"""Testy aspektów (LOG-06) — czysta matematyka.""" from app.engine.aspects import RIGID_PAIRS, find_aspects, find_cross_aspects, separation # ── synastria: aspekty MIĘDZY dwoma horoskopami (PRE-04) ── def test_cross_aspects_between_two_charts(): a = [{"name": "Sun", "decimal": 10.0}, {"name": "Moon", "decimal": 100.0}] b = [{"name": "Sun", "decimal": 12.0}, {"name": "Mars", "decimal": 70.0}] pairs = {(c["obj1"], c["obj2"], c["aspect"]) for c in find_cross_aspects(a, b)} assert ("Sun", "Sun", "conjunction") in pairs # A.Słońce ↔ B.Słońce (2°) assert ("Sun", "Mars", "sextile") in pairs # A.Słońce(10) ↔ B.Mars(70) = 60° def test_cross_aspect_obj1_is_person_a_obj2_person_b(): a = [{"name": "Venus", "decimal": 10.0}] b = [{"name": "Mars", "decimal": 12.0}] c = find_cross_aspects(a, b)[0] assert c["obj1"] == "Venus" and c["obj2"] == "Mars" def test_cross_aspects_do_not_apply_rigid_pair_filter(): """NN osoby A vs SN osoby B to REALNY aspekt między ludźmi — nie wycinamy go jak pary sztywnej w jednym horoskopie.""" a = [{"name": "North Node", "decimal": 10.0}] b = [{"name": "South Node", "decimal": 12.0}] assert find_cross_aspects(a, b) # niepuste def test_cross_aspects_no_applying_flag(): """Dwa natale — brak wspólnego czasu, więc bez applying/separating.""" a = [{"name": "Sun", "decimal": 10.0, "speed": 1.0}] b = [{"name": "Moon", "decimal": 12.0, "speed": 13.0}] assert "as" not in find_cross_aspects(a, b)[0] # ── konfigurowalne aspekty i orby (PRE-06) ── def test_minor_aspects_only_with_flag(): """Domyślnie tylko główne; `minor=True` dokłada poboczne (30/45/150°).""" pos = [{"name": "A", "decimal": 10.0}, {"name": "B", "decimal": 40.0}] # 30° = półsekstyl assert find_aspects(pos) == [] # główne: brak assert [a["aspect"] for a in find_aspects(pos, minor=True)] == ["semisextile"] def test_orb_is_configurable(): """Węższy orb odsiewa aspekt, który szerszy łapie.""" pos = [{"name": "A", "decimal": 10.0}, {"name": "B", "decimal": 78.0}] # 68° = sextile dev 8° assert find_aspects(pos, orb=5.0) == [] assert [a["aspect"] for a in find_aspects(pos, orb=10.0)] == ["sextile"] def test_luminary_bonus_widens_orb_for_lights(): """Bonus dolicza orb tylko gdy w parze jest Słońce/Księżyc.""" lights = [{"name": "Sun", "decimal": 10.0}, {"name": "Mars", "decimal": 79.0}] # dev 9° od sextile assert find_aspects(lights, orb=8.0, luminary_bonus=0.0) == [] # 9 > 8 assert [a["aspect"] for a in find_aspects(lights, orb=8.0, luminary_bonus=2.0)] == ["sextile"] # 9 < 10 plain = [{"name": "Venus", "decimal": 10.0}, {"name": "Mars", "decimal": 79.0}] assert find_aspects(plain, orb=8.0, luminary_bonus=2.0) == [] # brak światła → bez bonusu def test_separation_wraparound(): assert separation(10, 350) == 20 assert separation(0, 180) == 180 assert separation(0, 90) == 90 def test_conjunction_and_opposition(): pos = [ {"name": "Sun", "decimal": 10.0}, {"name": "Moon", "decimal": 12.0}, # 2° od Słońca -> koniunkcja {"name": "Mars", "decimal": 190.0}, # 180° od Słońca -> opozycja ] pairs = {(a["obj1"], a["obj2"], a["aspect"]) for a in find_aspects(pos)} assert ("Sun", "Moon", "conjunction") in pairs assert ("Sun", "Mars", "opposition") in pairs def test_orb_limit_excludes_wide(): pos = [{"name": "Mercury", "decimal": 