fix(flowchart): bundle pure modules into single file for standalone window; v4.9.8

Amit Haridas
This commit is contained in:
2026-09-15 00:09:57 +05:30
parent 86d4c0d23a
commit ca5983e9ff
5 changed files with 970 additions and 10 deletions
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## Version ## Version
v4.9.7 v4.9.8
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# PanConverter - Updates & Changelog # PanConverter - Updates & Changelog
## Version 4.9.8 (2026-09-15)
### Fix
- **Standalone Flowchart Generator window: bundled pure modules into a single script.** Even after the v4.9.7 `window.FlowchartXxx = exported` guard inside each module's UMD wrapper, the user kept reporting `'Flowchart pure modules not loaded — verify script tags in src/flowchart-generator.html'` in the standalone window's status bar. Rather than chase the remaining environmental quirk (script-tag ordering, UMD `module` truthiness, or eval context differences between renderer processes), this release brute-forces the issue by inlining all four pure modules (shapes / mermaid / store / canvas) plus the controller bootstrap into a single file: `src/renderer/flowchart-bundle.js`.
- New `src/renderer/flowchart-bundle.js` — one IIFE, ~720 lines. Sets `window.FlowchartShapes`, `window.FlowchartMermaid`, `window.FlowchartStore`, `window.FlowchartCanvas` immediately, then runs the same controller bootstrap logic that `src/renderer/flowchart-controller.js` exposes.
- `src/flowchart-generator.html` now loads exactly one script tag (`<script src="renderer/flowchart-bundle.js"></script>`) instead of five. There is no cross-file ordering to get wrong and no UMD wrapper in the bundle path.
- The original individual files are kept untouched (`src/flowchart/flowchart-{shapes,mermaid,store,canvas}.js` and `src/renderer/flowchart-controller.js`). The legacy sidebar panel in `src/renderer.js` still loads them via CommonJS `require()` — fully orthogonal to the new bundle path.
- Internal name changes inside the bundle (e.g. `MERMAID_SHAPE_SYNTAX`, `STORE_NODE_KINDS`, `canvasSvgEl`) preserve public surface — the four `window.FlowchartXxx` exports match the v4.9.6 / v4.9.7 public shape exactly, so the existing 97 pure-module tests remain valid without changes.
## Version 4.9.7 (2026-09-14) ## Version 4.9.7 (2026-09-14)
### Fix ### Fix
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{ {
"name": "markdown-converter", "name": "markdown-converter",
"version": "4.9.7", "version": "4.9.8",
"description": "Professional Markdown editor and universal file converter with PDF editing, batch processing, and syntax highlighting", "description": "Professional Markdown editor and universal file converter with PDF editing, batch processing, and syntax highlighting",
"main": "src/main.js", "main": "src/main.js",
"scripts": { "scripts": {
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</div> </div>
<!-- <!--
v4.9.6 — pure-module load order matters. shapes first, then canvas v4.9.8 — bundle everything into one script. The four pure modules
(which depends on shapes), then store, then mermaid. Controller last (shapes / mermaid / store / canvas) plus the controller bootstrap
and consumes all four via window globals. live in src/renderer/flowchart-bundle.js. No cross-file script-tag
ordering, no UMD wrappers, no `require()` — the bundle sets the
four window globals before the controller's bootstrap() runs.
--> -->
<script src="flowchart/flowchart-shapes.js"></script> <script src="renderer/flowchart-bundle.js"></script>
<script src="flowchart/flowchart-mermaid.js"></script>
<script src="flowchart/flowchart-store.js"></script>
<script src="flowchart/flowchart-canvas.js"></script>
<script src="renderer/flowchart-controller.js"></script>
</body> </body>
</html> </html>
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/**
* v4.9.8 — Bundled single-file Flowchart Generator loader.
*
* Inlines the four pure modules (flowchart-shapes / flowchart-mermaid /
* flowchart-store / flowchart-canvas) plus the renderer controller
* (src/renderer/flowchart-controller.js) into one script. Loads as a single
* `<script src="renderer/flowchart-bundle.js">` tag in
* src/flowchart-generator.html.
*
* History:
* v4.9.6 — split modules into UMD wrappers; standalone window loaded each
* via `<script>` tags.
* v4.9.7 — added the `window.FlowchartXxx = exported` guard inside every
* UMD wrapper so the global survives the `module` truthy
* (nodeIntegration:true) case in the renderer.
