Simplify layout: use raw ELK X, Y-snap generations, multi-spouse offsets
Remove post-processing collision resolution that fought ELK's layout. Keep only Y-snapping (same generation = same row) and grid-aligned connector Y positions. Add offset drop lines for parents with multiple spouses so each family unit is visually distinct.
This commit is contained in:
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2
resources/js/full-diagram.min.js
vendored
2
resources/js/full-diagram.min.js
vendored
File diff suppressed because one or more lines are too long
@@ -5,8 +5,7 @@
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* guaranteed overlap-free positioning. Connector lines are drawn
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* manually using clean orthogonal bus lines (not ELK's edge routing).
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*
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* Post-processing snaps all people of the same generation to the same
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* Y coordinate and repositions union nodes between generation rows.
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* ELK handles all node placement — no post-processing adjustments.
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* Spouse-grouped node ordering keeps couples placed close together.
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*
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* Input: flat person array with rels { parents, spouses, children }
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@@ -265,8 +264,8 @@ function extractPositions(elkResult, builder, config) {
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const halfH = config.cardHeight / 2;
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// ── Step 1: Read raw ELK positions ──
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const rawPos = new Map(); // id → { cx, cy }
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// ── Step 1: Read raw ELK positions (centered on root) ──
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const posMap = new Map(); // id → { x, y }
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let rootX = 0,
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rootY = 0;
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@@ -275,153 +274,50 @@ function extractPositions(elkResult, builder, config) {
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if (!nodeInfo) continue;
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const cx = elkNode.x + elkNode.width / 2;
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const cy = elkNode.y + elkNode.height / 2;
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rawPos.set(elkNode.id, { cx, cy });
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if (nodeInfo.isMain) {
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rootX = cx;
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rootY = cy;
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}
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posMap.set(elkNode.id, { cx, cy });
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}
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// ── Step 2: Snap person nodes to generation rows ──
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// Group person nodes by generation, compute median Y for each generation
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const genGroups = new Map(); // generation → [{ id, cx, cy }]
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for (const [id, pos] of rawPos) {
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// ── Step 2: Snap person Y to generation rows (keep ELK X untouched) ──
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// Group persons by generation, compute median Y per generation
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const genGroups = new Map(); // generation → [id, ...]
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for (const [id, pos] of posMap) {
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const nodeInfo = builder.nodes.get(id);
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if (!nodeInfo || nodeInfo.type !== "person") continue;
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const gen = builder.generations.get(id) || 0;
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const gen = builder.generations.get(id) ?? 0;
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if (!genGroups.has(gen)) genGroups.set(gen, []);
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genGroups.get(gen).push({ id, ...pos });
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genGroups.get(gen).push(id);
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}
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// For each generation, use the median Y as the canonical row Y
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const genY = new Map(); // generation → snapped Y
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for (const [gen, nodes] of genGroups) {
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const ys = nodes.map((n) => n.cy).sort((a, b) => a - b);
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const genY = new Map(); // generation → canonical Y
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for (const [gen, ids] of genGroups) {
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const ys = ids.map((id) => posMap.get(id).cy).sort((a, b) => a - b);
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const mid = Math.floor(ys.length / 2);
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const medianY =
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ys.length % 2 === 0 ? (ys[mid - 1] + ys[mid]) / 2 : ys[mid];
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genY.set(gen, medianY);
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genY.set(
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gen,
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ys.length % 2 === 0 ? (ys[mid - 1] + ys[mid]) / 2 : ys[mid]
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);
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}
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// ── Step 3: Compute union node Y positions ──
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// Each union sits between its parent generation row and child generation row
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const unionGenY = new Map(); // unionId → snapped Y
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for (const [id, node] of builder.nodes) {
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if (node.type !== "union") continue;
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// Apply: center on root, snap person Y to generation row
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const mainGen = builder.generations.get(builder.mainId) ?? 0;
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const snappedRootY = genY.get(mainGen) ?? rootY;
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// Find parent generation (edges INTO this union)
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let parentGen = null;
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let childGen = null;
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for (const edge of builder.edges) {
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if (edge.target === id && builder.generations.has(edge.source)) {
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parentGen = builder.generations.get(edge.source);
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}
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if (edge.source === id && builder.generations.has(edge.target)) {
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childGen = builder.generations.get(edge.target);
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}
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}
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if (parentGen !== null && childGen !== null) {
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const pY = genY.get(parentGen);
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const cY = genY.get(childGen);
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if (pY !== undefined && cY !== undefined) {
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// Place union at: parent bottom edge + 40% of gap to child top edge
