Files
Socrates/apps/web/components/diagram-canvas/DiagramCanvas.tsx
dtoro a0566ce64c MVP M1–M3: visual port, TipTap text editor, React Flow diagram
apps/web — Next.js 16 + TypeScript + React 19 (no Tailwind)

M1 Visual port
- Manuscript theme + base styles ported verbatim from design-source
- 100dvh layout with internal scroll regions (rail / narrative / dock thread)
- TopBar, LeftRail (collapsible sections + collapsed strip), CanvasHeader,
  StatusBar, EditorShell composing the dual-canvas
- SocratesDock (subtle/default/prominent) with bubbles + numbered options
- Sigil (Σ + laurel) used across editor and seed screens
- SeedScreen with emerging-seed rail, mini-graph, confidence bar, thread,
  typing indicator, input row
- Routes: / (homepage), /editor/[projectId], /seed
- Aristotle fixture in lib/fixtures (ported from data.js)

M2 Real text editor
- TipTap (StarterKit + custom Chip atom inline node + ReactNodeViewRenderer)
- Slash-menu insertion via @tiptap/suggestion with arrow / number-key shortcuts
- ChipFocusContext bridges narrative ↔ diagram hover/selection across the
  TipTap render boundary
- fixtureToDoc converts the fixture narrative → ProseMirror JSON

M3 Real diagram
- React Flow (@xyflow/react) custom node (block / actor / constraint / system)
  matching prototype's softened look
- Custom edge with bezier path + label renderer (association / composition /
  constraint variants)
- Drag-create from a left-side palette via HTML5 DnD + screenToFlowPosition
- NodeInspector panel: edit kind / label / properties (or expression for
  constraints); delete cascades to incident edges
- Bidirectional focus highlighting between chips (narrative) and blocks
  (diagram)
- Removed redundant legend (stereotype labels on nodes serve same purpose)

State for M3 lives in component memory; persistence + bidirectional sync land
in M4–M5.
2026-04-28 22:54:36 +02:00

