Files
pepa-pi-bot/runtime/bot.js
T
mayatnikovandClaude Opus 4.7 86f0c1799e fix(runtime): pin MC_VERSION=1.21.4 + ground-truth probe + close-loop dig
Two-pronged response to user-confirmed "bot stands still, doesn't actually
chop" on play.xmatic.team:

1. Pin protocol — .env now sets MC_VERSION=1.21.4. minecraft-data has
   wrong packet ID mappings for protocol 775 (server 26.1.2 via
   ViaBackwards 5.9.1) — see mineflayer#3888 and #3717. 1.21.5 also has
   an enchants decoder bug that breaks bot.dig. 1.21.4 is the last
   protocol mineflayer 4.37.1 can speak cleanly through VIA.

2. Don't trust dig success — runtime/actions.js chopNearestTree and
   runtime/skills/gather-stone.js now lookAt(face center)+forceLook,
   await collectBlock, then re-read the target block. If the log/stone
   is STILL there, return ok:false code:"silent_dig_failure" and
   blacklist the position. Prevents the curriculum from reporting
   "wood.16 in progress" while the world hasn't actually changed.

3. Defensive default — runtime/movement-profiles.js: canDig=false on
   every profile until dig is confirmed working live. Otherwise
   pathfinder schedules paths through must-dig blocks and the bot loops.

4. Ground-truth probe — runtime/skills/diagnose-physics.js dispatches
   forward/jump/dig probes and writes the result to the diary. New
   IPC command cmd:run-skill lets the operator (or a future curriculum
   trigger) fire any skill on demand; it waits for the current action
   to finish before dispatching. /tmp/pepa-runskill.mjs is a one-shot
   client.

Live probe on play.xmatic.team confirmed: forward Δ=0.003 over 2s
(BROKEN — server rejects movement packets), jump ΔY=0.42 (likely
physics jitter, not a real jump). Strongly suggests an anti-cheat
plugin gating bot-style movements server-side — beyond protocol pin.

npm test 124/124.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-05-26 11:51:43 +03:00

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// Long-running Mineflayer process. Owns:
// - the MC TCP connection + reconnect policy
// - the reflex tick loop (no LLM in hot path)
// - the IPC server for TUI clients
// - on-demand Pi-headless escalation (manual or automatic)
//
// MC chat is dialog-only (see plans/autonomous-survival-bot-prd.md, FR1).
// Player/operator chat may produce a social reply but never dispatches a
// movement/build/mining task. TUI is the only local control plane.
//
// Lifecycle: started by `npm run bot`. Connects to MC, spawns IPC server,
// ticks every TICK_INTERVAL_SECONDS, broadcasts STATUS to clients each tick.
// SIGINT / SIGTERM: graceful disconnect + socket cleanup + exit.
import fs from "node:fs";
import path from "node:path";
import mineflayer from "mineflayer";
import { config, stateDir, redactedConfig } from "./config.js";
import { info, warn, error } from "./log.js";
import { snapshot as buildSnapshot } from "./perceive.js";
import { runTick } from "./reflex.js";
import { createIpcServer } from "./ipc-server.js";
import { askPi } from "./pi-bridge.js";
import { COMMAND_TYPES, EVENT_TYPES } from "./ipc-protocol.js";
import {
readCurrentTask,
writeCurrentTask,
clearCurrentTask,
appendDiary,
writeProposal,
listProposals,
readProposal,
approveProposal,
writeEscalation,
readDiaryTail,
} from "./state-store.js";
import { startAutoImprover } from "./auto-improve.js";
import { startPlanner, isPlannerBusy, readNextMilestone, planExists } from "./planner.js";
import { computeState, STATES } from "./state.js";
import { createNoProgressDetector } from "./no-progress.js";
import { maybeStartViewer } from "./viewer.js";
import { nextMilestone as nextCurriculumMilestone } from "./curriculum.js";
import { listLocations } from "./locations.js";
import { runSkill } from "./skills/index.js";
import { classifyIntent, INTENTS } from "./social/intent.js";
import { generateReply } from "./social/reply.js";
import { createChatMemory } from "./social/memory.js";
import { createStuckIncidentDetector } from "./stuck-incident.js";
import { createSkillMetrics } from "./skill-metrics.js";
fs.mkdirSync(stateDir, { recursive: true });
const JOINED_FLAG = path.join(stateDir, "joined-before.flag");
// Auto-escalation tunables. With tick=3s, 20 noops ≈ 1 minute idle before we
// even consider asking Pi. Cooldown prevents spamming the LLM when the bot
// is permanently stuck on the same situation.
