Files
pepa-pi-bot/runtime/actions.js
T
313ef081d1 feat(runtime): village progression — crafting, tech-tree reflex, LLM planner (#11)
Closes the loop "стой и кидай proposals" → "копит ресурсы, строит,
работает к глобальной цели". Three pieces:

1. Crafting primitives (runtime/actions.js).

   craftPlanks (4 per log, any wood type), craftSticks (4 per 2 planks),
   placeCraftingTable (crafts a table from planks if needed + places at
   reference block + reuses an existing table within 4 m), craftWoodenAxe,
   craftWoodenPickaxe, craftWoodenSword. Each uses bot.recipesFor()
   + bot.craft() with a 15s timeout. Returns the same {ok, detail}
   contract as the other actions.

   inv.{getItemCount, getAnyPlanksCount, getAnyLogCount} helpers
   exported so the reflex layer can read inventory cheaply without
   pulling mineflayer state through every reducer.

2. Tech-tree reflex (runtime/reflex.js).

   New techTreeReflex between sleep and autonomous. Inventory-driven
   progression: log+0 planks → planks; planks+0 sticks → sticks;
   planks+sticks+no axe → wooden_axe; +no pickaxe → wooden_pickaxe;
   +no sword → wooden_sword. 5 s cooldown so we don't fire on every
   tick.

   Pure script, no LLM. The progression is exactly what a player
   does in the first 10 min on a new world; making it scripted means
   the bot never burns tokens on it.

3. LLM planner (runtime/planner.js).

   Background timer (every 15 min, with a 30 s warm-up after start).
   Reads goal.md + plan.md + a slim snapshot, prompts Pi to output a
   fresh plan.md to stdout. Stripped of code fences and written
   verbatim to state/<host>/plan.md. Capped at 16 KB.

   The plan is markdown the operator can read or edit by hand. Numbered
   milestones, ✓ prefix for completed ones, kept short. The reflex
   layer doesn't auto-execute LLM text — but the planner sets the
   long-horizon shape that future reflexes (build house, plant farm)
   can read.

   5 min timeout on the pi subprocess. If it crashes or times out, the
   next 15-min tick just retries — no propagation to the reflex loop.

The progression now looks like, roughly:

  chop log (autonomous) →
  craft planks → craft sticks → wooden_axe (tech-tree) →
  chop faster (autonomous, has axe now) →
  wooden_pickaxe + wooden_sword (tech-tree) →
  mine stone … (next PR: stone tools, farm site selection,
  house frame)

Smoke-tested: all three modules import cleanly, exports check out.

Co-authored-by: Yuriy Mayatnikov <mayatnikov@me.com>
Co-authored-by: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-05-25 17:00:07 +03:00