* v4.9.8 — even with the v4.9.7 guards the user kept reporting
* 'modules not loaded' in the standalone window. Rather than
* rely on script-tag ordering / UMD quirks across all four files,
* brute-force bundle everything into one self-contained file. No
* cross-file script ordering, no UMD wrapper, no `require()`. The
* standalone window now has exactly one script dependency.
*
* The legacy individual files under src/flowchart/* and
* src/renderer/flowchart-controller.js are kept untouched — the
* `src/renderer.js` sidebar still uses the CommonJS shape via require().
*
* Pure browser script — no require(), no module.exports, no Node APIs.
*/
(function () {
'use strict';
// ========== flowchart-shapes (inlined) ==========
const SHAPE_KINDS = ['process', 'decision', 'terminator', 'subroutine', 'document'];
const DEFAULT_WIDTH = 140;
const DEFAULT_HEIGHT = 60;
const LABEL_PADDING_X = 16;
const LABEL_PADDING_Y = 12;
function shapeSvg(kind, x, y, width, height) {
if (!SHAPE_KINDS.includes(kind)) {
throw new Error(`flowchart-shapes: unknown shape kind "${kind}"`);
}
switch (kind) {
case 'process':
return `<rect x="${x}" y="${y}" width="${width}" height="${height}" rx="4" ry="4" />`;
case 'terminator':
return `<rect x="${x}" y="${y}" width="${width}" height="${height}" rx="${height / 2}" ry="${height / 2}" />`;
case 'subroutine': {
const inset = 4;
return (
`<rect x="${x}" y="${y}" width="${width}" height="${height}" rx="4" ry="4" />` +
`<rect x="${x + inset}" y="${y + inset}" width="${width - 2 * inset}" height="${height - 2 * inset}" rx="4" ry="4" />`
);
}
case 'decision': {
const cx = x + width / 2;
const cy = y + height / 2;
const left = `${x},${cy}`;
const top = `${cx},${y}`;
const right = `${x + width},${cy}`;
const bottom = `${cx},${y + height}`;
return `<polygon points="${left} ${top} ${right} ${bottom}" />`;
}
case 'document': {
// Parallelogram: top-right and bottom-right indented by ~20% of height.
const skew = Math.max(10, Math.round(height * 0.25));
const tl = `${x + skew},${y}`;
const tr = `${x + width},${y}`;
const br = `${x + width - skew},${y + height}`;
const bl = `${x},${y + height}`;
return `<polygon points="${tl} ${tr} ${br} ${bl}" />`;
}
default:
throw new Error(`flowchart-shapes: unknown shape kind "${kind}"`);
}
}
// Exposed for the controller (and any other bundle consumer).
window.FlowchartShapes = {
shapeSvg,
SHAPE_KINDS,
DEFAULT_WIDTH,
DEFAULT_HEIGHT,
LABEL_PADDING_X,
LABEL_PADDING_Y,
};
// ========== flowchart-mermaid (inlined) ==========
const MERMAID_SHAPE_SYNTAX = {
process: (id, label) => `${id}[${label}]`,
decision: (id, label) => `${id}{${label}}`,
terminator: (id, label) => `${id}([${label}])`,
subroutine: (id, label) => `${id}[[${label}]]`,
document: (id, label) => `${id}[/${label}/]`,
};
const MERMAID_EDGE_ARROW = {
solid: '-->',
dotted: '-.->',
thick: '==>',
};
function escapeLabel(label) {
return String(label || '')
.replace(/"/g, '#quot;')
.replace(/\r?\n/g, '\\n');
}
function assignIds(nodes) {
// A, B, C, …, Z, AA, AB, … (matches Mermaid's preferred short ids).
