Files
pepa-pi-bot/runtime/skills/index.js
T
mayatnikovandClaude Opus 4.7 ae8def708a v0.2.0-rc.3: pillar-up escape + advice everywhere + danger POI
Closes the gap rc.2 left open. Live observation showed:
- Pi-coach extracted 5 high-quality lessons (do not explore.far at
  night near zombies, etc.) but none of them fired (applied_count=0
  across the board). Root cause: dispatcher consulted advice only on
  the main curriculum path; the bot was falling into the wander/
  explore.far FALLBACK after each gather attempt bailed, which
  bypassed consult().
- Bot was wedged in a pit on (608, 90) with stone walls. recovery.
  tunnel-out kept failing ("Digging aborted") because mining stone
  with fists takes ~10s/block; pathfinder watchdog kills it.

This patch:

1. survive.pillar-up (runtime/skills/pillar-up.js) — new escape skill.
   Places a placeable block under the bot and jumps onto it; repeats
   up to 8 steps. No pickaxe required. Works in dirt/cobble/planks/
   sand/gravel/wool/etc. The bot's vertical exit from any pit it can
   stand in.

2. Wedged-emergency reflex (runtime/reflex.js). At the top of
   curriculumReflex, if noProgressReason is wedged-like AND position
   hasn't shifted ≥16 blocks in 60s AND no hostile in 6m AND pillar
   block in inventory → dispatch survive.pillar-up. 2-min cooldown
   between attempts.

3. consult() now also runs on the WANDER/explore.far fallback path
   (runtime/reflex.js curriculumReflex). Pi-coach lessons can finally
   take effect. If the fallback skill is overridden to a non-eligible
   skill but the bot has a placeable block, falls back to pillar-up.
   Outcomes feed reportAdviceOutcome so confidence stays grounded.

4. recordPOI("danger") on death (runtime/coach/postmortem.js). Spatial
   memory now flags where the bot died, expires after 6h. POI table
   was empty in rc.2.

5. SAFE_OVERRIDES extended (runtime/coach/advice.js): adds
   survive.pillar-up and village.choose-base so coach lessons can
   route there.

Tests: 255/255 green (+9 pillar-up).

