mirror of
https://github.com/priyanshujain/sanderling.git
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327 lines
11 KiB
TypeScript
327 lines
11 KiB
TypeScript
import { test } from "node:test";
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import assert from "node:assert/strict";
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import { Pcg } from "../src/pcg.ts";
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import { nextAction, walk } from "../src/pick.ts";
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import { INPUT_CORPUS, NATIVE_PRESS_KEYS, WEB_PRESS_KEYS } from "../src/corpus.ts";
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import { resetWarnings } from "../src/verbs.ts";
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import type {
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ActionDescriptor,
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BuiltinVerb,
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Candidate,
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GeneratorNode,
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Host,
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} from "../src/action-tree.ts";
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type Platform = "android" | "ios" | "web";
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// stubHost returns a fixed candidate list for every verb and records each
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// reportUnsupported call so warn-once semantics are observable.
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function stubHost(
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platform: Platform,
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candidates: Candidate[],
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): Host & { unsupported: BuiltinVerb[] } {
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const unsupported: BuiltinVerb[] = [];
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return {
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unsupported,
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platform: () => platform,
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queryCandidates: () => candidates,
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reportUnsupported: (verb) => {
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unsupported.push(verb);
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},
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seedHi: () => 0n,
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seedLo: () => 0n,
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};
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}
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const POINTS: Candidate[] = [
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{ x: 10, y: 20, selector: "id:a", width: 100, height: 200 },
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{ x: 30, y: 40, selector: "id:b", width: 100, height: 200 },
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{ x: 50, y: 60, selector: "id:c", width: 100, height: 200 },
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];
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function builtin(verb: BuiltinVerb): GeneratorNode {
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return { kind: "builtin", verb };
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}
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test("taps draws one candidate index and targets its point", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const rng = new Pcg(42n, 0n);
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const oracle = new Pcg(42n, 0n);
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const expectedIndex = oracle.intN(POINTS.length);
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const action = walk(builtin("taps"), rng, host);
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assert.deepEqual(action, {
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kind: "Tap",
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on: { x: POINTS[expectedIndex]!.x, y: POINTS[expectedIndex]!.y },
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});
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});
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test("typing draws candidate index then corpus index, in that order", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const rng = new Pcg(42n, 0n);
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const oracle = new Pcg(42n, 0n);
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const candidateIndex = oracle.intN(POINTS.length);
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const corpusIndex = oracle.intN(INPUT_CORPUS.length);
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const action = walk(builtin("typing"), rng, host) as ActionDescriptor & {
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kind: "InputText";
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};
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assert.equal(action.kind, "InputText");
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assert.deepEqual(action.into, {
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x: POINTS[candidateIndex]!.x,
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y: POINTS[candidateIndex]!.y,
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});
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assert.equal(action.text, INPUT_CORPUS[corpusIndex]);
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});
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test("swipes draw candidate, magnitude (200+intN(401)), then direction", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const rng = new Pcg(7n, 0n);
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const oracle = new Pcg(7n, 0n);
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const candidateIndex = oracle.intN(POINTS.length);
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const magnitude = 200 + oracle.intN(401);
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const direction = oracle.intN(4);
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const from = { x: POINTS[candidateIndex]!.x, y: POINTS[candidateIndex]!.y };
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const expectedTo = { x: from.x, y: from.y };
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switch (direction) {
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case 0:
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expectedTo.y = Math.max(0, from.y - magnitude);
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break;
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case 1:
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expectedTo.y = Math.max(0, from.y + magnitude);
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break;
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case 2:
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expectedTo.x = Math.max(0, from.x - magnitude);
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break;
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case 3:
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expectedTo.x = Math.max(0, from.x + magnitude);
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break;
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}
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const action = walk(builtin("swipes"), rng, host) as ActionDescriptor & {
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kind: "Swipe";
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};
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assert.equal(action.kind, "Swipe");