0.0}, {"name": "Venus", "decimal": 100.0}] assert find_aspects(pos, orb=8.0, luminary_bonus=0.0) == [] def test_luminary_bonus_widens_orb(): # 99.5° -> 9.5° od kwadratury; z bonusem luminarza (8+2) mieści się pos = [{"name": "Sun", "decimal": 0.0}, {"name": "Saturn", "decimal": 99.5}] assert any(a["aspect"] == "square" for a in find_aspects(pos)) def test_one_aspect_per_pair(): pos = [{"name": "Sun", "decimal": 0.0}, {"name": "Moon", "decimal": 2.0}] assert len(find_aspects(pos)) == 1 def test_applying_when_faster_body_catches_up(): # Księżyc 5° za Słońcem, szybszy -> koniunkcja aplikacyjna pos = [ {"name": "Sun", "decimal": 40.0, "speed": 0.96}, {"name": "Moon", "decimal": 35.0, "speed": 13.0}, ] a = find_aspects(pos)[0] assert a["applying"] is True and a["as"] == "A" def test_separating_when_moving_apart(): # Księżyc 5° przed Słońcem i szybszy -> koniunkcja separacyjna pos = [ {"name": "Sun", "decimal": 40.0, "speed": 0.96}, {"name": "Moon", "decimal": 45.0, "speed": 13.0}, ] a = find_aspects(pos)[0] assert a["applying"] is False and a["as"] == "S" def test_rigid_pair_nodes_not_reported(): # SN = NN + 180° z definicji — trywialna opozycja, nie aspekt pos = [ {"name": "North Node", "decimal": 42.0, "speed": -0.053}, {"name": "South Node", "decimal": 222.0, "speed": -0.053}, {"name": "Sun", "decimal": 42.5, "speed": 0.96}, ] pairs = {frozenset((a["obj1"], a["obj2"])) for a in find_aspects(pos)} assert frozenset({"North Node", "South Node"}) not in pairs # aspekty węzłów do innych obiektów zostają nietknięte assert frozenset({"Sun", "North Node"}) in pairs assert frozenset({"Sun", "South Node"}) in pairs def test_no_rigid_pairs_in_real_chart(own_engine, reference_moment): from app.engine.chart import build_chart chart = build_chart(own_engine, reference_moment) found = [a for a in chart["aspects"] if frozenset((a["obj1"], a["obj2"])) in RIGID_PAIRS] assert not found, f"trywialne aspekty par sztywnych w horoskopie: {found}" def test_no_as_flag_without_speeds(): pos = [{"name": "Sun", "decimal": 0.0}, {"name": "Moon", "decimal": 2.0}] assert "as" not in find_aspects(pos)[0] # Referencja A/S z notes3 (astro-seek) dla horoskopu 30.04.1984 07:35 UT, Warszawa. REFERENCE_AS = { ("Sun", "Moon", "conjunction"): "A", ("Sun", "Jupiter", "trine"): "A", ("Sun", "Saturn", "opposition"): "A", ("Sun", "Neptune", "trine"): "S", ("Sun", "Pluto", "opposition"): "S", ("Moon", "Mercury", "conjunction"): "S", ("Moon", "Venus", "conjunction"): "S", ("Moon", "Neptune", "trine"): "A", ("Moon", "Pluto", "opposition"): "S", ("Mercury", "Venus", "conjunction"): "S", ("Mercury", "Neptune", "trine"): "S", ("Mercury", "Pluto", "opposition"): "S", ("Venus", "Neptune", "trine"): "A", ("Venus", "Pluto", "opposition"): "A", ("Jupiter", "Saturn", "sextile"): "A", ("Neptune", "Pluto", "sextile"): "S", } def test_applying_separating_matches_astroseek_reference(own_engine, reference_moment): from app.engine.chart import build_chart chart = build_chart(own_engine, reference_moment) got = {(a["obj1"], a["obj2"], a["aspect"]): a.get("as") for a in chart["aspects"]} mismatches = {k: (got.get(k), v) for k, v in REFERENCE_AS.items() if got.get(k) != v} assert not mismatches, f"rozbieżności A/S vs astro-seek: {mismatches}"