Compare commits
4 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 2dbd3410e9 | |||
| ca458fd741 | |||
| b013831492 | |||
| d14a77360a |
@@ -8,6 +8,9 @@ i nie w bazie.
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- `POST /api/query` → `QueryRequest` → `QueryResponse`
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- `POST /chart/positions` → `{when_utc, lat, lon, house_system?}` → pełny horoskop: pozycje (LOG-01) + osie i domy (LOG-05) + aspekty główne z applying/separating (LOG-06) + opcjonalnie stacje planet (`stations:true`, LOG-03). Obiekty: 10 planet + mean NN/SN/Lilith (LOG-02). `house_system`: `whole_sign` (dom.) / `equal` / `porphyry`.
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- `POST /chart/report` → `{when_utc, lat, lon, limit?}` → wynik obliczeń wyszukany w bazie: fasety sygnifikatorów **w znaku / w domu / w aspekcie**, z rozwinięciem skrótów, odsiewaniem duplikatów (ten sam sygnifikator i opis), rankingiem siły (LOG-21) oraz opcją group (grupowanie identycznych opisów)
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- `POST /chart/profections` → `{when_utc, lat, lon, start_age?, count?}` → profekcje roczne: wiek, profektowany Asc, Władca Roku (+MC/Su/Mo) (LOG-10)
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- `POST /chart/return` → `{when_utc, lat, lon, kind, around?}` → Solar/Lunar Return: moment powrotu + pełny horoskop na ten moment (LOG-12)
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- `POST /chart/timeline` → `{when_utc, lat, lon, from_date, to_date, techniques?}` → zbiorcza oś czasu: profekcje + Solar Return + dyrekcje solar-arc, posortowane (technique | significator | start | exact | end) (LOG-14)
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- `POST /chart/compare` → jak wyżej → raport różnic dwóch silników (LOG-26; wymaga silnika B)
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- `GET /health` (sprawdza też warstwę bazodanową)
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@@ -0,0 +1,70 @@
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"""Profekcje roczne (LOG-10) — hellenistyczna technika time-lord.
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Zasada (Whole Sign): co każde urodziny profektowany Ascendent przeskakuje o jeden
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znak do przodu (wiek mod 12). Władca Roku (Lord of Year) = władca domicylowy
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znaku profektowanego Asc. Profektować można każdy punkt natalny (MC, Słońce…) —
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wszystkie przeskakują o tyle samo znaków.
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Referencja: tabela profekcji w notes3 (astro-seek) dla horoskopu 30.04.1984
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(wiek 0: Can/Moon, 1: Leo/Sun, …, 42: Cap/Saturn).
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"""
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from __future__ import annotations
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from datetime import datetime
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from app.engine.formats import SIGNS, sign_index
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# władcy domicylowi (tradycyjni) — zgodni z tabelą referencyjną notes3
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DOMICILE_RULERS = {
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"Aries": "Mars", "Taurus": "Venus", "Gemini": "Mercury", "Cancer": "Moon",
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"Leo": "Sun", "Virgo": "Mercury", "Libra": "Venus", "Scorpio": "Mars",
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"Sagittarius": "Jupiter", "Capricorn": "Saturn", "Aquarius": "Saturn",
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"Pisces": "Jupiter",
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}
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def age_at(birth_utc: datetime, when_utc: datetime) -> int:
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"""Pełne lata między urodzeniem a danym momentem (wiek profekcyjny)."""
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age = when_utc.year - birth_utc.year
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if (when_utc.month, when_utc.day) < (birth_utc.month, birth_utc.day):
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age -= 1
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return max(age, 0)
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def profected_sign(natal_lon: float, age: int) -> str:
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"""Znak, do którego profektował punkt natalny po `age` latach."""
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return SIGNS[(sign_index(natal_lon) + age) % 12]
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def profection_rows(
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natal_points: dict[str, float],
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birth_utc: datetime,
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start_age: int,
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count: int,
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) -> list[dict]:
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"""Tabela profekcji dla zakresu lat życia.
