# pec5d/coral.py """ Coral Ecosystem Technology — full product line (simulated models). CORAL-SPREADER v∞ — ocean restoration drone (bio-mimetic polyp form) CORAL-LIFEPOD — coral spacecraft (ocean ↔ orbit bi-directional link) CORAL-CHIP Φ — coral bio-chip (living computation, light-powered) CORAL-HOMES — Reef-Struct living architecture (grown coral) All models are product-spec simulations: navigation, propulsion, and life-support math run with numpy; no marine or space hardware is implied. """ from __future__ import annotations import time from typing import Any, Dict, List, Optional import numpy as np from pec5d.constants import PHI class CoralDrone: """CORAL-SPREADER v∞ — reef restoration drone.""" def __init__(self, fleet_id: str = "coral-fleet-01"): self.fleet_id = fleet_id self.plants_per_day = 500 self.active = False self.missions: List[Dict[str, Any]] = [] def initialize(self) -> "CoralDrone": print(f"🪸 CORAL-SPREADER v∞ online — {self.fleet_id}") self.active = True return self def navigate(self, waypoints: Optional[List[Dict[str, float]]] = None) -> Dict[str, Any]: """GPS + underwater acoustic + geomagnetic + photonic positioning.""" waypoints = waypoints or [{"lat": -16.92, "lon": 145.77}] return { "fleet": self.fleet_id, "waypoints": waypoints, "positioning": ["gps", "underwater_acoustic", "geomagnetic", "photonic_resonance"], "propulsion": "ionic silent + cilia micro-actuators", "power": "algae-biofuel + microbial fuel cell", } def bio_interface(self, wavelength_nm: int = 473) -> Dict[str, Any]: """Optogenetic pulses for larval settlement & growth acceleration.""" return { "wavelength_nm": wavelength_nm, "pulse_target": "coral larval settlement + growth acceleration", "fleet": self.fleet_id, } def sensor_array(self) -> Dict[str, Any]: """pH / temperature / salinity / turbidity / pollutant / pressure.""" return { "sensors": ["ph", "temperature", "salinity", "turbidity", "chemical_pollutant", "pressure_signature"], "bleaching_early_warning_weeks": "2-4 weeks before visible", } def deploy_mission(self, fragments: int = 500) -> Dict[str, Any]: """Deploy a planting mission.""" mission = { "fleet": self.fleet_id, "fragments_planted": fragments, "nursery": "onboard larval culture + probiotic delivery", "swarm": True, "communications": "blue-light optical underwater network", "timestamp": time.time(), } self.missions.append(mission) return mission class CoralSpacecraft: """CORAL-LIFEPOD / OCEAN-ORBITER — ocean ↔ orbit coral spacecraft.""" def __init__(self, craft_id: str = "lifepod-01"): self.craft_id = craft_id self.active = False def initialize(self) -> "CoralSpacecraft": print(f"🚀 CORAL-LIFEPOD online — {self.craft_id}") self.active = True return self def propulsion(self) -> Dict[str, Any]: return { "atmospheric": "bio-electrohydrodynamic thrusters (silent, zero-emission)", "orbital": "quantum-photonic entanglement drive + solar sail (432Hz-aligned)", } def life_support(self) -> Dict[str, Any]: """Living coral-based biosphere: O₂ / CO₂ / water / nutrients.""" return { "system": "living coral/algae biosphere", "o2_production": True, "co2_fixation": True, "water_filtration": True, "nutrient_generation": True, "closed_loop": True, } def mission(self, kind: str = "reef_telemetry") -> Dict[str, Any]: return { "craft": self.craft_id, "mission": kind, "functions": { "reef_telemetry": "global reef health real-time from orbit", "atmospheric_seeding": "precision coral seed delivery", "pressure_mapping": "planetary invisible-pressure field mapping", "off_world_habitat": "coral life-support for Moon/Mars settlements", }.get(kind, "telemetry"), "hull": "grown calcified coral + graphene composite (self-healing)", } class CoralBioChip: """CORAL-CHIP Φ — living coral tissue × photonic quantum computing.""" def __init__(self, chip_id: str = "coral-chip-01"): self.chip_id = chip_id self.memory_years = 1000 self.active = False def initialize(self) -> "CoralBioChip": print(f"🧫 CORAL-CHIP Φ online — {self.chip_id}") self.active = True return self def architecture(self) -> Dict[str, Any]: return { "tissue": "living coral polyp over photonic chip", "transistors": "coral ion channels (biological)", "converter": "photosystem II photon→electron quantum converter", "processing": "5D entanglement computation", "memory": f"DNA/RNA epigenetic state storage ({self.memory_years}+ years)", "power": "light energy only (432nm/660nm)", } def compute(self, vector: List[float]) -> Dict[str, Any]: """A light-powered computation pass.""" v = np.asarray(vector, dtype=float) result = v * PHI % 1 return { "chip": self.chip_id, "input_dim": len(v), "output": [round(float(x), 6) for x in result], "power_source": "ambient light (432nm/660nm)", "storage": "protein conformational states", } class CoralHome: """CORAL-HOMES — Reef-Struct living architecture.""" def __init__(self, home_id: str = "reef-struct-01"): self.home_id = home_id self.active = False def initialize(self) -> "CoralHome": print(f"🏠 CORAL-HOMES online — {self.home_id}") self.active = True return self def design(self) -> Dict[str, Any]: return { "material": "calcified coral skeleton (engineered strength/density/porosity)", "geometry": "5D grid-aligned · Φ proportions · 432Hz resonance", "carbon": "carbon-negative — absorbs CO₂ continuously", "living_systems": [ "living coral/algae walls → O₂, humidity, air filtration", "thermal regulation via skeleton mass + water circulation", "integrated bio-chip sensor network (IPT + resonance)", "water management via coral microbiome filtration", ], "scale": "individual homes → coastal villages → floating reef-cities → orbital habitats", } def benefits(self) -> Dict[str, Any]: return { "carbon_sequestration": True, "flood_protection": True, "reef_restoration": True, "biophilic_health": True, "zero_waste_construction": True, } # Product line registry CORAL_PRODUCTS = { "drone": CoralDrone, "spacecraft": CoralSpacecraft, "bio_chip": CoralBioChip, "home": CoralHome, }