Files
codegraph/__tests__/ui-map-model.test.ts
T
Colby McHenry f0eafe31f9 feat(expo-router): add Expo Router support for Screens and navigations
Introduce Expo Router integration by adding a new Screens view and API to surface screens and their transitions. Implement a map-based layout with directional ports, extended layering and port pitch to accommodate edge labels, and a pill-based labeling system for transition conditions. Include tests for the new map/screens models, updates to the UI components, and design/docs changes reflecting the Screens design. Merge CodeGraph UI viewer changes to render and interact with Expo Router-based screen graphs. This enables CodeGraph UI to surface screens and navigations from Expo Router apps.
2026-08-28 00:19:46 -05:00

476 lines
18 KiB
TypeScript

/**
* The Map's layout, without a browser (CG-49).
*
* The properties under test are the ones that make the picture mean something.
* A map is only worth reading if the vertical position of a box is a claim
* about the code — so the tests here are mostly about *why* a module ends up
* where it does:
*
* - the layering rests on `declared` weight, not raw counts, because bare name
* matching invents cross-module links out of shared method names;
* - a two-cycle keeps its heavier direction and the lighter one is reported,
* never quietly dropped;
* - the same payload always produces the same picture, because a diagram you
* cannot recognise between two visits is not a map of anything.
*
* The endpoint that feeds it is tested against a real index in
* `ui-map-api.test.ts`.
*/
import { describe, it, expect } from 'vitest';
import {
buildMapLayout,
isEdgeVisible,
linkId,
moduleMetaLabel,
nodeWidth,
portPoint,
strokeWidthFor,
LAYER_GAP,
MIN_WEIGHT,
MIN_WEIGHT_WITH_TESTS,
NODE_HEIGHT,
type MapLayout,
} from '../ui/src/lib/map-model';
import type { WireMapLink, WireMapModule } from '../ui/src/lib/api';
/* ------------------------------------------------------------- fixtures -- */
function mod(id: string, over: Partial<WireMapModule> = {}): WireMapModule {
return {
id,
label: id.slice(id.lastIndexOf('/') + 1) || id,
files: over.files ?? 3,
symbols: over.symbols ?? 30,
languages: over.languages ?? [{ language: 'typescript', files: over.files ?? 3 }],
test: over.test ?? false,
facade: over.facade ?? false,
fileList: over.fileList ?? { total: 3, shown: 3, truncated: false, items: [] },
};
}
function link(
source: string,
target: string,
count: number,
declared = count
): WireMapLink {
return {
source,
target,
count,
declared,
byKind: [{ kind: 'calls', count }],
topPairs: [],
};
}
function layerOf(layout: MapLayout, id: string): number {
const node = layout.nodes.find((n) => n.id === id);
expect(node, `no node ${id}`).toBeTruthy();
return node!.layer;
}
const OPTS = { includeTests: false };
/* ---------------------------------------------------------------- specs -- */
describe('nodeWidth', () => {
it('fits the wider of the two lines and never goes under the floor', () => {
expect(nodeWidth('ui')).toBe(110);
// A long id outgrows the floor; a long meta line outgrows a short id.
expect(nodeWidth('src/resolution/(root files)')).toBeGreaterThan(200);
expect(nodeWidth('src/db', '1218 symbols · 54 files')).toBeGreaterThan(nodeWidth('src/db'));
});
});
describe('moduleMetaLabel', () => {
it('says the counts in singular when there is one of them', () => {
expect(moduleMetaLabel(mod('src/x', { symbols: 1, files: 1 }))).toBe('1 symbol · 1 file');
expect(moduleMetaLabel(mod('src/x', { symbols: 9, files: 2 }))).toBe('9 symbols · 2 files');
});
});
describe('strokeWidthFor', () => {
it('grows with the logarithm of the count and stops at 6', () => {
expect(strokeWidthFor(1)).toBe(1);
expect(strokeWidthFor(700)).toBeLessThanOrEqual(6);
expect(strokeWidthFor(1_000_000)).toBe(6);
expect(strokeWidthFor(64)).toBeGreaterThan(strokeWidthFor(8));
// A count of zero must not produce -Infinity.
