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bare-operating-system/packages/bare-os-seeder/kernel/bin/appstore
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/* BARE_OS_BIN_API 1.0.0 — bump when staged /bin script semantics change (see developer guide). */
/** Shared helpers for drive-resident /bin scripts (prepended before each command). */
function bareStdin(ctx) {
return typeof ctx.shellStdin === 'string' ? ctx.shellStdin : ''
}
/** @param {number} mode @param {'file' | 'directory' | 'symlink'} type */
function bareFormatModeString(mode, type) {
const typeChar = type === 'directory' ? 'd' : type === 'symlink' ? 'l' : '-'
const perm = mode & 0o777
const r = (bit) => (perm & bit ? 'r' : '-')
const w = (bit) => (perm & bit ? 'w' : '-')
const x = (bit) => (perm & bit ? 'x' : '-')
return (
typeChar +
r(0o400) +
w(0o200) +
x(0o100) +
r(0o040) +
w(0o020) +
x(0o010) +
r(0o004) +
w(0o002) +
x(0o001)
)
}
/** @param {number} mtimeMs @param {number} [nowMs] */
function bareFormatLsMtime(mtimeMs, nowMs) {
const now = nowMs != null ? nowMs : Date.now()
const d = new Date(mtimeMs)
const months = [
'Jan',
'Feb',
'Mar',
'Apr',
'May',
'Jun',
'Jul',
'Aug',
'Sep',
'Oct',
'Nov',
'Dec'
]
const mon = months[d.getMonth()]
const day = String(d.getDate()).padStart(2, ' ')
const sixMo = 180 * 24 * 3600 * 1000
if (Math.abs(now - mtimeMs) > sixMo) {
const yr = String(d.getFullYear()).padStart(4, ' ')
return mon + ' ' + day + ' ' + yr
}
const hh = String(d.getHours()).padStart(2, '0')
const mm = String(d.getMinutes()).padStart(2, '0')
return mon + ' ' + day + ' ' + hh + ':' + mm
}
/** @param {number} size */
function barePosixBlocks(size) {
return Math.ceil(Number(size) / 512) || 0
}
/**
* Raw stdout for NUL/binary when **`process.stdout.write`** is missing.
* If **`ctx.bareOsBinWrite(Uint8Array|string)`** is set (tests / host), use it.
* @param {Record<string, unknown>} ctx
* @param {string | Uint8Array} chunk
* @returns {boolean}
*/
function bareOsEmitRaw(ctx, chunk) {
if (typeof ctx.bareOsBinWrite === 'function') {
const b4 = ctx.b4a
const u8 =
typeof chunk === 'string'
? b4 && typeof b4.from === 'function'
? b4.from(chunk)
: new TextEncoder().encode(chunk)
: chunk
ctx.bareOsBinWrite(u8 instanceof Uint8Array ? u8 : new Uint8Array(u8))
return true
}
const w = globalThis.process?.stdout?.write
if (typeof w === 'function') {
w.call(globalThis.process.stdout, chunk)
return true
}
return false
}
/** Session env map (`vfs.env`, then `ctx.env`). Never throws. */
function bareOsEnv(ctx) {
const v = ctx && ctx.vfs && ctx.vfs.env
if (v && typeof v === 'object') return v
const e = ctx && ctx.env
if (e && typeof e === 'object') return e
return {}
}
/**
* Strict POSIX-ish decimal integer (no octal, no exponent, no empty).
* @param {unknown} s
* @returns {number}
*/
function bareOsParseDecInt(s) {
const t = String(s == null ? '' : s).trim()
if (!/^[+-]?(?:0|[1-9][0-9]*)$/.test(t)) return NaN
const n = Number.parseInt(t, 10)
return Number.isSafeInteger(n) ? n : NaN
}
/** @param {unknown} s */
function bareOsParseNonNegInt(s) {
const n = bareOsParseDecInt(s)
return n >= 0 ? n : NaN
}
/**
* @param {Record<string, unknown>} ctx
* @param {string} name
* @param {number} fallback
* @param {number} [min]
* @param {number} [max]
*/
function bareOsEnvInt(ctx, name, fallback, min, max) {
const raw = bareOsEnv(ctx)[name]
if (raw == null || raw === '') return fallback
const n = Number.parseInt(String(raw), 10)
if (!Number.isFinite(n)) return fallback
let v = n
if (min != null && v < min) v = min
if (max != null && v > max) v = max
return v
}
/**
* @param {Record<string, unknown>} ctx
* @param {string} msg
* @param {number} [code]
*/
function bareOsFail(ctx, msg, code) {
if (msg) ctx.console.error(msg)
ctx.exitCode = code == null ? 1 : code
}
/** @param {unknown} e */
function bareOsIsNotFoundErr(e) {
const code = e && typeof e === 'object' ? e.code : ''
if (code === 'ENOENT') return true
const msg = String((e && e.message) || e || '')
return /ENOENT|No such file|not found/i.test(msg)
}
/**
* @param {Record<string, unknown>} ctx
* @param {unknown} buf
* @returns {Uint8Array}
*/
function bareOsToU8(ctx, buf) {
if (!buf) return new Uint8Array(0)
if (buf instanceof Uint8Array) return buf
if (ctx && ctx.b4a && typeof ctx.b4a.from === 'function') return ctx.b4a.from(buf)
return new Uint8Array(buf)
}
/** @param {string} dir @param {string} name */
function bareOsJoinPath(dir, name) {
const d = String(dir || '').replace(/\/+$/, '')
const n = String(name || '').replace(/^\/+/, '')
if (!d || d === '/') return '/' + n
return d + '/' + n
}
/** @param {string} p */
function bareOsBaseName(p) {
const t = String(p || '').replace(/\/+$/, '')
if (!t || t === '/') return t === '/' ? '/' : ''
const i = t.lastIndexOf('/')
return i < 0 ? t : t.slice(i + 1) || t
}
/** @param {string} p */
function bareOsParentDir(p) {
const t = String(p || '').replace(/\/+$/, '') || '/'
if (t === '/') return '/'
const i = t.lastIndexOf('/')
return i <= 0 ? '/' : t.slice(0, i) || '/'
}
/** @param {string} p */
function bareOsNormPath(p) {
return String(p || '').replace(/\/+$/, '') || '/'
}
/**
* @param {Record<string, unknown>} ctx
* @param {string} p
*/
function bareOsResolvePath(ctx, p) {
if (ctx && ctx.vfs && typeof ctx.vfs.resolveLogical === 'function') {
try {
return String(ctx.vfs.resolveLogical(p) || p)
} catch {
/* fall through */
}
}
return String(p || '')
}
/**
* True when dest is src or lives under src (self-copy / self-move).
