, {
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kind: 'final',
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label: i18nText(lifecycle.meta.locale, 'legend.lifecycle.final'),
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interactive: false,
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present: true,
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swatchWidth: 16,
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}];
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}
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const resolvedLegendEntries = legendCatalog();
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let viewBox;
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if (isV2 && !authoredViewBox) {
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const finite = [...states.values()];
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const maxRight = Math.max(0, ...finite.map((state) => state.cx + state.width / 2).filter(Number.isFinite));
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const width = Math.max(640, Math.ceil(maxRight + layoutV2.marginX));
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const footprint = legendFootprint(resolvedLegendEntries, { width: width - 80 });
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const statesBottom = Math.max(0, ...finite.map((state) => state.y + state.height).filter(Number.isFinite));
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viewBox = [width, Math.ceil(statesBottom + footprint.extraHeight + 96)];
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} else {
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viewBox = authoredViewBox || [980, 660];
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}
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const legendExtraHeight = legendFootprint(resolvedLegendEntries, { width: viewBox[0] - 80 }).extraHeight;
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function legendY() {
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return viewBox[1] - 36;
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}
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// Keep the authored state-placement contract independent from the measured
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// legend's lower baseline. Moving legend chrome must not admit new state
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// geometry into the reserved outcome/legend band.
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function lifecycleAreaBottom() {
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return isV2 ? viewBox[1] - legendExtraHeight - 96 : viewBox[1] - 122;
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}
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const stateSteps = new Map();
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for (const [index, transition] of asArray(lifecycle.transitions).entries()) {
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if (!stateSteps.has(transition.from)) stateSteps.set(transition.from, index);
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if (!stateSteps.has(transition.to)) stateSteps.set(transition.to, index + 1);
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}
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for (const [index, state] of asArray(lifecycle.states).entries()) {
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if (!stateSteps.has(state.id)) stateSteps.set(state.id, index);
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}
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function validateLifecycle() {
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const problems = [];
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if (states.size !== asArray(lifecycle.states).length) problems.push('State ids must be unique.');
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// The three bands are fixed at y=112/264/436. Preserve the original
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// outcome/legend reserve even though measured legend rows now sit lower.
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// v2 derives its canvas from rendered rows, so the floor does not apply.
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if (!isV2 && lifecycleAreaBottom() + 4 < 448) {
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problems.push(`viewBox height ${viewBox[1]} is too short for the fixed band layout — set meta.viewBox[1] to at least 566.`);
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}
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const laneIds = new Set(asArray(lifecycle.lanes).map((lane) => lane.id));
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if (laneIds.size !== asArray(lifecycle.lanes).length) problems.push('Lane ids must be unique.');
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if (!laneIds.has('main')) {
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problems.push(isV2
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? 'Lifecycle diagrams need a lane with id "main" (the first row). Lane ids "main" and "terminal" are reserved: "main" renders as the first row, "terminal" as the last, and every other lane in authored order.'
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: 'Lifecycle diagrams need a lane with id "main" (the phase rail). Lane ids "main" and "terminal" are reserved: "main" maps to the top phase band, "terminal" to the bottom outcome band, and all other lanes share the middle event band.');
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}
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for (const state of states.values()) {
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if (!laneIds.has(state.lane)) {
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problems.push(`State "${state.id}" uses unknown lane "${state.lane}".`);
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continue;
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}
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if (isV2) {
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if (!Number.isInteger(state.col) || state.col < 0 || state.col > 4) {
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problems.push(`State "${state.id}" uses invalid column ${state.col} — every lifecycle row has integer columns 0..4.`);
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continue;
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}
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} else {
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const band = bandFor(state.lane);
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const maxCol = band === 'phase'
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? layout.phaseXs.length
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: band === 'outcome'
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? layout.outcomeXs.length
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: layout.eventXs.length;
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if (!Number.isInteger(state.col) || state.col < 0 || state.col >= maxCol) {
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problems.push(`State "${state.id}" uses invalid column ${state.col} — the ${band} band has integer columns 0..${maxCol - 1}.`);
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continue;
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}
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}
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if (!isFinitePoint(state.x, state.y, state.cx, state.cy)) {
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problems.push(`State "${state.id}" produced non-finite coordinates — check col, width, height, and yOffset are numbers.`);
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continue;
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}
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if (state.x < (isV2 ? 28 : 32) || state.x + state.width > viewBox[0] - (isV2 ? 28 : 32)) {
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problems.push(`State "${state.id}" exceeds the horizontal bounds of the diagram — reduce state.width${isV2 ? ', lower its col,' : ''} or increase meta.viewBox[0].`);
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}
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if (state.y < (isV2 ? 44 : 64) || state.y + state.height > lifecycleAreaBottom()) {
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problems.push(`State "${state.id}" exceeds the vertical lifecycle area — keep y between ${isV2 ? 44 : 64} and ${lifecycleAreaBottom()} (adjust yOffset or increase meta.viewBox[1]).`);
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}
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const estLabelW = textUnits(state.label) * 6.2;
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if (estLabelW > state.width + 6) {
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problems.push(`Label "${state.label}" (~${Math.round(estLabelW)}px) is wider than state "${state.id}" (${state.width}px) — shorten the label or increase state.width.`);
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}
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const brandRailProblem = brandTopRailProblem(state, state.width, 8, 'State');
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if (brandRailProblem) problems.push(brandRailProblem);
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// sublabel and tag render as single unwrapped <text> elements; shrink-to-fit
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// handles the ordinary case, this rejects what it cannot rescue.