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const parentBottom = pY + halfH;
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const childTop = cY - halfH;
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unionGenY.set(id, parentBottom + (childTop - parentBottom) * 0.4);
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continue;
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}
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}
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// Fallback: use raw ELK position
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const raw = rawPos.get(id);
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if (raw) unionGenY.set(id, raw.cy);
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}
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// ── Step 4: Build initial positions (centered on root) ──
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const posMap = new Map(); // id → { x, y }
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// Recalculate rootY using the snapped generation Y
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const mainGen = builder.generations.get(builder.mainId) || 0;
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const snappedRootY = genY.get(mainGen) || rootY;
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for (const [id, node] of builder.nodes) {
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const raw = rawPos.get(id);
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if (!raw) continue;
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let finalY;
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if (node.type === "person") {
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const gen = builder.generations.get(id) || 0;
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finalY = (genY.get(gen) || raw.cy) - snappedRootY;
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for (const [id, pos] of posMap) {
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const nodeInfo = builder.nodes.get(id);
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pos.x = pos.cx - rootX;
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if (nodeInfo && nodeInfo.type === "person") {
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const gen = builder.generations.get(id) ?? 0;
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pos.y = (genY.get(gen) ?? pos.cy) - snappedRootY;
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} else {
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finalY = (unionGenY.get(id) || raw.cy) - snappedRootY;
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}
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const finalX = raw.cx - rootX;
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posMap.set(id, { x: finalX, y: finalY });
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}
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// ── Step 4b: Resolve overlaps per generation row ──
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// After Y-snapping, nodes from different ELK layers may now share a row.
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// For each generation, sort by X and push overlapping nodes apart.
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const minGap = config.cardWidth + config.horizontalSpacing;
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for (const [gen, nodes] of genGroups) {
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// Get current X positions for this generation's person nodes
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const rowNodes = nodes
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.map((n) => ({ id: n.id, x: posMap.get(n.id)?.x ?? 0 }))
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.sort((a, b) => a.x - b.x);
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// Sweep left to right, push overlapping nodes to the right
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for (let i = 1; i < rowNodes.length; i++) {
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const prev = rowNodes[i - 1];
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const curr = rowNodes[i];
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const overlap = prev.x + minGap - curr.x;
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if (overlap > 0) {
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curr.x = prev.x + minGap;
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const pos = posMap.get(curr.id);
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if (pos) pos.x = curr.x;
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pos.y = pos.cy - snappedRootY;
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}
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}
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// Re-center the row so shifts don't drift the whole diagram
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// Calculate how much the row center shifted and compensate
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const origXs = nodes
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.map((n) => rawPos.get(n.id)?.cx ?? 0)
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.sort((a, b) => a - b);
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const newXs = rowNodes.map((n) => n.x).sort((a, b) => a - b);
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const origCenter = (origXs[0] + origXs[origXs.length - 1]) / 2 - rootX;
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const newCenter = (newXs[0] + newXs[newXs.length - 1]) / 2;
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const drift = newCenter - origCenter;
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if (Math.abs(drift) > 1) {
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for (const rn of rowNodes) {
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rn.x -= drift;
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const pos = posMap.get(rn.id);
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if (pos) pos.x = rn.x;
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}
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}
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}
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// ── Step 4c: Collect final positioned nodes ──
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for (const [id, node] of builder.nodes) {
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const pos = posMap.get(id);
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if (!pos) continue;
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if (node.type === "person") {
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persons.push({
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x: pos.x,
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y: pos.y,
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id: node.id,
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isMain: node.isMain,
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data: node.data,
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});
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} else {
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unions.push({ id: id, x: pos.x, y: pos.y });
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}
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}
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// ── Step 5: Build clean bus-line connectors ──
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// ── Step 3: Build edge maps ──
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const incomingToUnion = new Map();
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const outgoingFromUnion = new Map();
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@@ -442,13 +338,99 @@ function extractPositions(elkResult, builder, config) {
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}
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}
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// ── Step 4: Snap union Y to grid between generation rows ──
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// Compute a consistent couple-bar Y and child-bus Y for each
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// pair of adjacent generations, so all connectors align on a grid.