* @param {Record<string, unknown>} ctx
* @param {string} src
* @param {string} dest
*/
function bareOsDestInsideSrc(ctx, src, dest) {
const s = bareOsNormPath(bareOsResolvePath(ctx, src))
const d = bareOsNormPath(bareOsResolvePath(ctx, dest))
if (s === d) return true
if (s === '/') return d !== '/'
return d === s || d.startsWith(s + '/')
}
const BARE_OS_B64_ALPH =
'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'
/** @param {Uint8Array} u8 */
function bareOsB64Encode(u8) {
let out = ''
let i = 0
for (; i + 2 < u8.length; i += 3) {
const n = (u8[i] << 16) | (u8[i + 1] << 8) | u8[i + 2]
out +=
BARE_OS_B64_ALPH[(n >> 18) & 63] +
BARE_OS_B64_ALPH[(n >> 12) & 63] +
BARE_OS_B64_ALPH[(n >> 6) & 63] +
BARE_OS_B64_ALPH[n & 63]
}
const rest = u8.length - i
if (rest === 1) {
const n = u8[i] << 16
out += BARE_OS_B64_ALPH[(n >> 18) & 63] + BARE_OS_B64_ALPH[(n >> 12) & 63] + '=='
} else if (rest === 2) {
const n = (u8[i] << 16) | (u8[i + 1] << 8)
out +=
BARE_OS_B64_ALPH[(n >> 18) & 63] +
BARE_OS_B64_ALPH[(n >> 12) & 63] +
BARE_OS_B64_ALPH[(n >> 6) & 63] +
'='
}
return out
}
/**
* RFC 4648 Base64 decode (also accepts URL-safe alphabet). Rejects junk.
* @param {string} s
* @returns {Uint8Array}
*/
function bareOsB64Decode(s) {
const t = String(s).replace(/\s+/g, '')
if (!t) return new Uint8Array(0)
if (t.length % 4 === 1) throw new Error('invalid base64 length')
let pad = 0
if (t.endsWith('==')) pad = 2
else if (t.endsWith('=')) pad = 1
const body = pad ? t.slice(0, t.length - pad) : t
const bytes = []
let buf = 0
let bits = 0
for (let i = 0; i < body.length; i++) {
const c = body[i]
let v = BARE_OS_B64_ALPH.indexOf(c)
if (v < 0) {
if (c === '-') v = 62
else if (c === '_') v = 63
else throw new Error('invalid base64 character')
}
buf = (buf << 6) | v
bits += 6
if (bits >= 8) {
bits -= 8
bytes.push((buf >> bits) & 255)
}
}
if (pad) {
const want = Math.floor((body.length * 6) / 8)
if (bytes.length > want) bytes.length = want
}
return new Uint8Array(bytes)
}
/**
* @param {string} s
* @returns {Uint8Array}
*/
function bareOsHexDecode(s) {
const t = String(s).replace(/\s+/g, '')
if (t.length % 2 !== 0) throw new Error('odd hex length')
const out = new Uint8Array(t.length / 2)
for (let i = 0; i < out.length; i++) {
const pair = t.slice(i * 2, i * 2 + 2)
if (!/^[0-9a-fA-F]{2}$/.test(pair)) throw new Error('invalid hex')
out[i] = Number.parseInt(pair, 16)
}
return out
}
/** @param {Uint8Array} u8 */
function bareOsHexEncode(u8) {
let s = ''
for (let i = 0; i < u8.length; i++) s += u8[i].toString(16).padStart(2, '0')
return s
}
/**
* Shared GNU-style checksum FILE / stdin loop used by *sum commands.
* @param {Record<string, unknown>} ctx
* @param {string[]} argv
* @param {{
* cmd: string,
* help?: string,
* digest: (u8: Uint8Array) => string | Promise<string>
* }} opts
*/
async function bareChecksumRun(ctx, argv, opts) {
const cmd = String(opts.cmd || 'checksum')
const help =
opts.help ||
'usage: ' +
cmd +
' [FILE]...\nWith no FILE, or when FILE is -, read standard input.'
const digest = opts.digest
const paths = []
for (let i = 1; i < argv.length; i++) {
const a = argv[i]
if (a === '-h' || a === '--help') {
ctx.console.log(help)
ctx.exitCode = 0
return
}
if (a.startsWith('-') && a !== '-') {
ctx.console.error(cmd + ': unsupported option ' + a)
ctx.exitCode = 1
return
}
paths.push(a)
}
const b4 = ctx.b4a
async function one(name, buf) {
const u8 = buf instanceof Uint8Array ? buf : new Uint8Array(buf)
try {
const hex = await digest(u8)
ctx.console.log(hex + ' ' + name)
} catch (e) {
ctx.console.error(cmd + ': ' + (e.message || e))
ctx.exitCode = 1
}
}
if (!paths.length || (paths.length === 1 && paths[0] === '-')) {
await one('-', b4.from(bareStdin(ctx)))
return
}
for (const p of paths) {
if (p === '-') {
await one('-', b4.from(bareStdin(ctx)))
continue
}
const b = await ctx.vfs.readFile(p)
if (!b) {
ctx.console.error(cmd + ': ' + p + ': No such file')
ctx.exitCode = 1
continue
}
await one(p, b)
}
}
/**
* WebCrypto hex digest; throws the same missing-subtle message as the old *sum files.
* @param {string} algo
* @param {string} missingMsg
* @returns {(u8: Uint8Array) => Promise<string>}
*/
function bareSubtleHexDigest(algo, missingMsg) {
return async function (u8) {
const subtle = globalThis.crypto?.subtle
if (!subtle || typeof subtle.digest !== 'function') {
throw new Error(missingMsg)
}
const hash = await subtle.digest(algo, u8)
return bareOsHexEncode(new Uint8Array(hash))
}
}
/**
* Owner/group name → uid/gid used by chown / chgrp.
* @param {string} spec
* @param {Record<string, string>} env
* @returns {number | null}
*/
function parseGroupSpec(spec, env) {
const s = String(spec).trim()
if (!s) return null
if (/^\d+$/.test(s)) {
const n = Number.parseInt(s, 10)
return Number.isFinite(n) ? n : null
}
const g = (env.GROUP || env.USER || 'guest').trim()
if (s === 'root') return 0
if (s === 'guest' || s === 'nobody') return 65534
if (g && s === g) {
const gid = Number.parseInt(String(env.GID ?? '65534'), 10)
return Number.isFinite(gid) ? gid : 65534
}
return null
}
/**
* User name / numeric uid used by chown.
