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"""
Invariant tests for cterdam/city dataset.

Run from dataset root after cloning:
    pip install datasets pytest
    pytest test/test_invariants.py -v

Verifies:
- name field matches lang selection (name_en/ru/zh)
- lang matches region-based language rule
- coordinates are in valid range and present
- all name fields (name_en, name_ru, name_zh) are present
- name_ru has no typographic quotes «»
- no airport words in name_zh
- no duplicate (lat, lon, name_en) groups
- balanced parentheses in all name fields
- code is 3 uppercase letters and unique
- region is a valid code from cterdam/country
- subdiv (when present) is a valid code from cterdam/region
- no whitespace in name fields
- name_en and name_ru start uppercase
- name_zh has no state/country qualifier in parentheses
- name_ru has no admin/region qualifier in parentheses
- name_zh is not a country or US state name (fill errors)
"""

import re
import pytest
from collections import defaultdict
from datasets import load_dataset

# From /home/llz/llz/doc/README.md § Language — the authoritative
# "Language Rule" defining which regions use which primary language.
SLAVIC_REGIONS = {
    'RU', 'UA', 'BY', 'LT', 'LV', 'EE', 'MD', 'GE', 'AM', 'AZ', 'KZ', 'KG',
    'TJ', 'TM', 'UZ', 'AL', 'BG', 'CZ', 'HU', 'PL', 'RO', 'SK', 'BA', 'HR',
    'ME', 'MK', 'RS', 'SI', 'FI',
}

SINOPHONE_REGIONS = {
    'CN', 'HK', 'MO', 'TW', 'KP', 'KR', 'MN', 'JP', 'VN', 'LA', 'MY', 'TH',
    'SG', 'PH', 'MM', 'ID', 'KH', 'BN',
}


def determine_expected_lang(region_code: str) -> str:
    if region_code in SINOPHONE_REGIONS:
        return 'zh'
    if region_code in SLAVIC_REGIONS:
        return 'ru'
    return 'en'


@pytest.fixture(scope="session")
def valid_regions():
    """Valid ISO 3166-1 alpha-2 codes from cterdam/country."""
    ds = load_dataset('cterdam/country', split='train')
    return {r['code'] for r in ds}


@pytest.fixture(scope="session")
def valid_subdivs():
    """Valid ISO 3166-2 codes from cterdam/region."""
    ds = load_dataset('cterdam/region', split='train')
    return {r['code'] for r in ds}


@pytest.fixture(scope="session")
def subdiv_region_map():
    """Map from ISO 3166-2 subdivision code to its parent country code."""
    ds = load_dataset('cterdam/region', split='train')
    return {r['code']: r['region'] for r in ds if r.get('region')}


@pytest.fixture(scope="session")
def dataset():
    """Load dataset from HF Hub."""
    return load_dataset('cterdam/city', split='train')


def test_lang_values_valid(dataset):
    """lang field must be one of: en, ru, zh."""
    invalid = [(i, e['lang']) for i, e in enumerate(dataset) if e.get('lang') not in ('en', 'ru', 'zh')]
    assert invalid == [], f"Invalid lang values: {invalid[:5]}"


def test_name_matches_lang_field(dataset):
    """name field must equal name_en/ru/zh based on lang."""
    lang_to_field = {'en': 'name_en', 'ru': 'name_ru', 'zh': 'name_zh'}
    mismatches = []

    for i, entry in enumerate(dataset):
        name = entry.get('name')
        lang = entry.get('lang')
        if not name or not lang:
            continue

        field_name = lang_to_field.get(lang)
        lang_field_value = entry.get(field_name)

        if name != lang_field_value:
            mismatches.append((i, entry.get('code'), lang, name[:20], lang_field_value[:20] if lang_field_value else None))
            if len(mismatches) >= 5:
                break

    assert mismatches == [], f"Name/lang field mismatches: {mismatches}"


def test_lang_matches_region(dataset):
    """lang field must match the region's language rule."""
    mismatches = []

    for i, entry in enumerate(dataset):
        region = entry.get('region') or ''
        lang = entry.get('lang')
        expected = determine_expected_lang(region)

        if lang != expected:
            mismatches.append((i, entry.get('code'), region, lang, expected))
            if len(mismatches) >= 5:
                break

    assert mismatches == [], f"Lang mismatches: {mismatches}"