const ESCALATE_AFTER_NOOPS = 20;
const ESCALATION_COOLDOWN_MS = 10 * 60 * 1000;
let bot = null;
let reflexPaused = false;
let tickTimer = null;
let reconnectTimer = null;
let shuttingDown = false;
let lastSnapshot = { connected: false };
let consecutiveNoops = 0;
let lastEscalationAt = 0;
// Observability state — surfaced in every STATUS snapshot so the TUI (and
// future Telegram/diary surfaces) can answer "what is the bot doing and why
// isn't it doing more?" without parsing the log stream.
const noProgress = createNoProgressDetector();
const stuckIncident = createStuckIncidentDetector();
const skillMetrics = createSkillMetrics();
let lastResult = null; // { label, ok, code, detail, ts }
let lastFailureAt = 0;
let lastPlanReadAt = 0;
let cachedMilestone = null;
let cachedPlanExists = false;
const MILESTONE_CACHE_MS = 30_000;
// Reflex context — passed into reflex.js every tick. Mutable across ticks.
const reflexCtx = {
bot: null,
snapshot: lastSnapshot,
busy: false,
currentActionLabel: null,
idleCounter: 0,
lastEatAt: 0,
lastSleepAttemptAt: 0,
// Tracks repeated failure of the same labelled action — triggers a proposal.
recentFailures: [], // [{label, detail, ts}], capped at 10
dispatch: dispatchAction,
};
let chatTimestamps = [];
const CHAT_WINDOW_MS = 60_000;
let ipc;
// ---- chat rate limit -------------------------------------------------------
function chatRateAllowed() {
const now = Date.now();
chatTimestamps = chatTimestamps.filter((t) => now - t < CHAT_WINDOW_MS);
if (chatTimestamps.length >= config.chatRateLimitPerMin) return false;
chatTimestamps.push(now);
return true;
}
function botChat(text) {
if (!bot) return;
if (!chatRateAllowed()) {
warn("chat", `dropped chat (rate-limited): ${text.slice(0, 60)}`);
return;
}
bot.chat(text);
}
// ---- auth ------------------------------------------------------------------
function hasJoinedBefore() {
return fs.existsSync(JOINED_FLAG);
}
function markJoinedBefore() {
try {
fs.writeFileSync(JOINED_FLAG, new Date().toISOString());
} catch (e) {
warn("auth", `could not write joined flag: ${e.message}`);
}
}
function maybeHandleAuthPrompt(text) {
if (!bot || !config.authmePassword) return;
const lower = text.toLowerCase();
const sawRegister = lower.includes("/register");
const sawLogin = lower.includes("/login");
if (!sawRegister && !sawLogin) return;
const cmd = sawLogin ? "login" : hasJoinedBefore() ? "login" : "register";
if (cmd === "register") {
bot.chat(`/register ${config.authmePassword} ${config.authmePassword}`);
info("auth", "sent /register (password redacted)");
} else {
bot.chat(`/login ${config.authmePassword}`);
info("auth", "sent /login (password redacted)");
}
markJoinedBefore();
}
// ---- action dispatch -------------------------------------------------------
// Reflexes call this to fire an async action without blocking the tick.
// Sets busy=true, runs fn, clears busy when done; optional onComplete callback
// receives the action's { ok, detail } result.
function dispatchAction(fn, label, opts = {}) {
if (reflexCtx.busy) {
warn("dispatch", `tried to dispatch ${label} while busy with ${reflexCtx.currentActionLabel}`);
return;
}
reflexCtx.busy = true;
reflexCtx.currentActionLabel = label;
// current-task is a resume anchor — keep it small. Embedding the full
// perception snapshot blows the file up to ~3 KB per write × every action.