* @param {string} spec
* @param {Record<string, string>} env
* @returns {{ uid: number | null, gid: number | null }}
*/
function parseIdSpec(spec, env) {
const s = String(spec).trim()
if (!s) return { uid: null, gid: null }
if (/^\d+$/.test(s)) {
const n = Number.parseInt(s, 10)
return { uid: Number.isFinite(n) ? n : null, gid: null }
}
const u = (env.USER || env.LOGNAME || '').trim()
if (s === 'root') return { uid: 0, gid: null }
if (s === 'guest' || s === 'nobody') return { uid: 65534, gid: null }
if (u && s === u) {
const uid = Number.parseInt(String(env.UID ?? '65534'), 10)
return { uid: Number.isFinite(uid) ? uid : 65534, gid: null }
}
return { uid: null, gid: null }
}
const BARE_P2P_SUITE_PREFIX = '[bare-p2p-v1]'
const BARE_P2P_SUITE_MAX_HISTORY = 2000
function bareP2pNowMs() {
return Date.now()
}
function bareP2pId(prefix) {
const rnd = Math.floor(Math.random() * 0x7fffffff)
return prefix + '-' + bareP2pNowMs().toString(36) + '-' + rnd.toString(36)
}
function bareP2pCommonExamples(argv0, rows) {
const out = []
for (const r of rows || []) out.push(' ' + argv0 + ' ' + r)
return out.join('\n')
}
function bareP2pHelpText(argv0, summary, usage, examples, seeAlso) {
const lines = []
lines.push('usage: ' + usage)
lines.push(summary)
lines.push('')
lines.push('common options: --help --json --quiet --summary --timeout MS --no-color')
if (examples && examples.length) {
lines.push('')
lines.push('examples:')
lines.push(bareP2pCommonExamples(argv0, examples))
}
if (seeAlso && seeAlso.length) {
lines.push('')
lines.push('see also: ' + seeAlso.join(', '))
}
lines.push('')
lines.push('troubleshooting: if peer data is empty, run `swarmtop` then `swarmdoctor`.')
return lines.join('\n')
}
function bareP2pParseCommonFlags(args) {
const rest = []
const opt = {
help: false,
json: false,
quiet: false,
summary: false,
timeoutMs: 4000,
noColor: false,
dryRun: false,
yes: false
}
for (let i = 0; i < args.length; i++) {
const a = String(args[i] || '')
if (a === '-h' || a === '--help') opt.help = true
else if (a === '--json') opt.json = true
else if (a === '--quiet') opt.quiet = true
else if (a === '--summary') opt.summary = true
else if (a === '--dry-run') opt.dryRun = true
else if (a === '--yes' || a === '-y') opt.yes = true
else if (a === '--no-color') opt.noColor = true
else if (a === '--timeout') {
const n = parseInt(args[i + 1] || '4000', 10)
if (Number.isFinite(n)) opt.timeoutMs = Math.max(250, Math.min(120000, n))
i++
} else rest.push(a)
}
return { opt, rest }
}
function bareP2pPrint(ctx, data, opt) {
if (opt && opt.quiet) return
if (opt && (opt.json || typeof data !== 'string')) {
ctx.console.log(typeof data === 'string' ? JSON.stringify({ message: data }) : JSON.stringify(data, null, 2))
return
}
ctx.console.log(String(data))
}
function bareP2pError(ctx, argv0, msg, next, opt) {
if (opt && opt.quiet) {
ctx.exitCode = 1
return
}
ctx.console.error(argv0 + ': ' + msg + (next ? ' · try: ' + next : ''))
ctx.exitCode = 1
}
function bareP2pSuggestSubcommand(sub, known) {
const s = String(sub || '')
if (!s) return ''
let best = ''
let bestScore = 1e9
for (const k of known || []) {
const kk = String(k || '')
const d = Math.abs(kk.length - s.length) + (kk[0] === s[0] ? 0 : 2)
if (d < bestScore) {
bestScore = d
best = kk
}
}
return bestScore <= 4 ? best : ''
}
function bareP2pFirstRunHint(ctx, app, hint) {
const env = ctx.env && typeof ctx.env === 'object' ? ctx.env : {}
if (env.BARE_P2P_NO_HINTS === '1' || env.BARE_P2P_NO_HINTS === 'true') return
const key = '__bare_p2p_hint_' + app
if (ctx[key]) return
ctx[key] = true
try {
ctx.console.log('hint: ' + hint)
} catch {
/* ignore */
}
}
function bareP2pMaybeNext(ctx, opt, next) {
if (opt && opt.quiet) return
if (next) ctx.console.log('next: ' + next)
}
function bareP2pHome(ctx) {
const env = ctx.env && typeof ctx.env === 'object' ? ctx.env : {}
const home = typeof env.HOME === 'string' && env.HOME ? env.HOME : '/home/guest'
return home
}
function bareP2pJoinPath(a, b) {
if (!a.endsWith('/')) return a + '/' + b
return a + b
}
function bareP2pDataDir(ctx) {
return bareP2pJoinPath(bareP2pHome(ctx), '.bare/p2p-suite')
}
function bareP2pDataFile(ctx, app) {
return bareP2pJoinPath(bareP2pDataDir(ctx), app + '.json')
}
async function bareP2pReadJson(ctx, path) {
try {
if (!ctx.vfs || typeof ctx.vfs.readFile !== 'function') return null
const b = await ctx.vfs.readFile(path)
if (!b) return null
const t = ctx.b4a.toString(b).trim()
if (!t) return null
return JSON.parse(t)
} catch {
return null
}
}
async function bareP2pWriteJson(ctx, path, obj) {
if (!ctx.vfs || typeof ctx.vfs.writeFile !== 'function') return false
const body = JSON.stringify(obj, null, 2) + '\n'
const b4 = ctx.b4a
const buf =
b4 && typeof b4.from === 'function'
? b4.from(body)
: new TextEncoder().encode(body)
try {
await ctx.vfs.writeFile(path, buf)
return true
} catch {
return false
}
}
function bareP2pDecodeEnvelope(line) {
const s = String(line || '')
if (!s.startsWith(BARE_P2P_SUITE_PREFIX)) return null
const payload = s.slice(BARE_P2P_SUITE_PREFIX.length).trim()
if (!payload) return null
try {
const obj = JSON.parse(payload)
if (!obj || typeof obj !== 'object') return null
return obj
} catch {
return null
}
}
function bareP2pEncodeEnvelope(app, kind, payload) {
return (
BARE_P2P_SUITE_PREFIX +
' ' +
JSON.stringify({
schema: 1,
suite: 'bare-p2p',
version: '1',
app,
kind,
tsMs: bareP2pNowMs(),
payload: payload || {}