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const availableTextW = availableNodeTextWidth(state.width);
|
|
for (const [field, value, minimum] of [
|
|
['Sublabel', state.sublabel, stateTextFit.sublabelMinimum],
|
|
['Tag', state.tag, stateTextFit.tagMinimum],
|
|
]) {
|
|
if (!value) continue;
|
|
const minimumW = minimumNodeTextWidth(value, minimum);
|
|
if (minimumW > availableTextW) {
|
|
problems.push(`${field} "${value}" needs ~${Math.ceil(minimumW)}px at the ${minimum}px legible minimum, but state "${state.id}" provides ${availableTextW}px — shorten the ${field.toLowerCase()} or increase state.width.`);
|
|
}
|
|
}
|
|
}
|
|
|
|
// v1: all non-main/non-terminal lanes share the same y band, so the overlap
|
|
// check must run across lanes — not per-lane. v2 gives each lane its own
|
|
// row, so only same-row neighbours can collide, but the shared check still
|
|
// covers custom widths and yOffset nudges.
|
|
const allStates = [...states.values()];
|
|
for (let i = 0; i < allStates.length; i += 1) {
|
|
for (let j = i + 1; j < allStates.length; j += 1) {
|
|
if (rectsOverlap(allStates[i], allStates[j], 10)) {
|
|
problems.push(`States "${allStates[i].id}" and "${allStates[j].id}" are less than 10px apart — move one to another col or separate them with yOffset${isV2 ? '.' : ' (lanes other than "main"/"terminal" share one band).'}`);
|
|
}
|
|
}
|
|
}
|
|
|
|
for (const transition of asArray(lifecycle.transitions)) {
|
|
if (!states.has(transition.from)) problems.push(`Transition "${transition.label || transition.from}" references unknown source "${transition.from}".`);
|
|
if (!states.has(transition.to)) problems.push(`Transition "${transition.label || transition.to}" references unknown target "${transition.to}".`);
|
|
if (states.has(transition.from) && states.has(transition.to)) {
|
|
const routed = pathFor(transition);
|
|
const [start, end] = [routed.points[0], routed.points[routed.points.length - 1]];
|
|
const distance = Math.hypot(end[0] - start[0], end[1] - start[1]);
|
|
if (distance < 32) problems.push(`Transition "${transition.label || `${transition.from}->${transition.to}`}" is too short (${Math.round(distance)}px; minimum 32px) — route it through a channel or drop its label.`);
|
|
}
|
|
}
|
|
|
|
// Authored via points are authoritative in schema v1, including under a
|
|
// quality profile. Preserve and render them exactly: applying the endpoint
|
|
// gate would either reject an existing typed input or require silently
|
|
// falsifying its geometry. Automatic routes still receive the side gate.
|
|
problems.push(...cleanEndpointSideProblems({
|
|
relations: lifecycle.transitions,
|
|
endpointIds: new Set(states.keys()),
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
fromSideFor: (transition) => transitionSides(transition).fromSide,
|
|
toSideFor: (transition) => transitionSides(transition).toSide,
|
|
shouldCheckRelation: (transition) => !Array.isArray(transition.via),
|
|
routeHint: 'keep automatic routing, or choose fromSide/toSide and via points whose first and final segments cross state borders perpendicularly',
|
|
}));
|
|
problems.push(...cleanFlowProblems({
|
|
relations: lifecycle.transitions,
|
|
obstacles: states.values(),
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
obstacleKind: 'state',
|
|
routeHint: 'adjust fromSide/toSide, set route/via or channelX/channelY, or move the state with col/yOffset'
|
|
}));
|
|
problems.push(...cleanCrossingProblems({
|
|
relations: lifecycle.transitions,
|
|
endpointIds: new Set(states.keys()),
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
profile: lifecycle.meta?.quality_profile,
|
|
// Planner routes render with the opaque crossover halo, like architecture.