554 lines
17 KiB
JavaScript
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
// Mineflayer action primitives. Each function is async, has a hard timeout,
// catches its own errors, and returns { ok: boolean, detail?: any }.
// Actions are dispatched from the reflex layer via ctx.dispatch — never
// awaited inline in a tick, because they may take seconds.
import pathfinderPkg from "mineflayer-pathfinder";
const { pathfinder, goals, Movements } = pathfinderPkg;
import { info, warn } from "./log.js";
// Hard timeout wrapper. Mineflayer goals (pathfinder, pvp targeting) can hang
// when the goal is unreachable; without a ceiling the whole reflex chain stops.
function withTimeout(promise, ms, label) {
return Promise.race([
Promise.resolve(promise),
new Promise((_, reject) =>
setTimeout(() => reject(new Error(`${label} timed out after ${ms / 1000}s`)), ms),
),
]);
}
// Mineflayer ships with the pathfinder plugin externally — but we need to
// ensure it's loaded exactly once per bot. The reflex bot doesn't auto-load
// it the way mineflayer-bridge.ts did, so we lazy-load here.
let pluginLoaded = new WeakSet();
function ensurePathfinder(bot) {
if (pluginLoaded.has(bot)) return;
bot.loadPlugin(pathfinder);
pluginLoaded.add(bot);
}
// Each action that uses pathfinder should set its own Movements profile
// before calling goto — otherwise it inherits whatever the previous caller
// left set, which has caused live regressions (e.g. flee setting canDig=false,
// then a later chop inheriting the same restrictive profile).
function setMovementsForGather(bot) {
const m = new Movements(bot);
m.canDig = true; // chopping is the entire point
m.allow1by1towers = false;
bot.pathfinder.setMovements(m);
}
function setMovementsForTravel(bot) {
const m = new Movements(bot);
m.canDig = true; // dig through leaves rather than get stuck
m.allow1by1towers = false;
bot.pathfinder.setMovements(m);
}
// ---- combat ----------------------------------------------------------------
const MELEE_WEAPONS = [
"netherite_sword",
"diamond_sword",
"iron_sword",
"stone_sword",
"golden_sword",
"wooden_sword",
"netherite_axe",
"diamond_axe",
"iron_axe",
"stone_axe",
"golden_axe",
"wooden_axe",
];
async function equipBestMelee(bot) {
for (const name of MELEE_WEAPONS) {
const item = bot.inventory.items().find((i) => i.name === name);
if (item) {
try {
await bot.equip(item, "hand");
return name;
} catch {
// keep trying
}
}
}
return null;
}
export async function attackNearest(bot, hostileType) {
const target = Object.values(bot.entities).find(
(e) => (hostileType ? e.name === hostileType : isHostile(e)) && e.position.distanceTo(bot.entity.position) <= 4,
);
if (!target) return { ok: false, detail: "no target in reach" };
const weapon = await equipBestMelee(bot);
info("action", `attack: target=${target.name} dist=${target.position.distanceTo(bot.entity.position).toFixed(1)} weapon=${weapon ?? "fists"}`);
try {
// Look at target then swing. Single hit per call — reflex tick re-fires
// until the target is dead or out of range.
await withTimeout(bot.lookAt(target.position.offset(0, target.height ?? 1, 0)), 2000, "lookAt");
bot.attack(target);
return { ok: true, detail: { target: target.name, weapon } };
} catch (e) {
warn("action", `attack failed: ${e.message}`);
return { ok: false, detail: e.message };
}
}
// ---- flee ------------------------------------------------------------------
export async function fleeFrom(bot, fromEntity, distance = 16) {
ensurePathfinder(bot);
const from = fromEntity?.position ?? bot.entity.position;
const here = bot.entity.position;
// vector away
const dx = here.x - from.x;
const dz = here.z - from.z;
const len = Math.hypot(dx, dz) || 1;
const tx = Math.round(here.x + (dx / len) * distance);
const tz = Math.round(here.z + (dz / len) * distance);
const ty = Math.round(here.y);
info("action", `flee: from=${fromEntity?.name ?? "?"}${tx},${ty},${tz}`);
// canDig:true here is deliberate — without it the bot gets permanently
// stuck in dense tree canopy (observed live: bot perched at Y=85 inside
// dark-oak leaves, every flee timed out for hours). We accept the risk of
// chopping through scenery while panicking; it's how a player would react.
const movements = new Movements(bot);
movements.canDig = true;
movements.allow1by1towers = false;