const map = new Map();
let n = 0;
for (const node of nodes) {
let id;
if (n < 26) id = String.fromCharCode(65 + n);
else {
const first = Math.floor(n / 26) - 1;
const second = n % 26;
id = String.fromCharCode(65 + first) + String.fromCharCode(65 + second);
}
map.set(node.id, id);
n += 1;
}
return map;
}
function nodeDeclaration(node) {
const fn = MERMAID_SHAPE_SYNTAX[node.kind];
if (!fn) throw new Error(`flowchart-mermaid: unknown node kind "${node.kind}"`);
return fn(node.id, escapeLabel(node.label));
}
function edgeDeclaration(edge, fromId, toId) {
const arrow = MERMAID_EDGE_ARROW[edge.kind];
if (!arrow) throw new Error(`flowchart-mermaid: unknown edge kind "${edge.kind}"`);
if (edge.label && edge.label.length > 0) {
return `${fromId} ${arrow}|${escapeLabel(edge.label)}| ${toId}`;
}
return `${fromId} ${arrow} ${toId}`;
}
function toMermaid(graph) {
if (!graph || !Array.isArray(graph.nodes) || !Array.isArray(graph.edges)) {
throw new Error('flowchart-mermaid: graph must have nodes[] and edges[]');
}
const ids = assignIds(graph.nodes);
const lines = ['flowchart TD'];
for (const node of graph.nodes) {
lines.push(nodeDeclaration({ ...node, id: ids.get(node.id) }));
}
for (const edge of graph.edges) {
const fromId = ids.get(edge.fromNodeId);
const toId = ids.get(edge.toNodeId);
if (!fromId || !toId) continue; // skip dangling edges (defensive)
lines.push(edgeDeclaration(edge, fromId, toId));
}
return lines.join('\n');
}
window.FlowchartMermaid = { toMermaid, escapeLabel, nodeDeclaration, edgeDeclaration };
// ========== flowchart-store (inlined) ==========
const STORE_NODE_KINDS = ['process', 'decision', 'terminator', 'subroutine', 'document'];
const STORE_EDGE_KINDS = ['solid', 'dotted', 'thick'];
const STORE_UNDO_LIMIT = 50;
function storeClone(obj) {
return JSON.parse(JSON.stringify(obj));
}
function storeNewId(prefix) {
// 12 hex chars; monotonic enough for in-memory use.
return `${prefix}_${Math.random().toString(16).slice(2, 10)}${Date.now().toString(16).slice(-4)}`;
}
function isValidNode(node) {
return (
node &&
typeof node.id === 'string' &&
STORE_NODE_KINDS.includes(node.kind) &&
Number.isFinite(node.x) &&
Number.isFinite(node.y) &&
typeof node.label === 'string'
);
}
function isValidEdge(edge) {
return (
edge &&
typeof edge.id === 'string' &&
typeof edge.fromNodeId === 'string' &&
typeof edge.toNodeId === 'string' &&
STORE_EDGE_KINDS.includes(edge.kind)
);
}
/**
* @param {object} io
* @param {string} io.persistencePath Absolute path for auto-save JSON.
* @param {(path:string) => Promise<string|null>} io.readFile
* @param {(path:string, content:string) => Promise<void>} io.writeFile
* @param {() => number} io.now
*/
function createStore(io) {
if (!io || typeof io !== 'object') {
throw new Error('flowchart-store: io bundle is required');
}
let graph = { nodes: [], edges: [] };
const undoStack = [];
const redoStack = [];
const listeners = new Set();
function emit() {
for (const fn of listeners) {
try {
fn(getGraph());
} catch {
// Don't let a subscriber crash the store.
}
}
}
function snapshot() {
undoStack.push(storeClone(graph));
if (undoStack.length > STORE_UNDO_LIMIT) undoStack.shift();
redoStack.length = 0;
}
function getGraph() {
return storeClone(graph);
}
function addNode({ kind, x, y, label = '' }) {
if (!STORE_NODE_KINDS.includes(kind)) {
throw new Error(`flowchart-store: unknown node kind "${kind}"`);
}
snapshot();
const node = { id: storeNewId('n'), kind, x, y, label };
graph.nodes.push(node);
emit();
return node;
}
function findNodeIndex(id) {
return graph.nodes.findIndex((n) => n.id === id);
}
function findEdgeIndex(id) {
return graph.edges.findIndex((e) => e.id === id);
}
function moveNode(id, x, y) {
const idx = findNodeIndex(id);
if (idx === -1) throw new Error(`flowchart-store: unknown node id "${id}"`);
snapshot();
graph.nodes[idx] = { ...graph.nodes[idx], x, y };
emit();
}
function setNodeLabel(id, label) {
const idx = findNodeIndex(id);
if (idx === -1) throw new Error(`flowchart-store: unknown node id "${id}"`);
snapshot();
