Files
OpenSquawk/shared/utils/communicationsEngine.ts
2025-09-16 12:23:32 +02:00

469 lines
17 KiB
TypeScript

// composables/communicationsEngine.ts
import { ref, computed, readonly } from 'vue'
import atcDecisionTree from "./atcDecisionTree";
// --- DecisionTree-Types (aus ~/data/atcDecisionTree.json abgeleitet) ---
type Role = 'pilot' | 'atc' | 'system'
type Phase =
| 'Preflight' | 'Clearance' | 'PushStart' | 'TaxiOut' | 'Departure'
| 'Climb' | 'Enroute' | 'Descent' | 'Approach' | 'Landing'
| 'TaxiIn' | 'Postflight' | 'Interrupt' | 'LostComms' | 'Missed'
interface DTNext { to: string; when?: string }
interface DTHandoff { to: string; freq: string }
interface DTActionSet { set?: string; to?: any; if?: string }
interface DTState {
id?: string // im JSON sind Keys die IDs — hier zur Bequemlichkeit.
role: Role
phase: Phase
// Texte
say_tpl?: string
utterance_tpl?: string
else_say_tpl?: string
// Routing
next?: DTNext[]
ok_next?: DTNext[]
bad_next?: DTNext[]
timer_next?: { after_s: number; to: string }[]
handoff?: DTHandoff
condition?: string
guard?: string
trigger?: string
auto?: 'check_readback' | 'monitor' | 'end' | 'pop_stack_or_route_by_intent'
readback_required?: string[]
actions?: (DTActionSet | string)[]
}
interface DecisionTree {
schema_version: string
name: string
description: string
start_state: string
end_states: string[]
variables: Record<string, any>
flags: {
in_air: boolean
emergency_active: boolean
current_unit: string
stack: string[]
}
policies: {
timeouts: {
pilot_readback_timeout_s: number
controller_ack_timeout_s: number
no_reply_retry_after_s: number
no_reply_max_retries: number
lost_comms_detect_after_s: number
}
no_reply_sequence: { after_s: number; controller_say_tpl: string }[]
interrupts_allowed_when: Record<string, string>
}
hooks: Record<string, boolean | string>
roles: Role[]
phases: Phase[]
states: Record<string, DTState>
}
// --- ATC Decition Tree laden ---
// ----------------- Public API / Kontext -----------------
export interface FlightContext {
callsign: string
aircraft: string
dep: string
dest: string
stand: string
runway: string
squawk: string
atis_code: string
sid: string
transition: string
flight_level: string // z.B. "FL360"
ground_freq: string
tower_freq: string
departure_freq: string
approach_freq: string
handoff_freq: string
qnh_hpa: number | string
taxi_route: string
remarks?: string
time_now?: string
// intern
lastTransmission?: string
awaitingResponse?: boolean
}
export interface EngineLog {
timestamp: Date
frequency?: string
speaker: Role
message: string
normalized: string
state: string
}
// ----------------- NATO/ICAO Normalizer -----------------
const NATO_PHONETIC: Record<string, string> = {
A: 'Alpha', B: 'Bravo', C: 'Charlie', D: 'Delta', E: 'Echo', F: 'Foxtrot',
G: 'Golf', H: 'Hotel', I: 'India', J: 'Juliett', K: 'Kilo', L: 'Lima',
M: 'Mike', N: 'November', O: 'Oscar', P: 'Papa', Q: 'Quebec', R: 'Romeo',
S: 'Sierra', T: 'Tango', U: 'Uniform', V: 'Victor', W: 'Whiskey',
X: 'X-ray', Y: 'Yankee', Z: 'Zulu'
}
const ICAO_NUMBERS: Record<string, string> = {
'0': 'zero', '1': 'wun', '2': 'too', '3': 'tree', '4': 'fower',
'5': 'fife', '6': 'six', '7': 'seven', '8': 'eight', '9': 'niner'