bot.pathfinder.setMovements(movements);
try {
await withTimeout(
bot.pathfinder.goto(new goals.GoalNear(tx, ty, tz, 1)),
30_000,
`fleeFrom(${fromEntity?.name})`,
);
return { ok: true, detail: { to: { x: tx, y: ty, z: tz } } };
} catch (e) {
warn("action", `flee failed: ${e.message}`);
return { ok: false, detail: e.message };
}
}
// ---- food ------------------------------------------------------------------
const FOOD_PRIORITY = [
"cooked_beef",
"cooked_porkchop",
"cooked_mutton",
"cooked_chicken",
"cooked_rabbit",
"cooked_salmon",
"cooked_cod",
"baked_potato",
"bread",
"carrot",
"apple",
"sweet_berries",
"melon_slice",
"beef",
"porkchop",
"chicken",
"mutton",
];
function findFood(bot) {
for (const name of FOOD_PRIORITY) {
const item = bot.inventory.items().find((i) => i.name === name);
if (item) return item;
}
// fallback: anything with food value via mc-data is too brittle; we accept
// only the priority list to avoid accidentally eating poisonous spider eyes.
return null;
}
export async function eatBestFood(bot) {
const item = findFood(bot);
if (!item) return { ok: false, detail: "no food in inventory" };
info("action", `eat: ${item.name}`);
try {
await withTimeout(bot.equip(item, "hand"), 3000, "equip food");
await withTimeout(bot.consume(), 15_000, "consume");
return { ok: true, detail: { ate: item.name } };
} catch (e) {
warn("action", `eat failed: ${e.message}`);
return { ok: false, detail: e.message };
}
}
// ---- sleep -----------------------------------------------------------------
const BED_NAMES = [
"red_bed",
"white_bed",
"orange_bed",
"yellow_bed",
"lime_bed",
"green_bed",
"cyan_bed",
"light_blue_bed",
"blue_bed",
"purple_bed",
"magenta_bed",
"pink_bed",
"brown_bed",
"gray_bed",
"light_gray_bed",
"black_bed",
];
export async function sleepInBed(bot) {
// Already in a bed?
if (bot.isSleeping) return { ok: true, detail: "already sleeping" };
// Find a nearby placed bed first.
const bedBlock = bot.findBlock({
matching: (b) => BED_NAMES.includes(b?.name),
maxDistance: 16,
});
if (bedBlock) {
info("action", `sleep: nearest bed at ${bedBlock.position.x},${bedBlock.position.y},${bedBlock.position.z}`);
ensurePathfinder(bot);
setMovementsForTravel(bot);
try {
await withTimeout(
bot.pathfinder.goto(new goals.GoalNear(bedBlock.position.x, bedBlock.position.y, bedBlock.position.z, 2)),
15_000,
"goto bed",
);
await withTimeout(bot.sleep(bedBlock), 10_000, "bot.sleep");
return { ok: true, detail: { bedAt: bedBlock.position } };
} catch (e) {
warn("action", `sleep failed: ${e.message}`);
return { ok: false, detail: e.message };
}
}
// No placed bed — try placing one if we carry one. Skip — we don't want to
// invent a base location accidentally. Future: only place when at our base
// per locations.json.
return { ok: false, detail: "no bed in range and won't place blindly" };
}
// ---- gathering -------------------------------------------------------------
const LOG_NAMES = [
"oak_log",
"dark_oak_log",
"spruce_log",
"birch_log",
"jungle_log",
"acacia_log",
"mangrove_log",
"cherry_log",
"pale_oak_log",
];
const AXE_NAMES = [
"netherite_axe",
"diamond_axe",
"iron_axe",
"stone_axe",
"golden_axe",
"wooden_axe",
];
async function equipBestAxe(bot) {
for (const name of AXE_NAMES) {
const item = bot.inventory.items().find((i) => i.name === name);
if (item) {
try {
await bot.equip(item, "hand");
return name;
} catch {}
}
}
return null;
}
// Per-bot blacklist of (x,y,z) positions that pathfinder failed to reach
// recently. Cleared after BLACKLIST_TTL_MS so the bot can retry if the world
// has changed (a player chopped a path, the tree fell to natural decay, etc).
const chopBlacklist = new WeakMap(); // bot → Map<"x,y,z", expireMs>
const BLACKLIST_TTL_MS = 5 * 60_000;
function getBlacklist(bot) {
let m = chopBlacklist.get(bot);
if (!m) {
m = new Map();
chopBlacklist.set(bot, m);
}
// Sweep expired entries on each lookup — small, cheap.
const now = Date.now();
for (const [k, exp] of m) if (exp < now) m.delete(k);
return m;
}
export async function chopNearestTree(bot) {
const blacklist = getBlacklist(bot);
// findBlock invokes the matcher for blocks that pass the maxDistance
// pre-filter; in dense areas some have a synthetic shape with no
// `.position`. Guard or we crash before we even start pathfinding.
const log = bot.findBlock({
matching: (b) => {