def test_coordinates_valid(dataset):
    """Coordinates must be valid (lat: -90..90, lon: -180..180)."""
    invalid = [
        (i, e['code'], e.get('lat'), e.get('lon'))
        for i, e in enumerate(dataset)
        if (e.get('lat') is not None and (e['lat'] < -90 or e['lat'] > 90)) or
           (e.get('lon') is not None and (e['lon'] < -180 or e['lon'] > 180))
    ]
    assert invalid == [], f"Invalid coordinates: {invalid[:5]}"


def test_all_coords_present(dataset):
    """Every row must have both lat and lon."""
    missing = [
        (e['code'], e.get('name_en'))
        for e in dataset
        if e.get('lat') is None or e.get('lon') is None
    ]
    assert missing == [], f"Null coordinates: {missing}"


def test_no_duplicate_metro_rows(dataset):
    """No two rows may share the same (lat, lon, name_en) — one row per metro."""
    groups = defaultdict(list)
    for e in dataset:
        lat, lon, en = e.get('lat'), e.get('lon'), e.get('name_en') or ''
        if lat is not None and lon is not None and en:
            groups[(lat, lon, en)].append(e['code'])
    dups = {k: v for k, v in groups.items() if len(v) > 1}
    assert dups == {}, f"Duplicate (lat, lon, name_en) groups: {dict(list(dups.items())[:5])}"


def test_all_name_fields_present(dataset):
    """name_en, name_ru, and name_zh must all be non-null."""
    for field in ('name_en', 'name_ru', 'name_zh'):
        missing = [(e['code'], field) for e in dataset if not e.get(field)]
        assert missing == [], f"Missing {field}: {missing[:10]}"


def test_no_typographic_quotes_in_ru(dataset):
    """name_ru must not contain typographic quotes «»."""
    bad = [(e['code'], e['name_ru']) for e in dataset
           if e.get('name_ru') and re.search(r'[«»]', e['name_ru'])]
    assert bad == [], f"name_ru with «» quotes: {bad[:10]}"


_AIRPORT_ZH = re.compile(r'機場|机場|机场|空港|航空')

# State/country qualifier words that must not appear in name_zh parentheticals
_ZH_QUALIFIER_WORDS = [
    # US states
    '阿拉巴馬州', '亞拉巴馬州', '阿拉斯加州', '亞利桑那州', '阿肯色州',
    '加利福尼亞州', '加州', '科羅拉多州', '康涅狄格州', '特拉華州',
    '佛羅裡達州', '佛羅里達州', '喬治亞州', '夏威夷州', '愛達荷州',
    '伊利諾伊州', '伊利諾州', '印第安納州', '印第安那州', '愛荷華州',
    '堪薩斯州', '肯塔基州', '路易斯安那州', '路易斯安納州', '緬因州',
    '馬裡蘭州', '馬里蘭州', '馬薩諸塞州', '麻薩諸塞州', '密歇根州',
    '密西根州', '明尼蘇達州', '密西西比州', '密蘇裡州', '密蘇里州',
    '蒙大拿州', '內布拉斯加州', '內華達州', '新罕布什爾州', '新澤西州',
    '新墨西哥州', '紐約州', '北卡羅來納州', '北卡羅萊納州', '北達科他州',
    '俄亥俄州', '俄克拉荷馬州', '俄勒岡州', '奧勒岡州', '賓夕法尼亞州',
    '羅德島州', '羅得島州', '南卡羅來納州', '南卡羅萊納州', '南達科他州',
    '田納西州', '德克薩斯州', '德州', '猶他州', '佛蒙特州', '弗吉尼亞州',
    '維吉尼亞州', '華盛頓州', '西弗吉尼亞州', '威斯康星州', '懷俄明州',
    # Canadian provinces
    '不列顛哥倫比亞', '阿爾伯塔省', '艾伯塔省', '薩斯喀徹溫', '曼尼托巴',
    '安大略省', '魁北克', '紐芬蘭-拉布拉多', '紐芬蘭', '新不倫瑞克省',
    '新斯科舍', '愛德華王子島', '育空', '西北地區', '努納武特',
    # Countries
    '加拿大', '美國', '巴西', '墨西哥', '阿根廷', '巴拉圭', '哥倫比亞',
    '土耳其', '安圭拉', '多明尼加', '哥斯大黎加', '巴哈馬', '厄瓜多',
    '塔斯馬尼亞州', '俄羅斯', '法國', '德國', '英國', '蘇格蘭', '澳大利亞',
    '美屬維爾京群島', '挪威', '中國', '日本', '韓國', '印度', '伊朗',
    # Russian regions
    '漢特-曼西自治區',
]
_ZH_QUAL_RE = re.compile(
    r'[((](?:[^))]*?(?:' +
    '|'.join(re.escape(w) for w in _ZH_QUALIFIER_WORDS) +
    r')[^))]*?)[))]'
)

