import re import pandas as pd from opencc import OpenCC from era_data import dynasty_alias, KNOWN_ERAS, VARIANT_MAP, TEMPLE_ALIASES, ERA_ALIASES cc = OpenCC('t2s') def normalize_chars(text): """OpenCC 之外的异体字/俗字归一化。文本与 CSV 两侧必须走同一归一化,保证一致。""" for variant, canonical in VARIANT_MAP.items(): text = text.replace(variant, canonical) return text # === 中文数字转阿拉伯数字 === def chinese_to_num(text): text = text.replace("卅", "三十").replace("卌", "四十").replace("拾", "十") if text in ["元", "元年"]: return 1 chinese_numerals = { '零': 0, '〇': 0, '○': 0, '一': 1, '二': 2, '三': 3, '四': 4, '五': 5, '六': 6, '七': 7, '八': 8, '九': 9, '十': 10, '百': 100, '千': 1000, '壹': 1, '貳': 2, '贰': 2, '叁': 3, '肆': 4, '伍': 5, '陸': 6, '陆': 6, '柒': 7, '捌': 8, '玖': 9, '拾': 10, '卄': 20, '廿': 20, '卅': 30, '卌': 40, } if text in chinese_numerals: return chinese_numerals[text] if '千' in text: parts = text.split('千') total = chinese_to_num(parts[0]) * 1000 if parts[0] else 1000 if len(parts) > 1 and parts[1]: total += chinese_to_num(parts[1]) return total if '百' in text: parts = text.split('百') total = chinese_to_num(parts[0]) * 100 if parts[0] else 100 if len(parts) > 1 and parts[1]: total += chinese_to_num(parts[1]) return total if '十' in text: parts = text.split('十') total = 0 if parts[0] == '': total += 10 else: total += chinese_to_num(parts[0]) * 10 if len(parts) > 1 and parts[1]: total += chinese_to_num(parts[1]) return total if '廿' in text or '卄' in text: return 20 + (chinese_numerals.get(text[-1], 0) if len(text) > 1 else 0) if '卅' in text: return 30 + (chinese_numerals.get(text[-1], 0) if len(text) > 1 else 0) # 混合数字(如"二零〇一") total = 0 for ch in text: total = total * 10 + chinese_numerals.get(ch, int(ch) if ch.isdigit() else 0) return total # 朝代别名见 era_data.py def normalize_dynasty_name(dynasty): if not dynasty: return dynasty # 先将繁体转简体 simplified = cc.convert(dynasty) # 查别名表(简体) for prefix, true_name in dynasty_alias.items(): if simplified.startswith(prefix): return true_name # 直接匹配朝代字典(简体) for known_dynasty in era_dict.keys(): if simplified.startswith(known_dynasty) or known_dynasty.startswith(simplified): return known_dynasty return simplified # === 年号表 === def _cc(s): """CSV 单元格归一化:空值→'',其余走 OpenCC 繁转简 + 异体字归一""" if pd.isna(s): return '' return normalize_chars(cc.convert(str(s))) era_df = pd.read_csv("中国年号.csv") era_df["年号"] = era_df["年号"].map(_cc) era_df["所属朝代"] = era_df["所属朝代"].map(_cc) era_df["名号"] = era_df["名号"].map(_cc) def _safe_span(v): """CSV 使用年数列(可能为空或非数字)""" try: return int(float(v)) except (TypeError, ValueError): return None era_dict = {} # 年号使用年数:用于干支/年数结果的使用期校验(如庆元仅6年,期内无庚子) era_span = {} for _, row in era_df.iterrows(): dynasty, era, start = row["所属朝代"], row["年号"], int(row["公元纪年"]) if not era: continue era_dict.setdefault(dynasty, {})[era] = start span = _safe_span(row["使用年数"]) if span is not None: era_span.setdefault(dynasty, {}).setdefault(era, span) # 有效年号白名单 = 手工精选 ∪ CSV 年号 ∪ 年号别名键(自动补全:白名单不应小于数据表)。 # 排除:民国(有专门匹配段)、带括号的年号(如"(后元)",防止与东汉"中元"等歧义) _csv_eras = { e for e in era_df["年号"] if e and e != '民国' and '(' not in e and '(' not in e and 2 <= len(e) <= 8 } KNOWN_ERAS_ALL = KNOWN_ERAS | _csv_eras | set(ERA_ALIASES) def _norm_era(era): """年号归一:OpenCC 繁转简后套年号别名(崇正→崇祯),返回规范写法""" era = cc.convert(era) return ERA_ALIASES.get(era, era) # === 庙号表 === # 名号列(如"高宗""太宗")表示整个在位期,公元取该名号下最早的年份(即位首年)。 # "代宗(景帝)" 等带括号的写法拆成两种叫法都收录;只收祖/宗/帝/王/后/皇结尾(或帝开头)的名号, # 排除"拖雷""孺子婴"等非庙号条目。 