|
|
crossingResolved: (left, right) => plannerRouted(left) && plannerRouted(right),
|
|
routeHint: 'adjust route/via or channelX/channelY so the transitions use separate lifecycle corridors'
|
|
}));
|
|
problems.push(...cleanAmbiguousCorridorProblems({
|
|
relations: lifecycle.transitions,
|
|
endpointIds: new Set(states.keys()),
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
profile: lifecycle.meta?.quality_profile,
|
|
routeHint: 'adjust route/via or channelX/channelY so unrelated transitions do not visually merge'
|
|
}));
|
|
// Lifecycle bands are dashed reading guides, not closed containers. Keep the
|
|
// shared contract wired with an explicit empty frame set so future typed
|
|
// lifecycle containers cannot accidentally inherit presentation geometry.
|
|
problems.push(...cleanBorderRunProblems({
|
|
relations: lifecycle.transitions,
|
|
endpointIds: new Set(states.keys()),
|
|
frames: [],
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
profile: lifecycle.meta?.quality_profile
|
|
}));
|
|
problems.push(...cleanRouteRhythmProblems({
|
|
relations: lifecycle.transitions,
|
|
endpointIds: new Set(states.keys()),
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
profile: lifecycle.meta?.quality_profile,
|
|
routeHint: 'move route/via or channel coordinates so each lifecycle turn has a readable run-up'
|
|
}));
|
|
|
|
const labelRects = transitionLabelRects();
|
|
if (lifecycle.meta?.quality_profile === 'showcase') {
|
|
for (const rect of labelRects) {
|
|
for (const title of bandGeometry()) {
|
|
if (!rectsOverlap(rect, title)) continue;
|
|
const message = `Transition ${rect.relationIndex} label "${rect.label}" overlaps lifecycle band title "${title.label}" — move the label with labelAt/labelDx/labelDy/labelSegment or provide more space.`;
|
|
recordDiagnostic({
|
|
code: 'composition/label-band-title-overlap', severity: 'error', message,
|
|
subject: { diagramType: 'lifecycle', collection: 'transitions', index: rect.relationIndex, from: rect.relation.from, to: rect.relation.to },
|
|
evidence: { labelRect: { x: rect.x, y: rect.y, width: rect.width, height: rect.height }, bandTitle: title },
|
|
supportedFixes: ['move the transition label with labelAt/labelDx/labelDy/labelSegment while preserving its text'],
|
|
});
|
|
problems.push(message);
|
|
}
|
|
}
|
|
}
|
|
for (const rect of labelRects) {
|
|
for (const state of states.values()) {
|
|
if (rectsOverlap(rect, state, -2)) {
|
|
problems.push(`Label "${rect.label}" overlaps state "${state.id}" — adjust labelDx/labelDy/labelSegment or set labelAt.\n${suggestLabelObstacleFix(rect, rect.lx, rect.ly, state, 'state', viewBox, states.values())}`);
|
|
}
|
|
}
|
|
}
|
|
for (let i = 0; i < labelRects.length; i += 1) {
|
|
for (let j = i + 1; j < labelRects.length; j += 1) {
|
|
if (rectsOverlap(labelRects[i], labelRects[j], -2)) {
|
|
problems.push(`Labels "${labelRects[i].label}" and "${labelRects[j].label}" overlap — adjust labelDx/labelDy.\n${suggestLabelPairFix(labelRects[i], labelRects[j])}`);
|
|
}
|
|
}
|
|
}
|
|
problems.push(...cleanLabelRouteClearanceProblems({
|
|
relations: lifecycle.transitions,
|
|
labels: labelRects,
|
|
endpointIds: new Set(states.keys()),
|
|
pathFor,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
profile: lifecycle.meta?.quality_profile,
|
|
}));
|
|
problems.push(...cleanLabelCanvasContainmentProblems({
|
|
labels: labelRects,
|
|
viewBox,
|
|
diagramType: 'lifecycle',
|
|
relationCollection: 'transitions',