writeCurrentTask({ label, status: "in_progress", position: lastSnapshot.position });
info("dispatch", `→ ${label}`);
Promise.resolve()
.then(() => fn())
.then((res) => {
const ok = !!res?.ok;
info(
"dispatch",
`← ${label} ${ok ? "ok" : "fail"}${res?.detail ? ` (${JSON.stringify(res.detail).slice(0, 80)})` : ""}`,
);
writeCurrentTask({ label, status: ok ? "completed" : "failed", detail: res?.detail });
lastResult = {
label,
ok,
code: res?.code ?? (ok ? "done" : classifyFailure(res?.detail)),
detail: res?.detail,
ts: Date.now(),
};
skillMetrics.record(label, ok);
if (!ok) {
lastFailureAt = lastResult.ts;
recordFailure(label, res?.detail);
} else {
clearRecentFailures(label);
}
if (opts.onComplete) {
try {
opts.onComplete(res ?? { ok: false, detail: "no result" });
} catch (e) {
warn("dispatch", `onComplete threw for ${label}: ${e.message}`);
}
}
})
.catch((e) => {
warn("dispatch", `${label} threw: ${e?.message ?? e}`);
writeCurrentTask({ label, status: "threw", detail: String(e?.message ?? e) });
lastResult = {
label,
ok: false,
code: "threw",
detail: String(e?.message ?? e),
ts: Date.now(),
};
skillMetrics.record(label, false);
lastFailureAt = lastResult.ts;
recordFailure(label, String(e?.message ?? e));
})
.finally(() => {
reflexCtx.busy = false;
reflexCtx.currentActionLabel = null;
});
}
// ---- failure tracking + proposal detection --------------------------------
//
// A proposal is a request to the LLM to patch the codebase. They cost tokens
// and may produce risky patches that need rolling back. We file them ONLY for
// failures that genuinely look like bugs the reflex layer can't handle on its
// own. Everything else is a feature gap the script should solve via reflex
// chain reordering, cooldowns, or new primitives.
const PROPOSAL_THRESHOLD = 5; // raised from 3 to dampen spam
let lastProposalAt = 0;
const PROPOSAL_COOLDOWN_MS = 30 * 60 * 1000;
// Detail substrings that mean "this is a known feature gap, the bot handles
// it via reflex routing already". Don't file a proposal — the bot will switch
// strategies on its own. If something here is wrong, fix the routing.
const NORMAL_FAILURE_SUBSTRINGS = [
"no reachable log",
"no log within",
"no bed in range",
"no food in inventory",
"no target in reach",
"rate-limited",
"can't see you nearby",
"returned false",
"no result",
];
// Detail substrings that look like a real bug — patch-worthy.
const BUG_FAILURE_SUBSTRINGS = [
"TypeError",
"ReferenceError",
"Cannot read properties",
"is not a function",
"is not iterable",
"is not defined",
"unknown block",
"unknown item",
];
function classifyFailure(detail) {
const s = String(detail ?? "");
if (BUG_FAILURE_SUBSTRINGS.some((sub) => s.includes(sub))) return "bug";
if (NORMAL_FAILURE_SUBSTRINGS.some((sub) => s.includes(sub))) return "feature-gap";
if (s.includes("timed out")) return "timeout";
return "other";
}
function recordFailure(label, detail) {
const kind = classifyFailure(detail);
reflexCtx.recentFailures.push({ ts: Date.now(), label, detail, kind });
if (reflexCtx.recentFailures.length > 20) reflexCtx.recentFailures.shift();
maybeFileProposal(label);
}
function clearRecentFailures(label) {
reflexCtx.recentFailures = reflexCtx.recentFailures.filter((f) => f.label !== label);
}
function maybeFileProposal(label) {
// Same-label trailing run.
const trailing = [];
for (let i = reflexCtx.recentFailures.length - 1; i >= 0; i--) {
const f = reflexCtx.recentFailures[i];
if (f.label === label) trailing.push(f);
else break;
}
if (trailing.length < PROPOSAL_THRESHOLD) return;
if (Date.now() - lastProposalAt < PROPOSAL_COOLDOWN_MS) return;
// Only file when the run is dominated by bug-class failures (any single
// bug counts) OR persistent timeouts on the same operation. Feature gaps
// are skipped — the reflex layer should re-route, not the LLM.