def _is_temple_name(name): return len(name) >= 2 and (name.startswith('帝') or name.endswith(('祖', '宗', '帝', '王', '后', '皇'))) temple_dict = {} # 庙号在位年数(该名号下各年号使用年数之和):用于名号+年数结果的使用期校验 temple_span = {} for _, row in era_df.iterrows(): name, dynasty, start = row["名号"], row["所属朝代"], int(row["公元纪年"]) if not name or not dynasty: continue for part in re.split(r'[()()]', name): part = part.strip() if not part or not _is_temple_name(part): continue part = TEMPLE_ALIASES.get(part, part) if not _is_temple_name(part): continue temple_dict.setdefault(dynasty, {}).setdefault(part, start) span = _safe_span(row["使用年数"]) if span is not None: d = temple_span.setdefault(dynasty, {}) d[part] = d.get(part, 0) + span # === 干支纪年 === _tiangan = '甲乙丙丁戊己庚辛壬癸' _dizhi = '子丑寅卯辰巳午未申酉戌亥' _ganzhi_to_offset = {} for i in range(60): tg = _tiangan[i % 10] dz = _dizhi[i % 12] _ganzhi_to_offset[tg + dz] = i # 0-based: 甲子=0 def ganzhi_to_era_year(ganzhi: str) -> int: """干支转年数(1-based):甲子=1, 乙丑=2, ..., 癸亥=60""" return _ganzhi_to_offset.get(ganzhi, -1) + 1 def gregorian_to_ganzhi(year: int) -> str: """按项目约定将公元年转换为干支(公元4年为甲子)。""" offset = (year - 4) % 60 return _tiangan[offset % 10] + _dizhi[offset % 12] _gz_pair = '[' + _tiangan + '][' + _dizhi + ']' # 干支纪年中的年号组(已知年号按长度降序;单字年号加前瞻(?![地支]), # 防止单字年号"丙"吞掉天干"丙午"中的"丙") _gz_era_group = r'(?P' + '|'.join( (re.escape(e) + (r'(?![子丑寅卯辰巳午未申酉戌亥])' if len(e) == 1 else '')) for e in sorted(KNOWN_ERAS_ALL, key=len, reverse=True) ) + r')' # === 数字转中文 === def arabic_to_chinese_year(num: int) -> str: """公元年份转中文(逐位体):1662 → 一六六二,-140 → -一四〇。 公元年份读作逐位数字,故不适用计数体规则(见 arabic_to_chinese_count)。 返回值不带"年"单位——字段"公元中文"与"年数中文"一样只给数字写法,单位由前端拼接。""" digits = "〇一二三四五六七八九" if num < 0: return '-' + ''.join(digits[int(d)] for d in str(abs(num))) return ''.join(digits[int(d)] for d in str(num)) # === 年数(纪年计数)转中文 === # 规则(纪年计数体,用于"年数中文"字段;只返回数字写法本身,单位"年"由前端自行拼接): # 1. 首位 1 → "元"(元年):民国元年、康熙元年、建元元年。 # 2. 10-19 → 十、十一…十九(不写"一十")。 # 3. 20-49 且十位即最高位 → 廿/卅/卌 缩写:20→廿、21→廿一、26→廿六、35→卅五、40→卌、49→卌九。 # 更高位用全称(120→一百二十,不写"一百廿")。 # 4. 50 以上用全称:五十、六十一、九十九、一百、二百五十、一千二百三十四。 # 5. 空位补"〇"(不用"零"):105→一百〇五、1005→一千〇五、1050→一千〇五十; # 连续空位只补一个〇(10005→一万〇五)。 # 6. 万/亿 分级同普通话:一万、十万、一百万、一千〇五十万。 _CN_UNITS = '〇一二三四五六七八九' _CN_TENS_ABBR = {2: '廿', 3: '卅', 4: '卌'} def _cn_under_10000(n: int, leading: bool) -> str: """1 ≤ n ≤ 9999 的计数体中文;leading=True 表示该段是整个数的最高位段""" digits = [n // 1000, n % 1000 // 100, n % 100 // 10, n % 10] names = ['千', '百', '十', ''] out = [] zero_pending = False for idx, (d, name) in enumerate(zip(digits, names)): if d == 0: if out: zero_pending = True continue if zero_pending: out.append('〇') zero_pending = False if name == '十' and leading and idx == 2 and not out and d < 5: # 最高位就是十位:10-19 → 十…十九(不写"一十");20-49 → 廿/卅/卌 缩写 out.append('十' if d == 1 else _CN_TENS_ABBR[d]) else: out.append(_CN_UNITS[d] + name) return ''.join(out) def arabic_to_chinese_count(num: int) -> str: """年数(纪年计数)转中文:1→元、20→廿、26→廿六、105→一百〇五、1050→一千〇五十。 与 arabic_to_chinese_year 的逐位体不同,本函数按计数体读法书写。""" if num < 0: return '-' + arabic_to_chinese_count(-num) if num == 0: return '〇' if num == 1: return '元' if num < 10000: return _cn_under_10000(num, leading=True) if num < 100000000: high, low = divmod(num, 10000) out = _cn_under_10000(high, leading=True) + '万' else: high, low = divmod(num, 100000000) out = arabic_to_chinese_count(high) + '亿' if low: if low < 1000: # 低位段最高位低于"千"→ 中间有空位,补一个〇 out += '〇' out += _cn_under_10000(low, leading=False) return out # === 返回字段全量化 === # 每条结果都返回同一套键(顺序固定),无内容的字段给空值: # 字符串 ""、数值 None、布尔 False、列表 []——前端/后端按对象固定字段接收参数时不会"找不到键"。 _RESULT_FIELDS = ( "原文", "原文(简体)", "类型", "朝代", "年号", "庙号", "年数", "年数中文", "干支", "公元", "公元中文", "位置", "干支不符", "干支推算", "超出使用期", "多候选", "候选", ) _RESULT_DEFAULTS = { "原文": "", "原文(简体)": "", "类型": "", "朝代": "", "年号": "", "庙号": "", "年数": None, "年数中文": "", "干支": "", "公元": None, "公元中文": "", "位置": None, "干支不符": False, "干支推算": None, "超出使用期": False, "多候选": False, } def _finalize_result(result: dict) -> dict: """按 _RESULT_FIELDS 固定顺序输出全字段(缺的键补空值;列表字段各自独立拷贝)""" out = {} for key in _RESULT_FIELDS: if key == "候选": out[key] = list(result.get("候选") or []) else: out[key] = result.get(key, _RESULT_DEFAULTS[key]) return out # === 古代年号正则 === # 从 era_dict 构建朝代匹配组(按长度降序排列,优先匹配长朝代名如"北宋"而非"北") # 额外添加常见但不在CSV中的朝代简称(如"汉") # 合并 temple_dict 的键:周/秦等年号列全空的朝代也必须有匹配能力 _extra_dynasty_names = ['汉', '晋', '宋', '周'] _dynasty_names = sorted( list(era_dict.keys()) + list(temple_dict.keys()) + [d for d in _extra_dynasty_names if d not in era_dict and d not in temple_dict], key=len, reverse=True ) _dynasty_alt = '|'.join(re.escape(d) for d in _dynasty_names) # 常见朝代前缀(大、皇等),用于匹配"大唐""大清"等 _dynasty_prefix = '大皇前后胡' # 非元年数字字符(排除元,避免歧义:建元元年中第一个元是年号的一部分)。 # 含阿拉伯/全角数字("康熙20年""乾隆20年")与大写数字("道光贰拾年")。 _year_digits = '〇零一二三四五六七八九十廿卄卅卌' + '01234567890123456789' + '壹貳贰叁肆伍陸陆柒捌玖拾' # 已知年号白名单见 era_data.py # 预编译已知年号正则片段(按长度降序,优先匹配长年号如"太平兴国"而非"太平") _known_era_alt = '|'.join(sorted(KNOWN_ERAS_ALL, key=len, reverse=True)) _known_era_group = r'(?P' + _known_era_alt + r')' _yd = '[' + _year_digits + ']' # 年份后缀:"年"字可省(碑谱/契约常见:"民国二十六""万历三十六",也支持后接干支 # "光绪二十六庚子")。省"年"时用**白名单前瞻**兜住误匹配——数字后只有跟下列内容才算年份: # ① 族谱常用动词:生卒殁殇死终葬娶适嫁亡逝享寿嗣立 # ② 标点/括号/引号/空白/行尾:,。、;:,.;:!?!?""''()()[]【】{}《》<> 及 \s、$ # ③ 天干(甲乙丙丁戊己庚辛壬癸):后面就是干支,由各段自行并入并校验 # 于是这些都不再当年份:康熙六月(月)、万历三大征(大)、康熙四十二卷(卷/42卷)、 # 张景福三子(子/排行)、永明五十二都(都/地名)、万历二十万(万)、光绪二十六日(日)、 # 康熙二十天(天/20天)。白名单也天然挡住正则回溯:回退到更短数字串时其后仍是数字,不在表内。 _bare_year_after = ( '生卒殁殤殇死终終葬娶适適嫁亡逝享寿壽嗣立' + ',。、;:,.;:!?!?“”"\'‘’()()[]【】{}《》<>' + _tiangan ) _year_suffix = r'(?:年|(?=[' + re.escape(_bare_year_after) + r'\s]|$))' # === 首字符预筛 === # 大交替串((?:A|B|...) 里塞了几百个年号/朝代名)在 CPython 的 re 里没有首字符预筛: # 引擎在每个位置都要把全部分支逐个试完才移向下一位。实测 1MB 文本上这类扫描占 # convert_text 总耗时的 82%,而其中多数模式只命中 0~134 处。 # # 做法:在模式开头加一个**零宽前瞻** (?=[首字集合])。前瞻不消耗字符,只在当前位置断言 # "下一个字符属于该集合",断言失败就放弃这个起点。 # # 结果为什么不变(这是结构性保证,不是经验之谈):集合从与模式**同一份源数据**推导, # 覆盖了模式第一个被消耗字符的所有来源,因此只可能拒绝「原模式根本不可能开始匹配」的 # 位置 → 匹配集合完全相同 → 捕获组相同 → extract_era_years 后续执行序列一致 → 输出 # 逐字段一致。集合随 CSV/白名单变化自动同步(都从 _dynasty_names / KNOWN_ERAS_ALL 推导)。 # # 适用前提(新增模式时必须逐条核对): # ① 模式至少消耗 1 个字符、不能匹配空串——否则前瞻会挡掉零宽匹配; # ② 第一个被消耗的字符只可能来自朝代名或年号名。 # 故以下模式**不加**预筛: # - 公元段 (?:公元|西元|公历)?...:前缀整个可选,不满足前提①; # - 裸干支段:以干支对开头,不满足前提②; # - 民国段:以字面量 民 开头,re 自带前缀优化,加了也无收益。 # 三种预筛对应"朝代组"的三种写法: # _GATE_DYNASTY 朝代组必选((?P(?:...|...)) 后无 `?`) # _GATE_DYNASTY_OPT 朝代组可选(用 _dynasty_opt,见 2b/2c 段) # _GATE_ERA 朝代组为空((?P) 后直接贴年号) def _first_char_gate(names): """从名称集合推导首字符预筛前瞻。字符类里 ]、反斜杠、^、- 四个字符需转义。""" chars = {n[0] for n in names if n} body = ''.join('\\' + c if c in ']\\^-' else c for c in sorted(chars)) return '(?=[' + body + '])' _dynasty_first = list(_dynasty_names) + list(_dynasty_prefix) _GATE_DYNASTY = _first_char_gate(_dynasty_first) _GATE_ERA = _first_char_gate(KNOWN_ERAS_ALL) _GATE_DYNASTY_OPT = _first_char_gate(_dynasty_first + list(KNOWN_ERAS_ALL)) # 差分测试用:登记 (预筛, 未加预筛的模式串)。test_parser.py 逐个比对两者在语料上的 # 匹配序列(含捕获组),防止预筛与模式脱节——例如将来改了模式首部却忘了改预筛。 _GATED_PATTERNS = [] def _compile_gated(pattern, gate): """编译加过首字符预筛的模式,并登记 (预筛, 原串) 供差分测试比对。""" compiled = re.compile(gate + pattern) _GATED_PATTERNS.append((compiled, pattern, gate)) return compiled def _build_pattern(with_dynasty=True): """构建年号正则:已知年号优先 + 通用兜底(仅限有朝代前缀时)""" if with_dynasty: # 朝代前缀模式:加(?