from scripts.shadbala import ( build_shadbala_context, calc_dig_bala_precise, calc_drik_bala_precise, calc_kala_bala_precise, calc_chesta_bala_precise, calc_sthana_bala_precise, classify_drik_planets, ) PLANET_LONGITUDES = { "Sun": 312.51819523181405, "Moon": 344.51168181221095, "Mars": 5.862334338243072, "Mercury": 291.12589362817465, "Jupiter": 87.27055150216494, "Venus": 267.94211928370015, "Saturn": 207.92738390514674, } PYJHORA_DIG = {"Sun": 24.81, "Moon": 95.48, "Mars": 77.41, "Mercury": 12.64, "Jupiter": 80.60, "Venus": 69.95, "Saturn": 19.62} PYJHORA_DRIK = {"Sun": 1.74, "Moon": 20.06, "Mars": 13.49, "Mercury": -10.63, "Jupiter": 6.89, "Venus": -2.75, "Saturn": 9.49} PYJHORA_STHANA = {"Sun": 217.09, "Moon": 246.34, "Mars": 198.63, "Mercury": 167.96, "Jupiter": 201.80, "Venus": 154.06, "Saturn": 218.61} PYJHORA_KALA = {"Sun": 140.99, "Moon": 149.58, "Mars": 127.93, "Mercury": 121.78, "Jupiter": 199.31, "Venus": 113.44, "Saturn": 136.77} def _planets() -> dict: return { planet: { "degree": longitude, "sign": ["Aries", "Taurus", "Gemini", "Cancer", "Leo", "Virgo", "Libra", "Scorpio", "Sagittarius", "Capricorn", "Aquarius", "Pisces"][int(longitude // 30)], } for planet, longitude in PLANET_LONGITUDES.items() } def test_precise_dig_bala_matches_pyjhora_same_chart() -> None: context = build_shadbala_context(2435163.6354166665, 37.7749, -122.4194, "lahiri", -8.0) for planet, longitude in PLANET_LONGITUDES.items(): assert calc_dig_bala_precise(planet, longitude, context["house_midpoints"]) == PYJHORA_DIG[planet] def test_drik_classification_matches_pyjhora_same_chart() -> None: benefics, malefics = classify_drik_planets(_planets()) assert benefics == {"Moon", "Mercury", "Jupiter", "Venus"} assert malefics == {"Sun", "Mars", "Saturn"} def test_precise_drik_bala_matches_pyjhora_same_chart() -> None: planets = _planets() for planet, expected in PYJHORA_DRIK.items(): assert abs(calc_drik_bala_precise(planet, planets) - expected) <= 0.02 def test_precise_sthana_bala_matches_pyjhora_same_chart() -> None: planets = _planets() houses = {"Sun": 7, "Moon": 8, "Mars": 9, "Mercury": 6, "Jupiter": 11, "Venus": 5, "Saturn": 3} for planet, expected in PYJHORA_STHANA.items(): assert calc_sthana_bala_precise(planet, planets, houses[planet])["total"] == expected def test_precise_kala_bala_matches_pyjhora_same_chart() -> None: planets = _planets() context = build_shadbala_context(2435163.6354166665, 37.7749, -122.4194, "lahiri", -8.0) assert abs(context["sunrise_hour"] - 6.886306) < 0.00001 assert abs(context["sunset_hour"] - 17.890427) < 0.00001 for planet, expected in PYJHORA_KALA.items(): assert calc_kala_bala_precise(planet, planets, context)["total"] == expected def test_precise_chesta_uses_classical_bounded_variant() -> None: planets = _planets() context = build_shadbala_context(2435163.6354166665, 37.7749, -122.4194, "lahiri", -8.0) kala = {planet: calc_kala_bala_precise(planet, planets, context) for planet in planets} result = {planet: calc_chesta_bala_precise(planet, planets, kala[planet], context) for planet in planets} assert result["Sun"] == kala["Sun"]["ayana"] assert result["Moon"] == kala["Moon"]["paksha"] for planet in ("Mars", "Mercury", "Jupiter", "Venus", "Saturn"): assert 0.0 <= result[planet] <= 60.0 vedastro = {"Mars": 21.7377, "Mercury": 47.5107, "Jupiter": 46.0549, "Venus": 30.8469, "Saturn": 39.4390} tolerances = {"Mars": 1.0, "Mercury": 2.0, "Jupiter": 1.0, "Venus": 2.0, "Saturn": 3.5} for planet, expected in vedastro.items(): assert abs(result[planet] - expected) <= tolerances[planet]