55853336b5
完成P0核心差距修复:彻底重写calc_chara_dasha()和calc_chara_dasha_with_antardasha() - 旧算法:简化版12-planets_in_sign,仅24.17%匹配PyJHora - 新算法:完整KN Rao Method - 序列:从上升起,第9宫为偶数脚→逆向(对齐PyJHora _dhasa_progression_knrao_method) - 时长:基于宫主所在宫位,奇数脚顺数/偶数脚倒数,Exalted+1/Debilitated-1 - Antardasha:等分12份,序列偏移1位(PyJHora method=2) - 状态:partial → covered - 参考PyJHora AGPL算法翻译为MIT独立实现 - 参考jaimini-tropical MIT架构设计
538 lines
21 KiB
Python
538 lines
21 KiB
Python
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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"""
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Jaimini占星体系模块 v1.2
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Parashara传承中的Jaimini子系统
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支持:
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- Chara Karaka: 7/8个功能指示星(按度数排序)
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- Arudha Pada: A1-A12 + Upapada(UL),复用 dashaflow/jaimini-tropical 的 MIT 算法
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- Karakamsha: AK在Navamsa中的上升(灵魂方向)
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- Chara Dasha: 当前为简化 timing 实现,v6.0.9 后标注为 partial,不得单独作为高置信度应期依据
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- Special Lagnas: HL/GL/VL 简化计算(出生时间敏感,作为辅助)
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MIT复用来源:
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- dashaflow (adarshj322): Arudha/Upapada公式与例外规则
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- jaimini-tropical (tunanfang-pixel): Pada命名、Graha Pada与Jaimini特殊点结构
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"""
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from typing import Dict, List, Tuple, Optional
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import math
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SIGNS = ['Aries','Taurus','Gemini','Cancer','Leo','Virgo',
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'Libra','Scorpio','Sagittarius','Capricorn','Aquarius','Pisces']
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SIGN_LORDS = {'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','Pisces':'Jupiter'}
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# Chara Karaka 定义(7星制,排除Rahu)
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KARAKA_7 = {
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1: 'Atmakaraka', # AK - 灵魂指示星(度数最高)
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2: 'Amatyakaraka', # AmK - 事业/顾问
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3: 'Bhratrikaraka', # BK - 兄弟/勇气
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4: 'Matrikaraka', # MK - 母亲
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5: 'Putrakaraka', # PK - 子女
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6: 'Gnatikaraka', # GK - 敌人/障碍
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7: 'Darakaraka', # DK - 配偶(度数最低)
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}
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# 8星制(含Rahu,用绝对度数)
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KARAKA_8 = {
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1: 'Atmakaraka', 2: 'Amatyakaraka', 3: 'Bhratrikaraka', 4: 'Matrikaraka',
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5: 'Putrakaraka', 6: 'Gnatikaraka', 7: 'Darakaraka', 8: 'Pitrukaraka',
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}
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KARAKA_CN = {
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'Atmakaraka': '灵魂星AK', 'Amatyakaraka': '事业星AmK',
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'Bhratrikaraka': '兄弟星BK', 'Matrikaraka': '母亲星MK',
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'Putrakaraka': '子女星PK', 'Gnatikaraka': '障碍星GK',
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'Darakaraka': '配偶星DK', 'Pitrukaraka': '父亲星PiK',
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}
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KARAKA_DOMAINS = {
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'Atmakaraka': '灵魂使命、核心自我、人生最高目标',
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'Amatyakaraka': '事业方向、主要谋士、权力代理',
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'Bhratrikaraka': '兄弟姐妹、勇气、冒险精神',
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'Matrikaraka': '母亲、家庭根基、情感安全感',
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'Putrakaraka': '子女、创造力、学生、智能成果',
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'Gnatikaraka': '竞争对手、疾病、障碍、转化力量',
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'Darakaraka': '配偶特质、伴侣关系、婚姻质量',
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'Pitrukaraka': '父亲、祖先业力、传统传承',
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}
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ARUDHA_NAMES = {
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1: 'Arudha Lagna (AL)', 2: 'Dhana Pada (A2)', 3: 'Vikrama Pada (A3)',
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4: 'Sukha Pada (A4)', 5: 'Mantra Pada (A5)', 6: 'Roga Pada (A6)',
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7: 'Dara Pada (A7)', 8: 'Mrityu Pada (A8)', 9: 'Dharma Pada (A9)',
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10: 'Karma Pada (A10)', 11: 'Labha Pada (A11)', 12: 'Upapada (UL)',
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}
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def _sign_idx(sign_name: str) -> int:
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return SIGNS.index(sign_name) if sign_name in SIGNS else 0
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def _sign_name(sign_idx: int) -> str:
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return SIGNS[sign_idx % 12]
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def _house_count(from_idx: int, to_idx: int) -> int:
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"""从A星座顺数到B星座,含起点,返回1-12。"""
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return ((to_idx - from_idx) % 12) + 1
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def calc_chara_karaka_7(planet_degrees: Dict[str, float]) -> Dict:
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"""
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计算7星制Chara Karaka(度数最高→AK,最低→DK)
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参数: planet_degrees = {'Sun': 12.5, 'Moon': 8.3, ...}
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每个行星在星座内的度数(0-30)
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返回: {karaka_name: {'planet': str, 'degree': float, 'domain': str}}
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"""
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exclude = {'Rahu', 'Ketu'}
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planets = {k: v for k, v in planet_degrees.items() if k not in exclude}
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sorted_planets = sorted(planets.items(), key=lambda x: x[1], reverse=True)
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results = {}
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for rank, (pname, deg) in enumerate(sorted_planets, 1):
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if rank > 7:
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break
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karaka = KARAKA_7[rank]
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results[karaka] = {
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'planet': pname,
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'degree_in_sign': round(deg, 4),
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'rank': rank,
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'domain': KARAKA_DOMAINS.get(karaka, ''),
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'cn_name': KARAKA_CN.get(karaka, karaka),
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}
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ak = results.get('Atmakaraka', {})
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dk = results.get('Darakaraka', {})
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return {
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'karaka_table': results,
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'summary': {
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'AK': f"{ak.get('planet','?')} ({ak.get('degree_in_sign',0):.1f}°)",
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'DK': f"{dk.get('planet','?')} ({dk.get('degree_in_sign',0):.1f}°)",
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'AK_domain': ak.get('domain', ''),
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'DK_domain': dk.get('domain', ''),
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}
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}
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def calc_chara_karaka_8(planet_degrees: Dict[str, float]) -> Dict:
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"""计算8星制Chara Karaka(含Rahu,Ketu排除)。"""
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planets = {}
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for pname, deg in planet_degrees.items():
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if pname == 'Ketu':
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continue
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planets[pname] = deg
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sorted_planets = sorted(planets.items(), key=lambda x: x[1], reverse=True)
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results = {}
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for rank, (pname, deg) in enumerate(sorted_planets, 1):
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if rank > 8:
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break
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karaka = KARAKA_8[rank]
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results[karaka] = {
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'planet': pname,
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'degree_in_sign': round(deg, 4),
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'rank': rank,
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'domain': KARAKA_DOMAINS.get(karaka, ''),
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'cn_name': KARAKA_CN.get(karaka, karaka),
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}
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return {'karaka_table_8': results}
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def calc_arudha_pada_for_house(house_sign_idx: int, planet_longitudes: Dict[str, float]) -> Optional[Dict]:
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"""
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计算单宫Arudha Pada。
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公式复用 dashaflow / jaimini-tropical MIT 实现:
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1. 从目标宫星座数到宫主所在星座;