(?:(?)' # 无朝代模式不加边界(允许年号跟在其他汉字后面,如"永乐大帝在永乐三年") boundary = '' gate = _GATE_ERA # 朝代组为空 → 首个消耗字符是年号首字 if with_dynasty: # 有朝代前缀:年号后直接跟年份数字,无需额外约束 era_year = _known_era_group + r'(?P' + _yd + r'+)' + _year_suffix era_yuan = _known_era_group + r'元年' patterns = [ _compile_gated(dynasty_part + boundary + era_year, gate), _compile_gated(dynasty_part + boundary + era_yuan, gate), # 通用兜底(2-8字) _compile_gated(dynasty_part + boundary + r'(?P[一-鿿]{2,8})' + r'(?P' + _yd + r'+)年', gate), _compile_gated(dynasty_part + boundary + r'(?P[一-鿿]{2,8})元年', gate), ] else: # 无朝代前缀:年号后必须紧跟年份数字(前瞻断言),防止"永乐大帝"误匹配 _year_ahead = r'(?=' + _yd + r'+' + _year_suffix + r'|元年)' era_year = _known_era_group + _year_ahead + r'(?P' + _yd + r'+)' + _year_suffix era_yuan = _known_era_group + _year_ahead + r'元年' patterns = [ _compile_gated(dynasty_part + boundary + era_year, gate), _compile_gated(dynasty_part + boundary + era_yuan, gate), ] return patterns # 无朝代模式只匹配已知年号(避免误匹配如"国"被当年号) _patterns_no_dynasty = _build_pattern(with_dynasty=False) # 有朝代模式:已知年号 + 通用兜底 _patterns_dynasty = _build_pattern(with_dynasty=True) # === 2c. 干支+(公元对照)(如"清同治壬申(1872)十一月十四生") === # 干支纪年旁直接给出公元年份:合并为一条结果、对照校验干支。 # 除括号外还支持:"公元"标记(清同治壬申公元1872年)、横线(壬申-1872)、 # 无分隔连写(壬申1872年)。其余内容(如"十一月十四")不并入原文。 # 置于公元段之前(见 extract_era_years),避免对照年份被单独摘出成公元纪年。 _dynasty_opt = (r'(?P(?:(?' + _gz_gy_year + r')[ \t]*年?[))])' r'|(?:[,,、]?[ \t]*(?:公元|西元|公历)[ \t]*(?P' + _gz_gy_year + r')[ \t]*年?)' r'|(?:[-—–-~][ \t]*(?P' + _gz_gy_year + r')[ \t]*年?)' r'|(?P' + _gz_gy_year + r')[ \t]*年?' r')' ) # 干支前的修饰词(如"光绪岁次辛丑""岁在壬戌"):碑刻/谱牒常见 _gz_mod = r'(?:岁[次在])?' _ganzhi_gongyuan_re = _compile_gated( _dynasty_opt + _gz_era_group + _gz_mod + r'(?P' + _gz_pair + r')(?:年)?' + _gz_gy_sep, _GATE_DYNASTY_OPT, # _dynasty_opt 可空 → 朝代首字与年号首字并集 ) # 裸干支+(对照):无年号可锚定(如"壬申(1872)"),公元取对照值 _ganzhi_bare_gongyuan_re = re.compile( r'(?P' + _gz_pair + r')(?:年)?' + _gz_gy_sep ) # === 2b / 3 / 3b 段的正则 === # 这些原先在 extract_era_years 里每次调用都重新编译、且无法被差分测试取到; # 提到模块级后只编译一次,并统一登记进 _GATED_PATTERNS。 # 2b. 年号+公元(如"清康熙公元一六八七年丁卯"):年号后直接给出公元年份, # 年数 = 公元 - 年号起始 + 1,紧跟的干支用于校验年份一致性。 _era_gongyuan_re = _compile_gated( r'(?P(?:(?' + _known_era_alt + r')' + r'(?:公元|西元|公历)\s*(?P' + _gz_gy_year + r')\s*年?' + r'(?P' + _gz_pair + r')?', _GATE_DYNASTY_OPT, # 朝代前缀可空 → 并集 ) # 3-A. 有朝代前缀的干支纪年(如"清雍正乙巳");年号组 _gz_era_group 见模块级定义 _ganzhi_dynasty_re = _compile_gated( r'(?P(?:(?' + _gz_pair + r')(?:年)?', _GATE_DYNASTY, # 朝代组必选 → 朝代名首字 ) # 3-B. 无朝代前缀的干支纪年(如"嘉庆癸亥"),年号≥2字符避免天干误匹配 _long_era_names = [e for e in KNOWN_ERAS_ALL if len(e) >= 2] _long_era_alt = '|'.join(sorted(_long_era_names, key=len, reverse=True)) _ganzhi_no_dynasty_re = _compile_gated( r'(?P)' + r'(?P' + _long_era_alt + r')' + _gz_mod + r'(?P' + _gz_pair + r')(?:年)?', _GATE_ERA, # 朝代组为空 → 年号首字 ) # 3b. 庙号纪年(如"宋高宗""清圣祖",指整个在位期,公元=即位首年) # 庙号必须带朝代前缀("高宗"在唐/宋/清均有,单独出现有歧义) _temple_names = sorted({t for d in temple_dict for t in temple_dict[d]}, key=len, reverse=True) _temple_alt = '|'.join(re.escape(t) for t in _temple_names) _temple_pattern_re = _compile_gated( r'(?P(?:(?' + _temple_alt + r')' # 后面紧跟"X年/元年"时不按庙号匹配,交给古代纪年按年号解析(如"元泰定三年") + r'(?!(?:' + _yd + r'+年|元年))', _GATE_DYNASTY, # 朝代组必选 → 朝代名首字 ) # === 主函数 === def extract_era_years(text): # 标注符号([]、【】)不参与匹配,但保留在文本中——位置偏移以原始文本为准 # (含换行/空格/标注),仅在收尾时把标注符号从"原文"字段剔除 original_text = text # 码点→UTF-16码元 映射:JS 前端字符串索引按 UTF-16 计,补充平面字符 # (如 𫓧 U+2B4E7)在 Python 算 1 个码点、在 JS 算 2 个码元,会导致其后位置漂移。 # 返回的"位置"统一用 UTF-16 码元,保证前端 text.slice(start, end) == 原文。 _utf16_index = [] _utf16_pos = 0 for ch in text: _utf16_index.append(_utf16_pos) _utf16_pos += 2 if ord(ch) > 0xFFFF else 1 _utf16_index.append(_utf16_pos) simplified_text = normalize_chars(cc.convert(text)) results = [] # 覆盖集:先匹配的段落占据位置,后续段落跳过重叠(防止同一文本被多段重复摘出) covered = set() # 民国纪年的公元对照仅支持括号形式("民国三十八年(1949)"): # 民国X年已是确定年份,逗号/横线/连写分隔多为并列句(如"民国三十八年,公元二〇二四年"是两个日期),不合并 _mg_gy_paren = r'(?:[((][ \t]*(?P' + _gz_gy_year + r')[ \t]*年?