trails/apps/planner/app/lib/brouter.test.ts
Ullrich Schäfer 6f2b4450df
fix(planner/brouter): cap upstream response size to 10MB
Planner-audit #9. \`fetchSegment\` previously \`await response.json()\`
on any body BRouter returned. A misbehaving or compromised upstream
could OOM the planner process by returning gigabytes of JSON.

New \`readBodyWithCap()\`:
- Reject upfront when \`content-length\` declares over the cap.
- Stream the body and abort the reader once received bytes exceed
  the cap (handles the case where upstream lies about content-length
  or omits it).

Cap chosen at 10 MB — real per-segment GeoJSON is <100 KB; even the
longest realistic multi-day route stays well under 2 MB. Above 10 MB
is upstream bug or abuse; we'd rather error.

Applied to both \`fetchSegment\` (GeoJSON path) and \`computeSegmentGpx\`
(GPX path).

Tests: 3 cases (within cap, content-length over cap, streamed body
mid-cap abort).
2026-05-26 00:48:45 +02:00

347 lines
12 KiB
TypeScript

import { describe, it, expect, vi, beforeEach, afterEach } from "vitest";
import { computeRoute, computeSegmentGpx, mergeGeoJsonSegments } from "./brouter";
function makeSegment(coords: number[][], length: number, ascend: number) {
return {
type: "FeatureCollection",
features: [{
type: "Feature",
properties: {
"track-length": String(length),
"filtered ascend": String(ascend),
"total-time": "100",
},
geometry: { type: "LineString", coordinates: coords },
}],
};
}
describe("mergeGeoJsonSegments", () => {
it("merges two segments", () => {
const seg1 = makeSegment([[13.0, 52.0, 30], [13.1, 52.1, 40], [13.2, 52.2, 50]], 1000, 10);
const seg2 = makeSegment([[13.2, 52.2, 50], [13.3, 52.3, 60], [13.4, 52.4, 45]], 1500, 20);
const result = mergeGeoJsonSegments([seg1, seg2] as never[]);
expect(result.coordinates).toHaveLength(5);
expect(result.coordinates[0]).toEqual([13.0, 52.0, 30]);
expect(result.coordinates[2]).toEqual([13.2, 52.2, 50]);
expect(result.coordinates[4]).toEqual([13.4, 52.4, 45]);
});
it("skips duplicate point at segment boundaries", () => {
const seg1 = makeSegment([[1, 1, 0], [2, 2, 0]], 100, 0);
const seg2 = makeSegment([[2, 2, 0], [3, 3, 0]], 100, 0);
const seg3 = makeSegment([[3, 3, 0], [4, 4, 0]], 100, 0);
const result = mergeGeoJsonSegments([seg1, seg2, seg3] as never[]);
expect(result.coordinates).toHaveLength(4);
});
it("accumulates stats across segments", () => {
const seg1 = makeSegment([[1, 1, 0], [2, 2, 0]], 1000, 50);
const seg2 = makeSegment([[2, 2, 0], [3, 3, 0]], 2000, 30);
const result = mergeGeoJsonSegments([seg1, seg2] as never[]);
expect(result.totalLength).toBe(3000);
expect(result.totalAscend).toBe(80);
});
it("handles single segment", () => {
const seg = makeSegment([[1, 1, 10], [2, 2, 20], [3, 3, 30]], 500, 10);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.coordinates).toHaveLength(3);
expect(result.totalLength).toBe(500);
});
it("handles empty segment gracefully", () => {
const seg1 = makeSegment([[1, 1, 0], [2, 2, 0]], 100, 0);
const empty = { type: "FeatureCollection", features: [] };
const result = mergeGeoJsonSegments([seg1, empty] as never[]);
expect(result.coordinates).toHaveLength(2);
});
it("preserves 3D coordinates (elevation)", () => {
const seg = makeSegment([[13.4, 52.5, 34], [13.38, 52.51, 40]], 500, 6);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.coordinates[0]![2]).toBe(34);
expect(result.coordinates[1]![2]).toBe(40);
});
it("defaults missing elevation to 0", () => {
const seg = makeSegment([[13.4, 52.5], [13.38, 52.51]], 500, 0);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.coordinates[0]![2]).toBe(0);
expect(result.coordinates[1]![2]).toBe(0);
});
// Segment boundary tests
it("tracks segment boundaries with 1 segment", () => {
const seg = makeSegment([[0, 0, 0], [1, 1, 10], [2, 2, 20]], 100, 20);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.segmentBoundaries).toEqual([0]);
});
it("tracks segment boundaries with 2 segments", () => {