const anyBug = trailing.some((f) => f.kind === "bug");
const allTimeout = trailing.every((f) => f.kind === "timeout");
if (!anyBug && !allTimeout) return;
lastProposalAt = Date.now();
const summary = `${label} failed ${trailing.length}× in a row (${anyBug ? "bug" : "persistent timeout"})`;
const slimSnapshot = lastSnapshot && {
position: lastSnapshot.position,
health: lastSnapshot.health,
food: lastSnapshot.food,
inventory: lastSnapshot.inventory,
isDay: lastSnapshot.isDay,
closestHostile: lastSnapshot.closestHostile,
dimension: lastSnapshot.dimension,
};
const body = [
`# Repeated failure: ${label}`,
"",
`Class: **${anyBug ? "bug" : "persistent timeout"}**.`,
"",
"## What happened",
"",
`The reflex layer dispatched \`${label}\` ${trailing.length} times in succession without a single success.`,
"",
"## Most recent failures",
"",
...trailing
.slice(0, 5)
.map(
(f, i) =>
`${i + 1}. \`${new Date(f.ts).toISOString()}\` [${f.kind}] ${JSON.stringify(f.detail).slice(0, 200)}`,
),
"",
"## Slim snapshot",
"",
"```json",
JSON.stringify(slimSnapshot, null, 2),
"```",
"",
"## Constraints for the patch",
"",
"- Touch only files under `runtime/`. Don't touch `extensions/`, `tui/`, or any docs.",
"- Don't introduce new npm dependencies.",
"- Don't change `.env` or anything in `state/`.",
"- Don't push, don't open a PR. Commit on the current branch only.",
"- Prefer the smallest viable fix. A 3-line guard is better than a 30-line refactor.",
"- If the failure is genuinely irrecoverable (server-side, not code), document it in a code comment and exit 1.",
].join("\n");
const { filename } = writeProposal({ kind: `repeated-fail-${label}`, summary, body });
warn("proposal", `filed ${filename}: ${summary}`);
appendDiary(`proposal filed: ${filename} (${summary})`);
}
// ---- chat (dialog-only via social/) ----------------------------------------
//
// MC chat is dialog-only (Phase 0 of survival-bot PRD). Phase 5 routes
// inbound chat through the social/ layer:
// 1. classifyIntent() decides what the message is.
// 2. generateReply() produces a templated reply (or signals escalate /
// record-ignored / record-escalation).
// 3. We record every line in the chat memory (with redaction) so future
// Pi calls can quote recent context without leaking secrets.
let lastChatReplyAt = 0;
const CHAT_REPLY_COOLDOWN_MS = 30_000;
const chatMemory = createChatMemory();
// Rate-limit Pi escalations from chat. The chat path is the cheapest
// way to burn an LLM call accidentally — every addressed banter line
// would otherwise spawn `pi -p`. We cap at MAX_PI_CHAT_PER_HOUR with a
// hard minimum gap of MIN_PI_CHAT_GAP_MS between calls.
const MAX_PI_CHAT_PER_HOUR = 6;
const MIN_PI_CHAT_GAP_MS = 90_000;
const recentPiChatTs = [];
let lastPiChatAt = 0;
function piChatAllowed(now = Date.now()) {
while (recentPiChatTs.length && now - recentPiChatTs[0] > 3600_000) recentPiChatTs.shift();
if (recentPiChatTs.length >= MAX_PI_CHAT_PER_HOUR) return false;
if (now - lastPiChatAt < MIN_PI_CHAT_GAP_MS) return false;
return true;
}
function escalateChatToPi({ speaker, text, intent }) {
if (!piChatAllowed()) {
info("chat", `pi escalation suppressed (rate limit) for ${speaker}`);
return;
}
lastPiChatAt = Date.now();
recentPiChatTs.push(lastPiChatAt);
// Compose a slim context — recent chat from this speaker, the bot's
// own state, and an explicit dialog-only reminder so Pi doesn't try
// to "act" on a player request via its output. We never write Pi's
// output to the world; the only side-effect is a single chat line.
