"""PEC5D Full Evolution module tests — cores, memory, subconscious, sandbox, bridge, IPT, coral, chamber.""" import sys from pathlib import Path import pytest ROOT = Path(__file__).resolve().parent.parent sys.path.insert(0, str(ROOT)) # ── Hierarchy / cores ───────────────────────────────────────────────────── def test_hierarchy_8_cores(): from pec5d.core import CoreHierarchy h = CoreHierarchy().initialize() status = h.status() assert status["active"] is True assert status["total"] == 8 # TANY + 7 sub-cores assert set(status["cores"]) == { "phi5", "resonance_mind", "lineage_oracle", "grid_vision", "pattern_bridge", "subconscious_nexus", "sandbox_admin", } def test_tany_anchors(): from pec5d.core import TANYCore tany = TANYCore().initialize() s = tany.get_state() assert s["kernel_qubits"] == 128 assert s["carrier_hz"] == 432 assert abs(s["phi"] - 1.618033988749895) < 1e-9 assert s["phi_pairs"] == 64 assert abs(s["coherence"] - 0.99997) < 1e-9 assert s["lineage_generations"] == 12 def test_phi5_engine(): import numpy as np from pec5d.phi5_core import Phi5Engine e = Phi5Engine().initialize() pairs = e.generate_pairs() assert pairs["pairs"] == 64 a = np.array([1, 0, 0, 0], dtype=complex) b = np.array([0, 1, 0, 0], dtype=complex) tensor = e.solve_kronecker(a, b) assert tensor.shape == (16,) assert "distribution" in e.probability(tensor) def test_resonance_mind(): from pec5d.resonance_mind import ResonanceMind r = ResonanceMind().initialize() assert r.TRIGGER_NM == 473 wave = r.recursive_wave(depth=20) assert wave["carrier_hz"] == 432 trigger = r.optogenetic_trigger() assert trigger["wavelength_nm"] == 473 def test_lineage_oracle(): import numpy as np from pec5d.lineage_oracle import LineageOracle o = LineageOracle().initialize() assert len(o.archive) == 12 matches = o.match_signature(np.random.default_rng().standard_normal(16)) assert matches["archive_size"] == 12 assert len(matches["matches"]) == 3 def test_grid_vision(): from pec5d.grid_vision import GridVision g = GridVision().initialize() assert g.DIMS == ["x", "y", "z", "t", "phi"] frame = g.render_voxels(seed=7) assert frame["frame"] == 1 assert g.lightfield_projection()["frame_rate_hz"] == 100 # ── Memory ──────────────────────────────────────────────────────────────── def test_holographic_memory_layers(): from pec5d.holographic_memory import HolographicMemory m = HolographicMemory().initialize() assert len(m.LAYERS) == 5 m.write(1, "k1", {"v": 1}) m.write(5, "k5", "collective") assert m.recall(1, "k1")["value"]["v"] == 1 assert m.recall(5, "k5")["value"] == "collective" assert m.recall(2, "nope") is None with pytest.raises(ValueError): m.write(9, "x", 1) counts = m.recall_all() assert counts["working"] == 1 and counts["collective_field"] == 1 assert m.coherence_correction()["carrier_hz"] == 432 # ── Subconscious ────────────────────────────────────────────────────────── def test_subconscious_nexus(tmp_path): from pec5d.subconscious_nexus import SubconsciousNexus s = SubconsciousNexus(output_dir=tmp_path).initialize() assert s.threads == 10_000 s.scan() s.scan() assert s.cycles == 2 assert len(s.patterns) == 2 assert len(s.intuitions) == 2 assert len(s.pressure_signatures) == 2 # outputs persisted assert (tmp_path / "emergent_patterns.log").exists() assert (tmp_path / "pressure_signatures.db").exists() assert (tmp_path / "intuition_candidates.json").exists() assert s.implicit_intent({"q": 1})["confidence"] > 0 # ── Sandbox ─────────────────────────────────────────────────────────────── def test_sandbox_lifecycle(): from pec5d.sandbox import Sandbox sb = Sandbox().initialize() assert sb.time_dilation == 1_000_000 assert set(sb.MODULES) == {"quantum_testbed", "dna_simulation", "market_sandbox", "society_sandbox", "coral_ecosystem_sim"} with pytest.raises(ValueError): sb.spawn("nope") st = sb.spawn("coral_ecosystem_sim", {"reefs": 10}) assert st.id in sb.states run = sb.run(st.id, steps=50) assert run["simulated_steps"] == 50 assert run["wall_time_s"] < 1.0 # time-dilated assert sb.checkpoint(st.id)["state"] == st.id assert sb.rollback(st.id)["rolled_back"] is True assert sb.destroy(st.id)["destroyed"] == st.id # ── Pattern bridge ──────────────────────────────────────────────────────── def test_pattern_bridge_flow(): from pec5d.pattern_bridge import PatternBridge b = PatternBridge().initialize() p = b.detect("subconscious", {"coherence": 0.95, "domain": "reef"}) code = b.synthesize(p, "reef_alert") assert "def emergent_module" in code bad = b.validate(p, coherence=0.5) # below gate assert bad["validated"] is