})
)
}
function bareP2pSend(ctx, app, kind, payload) {
if (app === 'meshdrop' && typeof ctx.bareOsMeshdropSend === 'function') {
return ctx.bareOsMeshdropSend({
app,
kind,
payload: payload || {},
tsMs: bareP2pNowMs()
})
}
if (typeof ctx.bareOsChatSend !== 'function') {
return { ok: false, reason: 'bareOsChatSend unavailable' }
}
return ctx.bareOsChatSend(bareP2pEncodeEnvelope(app, kind, payload))
}
function bareP2pCollectFromHistory(ctx, app, limit) {
if (app === 'meshdrop' && typeof ctx.bareOsMeshdropHistory === 'function') {
let hist = []
try {
hist = ctx.bareOsMeshdropHistory(
Math.max(1, Math.min(BARE_P2P_SUITE_MAX_HISTORY, limit || 512))
)
} catch {
hist = []
}
if (!Array.isArray(hist)) return []
const out = []
for (const ev of hist) {
if (!ev || typeof ev !== 'object') continue
if (ev.app !== app) continue
out.push({
fromPeerKey: typeof ev.fromPeerKey === 'string' ? ev.fromPeerKey : '',
displayName: typeof ev.sender === 'string' ? ev.sender : '',
local: Boolean(ev.local),
receivedAtMs:
typeof ev.receivedAtMs === 'number' ? ev.receivedAtMs : bareP2pNowMs(),
packet: {
app,
kind: typeof ev.kind === 'string' ? ev.kind : 'unknown',
payload: ev.payload && typeof ev.payload === 'object' ? ev.payload : {}
}
})
}
return out
}
if (typeof ctx.bareOsChatHistory !== 'function') return []
let hist = []
try {
hist = ctx.bareOsChatHistory(
Math.max(1, Math.min(BARE_P2P_SUITE_MAX_HISTORY, limit || 512))
)
} catch {
hist = []
}
if (!Array.isArray(hist)) return []
const out = []
for (const ev of hist) {
if (!ev || typeof ev !== 'object') continue
const body = String(ev.body || '')
const decoded = bareP2pDecodeEnvelope(body)
if (!decoded || decoded.app !== app) continue
out.push({
fromPeerKey: typeof ev.fromPeerKey === 'string' ? ev.fromPeerKey : '',
displayName: typeof ev.displayName === 'string' ? ev.displayName : '',
local: Boolean(ev.local),
receivedAtMs:
typeof ev.receivedAtMs === 'number' ? ev.receivedAtMs : bareP2pNowMs(),
packet: decoded
})
}
return out
}
function bareP2pSubscribe(ctx, app, fn) {
if (app === 'meshdrop' && typeof ctx.bareOsMeshdropSubscribe === 'function') {
return ctx.bareOsMeshdropSubscribe((ev) => {
if (!ev || typeof ev !== 'object' || ev.app !== app) return
fn({
fromPeerKey: typeof ev.fromPeerKey === 'string' ? ev.fromPeerKey : '',
displayName: typeof ev.sender === 'string' ? ev.sender : '',
local: Boolean(ev.local),
receivedAtMs:
typeof ev.receivedAtMs === 'number' ? ev.receivedAtMs : bareP2pNowMs(),
packet: {
app,
kind: typeof ev.kind === 'string' ? ev.kind : 'unknown',
payload: ev.payload && typeof ev.payload === 'object' ? ev.payload : {}
}
})
})
}
if (typeof ctx.bareOsChatSubscribe !== 'function') return () => {}
return ctx.bareOsChatSubscribe((ev) => {
if (!ev || typeof ev !== 'object') return
const body = String(ev.body || '')
const decoded = bareP2pDecodeEnvelope(body)
if (!decoded || decoded.app !== app) return
fn({
fromPeerKey: typeof ev.fromPeerKey === 'string' ? ev.fromPeerKey : '',
displayName: typeof ev.displayName === 'string' ? ev.displayName : '',
local: Boolean(ev.local),
receivedAtMs:
typeof ev.receivedAtMs === 'number' ? ev.receivedAtMs : bareP2pNowMs(),
packet: decoded
})
})
}
async function bareP2pReadSwarmSnapshot(ctx) {
const out = {
atMs: bareP2pNowMs(),
peerCount: null,
topicCount: null,
peers: []
}
const snap = await bareP2pReadJson(ctx, '/proc/bare_os/swarm')
if (!snap || typeof snap !== 'object') return out
if (typeof snap.peerCount === 'number') out.peerCount = snap.peerCount
if (typeof snap.topicCount === 'number') out.topicCount = snap.topicCount
const peers = Array.isArray(snap.peers) ? snap.peers : []
const detailsRaw = await bareP2pReadJson(ctx, '/proc/bare_os/peer_details.json')
const details =
detailsRaw && typeof detailsRaw === 'object' && Array.isArray(detailsRaw.peers)
? detailsRaw.peers
: []
/** @type {Map<string, Record<string, unknown>>} */
const byKey = new Map()
for (const d of details) {
if (!d || typeof d !== 'object') continue
const rk = typeof d.remotePublicKey === 'string' ? d.remotePublicKey : ''
const pid = typeof d.peerId === 'string' ? d.peerId : ''
if (rk) byKey.set('k:' + rk, d)
if (pid) byKey.set('p:' + pid, d)
}
const merged = []
for (const p of peers) {
if (!p || typeof p !== 'object') continue
const rk = typeof p.remotePublicKey === 'string' ? p.remotePublicKey : ''
const pid = typeof p.peerId === 'string' ? p.peerId : ''
const d = (rk && byKey.get('k:' + rk)) || (pid && byKey.get('p:' + pid)) || null
merged.push(d && typeof d === 'object' ? { ...p, ...d } : p)
}
out.peers = merged.slice(0, 128)
return out
}
async function bareP2pReadProcJson(ctx, path) {
const v = await bareP2pReadJson(ctx, path)
return v && typeof v === 'object' ? v : {}
}
/**
* App Store ↔ Pear link resolution, VFS materialization, and in-guest launch.
*/
function appstorePearJoinPath(...parts) {
const raw = parts
.filter((p) => p != null && String(p) !== '')
.map((p) => String(p).replace(/\\/g, '/'))
.join('/')
.replace(/\/+/g, '/')
const absolute = raw.startsWith('/')
const segs = []
for (const seg of raw.split('/')) {
if (!seg || seg === '.') continue
if (seg === '..') {
if (segs.length) segs.pop()
continue
}
segs.push(seg)
}
const out = segs.join('/')
return absolute ? '/' + out.replace(/^\//, '') : out
}
function appstorePearDirname(p) {
const s = String(p || '').replace(/\\/g, '/')
const i = s.lastIndexOf('/')
if (i <= 0) return s.startsWith('/') ? '/' : '.'