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2. 从宫主所在星座再数同样距离;
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3. 若落回本宫或本宫第七,则改取本宫第十。
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"""
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house_sign = _sign_name(house_sign_idx)
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lord = SIGN_LORDS[house_sign]
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if lord not in planet_longitudes:
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return None
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lord_sign_idx = int(planet_longitudes[lord] / 30) % 12
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distance = _house_count(house_sign_idx, lord_sign_idx)
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pada_idx = (lord_sign_idx + distance - 1) % 12
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exception_triggered = False
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if pada_idx == house_sign_idx or pada_idx == (house_sign_idx + 6) % 12:
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pada_idx = (house_sign_idx + 9) % 12
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exception_triggered = True
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return {
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'sign': _sign_name(pada_idx),
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'sign_idx': pada_idx,
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'lord': SIGN_LORDS[_sign_name(pada_idx)],
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'source_house_sign': house_sign,
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'source_house_lord': lord,
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'lord_sign': _sign_name(lord_sign_idx),
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'distance': distance,
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'exception_triggered': exception_triggered,
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}
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def calc_arudha_padas(asc_sign_idx: int, planet_longitudes: Dict[str, float]) -> Dict:
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"""计算A1-A12全部Arudha Padas,含Upapada/UL。"""
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padas = {}
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for house_num in range(1, 13):
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house_sign_idx = (asc_sign_idx + house_num - 1) % 12
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pada = calc_arudha_pada_for_house(house_sign_idx, planet_longitudes)
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if pada:
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pada.update({
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'house_num': house_num,
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'name': ARUDHA_NAMES.get(house_num, f'A{house_num}'),
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})
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padas[f'A{house_num}' if house_num != 12 else 'UL'] = pada
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return {
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'method': 'Arudha Pada A1-A12 (dashaflow/jaimini-tropical MIT adapted)',
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'ascendant': _sign_name(asc_sign_idx),
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'padas': padas,
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'arudha_lagna': padas.get('A1'),
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'upapada': padas.get('UL'),
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}
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def calc_upapada(asc_sign_idx: int, planet_longitudes: Dict[str, float]) -> Optional[Dict]:
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"""计算Upapada Lagna(第12宫Arudha)。"""
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result = calc_arudha_padas(asc_sign_idx, planet_longitudes).get('upapada')
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if result:
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second_idx = (result['sign_idx'] + 1) % 12
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result = dict(result)
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result['second_from_ul'] = _sign_name(second_idx)
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result['description'] = f"Upapada在{result['sign']},第二宫为{result['second_from_ul']},用于婚姻持续性与配偶外显画像。"
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return result
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def calc_graha_padas(planet_longitudes: Dict[str, float]) -> Dict:
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"""计算行星Graha Pada:行星位置通过其宫主映射出的外显影像。"""
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results = {}
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for planet, lon in planet_longitudes.items():
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if planet in ('Rahu', 'Ketu'):
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continue
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planet_sign_idx = int(lon / 30) % 12
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planet_sign = _sign_name(planet_sign_idx)
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lord = SIGN_LORDS[planet_sign]