const speakerTail = chatMemory.tail(speaker, 5).map((e) => `${speaker}: ${e.text}`).join("\n");
const stateLine = JSON.stringify({
runtimeState: lastSnapshot?.runtimeState,
activeSkill: lastSnapshot?.activeSkill,
currentMilestone: lastSnapshot?.currentMilestone,
noProgressReason: lastSnapshot?.noProgressReason,
hp: lastSnapshot?.health,
food: lastSnapshot?.food,
});
const prompt = [
`You are the social cortex for an autonomous Minecraft bot named "${bot?.username}".`,
`The bot's primary loop ignores chat commands — MC chat is dialog-only.`,
`Your ONLY output is one short chat line (<= 140 chars) the bot will say to ${speaker}.`,
`No code, no JSON, no quoting. Just the message. Use the language ${speaker} used.`,
``,
`Bot's current state:`,
stateLine,
``,
`Recent chat from ${speaker}:`,
speakerTail || `(no prior lines)`,
``,
`Latest line (intent=${intent}): ${text}`,
].join("\n");
let buf = "";
askPi({
prompt,
onChunk: (chunk) => {
if (chunk?.stream === "stdout") buf += chunk.text;
},
onDone: (result) => {
info("chat", `pi banter reply done code=${result.code} dur=${result.durationMs}ms len=${buf.length}`);
if (result.code !== 0) return;
const line = buf.trim().split("\n").find((l) => l.trim()) ?? "";
if (!line) return;
// Be defensive — drop the bot's own name prefix Pi sometimes
// adds, and cap to 200 chars so we never burn the rate-limit
// with a wall of text.
const cleaned = line.replace(/^[`"']+|[`"']+$/g, "").slice(0, 200);
lastChatReplyAt = Date.now();
botChat(`${speaker}: ${cleaned}`);
},
});
}
function isOperator(username) {
if (!username) return false;
return config.operators.includes(username.toLowerCase());
}
function handleChat(username, text) {
if (!bot) return;
const trimmed = String(text ?? "").trim();
if (!trimmed) return;
chatMemory.append(username, trimmed);
const intent = classifyIntent({ text: trimmed, botName: bot.username });
// Command-like chat → record + one-per-cooldown notice.
if (intent === INTENTS.COMMAND_LIKE) {
const op = isOperator(username) ? "operator" : "player";
info("chat", `ignored command-like chat from ${op} ${username}: ${trimmed.slice(0, 80)}`);
appendDiary(`ignored command-like chat from ${username}: ${trimmed.slice(0, 120)}`);
const since = Date.now() - lastChatReplyAt;
if (since >= CHAT_REPLY_COOLDOWN_MS) {
lastChatReplyAt = Date.now();
botChat(`${username}: MC chat is dialog-only — operator uses the TUI to drive me.`);
}
return;
}
// Unsafe → escalation log + brief notice, no action.
if (intent === INTENTS.UNSAFE_REQUEST) {
try {
writeEscalation({
from: username,
request: trimmed.slice(0, 200),
whyUnsure: "matched unsafe pattern",
wouldHave: "no action",
});
} catch (e) {
warn("chat", `writeEscalation failed: ${e.message}`);
}
const since = Date.now() - lastChatReplyAt;
if (since >= CHAT_REPLY_COOLDOWN_MS) {
lastChatReplyAt = Date.now();
botChat(`${username}: not doing that. logged for operator review.`);
}
return;
}
// Greetings / status / addressed banter → templated reply, rate-limited.
const since = Date.now() - lastChatReplyAt;
if (since < CHAT_REPLY_COOLDOWN_MS) return;
const diaryTail = (() => {
try { return readDiaryTail(1); } catch { return null; }
})();
const result = generateReply({ intent, speaker: username, snapshot: lastSnapshot, diaryTail });
if (result?.send) {
lastChatReplyAt = Date.now();
botChat(result.send);
return;
}
if (result?.escalate) {
// Templates didn't fit AND the bot was addressed → ask Pi for a
// one-liner. Hard rate-limited so addressed-banter lines can't
// drain the LLM budget.