[))])?' # === 1. 民国 === minguo_pattern = re.compile( r'民[国國]\s*([〇零一二三四五六七八九十百廿卄卅卌元\d0-9壹貳贰叁肆伍陸陆柒捌玖拾]+)\s*' + _year_suffix + _mg_gy_paren ) for m in minguo_pattern.finditer(simplified_text): year_text = m.group(1) year_num = chinese_to_num(year_text) # 公元对照(如"民国三十八年(1949)"):取对照值为公元,不一致时标注 gy_year = None for name in ("gy_year", "gy_year2", "gy_year3", "gy_year4"): if name in m.groupdict() and m.group(name): gy_year = chinese_to_num(m.group(name)) break if gy_year is not None and not (1000 <= gy_year <= 2100): continue gregorian = gy_year if gy_year is not None else 1911 + year_num # 年数上界:不存在"民国2000年"(→3911)、"民国146356"(→148267)这类写法, # 换算出的公元超出支持窗口(1000–2100)直接不认——与公元段同一窗口约定 if not (1000 <= gregorian <= 2100): continue start, end = m.start(), m.end() # 尾随干支校验(如"民国三十八年己丑"):并入原文同一单位(同公元段逻辑) ganzhi = simplified_text[end:end + 2] if ganzhi in _ganzhi_to_offset: end += 2 else: j = end while j < len(simplified_text) and simplified_text[j] in '[]【】': j += 1 ganzhi = simplified_text[j:j + 2] if ganzhi not in _ganzhi_to_offset: ganzhi = None covered.update(range(start, end)) raw_fan = original_text[start:end] result = { "原文": raw_fan, "原文(简体)": simplified_text[start:end], "朝代": "民国", "年号": "民国纪年", "年数": year_num, "公元": gregorian, "位置": {"起始": start, "结束": end}, "类型": "民国纪年", } if ganzhi: result["干支"] = ganzhi if gregorian_to_ganzhi(gregorian) != ganzhi: result["干支不符"] = True if gy_year is not None and gy_year != 1911 + year_num: result["干支不符"] = True result["干支推算"] = 1911 + year_num results.append(result) # 1b. 民国+干支纪年(如"民国丁卯""民国甲戌"),支持(公元对照)合并 minguo_gz = re.compile( r'民[国國]\s*(?P' + _gz_pair + r')(?:年)?' + _mg_gy_paren ) for m in minguo_gz.finditer(simplified_text): ganzhi = m.group("ganzhi") gz_offset = _ganzhi_to_offset.get(ganzhi, -1) if gz_offset < 0: continue # 民国元年=1912, base_gz = (1912-4)%60 = 8 (己酉) base_gz = (1912 - 4) % 60 year_in_era = ((gz_offset - base_gz) % 60) + 1 computed = 1912 + year_in_era - 1 # 公元对照(如"民国壬申(1932)"):取对照值为公元,不一致时标注 gy_year = None for name in ("gy_year", "gy_year2", "gy_year3", "gy_year4"): if name in m.groupdict() and m.group(name): gy_year = chinese_to_num(m.group(name)) break if gy_year is not None and not (1000 <= gy_year <= 2100): continue minguo_gy = gy_year if gy_year is not None else computed if not (1000 <= minguo_gy <= 2100): continue start, end = m.start(), m.end() covered.update(range(start, end)) raw_fan = original_text[start:end] result = { "原文": raw_fan, "原文(简体)": m.group(0), "朝代": "民国", "年号": "民国纪年", "年数": year_in_era, "干支": ganzhi, "公元": gy_year if gy_year is not None else computed, "位置": {"起始": start, "结束": end}, "类型": "民国纪年(干支)", } if gy_year is not None and gy_year != computed: result["干支不符"] = True result["干支推算"] = computed results.append(result) # === 2b. 年号+公元(如"清康熙公元一六八七年丁卯") === # 年号后直接给出公元年份:年数=公元-年号起始+1,与"年号+年数"公式自洽; # 紧跟的干支用于校验年份一致性。置于公元段之前,合并结果优先、避免重复摘出。 # 正则见模块级 _era_gongyuan_re(含首字符预筛) for m in _era_gongyuan_re.finditer(simplified_text): start, end = m.start(), m.end() if any(pos in covered for pos in range(start, end)): continue era = _norm_era(m.group("era")) year_num = chinese_to_num(m.group("gy_year")) if not (1000 <= year_num <= 2100): continue dynasty = normalize_dynasty_name(m.group("dynasty") or "") base = None multi = [] if dynasty: for d, eras in era_dict.items(): if dynasty in d or d in dynasty: if era in eras: base = eras[era] dynasty = d break if base is None: for d, eras in era_dict.items(): if era in eras: multi.append((d, eras[era])) if multi: dynasty, base = multi[0] if base is None: continue covered.update(range(start, end)) year_in_era = year_num - base + 1 ganzhi = m.group("gy_ganzhi") result = { "原文": original_text[start:end], "原文(简体)": m.group(0), "朝代": dynasty, "年号": era, "年数": year_in_era, "公元": year_num, "位置": {"起始": start, "结束": end}, "类型": "年号+公元", } if len(multi) > 1: result["多候选"] = True result["候选"] = [list(c) for c in multi] # 公元超出年号使用期(如"康熙公元1950年")→ 标注,值保留 span = era_span.get(dynasty, {}).get(era) if span is not None and year_num > base + span - 1: result["超出使用期"] = True # 紧跟的干支与公元年份不符(如"一六八九年丁卯",1689应为己巳)→ 标注 if ganzhi: result["干支"] = ganzhi if gregorian_to_ganzhi(year_num) != ganzhi: result["干支不符"] = True results.append(result) # === 2c. 干支+(公元对照)(如"清同治壬申(1872)十一月十四生") === # 干支纪年旁直接给出公元对照:合并为一条结果,用对照校验干支,紧跟的月日并入字段。 # 置于公元段之前,避免"(1872)"被单独摘出成公元纪年(同 2b 的合并优先策略)。 def _process_ganzhi_gongyuan(m): raw_dynasty = m.group("dynasty") if "dynasty" in m.groupdict() else "" dynasty = normalize_dynasty_name(raw_dynasty or "") era = _norm_era(m.group("era")) if "era" in m.groupdict() and m.group("era") else None ganzhi = m.group("ganzhi") # 对照年份可能来自四种连接方式之一(gy_year/gy_year2/gy_year3/gy_year4) gy_year = next( chinese_to_num(m.group(name)) for name in ("gy_year", "gy_year2", "gy_year3", "gy_year4") if m.group(name) ) if ganzhi not in _ganzhi_to_offset or not (1000 <= gy_year <= 2100): return start, end = m.start(), m.end() if any(pos in covered for pos in range(start, end)): return # 查找年号基准年(与干支纪年段同逻辑:先精确朝代,后全量候选取首个并标注歧义) base = None multi = [] if dynasty and era: for d, eras in era_dict.items(): if dynasty in d or d in dynasty: if era in eras: base = eras[era] dynasty = d break if base is None and era: for d, eras in era_dict.items(): if era in eras: multi.append((d, eras[era])) if multi: dynasty, base = multi[0] covered.update(range(start, end)) result = { "原文": original_text[start:end], "原文(简体)": m.group(0), "干支": ganzhi, "公元": gy_year, "位置": {"起始": start, "结束": end}, "类型": "干支纪年", } if base is not None: result["朝代"] = dynasty result["年号"] = era # 干支60年循环推算(同干支纪年段公式);与对照不一致时标注,公元仍取对照值 base_gz = (base - 4) % 60 year_in_era = ((_ganzhi_to_offset[ganzhi] - base_gz) % 60) + 1 result["年数"] = year_in_era computed = base + year_in_era - 1 if computed != gy_year: result["干支不符"] = True result["干支推算"] = computed if len(multi) > 1: result["多候选"] = True result["候选"] = [list(c) for c in multi] span = era_span.get(dynasty, {}).get(era) if span is not None and gy_year > base + span - 1: result["超出使用期"] = True elif gregorian_to_ganzhi(gy_year) != ganzhi: # 裸干支+对照:无年号可锚定,直接用公元年份的干支校验(同公元段约定) result["干支不符"] = True results.append(result) for m in _ganzhi_gongyuan_re.finditer(simplified_text): _process_ganzhi_gongyuan(m) for m in _ganzhi_bare_gongyuan_re.finditer(simplified_text): _process_ganzhi_gongyuan(m) # === 2. 公元(允许无"年"字)=== gongyuan_pattern = re.compile( r'(?:公元|西元|公历)?\s*(' + _gz_gy_year + r')\s*(?:(.*?))?\s*(年)?' ) for m in gongyuan_pattern.finditer(simplified_text): start, end = m.start(), m.end() if any(pos in covered for pos in range(start, end)): continue year_text = m.group(1) year_num = chinese_to_num(year_text) if not (1000 <= year_num <= 2100): continue # 公元年后紧跟的干支(如"公元一九六〇年庚子"):无年号可锚定时, # 干支就是年份的干支,紧邻时并入同一日期单位——保证 位置[start:end]==原文, # 前端可按范围整体替换;隔标注符号时(【公元一九六〇年】庚子)干支只摘入字段校验 ganzhi = simplified_text[end:end + 2] if ganzhi in _ganzhi_to_offset: end += 2 else: j = end while j < len(simplified_text) and simplified_text[j] in '[]【】': j += 1 ganzhi = simplified_text[j:j + 2] if ganzhi not in _ganzhi_to_offset: ganzhi = None covered.update(range(start, end)) raw_fan = original_text[start:end] era_type = "公元纪年(中华人民共和国)" if year_num >= 1949 else "公元纪年(近代/其他)" result = { "原文": raw_fan, "原文(简体)": simplified_text[start:end], "类型": era_type, "公元": year_num, "位置": {"起始": start, "结束": end}, } if ganzhi in _ganzhi_to_offset: result["干支"] = ganzhi if gregorian_to_ganzhi(year_num) != ganzhi: result["干支不符"] = True results.append(result) # === 3. 