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natal_points: nazwa -> natalna długość ekliptyczna (musi zawierać 'Asc').
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Każdy wiersz: wiek, data początku roku profekcyjnego (urodziny), znak
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profektowanego Asc, Władca Roku oraz profekcje pozostałych punktów.
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"""
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def _birthday(year: int) -> datetime:
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try:
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return birth_utc.replace(year=year)
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except ValueError: # 29 lutego w roku nieprzestępnym
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return birth_utc.replace(year=year, day=28)
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rows: list[dict] = []
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for age in range(start_age, start_age + count):
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asc_sign = profected_sign(natal_points["Asc"], age)
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row = {
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"age": age,
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"from": _birthday(birth_utc.year + age).strftime("%Y-%m-%d"),
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"profected_asc": asc_sign,
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"lord_of_year": DOMICILE_RULERS[asc_sign],
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}
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for name, lon in natal_points.items():
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if name != "Asc":
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row[name] = profected_sign(lon, age)
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rows.append(row)
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return rows
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@@ -0,0 +1,64 @@
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"""Solar / Lunar Return (LOG-12) — moment powrotu do pozycji natalnej.
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Solar Return (solariusz): moment, w którym Słońce wraca dokładnie do natalnej
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długości ekliptycznej (raz na rok, w okolicy urodzin). Lunar Return: to samo
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dla Księżyca (raz na ~27,3 dnia). Dwa warianty użycia (osobny horoskop vs
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tranzyt do natalu) obsługujemy zwracając pełny horoskop na znaleziony moment —
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interpretacja pozostaje po stronie technik wyżej.
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Metoda: podpisana różnica długości Δ = lon − natal (zawinięta do ±180°) rośnie
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monotonicznie i przechodzi przez 0 dokładnie w momencie powrotu. Skan dobowy
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wykrywa przejście −→+ (skok +180→−180 to artefakt zawinięcia — pomijany,
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warunek d_hi − d_lo < 180), potem bisekcja do ~sekundy.
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"""
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from __future__ import annotations
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from datetime import datetime, timedelta, timezone
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from app.engine.models import ChartMoment
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# szerokość okna skanu wokół `around` [dni]: solar kotwiczymy przy urodzinach,
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# lunar musi objąć cały okres syderyczny Księżyca (27,3 d)
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SCAN_WINDOW = {"solar": 6.0, "lunar": 15.0}
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def _lon_delta(engine, body: str, natal_lon: float, when: datetime) -> float:
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m = ChartMoment(when_utc=when)
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lon = engine.positions(m, [body])[0].longitude
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return ((lon - natal_lon + 180.0) % 360.0) - 180.0
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def find_return(
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engine, kind: str, natal_moment: ChartMoment, around: datetime
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) -> datetime | None:
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"""Moment powrotu (kind: 'solar'/'lunar') najbliższy dacie `around`."""
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body = "Sun" if kind == "solar" else "Moon"
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natal_lon = engine.positions(natal_moment, [body])[0].longitude
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if around.tzinfo is None:
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around = around.replace(tzinfo=timezone.utc)
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window = SCAN_WINDOW[kind]
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step = timedelta(days=1.0)
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t = around - timedelta(days=window)
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end = around + timedelta(days=window)
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candidates: list[datetime] = []
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d_prev = _lon_delta(engine, body, natal_lon, t)
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while t < end:
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t_next = t + step
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d_next = _lon_delta(engine, body, natal_lon, t_next)
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# prawdziwe przejście przez zero: − -> + bez skoku zawinięcia
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if d_prev < 0 <= d_next and (d_next - d_prev) < 180.0:
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lo, hi, d_lo = t, t_next, d_prev
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for _ in range(40): # bisekcja do ułamka sekundy
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mid = lo + (hi - lo) / 2
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if (_lon_delta(engine, body, natal_lon, mid) < 0) == (d_lo < 0):
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lo = mid
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else:
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hi = mid
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candidates.append(lo + (hi - lo) / 2)
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t, d_prev = t_next, d_next
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if not candidates:
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return None
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return min(candidates, key=lambda c: abs(c - around))
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@@ -0,0 +1,131 @@
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"""Zbiorcza tabela dat z technik (LOG-14).