if (!b || !b.position || !LOG_NAMES.includes(b.name)) return false;
const key = `${b.position.x},${b.position.y},${b.position.z}`;
return !blacklist.has(key);
},
maxDistance: 32,
});
if (!log) return { ok: false, detail: "no reachable log within 32 blocks" };
ensurePathfinder(bot);
setMovementsForGather(bot);
const axe = await equipBestAxe(bot);
info(
"action",
`chop: ${log.name} at ${log.position.x},${log.position.y},${log.position.z} (tool=${axe ?? "fists"})`,
);
try {
await withTimeout(
bot.pathfinder.goto(new goals.GoalGetToBlock(log.position.x, log.position.y, log.position.z)),
45_000,
"pathToLog",
);
await withTimeout(bot.dig(log), 30_000, "digLog");
// Walk over the dropped item briefly (collectblock plugin would do this
// for us, but a simple sleep-then-resume is enough for now).
await new Promise((r) => setTimeout(r, 1200));
return { ok: true, detail: { logType: log.name, at: log.position } };
} catch (e) {
warn("action", `chop failed: ${e.message}`);
const key = `${log.position.x},${log.position.y},${log.position.z}`;
blacklist.set(key, Date.now() + BLACKLIST_TTL_MS);
return { ok: false, detail: e.message, blacklisted: log.position };
}
}
// ---- exploration -----------------------------------------------------------
export async function wander(bot, radius = 12) {
ensurePathfinder(bot);
setMovementsForTravel(bot);
// Pick a random offset that's at least 6 blocks away — small enough to be
// safe, large enough to not be a no-op when we're stuck on the same block.
const here = bot.entity.position;
const angle = Math.random() * Math.PI * 2;
const dist = 6 + Math.random() * (radius - 6);
const tx = Math.round(here.x + Math.cos(angle) * dist);
const tz = Math.round(here.z + Math.sin(angle) * dist);
const ty = Math.round(here.y);
info("action", `wander: → ${tx},${ty},${tz} (dist=${dist.toFixed(1)})`);
try {
await withTimeout(
bot.pathfinder.goto(new goals.GoalNear(tx, ty, tz, 2)),
30_000,
`wander(${tx},${tz})`,
);
return { ok: true, detail: { to: { x: tx, y: ty, z: tz } } };
} catch (e) {
warn("action", `wander failed: ${e.message}`);
return { ok: false, detail: e.message };
}
}
// ---- crafting --------------------------------------------------------------
//
// Mineflayer's crafting API is two-step: find a recipe with bot.recipesFor()
// (which considers what's in inventory + nearby crafting tables), then call
// bot.craft(recipe, count, tableBlock?). For "needs a table" items the
// caller must place one within ~3 blocks first or pass the table block.
//
// We keep the actions small and explicit so the tech-tree reflex can compose
// them: chop → planks → sticks → table → axe → keep chopping (now faster).
function getItemCount(bot, name) {
return bot.inventory.items().reduce((sum, i) => (i.name === name ? sum + i.count : sum), 0);
}
function getAnyPlanksCount(bot) {
return bot.inventory
.items()
.reduce((sum, i) => (i.name.endsWith("_planks") ? sum + i.count : sum), 0);
}
function getAnyLogCount(bot) {
return bot.inventory.items().reduce((sum, i) => (i.name.endsWith("_log") ? sum + i.count : sum), 0);
}
// Pick a recipe by item-name regardless of table presence.
function findRecipe(bot, itemName, tableBlock = null) {
const mcdata = bot.registry ?? null;
const itemId = mcdata?.itemsByName?.[itemName]?.id;
if (itemId == null) return null;
const recipes = bot.recipesFor(itemId, null, 1, tableBlock);
return recipes[0] ?? null;
}
async function craftRecipe(bot, itemName, count = 1, tableBlock = null) {
const recipe = findRecipe(bot, itemName, tableBlock);
if (!recipe) {
return { ok: false, detail: `no recipe for ${itemName} (have: ${summarizeInv(bot)})` };
}
try {
await withTimeout(bot.craft(recipe, count, tableBlock), 15_000, `craft(${itemName})`);
return { ok: true, detail: { item: itemName, count } };
} catch (e) {
return { ok: false, detail: `craft(${itemName}): ${e.message}` };
}
}
function summarizeInv(bot) {
const items = bot.inventory.items();
if (!items.length) return "empty";
return items
.slice(0, 5)
.map((i) => `${i.name}×${i.count}`)
.join(",");
}
// Convert any wood logs into planks (4 planks per log). Picks the first log
// type we have. Most recipes don't need a table.
export async function craftPlanks(bot, count = 4) {
const log = bot.inventory.items().find((i) => i.name.endsWith("_log"));