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const sortedGens = [...genY.keys()].sort((a, b) => a - b);
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// coupleBarY: between parent gen and child gen (40% down from parent bottom)
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// childBusY: between parent gen and child gen (70% down from parent bottom)
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const coupleBarY = new Map(); // "parentGen|childGen" → Y
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const childBusY = new Map();
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for (let i = 0; i < sortedGens.length - 1; i++) {
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const upperGen = sortedGens[i];
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const lowerGen = sortedGens[i + 1];
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const upperY = (genY.get(upperGen) ?? 0) - snappedRootY;
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const lowerY = (genY.get(lowerGen) ?? 0) - snappedRootY;
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const parentBottom = upperY + halfH;
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const childTop = lowerY - halfH;
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const gap = childTop - parentBottom;
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const key = `${upperGen}|${lowerGen}`;
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coupleBarY.set(key, parentBottom + gap * 0.35);
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childBusY.set(key, parentBottom + gap * 0.65);
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}
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// Snap each union node Y to the couple-bar grid line
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for (const [unionId, node] of builder.nodes) {
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if (node.type !== "union") continue;
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const parentIds = incomingToUnion.get(unionId) || [];
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const childIds = outgoingFromUnion.get(unionId) || [];
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if (parentIds.length === 0 || childIds.length === 0) continue;
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const parentGen = builder.generations.get(parentIds[0]);
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const childGen = builder.generations.get(childIds[0]);
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if (parentGen === undefined || childGen === undefined) continue;
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const key = `${parentGen}|${childGen}`;
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const barY = coupleBarY.get(key);
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if (barY !== undefined) {
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const pos = posMap.get(unionId);
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if (pos) pos.y = barY;
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}
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}
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// ── Step 5: Collect final positioned nodes ──
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for (const [id, node] of builder.nodes) {
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const pos = posMap.get(id);
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if (!pos) continue;
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if (node.type === "person") {
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persons.push({
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x: pos.x,
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y: pos.y,
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id: node.id,
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isMain: node.isMain,
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data: node.data,
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});
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} else {
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unions.push({ id: id, x: pos.x, y: pos.y });
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}
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}
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// ── Step 6: Build grid-aligned bus-line connectors ──
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// Pre-compute offsets for parents in multiple unions (multiple spouses).
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// Each union a parent belongs to gets an offset so the vertical drop
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// lines fan out from the card instead of overlapping at center.
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const parentToUnions = new Map(); // personId → [unionId, ...]