expect(Number.isFinite(strokeWidthFor(0))).toBe(true);
});
});
describe('layering', () => {
const modules = [mod('src/bin'), mod('src/core'), mod('src/db')];
it('puts a module one layer above everything it depends on', () => {
const layout = buildMapLayout(
{ modules, links: [link('src/bin', 'src/core', 10), link('src/core', 'src/db', 10)] },
OPTS
);
expect(layerOf(layout, 'src/db')).toBe(0);
expect(layerOf(layout, 'src/core')).toBe(1);
expect(layerOf(layout, 'src/bin')).toBe(2);
// Layer 0 is the foundations, and it is drawn at the BOTTOM.
const bin = layout.nodes.find((n) => n.id === 'src/bin')!;
const db = layout.nodes.find((n) => n.id === 'src/db')!;
expect(bin.y).toBeLessThan(db.y);
expect(db.y - bin.y).toBe(2 * (NODE_HEIGHT + LAYER_GAP));
});
it('names only the top and bottom layers', () => {
const layout = buildMapLayout(
{ modules, links: [link('src/bin', 'src/core', 10), link('src/core', 'src/db', 10)] },
OPTS
);
expect(layout.layers.map((l) => l.label)).toEqual([
'foundations — depend on nothing below',
null,
'entry points',
]);
});
it('ignores a link with nothing declared behind it', () => {
// `src/db -> src/bin` is 40 name-only matches (`run`, `push`, `finish`) and
// would otherwise lift the storage layer above the CLI. It is still drawn —
// as a back-edge — but it must not decide the vertical order.
const layout = buildMapLayout(
{
modules,
links: [
link('src/bin', 'src/core', 10, 10),
link('src/core', 'src/db', 10, 10),
link('src/db', 'src/bin', 40, 0),
],
},
OPTS
);
expect(layout.basis.kind).toBe('declared');
expect(layerOf(layout, 'src/db')).toBe(0);
expect(layerOf(layout, 'src/bin')).toBe(2);
const noisy = layout.edges.find((e) => e.source === 'src/db' && e.target === 'src/bin')!;
expect(noisy).toBeTruthy();
expect(noisy.back).toBe(true);
});
it('falls back to raw counts, and says so, when almost nothing is declared', () => {
const layout = buildMapLayout(
{
modules,
links: [
link('src/bin', 'src/core', 10, 0),
link('src/core', 'src/db', 10, 0),
link('src/db', 'src/core', 2, 1),
],
},
OPTS
);
expect(layout.basis.kind).toBe('all');
expect(layout.basis.declaredLinks).toBe(1);
expect(layout.basis.totalLinks).toBe(3);
expect(layout.basis.declaredLinks / layout.basis.totalLinks).toBeLessThan(0.4);
// With raw counts the chain is still a chain, and the light back-reference
// becomes the mutual one.
expect(layerOf(layout, 'src/db')).toBe(0);
expect(layerOf(layout, 'src/bin')).toBe(2);
expect(layout.mutual.map((m) => m.back.source)).toEqual(['src/db']);
});
it('survives a three-module loop instead of recursing forever', () => {
const layout = buildMapLayout(
{
modules,
links: [
link('src/bin', 'src/core', 5),
link('src/core', 'src/db', 5),
link('src/db', 'src/bin', 5),
],
},
OPTS
);
expect(layout.nodes).toHaveLength(3);
expect(layout.moduleCycles).toEqual([['src/bin', 'src/core', 'src/db']]);
// Every module still got a finite layer.
expect(layout.nodes.every((n) => Number.isInteger(n.layer))).toBe(true);
});
});
describe('two-cycles', () => {
const modules = [mod('src/a'), mod('src/b')];
it('keeps the heavier direction and reports the lighter as mutual', () => {
const layout = buildMapLayout(
{ modules, links: [link('src/a', 'src/b', 20), link('src/b', 'src/a', 3)] },
OPTS
);
expect(layerOf(layout, 'src/a')).toBe(1);
expect(layerOf(layout, 'src/b')).toBe(0);
expect(layout.mutual).toHaveLength(1);
expect(layout.mutual[0]!.forward.source).toBe('src/a');
expect(layout.mutual[0]!.back.source).toBe('src/b');
// Both directions are still on the canvas; the lighter one points up.