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if lord not in planet_longitudes:
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continue
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lord_sign_idx = int(planet_longitudes[lord] / 30) % 12
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distance = _house_count(planet_sign_idx, lord_sign_idx)
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pada_idx = (lord_sign_idx + distance - 1) % 12
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results[planet] = {
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'planet_sign': planet_sign,
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'lord': lord,
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'lord_sign': _sign_name(lord_sign_idx),
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'graha_pada_sign': _sign_name(pada_idx),
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'graha_pada_sign_idx': pada_idx,
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'distance': distance,
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}
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return {'method': 'Graha Pada (jaimini-tropical MIT adapted)', 'graha_padas': results}
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# ───────────────────────────────────────────────
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# Chara Dasha 重写:KN Rao Method (v6.1.11)
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# 来源: PyJHora KN Rao 算法,MIT适配实现
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# 核心差异:Dasha 时长基于宫主所在宫位而非星座内行星计数
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# ───────────────────────────────────────────────
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# 偶数脚星座(由PyJHora const.even_footed_signs定义)
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_EVEN_FOOTED_SIGNS = {1, 3, 5, 7, 9, 11} # Taurus, Cancer, Virgo, Scorpio, Capricorn, Pisces
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# 行星尊贵对照:exalted_sign_idx / debilitated_sign_idx
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_PLANET_DIGNITY = {
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'Sun': {'exalted': 0, 'debilitated': 6}, # Aries / Libra
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'Moon': {'exalted': 1, 'debilitated': 7}, # Taurus / Scorpio
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'Mars': {'exalted': 9, 'debilitated': 3}, # Capricorn / Cancer
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'Mercury': {'exalted': 5, 'debilitated': 11}, # Virgo / Pisces
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'Jupiter': {'exalted': 3, 'debilitated': 9}, # Cancer / Capricorn
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'Venus': {'exalted': 11, 'debilitated': 5}, # Pisces / Virgo
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'Saturn': {'exalted': 6, 'debilitated': 0}, # Libra / Aries
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}
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def _sign_is_even_footed(sign_idx: int) -> bool:
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"""判断星座是否为偶数脚星座(用于KN Rao方向判定)。"""
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return sign_idx in _EVEN_FOOTED_SIGNS
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def _count_rasis_forward(from_idx: int, to_idx: int) -> int:
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"""从from_idx顺数到to_idx的星座数(含from_idx,1-12)。"""
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return ((to_idx - from_idx) % 12) + 1
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def _count_rasis_backward(from_idx: int, to_idx: int) -> int:
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"""从from_idx倒数到to_idx的星座数(含from_idx,1-12)。"""
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return ((from_idx - to_idx) % 12) + 1
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def _get_planet_house(longitudes: Dict[str, float], planet: str) -> int:
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"""根据行星经度获取所在宫位(0-11)。"""
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return int(longitudes.get(planet, 0) / 30) % 12
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def _get_sign_lord_house(longitudes: Dict[str, float], sign_idx: int) -> int:
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"""获取指定星座宫主所在宫位。"""
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sign_name = SIGNS[sign_idx]
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lord = SIGN_LORDS[sign_name]
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return _get_planet_house(longitudes, lord)
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def _chara_dasha_duration_knrao(longitudes: Dict[str, float], sign_idx: int) -> int:
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"""
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KN Rao Chara Dasha 大运时长计算。
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算法(对齐PyJHora _dhasa_duration_knrao_method):
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1. 获取当前星座的宫主
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2. 获取宫主所在宫位
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3. 若星座为偶数脚(Taurus/Cancer/Virgo/Scorpio/Capricorn/Pisces):
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从宫主宫位数到本星座(顺数)
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4. 若为奇数脚:从本星座数到宫主宫位(顺数)
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5. 结果减1
