const terminal = document.getElementById('terminal'); const input = document.getElementById('cmd-input'); // [CONFIG] Reality Manifestation State let CURRENT_MANIFEST = 'CHASE'; // [CONFIG] Replace with your actual Wolfram Alpha AppID const WOLFRAM_APPID = 'YOUR_APPID_HERE'; const PERIODIC_TABLE = { 'XE': { weight: 131.293, name: 'Xenon', role: 'Conductivity Spine' }, 'C': { weight: 12.011, name: 'Carbon', role: 'Warm Body Breeder' }, 'H': { weight: 1.008, name: 'Hydrogen', role: 'Quantum Trace' } }; const REALITY_SPECS = { 'STANDARD': { geometry: 'Linear 2-Anvil', logic: 'Simultaneous Pulse', pressure: '120 GPa' }, 'BLUESKY': { geometry: 'Dodecahedral 12-Anvil', logic: 'Geometric Focus', pressure: '172 GPa' }, 'CHASE': { geometry: 'Supersonic Torus (CWT)', logic: 'Sequential Piling', pressure: '245 GPa' } }; function log(text, className = '') { const entry = document.createElement('div'); entry.className = 'log-entry ' + className; entry.textContent = text; terminal.appendChild(entry); terminal.scrollTop = terminal.scrollHeight; } async function queryWolfram(query) { if (WOLFRAM_APPID === 'YOUR_APPID_HERE') { log('[!] Error: Wolfram Alpha AppID not configured.', 'err'); return; } log('[AETHER] Querying Wolfram Alpha: ' + query); try { const url = `https://api.wolframalpha.com/v1/result?appid=${WOLFRAM_APPID}&i=${encodeURIComponent(query)}`; const response = await fetch(url); if (!response.ok) throw new Error('API Error: ' + response.status); const data = await response.text(); log('[WOLFRAM] ' + data); } catch (err) { log('[!] Error: ' + err.message, 'err'); } } input.addEventListener('keydown', (e) => { if (e.key === 'Enter') { const cmd = input.value.trim().toUpperCase(); input.value = ''; log('architect@aether:~$ ' + cmd); handleCommand(cmd); } }); async function queryMIMORouter() { try { const response = await fetch('/api/mimo/status'); if (!response.ok) throw new Error('API Error: ' + response.status); const data = await response.json(); log('[MIMO] Available Transports: ' + data.available_transports.join(', ')); if (data.i2p_info) { log('[MIMO] I2P State: ' + data.i2p_info.state); log('[MIMO] I2P Manifests: ' + data.i2p_info.manifests_registered); } log('[MIMO] Omnitoken: OK'); return data; } catch (err) { log('[MIMO] Error: ' + err.message, 'err'); return null; } } function handleCommand(cmd) { if (cmd === 'MIMO') { log('[MIMO] Probing multi-band transport...'); queryMIMORouter(); return; } if (cmd.startsWith('WOLFRAM ')) { queryWolfram(cmd.substring(8)); return; } if (cmd.startsWith('ATOMIC ')) { const symbol = cmd.split(' ')[1]; if (symbol && PERIODIC_TABLE[symbol]) { const data = PERIODIC_TABLE[symbol]; log(`[AETHER] Element: ${data.name} (${symbol})`); log(`[AETHER] Atomic Weight: ${data.weight} u`); log(`[AETHER] Tactical Role: ${data.role}`); } else { log('[!] Usage: ATOMIC ', 'err'); } return; } switch (cmd) { case 'MANIFEST': if (CURRENT_MANIFEST === 'CHASE') CURRENT_MANIFEST = 'STANDARD'; else if (CURRENT_MANIFEST === 'STANDARD') CURRENT_MANIFEST = 'BLUESKY'; else CURRENT_MANIFEST = 'CHASE'; log(`[AETHER] Reality Track Switch: -> ${CURRENT_MANIFEST}`); const specs = REALITY_SPECS[CURRENT_MANIFEST]; log(`[AETHER] Geometry: ${specs.geometry}`); log(`[AETHER] Logic: ${specs.logic}`); log(`[AETHER] Target Pressure: ${specs.pressure}`); break; case 'CHASE': log('[AETHER] Initializing Chasing Wave Sequential Detonation...'); log('[AETHER] Geometry: Supersonic Torus (CWT)'); log('[AETHER] Mach Stem Peak: 245 GPa (Sequential Piling)'); log('[AETHER] Sequence Delay: 10ps (Phase-Shifted)'); break; case 'SAS': log('[AETHER] Engaging Supersonic Acoustic Siphon (SAS)...'); log('[AETHER] Mode: Supersonic Cavitation-Work Recapture'); log('[AETHER] Efficiency: 94.2% (Mach-Stem Shunt)'); log('[AETHER] Destination: SCF Breeder Cloud (The Mass)'); break; case 'DAC12': log('[AETHER] Initializing DAC-12 Array Profile...'); log('[AETHER] Geometry: Dodecahedral (12 Symmetrical Faces)'); log('[AETHER] Force Divergence: < 0.001% (Scalar Focus)'); break; case 'LONSDALEITE': log('[AETHER] Analyzing Lonsdaleite Cycle...'); log('[AETHER] Phase: Transient Hexagonal Diamond (LPT)'); log('[AETHER] Role: Inertial Squeeze Anvil'); break; case 'SOLITON': log('[AETHER] Initializing Soliton String Chemistry...'); log('[AETHER] State: Metallic Xenon-Carbon Plasma (XACS)'); log('[AETHER] Conductivity: 1e4 S/cm (MIT Active)'); log('[AETHER] Ionization: alpha = 0.85 (Focus-Induced)'); break; case 'WORLDBUILD': log('[AETHER] --- WORLDBUILDING DISCLAIMER ---', 'warn'); log('[AETHER] The SAS/CWT/Lonsdaleite mechanics are HIGH-FIDELITY CONCEPTUAL ONLY.'); log('[AETHER] Intended Role: Speculative Narrative Modeling.'); log('[AETHER] Context: Toy Model Physics.'); break; case 'OMNI_BAL': log('[AETHER] Recalibrating manifold...'); setTimeout(() => log('[AETHER] Stability lock active.'), 1000); break; case 'VRAM_FLUSH': log('[WARNING] Initiating VRAM_FLUSH...', 'warn'); setTimeout(() => log('[AETHER] VRAM cleared.'), 500); break; case 'STARK_PROVE': log('[AETHER] Proof: sha3-' + Math.random().toString(16).slice(2)); break; case 'HELP': log('Commands: MANIFEST, CHASE, SAS, DAC12, LONSDALEITE, SOLITON, WORLDBUILD, WOLFRAM , ATOMIC , OMNI_BAL, VRAM_FLUSH, THERMO, STARK_PROVE, MIMO, CLEAR, HELP'); break; case 'CLEAR': terminal.innerHTML = ''; break; default: if (cmd) log('[!] Unknown command: ' + cmd, 'err'); } } setTimeout(() => { log(`[+] Track initialized: ${CURRENT_MANIFEST}`); log('[+] entropic floor detected at 0.500'); log('[+] STARK verification complete.'); }, 500);