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assert.deepEqual(action.from, from);
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assert.deepEqual(action.to, expectedTo);
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assert.equal(action.durationMillis, 250);
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});
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test("scrolls draw candidate index then direction", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const rng = new Pcg(99n, 0n);
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const oracle = new Pcg(99n, 0n);
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const candidateIndex = oracle.intN(POINTS.length);
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const directionIndex = oracle.intN(4);
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const directions = ["up", "down", "left", "right"] as const;
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const action = walk(builtin("scrolls"), rng, host) as ActionDescriptor & {
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kind: "Scroll";
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};
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assert.equal(action.kind, "Scroll");
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assert.equal(action.direction, directions[directionIndex]);
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assert.deepEqual(action.in, {
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x: POINTS[candidateIndex]!.x,
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y: POINTS[candidateIndex]!.y,
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});
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});
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test("doubleTaps and longPresses draw exactly one candidate index", () => {
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resetWarnings();
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for (const verb of ["doubleTaps", "longPresses"] as const) {
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const host = stubHost("android", POINTS);
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const rng = new Pcg(123n, 0n);
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const oracle = new Pcg(123n, 0n);
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const index = oracle.intN(POINTS.length);
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const action = walk(builtin(verb), rng, host);
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const kind = verb === "doubleTaps" ? "DoubleTap" : "LongPress";
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assert.deepEqual(action, {
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kind,
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on: { x: POINTS[index]!.x, y: POINTS[index]!.y },
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});
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}
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});
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test("waitOnce emits a 500ms wait and draws nothing", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const rng = new Pcg(42n, 0n);
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const before = rng.float64();
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const after = rng.float64();
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const fresh = new Pcg(42n, 0n);
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fresh.float64();
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const action = walk(builtin("waitOnce"), fresh, host);
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const afterWait = fresh.float64();
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assert.deepEqual(action, { kind: "Wait", durationMillis: 500 });
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// The wait consumed no draw, so the stream is identical with or without it.
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assert.equal(afterWait, after);
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assert.notEqual(before, after);
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});
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test("pressKeys on native draws from NATIVE_PRESS_KEYS", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const rng = new Pcg(42n, 0n);
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const oracle = new Pcg(42n, 0n);
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const index = oracle.intN(NATIVE_PRESS_KEYS.length);
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const action = walk(builtin("pressKeys"), rng, host);
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assert.deepEqual(action, { kind: "PressKey", key: NATIVE_PRESS_KEYS[index] });
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});
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test("pressKeys on web draws from WEB_PRESS_KEYS", () => {
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resetWarnings();
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const host = stubHost("web", POINTS);
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const rng = new Pcg(2024n, 0n);
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const oracle = new Pcg(2024n, 0n);
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const index = oracle.intN(WEB_PRESS_KEYS.length);
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const action = walk(builtin("pressKeys"), rng, host);
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assert.deepEqual(action, { kind: "PressKey", key: WEB_PRESS_KEYS[index] });
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});
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test("empty candidate list yields null without drawing", () => {
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resetWarnings();
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const host = stubHost("android", []);
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const rng = new Pcg(42n, 0n);
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assert.equal(walk(builtin("taps"), rng, host), null);
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// No draw consumed: next float64 matches a fresh stream's first draw.
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assert.equal(rng.float64(), new Pcg(42n, 0n).float64());
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});
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test("weighted: one float64 draw, ascending cumulative scan", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const tap: GeneratorNode = builtin("taps");
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const wait: GeneratorNode = builtin("waitOnce");
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// total = 3; draw = float64()*3 decides the branch by ascending cumulative.
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const node: GeneratorNode = {
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kind: "weighted",
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branches: [
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[1, tap],
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[2, wait],
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],
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};
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const rng = new Pcg(42n, 0n);
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const oracle = new Pcg(42n, 0n);
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const draw = oracle.float64() * 3;
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const expectFirst = draw < 1; // cumulative after branch 0 is 1.