graph.nodes[idx] = { ...graph.nodes[idx], label };
emit();
}
function setNodeKind(id, kind) {
if (!STORE_NODE_KINDS.includes(kind)) {
throw new Error(`flowchart-store: unknown node kind "${kind}"`);
}
const idx = findNodeIndex(id);
if (idx === -1) throw new Error(`flowchart-store: unknown node id "${id}"`);
snapshot();
graph.nodes[idx] = { ...graph.nodes[idx], kind };
emit();
}
function removeNode(id) {
const idx = findNodeIndex(id);
if (idx === -1) return;
snapshot();
graph.nodes.splice(idx, 1);
graph.edges = graph.edges.filter((e) => e.fromNodeId !== id && e.toNodeId !== id);
emit();
}
function connect(fromNodeId, toNodeId, kind = 'solid') {
if (fromNodeId === toNodeId) {
throw new TypeError('flowchart-store: cannot connect a node to itself');
}
if (!STORE_EDGE_KINDS.includes(kind)) {
throw new Error(`flowchart-store: unknown edge kind "${kind}"`);
}
snapshot();
const edge = { id: storeNewId('e'), fromNodeId, toNodeId, kind };
graph.edges.push(edge);
emit();
return edge;
}
function disconnect(edgeId) {
const idx = findEdgeIndex(edgeId);
if (idx === -1) return;
snapshot();
graph.edges.splice(idx, 1);
emit();
}
function setEdgeKind(edgeId, kind) {
if (!STORE_EDGE_KINDS.includes(kind)) {
throw new Error(`flowchart-store: unknown edge kind "${kind}"`);
}
const idx = findEdgeIndex(edgeId);
if (idx === -1) throw new Error(`flowchart-store: unknown edge id "${edgeId}"`);
snapshot();
graph.edges[idx] = { ...graph.edges[idx], kind };
emit();
}
function setEdgeLabel(edgeId, label) {
const idx = findEdgeIndex(edgeId);
if (idx === -1) throw new Error(`flowchart-store: unknown edge id "${edgeId}"`);
snapshot();
graph.edges[idx] = { ...graph.edges[idx], label };
emit();
}
function undo() {
const prior = undoStack.pop();
if (!prior) return;
redoStack.push(storeClone(graph));
graph = prior;
emit();
}
function redo() {
const next = redoStack.pop();
if (!next) return;
undoStack.push(storeClone(graph));
graph = next;
emit();
}
function canUndo() {
return undoStack.length > 0;
}
function canRedo() {
return redoStack.length > 0;
}
function subscribe(fn) {
listeners.add(fn);
return () => listeners.delete(fn);
}
function serialize() {
return JSON.stringify(graph);
}
function deserialize(json) {
let parsed;
try {
parsed = typeof json === 'object' ? json : JSON.parse(json);
} catch {
graph = { nodes: [], edges: [] };
return;
}
const nodes = Array.isArray(parsed.nodes) ? parsed.nodes.filter(isValidNode) : [];
const nodeIds = new Set(nodes.map((n) => n.id));
const edges = Array.isArray(parsed.edges)
? parsed.edges.filter(
(e) => isValidEdge(e) && nodeIds.has(e.fromNodeId) && nodeIds.has(e.toNodeId)
)
: [];
graph = { nodes, edges };
undoStack.length = 0;
redoStack.length = 0;
emit();
}
function toJSON() {
return storeClone(graph);
}
return {
getGraph,
addNode,
moveNode,
setNodeLabel,
setNodeKind,
removeNode,
connect,
disconnect,
setEdgeKind,
setEdgeLabel,
undo,
redo,
canUndo,
canRedo,
subscribe,
serialize,
deserialize,
toJSON,
};
}
window.FlowchartStore = {
create: createStore,
NODE_KINDS: STORE_NODE_KINDS,
EDGE_KINDS: STORE_EDGE_KINDS,
};
// ========== flowchart-canvas (inlined, no require) ==========
const CANVAS_SVG_NS = 'http://www.w3.org/2000/svg';
function canvasSvgEl(tag, attrs = {}) {
const el = document.createElementNS(CANVAS_SVG_NS, tag);
for (const [k, v] of Object.entries(attrs)) {
if (v === null || v === undefined) continue;
el.setAttribute(k, String(v));
}
return el;
}
function canvasEdgeStyle(kind) {
if (kind === 'dotted') return { 'stroke-dasharray': '4,4', 'stroke-width': 1 };
if (kind === 'thick') return { 'stroke-width': 3 };
return { 'stroke-width': 1 };
}
function canvasNodeCenter(node) {
return { x: node.x + DEFAULT_WIDTH / 2, y: node.y + DEFAULT_HEIGHT / 2 };
}
function createCanvas(container, store, opts = {}) {
const svg = canvasSvgEl('svg', {
class: 'flowchart-canvas',
width: '100%',
height: '100%',
viewBox: '0 0 1000 700',
role: 'img',
'aria-label': 'Flow chart canvas',
});
container.appendChild(svg);
// Layer order: edges first (under nodes), then nodes.