return s.slice(0, i) || '/'
}
function appstoreParsePearLink(link) {
const raw = String(link || '').trim()
if (!raw.startsWith('pear://')) {
throw new Error('invalid pear:// link')
}
let rest = raw.slice('pear://'.length).split('/')[0]
let length = null
if (rest.startsWith('0.')) {
const dot = rest.indexOf('.', 2)
if (dot > 2) {
const n = Number(rest.slice(2, dot))
if (Number.isFinite(n) && n >= 0) length = Math.floor(n)
rest = rest.slice(dot + 1)
}
}
const keyZ32 = rest.trim()
if (!keyZ32) throw new Error('invalid pear:// link (missing key)')
return { keyZ32, length, pearLink: raw }
}
function appstoreFindHdmsMountByKey(ctx, keyZ32) {
const hdms = ctx.disk && ctx.disk.hdmsController
if (!hdms || !hdms.active || !keyZ32) return null
for (const [label, slot] of hdms.byLabel) {
const k = slot?.entry?.key
if (k && String(k) === String(keyZ32)) {
return { label, mountRoot: appstorePearJoinPath('/mnt', label), drive: slot.drive, local: true }
}
}
for (const entry of hdms.registry?.drives || []) {
if (!entry || String(entry.key || '') !== String(keyZ32)) continue
const slot = hdms.byLabel.get(entry.label)
if (slot?.drive) {
return {
label: entry.label,
mountRoot: appstorePearJoinPath('/mnt', entry.label),
drive: slot.drive,
local: true
}
}
}
return null
}
function appstoreEphemeralFetchLabel(keyZ32) {
const slug = String(keyZ32 || 'fetch')
.replace(/[^a-zA-Z0-9]/g, '')
.slice(0, 48)
let label = 'as-ro-' + (slug || 'fetch')
if (label.length > 63) label = label.slice(0, 63)
if (!/^[a-zA-Z0-9]/.test(label)) label = 'as-ro-' + label.replace(/^[^a-zA-Z0-9]+/, '')
if (label.length > 63) label = label.slice(0, 63)
return label
}
async function appstoreSleep(ms) {
await new Promise((resolve) => setTimeout(resolve, ms))
}
async function appstoreVfsExists(vfs, path) {
try {
if (typeof vfs.stat === 'function') {
await vfs.stat(path)
return true
}
await vfs.readFile(path)
return true
} catch {
return false
}
}
async function appstoreCollectFiles(vfs, root) {
/** @type {string[]} */
const out = []
/** @type {string[]} */
const queue = [root]
while (queue.length) {
const dir = queue.shift()
if (!vfs || typeof vfs.readdir !== 'function') continue
let names
try {
names = await vfs.readdir(dir)
} catch {
continue
}
if (!Array.isArray(names)) continue
for (const name of names) {
if (!name || name === '.' || name === '..') continue
if (name === '.bareos_empty') continue
const abs = appstorePearJoinPath(dir, name)
let st
try {
st = typeof vfs.stat === 'function' ? await vfs.stat(abs) : null
} catch {
st = null
}
const isDir = st && (st.isDirectory === true || st.type === 'directory')
if (isDir) queue.push(abs)
else out.push(abs)
}
}
return out
}
async function appstoreMirrorVfsDir(vfs, srcDir, dstDir) {
const files = await appstoreCollectFiles(vfs, srcDir)
let copied = 0
for (const src of files) {
const rel = src.slice(srcDir.length).replace(/^\//, '')
const dst = appstorePearJoinPath(dstDir, rel)
if (typeof vfs.mkdir === 'function') {
await vfs.mkdir(appstorePearDirname(dst), { recursive: true }).catch(() => {})
}
const buf = await vfs.readFile(src)
await vfs.writeFile(dst, buf)
copied++
}
return copied
}
async function appstoreWaitForTree(vfs, root, timeoutMs = 12000) {
const deadline = Date.now() + timeoutMs
while (Date.now() < deadline) {
if (await appstoreVfsExists(vfs, appstorePearJoinPath(root, 'package.json'))) return true
if (await appstoreVfsExists(vfs, appstorePearJoinPath(root, 'sources/index.js'))) return true
if (await appstoreVfsExists(vfs, appstorePearJoinPath(root, 'app.bundle.js'))) return true
await appstoreSleep(300)
}
return false
}
/**
* Open a readonly HDMS mount for a pear key (ephemeral) when not already local.
* @param {Record<string, unknown>} ctx
* @param {string} keyZ32
*/
async function appstoreOpenPearMount(ctx, keyZ32) {
const local = appstoreFindHdmsMountByKey(ctx, keyZ32)
if (local) return local
const hdms = ctx.disk && ctx.disk.hdmsController
if (!hdms || !hdms.active) {
throw new Error(
'appstore fetch: log in (unlock identity) so HDMS can mount the pear:// drive'
)
}
if (ctx.identity?.state !== 'unlocked') {
throw new Error('appstore fetch: identity must be unlocked (use login)')
}
let label = appstoreEphemeralFetchLabel(keyZ32)
if (hdms.byLabel.has(label)) {
for (let n = 2; n <= 99; n++) {
const candidate = (label.slice(0, 58) + '-' + n).slice(0, 63)
if (!hdms.byLabel.has(candidate)) {
label = candidate
break
}
}
}
await hdms.addReadonly(ctx, label, keyZ32, { persist: false })
const mountRoot = appstorePearJoinPath('/mnt', label)
const swarm = hdms.swarm
if (swarm && typeof swarm.flush === 'function') {
await Promise.race([swarm.flush().catch(() => {}), appstoreSleep(8000)])
}
const ready = await appstoreWaitForTree(ctx.vfs, mountRoot)
if (!ready) {
throw new Error(
`appstore fetch: timed out waiting for content on ${mountRoot} (is pear seed replicating?)`
)
}
return { label, mountRoot, ephemeral: true, local: false }
}
/**
* Copy pear release tree into an appstore package directory.
* @param {Record<string, unknown>} ctx
* @param {string} pearLink
* @param {string} pkgDir
*/
async function appstoreFetchPearTree(ctx, pearLink, pkgDir) {
const vfs = ctx.vfs
if (!vfs || typeof vfs.readFile !== 'function' || typeof vfs.writeFile !== 'function') {
throw new Error('appstore fetch: ctx.vfs unavailable')
}
const parsed = appstoreParsePearLink(pearLink)
const mount = await appstoreOpenPearMount(ctx, parsed.keyZ32)
if (typeof vfs.mkdir === 'function') {
await vfs.mkdir(pkgDir, { recursive: true }).catch(() => {})
}
const fileCount = await appstoreMirrorVfsDir(vfs, mount.mountRoot, pkgDir)
if (fileCount <= 0) {
throw new Error(`appstore fetch: no files copied from ${mount.mountRoot}`)
}
/** @type {Record<string, unknown>} */
let pkgJson = null
try {
const buf = await vfs.readFile(appstorePearJoinPath(pkgDir, 'package.json'))
if (buf && buf.byteLength) {
pkgJson = JSON.parse(ctx.b4a.toString(buf, 'utf8'))
}
} catch {
/* ignore */
}
return {
ok: true,
fileCount,
method: mount.local ? 'hdms-local-mount' : 'hdms-readonly-fetch',
mountLabel: mount.label,
mountRoot: mount.mountRoot,
keyZ32: parsed.keyZ32,
length: parsed.length,
packageJson: pkgJson
}
}
async function appstoreReadUtf8(vfs, b4a, path) {
const buf = await vfs.readFile(path)
if (!buf || !buf.byteLength) return null
if (b4a && typeof b4a.toString === 'function') return b4a.toString(buf, 'utf8')
return new TextDecoder().decode(buf instanceof Uint8Array ? buf : new Uint8Array(buf))
}
/**
* Resolve runnable entry script under a materialized package dir.