|
|
profile: lifecycle.meta?.quality_profile,
|
|
}));
|
|
|
|
if (problems.length) {
|
|
throwDiagnosticProblems('Lifecycle layout validation failed', problems, {
|
|
subject: { diagramType: 'lifecycle' },
|
|
});
|
|
}
|
|
}
|
|
|
|
function routeVia(transition, from, to, start, end, fromSide, toSide) {
|
|
if (transition.via) return transition.via;
|
|
switch (transition.route || 'auto') {
|
|
case 'straight':
|
|
return [];
|
|
case 'drop': {
|
|
const y = transition.channelY ?? (start[1] + end[1]) / 2;
|
|
return [[start[0], y], [end[0], y]];
|
|
}
|
|
case 'bottom-channel': {
|
|
const y = transition.channelY ?? Math.max(from.y + from.height, to.y + to.height) + 34;
|
|
return [[start[0], y], [end[0], y]];
|
|
}
|
|
case 'top-channel': {
|
|
const y = transition.channelY ?? Math.min(from.y, to.y) - 28;
|
|
return [[start[0], y], [end[0], y]];
|
|
}
|
|
case 'right-channel': {
|
|
const x = transition.channelX ?? Math.max(from.x + from.width, to.x + to.width) + 36;
|
|
return [[x, start[1]], [x, end[1]]];
|
|
}
|
|
case 'left-channel': {
|
|
const x = transition.channelX ?? Math.min(from.x, to.x) - 36;
|
|
return [[x, start[1]], [x, end[1]]];
|
|
}
|
|
case 'auto':
|
|
default: {
|
|
if (start[0] === end[0] || start[1] === end[1]) return [];
|
|
const fromVertical = fromSide === 'top' || fromSide === 'bottom';
|
|
const toVertical = toSide === 'top' || toSide === 'bottom';
|
|
if (fromVertical !== toVertical) {
|
|
return [fromVertical ? [start[0], end[1]] : [end[0], start[1]]];
|
|
}
|
|
if (fromVertical) {
|
|
const y = transition.channelY ?? (start[1] + end[1]) / 2;
|
|
return [[start[0], y], [end[0], y]];
|
|
}
|
|
const x = transition.channelX ?? (start[0] + end[0]) / 2;
|
|
return [[x, start[1]], [x, end[1]]];
|
|
}
|
|
}
|
|
}
|
|
|
|
const pathCache = new Map();
|
|
|
|
// A transition without via, channel, or a lifecycle route preset is routed by
|
|
// the obstacle-aware planner shared with architecture, so a first draft that
|
|
// leaves routing to the renderer does not cross unrelated states or produce
|
|
// micro jogs. Authored via/route/channel geometry keeps the lifecycle presets.
|
|
function plannerRouted(transition) {
|
|
return !transition.via
|
|
&& (!transition.route || transition.route === 'auto')
|
|
&& transition.channelX === undefined
|
|
&& transition.channelY === undefined;
|
|
}
|
|
|
|
// v2 states sit on a fixed row/column grid, so automatic transitions use the
|
|
// dedicated orthogonal grid router; v1 keeps the shared obstacle planner.
|
|
const planner = useGridRouter ? createLifecycleGridRouter(states, plannedTransitions, {
|
|
rowOf: v2RowOf,
|
|
columnXs: v2ColumnCenters,
|
|
}) : createRouter(states, plannedTransitions, {
|
|
labelRectFor: (transition, points, { routes, labels }) => ((transition.label || transition.note) ? reservedLabelRect({
|
|
label: { relation: transition, label: transition.label || transition.note, ...transitionLabelBoxAt(transition, labelPoint(transition, points)) },
|
|
points,
|
|
routes: routes.map((route, index) => ({ relationIndex: index, points: route })),
|
|
labels,
|
|
components: [...states.values()],
|
|
viewBox,
|
|
placementBottom: lifecycleAreaBottom(),
|
|
}) : null),
|
|
});
|
|
|
|
function transitionSides(transition) {
|
|
if (plannerRouted(transition)) return planner.connectionSides(transition);
|
|
const from = states.get(transition.from);
|
|
const to = states.get(transition.to);
|
|
return {
|
|