expect(layout.edges).toHaveLength(2);
expect(layout.edges.find((e) => e.source === 'src/b')!.back).toBe(true);
expect(layout.edges.find((e) => e.source === 'src/a')!.back).toBe(false);
});
it('breaks an exact tie the same way every time', () => {
const one = buildMapLayout(
{ modules, links: [link('src/a', 'src/b', 7), link('src/b', 'src/a', 7)] },
OPTS
);
const two = buildMapLayout(
{ modules, links: [link('src/b', 'src/a', 7), link('src/a', 'src/b', 7)] },
OPTS
);
expect(one.mutual[0]!.back.source).toBe('src/b');
expect(two.mutual[0]!.back.source).toBe('src/b');
expect(layerOf(one, 'src/a')).toBe(layerOf(two, 'src/a'));
});
});
describe('tests and thresholds', () => {
const modules = [mod('src/core'), mod('__tests__', { test: true })];
const links = [link('__tests__', 'src/core', 30), link('src/core', '__tests__', 2)];
it('leaves test modules out until they are asked for, and their links with them', () => {
const off = buildMapLayout({ modules, links }, { includeTests: false });
expect(off.nodes.map((n) => n.id)).toEqual(['src/core']);
expect(off.edges).toHaveLength(0);
expect(off.minWeight).toBe(MIN_WEIGHT);
const on = buildMapLayout({ modules, links }, { includeTests: true });
expect(on.nodes).toHaveLength(2);
expect(on.edges).toHaveLength(2);
// A test module touches everything, so the bar for a visible link is higher.
expect(on.minWeight).toBe(MIN_WEIGHT_WITH_TESTS);
});
it('marks a link under the threshold thin rather than deleting it', () => {
const layout = buildMapLayout(
{
modules: [mod('src/a'), mod('src/b'), mod('src/c')],
links: [link('src/a', 'src/b', 12), link('src/a', 'src/c', 2)],
},
OPTS
);
const thin = layout.edges.find((e) => e.target === 'src/c')!;
expect(thin.thin).toBe(true);
expect(isEdgeVisible(thin, null)).toBe(false);
// Selecting either end brings it back — that is the whole point of hiding
// it rather than dropping it.
expect(isEdgeVisible(thin, 'src/a')).toBe(true);
expect(isEdgeVisible(thin, 'src/c')).toBe(true);
expect(isEdgeVisible(thin, 'src/b')).toBe(false);
const fat = layout.edges.find((e) => e.target === 'src/b')!;
expect(isEdgeVisible(fat, null)).toBe(true);
expect(isEdgeVisible(fat, 'src/c')).toBe(false);
});
});
describe('ports', () => {
it('gives every link its own port, ordered by where the other end sits', () => {
const layout = buildMapLayout(
{
modules: [mod('src/top'), mod('src/left'), mod('src/mid'), mod('src/right')],
links: [
link('src/top', 'src/left', 9),
link('src/top', 'src/mid', 9),
link('src/top', 'src/right', 9),
],
},
OPTS
);
const top = layout.nodes.find((n) => n.id === 'src/top')!;
expect(top.sourceHandles).toHaveLength(3);
expect(new Set(top.sourceHandles).size).toBe(3);
// The handle order must follow the targets' left-to-right order, or the
// three edges cross each other inside the gap for no reason.
const xOf = (id: string) => {
const n = layout.nodes.find((m) => m.id === id)!;
return n.x + n.width / 2;
};
const targets = top.sourceHandles.map(
(id) => layout.edges.find((e) => e.id === id)!.target
);
const xs = targets.map(xOf);
expect(xs).toEqual([...xs].sort((a, b) => a - b));
// Each target's single incoming link is its only target handle.