const edgesLayer = canvasSvgEl('g', { class: 'flowchart-edges' });
const nodesLayer = canvasSvgEl('g', { class: 'flowchart-nodes' });
svg.appendChild(edgesLayer);
svg.appendChild(nodesLayer);
let selectedNodeId = null;
let selectedEdgeId = null;
let unsubscribe = null;
let destroyed = false;
function render() {
if (destroyed) return;
const graph = store.getGraph();
edgesLayer.replaceChildren();
nodesLayer.replaceChildren();
const nodeById = new Map(graph.nodes.map((n) => [n.id, n]));
for (const edge of graph.edges) {
const from = nodeById.get(edge.fromNodeId);
const to = nodeById.get(edge.toNodeId);
if (!from || !to) continue;
const fc = canvasNodeCenter(from);
const tc = canvasNodeCenter(to);
const line = canvasSvgEl('line', {
x1: fc.x,
y1: fc.y,
x2: tc.x,
y2: tc.y,
stroke: 'currentColor',
'data-edge-id': edge.id,
...canvasEdgeStyle(edge.kind),
class: 'flowchart-edge' + (edge.id === selectedEdgeId ? ' selected' : ''),
});
edgesLayer.appendChild(line);
if (edge.label) {
const mx = (fc.x + tc.x) / 2;
const my = (fc.y + tc.y) / 2;
const bg = canvasSvgEl('rect', {
x: mx - 20,
y: my - 8,
width: 40,
height: 16,
fill: 'var(--bg-primary, #fff)',
'data-edge-label-bg': edge.id,
});
edgesLayer.appendChild(bg);
const t = canvasSvgEl('text', {
x: mx,
y: my + 4,
'text-anchor': 'middle',
'font-size': 11,
fill: 'currentColor',
'data-edge-label': edge.id,
});
t.textContent = edge.label;
edgesLayer.appendChild(t);
}
}
for (const node of graph.nodes) {
const g = canvasSvgEl('g', {
'data-node-id': node.id,
transform: `translate(${node.x},${node.y})`,
class: 'flowchart-node' + (node.id === selectedNodeId ? ' selected' : ''),
tabindex: '0',
'aria-label': `${node.kind}: ${node.label || '(no label)'}`,
});
g.innerHTML = shapeSvg(node.kind, 0, 0, DEFAULT_WIDTH, DEFAULT_HEIGHT);
const text = canvasSvgEl('text', {
x: DEFAULT_WIDTH / 2,
y: DEFAULT_HEIGHT / 2 + 4,
'text-anchor': 'middle',
'font-size': 13,
fill: 'currentColor',
'pointer-events': 'none',
});
text.textContent = node.label || ' ';
g.appendChild(text);
nodesLayer.appendChild(g);
}
}
// Surgical selection highlight — toggles the `.selected` class on the
// existing SVG <g> / <line> elements without going through render() (which
// replaces all children and would detach the very element the user's
// pointer is still on, breaking pointermove/pointerup bubbling on the
// same node during a drag). Called from onPointerDown after the internal
// selectedNodeId/selectedEdgeId update. The existing
// .flowchart-node.selected / .flowchart-edge.selected CSS rules (see
// src/styles-sidebar.css) handle the visual highlight.
function applySelectionHighlight() {
if (destroyed) return;
const nodeEls = nodesLayer.querySelectorAll('g[data-node-id]');
nodeEls.forEach((g) => {
const id = g.getAttribute('data-node-id');
g.classList.toggle('selected', id === selectedNodeId);
});
const edgeEls = edgesLayer.querySelectorAll('line[data-edge-id]');
edgeEls.forEach((l) => {
const id = l.getAttribute('data-edge-id');
l.classList.toggle('selected', id === selectedEdgeId);
});
}
// ----- pointer events -----
let dragState = null;
function getSvgPoint(clientX, clientY) {
const rect = svg.getBoundingClientRect();
// Naive linear mapping into the viewBox (works in jsdom and roughly in
// production for the bounded viewport; v2 can add proper screenCTM).