fromSide: chosenSide(transition.fromSide, defaultFromSide(from, to)),
|
|
toSide: chosenSide(transition.toSide, defaultToSide(from, to)),
|
|
};
|
|
}
|
|
|
|
const automaticPorts = automaticPortSpread(
|
|
asArray(lifecycle.transitions).filter((transition) => !plannerRouted(transition)),
|
|
states,
|
|
{ sideFor: (transition, endpoint) => transitionSides(transition)[endpoint === 'source' ? 'fromSide' : 'toSide'] },
|
|
);
|
|
|
|
function pathFor(transition) {
|
|
if (pathCache.has(transition)) return pathCache.get(transition);
|
|
if (plannerRouted(transition)) {
|
|
let routed = planner.pathFor(transition);
|
|
if (useGridRouter) routed = { d: roundedPath(routed, transition.cornerRadius ?? 10), points: routed };
|
|
pathCache.set(transition, routed);
|
|
return routed;
|
|
}
|
|
const from = states.get(transition.from);
|
|
const to = states.get(transition.to);
|
|
const ports = automaticPorts.get(transition);
|
|
const { fromSide, toSide } = transitionSides(transition);
|
|
const start = ports?.from || anchor(from, fromSide);
|
|
const end = ports?.to || anchor(to, toSide);
|
|
let via = routeVia(transition, from, to, start, end, fromSide, toSide);
|
|
if (ports && !via.length && Math.abs(start[0] - end[0]) >= 4 && Math.abs(start[1] - end[1]) >= 4) {
|
|
const midX = (start[0] + end[0]) / 2;
|
|
via = [[midX, start[1]], [midX, end[1]]];
|
|
}
|
|
const points = [start, ...via, end];
|
|
const routed = {
|
|
d: roundedPath(points, transition.cornerRadius ?? 10),
|
|
points
|
|
};
|
|
pathCache.set(transition, routed);
|
|
return routed;
|
|
}
|
|
|
|
const resolvedLabelPoints = new Map();
|
|
|
|
function transitionLabelBox(transition) {
|
|
return transitionLabelBoxAt(
|
|
transition,
|
|
resolvedLabelPoints.get(transition) || labelPoint(transition, pathFor(transition).points),
|
|
);
|
|
}
|
|
|
|
function transitionLabelBoxAt(transition, [lx, ly]) {
|
|
const width = transitionLabelWidth(transition);
|
|
const height = transition.label && transition.note ? 27 : 16;
|
|
return { x: lx - width / 2, y: ly - 11, width, height, lx, ly };
|
|
}
|
|
|
|
function transitionLabelRects() {
|
|
const rects = [];
|
|
for (const [relationIndex, transition] of asArray(lifecycle.transitions).entries()) {
|
|
if (!(transition.label || transition.note) || !states.has(transition.from) || !states.has(transition.to)) continue;
|
|
rects.push({ relation: transition, relationIndex, label: transition.label || transition.note, ...transitionLabelBox(transition) });
|
|
}
|
|
return rects;
|
|
}
|
|
|
|
// Showcase drafts leave label positions to the renderer too: move an unpinned
|
|
// label off other routes and states instead of reporting a clearance defect.
|
|
if (lifecycle.meta?.quality_profile === 'showcase') {
|
|
const placed = placeAutomaticLabels({
|
|
labels: transitionLabelRects(),
|
|
routes: asArray(lifecycle.transitions).flatMap((transition, relationIndex) => (
|
|
states.has(transition.from) && states.has(transition.to)
|
|
? [{ relationIndex, points: pathFor(transition).points }] : []
|
|
)),
|
|
components: [...states.values()],
|
|
titles: bandGeometry(),
|
|
viewBox,
|
|
placementBottom: lifecycleAreaBottom(),
|
|
keepFallbackNearRoute: isV2,
|
|
gridSweep: isV2,
|
|
});
|
|
for (const rect of placed) resolvedLabelPoints.set(rect.relation, [rect.lx, rect.ly]);
|
|
}
|
|
|
|
function bandGeometry() {
|
|
if (isV2) {
|
|
// One row header per rendered row, set vertically in the left gutter so
|
|
// routes entering a row never run through its title.