for (const id of ['src/left', 'src/mid', 'src/right']) {
expect(layout.nodes.find((n) => n.id === id)!.targetHandles).toHaveLength(1);
}
});
it('names an edge by its endpoints, so two runs key the same', () => {
expect(linkId({ source: 'a', target: 'b' })).toBe(linkId({ source: 'a', target: 'b' }));
expect(linkId({ source: 'a', target: 'b' })).not.toBe(linkId({ source: 'b', target: 'a' }));
});
});
describe('determinism', () => {
const modules = [
mod('src/alpha'),
mod('src/beta'),
mod('src/gamma'),
mod('src/delta'),
mod('src/epsilon'),
];
const links = [
link('src/alpha', 'src/beta', 12),
link('src/alpha', 'src/gamma', 8),
link('src/beta', 'src/delta', 15),
link('src/gamma', 'src/delta', 6),
link('src/delta', 'src/epsilon', 20),
link('src/beta', 'src/epsilon', 5),
];
it('produces an identical layout from an identical payload', () => {
const a = buildMapLayout({ modules, links }, OPTS);
const b = buildMapLayout({ modules, links }, OPTS);
expect(JSON.stringify(b)).toBe(JSON.stringify(a));
});
it('does not depend on the order the payload happened to arrive in', () => {
const a = buildMapLayout({ modules, links }, OPTS);
const b = buildMapLayout(
{ modules: [...modules].reverse(), links: [...links].reverse() },
OPTS
);
const positions = (l: MapLayout) =>
l.nodes
.map((n) => `${n.id}@${n.layer}:${Math.round(n.x)},${Math.round(n.y)}`)
.sort()
.join('|');
expect(positions(b)).toBe(positions(a));
});
it('places an unconnected module without stretching the canvas around it', () => {
const withIsland = buildMapLayout(
{ modules: [...modules, mod('src/island')], links },
OPTS
);
const island = withIsland.nodes.find((n) => n.id === 'src/island')!;
expect(island).toBeTruthy();
expect(island.layer).toBe(0);
// Parked at the right-hand end of its layer, not interleaved through the
// modules that actually connect.
const sameLayer = withIsland.nodes.filter((n) => n.layer === 0);
expect(Math.max(...sameLayer.map((n) => n.x))).toBe(island.x);
// And the canvas is no wider than the boxes standing shoulder to shoulder.
const widest = Math.max(
...[0, 1, 2, 3].map((layer) =>
withIsland.nodes
.filter((n) => n.layer === layer)
.reduce((sum, n) => sum + n.width, 0)
)
);
expect(withIsland.width).toBeLessThan(widest + 6 * 34 + 200);
});
});
describe('empty and degenerate inputs', () => {
it('answers an empty payload without throwing', () => {
const layout = buildMapLayout({ modules: [], links: [] }, OPTS);
expect(layout.nodes).toHaveLength(0);
expect(layout.edges).toHaveLength(0);
expect(layout.basis.kind).toBe('all');
expect(Number.isFinite(layout.width)).toBe(true);
expect(Number.isFinite(layout.height)).toBe(true);
});
it('drops a link whose other end was filtered out', () => {
const layout = buildMapLayout(
{
modules: [mod('src/a'), mod('__tests__', { test: true })],
links: [link('src/a', '__tests__', 9), link('src/a', 'src/ghost', 9)],
},
OPTS
);
expect(layout.edges).toHaveLength(0);
});
it('leaves a single layer unlabelled', () => {
const layout = buildMapLayout({ modules: [mod('src/only')], links: [] }, OPTS);
expect(layout.layers).toHaveLength(1);
expect(layout.layers[0]!.label).toBeNull();
});
});
describe('directional ports and room', () => {
const modules = [mod('src/a'), mod('src/b')];
it('draws the Map exactly as before: bottoms leave, tops arrive, every link runs down', () => {
const layout = buildMapLayout(
{ modules: [mod('src/bin'), mod('src/core'), mod('src/db')], links: [link('src/bin', 'src/core', 10), link('src/core', 'src/db', 10)] },