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Spina w jedną, posortowaną oś czasu daty z kilku technik:
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- profekcje roczne (LOG-10) — rok życia,
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- Solar Return (LOG-12) — moment powrotu Słońca,
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- dyrekcje solar-arc — daty dokładnych aspektów kierowanych planet do punktów
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natalnych (wzorzec z notes3: „Profection planet | Aspect | Birth planet |
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Exact Date"). Klucz łuku konfigurowalny; domyślnie Naiboda (0°59'08"/rok).
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Każdy wiersz ma kształt z notes2: technique | significator | start | exact | end.
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"""
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from __future__ import annotations
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from datetime import date, datetime, timedelta, timezone
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from app.engine.aspects import MAJOR, PL_NAME
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from app.engine.profections import DOMICILE_RULERS, profected_sign
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from app.engine.returns import find_return
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NAIBOD_KEY = 0.9856472 # °/rok (0°59'08") — domyślny klucz solar-arc
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DAYS_PER_YEAR = 365.2422
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DIRECTED = ["Sun", "Moon", "Mercury", "Venus", "Mars",
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"Jupiter", "Saturn", "Uranus", "Neptune", "Pluto"]
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def _add_years(birth: datetime, years: float) -> datetime:
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return birth + timedelta(days=years * DAYS_PER_YEAR)
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def _row(technique, significator, start, exact, end) -> dict:
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def iso(x):
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return x.date().isoformat() if isinstance(x, datetime) else x
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return {"technique": technique, "significator": significator,
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"start": iso(start), "exact": iso(exact), "end": iso(end)}
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def solar_arc_directions(
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natal: dict[str, float], birth: datetime, lo: datetime, hi: datetime,
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key: float = NAIBOD_KEY, orb_years: float = 1.0,
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) -> list[dict]:
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"""Daty dyrekcji solar-arc w oknie [lo, hi].
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natal: nazwa punktu -> długość natalna (planety + Asc/MC). Kierowane są planety
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(DIRECTED), celem każdy punkt natalny. Aspekt dokładny gdy łuk = odległość
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kątowa (mod 360). Wiek = łuk/klucz; data = urodziny + wiek.
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"""
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out: list[dict] = []
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lo_age = (lo - birth).days / DAYS_PER_YEAR - orb_years
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hi_age = (hi - birth).days / DAYS_PER_YEAR + orb_years
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for p in DIRECTED:
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if p not in natal:
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continue
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for q, q_lon in natal.items():
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for asp, angle in MAJOR.items():
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for target in ({angle, (360.0 - angle) % 360.0}):
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arc = (q_lon + target - natal[p]) % 360.0
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age = arc / key
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if not (lo_age <= age <= hi_age) or (p == q and arc < 1e-6):
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continue
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exact = _add_years(birth, age)
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out.append(_row(
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"solar_arc",
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f"dyr. {p} {PL_NAME[asp]} {q}",
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_add_years(birth, age - orb_years),
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exact,
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_add_years(birth, age + orb_years),
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))
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return out
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def profection_events(natal_asc: float, birth: datetime, lo: datetime, hi: datetime) -> list[dict]:
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"""Lata profekcyjne (LOG-10) nachodzące na okno."""
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out: list[dict] = []
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for age in range((lo.year - birth.year) - 1, (hi.year - birth.year) + 1):
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if age < 0:
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continue
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try:
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start = birth.replace(year=birth.year + age)
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end = birth.replace(year=birth.year + age + 1)
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except ValueError: # 29 lutego
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start = birth.replace(year=birth.year + age, day=28)
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end = birth.replace(year=birth.year + age + 1, day=28)
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if end < lo or start > hi:
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continue
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sign = profected_sign(natal_asc, age)
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out.append(_row(
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"profection", f"Władca Roku: {DOMICILE_RULERS[sign]} (Asc {sign}, wiek {age})",
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start, start, end,
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))
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return out
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def solar_return_events(engine, natal_moment, birth: datetime, lo: datetime, hi: datetime) -> list[dict]:
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"""Solariusze w oknie (LOG-12) — jeden na rok."""