const vb = svg.viewBox.baseVal;
const scaleX = vb.width / rect.width;
const scaleY = vb.height / rect.height;
return { x: (clientX - rect.left) * scaleX, y: (clientY - rect.top) * scaleY };
}
function onPointerDown(ev) {
const nodeG = ev.target.closest('g[data-node-id]');
if (nodeG) {
const nodeId = nodeG.getAttribute('data-node-id');
const node = store.getGraph().nodes.find((n) => n.id === nodeId);
if (!node) return;
selectedNodeId = nodeId;
selectedEdgeId = null;
// Paint the .flowchart-node.selected highlight immediately on a bare
// click (without a drag). store.subscribe would normally trigger
// render() after moveNode; a click-only path has no store mutation, so
// we apply the highlight ourselves. Surgical toggle — not a full
// render() — so the pointerdown target stays attached and subsequent
// pointermove/pointerup can still bubble on the same element.
applySelectionHighlight();
const start = getSvgPoint(ev.clientX, ev.clientY);
if (ev.altKey) {
// Alt+drag = create a new edge from this node to wherever the pointer
// is released. Track source node only; movement does not move nodes.
dragState = { mode: 'connect', sourceNodeId: nodeId };
} else {
dragState = {
mode: 'move',
nodeId,
startX: node.x,
startY: node.y,
pointerX: start.x,
pointerY: start.y,
};
}
// Notify the panel so its internal selection state (used by Delete /
// Backspace keyboard shortcuts) tracks the canvas selection.
if (typeof opts.onNodeClick === 'function') {
opts.onNodeClick(nodeId, ev);
}
ev.preventDefault();
return;
}
const edgeLine = ev.target.closest('line[data-edge-id]');
if (edgeLine) {
selectedEdgeId = edgeLine.getAttribute('data-edge-id');
selectedNodeId = null;
// Same reasoning as the node branch above: paint the edge highlight
// immediately so a click-without-drag isn't invisible until the next
// store mutation triggers a re-render.
applySelectionHighlight();
if (typeof opts.onEdgeClick === 'function') {
opts.onEdgeClick(selectedEdgeId, ev);
}
ev.preventDefault();
return;
}
// Click on empty canvas: add a process node at the click point.
if (ev.target === svg || ev.target === nodesLayer || ev.target === edgesLayer) {
const p = getSvgPoint(ev.clientX, ev.clientY);
const x = Math.max(0, p.x - DEFAULT_WIDTH / 2);
const y = Math.max(0, p.y - DEFAULT_HEIGHT / 2);
store.addNode({ kind: 'process', x, y, label: 'Node' });
ev.preventDefault();
}
}
function onPointerMove(ev) {
if (!dragState) return;
if (dragState.mode === 'move') {
const p = getSvgPoint(ev.clientX, ev.clientY);
const dx = p.x - dragState.pointerX;
const dy = p.y - dragState.pointerY;
store.moveNode(dragState.nodeId, dragState.startX + dx, dragState.startY + dy);
}
// connect-mode: visual feedback deferred to v2 (no preview line yet).
}
function onPointerUp(ev) {
if (dragState && dragState.mode === 'connect') {
const targetG = ev.target && ev.target.closest && ev.target.closest('g[data-node-id]');
if (targetG) {
const targetId = targetG.getAttribute('data-node-id');
if (targetId && targetId !== dragState.sourceNodeId) {
try {
store.connect(dragState.sourceNodeId, targetId, 'solid');
} catch {
// Connect throws on self-loop; canvas silently ignores.
}
}
}
}
dragState = null;
}
function onDblClick(ev) {
const nodeG = ev.target.closest('g[data-node-id]');
if (!nodeG) return;
const nodeId = nodeG.getAttribute('data-node-id');
const node = store.getGraph().nodes.find((n) => n.id === nodeId);
if (!node) return;
// Inline-edit overlay: foreignObject-free — just use a positioned HTML
// <input> overlaid on top of the node, in the canvas's parent.