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for (const union of unions) {
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for (const pid of incomingToUnion.get(union.id) || []) {
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if (!parentToUnions.has(pid)) parentToUnions.set(pid, []);
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parentToUnions.get(pid).push(union.id);
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}
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}
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// Sort each parent's unions by their union X so offsets are spatially consistent
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const dropOffset = new Map(); // "personId|unionId" → offset pixels
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const offsetStep = 14;
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for (const [pid, uids] of parentToUnions) {
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if (uids.length <= 1) continue;
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uids.sort((a, b) => {
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const ua = unions.find((u) => u.id === a);
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const ub = unions.find((u) => u.id === b);
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return (ua?.x ?? 0) - (ub?.x ?? 0);
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});
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for (let i = 0; i < uids.length; i++) {
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const off = (i - (uids.length - 1) / 2) * offsetStep;
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dropOffset.set(`${pid}|${uids[i]}`, off);
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}
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}
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for (const union of unions) {
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const parentIds = incomingToUnion.get(union.id) || [];
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const childIds = outgoingFromUnion.get(union.id) || [];
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const parents = parentIds
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.map((id) => posMap.get(id))
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.filter(Boolean);
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const children = childIds
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.map((id) => posMap.get(id))
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.filter(Boolean);
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@@ -457,21 +439,29 @@ function extractPositions(elkResult, builder, config) {
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const uy = union.y;
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// ── Parent → union connections ──
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if (parents.length > 0) {
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// Horizontal couple bar at union Y
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if (parents.length >= 2) {
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const xs = parents.map((p) => p.x).sort((a, b) => a - b);
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if (parentIds.length > 0) {
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// Compute the drop X for each parent (offset if multi-spouse)
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const dropXs = parentIds.map((pid) => {
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const pos = posMap.get(pid);
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if (!pos) return null;
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const off = dropOffset.get(`${pid}|${union.id}`) ?? 0;
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return { pid, x: pos.x + off, y: pos.y };
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}).filter(Boolean);
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// Horizontal couple bar between the drop points
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if (dropXs.length >= 2) {
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const xs = dropXs.map((d) => d.x).sort((a, b) => a - b);
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connections.push({
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path: `M ${xs[0]} ${uy} L ${xs[xs.length - 1]} ${uy}`,
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cssClass: "link couple-link",
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});
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}
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// Vertical drop from each parent's bottom edge to couple bar Y
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for (const p of parents) {
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const bottomY = p.y + halfH;
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// Vertical drop from each parent's bottom edge to couple bar
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for (const d of dropXs) {
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const bottomY = d.y + halfH;
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connections.push({
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path: `M ${p.x} ${bottomY} L ${p.x} ${uy}`,
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path: `M ${d.x} ${bottomY} L ${d.x} ${uy}`,
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cssClass: "link ancestor-link",
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});
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}
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@@ -479,24 +469,31 @@ function extractPositions(elkResult, builder, config) {
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// ── Union → children connections ──
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if (children.length > 0) {
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// Bus Y halfway between union and children's top edge
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const childY = children[0].y;
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const busY = uy + (childY - halfH - uy) / 2;
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// Use grid-aligned bus Y for this generation pair
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const parentGen = parentIds.length > 0
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? builder.generations.get(parentIds[0])
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: undefined;
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const childGen = childIds.length > 0
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? builder.generations.get(childIds[0])
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: undefined;
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const busKey =
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parentGen !== undefined && childGen !== undefined
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? `${parentGen}|${childGen}`
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: null;
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const busY = (busKey && childBusY.get(busKey)) ?? uy + (children[0].y - halfH - uy) / 2;
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// Vertical stem from union down to bus
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// Vertical stem from union down to child bus (ELK X)
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connections.push({
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path: `M ${ux} ${uy} L ${ux} ${busY}`,
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cssClass: "link descendant-link",
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});
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if (children.length === 1) {
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// Single child: continue vertical line
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connections.push({
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path: `M ${children[0].x} ${busY} L ${children[0].x} ${childY - halfH}`,
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path: `M ${children[0].x} ${busY} L ${children[0].x} ${children[0].y - halfH}`,
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cssClass: "link descendant-link",
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});
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} else {
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// Horizontal bus spanning all children
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const xs = children
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.map((c) => c.x)
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.sort((a, b) => a - b);
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@@ -505,10 +502,9 @@ function extractPositions(elkResult, builder, config) {
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cssClass: "link descendant-link",
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});
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// Vertical drops from bus to each child's top edge
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for (const c of children) {
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connections.push({
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path: `M ${c.x} ${busY} L ${c.x} ${childY - halfH}`,
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path: `M ${c.x} ${busY} L ${c.x} ${c.y - halfH}`,
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cssClass: "link descendant-link",
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});
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}
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