const seg1 = makeSegment([[0, 0, 0], [1, 1, 10], [2, 2, 20]], 100, 20);
const seg2 = makeSegment([[2, 2, 20], [3, 3, 30], [4, 4, 40]], 100, 20);
const result = mergeGeoJsonSegments([seg1, seg2] as never[]);
expect(result.segmentBoundaries).toEqual([0, 3]);
expect(result.coordinates).toHaveLength(5);
});
it("tracks segment boundaries with 4 segments (5 waypoints)", () => {
const segments = [
makeSegment([[0, 0, 0], [1, 1, 10]], 100, 10),
makeSegment([[1, 1, 10], [2, 2, 20]], 100, 10),
makeSegment([[2, 2, 20], [3, 3, 30]], 100, 10),
makeSegment([[3, 3, 30], [4, 4, 40]], 100, 10),
];
const result = mergeGeoJsonSegments(segments as never[]);
expect(result.segmentBoundaries).toEqual([0, 2, 3, 4]);
expect(result.coordinates).toHaveLength(5);
expect(result.totalLength).toBe(400);
});
it("segment boundaries allow mapping point index to waypoint segment", () => {
const seg1 = makeSegment([[0, 0, 0], [0.5, 0.5, 5], [1, 1, 10]], 100, 10);
const seg2 = makeSegment([[1, 1, 10], [1.5, 1.5, 15], [2, 2, 20]], 100, 10);
const result = mergeGeoJsonSegments([seg1, seg2] as never[]);
// boundaries: [0, 3] — segment 0 is coords 0-2, segment 1 is coords 3-4
function findSegment(pointIndex: number): number {
const bounds = result.segmentBoundaries;
for (let i = bounds.length - 1; i >= 0; i--) {
if (pointIndex >= bounds[i]!) return i;
}
return 0;
}
expect(findSegment(0)).toBe(0); // first point → segment 0
expect(findSegment(1)).toBe(0); // mid of segment 0
expect(findSegment(2)).toBe(0); // last point of segment 0
expect(findSegment(3)).toBe(1); // first point of segment 1
expect(findSegment(4)).toBe(1); // last point
});
it("geojson field is backwards compatible", () => {
const seg = makeSegment([[13.0, 52.0, 30], [13.1, 52.1, 40]], 500, 10);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.geojson.type).toBe("FeatureCollection");
expect(result.geojson.features).toHaveLength(1);
expect(result.geojson.features[0]!.geometry.type).toBe("LineString");
expect(result.geojson.features[0]!.properties["track-length"]).toBe("500");
});
});
describe("highway tag extraction", () => {
function makeSegmentWithTags(coords: number[][], tags: string[]) {
return {
type: "FeatureCollection",
features: [{
type: "Feature",
properties: {
"track-length": "100",
"filtered ascend": "0",
"total-time": "100",
messages: [
["Longitude", "Latitude", "Elevation", "Distance", "CostPerKm", "ElevCost", "TurnCost", "NodeCost", "InitialCost", "WayTags"],
...tags.map((t, i) => [String(coords[i]?.[0] ?? 0), String(coords[i]?.[1] ?? 0), "0", "100", "0", "0", "0", "0", "0", t]),
],
},
geometry: { type: "LineString", coordinates: coords },
}],
};
}
it("extracts highway tags from WayTags", () => {
const seg = makeSegmentWithTags(
[[13.0, 52.0, 30], [13.1, 52.1, 40], [13.2, 52.2, 50]],
["highway=cycleway surface=asphalt", "highway=residential surface=cobblestone", "highway=path surface=gravel"],
);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.highways[0]).toBe("cycleway");
expect(result.highways[1]).toBe("residential");
expect(result.highways[2]).toBe("path");
});
it("extracts surface and highway tags together", () => {
const seg = makeSegmentWithTags(
[[13.0, 52.0, 30], [13.1, 52.1, 40]],
["highway=tertiary surface=asphalt", "highway=cycleway surface=gravel"],
);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.surfaces[0]).toBe("asphalt");
expect(result.highways[0]).toBe("tertiary");
expect(result.surfaces[1]).toBe("gravel");
expect(result.highways[1]).toBe("cycleway");
});
it("defaults to unknown when highway tag is missing", () => {
const seg = makeSegmentWithTags(
[[13.0, 52.0, 30], [13.1, 52.1, 40]],
["surface=asphalt", "surface=gravel"],
);
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.highways[0]).toBe("unknown");
expect(result.highways[1]).toBe("unknown");
});
it("handles missing WayTags column", () => {
const seg = {
type: "FeatureCollection",
features: [{
type: "Feature",
properties: {