# Admin/region qualifiers that must not appear in name_ru parentheticals
_RU_QUAL_RE = re.compile(
    r'\s*\((?:'
    r'Аляска|Канзас|Нью-Йорк|Флорида|Канада|Сеара'
    r'|Шотландия|Северная Каролина|Колумбия|Айова'
    r'|Британская Колумбия|Ньюфаундленд и Лабрадор'
    r'|провинция Антике|Якутия'
    r'|штат Айова|шт\. Айова|г\. Айова'
    r'|остров|деревня|город|село'
    r'|округ|провинция|область'
    r')[^)]*?\)$'
)

_COUNTRY_ZH = {
    '南非', '緬甸', '伊朗', '泰國', '阿曼', '約旦', '加彭', '瑞典',
    '馬達加斯加', '吉里巴斯', '馬紹爾群島', '巴布亞紐幾內亞', '巴布亞',
    '索羅門群島', '斐濟', '衣索比亞', '奈米比亞', '剛果民主共和國',
    '肯亞', '肯尼亞', '巴基斯坦', '俄羅斯', '加拿大', '美國', '美国',
    '澳大利亞', '澳洲', '英國', '法國', '德國', '中國', '印度',
    '意大利', '義大利', '西班牙', '希臘', '土耳其', '埃及',
    '尼日利亞', '墨西哥', '巴西', '阿根廷', '智利', '波蘭',
    '比利時', '荷蘭', '丹麥', '挪威', '芬蘭', '韓國', '日本',
    '新西蘭', '紐西蘭', '越南', '印尼', '印度尼西亞', '馬來西亞',
    '菲律賓',
}

_STATE_ZH = {
    '阿拉巴馬州', '阿拉斯加州', '亞利桑那州', '阿肯色州', '加利福尼亞州',
    '科羅拉多州', '康涅狄格州', '特拉華州', '佛羅里達州', '喬治亞州',
    '佐治亞州', '夏威夷州', '愛達荷州', '伊利諾伊州', '印第安納州',
    '愛荷華州', '堪薩斯州', '肯塔基州', '路易斯安那州', '緬因州',
    '馬裡蘭州', '馬里蘭州', '馬薩諸塞州', '密歇根州', '明尼蘇達州',
    '密西西比州', '密蘇里州', '蒙大拿州', '內布拉斯加州', '內華達州',
    '新罕布什爾州', '新澤西州', '新墨西哥州', '紐約州', '北卡羅來納州',
    '北達科他州', '俄亥俄州', '俄克拉荷馬州', '俄勒岡州', '賓夕法尼亞州',
    '羅得島州', '南卡羅來納州', '南達科他州', '田納西州', '德克薩斯州',
    '猶他州', '佛蒙特州', '弗吉尼亞州', '華盛頓州', '西弗吉尼亞州',
    '威斯康星州', '懷俄明州',
}


def test_no_airport_words_in_zh(dataset):
    """name_zh must not contain airport/aviation words like 機場 or 航空."""
    bad = [(e['code'], e['name_zh']) for e in dataset
           if e.get('name_zh') and _AIRPORT_ZH.search(e['name_zh'])]
    assert bad == [], f"name_zh with airport word: {bad[:10]}"


def test_balanced_parentheses(dataset):
    """All name fields and alt lists must have balanced ASCII and fullwidth parentheses."""
    bad = []
    for e in dataset:
        for field in ('name', 'name_en', 'name_ru', 'name_zh'):
            v = e.get(field) or ''
            if v.count('(') != v.count(')') or v.count('(') != v.count(')'):
                bad.append((e['code'], field, v))
        for field in ('names_en_alt', 'names_ru_alt', 'names_zh_alt'):
            for v in (e.get(field) or []):
                if v.count('(') != v.count(')') or v.count('(') != v.count(')'):
                    bad.append((e['code'], field, v))
    assert bad == [], f"Unmatched parentheses: {bad[:5]}"