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out: list[dict] = []
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for year in range(lo.year, hi.year + 1):
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try:
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around = birth.replace(year=year)
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except ValueError:
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around = birth.replace(year=year, day=28)
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hit = find_return(engine, "solar", natal_moment, around)
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if hit and lo <= hit <= hi:
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out.append(_row("solar_return", "Solar Return", hit, hit, _add_years(hit, 1)))
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return out
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def _as_dt(d) -> datetime:
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if isinstance(d, datetime):
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return d if d.tzinfo else d.replace(tzinfo=timezone.utc)
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if isinstance(d, date):
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return datetime(d.year, d.month, d.day, tzinfo=timezone.utc)
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return datetime.fromisoformat(str(d)).replace(tzinfo=timezone.utc)
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def build_timeline(
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engine, natal_moment, natal_points: dict[str, float],
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from_d, to_d, techniques: list[str] | None = None,
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) -> list[dict]:
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"""Scala wybrane techniki w jedną oś czasu, posortowaną po dacie dokładnej."""
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lo, hi = _as_dt(from_d), _as_dt(to_d)
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birth = natal_moment.when_utc
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want = set(techniques or ["profection", "solar_return", "solar_arc"])
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events: list[dict] = []
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if "profection" in want:
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events += profection_events(natal_points["Asc"], birth, lo, hi)
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if "solar_return" in want:
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events += solar_return_events(engine, natal_moment, birth, lo, hi)
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if "solar_arc" in want:
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events += solar_arc_directions(natal_points, birth, lo, hi)
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events.sort(key=lambda e: e["exact"])
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return events
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@@ -117,6 +117,89 @@ def chart_report(req: ReportRequest) -> dict:
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return {"engine": engine.name, **report}
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class ProfectionsRequest(BaseModel):
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when_utc: datetime # moment urodzenia (UTC)
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lat: float = 0.0
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lon: float = 0.0
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start_age: int = 0
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count: int = 13 # domyślnie pełny cykl 12 lat + rok startowy
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@app.post("/chart/profections")
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def chart_profections(req: ProfectionsRequest) -> dict:
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"""Profekcje roczne (LOG-10): wiek, profektowany Asc, Władca Roku (+MC/Su/Mo)."""
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from app.engine import houses as H
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from app.engine.models import ChartMoment
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from app.engine.profections import profection_rows
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engine = get_engine()
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natal = ChartMoment(when_utc=req.when_utc, lat=req.lat, lon=req.lon)
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ramc, eps = engine.sidereal(natal)
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points = {
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"Asc": H.compute_asc(ramc, eps, natal.lat),
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"MC": H.compute_mc(ramc, eps),
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}
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for p in engine.positions(natal, ["Sun", "Moon"]):
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points[p.name] = p.longitude
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rows = profection_rows(points, req.when_utc, req.start_age, req.count)
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return {"engine": engine.name, "rows": rows}
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|
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class ReturnRequest(BaseModel):
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when_utc: datetime # moment urodzenia (UTC)
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lat: float = 0.0
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lon: float = 0.0
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kind: str = "solar" # solar | lunar
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around: datetime | None = None # data, wokół której szukać powrotu
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|
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|
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@app.post("/chart/return")
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def chart_return(req: ReturnRequest) -> dict:
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"""Solar/Lunar Return (LOG-12): moment powrotu + pełny horoskop na ten moment."""