干支纪年(如"清雍正乙巳十一月十二午时生")=== def _process_ganzhi_match(m): """处理干支纪年匹配""" raw_dynasty = m.group("dynasty") if "dynasty" in m.groupdict() else "" dynasty = normalize_dynasty_name(raw_dynasty or "") era = _norm_era(m.group("era")) ganzhi = m.group("ganzhi") if ganzhi not in _ganzhi_to_offset: return # 查找朝代和基准年 base = None multi = [] if dynasty: for d, eras in era_dict.items(): if dynasty in d or d in dynasty: if era in eras: base = eras[era] dynasty = d break if not base: # 无朝代前缀:收集全部候选(如"大定"=北周581/金1161),取首个但标注歧义 for d, eras in era_dict.items(): if era in eras: multi.append((d, eras[era])) if multi: dynasty, base = multi[0] if not base: return # 干支60年循环:计算基准年的干支位置,再求偏移 base_gz = (base - 4) % 60 # 公元4年=甲子(0),所以偏移=4 gz_offset = _ganzhi_to_offset.get(ganzhi, 0) # 0-based year_in_era = ((gz_offset - base_gz) % 60) + 1 # 1-based年数 gregorian = base + year_in_era - 1 start, end = m.start(), m.end() if any(pos in covered for pos in range(start, end)): return covered.update(range(start, end)) raw_fan = original_text[start:end] result = { "原文": raw_fan, "原文(简体)": m.group(0), "朝代": dynasty, "年号": era, "年数": year_in_era, "干支": ganzhi, "公元": gregorian, "位置": {"起始": start, "结束": end}, "类型": "干支纪年", } if len(multi) > 1: result["多候选"] = True result["候选"] = [list(c) for c in multi] # 使用期校验:换算结果超出年号实际使用年数(如"庆元庚子"→1240,庆元仅1195–1200)。 # 值保留,仅标注,供人工判断(碑刻原数据常与年号实际期间不符)。 span = era_span.get(dynasty, {}).get(era) if span is not None and gregorian > base + span - 1: result["超出使用期"] = True results.append(result) # 模式A:有朝代前缀(如"清雍正乙巳");正则见模块级 _ganzhi_dynasty_re for m in _ganzhi_dynasty_re.finditer(simplified_text): _process_ganzhi_match(m) # 模式B:无朝代前缀(如"嘉庆癸亥");正则见模块级 _ganzhi_no_dynasty_re for m in _ganzhi_no_dynasty_re.finditer(simplified_text): _process_ganzhi_match(m) # === 3b. 庙号纪年(如"宋高宗""清圣祖",指整个在位期,公元=即位首年)=== # 庙号必须带朝代前缀("高宗"在唐/宋/清均有,单独出现有歧义) # 正则见模块级 _temple_pattern_re for m in _temple_pattern_re.finditer(simplified_text): start, end = m.start(), m.end() if any(pos in covered for pos in range(start, end)): continue dynasty = normalize_dynasty_name(m.group("dynasty") or "") temple = m.group("temple") base = None if dynasty: # 先精确匹配朝代,再模糊匹配(如"宋"→"南宋") for d in temple_dict: if d == dynasty and temple in temple_dict[d]: dynasty, base = d, temple_dict[d][temple] break if base is None: for d in temple_dict: if (dynasty in d or d in dynasty) and temple in temple_dict[d]: dynasty, base = d, temple_dict[d][temple] break if base is None: continue covered.update(range(start, end)) raw_fan = original_text[start:end] results.append({ "原文": raw_fan, "原文(简体)": m.group(0), "朝代": dynasty, "庙号": temple, "公元": base, "位置": {"起始": start, "结束": end}, "类型": "庙号纪年", }) # === 4. 