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const action = walk(node, rng, host);
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if (expectFirst) {
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assert.equal((action as ActionDescriptor).kind, "Tap");
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} else {
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assert.deepEqual(action, { kind: "Wait", durationMillis: 500 });
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}
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});
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test("weighted: a zero-weight branch is never selected", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const poison: GeneratorNode = {
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kind: "actions",
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generate: () => {
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throw new Error("zero-weight branch must never be walked");
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},
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};
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const node: GeneratorNode = {
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kind: "weighted",
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branches: [
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[0, poison],
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[1, builtin("waitOnce")],
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],
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};
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// Drive many seeds: the zero-weight branch must never be entered.
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for (let seed = 1; seed <= 200; seed++) {
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const action = walk(node, new Pcg(BigInt(seed), 0n), host);
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assert.deepEqual(action, { kind: "Wait", durationMillis: 500 });
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}
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});
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test("weighted: all-zero (or negative) weights return null", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const node: GeneratorNode = {
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kind: "weighted",
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branches: [
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[0, builtin("waitOnce")],
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[-5, builtin("taps")],
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],
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};
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assert.equal(walk(node, new Pcg(42n, 0n), host), null);
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});
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test("actions: single-element list draws nothing", () => {
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resetWarnings();
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const only: ActionDescriptor = { kind: "Wait", durationMillis: 10 };
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const node: GeneratorNode = { kind: "actions", generate: () => [only] };
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const rng = new Pcg(42n, 0n);
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const action = walk(node, rng, stubHost("android", POINTS));
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assert.deepEqual(action, only);
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// No draw consumed for a singleton list.
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assert.equal(rng.float64(), new Pcg(42n, 0n).float64());
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});
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test("actions: multi-element list draws one intN(len) index", () => {
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resetWarnings();
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const list: ActionDescriptor[] = [
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{ kind: "Wait", durationMillis: 1 },
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{ kind: "Wait", durationMillis: 2 },
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{ kind: "Wait", durationMillis: 3 },
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];
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const node: GeneratorNode = { kind: "actions", generate: () => [...list] };
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const rng = new Pcg(42n, 0n);
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const oracle = new Pcg(42n, 0n);
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const index = oracle.intN(list.length);
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assert.deepEqual(walk(node, rng, stubHost("android", POINTS)), list[index]);
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});
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test("actions: empty list yields null", () => {
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resetWarnings();
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const node: GeneratorNode = { kind: "actions", generate: () => [] };
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assert.equal(walk(node, new Pcg(42n, 0n), stubHost("android", POINTS)), null);
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});
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test("corpus reproducibility: same seed yields the same typed text", () => {
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resetWarnings();
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const host = stubHost("android", POINTS);
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const first = walk(builtin("typing"), new Pcg(2024n, 0n), host) as ActionDescriptor & {
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kind: "InputText";
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};
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const second = walk(builtin("typing"), new Pcg(2024n, 0n), host) as ActionDescriptor & {
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kind: "InputText";
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};
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assert.equal(first.text, second.text);
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assert.ok(INPUT_CORPUS.includes(first.text));
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});
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test("nextAction retries up to 16 times then returns null", () => {
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resetWarnings();
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// An empty weighted tree always returns null; nextAction must give up, not loop.
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const empty: GeneratorNode = { kind: "weighted", branches: [] };
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assert.equal(nextAction(empty, new Pcg(42n, 0n), stubHost("android", POINTS)), null);
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});
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test("nextAction returns the first non-null walk result", () => {
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resetWarnings();
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let calls = 0;
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// First two walks yield null (empty list), third yields an action. nextAction
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// should return on the third attempt.
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const node: GeneratorNode = {
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kind: "actions",
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generate: () => {
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calls++;
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return calls >= 3 ? [{ kind: "Wait", durationMillis: 5 }] : [];
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},
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};
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const action = nextAction(node, new Pcg(42n, 0n), stubHost("android", POINTS));
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assert.deepEqual(action, { kind: "Wait", durationMillis: 5 });
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assert.equal(calls, 3);
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});
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