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from app.engine.chart import build_chart
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from app.engine.models import ChartMoment
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from app.engine.returns import find_return
|
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|
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if req.kind not in ("solar", "lunar"):
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raise HTTPException(status_code=422, detail="kind: solar albo lunar")
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engine = get_engine()
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natal = ChartMoment(when_utc=req.when_utc, lat=req.lat, lon=req.lon)
|
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around = req.around or req.when_utc
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hit = find_return(engine, req.kind, natal, around)
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if hit is None:
|
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raise HTTPException(status_code=404, detail="nie znaleziono powrotu w oknie skanu")
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chart = build_chart(engine, ChartMoment(when_utc=hit, lat=req.lat, lon=req.lon))
|
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return {"engine": engine.name, "kind": req.kind,
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"return_utc": hit.isoformat(), **chart}
|
||||
|
||||
|
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class TimelineRequest(BaseModel):
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when_utc: datetime # moment urodzenia (UTC)
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lat: float = 0.0
|
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lon: float = 0.0
|
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from_date: str # zakres: YYYY-MM-DD
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to_date: str
|
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techniques: list[str] | None = None # profection | solar_return | solar_arc
|
||||
|
||||
|
||||
@app.post("/chart/timeline")
|
||||
def chart_timeline(req: TimelineRequest) -> dict:
|
||||
"""Zbiorcza oś czasu z technik (LOG-14): technique | significator | start | exact | end."""
|
||||
from app.engine import houses as H
|
||||
from app.engine.models import ChartMoment
|
||||
from app.engine.timeline import build_timeline
|
||||
|
||||
engine = get_engine()
|
||||
natal = ChartMoment(when_utc=req.when_utc, lat=req.lat, lon=req.lon)
|
||||
ramc, eps = engine.sidereal(natal)
|
||||
points = {"Asc": H.compute_asc(ramc, eps, natal.lat), "MC": H.compute_mc(ramc, eps)}
|
||||
for p in engine.positions(natal):
|
||||
points[p.name] = p.longitude
|
||||
events = build_timeline(engine, natal, points, req.from_date, req.to_date, req.techniques)
|
||||
return {"engine": engine.name, "from": req.from_date, "to": req.to_date,
|
||||
"count": len(events), "events": events}
|
||||
|
||||
|
||||
@app.get("/health")
|
||||
def health() -> dict:
|
||||
info = {"status": "ok", "layer": "logic"}
|
||||
|
||||
@@ -0,0 +1,46 @@
|
||||
"""Profekcje (LOG-10) — walidacja względem tabeli astro-seek z notes3."""
|
||||
import datetime as dt
|
||||
|
||||
from app.engine.profections import DOMICILE_RULERS, age_at, profected_sign, profection_rows
|
||||
|
||||
BIRTH = dt.datetime(1984, 4, 30, 7, 35, tzinfo=dt.timezone.utc)
|
||||
NATAL = {"Asc": 112.18, "MC": 352.59, "Sun": 40.14, "Moon": 30.55}
|
||||
|
||||
# wiek -> (profektowany Asc, Władca Roku) — tabela referencyjna notes3
|