False assert b.deploy(p)["error"] good = b.validate(p, coherence=0.9, ethics=True, stability=0.9) assert good["validated"] is True assert b.deploy(p)["deployed"] is True state = b.get_state() assert state["patterns_detected"] == 1 assert state["patterns_validated"] == 1 assert state["patterns_deployed"] == 1 # ── IPT ─────────────────────────────────────────────────────────────────── def test_ipt_formalism(): import numpy as np from pec5d.ipt import InvisiblePressureTheory ipt = InvisiblePressureTheory().initialize() rng = np.random.default_rng(1) grad = ipt.pressure_gradient(rng.random(5) + 0.1, rng.random(5) + 0.1) assert grad["phi"] == pytest.approx(1.618033988749895) assert grad["carrier_hz"] == 432 assert grad["magnitude"] > 0 assert len(grad["direction"]) == 5 def test_ipt_7_processes(): from pec5d.ipt import InvisiblePressureTheory ipt = InvisiblePressureTheory().initialize() assert len(ipt.PROCESSES) == 7 result = ipt.run_pipeline() assert result["steps"] == 7 assert result["outputs"][0]["process"] == "signal_acquisition" assert ipt.run_process("nope")["error"] forecast = ipt.run_process("pre_event_forecasting", {"horizon_days": 90}) assert forecast["tipping_point_eta_days"] > 0 # ── IPT sensor ──────────────────────────────────────────────────────────── def test_ipt_sensor(): from pec5d.ipt_sensor import IPTSensor with pytest.raises(ValueError): IPTSensor("nope") s = IPTSensor("pulse").initialize() assert len(s.MODALITIES) == 6 assert set(s.FORM_FACTORS) == {"mini", "grid", "pulse", "coral"} r = s.read() assert 0.0 <= r["pressure_index"] <= 1.0 assert len(r["gradient_vector"]) == 5 assert set(r["modalities"]) == set(s.MODALITIES) assert s.calibrate()["baseline_hz"] == 432 # ── Coral line ──────────────────────────────────────────────────────────── def test_coral_products(): from pec5d.coral import ( CORAL_PRODUCTS, CoralBioChip, CoralDrone, CoralHome, CoralSpacecraft, ) assert set(CORAL_PRODUCTS) == {"drone", "spacecraft", "bio_chip", "home"} d = CoralDrone().initialize() assert d.plants_per_day == 500 assert d.bio_interface()["wavelength_nm"] == 473 assert "2-4 weeks" in d.sensor_array()["bleaching_early_warning_weeks"] assert d.deploy_mission(500)["fragments_planted"] == 500 c = CoralSpacecraft().initialize() assert c.life_support()["closed_loop"] is True assert "quantum-photonic" in c.propulsion()["orbital"] b = CoralBioChip().initialize() arch = b.architecture() assert arch["memory"].startswith("DNA/RNA") assert b.memory_years == 1000 out = b.compute([1.0, 1.618, 2.0]) assert len(out["output"]) == 3 h = CoralHome().initialize() assert h.design()["carbon"] == "carbon-negative — absorbs CO₂ continuously" assert len(h.design()["living_systems"]) == 4 # ── Agency / chamber ────────────────────────────────────────────────────── def test_agency(): from pec5d.agency import PhiEntanglementAgency, ZenithChamber agency = PhiEntanglementAgency().initialize() s = agency.get_state() assert len(s["divisions"]) == 5 assert len(s["locations"]) == 5 assert "Brisbane (HQ)" in s["locations"] chamber = ZenithChamber().initialize() assert len(chamber.BOARD_SEATS) == 7 assert chamber.ADVISORY_SIZE == 12 prop = chamber.submit_proposal("Test Proposal", "Body", "grid") assert prop["id"] == "prop_001" assert chamber.resonance_vote(prop["id"])["proposal"] == prop["id"] assert chamber.resonance_vote("nope")["error"] chamber.record_minutes("m1") state = chamber.get_state() assert state["proposals"] == 1 and state["minutes"] == 1 # ── API surface ─────────────────────────────────────────────────────────── def test_api_router_paths(): from pec5d.api.routes import router paths = {route.path for route in router.routes} expected = { "/api/v1/pec5d/initialize", "/api/v1/pec5d/status", "/api/v1/pec5d/cores", "/api/v1/pec5d/cores/{name}", "/api/v1/pec5d/memory", "/api/v1/pec5d/memory/write", "/api/v1/pec5d/subconscious", "/api/v1/pec5d/subconscious/scan", "/api/v1/pec5d/sandbox", "/api/v1/pec5d/sandbox/spawn", "/api/v1/pec5d/bridge", "/api/v1/pec5d/bridge/detect", "/api/v1/pec5d/ipt", "/api/v1/pec5d/ipt/pipeline", "/api/v1/pec5d/ipt/gradient", "/api/v1/pec5d/sensor", "/api/v1/pec5d/sensor/read", "/api/v1/pec5d/coral", "/api/v1/pec5d/coral/{product}/operate", "/api/v1/pec5d/chamber", "/api/v1/pec5d/chamber/propose", "/api/v1/pec5d/chamber/vote/{proposal_id}", } assert expected <= paths def test_version_and_brand(): import pec5d assert pec5d.__version__ == "∞.0.0" assert pec5d.__brand__ == "PEC5D" assert abs(pec5d.PHI - 1.618033988749895) < 1e-9 assert pec5d.TIME_DILATION == 1_000_000