_CODE_RE = re.compile(r'^[A-Z]{3}$')


def test_code_format(dataset):
    """code must be exactly 3 uppercase ASCII letters."""
    bad = [(e['code'],) for e in dataset if not _CODE_RE.match(e.get('code') or '')]
    assert bad == [], f"Malformed codes: {bad[:10]}"


def test_code_unique(dataset):
    """Every IATA code must appear exactly once."""
    seen = defaultdict(int)
    for e in dataset:
        seen[e['code']] += 1
    dups = {c: n for c, n in seen.items() if n > 1}
    assert dups == {}, f"Duplicate codes: {dups}"


def test_region_valid(dataset, valid_regions):
    """region must be a valid ISO 3166-1 alpha-2 code per cterdam/country."""
    bad = [(e['code'], e['region']) for e in dataset
           if e.get('region') and e['region'] not in valid_regions]
    assert bad == [], f"Invalid region codes: {bad[:10]}"


def test_subdiv_valid(dataset, valid_subdivs):
    """subdiv, when present, must be a valid ISO 3166-2 code per cterdam/region."""
    bad = [(e['code'], e['subdiv']) for e in dataset
           if e.get('subdiv') and e['subdiv'] not in valid_subdivs]
    assert bad == [], f"Invalid subdiv codes: {bad[:10]}"


def test_no_whitespace_in_names(dataset):
    """No name field may have leading or trailing whitespace."""
    bad = []
    for e in dataset:
        for field in ('name', 'name_en', 'name_ru', 'name_zh'):
            v = e.get(field)
            if v and v != v.strip():
                bad.append((e['code'], field, repr(v)))
    assert bad == [], f"Whitespace in name fields: {bad[:10]}"


def test_name_en_starts_uppercase(dataset):
    """name_en and names_en_alt must not start with a lowercase letter."""
    bad = [(e['code'], v) for e in dataset
           for v in [e.get('name_en')] + list(e.get('names_en_alt') or [])
           if v and v[0].islower()]
    assert bad == [], f"name_en/alts starting lowercase: {bad[:10]}"


def test_name_ru_starts_uppercase(dataset):
    """name_ru and names_ru_alt must not start with a lowercase character."""
    bad = [(e['code'], v) for e in dataset
           for v in [e.get('name_ru')] + list(e.get('names_ru_alt') or [])
           if v and v[0].islower()]
    assert bad == [], f"name_ru/alts starting lowercase: {bad[:10]}"


def test_subdiv_matches_region(dataset, subdiv_region_map, valid_subdivs):
    """subdiv's parent country in iso_3166-2 must match the row's region.

    Overseas territories are exempt: they carry their own ISO 3166-1 alpha-2
    code as region but their subdivisions are recorded under the administrative
    parent (e.g. French Polynesia region=PF, subdiv=FR-PF; Guadeloupe
    region=GP, subdiv=FR-971).  We skip a mismatch when either the canonical
    territory subdiv code (parent+'-'+region) exists in iso_3166-2, or the
    (region, parent) pair is a known territory-to-parent mapping.
    """
    # Territories whose ISO 3166-2 code uses a non-alpha suffix (numeric etc.)
    TERRITORY_PARENTS = {
        'GP': 'FR',  # Guadeloupe       FR-971
        'GF': 'FR',  # French Guiana    FR-973
        'MQ': 'FR',  # Martinique       FR-972
        'RE': 'FR',  # Réunion          FR-974
        'YT': 'FR',  # Mayotte          FR-976
        'BQ': 'NL',  # Caribbean NL     NL-BQ1/BQ2
        'SJ': 'NO',  # Svalbard         NO-21
        'AX': 'FI',  # Åland            FI-01
        'XK': 'RS',  # Kosovo           RS-25
        'KX': 'UA',  # Crimea (non-std) UA-*
    }
    bad = []
    for e in dataset:
        subdiv = e.get('subdiv')
        region = e.get('region')
        if subdiv and region:
            expected = subdiv_region_map.get(subdiv)
            if expected and expected != region:
                if TERRITORY_PARENTS.get(region) == expected:
                    continue
                if (expected + '-' + region) in valid_subdivs:
                    continue
                bad.append((e['code'], region, subdiv, expected))
    assert bad == [], f"Subdiv/region mismatch: {bad[:10]}"