}
function normalizeAltitude(altitude: number): string {
if (altitude >= 1000) {
const thousands = Math.floor(altitude / 1000).toString().split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
const remainder = altitude % 1000
return remainder > 0 ? `${thousands} thousand ${remainder}` : `${thousands} thousand`
}
return altitude.toString()
}
export function normalizeATCText(text: string, context: Record<string, any>): string {
let normalized = renderTpl(text, context)
// runway 25L → two five left
normalized = normalized.replace(/runway\s+(\d{1,2})([LRC]?)/gi, (_, num: string, suffix: string) => {
const n = num.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
const s = suffix === 'L' ? ' left' : suffix === 'R' ? ' right' : suffix === 'C' ? ' center' : ''
return `runway ${n}${s}`
})
// FL350 → flight level three five zero
normalized = normalized.replace(/FL(\d{3})/gi, (_, lvl: string) => {
const n = lvl.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
return `flight level ${n}`
})
// 5000 ft → five thousand
normalized = normalized.replace(/\b(\d{1,5})\s*(?:feet?|ft)\b/gi, (_, alt: string) => normalizeAltitude(parseInt(alt)))
// 121.9 → wun too wun decimal niner
normalized = normalized.replace(/(\d{3})\.(\d{1,3})/g, (_, a: string, b: string) => {
const A = a.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
const B = b.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
return `${A} decimal ${B}`
})
// squawk 4567 → fower fife six seven
normalized = normalized.replace(/squawk\s+(\d{4})/gi, (_, code: string) => {
const n = code.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
return `squawk ${n}`
})
// heading 270 → heading two seven zero
normalized = normalized.replace(/heading\s+(\d{3})/gi, (_, hdg: string) => {
const n = hdg.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
return `heading ${n}`
})
// via A, B5 → via Alpha, Bravo five
normalized = normalized.replace(/via\s+([A-Z](?:\d+)?(?:\s*,\s*[A-Z](?:\d+)?)*)/gi, (_, route: string) => {
const parts = route.split(/\s*,\s*/).map(seg =>
seg.replace(/([A-Z])(\d+)?/g, (_m, L: string, N?: string) => {
const letter = NATO_PHONETIC[L] || L
const number = N ? N.split('').map(d => ICAO_NUMBERS[d] || d).join(' ') : ''
return number ? `${letter} ${number}` : letter
})
)
return `via ${parts.join(', ')}`
})
// A5 → Alpha five
normalized = normalized.replace(/\b([A-Z])(\d+)\b/g, (_m, L: string, N: string) => {
const letter = NATO_PHONETIC[L] || L
const number = N.split('').map(d => ICAO_NUMBERS[d] || d).join(' ')
return `${letter} ${number}`
})
// 280/15 → two eight zero at wun fife
normalized = normalized.replace(/(\d{3})\/(\d{1,2})/g, (_m, d: string, s: string) => {
const D = d.split('').map(x => ICAO_NUMBERS[x] || x).join(' ')
const S = s.split('').map(x => ICAO_NUMBERS[x] || x).join(' ')
return `${D} at ${S}`
})
return normalized
}
// ----------------- Template-Renderer -----------------
function renderTpl(tpl: string, ctx: Record<string, any>): string {
return tpl.replace(/\{([\w.]+)\}/g, (_m, key) => {
// Variablen können z.B. variables.callsign oder flags.in_air sein
const parts = key.split('.')