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6. 若宫主在所在宫位受尊(Exalted):+1;若落陷(Debilitated):-1
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7. 若≤0则设为12
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"""
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lord = SIGN_LORDS[SIGNS[sign_idx]]
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lord_house = _get_planet_house(longitudes, lord)
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if _sign_is_even_footed(sign_idx):
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count = _count_rasis_forward(lord_house, sign_idx)
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else:
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count = _count_rasis_forward(sign_idx, lord_house)
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years = count - 1
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# 尊贵调整
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dignities = _PLANET_DIGNITY.get(lord, {})
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if dignities:
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if lord_house == dignities.get('exalted'):
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years += 1
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elif lord_house == dignities.get('debilitated'):
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years -= 1
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if years <= 0:
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years = 12
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return years
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def _chara_progression_knrao(asc_sign_idx: int, longitudes: Dict[str, float]) -> list:
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"""
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KN Rao Chara Dasha 星座序列生成。
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算法(对齐PyJHora _dhasa_progression_knrao_method):
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1. 起始 = 上升星座
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2. 检查第9宫:若为偶数脚 → 逆向,否则正向
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3. 生成12个星座的顺序
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"""
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ninth_idx = (asc_sign_idx + 8) % 12
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if _sign_is_even_footed(ninth_idx):
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return [(asc_sign_idx + 12 - i) % 12 for i in range(12)]
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else:
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return [(asc_sign_idx + i) % 12 for i in range(12)]
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def _jd_to_date_tuple(jd: float):
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"""将Julian Day转换为(year, month, day)元组。使用简化算法。"""
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try:
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import datetime
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import math
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# 简化转换:约化儒略日
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jd_i = int(jd + 0.5)
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f = (jd + 0.5) - jd_i
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if jd_i >= 2299161:
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a = (jd_i - 1867216.25) / 36524.25
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jd_i += 1 + int(a - int(a) / 4)
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b = jd_i + 1524
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c = (b - 122.1) / 365.25
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d = int(365.25 * c)
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e = (b - d) / 30.6001
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day = b - d - int(30.6001 * e) + f
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month = e - 1 if e < 14 else e - 13
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year = c - 4716 if month > 2 else c - 4715
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return (int(year), int(month), int(day))
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except Exception:
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return (2000, 1, 1)
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def calc_chara_dasha(asc_sign_idx: int,
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planet_longitudes: Dict[str, float],
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birth_year: int, birth_month: int,
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birth_day: int = 1) -> Dict:
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"""
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Chara Dasha计算(v6.1.11重写:KN Rao Method)
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来源:PyJHora chara.py KN Rao方法(AGPL算法 -> MIT独立实现)
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对齐目标:与PyJHora KN Rao method ≥95%匹配
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规则:
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- 序列:自上升起,第9宫决定顺逆
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- 时长:基于宫主所在宫位而非行星计数
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- 尊贵:Exalted +1年 / Debilitated -1年
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"""
|
||
progression = _chara_progression_knrao(asc_sign_idx, planet_longitudes)
|
||
|
||
dasha_sequence = []
|
||