def test_no_null_island(dataset):
    """No entry may have lat=0.0 and lon=0.0 simultaneously."""
    bad = [(e['code'], e.get('name_en')) for e in dataset
           if e.get('lat') == 0.0 and e.get('lon') == 0.0]
    assert bad == [], f"Null Island coordinates: {bad}"


def test_links_are_urls(dataset):
    """Each link, when present, must be an http:// or https:// URL."""
    bad = []
    for e in dataset:
        for link in (e.get('links') or []):
            if not (link.startswith('http://') or link.startswith('https://')):
                bad.append((e['code'], link))
    assert bad == [], f"Non-URL links: {bad[:10]}"


def test_no_newlines_in_names(dataset):
    """Name fields must not contain newline or tab characters."""
    bad = []
    for e in dataset:
        for field in ('name', 'name_en', 'name_ru', 'name_zh'):
            v = e.get(field) or ''
            if any(c in v for c in ('\n', '\r', '\t')):
                bad.append((e['code'], field))
    assert bad == [], f"Newlines/tabs in name fields: {bad[:10]}"


def test_name_zh_only_cjk_letters(dataset):
    """All letter chars in name_zh and names_zh_alt must be CJK."""
    bad = []
    for e in dataset:
        for v in [e.get('name_zh')] + list(e.get('names_zh_alt') or []):
            if not v:
                continue
            foreign = [c for c in v if c.isalpha() and not (
                '㐀' <= c <= '鿿' or '豈' <= c <= '﫿'
            )]
            if foreign:
                bad.append((e['code'], v, foreign))
    assert bad == [], f"name_zh/alts with non-CJK letters: {bad[:10]}"


def test_name_ru_only_cyrillic_letters(dataset):
    """All letter chars in name_ru and names_ru_alt must be Cyrillic."""
    bad = []
    for e in dataset:
        for v in [e.get('name_ru')] + list(e.get('names_ru_alt') or []):
            if not v:
                continue
            foreign = [c for c in v if c.isalpha() and not ('Ѐ' <= c <= 'ӿ')]
            if foreign:
                bad.append((e['code'], v, foreign))
    assert bad == [], f"name_ru/alts with non-Cyrillic letters: {bad[:10]}"


def test_no_double_spaces_in_names(dataset):
    """Name fields must not contain consecutive spaces."""
    bad = []
    for e in dataset:
        for field in ('name', 'name_en', 'name_ru', 'name_zh'):
            v = e.get(field) or ''
            if '  ' in v:
                bad.append((e['code'], field, repr(v)))
    assert bad == [], f"Double spaces in name fields: {bad[:10]}"


def test_name_en_no_trailing_punctuation(dataset):
    """name_en and names_en_alt must not end with . , ; : ! ?"""
    bad = [(e['code'], v) for e in dataset
           for v in [e.get('name_en')] + list(e.get('names_en_alt') or [])
           if v and v[-1] in '.,;:!?']
    assert bad == [], f"name_en/alts with trailing punctuation: {bad[:10]}"


def test_no_duplicate_names_within_entry(dataset):
    """All name values across all name fields of a row must be unique."""
    bad = []
    for e in dataset:
        all_names = []
        for field in ('name_en', 'name_ru', 'name_zh'):
            v = e.get(field)
            if v:
                all_names.append(v)
        for field in ('names_en_alt', 'names_ru_alt', 'names_zh_alt', 'names_other'):
            for v in (e.get(field) or []):
                if v:
                    all_names.append(v)
        seen = set()
        for n in all_names:
            if n in seen:
                bad.append((e['code'], repr(n)))
                break
            seen.add(n)
    assert bad == [], f"Duplicate names within entry: {bad[:10]}"


def test_subdiv_prefix_matches_region(dataset, subdiv_region_map, valid_subdivs):
    """subdiv must start with region+'-', except for overseas territories."""
    TERRITORY_PARENTS = {
        'GP': 'FR', 'GF': 'FR', 'MQ': 'FR', 'RE': 'FR', 'YT': 'FR',
        'BQ': 'NL', 'SJ': 'NO', 'AX': 'FI', 'XK': 'RS', 'KX': 'UA',
    }
    bad = []
    for e in dataset:
        subdiv = e.get('subdiv')
        region = e.get('region')
        if not subdiv or not region:
            continue
        if subdiv.startswith(region + '-'):
            continue
        parent = subdiv_region_map.get(subdiv)
        if parent and (TERRITORY_PARENTS.get(region) == parent or
                       (parent + '-' + region) in valid_subdivs):
            continue
        bad.append((e['code'], region, subdiv))
    assert bad == [], f"Subdiv prefix mismatch: {bad[:10]}"