let cur: any = ctx
for (const p of parts) cur = cur?.[p]
return (cur ?? '').toString()
})
}
// ----------------- Engine -----------------
export default function useCommunicationsEngine() {
// Decision Tree in-Memory
const tree = ref<DecisionTree>(atcDecisionTree as DecisionTree)
const states = computed<Record<string, DTState>>(() => tree.value.states)
// Laufzeitkontext
const variables = ref<Record<string, any>>({ ...tree.value.variables })
const flags = ref({ ...tree.value.flags })
const currentStateId = ref<string>(tree.value.start_state)
const communicationLog = ref<EngineLog[]>([])
const currentState = computed<DTState>(() => {
const s = states.value[currentStateId.value]
return { ...s, id: currentStateId.value }
})
const nextCandidates = computed<string[]>(() => {
const s = currentState.value
const nxt = [
...(s.next ?? []),
...(s.ok_next ?? []),
...(s.bad_next ?? []),
...(s.timer_next?.map(t => ({ to: t.to })) ?? [])
].map(x => x.to)
// uniq
return Array.from(new Set(nxt))
})
// Frequenz aus Variablen (Controller-Einheit) ableiten
const activeFrequency = computed<string | undefined>(() => {
switch (flags.value.current_unit) {
case 'DEL': return renderTpl('{variables.delivery_freq}', { variables: variables.value })
case 'GROUND': return renderTpl('{variables.ground_freq}', { variables: variables.value })
case 'TOWER': return renderTpl('{variables.tower_freq}', { variables: variables.value })
case 'DEP': return renderTpl('{variables.departure_freq}', { variables: variables.value })
case 'APP': return renderTpl('{variables.approach_freq}', { variables: variables.value })
case 'CTR': return renderTpl('{variables.handoff_freq}', { variables: variables.value })
default: return undefined
}
})
// ---------- öffentliche API ----------
function initializeFlight(fpl: any) {
variables.value = {
...variables.value,
callsign: fpl.callsign,
acf_type: fpl.aircraft?.split('/')[0] || 'A320',
dep: fpl.dep || fpl.departure || 'EDDF',
dest: fpl.arr || fpl.arrival || 'EDDM',
stand: genStand(),
runway: genRunway(),
squawk: fpl.assignedsquawk || genSquawk(),
atis_code: genATIS(),
sid: genSID(fpl.route || ''),
transition: 'DCT',
cruise_flight_level: fpl.altitude ? `FL${String(Math.floor(parseInt(fpl.altitude) / 100)).padStart(3, '0')}` : 'FL360',
initial_altitude_ft: 5000,
climb_altitude_ft: 7000,
star: 'RNAV X',
approach_type: 'ILS Z',
taxi_route: 'A, V',
delivery_freq: '121.900',
ground_freq: '121.700',
tower_freq: '118.700',
departure_freq: '125.350',
approach_freq: '120.800',
handoff_freq: '121.800',
qnh_hpa: 1015,
remarks: 'standard',
time_now: new Date().toISOString()
}
flags.value = { ...flags.value, in_air: false, emergency_active: false, current_unit: 'DEL', stack: [] }
currentStateId.value = tree.value.start_state
communicationLog.value = []
}
// Pilot-Input verarbeiten → LLM bekommt State + Candidates
function buildLLMContext(pilotTranscript: string) {
const s = currentState.value
return {
state_id: s.id,
state: s,
candidates: nextCandidates.value.map(id => ({ id, state: states.value[id] })),
variables: variables.value,
flags: flags.value,
pilot_utterance: pilotTranscript
}
}
// LLM-Entscheidung anwenden
function applyLLMDecision(decision: { next_state: string; updates?: Record<string, any>; flags?: Record<string, any>; controller_say_tpl?: string }) {
// Variablen/Flags updaten
if (decision.updates) Object.assign(variables.value, decision.updates)
if (decision.flags) Object.assign(flags.value, decision.flags)
// ggf. ATC sagt etwas sofort (z.B. Reminders)
if (decision.controller_say_tpl) {
speak('atc', decision.controller_say_tpl, currentStateId.value)
}
moveTo(decision.next_state)
}
// Direkter Pilotenspruch → einfache Router-Heuristik (Interrupts/Readbacks). Für echte Logik nutzt ihr LLM:
function processPilotTransmission(transcript: string) {
// Interrupt-Shortcuts (nur in der Luft)
const t = transcript.toLowerCase()
if (flags.value.in_air && /^(mayday|pan\s*pan)/.test(t)) {
const intId = t.startsWith('mayday') ? 'INT_MAYDAY' : 'INT_PANPAN'
moveTo(intId)
speak('pilot', transcript, intId)
return
}
// Standard: Loggen & LLM-Context anbieten
speak('pilot', transcript, currentStateId.value)
}
// Zum State springen und Auto-Aktionen ausführen
function moveTo(stateId: string) {
if (!states.value[stateId]) return
// Stack-Mechanik (vereinfacht): Interrupts pushen aktuellen State
if (stateId.startsWith('INT_')) flags.value.stack.push(currentStateId.value)
currentStateId.value = stateId
const s = currentState.value
// Actions ausführen (nur SET/IF minimal)
for (const act of s.actions ?? []) {
if (typeof act === 'string') continue
if (act.if && !safeEvalBoolean(act.if)) continue
if (act.set) setByPath({ variables: variables.value, flags: flags.value }, act.set, act.to)
}
// Handoff → Frequenz/Unit setzen
if (s.handoff?.to) {
flags.value.current_unit = unitFromHandoff(s.handoff.to)
if (s.handoff.freq) {
// Frequenz ins variables-Objekt aufnehmen, falls dynamisch
variables.value.handoff_freq = renderTpl(s.handoff.freq, { ...exposeCtx() })
}
}
// Auto-Say (ATC/System)
if (s.say_tpl) speak(s.role, s.say_tpl, s.id!)