for i, sign_idx in enumerate(progression):
|
||
sign_name = SIGNS[sign_idx]
|
||
lord = SIGN_LORDS[sign_name]
|
||
duration = _chara_dasha_duration_knrao(planet_longitudes, sign_idx)
|
||
|
||
# 宮主所在宫位
|
||
lord_house = _get_planet_house(planet_longitudes, lord)
|
||
lord_house_name = SIGNS[lord_house]
|
||
|
||
# 尊贵状态
|
||
dignities = _PLANET_DIGNITY.get(lord, {})
|
||
dignity_status = 'none'
|
||
if dignities:
|
||
if lord_house == dignities.get('exalted'):
|
||
dignity_status = 'exalted'
|
||
elif lord_house == dignities.get('debilitated'):
|
||
dignity_status = 'debilitated'
|
||
|
||
dasha_sequence.append({
|
||
'sign': sign_name,
|
||
'sign_idx': sign_idx,
|
||
'lord': lord,
|
||
'lord_in_sign': lord_house_name,
|
||
'lord_in_sign_idx': lord_house,
|
||
'duration_years': duration,
|
||
'dignity_adjustment': dignity_status,
|
||
'order': i + 1,
|
||
})
|
||
|
||
total_years = sum(d['duration_years'] for d in dasha_sequence)
|
||
|
||
return {
|
||
'method': 'Chara Dasha (KN Rao Method, v6.1.11, PyJHora-aligned)',
|
||
'ascendant': SIGNS[asc_sign_idx],
|
||
'ascendant_idx': asc_sign_idx,
|
||
'progression_source': '9th_house_direction',
|
||
'dasha_sequence': dasha_sequence,
|
||
'total_cycle_years': total_years,
|
||
'capability_status': 'covered',
|
||
}
|
||
|
||
|
||
def calc_chara_dasha_with_antardasha(asc_sign_idx: int,
|
||
planet_longitudes: Dict[str, float],
|
||
birth_year: int, birth_month: int,
|
||
birth_day: int = 1) -> Dict:
|
||
"""
|
||
Chara Dasha 完整3层计算(MD → AD → PD)
|
||
|
||
使用KN Rao方法(v6.1.11重写)。
|
||
Antardasha:等分法(parent/12),序列为Maha序列偏移1位。
|
||
"""
|
||
base = calc_chara_dasha(asc_sign_idx, planet_longitudes, birth_year, birth_month, birth_day)
|
||
progression = _chara_progression_knrao(asc_sign_idx, planet_longitudes)
|
||
|
||
# Antardasha序列:Mahadasha序列偏移1(PyJHora method=2)
|
||
antar_sequence = progression[1:] + progression[:1]
|
||
|
||
for md in base['dasha_sequence']:
|
||
md_sign_idx = md['sign_idx']
|
||
md_duration_years = md['duration_years']
|
||
|
||
antardasha_list = []
|
||
for j, ad_sign_idx in enumerate(antar_sequence):
|
||
ad_sign = SIGNS[ad_sign_idx]
|
||
ad_lord = SIGN_LORDS[ad_sign]
|
||
ad_duration = round(md_duration_years / 12.0, 3)
|
||
|
||
# Pratyantar (第三层):等分
|
||
pratyantar_list = []
|
||
for k, pd_sign_idx in enumerate(antar_sequence):
|
||
pd_sign = SIGNS[pd_sign_idx]
|
||
pd_lord = SIGN_LORDS[pd_sign]
|
||
pd_duration = round(ad_duration / 12.0, 4)
|
||
pratyantar_list.append({
|
||
'sign': pd_sign,
|
||
'sign_idx': pd_sign_idx,
|
||
'lord': pd_lord,
|
||
'duration_years': pd_duration,
|
||
'order': k + 1,
|
||
})
|
||
|
||
antardasha_list.append({
|
||
'sign': ad_sign,
|
||
'sign_idx': ad_sign_idx,
|
||
'lord': ad_lord,
|
||
'duration_years': ad_duration,
|
||
'order': j + 1,
|
||
'pratyantar_dashas': pratyantar_list,
|
||
})
|
||
|
||
md['antardashas'] = antardasha_list
|
||
|
||
base['has_antardasha'] = True
|
||
base['has_pratyantar'] = True
|
||
base['antardasha_method'] = 'equal_division_12 (PyJHora method=2)'
|
||
return base
|
||
|
||
|
||
def calc_karakamsha(ak_sign_in_d9: str, ak_degree_in_d9: float) -> Dict:
|
||
"""Karakamsha分析:AK在D9中的位置作为灵魂上升。"""
|
||
lord = SIGN_LORDS.get(ak_sign_in_d9, '')
|
||
interpretations = _karakamsha_interpretations(ak_sign_in_d9, lord)
|
||
return {
|
||
'karakamsha_sign': ak_sign_in_d9,
|
||
'karakamsha_degree': ak_degree_in_d9,
|
||
'karakamsha_lord': lord,
|
||
'soul_direction': interpretations,
|
||
}
|
||
|
||
|
||
def _karakamsha_interpretations(sign, lord):
|
||
"""Karakamsha的灵魂方向解读。"""
|
||
directions = {
|
||
'Aries': '灵魂追求独立、开拓、成为先驱',
|
||
'Taurus': '灵魂追求稳定、物质安全感、感官和谐',
|
||
'Gemini': '灵魂追求知识、沟通、多元体验',
|
||
'Cancer': '灵魂追求情感连接、家庭、滋养他人',
|
||
'Leo': '灵魂追求创造力、领导力、自我表达',
|
||
'Virgo': '灵魂追求服务、完善、分析能力',
|
||
'Libra': '灵魂追求平衡、关系和谐、美学',
|
||
'Scorpio': '灵魂追求转化、深层真相、神秘学',
|
||
'Sagittarius': '灵魂追求真理、哲学、智慧传播',
|
||
'Capricorn': '灵魂追求成就、结构、社会贡献',
|
||
'Aquarius': '灵魂追求革新、人道主义、群体觉醒',
|
||
'Pisces': '灵魂追求灵性、超越、无条件的爱',
|
||
}
|
||
lord_meanings = {
|
||
'Sun': '通过权威、创造力和自我实现达成',
|
||
'Moon': '通过情感智慧、直觉和公众影响力达成',
|
||
'Mars': '通过行动力、勇气和技术能力达成',
|
||
'Mercury': '通过智慧、沟通和学习能力达成',
|
||
'Jupiter': '通过智慧、教导和灵性成长达成',
|
||
'Venus': '通过美学、关系和创造力达成',
|
||
'Saturn': '通过耐力、自律和长期承诺达成',
|
||
}
|
||
return {
|
||
'sign_direction': directions.get(sign, ''),
|
||
'lord_method': lord_meanings.get(lord, ''),
|
||
}
|
||
|
||
|
||
def calc_special_lagnas(asc_sign_idx: int, hour: int, minute: int = 0) -> Dict:
|
||
"""
|
||
Jaimini特殊上升点简化版:HL/GL/VL。
|
||
|
||
注:jaimini-tropical原版基于日出时间计算;这里在无日出依赖的CLI层提供
|
||
可运行的近似辅助值,精确断语仍应优先使用出生地日出校正版本。
|
||
"""
|
||
local_hours = hour + minute / 60.0
|
||
ghatis = (local_hours / 24.0) * 60.0
|
||
ghati_floor = int(ghatis)
|
||
hl_idx = ghati_floor % 12 if ghati_floor % 2 else (7 - ghati_floor) % 12
|
||
gl_idx = ghati_floor % 12
|
||
vl_idx = (asc_sign_idx * 3) % 12
|
||
return {
|
||
'method': 'Special Lagnas HL/GL/VL simplified (jaimini-tropical MIT adapted; sunrise-sensitive)',
|
||
'capability_status': 'auxiliary_partial',
|
||
'ghatis_elapsed_from_midnight': round(ghatis, 4),
|
||
'HL': {'sign': _sign_name(hl_idx), 'sign_idx': hl_idx, 'lord': SIGN_LORDS[_sign_name(hl_idx)]},
|
||
'GL': {'sign': _sign_name(gl_idx), 'sign_idx': gl_idx, 'lord': SIGN_LORDS[_sign_name(gl_idx)]},
|
||
'VL': {'sign': _sign_name(vl_idx), 'sign_idx': vl_idx, 'lord': SIGN_LORDS[_sign_name(vl_idx)]},
|
||
'note': 'HL/GL/VL对日出非常敏感;本函数用于结构化补齐,精确版本需接入当地日出。'
|
||
}
|