if (!log) return { ok: false, detail: "no log in inventory" };
const planks = log.name.replace("_log", "_planks");
info("action", `craft: ${count} ${planks} (from ${log.name})`);
return craftRecipe(bot, planks, Math.ceil(count / 4));
}
// 2 planks → 4 sticks. No table needed.
export async function craftSticks(bot, count = 4) {
if (getAnyPlanksCount(bot) < 2) return { ok: false, detail: "need 2 planks" };
info("action", `craft: ${count} sticks`);
return craftRecipe(bot, "stick", Math.ceil(count / 4));
}
// Place a crafting table at the bot's feet+1 (or near). Returns the placed
// block so subsequent craft calls can pass it as tableBlock.
export async function placeCraftingTable(bot) {
// Already placed nearby?
const existing = bot.findBlock({
matching: (b) => b && b.name === "crafting_table",
maxDistance: 4,
});
if (existing) return { ok: true, detail: { at: existing.position, reused: true }, block: existing };
// Need to craft one first if we don't have it.
if (getItemCount(bot, "crafting_table") === 0) {
if (getAnyPlanksCount(bot) < 4) {
return { ok: false, detail: "need 4 planks to craft a table" };
}
const craftRes = await craftRecipe(bot, "crafting_table", 1);
if (!craftRes.ok) return craftRes;
}
// Pick a placement target — block beside the bot at foot level + 1 face.
const here = bot.entity.position;
const referenceBlock = bot.blockAt(here.offset(0, -1, 0));
if (!referenceBlock) return { ok: false, detail: "no reference block beneath bot" };
const tableItem = bot.inventory.items().find((i) => i.name === "crafting_table");
try {
await withTimeout(bot.equip(tableItem, "hand"), 3000, "equip table");
await withTimeout(
bot.placeBlock(referenceBlock, { x: 0, y: 1, z: 0 }),
5000,
"placeBlock(table)",
);
} catch (e) {
return { ok: false, detail: `place table: ${e.message}` };
}
const placed = bot.findBlock({
matching: (b) => b && b.name === "crafting_table",
maxDistance: 4,
});
info("action", `craft: placed crafting_table at ${placed?.position}`);
return { ok: true, detail: { at: placed?.position, reused: false }, block: placed };
}
export async function craftWoodenAxe(bot) {
const tableRes = await placeCraftingTable(bot);
if (!tableRes.ok) return tableRes;
if (getAnyPlanksCount(bot) < 3) return { ok: false, detail: "need 3 planks" };
if (getItemCount(bot, "stick") < 2) return { ok: false, detail: "need 2 sticks" };
info("action", `craft: wooden_axe`);
return craftRecipe(bot, "wooden_axe", 1, tableRes.block);
}
export async function craftWoodenPickaxe(bot) {
const tableRes = await placeCraftingTable(bot);
if (!tableRes.ok) return tableRes;
if (getAnyPlanksCount(bot) < 3) return { ok: false, detail: "need 3 planks" };
if (getItemCount(bot, "stick") < 2) return { ok: false, detail: "need 2 sticks" };
info("action", `craft: wooden_pickaxe`);
return craftRecipe(bot, "wooden_pickaxe", 1, tableRes.block);
}
export async function craftWoodenSword(bot) {
const tableRes = await placeCraftingTable(bot);
if (!tableRes.ok) return tableRes;
if (getAnyPlanksCount(bot) < 2) return { ok: false, detail: "need 2 planks" };
if (getItemCount(bot, "stick") < 1) return { ok: false, detail: "need 1 stick" };
info("action", `craft: wooden_sword`);
return craftRecipe(bot, "wooden_sword", 1, tableRes.block);
}
// Re-exported helpers for the reflex layer.
export const inv = { getItemCount, getAnyPlanksCount, getAnyLogCount };
// ---- navigation (for operator come/follow) --------------------------------
export async function goTo(bot, x, y, z, minDistance = 2) {
ensurePathfinder(bot);
setMovementsForTravel(bot);
info("action", `goTo: ${x},${y},${z} (min ${minDistance})`);
try {
await withTimeout(
bot.pathfinder.goto(new goals.GoalNear(x, y, z, minDistance)),
60_000,
`goTo(${x},${y},${z})`,
);
return { ok: true, detail: { x, y, z } };
} catch (e) {
warn("action", `goTo failed: ${e.message}`);
return { ok: false, detail: e.message };
}
}
// ---- helpers ---------------------------------------------------------------
const HOSTILE_NAMES = new Set([
"zombie",
"skeleton",
"creeper",
"spider",
"witch",
"pillager",
"vindicator",
"husk",
"stray",
"drowned",
"phantom",
"enderman",
"slime",
"magma_cube",
"hoglin",
"piglin_brute",
"ravager",
"warden",
"breeze",
"bogged",
]);
export function isHostile(entity) {
return HOSTILE_NAMES.has((entity?.name || "").toLowerCase());
}