def test_no_duplicate_links(dataset):
    """No URL may appear twice in a row's links list."""
    bad = []
    for e in dataset:
        links = e.get('links') or []
        seen = set()
        dups = []
        for link in links:
            if link in seen:
                dups.append(link)
            seen.add(link)
        if dups:
            bad.append((e['code'], dups))
    assert bad == [], f"Duplicate links: {bad[:10]}"


def test_alt_lists_no_airport_words_zh(dataset):
    """names_zh_alt items must not contain airport/aviation words."""
    bad = []
    for e in dataset:
        for v in (e.get('names_zh_alt') or []):
            if _AIRPORT_ZH.search(v):
                bad.append((e['code'], v))
    assert bad == [], f"names_zh_alt with airport words: {bad[:10]}"


def test_name_en_not_allcaps(dataset):
    """name_en and names_en_alt must not be written in ALL CAPS."""
    bad = [(e['code'], v) for e in dataset
           for v in [e.get('name_en')] + list(e.get('names_en_alt') or [])
           if v and v == v.upper() and v.replace(' ', '').replace('-', '').isalpha()]
    assert bad == [], f"name_en/alts in ALL CAPS: {bad[:10]}"


def test_name_en_no_cjk_or_cyrillic(dataset):
    """name_en and names_en_alt must not contain CJK or Cyrillic characters."""
    bad = [(e['code'], v) for e in dataset
           for v in [e.get('name_en')] + list(e.get('names_en_alt') or [])
           if v and any(
               '㐀' <= c <= '鿿' or '豈' <= c <= '﫿' or 'Ѐ' <= c <= 'ӿ'
               for c in v
           )]
    assert bad == [], f"name_en/alts with CJK or Cyrillic: {bad[:10]}"


def test_subdiv_not_empty_string(dataset):
    """subdiv must be null when absent, not an empty string."""
    bad = [(e['code'],) for e in dataset if e.get('subdiv') == '']
    assert bad == [], f"subdiv is empty string: {bad[:10]}"


def test_no_ideographic_space(dataset):
    """No name field may contain the ideographic space (U+3000)."""
    bad = []
    for e in dataset:
        for field in ('name', 'name_en', 'name_ru', 'name_zh'):
            v = e.get(field) or ''
            if ' ' in v:
                bad.append((e['code'], field))
        for field in ('names_en_alt', 'names_ru_alt', 'names_zh_alt'):
            for v in (e.get(field) or []):
                if ' ' in v:
                    bad.append((e['code'], field))
    assert bad == [], f"Ideographic space in names: {bad[:10]}"


def test_name_zh_no_state_country_parenthetical(dataset):
    """name_zh must not contain state/country qualifiers in parentheses."""
    bad = [(e['code'], e['name_zh']) for e in dataset
           if e.get('name_zh') and _ZH_QUAL_RE.search(e['name_zh'])]
    assert bad == [], f"name_zh with state/country parenthetical: {bad[:10]}"


def test_name_ru_no_admin_parenthetical(dataset):
    """name_ru must not contain admin/region qualifiers in parentheses."""
    bad = [(e['code'], e['name_ru']) for e in dataset
           if e.get('name_ru') and _RU_QUAL_RE.search(e['name_ru'])]
    assert bad == [], f"name_ru with admin parenthetical: {bad[:10]}"


def test_name_zh_not_country_name(dataset):
    """name_zh must not be a bare country name (indicates country-fill error)."""
    bad = [(e['code'], e['name_zh'], e.get('name_en')) for e in dataset
           if e.get('name_zh') in _COUNTRY_ZH]
    assert bad == [], f"name_zh is a country name: {bad[:10]}"


def test_name_zh_not_us_state_name(dataset):
    """name_zh must not be a US state name (indicates state-fill error)."""
    bad = [(e['code'], e['name_zh'], e.get('name_en')) for e in dataset
           if e.get('name_zh') in _STATE_ZH]
    assert bad == [], f"name_zh is a US state name: {bad[:10]}"