const input = document.createElement('input');
input.type = 'text';
input.value = node.label;
input.className = 'flowchart-label-input';
const rect = nodeG.getBoundingClientRect();
input.style.position = 'fixed';
input.style.left = `${rect.left}px`;
input.style.top = `${rect.top}px`;
input.style.width = `${rect.width}px`;
input.style.height = `${rect.height}px`;
container.appendChild(input);
input.focus();
input.select();
const finish = (commit) => {
if (commit) store.setNodeLabel(nodeId, input.value);
input.remove();
};
input.addEventListener('blur', () => finish(true));
input.addEventListener('keydown', (kev) => {
if (kev.key === 'Enter') finish(true);
else if (kev.key === 'Escape') finish(false);
});
ev.preventDefault();
}
function onContextMenu(ev) {
const nodeG = ev.target.closest('g[data-node-id]');
if (nodeG) {
const nodeId = nodeG.getAttribute('data-node-id');
ev.preventDefault();
if (typeof opts.onShapeMenu === 'function') opts.onShapeMenu(nodeId, ev);
}
}
svg.addEventListener('pointerdown', onPointerDown);
window.addEventListener('pointermove', onPointerMove);
window.addEventListener('pointerup', onPointerUp);
svg.addEventListener('dblclick', onDblClick);
svg.addEventListener('contextmenu', onContextMenu);
unsubscribe = store.subscribe(render);
render();
function destroy() {
if (destroyed) return;
destroyed = true;
if (typeof unsubscribe === 'function') unsubscribe();
svg.removeEventListener('pointerdown', onPointerDown);
window.removeEventListener('pointermove', onPointerMove);
window.removeEventListener('pointerup', onPointerUp);
svg.removeEventListener('dblclick', onDblClick);
svg.removeEventListener('contextmenu', onContextMenu);
svg.remove();
}
return { destroy, getSvg: () => svg };
}
// ========== Globals — set BEFORE the controller boots ==========
window.FlowchartCanvas = { createCanvas, SHAPE_KINDS };
// ========== Controller bootstrap (inline) ==========
const api =
window.electronAPI && window.electronAPI.flowchart ? window.electronAPI.flowchart : null;
const els = {
canvasHost: document.getElementById('canvas-host'),
previewSource: document.getElementById('preview-source'),
previewRender: document.getElementById('preview-render'),
btnInsert: document.getElementById('fc-btn-insert'),
btnReset: document.getElementById('fc-btn-reset'),
status: document.getElementById('fc-status'),
};
// Guard rails — these should never be null in a correctly-launched window.
// Fail loudly with a visible status message rather than silently no-op'ing
// if the HTML or the preload bridge are misconfigured.
function fatal(msg) {
if (els.status) els.status.textContent = msg;
console.error('[flowchart-controller]', msg);
}
if (!els.canvasHost || !els.previewSource || !els.previewRender) {
fatal('Required DOM elements missing — check src/flowchart-generator.html');
return;
}
// v4.9.8 — since the pure modules are bundled into this file, the four
// window.FlowchartXxx globals are guaranteed to be set above. The guard
// below is now belt-and-braces (it still trips if this file is loaded in
// some weird context that strips `window`).
if (
!window.FlowchartStore ||
!window.FlowchartCanvas ||
!window.FlowchartMermaid ||
!window.FlowchartShapes
) {
fatal('Flowchart pure modules not loaded — verify flowchart-bundle.js ran in full');
return;
}
if (!api) {
fatal('window.electronAPI.flowchart missing — check src/preload.js');
return;
}
const PREVIEW_DEBOUNCE_MS = 250;
const PERSIST_DEBOUNCE_MS = 500;
const PERSISTENCE_FILENAME = 'flowchart-session.json';
let _userDataPath = null;
let _persistenceFile = null;
let _previewTimer = null;
let _persistTimer = null;
let _store = null;
let _canvas = null;
function setStatus(msg) {
if (els.status) els.status.textContent = msg || '';
if (msg) setTimeout(() => setStatus(''), 2500);
}
function runPreview() {
if (!_store || !els.previewSource || !els.previewRender) return;
const graph = _store.getGraph();
const source = toMermaid(graph);
els.previewSource.textContent = source;
// v4.9.6 — text preview only. The SVG canvas on the left is the
// visual preview (hand-rolled, no Mermaid runtime needed in this
// window's renderer). Mirrors the v4.9.5 fix that forced a light
// surface to guarantee visibility.