204 lines
6.2 KiB
TypeScript

// React Flow-backed diagram canvas (M3).
// - Custom block/actor/constraint/system nodes
// - Custom edges (association/composition/constraint)
// - Drag-create from the left palette
// - Click-edit via the right inspector
// - Drag handles between nodes to connect
//
// State is in-memory for M3; M5 swaps it for the bidirectional sync engine.
"use client";
import { useCallback, useEffect, useMemo, useRef, useState } from "react";
import {
ReactFlow,
ReactFlowProvider,
Background,
BackgroundVariant,
Controls,
MarkerType,
applyNodeChanges,
applyEdgeChanges,
addEdge,
useReactFlow,
type Node,
type Edge,
type NodeChange,
type EdgeChange,
type Connection,
type NodeMouseHandler,
} from "@xyflow/react";
import { BlockNode, type BlockNodeData } from "./nodes/BlockNode";
import { SysmlEdge, type SysmlEdgeData } from "./edges/SysmlEdge";
import { Palette } from "./Palette";
import { NodeInspector } from "./NodeInspector";
import { fixtureToFlow } from "./fixtureToFlow";
import type { Density } from "../socrates/SocratesDock";
import type { FixtureData, AssociationKind, BlockKind } from "../../lib/fixtures/aristotle";
export type DiagramVariant = "softened" | "formal" | "graph";
interface DiagramCanvasProps {
data: FixtureData;
density?: Density;
variant?: DiagramVariant;
focusBlockId: string | null;
onSelect?: (id: string | null) => void;
}
const nodeTypes = { sysmlBlock: BlockNode };
const edgeTypes = { sysml: SysmlEdge };
let nextNodeId = 1000;
let nextEdgeId = 1000;
function freshNodeId(): string { return `n${nextNodeId++}`; }
function freshEdgeId(): string { return `e${nextEdgeId++}`; }
export function DiagramCanvas(props: DiagramCanvasProps) {
return (
<ReactFlowProvider>
<DiagramInner {...props} />
</ReactFlowProvider>
);
}
function DiagramInner({ data, focusBlockId, onSelect }: DiagramCanvasProps) {
const initial = useMemo(() => fixtureToFlow(data), [data]);
const [nodes, setNodes] = useState<Node<BlockNodeData>[]>(initial.nodes);
const [edges, setEdges] = useState<Edge<SysmlEdgeData>[]>(initial.edges);
const wrapperRef = useRef<HTMLDivElement | null>(null);
const { screenToFlowPosition } = useReactFlow();
const onNodesChange = useCallback(
(changes: NodeChange[]) => setNodes(ns => applyNodeChanges(changes, ns) as Node<BlockNodeData>[]),
[]
);
const onEdgesChange = useCallback(
(changes: EdgeChange[]) => setEdges(es => applyEdgeChanges(changes, es) as Edge<SysmlEdgeData>[]),
[]
);
const onConnect = useCallback((connection: Connection) => {
const newEdge: Edge<SysmlEdgeData> = {
id: freshEdgeId(),
source: connection.source,
target: connection.target,
type: "sysml",
data: { label: "relates_to", kind: "association" satisfies AssociationKind },
markerEnd: { type: MarkerType.Arrow, color: "var(--edge)", width: 18, height: 18 },
};
setEdges(es => addEdge(newEdge, es) as Edge<SysmlEdgeData>[]);
}, []);
// Highlight focusBlockId from sibling components (e.g. narrative chip hover).
useEffect(() => {
setNodes(ns =>
ns.map(n => ({
...n,
selected: n.id === focusBlockId,
}))
);
}, [focusBlockId]);
const onNodeClick: NodeMouseHandler = useCallback(
(_event, node) => {
onSelect?.(node.id);
},
[onSelect]
);
const onPaneClick = useCallback(() => {
onSelect?.(null);
}, [onSelect]);
const selectedNode = nodes.find(n => n.id === focusBlockId);
// Drag-and-drop from the palette
const onDragOver = useCallback((event: React.DragEvent) => {
event.preventDefault();
event.dataTransfer.dropEffect = "move";
}, []);
const onDrop = useCallback(
(event: React.DragEvent) => {
event.preventDefault();
const kindRaw = event.dataTransfer.getData("application/sysml-kind");
if (!kindRaw) return;
const kind = kindRaw as BlockKind | "system";
const position = screenToFlowPosition({ x: event.clientX, y: event.clientY });
const id = freshNodeId();
const newNode: Node<BlockNodeData> = {
id,
type: "sysmlBlock",
position,
data: {
label: kind === "system"
? "System"
: kind === "actor"
? "Actor"
: kind === "constraint"
? "Constraint"
: "Block",
kind,
properties: kind === "constraint" ? [] : ["new_property"],
...(kind === "constraint" ? { expression: "{ }" } : {}),
},
};
setNodes(ns => [...ns, newNode]);
onSelect?.(id);
},
[onSelect, screenToFlowPosition]
);
function patchSelected(patch: Partial<BlockNodeData>) {
if (!focusBlockId) return;
setNodes(ns =>
ns.map(n => (n.id === focusBlockId ? { ...n, data: { ...(n.data as BlockNodeData), ...patch } } : n))
);
}
function deleteSelected() {
if (!focusBlockId) return;
setNodes(ns => ns.filter(n => n.id !== focusBlockId));
setEdges(es => es.filter(e => e.source !== focusBlockId && e.target !== focusBlockId));
onSelect?.(null);
}
return (
<div ref={wrapperRef} className="diagram-flow" onDragOver={onDragOver} onDrop={onDrop}>
<ReactFlow
nodes={nodes}
edges={edges}
nodeTypes={nodeTypes}
edgeTypes={edgeTypes}
onNodesChange={onNodesChange}
onEdgesChange={onEdgesChange}
onConnect={onConnect}
onNodeClick={onNodeClick}
onPaneClick={onPaneClick}
fitView
fitViewOptions={{ padding: 0.15, includeHiddenNodes: false, maxZoom: 1.2 }}
proOptions={{ hideAttribution: true }}
defaultEdgeOptions={{
type: "sysml",
markerEnd: { type: MarkerType.Arrow, color: "var(--edge)", width: 18, height: 18 },
}}
>
<Background variant={BackgroundVariant.Dots} gap={18} size={1} color="var(--grid-dot)" />
<Controls showInteractive={false} position="bottom-right" />
</ReactFlow>
<Palette />
{selectedNode && (
<NodeInspector
nodeId={selectedNode.id}
data={selectedNode.data as BlockNodeData}
onChange={patchSelected}
onDelete={deleteSelected}
onClose={() => onSelect?.(null)}
/>
)}
</div>
);
}