// Auto-Ende / Monitor / Check-Readback werden vom LLM/Client gesteuert.
}
// Letzten Flow wieder aufnehmen (z.B. nach Interrupt)
function resumePriorFlow() {
const prev = flags.value.stack.pop()
if (prev) moveTo(prev)
}
// Hilfsfunktionen
function speak(speaker: Role, tpl: string, stateId: string) {
const msg = renderTpl(tpl, exposeCtx())
communicationLog.value.push({
timestamp: new Date(),
frequency: activeFrequency.value,
speaker,
message: msg,
normalized: normalizeATCText(msg, exposeCtxFlat()),
state: stateId
})
}
function exposeCtx() {
return { variables: variables.value, flags: flags.value }
}
function exposeCtxFlat() {
// Für den Normalizer wollen wir einfache Platzhalter-Namen
return {
...variables.value,
...flags.value
}
}
function unitFromHandoff(to: string) {
if (/GROUND/i.test(to)) return 'GROUND'
if (/TOWER/i.test(to)) return 'TOWER'
if (/DEPART/i.test(to)) return 'DEP'
if (/APPROACH/i.test(to)) return 'APP'
if (/CENTER|CTR/i.test(to)) return 'CTR'
if (/DEL|DELIVERY/i.test(to)) return 'DEL'
return flags.value.current_unit
}
function genStand() {
const arr = ['A12','B15','C23','D8','E41','F18','G7','H33']
return arr[Math.floor(Math.random() * arr.length)]
}
function genRunway() {
const arr = ['25L','25R','07L','07R','18','36','09','27']
return arr[Math.floor(Math.random() * arr.length)]
}
function genSquawk() {
return String(Math.floor(Math.random() * 8000 + 1000)).padStart(4, '0')
}
function genATIS() {
const letters = 'ABCDEFGHIJKLMNOPQRSTUVWXYZ'
return letters[Math.floor(Math.random() * letters.length)]
}
function genSID(_route: string) {
const sids = ['SULUS5S', 'TOBAK2E', 'MARUN7F', 'CINDY1A', 'HELEN4B']
return sids[Math.floor(Math.random() * sids.length)]
}
// einfache bool-Guards (nur Variablen/Flags, keine eval unsicherer Ausdrücke)
function safeEvalBoolean(expr?: string): boolean {
if (!expr) return true
// sehr einfache Auswertung: flags.in_air === true
const m = expr.match(/^(variables|flags)\.([A-Za-z0-9_]+)\s*===\s*(true|false|'[^']*'|"[^"]*"|\d+)$/)
if (!m) return false
const bag = m[1] === 'variables' ? variables.value : flags.value as any
const key = m[2]
const rhsRaw = m[3]
let rhs: any = rhsRaw
if (rhsRaw === 'true') rhs = true
else if (rhsRaw === 'false') rhs = false
else if (/^\d+$/.test(rhsRaw)) rhs = Number(rhsRaw)
else rhs = rhsRaw.replace(/^['"]|['"]$/g, '')
return bag?.[key] === rhs
}
function setByPath(root: Record<string, any>, path: string, val: any) {
const parts = path.split('.')
let cur = root
for (let i = 0; i < parts.length - 1; i++) {
const p = parts[i]
if (!(p in cur)) cur[p] = {}
cur = cur[p]
}
cur[parts[parts.length - 1]] = val
}
return {
// state/vars/flags
currentState: computed(() => currentState.value),
currentStateId: readonly(currentStateId),
variables: readonly(variables),
flags: readonly(flags),
nextCandidates,
activeFrequency,
communicationLog: readonly(communicationLog),
// lifecycle
initializeFlight,
// Pilot in → baut Kontext für LLM
processPilotTransmission,
buildLLMContext,
applyLLMDecision,
// Flow-Steuerung
moveTo,
resumePriorFlow,
// utils
normalizeATCText
}
}