古代年号 === def _process_era_match(m, year_override=None): """处理一个年号正则匹配结果""" raw_dynasty = m.group("dynasty") if "dynasty" in m.groupdict() else "" dynasty = normalize_dynasty_name(raw_dynasty or "") era = _norm_era(m.group("era")) # 过滤误匹配:年号是单个数字字符(如"民国二十六年"中的"二") if len(era) == 1 and era in '零一二三四五六七八九十廿卄卅卌': return # 过滤误匹配:年号全是数字汉字(如"元一九五二年"中的"一九五") if era and all(ch in '零一二三四五六七八九十〇' for ch in era): return year_text = year_override if year_override is not None else m.group("year") year_num = chinese_to_num(year_text) # 年数上界:年号纪年不可能出现"洪武146356"这类(那是被当年份的数字 ID/编号), # 年数 > 999 一律不认——否则会算出 147723 这种荒诞公元 if not (1 <= year_num <= 999): return base = None multi = [] if dynasty: for d, eras in era_dict.items(): if dynasty in d or d in dynasty: if era in eras: base = eras[era] dynasty = d break else: # 无朝代前缀:收集全部候选(如"建元"=西汉-140/东晋343/南齐479),取首个但标注歧义 candidates = [] for d, eras in era_dict.items(): if era in eras: candidates.append((d, eras[era])) if len(candidates) == 1: dynasty, base = candidates[0] elif len(candidates) > 1: dynasty, base = candidates[0] multi = candidates if base is None: # 名号+年数兜底(如"汉惠帝三年"→即位首年-194 + 3 - 1,指皇帝在位第N年) if dynasty: for d, temples in temple_dict.items(): if (dynasty in d or d in dynasty) and era in temples: base = temples[era] dynasty = d break start, end = m.start(), m.end() # 尾随干支校验(如"光绪二十六年庚子"):并入原文同一单位(同公元段逻辑) ganzhi = None if base: ganzhi = simplified_text[end:end + 2] if ganzhi in _ganzhi_to_offset: end += 2 else: ganzhi = None raw_fan = original_text[start:end] covered.update(range(start, end)) if base: gregorian = base + year_num - 1 result = { "原文": raw_fan, "原文(简体)": m.group(0) + (ganzhi or ''), "朝代": dynasty, "年号": era, "年数": year_num, "公元": gregorian, "位置": {"起始": start, "结束": end}, "类型": "古代纪年", } if ganzhi: result["干支"] = ganzhi if gregorian_to_ganzhi(gregorian) != ganzhi: result["干支不符"] = True if len(multi) > 1: result["多候选"] = True result["候选"] = [list(c) for c in multi] # 使用期校验:年数结果超出年号使用期(或名号在位年数)时标注,值保留 span = era_span.get(dynasty, {}).get(era) if span is None: span = temple_span.get(dynasty, {}).get(era) if span is not None and gregorian > base + span - 1: result["超出使用期"] = True results.append(result) else: results.append({ "原文": raw_fan, "原文(简体)": m.group(0), "朝代": dynasty, "年号": era, "年数": year_num, "位置": {"起始": start, "结束": end}, "类型": "古代纪年(未匹配)", }) # 收集所有匹配,对于重叠区间保留覆盖范围更大的(如"金大定元年"优先于"大定元年") all_matches = [] for pat in _patterns_no_dynasty: for m in pat.finditer(simplified_text): has_year = "year" in m.groupdict() and m.group("year") is not None all_matches.append((m, None if has_year else "元", False)) for pat in _patterns_dynasty: for m in pat.finditer(simplified_text): has_year = "year" in m.groupdict() and m.group("year") is not None all_matches.append((m, None if has_year else "元", True)) # 按覆盖范围降序排列(长的优先),同长度时朝代模式优先 all_matches.sort(key=lambda x: (x[0].end() - x[0].start(), x[2]), reverse=True) for m, year_override, _is_dynasty in all_matches: if not any(pos in covered for pos in range(m.start(), m.end())): _process_era_match(m, year_override=year_override) for result in results: if result.get("公元") is not None: result.setdefault("干支", gregorian_to_ganzhi(result["公元"])) # === 收尾 === # 1) 派生字段:公元中文(公元年份逐位读法)、年数中文(廿/卅/卌 计数读法)——都只给数字写法,不带"年"单位。 # 在这里统一派生,任何新增的产生"公元"/"年数"的分支都会自动带上; # 公元纪年、庙号纪年没有年数 → 年数中文 = "";未匹配年号没有公元 → 公元中文 = ""。 # 2) 原文剔除标注符号;位置换算为 UTF-16 码元(JS 前端索引)。 # 3) 字段全量化:_finalize_result 按固定顺序补齐所有键(缺内容给空值)。 for i, result in enumerate(results): start, end = result["位置"]["起始"], result["位置"]["结束"] result["年数中文"] = ( arabic_to_chinese_count(result["年数"]) if result.get("年数") is not None else "" ) result["公元中文"] = ( arabic_to_chinese_year(result["公元"]) if result.get("公元") is not None else "" ) result["位置"] = {"起始": _utf16_index[start], "结束": _utf16_index[end]} result["原文"] = ''.join(ch for ch in original_text[start:end] if ch not in '[]【】') result["原文(简体)"] = ''.join(ch for ch in simplified_text[start:end] if ch not in '[]【】') results[i] = _finalize_result(result) return results def convert_text(text): results = extract_era_years(text) return results