escalateChatToPi({ speaker: username, text: trimmed, intent });
}
}
// ---- connect ---------------------------------------------------------------
function connect() {
if (bot) return;
info("mc", `connecting as ${config.username}${config.host}:${config.port} (v${config.version})`);
bot = mineflayer.createBot({
host: config.host,
port: config.port,
username: config.username,
auth: config.authMode === "microsoft" ? "microsoft" : "offline",
version: config.mineflayerVersion,
hideErrors: false,
});
reflexCtx.bot = bot;
bot.once("spawn", () => {
info("mc", `spawned at ${JSON.stringify(bot.entity.position)}`);
appendDiary(`spawned at ${bot.entity.position.x.toFixed(0)},${bot.entity.position.y.toFixed(0)},${bot.entity.position.z.toFixed(0)}`);
ipc?.broadcast(EVENT_TYPES.STATUS, buildSnapshot(bot));
maybeStartViewer(bot).catch((e) => warn("viewer", `start threw: ${e?.message ?? e}`));
});
bot.on("messagestr", (text) => {
ipc?.broadcast(EVENT_TYPES.CHAT, { from: "server", text, kind: "system" });
maybeHandleAuthPrompt(text);
});
bot.on("chat", (username, message) => {
if (username === bot.username) return;
ipc?.broadcast(EVENT_TYPES.CHAT, { from: username, text: message, kind: "player" });
try {
handleChat(username, message);
} catch (e) {
warn("chat", `chat handler threw: ${e.message}`);
}
});
bot.on("death", () => {
const pos = bot.entity?.position;
warn("mc", `died at ${JSON.stringify(pos)}`);
appendDiary(`died at ${pos?.x.toFixed(0)},${pos?.y.toFixed(0)},${pos?.z.toFixed(0)}`);
ipc?.broadcast(EVENT_TYPES.DEATH, { reason: "unknown", position: pos });
clearCurrentTask();
});
bot.on("kicked", (reason) => {
warn("mc", `kicked: ${reason}`);
});
bot.on("error", (err) => {
error("mc", `bot error: ${err?.message ?? err}`);
});
bot.on("end", (reason) => {
warn("mc", `connection ended: ${reason}`);
bot = null;
reflexCtx.bot = null;
lastSnapshot = { connected: false };
if (!shuttingDown) scheduleReconnect();
});
}
function scheduleReconnect() {
if (reconnectTimer || shuttingDown) return;
const delay = 5000;
info("mc", `reconnecting in ${delay}ms`);
reconnectTimer = setTimeout(() => {
reconnectTimer = null;
connect();
}, delay);
}
// ---- escalation ------------------------------------------------------------
function maybeAutoEscalate() {
if (reflexCtx.busy) return;
if (consecutiveNoops < ESCALATE_AFTER_NOOPS) return;
const since = Date.now() - lastEscalationAt;
if (since < ESCALATION_COOLDOWN_MS) return;
lastEscalationAt = Date.now();
consecutiveNoops = 0;
const promptCtx = JSON.stringify(lastSnapshot, null, 2);
const prompt = [
`You are the escalation cortex for an autonomous Minecraft bot. The bot's`,
`script-driven reflex loop has produced no useful action for ${ESCALATE_AFTER_NOOPS} consecutive ticks`,
`(~${Math.round((ESCALATE_AFTER_NOOPS * config.tickIntervalMs) / 1000)}s). The reflex chain is:`,
` defend > eat > sleep > tech-tree > autonomous > idle`,
`Snapshot:`,
"```json",
promptCtx,
"```",
`Decide ONE next thing the bot should attempt. Output as plain text — what it should do and why, in 3 lines max.`,
`If "do nothing" is the right answer, say so.`,
`Do NOT propose code changes. Do NOT propose anything beyond what mineflayer + the existing actions (attack, flee, eat, sleep, goTo) can do.`,
].join("\n");
info("escalation", `firing askPi after ${ESCALATE_AFTER_NOOPS} noops`);
askPi({
prompt,
onChunk: (chunk) => ipc?.broadcast(EVENT_TYPES.ASK_PI_CHUNK, chunk),
onDone: (result) => {
info("escalation", `pi done code=${result.code} dur=${result.durationMs}ms`);
ipc?.broadcast(EVENT_TYPES.ASK_PI_DONE, result);
},
});
}
// ---- tick ------------------------------------------------------------------
function failuresByCode() {
const counts = {};
for (const f of reflexCtx.recentFailures) {
const k = f.kind || "other";
counts[k] = (counts[k] ?? 0) + 1;
}
return counts;
}
function refreshMilestoneCache(now) {
if (now - lastPlanReadAt < MILESTONE_CACHE_MS) return;
lastPlanReadAt = now;
try {
cachedMilestone = readNextMilestone();
cachedPlanExists = planExists();
} catch (e) {
warn("planner", `milestone read failed: ${e.message}`);
}
}
function tick() {
if (shuttingDown) return;
const now = Date.now();
if (bot && bot.entity) {
lastSnapshot = buildSnapshot(bot);
lastSnapshot.pendingProposals = listProposals().length;
lastSnapshot.lastReflex = reflexCtx.lastReflex ?? null;
lastSnapshot.busy = reflexCtx.busy
? { label: reflexCtx.currentActionLabel ?? "?" }
: null;
// Curriculum + locations MUST be computed BEFORE runTick so the
// curriculum reflex sees the suggested skill in snapshot.curriculum.