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
2026-05-27 14:19:44 +03:00

237 lines
7.3 KiB
JavaScript

// Skill substrate. A skill is a small, self-contained, composable unit of
// survival behaviour that the scheduler (today: reflex.js) can call with a
// uniform contract. The contract — required by every skill in this folder:
//
// {
// id: "namespace.action", // stable, machine-readable, e.g. "gather.logs"
// title: "Human label",
// timeoutMs: 45_000, // hard ceiling on execute()
// preconditions(ctx) -> { ok, code?, detail? }
// async execute(ctx, args) -> { ok, code, detail, worldDelta }
// validate?(ctx, result) -> boolean // optional gate after execute
// recover?(ctx, result) -> any | null // optional follow-up hint
// }
//
// The runSkill() wrapper enforces the timeout, normalises the result shape
// (so any caller can rely on the five required fields), runs validate(), and
// calls recover() on failure for the scheduler to consume.
//
// Skills are pure with respect to the runtime — they never read or write
// state-store directly; their `worldDelta` is the only way they communicate
// observed changes back to the scheduler, which then decides what to log.
import { info, warn } from "../log.js";
import { skill as chopLogs } from "./chop-logs.js";
import { skill as eat } from "./eat.js";
import { skill as wander } from "./wander.js";
import { skill as exploreFar } from "./explore-far.js";
import { skill as flee } from "./flee.js";
import { skill as sleep } from "./sleep.js";
import { skill as tunnelOut } from "./recovery-tunnel-out.js";
import { skill as pillarUp } from "./pillar-up.js";
import { skill as diagPhysics } from "./diagnose-physics.js";
import { skill as diagScan, matchSkill as diagMatch } from "./diagnose-scan.js";
import { skill as gatherStone } from "./gather-stone.js";
import { skill as gatherWool } from "./gather-wool.js";
import { skill as acquireFood } from "./acquire-food.js";
import { skill as chooseBase } from "./choose-base.js";
import { skill as buildShelter } from "./build-shelter.js";
import { skill as placeChest } from "./place-chest.js";
import { skill as depositSurplus } from "./deposit-surplus.js";
import { skill as farmWheat } from "./farm-wheat.js";
import {
craftPlanksSkill,
craftSticksSkill,
craftWoodenAxeSkill,
craftWoodenPickaxeSkill,
craftWoodenSwordSkill,
craftStoneAxeSkill,
craftStonePickaxeSkill,
craftStoneSwordSkill,
craftFurnaceSkill,
craftChestSkill,
craftTorchSkill,
craftBedSkill,
} from "./craft.js";
const SKILLS = new Map();
function register(skill) {
if (!skill || typeof skill !== "object") throw new Error("skill: not an object");
if (!skill.id || typeof skill.id !== "string") throw new Error("skill: missing id");
if (typeof skill.execute !== "function") throw new Error(`skill ${skill.id}: missing execute`);
if (typeof skill.preconditions !== "function") throw new Error(`skill ${skill.id}: missing preconditions`);
if (SKILLS.has(skill.id)) throw new Error(`skill ${skill.id}: already registered`);
SKILLS.set(skill.id, skill);
}
register(chopLogs);
register(eat);
register(wander);
register(exploreFar);
register(flee);
register(sleep);
register(tunnelOut);
register(pillarUp);
register(diagPhysics);
register(diagScan);
register(diagMatch);
register(gatherStone);
register(gatherWool);
register(acquireFood);
register(chooseBase);
register(buildShelter);
register(placeChest);
register(depositSurplus);
register(farmWheat);
register(craftPlanksSkill);
register(craftSticksSkill);
register(craftWoodenAxeSkill);
register(craftWoodenPickaxeSkill);
register(craftWoodenSwordSkill);
register(craftStoneAxeSkill);
register(craftStonePickaxeSkill);
register(craftStoneSwordSkill);
register(craftFurnaceSkill);
register(craftChestSkill);
register(craftTorchSkill);
register(craftBedSkill);
export function listSkills() {
return Array.from(SKILLS.values()).map((s) => ({
id: s.id,
title: s.title ?? s.id,
timeoutMs: s.timeoutMs ?? 30_000,
}));
}
export function getSkill(id) {
return SKILLS.get(id) ?? null;
}
// Stable failure codes the wrapper itself can emit. Skills may emit any
// additional codes — but these are the ones runSkill produces.
export const RUNNER_CODES = Object.freeze({
UNKNOWN_SKILL: "unknown_skill",
PRECONDITION_FAILED: "precondition_failed",
TIMEOUT: "timeout",
THREW: "threw",
VALIDATION_FAILED: "validation_failed",
DONE: "done",
});
function normaliseResult(res, fallbackCode) {
const ok = !!res?.ok;
return {
ok,
code: res?.code ?? (ok ? RUNNER_CODES.DONE : fallbackCode ?? "failed"),
detail: res?.detail ?? null,
worldDelta: res?.worldDelta ?? null,
};
}
function withTimeout(promise, ms, label) {
let timer;
const timeout = new Promise((_, reject) => {
timer = setTimeout(() => reject(new Error(`${label} timed out after ${ms}ms`)), ms);
});
return Promise.race([promise, timeout]).finally(() => clearTimeout(timer));
}
// Drive one skill through its full lifecycle. The caller (typically reflex.js
// or, eventually, a higher-level scheduler) decides when to invoke; runSkill
// only owns the contract enforcement.
export async function runSkill(id, ctx, args = {}) {
const skill = SKILLS.get(id);
if (!skill) {
warn("skill", `unknown skill ${id}`);
return { ok: false, code: RUNNER_CODES.UNKNOWN_SKILL, detail: id, worldDelta: null };
}
let pre;
try {
pre = skill.preconditions(ctx, args) ?? { ok: true };
} catch (e) {
return {
ok: false,
code: RUNNER_CODES.PRECONDITION_FAILED,
detail: `preconditions threw: ${e.message}`,
worldDelta: null,
};
}
if (!pre.ok) {
return {
ok: false,
code: pre.code ?? RUNNER_CODES.PRECONDITION_FAILED,
detail: pre.detail ?? "preconditions failed",
worldDelta: null,
};
}
const timeoutMs = skill.timeoutMs ?? 30_000;
let raw;
try {
raw = await withTimeout(skill.execute(ctx, args), timeoutMs, `skill(${id})`);
} catch (e) {
const isTimeout = /timed out after/.test(e.message);
const result = {
ok: false,
code: isTimeout ? RUNNER_CODES.TIMEOUT : RUNNER_CODES.THREW,
detail: e.message,
worldDelta: null,
};
if (typeof skill.recover === "function") {
try {
result.recovery = skill.recover(ctx, result) ?? null;
} catch (recoverErr) {
warn("skill", `${id}.recover threw: ${recoverErr.message}`);
}
}
return result;
}
const result = normaliseResult(raw);
if (result.ok && typeof skill.validate === "function") {
let valid;
try {
valid = skill.validate(ctx, result);
} catch (e) {
warn("skill", `${id}.validate threw: ${e.message}`);
valid = false;
}
if (!valid) {
const failed = {
ok: false,
code: RUNNER_CODES.VALIDATION_FAILED,
detail: result.detail,
worldDelta: result.worldDelta,
};
if (typeof skill.recover === "function") {
try {
failed.recovery = skill.recover(ctx, failed) ?? null;
} catch (e) {
warn("skill", `${id}.recover threw: ${e.message}`);
}
}
return failed;
}
}
if (!result.ok && typeof skill.recover === "function") {
try {
result.recovery = skill.recover(ctx, result) ?? null;
} catch (e) {
warn("skill", `${id}.recover threw: ${e.message}`);
}
}
info("skill", `${id}${result.code}${result.detail ? ` (${JSON.stringify(result.detail).slice(0, 80)})` : ""}`);
return result;
}
// For tests: lets a unit test register a synthetic skill without touching
// the production registry. Returns a teardown function.
export function _registerForTest(skill) {
register(skill);
return () => SKILLS.delete(skill.id);
}