|
|
return laneRowOrder().map((laneId, index) => {
|
|
const cy = v2RowTop.get(laneId) + layoutV2.stateH / 2;
|
|
const label = laneLabels.get(laneId) || laneId;
|
|
const length = textUnits(label) * 6.2;
|
|
return { index, label, vertical: true, cx: 18, cy, x: 11, y: cy - length / 2, width: 14, height: length };
|
|
});
|
|
}
|
|
const lanes = asArray(lifecycle.lanes);
|
|
const mainLane = lanes.find((lane) => lane.id === 'main');
|
|
const terminalLane = lanes.find((lane) => lane.id === 'terminal');
|
|
const eventLanes = lanes.filter((lane) => lane.id !== 'main' && lane.id !== 'terminal');
|
|
const populated = new Set([...states.values()].map((state) => bandFor(state.lane)));
|
|
return [
|
|
mainLane?.label || 'Lifecycle phases',
|
|
eventLanes.length ? eventLanes.map((lane) => lane.label).join(' + ') : 'Interruptions + recovery',
|
|
terminalLane?.label || 'Outcomes'
|
|
].map((title, index) => {
|
|
const baseline = [100, 252, 424][index];
|
|
const label = `${String(index + 1).padStart(2, '0')} / ${title}`;
|
|
return { index, band: ['phase', 'event', 'outcome'][index], label, x: 72, y: baseline - 11, width: textUnits(label) * 6.2, height: 14, baseline };
|
|
}).filter((band) => populated.has(band.band));
|
|
}
|
|
|
|
function renderBands() {
|
|
return bandGeometry().map((band) => (band.vertical
|
|
? ` <text x="${band.cx}" y="${band.cy}" class="t-dim" font-size="10" font-weight="600" writing-mode="vertical-rl" text-anchor="middle">${esc(band.label)}</text>`
|
|
: ` <path d="M ${band.x} ${band.baseline + 12} L ${viewBox[0] - band.x} ${band.baseline + 12}" class="a-default" stroke-width="0.8" stroke-dasharray="3,8"/>
|
|
<text x="${band.x}" y="${band.baseline}" class="t-dim" font-size="10" font-weight="600">${esc(band.label)}</text>`)).join('\n');
|
|
}
|
|
|
|
function renderState(state) {
|
|
const fill = typeClass[state.type] || typeClass.neutral;
|
|
const accent = textClass[state.type] || 't-muted';
|
|
const hasSub = state.sublabel != null && state.sublabel !== '';
|
|
const { label: labelFontSize, sublabel: sublabelFontSize, tag: tagFontSize } = stateFontSizes(state, state.width);
|
|
const textRows = [{ text: state.label, font: labelFontSize, y: isV2 ? 23 : 21 }];
|
|
if (hasSub) textRows.push({ text: state.sublabel, font: sublabelFontSize, y: isV2 ? 40 : 37 });
|
|
if (state.tag) textRows.push({ text: state.tag, font: tagFontSize, y: state.height - (isV2 ? 12 : 11) });
|
|
const hasBrand = Boolean(brandMarkFor(state));
|
|
const hasSource = Boolean(sourceEvidence?.nodes?.[state.id]?.length);
|
|
const labelLayout = nodeLabelLayout({ width: state.width, height: state.height, rows: textRows,
|
|
brand: hasBrand, source: hasSource, side: 'left', step: state.step });
|
|
const sub = hasSub
|
|
? `\n <text data-detail="context" x="${state.cx}" y="${state.y + labelLayout.ys[1]}" class="t-muted" font-size="${sublabelFontSize}" text-anchor="middle">${esc(state.sublabel)}</text>`
|
|
: '';
|
|
const tag = state.tag
|
|
? `\n <text data-detail="fine" x="${state.cx}" y="${state.y + labelLayout.ys[hasSub ? 2 : 1]}" class="${accent}" font-size="${tagFontSize}" text-anchor="middle">${esc(state.tag)}</text>`
|
|
: '';
|
|
const step = state.step
|
|
? `\n <text data-detail="fine" x="${state.x + 23}" y="${state.y + 14}" class="${accent}" font-size="${stateTextFit.step}" font-weight="700">${esc(state.step)}</text>`
|
|
: '';
|
|
const brand = renderBrandMark(state, { x: state.x + state.width - 22, y: state.y + 6 });
|
|
// UML pseudo-state markers: start states get an initial dot + arrow into
|
|
// the left border; states with no authored outgoing transition get a double
|
|
// border. Both are decorations, not focus/relationship edges.
|
|
const initialMarker = state.type === 'start'
|
|
? `\n <g aria-hidden="true" data-lifecycle-initial-marker="">
|
|
${initialMarkerShape(state.x - 22, state.x - 1, state.cy)}
|
|
</g>`
|
|
: '';
|
|
const finalBorder = isFinal(state)
|
|
? `\n <rect x="${state.x + 3}" y="${state.y + 3}" width="${state.width - 6}" height="${state.height - 6}" rx="4" class="${fill}" style="fill: none" stroke-width="1"/>`
|
|
: '';
|
|
const passport = {
|
|
kind: state.type,
|
|
sublabel: state.sublabel,
|
|
tag: state.tag,
|
|
context: laneLabels.get(state.lane) || i18nText(lifecycle.meta.locale, 'node.context.lifecycle'),
|
|
...brandMetadataFor(state),
|
|
};
|
|
return ` <g ${focusNodeAttrs(state.id, state.label, passport, lifecycle.meta.locale)}>
|
|
${focusNodeTitle(state.label, passport)}
|
|
<rect x="${state.x}" y="${state.y}" width="${state.width}" height="${state.height}" rx="7" class="c-mask"/>
|
|
<rect x="${state.x}" y="${state.y}" width="${state.width}" height="${state.height}" rx="7" class="${fill}"${animateAttr(lifecycle.meta, 'node', stateSteps.get(state.id))} stroke-width="1.5"/>${finalBorder}${initialMarker}
|
|
${renderSemanticSigil(state.type, { icon: state.icon, x: state.x + 6, y: state.y + labelLayout.sigilY, size: labelLayout.sigilSize })}${brand ? `\n ${brand}` : ''}${step}
|
|
<text data-node-label=""${hasSub ? ' data-detail-anchor=""' : ''} x="${state.x + labelLayout.x}" y="${state.y + labelLayout.ys[0]}" class="t-primary" font-size="${labelFontSize}" font-weight="600" text-anchor="middle">${esc(state.label)}</text>${sub}${tag}
|
|
</g>`;
|
|
}
|
|
|
|
// v2 replaces the implied phase rail with explicit topology: a forward
|
|
// transition between two main-lane states renders as the emphasized primary
|
|
// path unless the author chose another variant.