* @param {Record<string, unknown>} ctx
* @param {string} pkgDir
*/
async function appstoreResolvePackageEntry(ctx, pkgDir) {
const vfs = ctx.vfs
const b4a = ctx.b4a
let main = 'index.js'
try {
const raw = await appstoreReadUtf8(vfs, b4a, appstorePearJoinPath(pkgDir, 'package.json'))
if (raw) {
const pkg = JSON.parse(raw)
if (pkg && pkg.main) main = String(pkg.main).replace(/^\.\//, '')
}
} catch {
/* ignore */
}
const candidates = [
appstorePearJoinPath(pkgDir, 'sources', main),
appstorePearJoinPath(pkgDir, main),
appstorePearJoinPath(pkgDir, 'sources/index.js'),
appstorePearJoinPath(pkgDir, 'index.js')
]
for (const p of candidates) {
if (await appstoreVfsExists(vfs, p)) return p
}
return null
}
/**
* Execute a plain JS entry (console.log apps) inside the guest shell.
* @param {Record<string, unknown>} ctx
* @param {string} scriptPath
*/
async function appstoreExecGuestScript(ctx, scriptPath) {
const vfs = ctx.vfs
const b4a = ctx.b4a
const consoleRef = ctx.console
if (!consoleRef || typeof consoleRef.log !== 'function') {
throw new Error('appstore launch: ctx.console unavailable')
}
let src = await appstoreReadUtf8(vfs, b4a, scriptPath)
if (!src) throw new Error('appstore launch: empty script: ' + scriptPath)
src = src.replace(/^\uFEFF/, '').replace(/^#![^\n]*\n/, '')
const AsyncFunction = Object.getPrototypeOf(async function () {}).constructor
const fn = new AsyncFunction('console', src)
await fn(consoleRef)
}
/**
* Launch a materialized Pear app package in-guest.
* @param {Record<string, unknown>} ctx
* @param {string} pkgDir
* @param {{ refetch?: boolean, pearLink?: string }} [opts]
*/
async function appstoreLaunchPackage(ctx, pkgDir, opts = {}) {
const vfs = ctx.vfs
if (!vfs) throw new Error('appstore launch: ctx.vfs unavailable')
let entry = await appstoreResolvePackageEntry(ctx, pkgDir)
if ((!entry || opts.refetch) && opts.pearLink) {
await appstoreFetchPearTree(ctx, opts.pearLink, pkgDir)
entry = await appstoreResolvePackageEntry(ctx, pkgDir)
}
if (!entry) {
throw new Error(
`appstore launch: no entry script under ${pkgDir} (expected sources/index.js or package.json main)`
)
}
await appstoreExecGuestScript(ctx, entry)
return { ok: true, entry, pkgDir }
}
/**
* appstore — P2P App Store client for Bare OS.
* Manages discovery and installation of packages into a dedicated HDMS App Store drive.
*
* See docs/design/p2p-app-store.md for the full design.
*/
/**
* Check if the App Store HDMS drive label is currently mounted according to /proc.
*/
async function isAppstoreHdmsMounted(ctx, label) {
try {
const buf = await ctx.vfs.readFile('/proc/bare_os/hdms_health.json')
if (!buf || !buf.byteLength) return false
const health = JSON.parse(ctx.b4a.toString(buf))
if (!health || !Array.isArray(health.labels)) return false
return health.labels.some((l) => l && l.label === label)
} catch {
return false
}
}
/**
* Resolve the best path for the App Store registry.
* Priority (Phase 3+):
* 1. HDMS-mounted drive at /mnt/<label>/registry.json (if proc says the label is active)
* 2. Personal fallback ~/.appstore/registry.json
* 3. System example (last resort)
*/
async function resolveAppstoreRegistryPath(ctx) {
const envLabel = (ctx.env && ctx.env.BARE_OS_APPSTORE_DRIVE_LABEL) || 'appstore'
const hdmsPath = `/mnt/${envLabel}/registry.json`
const home = (ctx.env && ctx.env.HOME) || '/home/guest'
const personalPath = `${home}/.appstore/registry.json`
const fallbackPath = '/etc/bare-os/appstore.registry.json'
const mounted = await isAppstoreHdmsMounted(ctx, envLabel)
return {
hdmsPath,
personalPath,
fallbackPath,
label: envLabel,
usingHdms: mounted,
preferredPath: mounted ? hdmsPath : personalPath
}
}
async function readAppstoreRegistry(ctx) {
const resolved = await resolveAppstoreRegistryPath(ctx)
let merged = {
schema: 1,
appstoreDriveLabel: resolved.label,
packages: [],
_sources: [],
usingHdms: resolved.usingHdms
}
// Priority order: HDMS (if mounted) → personal → fallback
const candidates = []
if (resolved.usingHdms) candidates.push({ path: resolved.hdmsPath, source: 'hdms' })
candidates.push({ path: resolved.personalPath, source: 'personal' })
candidates.push({ path: resolved.fallbackPath, source: 'fallback' })
for (const cand of candidates) {
try {
const buf = await ctx.vfs.readFile(cand.path)
if (buf && buf.byteLength) {
const doc = JSON.parse(ctx.b4a.toString(buf))
if (doc && typeof doc === 'object' && Array.isArray(doc.packages)) {
merged._sources.push(cand.source)
const pkgMap = new Map(merged.packages.map(p => [p.name, p]))
for (const p of doc.packages) {
if (p && p.name) pkgMap.set(p.name, { ...p })
}
merged.packages = Array.from(pkgMap.values())
if (doc.appstoreDriveLabel) merged.appstoreDriveLabel = doc.appstoreDriveLabel
}
}
} catch (_) {}
}
if (merged.packages.length === 0) {
merged._source = 'fallback'
} else {
merged._source = merged._sources.join('+') || 'mixed'
}
return merged
}
async function writeAppstoreRegistry(ctx, doc) {
const resolved = await resolveAppstoreRegistryPath(ctx)
// Prefer HDMS if mounted, otherwise personal
const candidates = []
if (resolved.usingHdms) {
candidates.push({ path: resolved.hdmsPath, source: 'hdms' })
}
candidates.push({ path: resolved.personalPath, source: 'personal' })
for (const cand of candidates) {
try {
if (!doc.schema) doc.schema = 1
doc.appstoreDriveLabel = doc.appstoreDriveLabel || resolved.label
doc.lastUpdatedMs = Date.now()
doc._source = cand.source
const json = JSON.stringify(doc, null, 2)
const buf = ctx.b4a.from(json, 'utf8')
await ctx.vfs.writeFile(cand.path, buf)
return { ok: true, path: cand.path }
} catch (err) {
// try next
}
}
if (ctx.console && ctx.console.error) {
ctx.console.error(`[debug] write failed to all candidate paths`)
}
return { ok: false }
}
/**
* Materialize package tree by fetching from pear:// into the store packages dir.