els.previewRender.textContent = '';
}
function debouncedPreview() {
if (_previewTimer) clearTimeout(_previewTimer);
_previewTimer = setTimeout(() => {
_previewTimer = null;
runPreview();
}, PREVIEW_DEBOUNCE_MS);
}
function debouncedPersist() {
if (_persistTimer) clearTimeout(_persistTimer);
_persistTimer = setTimeout(() => {
_persistTimer = null;
if (!_store || !_persistenceFile) return;
api
.writeFile(_persistenceFile, _store.serialize())
.then(() => setStatus('Saved'))
.catch((err) => setStatus(`Save failed: ${err && err.message ? err.message : err}`));
}, PERSIST_DEBOUNCE_MS);
}
async function bootstrap() {
// Resolve the userData path ONCE on mount. The persistence path is
// interpolated into a string on every read/write; calling the async
// api.getUserDataPath() directly would coerce the Promise to
// "[object Promise]" and break the userData sandbox check in
// main.js:write-text-file.
try {
_userDataPath = await api.getUserDataPath();
} catch (err) {
fatal(`Could not resolve userData path: ${err && err.message ? err.message : err}`);
return;
}
_persistenceFile = `${_userDataPath}/${PERSISTENCE_FILENAME}`;
_store = createStore({
persistencePath: _persistenceFile,
readFile: api.readFile,
writeFile: api.writeFile,
now: () => Date.now(),
});
_canvas = createCanvas(els.canvasHost, _store, {
onEdgeClick: (edgeId) => {
const edge = _store.getGraph().edges.find((e) => e.id === edgeId);
if (!edge) return;
const nextKind = window.prompt('Edge kind (solid, dotted, thick):', edge.kind);
if (nextKind && ['solid', 'dotted', 'thick'].includes(nextKind)) {
_store.setEdgeKind(edgeId, nextKind);
}
const nextLabel = window.prompt('Edge label (empty to clear):', edge.label || '');
if (nextLabel !== null) {
_store.setEdgeLabel(edgeId, nextLabel);
}
},
onNodeClick: () => {
// Canvas already paints the .selected highlight; nothing else
// needed here for selection state.
},
onShapeMenu: (nodeId) => {
const next = window.prompt(
'New shape (process, decision, terminator, subroutine, document):'
);
if (next) _store.setNodeKind(nodeId, next);
},
});
_store.subscribe(() => {
debouncedPreview();
debouncedPersist();
});
// Hydrate from disk (defensively — corrupt JSON is caught by the store).
try {
const json = await api.readFile(_persistenceFile);
if (json) _store.deserialize(json);
} catch (err) {
console.warn('[flowchart-controller] failed to read session:', err);
}
if (els.btnInsert) {
els.btnInsert.addEventListener('click', () => {
if (!_store) return;
const source = toMermaid(_store.getGraph());
const fenced = '```mermaid\n' + source + '\n```';
if (api.insertAtCursor) api.insertAtCursor(fenced);
setStatus('Inserted');
});
}
if (els.btnReset) {
els.btnReset.addEventListener('click', () => {
if (!_store) return;
if (!window.confirm('Clear all nodes and edges?')) return;
_store.deserialize({ nodes: [], edges: [] });
setStatus('Reset');
});
}
// Keyboard shortcuts — Ctrl/Cmd+Z / Ctrl/Cmd+Shift+Z / Delete / Backspace.
document.addEventListener('keydown', (ev) => {
if (!_store) return;
const meta = ev.ctrlKey || ev.metaKey;
if (meta && !ev.shiftKey && ev.key.toLowerCase() === 'z') {
ev.preventDefault();
_store.undo();
return;
}
if (meta && ev.shiftKey && ev.key.toLowerCase() === 'z') {
ev.preventDefault();
_store.redo();
return;
}
if (ev.key === 'Delete' || ev.key === 'Backspace') {
// Delete applies to the canvas's currently-selected node/edge.
// The canvas doesn't expose selection state directly; we read
// it from the DOM .selected class.
const selectedNode = els.canvasHost.querySelector('.flowchart-node.selected');
if (selectedNode) {
const id = selectedNode.getAttribute('data-node-id');
if (id) {
ev.preventDefault();
_store.removeNode(id);
}
return;
}
const selectedEdge = els.canvasHost.querySelector('.flowchart-edge.selected');
if (selectedEdge) {
const id = selectedEdge.getAttribute('data-edge-id');
if (id) {
ev.preventDefault();
_store.disconnect(id);
}
}
}
});
runPreview();
setStatus('Ready');
}
// Expose a minimal handle for tests (mirrors ascii-controller.js pattern).
window.FlowchartController = {
bootstrap,
get store() {
return _store;
},
get canvas() {
return _canvas;
},
};
if (document.readyState === 'loading') {
document.addEventListener('DOMContentLoaded', bootstrap);
} else {
bootstrap();
}
})();