||||
REFERENCE = {
|
||||
0: ("Cancer", "Moon"), 1: ("Leo", "Sun"), 2: ("Virgo", "Mercury"),
|
||||
3: ("Libra", "Venus"), 4: ("Scorpio", "Mars"), 5: ("Sagittarius", "Jupiter"),
|
||||
6: ("Capricorn", "Saturn"), 7: ("Aquarius", "Saturn"), 8: ("Pisces", "Jupiter"),
|
||||
9: ("Aries", "Mars"), 10: ("Taurus", "Venus"), 11: ("Gemini", "Mercury"),
|
||||
12: ("Cancer", "Moon"), 40: ("Scorpio", "Mars"), 41: ("Sagittarius", "Jupiter"),
|
||||
42: ("Capricorn", "Saturn"),
|
||||
}
|
||||
|
||||
|
||||
def test_profections_match_astroseek_table():
|
||||
rows = {r["age"]: r for r in profection_rows(NATAL, BIRTH, 0, 43)}
|
||||
for age, (asc, lord) in REFERENCE.items():
|
||||
assert rows[age]["profected_asc"] == asc, f"wiek {age}"
|
||||
assert rows[age]["lord_of_year"] == lord, f"wiek {age}"
|
||||
|
||||
|
||||
def test_profected_secondary_points_match_reference():
|
||||
rows = {r["age"]: r for r in profection_rows(NATAL, BIRTH, 0, 3)}
|
||||
# notes3: wiek 0 -> MC Pis, Sun Tau, Moon Tau; wiek 1 -> MC Ari, Sun Gem
|
||||
assert rows[0]["MC"] == "Pisces" and rows[0]["Sun"] == "Taurus"
|
||||
assert rows[1]["MC"] == "Aries" and rows[1]["Sun"] == "Gemini"
|
||||
|
||||
|
||||
def test_from_dates_are_birthdays():
|
||||
rows = profection_rows(NATAL, BIRTH, 40, 3)
|
||||
assert [r["from"] for r in rows] == ["2024-04-30", "2025-04-30", "2026-04-30"]
|
||||
|
||||
|
||||
def test_age_at_boundaries():
|
||||
assert age_at(BIRTH, dt.datetime(2026, 4, 29, tzinfo=dt.timezone.utc)) == 41
|
||||
assert age_at(BIRTH, dt.datetime(2026, 4, 30, tzinfo=dt.timezone.utc)) == 42
|
||||
|
||||
|
||||
def test_rulers_cover_all_signs():
|
||||
assert len(DOMICILE_RULERS) == 12
|
||||
assert profected_sign(112.18, 12) == "Cancer" # pełny cykl wraca
|
||||
@@ -0,0 +1,40 @@
|
||||
"""Solar / Lunar Return (LOG-12) — samospójność i sensowność dat."""
|
||||
import datetime as dt
|
||||
|
||||
import pytest
|
||||
|
||||
from app.engine.models import ChartMoment
|
||||
from app.engine.returns import find_return
|
||||
|
||||
|
||||
def _lon(engine, body, when):
|
||||
return engine.positions(ChartMoment(when_utc=when), [body])[0].longitude
|
||||
|
||||
|
||||
def _delta_arcmin(a, b):
|
||||
return abs(((a - b + 180.0) % 360.0) - 180.0) * 60.0
|
||||
|
||||
|
||||
def test_solar_return_hits_natal_sun(own_engine, reference_moment):
|
||||
natal_sun = _lon(own_engine, "Sun", reference_moment.when_utc)
|
||||
# solariusz na 42. urodziny (2026)
|
||||
hit = find_return(own_engine, "solar", reference_moment,
|
||||
dt.datetime(2026, 4, 30, tzinfo=dt.timezone.utc))
|
||||
assert hit is not None
|
||||
assert _delta_arcmin(_lon(own_engine, "Sun", hit), natal_sun) < 0.5
|
||||
assert hit.month == 4 and hit.year == 2026 # w okolicy urodzin
|
||||
|
||||
|
||||
def test_lunar_return_hits_natal_moon(own_engine, reference_moment):
|
||||
natal_moon = _lon(own_engine, "Moon", reference_moment.when_utc)
|
||||
hit = find_return(own_engine, "lunar", reference_moment,
|
||||
dt.datetime(1984, 5, 27, tzinfo=dt.timezone.utc))
|
||||
assert hit is not None
|
||||
assert _delta_arcmin(_lon(own_engine, "Moon", hit), natal_moon) < 2.0
|
||||
|
||||
|
||||
def test_solar_return_near_birth_is_close_to_birth(own_engine, reference_moment):
|
||||
# powrót szukany wokół samych urodzin = ~moment urodzenia
|
||||
hit = find_return(own_engine, "solar", reference_moment, reference_moment.when_utc)
|
||||
assert hit is not None
|
||||
assert abs(hit - reference_moment.when_utc) < dt.timedelta(days=1)
|
||||
@@ -0,0 +1,71 @@
|
||||
"""Zbiorcza oś czasu z technik (LOG-14)."""