OPTS
);
for (const node of layout.nodes) {
expect(node.ports.bottom.map((p) => p.id)).toEqual(node.sourceHandles);
expect(node.ports.top.map((p) => p.id)).toEqual(node.targetHandles);
expect(node.ports.bottom.every((p) => p.type === 'source')).toBe(true);
expect(node.ports.top.every((p) => p.type === 'target')).toBe(true);
}
expect(layout.edges.every((e) => e.route === 'down')).toBe(true);
});
it('keeps a back-edge bottom-to-top under layered ports, and top-to-bottom under directional ones', () => {
const payload = { modules, links: [link('src/a', 'src/b', 10), link('src/b', 'src/a', 2)] };
const layered = buildMapLayout(payload, OPTS);
const directional = buildMapLayout(payload, { ...OPTS, ports: 'directional' });
for (const layout of [layered, directional]) {
const back = layout.edges.find((e) => e.source === 'src/b')!;
expect(back.route).toBe('up');
expect(back.back).toBe(true);
}
const a = (l: MapLayout) => l.nodes.find((n) => n.id === 'src/a')!;
const b = (l: MapLayout) => l.nodes.find((n) => n.id === 'src/b')!;
const id = linkId({ source: 'src/b', target: 'src/a' });
// The Map: leaves b's bottom, arrives at a's top — through both boxes, as it always has.
expect(portPoint(b(layered), id, 'source').y).toBe(b(layered).y + NODE_HEIGHT);
expect(portPoint(a(layered), id, 'target').y).toBe(a(layered).y);
// Directional: leaves b's top, arrives at a's bottom — around them.
expect(portPoint(b(directional), id, 'source').y).toBe(b(directional).y);
expect(portPoint(a(directional), id, 'target').y).toBe(a(directional).y + NODE_HEIGHT);
});
it('joins two modules on one layer over the top, under directional ports', () => {
const layout = buildMapLayout(
{ modules, links: [link('src/a', 'src/b', 10)] },
{ ...OPTS, ports: 'directional', layering: (ids) => new Map(ids.map((id) => [id, 0])) }
);
const edge = layout.edges[0]!;
expect(edge.route).toBe('level');
const a = layout.nodes.find((n) => n.id === 'src/a')!;
const b = layout.nodes.find((n) => n.id === 'src/b')!;
expect(portPoint(a, edge.id, 'source').y).toBe(a.y);
expect(portPoint(b, edge.id, 'target').y).toBe(b.y);
});
it('widens a box to keep its ports apart, and only then', () => {
const leaves = Array.from({ length: 20 }, (_, i) => mod(`src/leaf${i}`));
const payload = { modules: [mod('src/hub'), ...leaves], links: leaves.map((l) => link('src/hub', l.id, 5)) };
const plain = buildMapLayout(payload, OPTS).nodes.find((n) => n.id === 'src/hub')!;
const pitched = buildMapLayout(payload, { ...OPTS, portPitch: 12 }).nodes.find((n) => n.id === 'src/hub')!;
// Nothing depends on the hub, so its second line is the island's.
expect(plain.width).toBe(nodeWidth('src/hub', moduleMetaLabel(mod('src/hub'), true)));
expect(pitched.width).toBe(Math.max(plain.width, 21 * 12));
expect(pitched.width).toBeGreaterThan(plain.width);
});
it('spaces layers by the gap a view asks for', () => {
const payload = { modules, links: [link('src/a', 'src/b', 10)] };
const wide = buildMapLayout(payload, { ...OPTS, layerGap: 116 });
const a = wide.nodes.find((n) => n.id === 'src/a')!;
const b = wide.nodes.find((n) => n.id === 'src/b')!;
expect(b.y - a.y).toBe(NODE_HEIGHT + 116);
expect(wide.height).toBe(buildMapLayout(payload, OPTS).height + (116 - LAYER_GAP));
// Layer 0 is the bottom, so it has the larger y.
expect(wide.layers[0]!.y - wide.layers[1]!.y).toBe(NODE_HEIGHT + 116);
});
});