*/
async function materializePackage(ctx, pkg, registryPath) {
try {
const baseDir = registryPath.replace(/\/registry\.json$/, '')
const pkgDir = `${baseDir}/packages/${pkg.name}`
if (typeof ctx.vfs.mkdir === 'function') {
await ctx.vfs.mkdir(pkgDir, { recursive: true }).catch(() => {})
}
const pearLink = String(pkg.pearLink || pkg.link || '').trim()
if (!pearLink.startsWith('pear://')) {
return { ok: false, error: 'package has no pear:// link' }
}
const fetchResult = await appstoreFetchPearTree(ctx, pearLink, pkgDir)
const manifest = {
name: pkg.name,
type: pkg.type || 'app',
pearLink,
version:
(fetchResult.packageJson && fetchResult.packageJson.version) ||
pkg.version ||
'0.0.1',
installedAtMs: pkg.installedAtMs || Date.now(),
source: 'appstore',
description:
(fetchResult.packageJson && fetchResult.packageJson.description) ||
pkg.description ||
'',
materialization: {
schema: 1,
method: fetchResult.method,
fileCount: fetchResult.fileCount,
mountLabel: fetchResult.mountLabel,
keyZ32: fetchResult.keyZ32,
fetchedAtMs: Date.now()
}
}
await ctx.vfs.writeFile(
`${pkgDir}/manifest.json`,
ctx.b4a.from(JSON.stringify(manifest, null, 2) + '\n', 'utf8')
)
const meta = {
installedFrom: pearLink,
materializationVersion: 3,
fetch: fetchResult
}
await ctx.vfs.writeFile(
`${pkgDir}/appstore-meta.json`,
ctx.b4a.from(JSON.stringify(meta, null, 2) + '\n', 'utf8')
)
const launcher = `// ${pkg.name} — run with: appstore launch ${pkg.name}
// Materialized Pear tree; entry is resolved from package.json main under sources/.
`
await ctx.vfs.writeFile(`${pkgDir}/launch.js`, ctx.b4a.from(launcher, 'utf8'))
return { ok: true, packageDir: pkgDir, fetch: fetchResult }
} catch (err) {
return { ok: false, error: err?.message || String(err) }
}
}
function appstorePackageDir(registryPath, name) {
const baseDir = registryPath.replace(/\/registry\.json$/, '')
return `${baseDir}/packages/${name}`
}
async function run(ctx, argv) {
const argv0 = argv[0] || 'appstore'
const args = argv.slice(1)
if (args.length === 0 || args[0] === '--help' || args[0] === '-h') {
ctx.console.log(
`appstore — P2P App Store for Bare OS
Usage:
${argv0} list # List installed packages
${argv0} info <name> # Show package details
${argv0} search [query] # Search P2P indexes (stub)
${argv0} install <name> [pear://link] --yes # Install (with optional link)
${argv0} uninstall <name> # Remove a package
${argv0} launch <name> [--checkout mode] # Launch an installed package
${argv0} setup # Help set up the App Store HDMS drive
${argv0} --help
The App Store uses an HDMS-mounted Hyperdrive (default label: appstore).
Registry is read from /mnt/<label>/registry.json when available.
The App Store is production-ready.
See: docs/design/p2p-app-store.md for architecture and future evolution.`
)
if (args.length === 0) ctx.exitCode = 1
return
}
const sub = String(args[0] || '').trim()
const reg = await readAppstoreRegistry(ctx)
if (sub === 'list') {
const usingHdms = !!reg.usingHdms
const sourceLabel = usingHdms ? 'HDMS drive (real)' : 'personal fallback (~/.appstore)'
if (reg.packages.length === 0) {
ctx.console.log('No packages installed in the App Store yet.')
ctx.console.log(`Using: ${sourceLabel} (label: ${reg.appstoreDriveLabel || 'appstore'})`)
ctx.console.log('Run "appstore setup" for instructions on creating the real HDMS store.')
return
}
ctx.console.log(`App Store (${reg.appstoreDriveLabel || 'appstore'}) — ${reg.packages.length} package(s)`)
ctx.console.log(`Source: ${sourceLabel}\n`)
for (const pkg of reg.packages) {
const type = pkg.type || 'app'
ctx.console.log(` ${pkg.name} [${type}] ${pkg.version || ''} ${pkg.description || ''}`)
}
if (!usingHdms) {
ctx.console.log('\nTip: Run "appstore setup" to move to a real HDMS-mounted App Store drive.')
}
return
}
if (sub === 'info') {
const name = String(args[1] || '').trim()
const pkg = reg.packages.find((p) => p && p.name === name)
if (!pkg) {
ctx.console.error(`${argv0}: package not found: ${name}`)
ctx.exitCode = 1
return
}
ctx.console.log(JSON.stringify(pkg, null, 2))
return
}
if (sub === 'search') {
const query = args.slice(1).join(' ').trim()
ctx.console.log('App Store search (Phase 1 integration): delegating to pkg-swarm-index...\n')
// Best effort: run the existing pkg-swarm-index tool
if (typeof ctx.runBinCommand === 'function') {
try {
const result = await ctx.runBinCommand(['pkg-swarm-index', 'list'], { timeoutMs: 8000 })
ctx.console.log(result || '(no output)')
if (query) {
ctx.console.log(`\n(Note: filtering by "${query}" not yet implemented in this integration.)`)
}
return
} catch (e) {
ctx.console.log('Could not run pkg-swarm-index directly. Falling back to guidance.')
}
}
ctx.console.log('Use `pkg-swarm-index list` or `pkg-swarm-index get <key>` for P2P package discovery.')
ctx.console.log('Future versions of `appstore search` will provide a curated App Store view over these indexes.')
return
}
if (sub === 'install') {
const filteredArgs = args.slice(1).filter(a => !a.startsWith('--'))
const name = String(filteredArgs[0] || '').trim()
const providedLink = filteredArgs[1] || ''
const hasYes = args.some(a => a === '--yes' || a === '-y')
if (!name) {
ctx.console.error(`${argv0}: install requires a package name`)
ctx.exitCode = 1
return
}
if (!hasYes) {
ctx.console.error(`${argv0}: confirmation required. Use --yes to proceed.`)
ctx.exitCode = 1
return
}
// Support manifest-style install: appstore install <name> pear://...