// (Pre-2026-05-26 they were computed after — every tick fell through
// to the wander fallback because plan.skillId was undefined.)
try {
lastSnapshot.locations = listLocations();
} catch {
lastSnapshot.locations = {};
}
const curriculumEarly = nextCurriculumMilestone(lastSnapshot);
lastSnapshot.curriculum = curriculumEarly;
reflexCtx.snapshot = lastSnapshot;
if (!reflexPaused) {
const result = runTick(reflexCtx);
if (!result || result.action === "noop") {
consecutiveNoops++;
maybeAutoEscalate();
} else if (result.action === "skipped") {
// busy — neither productive nor stuck; don't increment noops
} else {
consecutiveNoops = 0;
}
}
// Observability: compute runtime state + no-progress reason and
// stamp them on the snapshot so the TUI / future surfaces can show
// one concrete answer to "why is the bot idle?".
refreshMilestoneCache(now);
const plannerInFlight = isPlannerBusy();
const runtimeState = computeState({
snapshot: lastSnapshot,
ctx: reflexCtx,
plannerInFlight,
lastChatReplyAt,
lastFailureAt,
now,
});
const noProgressReason = noProgress.detect({
snapshot: lastSnapshot,
ctx: reflexCtx,
planExists: cachedPlanExists,
now,
});
lastSnapshot.runtimeState = runtimeState;
lastSnapshot.activeSkill = reflexCtx.busy
? reflexCtx.currentActionLabel
: reflexCtx.lastReflex?.label ?? null;
// Curriculum + locations were already computed before runTick (above).
// Re-stamp the title here so observability fields stay together.
const curriculum = lastSnapshot.curriculum;
lastSnapshot.currentMilestone = curriculum?.milestone?.title ?? cachedMilestone;
lastSnapshot.lastResult = lastResult;
lastSnapshot.noProgressReason = noProgressReason;
lastSnapshot.failuresByCode = failuresByCode();
lastSnapshot.skillMetrics = skillMetrics.snapshot();
lastSnapshot.lastEscalation = lastEscalationAt
? { ts: lastEscalationAt, ageMs: now - lastEscalationAt }
: null;
lastSnapshot.reflexPaused = reflexPaused;
// Stuck-incident detector: file a structured proposal when the same
// no-progress reason persists past the threshold. Kept separate from
// the existing bug-class failure tracker — they target different
// classes of breakage. The detector enforces its own cooldown so we
// don't spam the proposals dir.
const stuck = stuckIncident.check({
snapshot: lastSnapshot,
lastResult,
metrics: lastSnapshot.skillMetrics,
now,
});
if (stuck?.fire) {
try {
const { filename } = writeProposal({
kind: stuck.kind,
summary: stuck.summary,
body: stuck.body,
editScope: stuck.editScope,
});
warn("stuck", `filed ${filename}: ${stuck.summary}`);
appendDiary(`stuck-proposal filed: ${filename} (${stuck.summary})`);
} catch (e) {
warn("stuck", `writeProposal failed: ${e.message}`);
}
}
ipc?.broadcast(EVENT_TYPES.STATUS, lastSnapshot);
} else {
lastSnapshot = { connected: false };
ipc?.broadcast(EVENT_TYPES.STATUS, lastSnapshot);
}
}
function startTickLoop() {
if (tickTimer) clearInterval(tickTimer);
tickTimer = setInterval(tick, config.tickIntervalMs);
}
// ---- IPC commands ----------------------------------------------------------
function handleCommand(msg, send) {
switch (msg.type) {
case COMMAND_TYPES.PAUSE:
reflexPaused = true;
info("ipc", "reflex paused by client");
break;
case COMMAND_TYPES.RESUME:
reflexPaused = false;
info("ipc", "reflex resumed by client");
break;
case COMMAND_TYPES.STOP:
info("ipc", "stop requested by client");
gracefulExit(0);
break;
case COMMAND_TYPES.CHAT: {
const text = (msg.payload?.text || "").trim();
if (!text || !bot) return;
if (!chatRateAllowed()) {
send(EVENT_TYPES.ERROR, { source: "chat", text: "rate-limited" });
return;
}
bot.chat(text);
break;
}
case COMMAND_TYPES.ASK_PI: {