|
|
function effectiveVariant(transition) {
|
|
if (transition.variant) return transition.variant;
|
|
if (isV2) {
|
|
const from = states.get(transition.from);
|
|
const to = states.get(transition.to);
|
|
if (from?.lane === 'main' && to?.lane === 'main' && to.col > from.col) return 'emphasis';
|
|
}
|
|
return 'default';
|
|
}
|
|
|
|
function renderTransitionPath(transition, index) {
|
|
const variant = effectiveVariant(transition);
|
|
const [cls, marker] = arrowClassMap[variant] || arrowClassMap.default;
|
|
const routed = pathFor(transition);
|
|
const strokeWidth = transition.width || (variant === 'emphasis' ? (isV2 ? 1.6 : 2) : 1.1);
|
|
const automaticRoute = plannerRouted(transition);
|
|
const crossover = automaticRoute ? ' data-composition-crossover="halo"' : '';
|
|
const edge = ` <path ${focusEdgeAttrs(transition.from, transition.to, transition.label || transition.note, index, transition.id)} data-composition-points="${routePointsValue(routed.points)}"${crossover}${authoredStraightRouteAttrs(transition, routed.points)} d="${routed.d}" class="${cls}"${animateAttr(lifecycle.meta, 'edge', index)} stroke-width="${strokeWidth}" marker-end="url(#${marker})"/>`;
|
|
if (!automaticRoute) return edge;
|
|
// Same presentation-only wrapper as architecture: the mask underlay lets two
|
|
// planner routes cross legibly while the viewer still sees one semantic edge.
|
|
const underlay = ` <path data-graph-role="automatic-crossover-underlay" d="${routed.d}" fill="none" stroke="var(--mask)" stroke-width="${strokeWidth + 4}" stroke-linecap="round" stroke-linejoin="round" pointer-events="none"/>\n`;
|
|
return ` <g data-graph-role="automatic-crossover" style="--step:${index}">\n${underlay}${edge.replace(/^ /, ' ')}\n </g>`;
|
|
}
|
|
|
|
function renderTransitionLabel(transition, index) {
|
|
if (!(transition.label || transition.note)) return '';
|
|
const { lx, ly, width: labelW, height: labelH } = transitionLabelBox(transition);
|
|
const label = transition.label
|
|
? `\n <text x="${lx}" y="${ly}" class="${edgeLabelAccent(effectiveVariant(transition))}" font-size="8" text-anchor="middle">${esc(transition.label)}</text>`
|
|
: '';
|
|
const note = transition.note
|
|
? `\n <text data-detail="fine" x="${lx}" y="${ly + (transition.label ? 11 : 0)}" class="t-dim" font-size="7" text-anchor="middle">${esc(transition.note)}</text>`
|
|
: '';
|
|
return ` <g data-detail="${transition.label ? 'context' : 'fine'}" ${focusEdgeAttrs(transition.from, transition.to, transition.label || transition.note, index, transition.id)}>
|
|
<rect x="${lx - labelW / 2}" y="${ly - 11}" width="${labelW}" height="${labelH}" rx="4" class="c-mask"/>${label}${note}
|
|
</g>`;
|
|
}
|
|
|
|
// UML initial pseudo-state: a filled dot and a short arrow ending at `tipX`.