"track-length": "100",
"filtered ascend": "0",
"total-time": "100",
messages: [["Longitude", "Latitude"]],
},
geometry: { type: "LineString", coordinates: [[13.0, 52.0, 30], [13.1, 52.1, 40]] },
}],
};
const result = mergeGeoJsonSegments([seg] as never[]);
expect(result.highways[0]).toBe("unknown");
expect(result.highways[1]).toBe("unknown");
});
});
describe("X-BRouter-Auth header", () => {
// Minimal valid response so computeRoute doesn't throw during merge.
const stubGeoJson = JSON.stringify({
type: "FeatureCollection",
features: [
{
type: "Feature",
properties: { "track-length": "100", "filtered ascend": "0", "total-time": "10" },
geometry: { type: "LineString", coordinates: [[13.0, 52.0, 30], [13.1, 52.1, 40]] },
},
],
});
let fetchSpy: ReturnType<typeof vi.fn>;
beforeEach(() => {
fetchSpy = vi.fn().mockResolvedValue(
new Response(stubGeoJson, { status: 200, headers: { "content-type": "application/json" } }),
);
vi.stubGlobal("fetch", fetchSpy);
});
afterEach(() => {
vi.unstubAllEnvs();
vi.unstubAllGlobals();
});
it("attaches X-BRouter-Auth when BROUTER_AUTH_TOKEN is set (computeRoute)", async () => {
vi.stubEnv("BROUTER_AUTH_TOKEN", "test-token-abc");
await computeRoute({
waypoints: [
{ lat: 52.0, lon: 13.0 },
{ lat: 52.1, lon: 13.1 },
],
});
expect(fetchSpy).toHaveBeenCalledTimes(1);
const [, init] = fetchSpy.mock.calls[0]!;
expect(init?.headers).toMatchObject({ "X-BRouter-Auth": "test-token-abc" });
});
it("omits X-BRouter-Auth when BROUTER_AUTH_TOKEN is unset (dev/test convenience)", async () => {
vi.stubEnv("BROUTER_AUTH_TOKEN", "");
await computeRoute({
waypoints: [
{ lat: 52.0, lon: 13.0 },
{ lat: 52.1, lon: 13.1 },
],
});
const [, init] = fetchSpy.mock.calls[0]!;
expect(init?.headers).not.toHaveProperty("X-BRouter-Auth");
});
it("attaches X-BRouter-Auth on computeSegmentGpx as well", async () => {
vi.stubEnv("BROUTER_AUTH_TOKEN", "test-token-xyz");
fetchSpy.mockResolvedValueOnce(
new Response('<gpx><trk><trkseg><trkpt lat="52" lon="13"/></trkseg></trk></gpx>', {
status: 200,
headers: { "content-type": "application/gpx+xml" },
}),
);
await computeSegmentGpx({
waypoints: [
{ lat: 52.0, lon: 13.0 },
{ lat: 52.1, lon: 13.1 },
],
});
const [, init] = fetchSpy.mock.calls[0]!;
expect(init?.headers).toMatchObject({ "X-BRouter-Auth": "test-token-xyz" });
});
});
describe("waypoint to BRouter segments", () => {
it("splits N waypoints into N-1 pairs", () => {
const waypoints = [
{ lat: 52.0, lon: 13.0 },
{ lat: 52.1, lon: 13.1 },
{ lat: 52.2, lon: 13.2 },
{ lat: 52.3, lon: 13.3 },
];
const pairs: Array<[typeof waypoints[0], typeof waypoints[0]]> = [];
for (let i = 0; i < waypoints.length - 1; i++) {
pairs.push([waypoints[i]!, waypoints[i + 1]!]);
}
expect(pairs).toHaveLength(3);
});
});
describe("readBodyWithCap", () => {
// We import lazily so the rest of brouter.ts's module-level env
// checks don't interfere with the other test files.
it("returns the body when within the cap", async () => {
const { readBodyWithCap } = await import("./brouter.ts");
const resp = new Response("hello");
expect(await readBodyWithCap(resp, 1000)).toBe("hello");
});
it("rejects upfront when content-length declares over the cap", async () => {
const { readBodyWithCap } = await import("./brouter.ts");
const resp = new Response("x", { headers: { "content-length": "99999" } });
await expect(readBodyWithCap(resp, 100)).rejects.toThrow(/response too large/);
});
it("aborts mid-stream when bytes exceed the cap (no content-length lie)", async () => {
const { readBodyWithCap } = await import("./brouter.ts");
// Build a streaming response that emits two chunks; cap between them.
const body = new ReadableStream<Uint8Array>({
start(controller) {
controller.enqueue(new TextEncoder().encode("a".repeat(60)));
controller.enqueue(new TextEncoder().encode("b".repeat(60)));
controller.close();
},
});
const resp = new Response(body);
await expect(readBodyWithCap(resp, 100)).rejects.toThrow(/exceeded/);
});
});