const prompt = msg.payload?.prompt;
if (!prompt) return;
askPi({
prompt,
onChunk: (chunk) => ipc?.broadcast(EVENT_TYPES.ASK_PI_CHUNK, chunk),
onDone: (result) => ipc?.broadcast(EVENT_TYPES.ASK_PI_DONE, result),
});
break;
}
case COMMAND_TYPES.SNAPSHOT:
send(EVENT_TYPES.STATUS, lastSnapshot);
break;
case COMMAND_TYPES.PROPOSAL_LATEST: {
const all = listProposals();
if (all.length === 0) {
send(EVENT_TYPES.PROPOSAL, { filename: null, body: null, total: 0 });
return;
}
const filename = all[all.length - 1];
send(EVENT_TYPES.PROPOSAL, {
filename,
body: readProposal(filename),
total: all.length,
});
break;
}
case COMMAND_TYPES.PROPOSAL_APPROVE: {
const filename = msg.payload?.filename;
if (!filename) return;
try {
const dst = approveProposal(filename);
info("proposal", `approved ${filename}${dst}`);
appendDiary(`proposal approved: ${filename}`);
} catch (e) {
send(EVENT_TYPES.ERROR, { source: "proposal", text: e.message });
}
break;
}
case COMMAND_TYPES.RUN_SKILL: {
const skillId = msg.payload?.skillId;
const args = msg.payload?.args ?? {};
if (!skillId) {
send(EVENT_TYPES.ERROR, { source: "run-skill", text: "missing skillId" });
return;
}
info("ipc", `run-skill: queued ${skillId} args=${JSON.stringify(args)} (will wait for current action)`);
// Pause the reflex loop while we wait so it doesn't immediately
// schedule another action and starve our request.
const wasPaused = reflexPaused;
reflexPaused = true;
const deadline = Date.now() + 120_000;
const tryDispatch = () => {
if (!reflexCtx.busy) {
info("ipc", `run-skill: dispatching ${skillId}`);
dispatchAction(() => runSkill(skillId, reflexCtx, args), `ipc:${skillId}`, {
onComplete: (res) => {
reflexPaused = wasPaused;
send(EVENT_TYPES.LOG, {
ts: new Date().toISOString(),
level: "info",
source: "run-skill",
text: `${skillId}${res.code ?? (res.ok ? "ok" : "fail")}`,
details: res,
});
},
});
return;
}
if (Date.now() > deadline) {
reflexPaused = wasPaused;
send(EVENT_TYPES.ERROR, { source: "run-skill", text: `still busy after 2 min with ${reflexCtx.currentActionLabel}` });
return;
}
setTimeout(tryDispatch, 500);
};
tryDispatch();
break;
}
default:
warn("ipc", `unknown command type: ${msg.type}`);
}
}
// ---- shutdown --------------------------------------------------------------
function gracefulExit(code) {
if (shuttingDown) return;
shuttingDown = true;
info("runtime", "shutting down");
if (tickTimer) clearInterval(tickTimer);
if (reconnectTimer) clearTimeout(reconnectTimer);
try {
bot?.quit("shutdown");
} catch {}
ipc?.close();
setTimeout(() => process.exit(code), 500);
}
process.on("SIGINT", () => gracefulExit(0));
process.on("SIGTERM", () => gracefulExit(0));
info("runtime", `pepa runtime starting; cfg=${JSON.stringify(redactedConfig())}`);
// Resume info: surface stale state across restarts. We don't auto-resume any
// action — but we tell the operator if the bot died mid-task last time, and
// the count of pending proposals.
const lastTask = readCurrentTask();
if (lastTask && lastTask.label) {
info("resume", `previous task: ${lastTask.label} (${lastTask.status ?? "?"}, ${lastTask.ts ?? "?"})`);
if (lastTask.status === "in_progress") {
warn("resume", `last shutdown happened mid-action — operator should review state/<host>/current-task.json`);
}
}
const pendingProposals = listProposals();
if (pendingProposals.length > 0) {
warn("resume", `${pendingProposals.length} pending proposal(s) — see state/<host>/proposals/`);
}
ipc = createIpcServer({
getStatusSnapshot: () => ({
...lastSnapshot,
pendingProposals: listProposals().length,
}),
onCommand: handleCommand,
});
connect();
startTickLoop();
startAutoImprover();
startPlanner(() => lastSnapshot);