|
|
function initialMarkerShape(dotX, tipX, y) {
|
|
return `<circle cx="${dotX}" cy="${y}" r="4.5" style="fill: var(--arrow-emphasis)"/><path d="M ${dotX + 4.5} ${y} L ${tipX - 6} ${y}" class="a-emphasis" stroke-width="1.4"/><path d="M ${tipX - 7} ${y - 3.5} L ${tipX} ${y} L ${tipX - 7} ${y + 3.5} Z" style="fill: var(--arrow-emphasis)"/>`;
|
|
}
|
|
|
|
function renderSwatch(entry) {
|
|
// `start` is structural, not a color: its swatch is the same initial
|
|
// pseudo-state marker drawn on the canvas. `final` is a non-interactive
|
|
// structural entry (a double-border rect) appended when a final state exists.
|
|
if (entry.kind === 'start') {
|
|
return initialMarkerShape(entry.x + 4.5, entry.x + 24, entry.baseline - 3.5);
|
|
}
|
|
if (entry.kind === 'final') {
|
|
return `<rect x="${entry.x}" y="${entry.baseline - 8}" width="14" height="9" rx="2" class="c-external" stroke-width="1"/><rect x="${entry.x + 2.5}" y="${entry.baseline - 5.5}" width="9" height="4" rx="1" class="c-external" style="fill: none" stroke-width="0.8"/>`;
|
|
}
|
|
return `<rect x="${entry.x}" y="${entry.baseline - 8}" width="14" height="9" rx="2" class="${typeClass[entry.kind] || 'c-external'}" stroke-width="1"/>`;
|
|
}
|
|
|
|
function renderLegend() {
|
|
return renderResolvedLegend({
|
|
entries: resolvedLegendEntries,
|
|
locale: lifecycle.meta.locale,
|
|
layout: {
|
|
x: 40,
|
|
baselineY: legendY(),
|
|
width: viewBox[0] - 80,
|
|
minTitleY: lifecycleAreaBottom() + 8,
|
|
unfit: lifecycle.meta?.legend === undefined ? 'hide' : 'error',
|
|
diagramType: 'lifecycle',
|
|
},
|
|
renderSwatch,
|
|
});
|
|
}
|
|
|
|
// v1 only: the implied emphasis line behind main states. v2 topology is fully
|
|
// explicit, so the rail would double the authored forward transitions.
|
|
function renderLifecycleRail() {
|
|
if (isV2) return '';
|
|
const mainCols = [...states.values()]
|
|
.filter((state) => bandFor(state.lane) === 'phase')
|
|
.map((state) => state.col);
|
|
if (!mainCols.length) return '';
|
|
const railEnd = layout.phaseXs[mainCols.reduce((max, col) => Math.max(max, col))] + 38;
|
|
return ` <path data-lifecycle-rail="" d="M 154 ${layout.phaseY + 31} L ${railEnd} ${layout.phaseY + 31}" class="a-emphasis" stroke-width="2.2" marker-end="url(#arrowhead-emphasis)"/>`;
|
|
}
|
|
|
|
function renderSvg() {
|
|
// A renderer-sized canvas declares the intrinsic-height fit exactly like
|
|
// architecture: the default 980x660 band layout is below the 1.55 wide
|
|
// ratio, so without this the desktop Reader could neither narrow it nor
|
|
// scroll it and every default lifecycle failed the browser gate.
|
|
const readerFit = lifecycle.meta?.viewBox ? '' : ' data-reader-fit="intrinsic-height"';
|
|
return ` <svg viewBox="0 0 ${viewBox[0]} ${viewBox[1]}"${readerFit} ${svgRootAttrs(lifecycle.meta)}>
|
|
${svgAccessibleText(lifecycle.meta, 'lifecycle')}
|
|
${renderDefinitions()}
|
|
|
|
<!-- Background Grid -->
|
|
<rect width="100%" height="100%" fill="url(#grid)" />
|
|
|
|
<!-- Lifecycle bands -->
|
|
${renderBands()}
|
|
|
|
<!-- Primary lifecycle rail -->
|
|
${renderLifecycleRail()}
|
|
|
|
<!-- Transition paths -->
|
|
${asArray(lifecycle.transitions).map(renderTransitionPath).join('\n')}
|
|
|
|
<!-- States -->
|
|
${[...states.values()].map(renderState).join('\n\n')}
|
|
|
|
<!-- Transition labels -->
|
|
${asArray(lifecycle.transitions).map(renderTransitionLabel).join('\n')}
|
|
|
|
<!-- Legend -->
|
|
${renderLegend()}
|
|
</svg>`;
|
|
}
|
|
|
|
validateLifecycle();
|
|
writeDiagram({
|
|
outPath,
|
|
template,
|
|
diagramType: 'lifecycle',
|
|
meta: lifecycle.meta,
|
|
svg: renderSvg(),
|
|
cards: lifecycle.cards,
|
|
sourceEvidence,
|
|
});
|