"""Integracja: pełny horoskop (pozycje + osie + domy) przez silnik (LOG-01+LOG-05). Waliduje względem astro.com dla horoskopu referencyjnego. """ import pytest from app.engine import houses as H from app.engine.chart import build_chart def test_chart_angles_match_reference(own_engine, reference_moment): chart = build_chart(own_engine, reference_moment, "whole_sign") assert chart["angles"]["Asc"]["sign"] == "Cancer" assert chart["angles"]["MC"]["sign"] == "Pisces" def test_chart_house_assignments_match_reference(own_engine, reference_moment): chart = build_chart(own_engine, reference_moment, "whole_sign") by = {p["name"]: p for p in chart["positions"]} expected = {"Sun": 11, "Moon": 11, "Mercury": 10, "Venus": 10, "Mars": 5, "Jupiter": 7, "Saturn": 5, "Uranus": 6, "Neptune": 7, "Pluto": 5} for name, house in expected.items(): assert by[name]["house"] == house, f"{name}: dom {by[name]['house']} != {house}" def test_house_systems_available(own_engine, reference_moment): for system in ("whole_sign", "equal", "porphyry"): chart = build_chart(own_engine, reference_moment, system) assert chart["house_system"] == system assert len(chart["cusps"]) == 12 # ── wiele systemów domów naraz (PRE-05/LOG-05) ── def test_multiple_house_systems_side_by_side(own_engine, reference_moment): """Prymarny zostaje w cusps/house_system; `house_systems` niesie pełen zestaw do porównania, z prymarnym NA POCZĄTKU i bez duplikatów.""" chart = build_chart(own_engine, reference_moment, "whole_sign", house_systems=["equal", "porphyry", "whole_sign"]) assert chart["house_system"] == "whole_sign" # prymarny bez zmian assert [h["system"] for h in chart["house_systems"]] == ["whole_sign", "equal", "porphyry"] for h in chart["house_systems"]: assert len(h["cusps"]) == 12 def test_single_system_has_no_comparison_block(own_engine, reference_moment): """Bez dodatkowych systemów nie zaśmiecamy wyniku.""" assert "house_systems" not in build_chart(own_engine, reference_moment, "whole_sign") def test_object_gets_a_house_in_every_system(own_engine, reference_moment): """Sedno porównania: każdy obiekt ma dom w KAŻDYM systemie, a prymarny jest spójny z polem `.house`.""" chart = build_chart(own_engine, reference_moment, "whole_sign", house_systems=["porphyry"]) sun = next(p for p in chart["positions"] if p["name"] == "Sun") assert set(sun["houses"]) == {"whole_sign", "porphyry"} assert sun["houses"]["whole_sign"] == sun["house"] def test_primary_always_first_even_if_not_listed(own_engine, reference_moment): chart = build_chart(own_engine, reference_moment, "equal", house_systems=["porphyry"]) systems = [h["system"] for h in chart["house_systems"]] assert systems[0] == "equal" and "porphyry" in systems def test_unknown_extra_system_is_ignored(own_engine, reference_moment): """Nieznana nazwa systemu jest po prostu pomijana, nie wywala horoskopu. (Placidus był tu kiedyś przykładem systemu nieobsługiwanego — od Etapu 2 jest liczony, więc przykładem musi być nazwa, której naprawdę nie znamy.)""" chart = build_chart(own_engine, reference_moment, "whole_sign", house_systems=["nie-ma-takiego-systemu", "equal"]) assert [h["system"] for h in chart["house_systems"]] == ["whole_sign", "equal"] @pytest.mark.parametrize("system", H.SYSTEMS) def test_every_advertised_system_builds_a_chart(own_engine, reference_moment, system): """Każdy system z houses.SYSTEMS musi przejść przez build_chart. Pilnuje, żeby rozszerzenie SYSTEMS bez przepięcia chart.py nie dało 500 przy wyborze systemu, który jest na liście, ale nie w użytej funkcji.""" chart = build_chart(own_engine, reference_moment, system) assert chart["house_system"] == system assert len(chart["cusps"]) == 12 assert all(1 <= p["house"] <= 12 for p in chart["positions"]) def test_multiple_systems_side_by_side_cover_all(own_engine, reference_moment): chart = build_chart(own_engine, reference_moment, H.WHOLE_SIGN, house_systems=list(H.SYSTEMS)) blocks = chart["house_systems"] assert blocks[0]["system"] == H.WHOLE_SIGN # prymarny zawsze pierwszy assert {b["system"] for b in blocks} == set(H.SYSTEMS) for p in chart["positions"]: assert set(p["houses"]) == set(H.SYSTEMS)