|
||||
import datetime as dt
|
||||
|
||||
from app.engine.timeline import (
|
||||
NAIBOD_KEY,
|
||||
build_timeline,
|
||||
profection_events,
|
||||
solar_arc_directions,
|
||||
)
|
||||
|
||||
BIRTH = dt.datetime(1984, 4, 30, 7, 35, tzinfo=dt.timezone.utc)
|
||||
# natalne długości (z horoskopu referencyjnego)
|
||||
NATAL = {
|
||||
"Asc": 112.18, "MC": 352.59, "Sun": 40.14, "Moon": 30.55, "Mercury": 27.38,
|
||||
"Venus": 27.68, "Mars": 234.54, "Jupiter": 282.96, "Saturn": 223.31,
|
||||
"Uranus": 252.81, "Neptune": 271.22, "Pluto": 210.48,
|
||||
}
|
||||
|
||||
|
||||
def _win(y0, y1):
|
||||
return (dt.datetime(y0, 1, 1, tzinfo=dt.timezone.utc),
|
||||
dt.datetime(y1, 12, 31, tzinfo=dt.timezone.utc))
|
||||
|
||||
|
||||
def test_profection_events_in_window():
|
||||
lo, hi = _win(2024, 2026)
|
||||
rows = profection_events(NATAL["Asc"], BIRTH, lo, hi)
|
||||
# rok profekcyjny wiek 42 zaczyna się 30.04.2026 -> Asc Capricorn
|
||||
ages = [r["significator"] for r in rows]
|
||||
assert any("Asc Capricorn" in a and "wiek 42" in a for a in ages)
|
||||
|
||||
|
||||
def test_solar_arc_exact_matches_arc_over_key():
|
||||
lo, hi = _win(2020, 2030)
|
||||
rows = solar_arc_directions(NATAL, BIRTH, lo, hi, key=NAIBOD_KEY)
|
||||
assert rows, "brak dyrekcji w oknie"
|
||||
# dla każdej dyrekcji: łuk = (wiek * klucz), a data = urodziny + wiek -> spójne
|
||||
for r in rows[:5]:
|
||||
exact = dt.date.fromisoformat(r["exact"])
|
||||
age_years = (dt.datetime(exact.year, exact.month, exact.day, tzinfo=dt.timezone.utc)
|
||||
- BIRTH).days / 365.2422
|
||||
assert 36 <= age_years <= 47 # okno 2020-2030 = wiek ~36-46
|
||||
assert r["technique"] == "solar_arc" and "dyr." in r["significator"]
|
||||
|
||||
|
||||
def test_directed_sun_conjunct_natal_mc_date():
|
||||
# Sun natal 40.14 -> MC natal 352.59: łuk koniunkcji = (352.59-40.14)%360 = 312.45
|
||||
# to > lifespan przy Naibod (~317 lat) -> NIE powinno być w oknie życia
|
||||
lo, hi = _win(1984, 2084)
|
||||
rows = solar_arc_directions(NATAL, BIRTH, lo, hi)
|
||||
sun_mc = [r for r in rows if r["significator"] == "dyr. Sun koniunkcja MC"]
|
||||
assert not sun_mc # łuk 312° = poza życiem
|
||||
|
||||
|
||||
def test_build_timeline_sorted_and_merged():
|
||||
events = build_timeline(_FakeEngine(), _FakeNatal(), NATAL,
|
||||
"2025-01-01", "2027-01-01",
|
||||
techniques=["profection", "solar_arc"])
|
||||
assert events
|
||||
dates = [e["exact"] for e in events]
|
||||
assert dates == sorted(dates) # posortowane po dacie dokładnej
|
||||
techs = {e["technique"] for e in events}
|
||||
assert "profection" in techs and "solar_arc" in techs
|
||||
|
||||
|
||||
class _FakeNatal:
|
||||
when_utc = BIRTH
|
||||
|
||||
|
||||
class _FakeEngine:
|
||||
"""Silnik-atrapa — build_timeline z solar_return by go użył, tu go pomijamy."""
|
||||
Reference in New Issue
Block a user