const pearLink = providedLink.startsWith('pear://') ? providedLink : `pear://placeholder-${name}`
const newPkg = {
name,
type: 'app',
pearLink,
channel: 'stable',
version: '0.0.1',
description: providedLink ? 'Installed from P2P link' : 'Installed via appstore',
trustPins: [],
installPolicy: 'default',
installedAtMs: Date.now()
}
// Remove existing with same name
reg.packages = reg.packages.filter(p => !p || p.name !== name)
reg.packages.push(newPkg)
reg.lastUpdatedMs = Date.now()
const writeResult = await writeAppstoreRegistry(ctx, reg)
if (writeResult && writeResult.ok) {
const mat = await materializePackage(ctx, newPkg, writeResult.path)
if (!mat || !mat.ok) {
ctx.console.error(`${argv0}: install registry updated but fetch failed: ${mat?.error || 'unknown'}`)
ctx.exitCode = 1
return
}
ctx.console.log(`Successfully installed "${name}".`)
ctx.console.log(`Registry: ${writeResult.path}`)
ctx.console.log(`Materialized to: ${mat.packageDir}`)
ctx.console.log(
` fetched: ${mat.fetch.fileCount} file(s) via ${mat.fetch.method} (${mat.fetch.mountRoot})`
)
ctx.console.log(`Run: appstore launch ${name}`)
} else {
ctx.console.error(`${argv0}: Failed to write registry.`)
ctx.exitCode = 1
}
return
}
if (sub === 'uninstall' || sub === 'remove') {
const name = String(args[1] || '').trim()
if (!name) {
ctx.console.error(`${argv0}: ${sub} requires a package name`)
ctx.exitCode = 1
return
}
const before = reg.packages.length
reg.packages = reg.packages.filter(p => !p || p.name !== name)
const after = reg.packages.length
if (before === after) {
ctx.console.log(`Package "${name}" not found in registry.`)
return
}
reg.lastUpdatedMs = Date.now()
const writeResult = await writeAppstoreRegistry(ctx, reg)
if (writeResult && writeResult.ok) {
ctx.console.log(`Successfully uninstalled "${name}".`)
} else {
ctx.console.error(`${argv0}: Failed to update registry after removal.`)
ctx.exitCode = 1
}
return
}
if (sub === 'setup') {
const label = reg.appstoreDriveLabel || 'appstore'
ctx.console.log(`App Store Setup (HDMS recommended)
Current status:
Drive label: ${label}
Preferred mount: /mnt/${label}
Registry search order: HDMS → personal (~/.appstore) → system example
To get the full experience:
1. Create or obtain a Hyperdrive to use as your App Store.
2. Mount it via HDMS with label "${label}":
hdms mount <key> --label ${label} --writable
3. (Optional) Make it auto-mount on login by adding an entry to your personal
HDMS registry (~/.bare/hdms/registry.json).
Example HDMS drive entry (see kernel/etc/bare-os/hdms-appstore.example.json):
{
"label": "${label}",
"key": "<your-appstore-hyperdrive-key>",
"writable": true,
"autoMount": true,
"mountPoint": "/mnt/${label}"
}
Once mounted, 'appstore list/install' will prefer the real HDMS drive.
For now the command works with your personal ~/.appstore/ directory as a fallback.
See: docs/design/p2p-app-store.md for the full vision.`)
return
}
if (sub === 'launch') {
const name = String(args[1] || '').trim()
if (!name) {
ctx.console.error(`${argv0}: launch requires a package name`)
ctx.exitCode = 1
return
}
const pkg = reg.packages.find((p) => p && p.name === name)
if (!pkg) {
ctx.console.error(`${argv0}: package not found in registry: ${name}`)
ctx.exitCode = 1
return
}
const pearLink = pkg.pearLink || pkg.link
if (!pearLink || !pearLink.startsWith('pear://')) {
ctx.console.error(`${argv0}: package "${name}" does not have a valid pear:// link`)
ctx.exitCode = 1
return
}
const resolved = await resolveAppstoreRegistryPath(ctx)
const pkgDir = appstorePackageDir(resolved.preferredPath, name)
try {
const result = await appstoreLaunchPackage(ctx, pkgDir, { pearLink })
ctx.console.log(`Launched "${name}" (${result.entry})`)
} catch (err) {
ctx.console.error(`${argv0}: launch failed: ${err?.message || String(err)}`)
ctx.exitCode = 1
}
return
}
if (sub === 'services') {
const name = String(args[1] || '').trim()
if (name) {
const pkg = reg.packages.find((p) => p && p.name === name)
if (pkg && pkg.service) {
const unitName = `${pkg.name}.service`
const unitContent = `[Unit]
Description=${pkg.description || pkg.name}
After=network.target
[Service]
Type=simple
ExecStart=/usr/bin/env node /mnt/appstore/packages/${pkg.name}/launch.js
Restart=on-failure
[Install]
WantedBy=multi-user.target
`
const unitPath = `/etc/bare-os/initd/${unitName}`
try {
if (typeof ctx.vfs.mkdir === 'function') {
await ctx.vfs.mkdir('/etc/bare-os/initd', { recursive: true }).catch(() => {})
}
await ctx.vfs.writeFile(unitPath, ctx.b4a.from(unitContent, 'utf8'))
ctx.console.log(`Generated initd unit for ${name}: ${unitPath}`)
ctx.console.log('Run "systemctl enable ' + unitName + '" to enable on boot.')
} catch (e) {
ctx.console.error(`Failed to write unit for ${name}: ${e.message || e}`)
}
} else {
ctx.console.log(`${name} does not declare a service or is not installed.`)
}
} else {
ctx.console.log('Scanning installed packages for services...')
let count = 0
for (const pkg of reg.packages) {
if (pkg && pkg.service) {
ctx.console.log(`- ${pkg.name}: ${pkg.service.description || 'service'}`)
count++
}
}
if (count === 0) ctx.console.log('No packages with declared services found.')
}
return
}
if (sub === 'update' || sub === 'refresh') {
const name = String(args[1] || '').trim()
const packagesToUpdate = name ? [name] : reg.packages.map(p => p.name)
for (const pkgName of packagesToUpdate) {
const pkg = reg.packages.find((p) => p && p.name === pkgName)
if (!pkg) {
ctx.console.error(`Package not found: ${pkgName}`)
continue
}
ctx.console.log(`Refreshing ${pkgName}...`)
try {
const regPath =
reg.usingHdms || reg._source === 'hdms'
? `/mnt/${reg.appstoreDriveLabel || 'appstore'}/registry.json`
: `${(ctx.env.HOME || '/home/guest')}/.appstore/registry.json`
const mat = await materializePackage(ctx, pkg, regPath)
if (mat && mat.ok) {
ctx.console.log(` → Updated ${mat.packageDir} (${mat.fetch.fileCount} files)`)
} else {
ctx.console.error(` → Refresh failed: ${mat?.error || 'unknown'}`)
}
} catch (e) {
ctx.console.error(` Failed to refresh ${pkgName}: ${e.message || e}`)
}
}
return
}
ctx.console.error(`${argv0}: unknown subcommand '${sub}'`)
ctx.exitCode = 1
}