whenparse 0.1.0

Parse natural-language dates and times (English + Russian) into jiff types.
Documentation
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//! Parse natural-language dates and times (English + Russian) into `jiff` types.
//!
//! ```
//! use jiff::Zoned;
//! use whenparse::{parse_with, When};
//!
//! let now = Zoned::now();
//! assert!(matches!(parse_with("next friday", &now), Ok(When::Date(_))));
//! assert!(matches!(parse_with("через 2 недели", &now), Ok(When::Date(_))));
//! assert!(matches!(parse_with("2h30m", &now), Ok(When::Duration(_))));
//! ```

use jiff::civil::{date, Date, Weekday};
use jiff::tz::TimeZone;
use jiff::{Span, Zoned};

#[derive(Debug, Clone)]
pub enum When {
    Date(Date),
    DateTime(Zoned),
    Range { start: Zoned, end: Zoned },
    Duration(Span),
}

impl PartialEq for When {
    fn eq(&self, other: &Self) -> bool {
        match (self, other) {
            (When::Date(a), When::Date(b)) => a == b,
            (When::DateTime(a), When::DateTime(b)) => a == b,
            (When::Range { start: s1, end: e1 }, When::Range { start: s2, end: e2 }) => {
                s1 == s2 && e1 == e2
            }
            // Spans have no canonical PartialEq (1h vs 60min); compare fieldwise.
            (When::Duration(a), When::Duration(b)) => a.fieldwise() == b.fieldwise(),
            _ => false,
        }
    }
}

#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
pub enum Lang {
    #[default]
    Auto,
    En,
    Ru,
}

#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
pub enum Dialect {
    #[default]
    Intl,
    Us,
}

#[derive(Debug, Clone, Copy)]
pub struct Options {
    pub lang: Lang,
    pub dialect: Dialect,
    pub week_start: Weekday,
}

impl Default for Options {
    fn default() -> Self {
        Self {
            lang: Lang::Auto,
            dialect: Dialect::Intl,
            week_start: Weekday::Monday,
        }
    }
}

#[derive(Debug, Clone, PartialEq, Eq)]
pub enum ParseError {
    Unrecognized,
    OutOfRange,
}

impl std::fmt::Display for ParseError {
    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
        match self {
            ParseError::Unrecognized => f.write_str("unrecognized date/time expression"),
            ParseError::OutOfRange => f.write_str("date/time out of representable range"),
        }
    }
}

impl std::error::Error for ParseError {}

use ParseError::{OutOfRange as OOR, Unrecognized as UNK};

/// Parse `input` relative to the anchor `now`. The anchor is always explicit so
/// results are deterministic and testable.
pub fn parse(input: &str, now: &Zoned, opts: Options) -> Result<When, ParseError> {
    let toks = lex(input);
    if toks.iter().any(|t| matches!(t, Tok::Unknown)) {
        return iso(input);
    }
    match parse_expr(&toks) {
        Some(expr) => resolve(&expr, now, opts),
        None => iso(input),
    }
}

/// Convenience wrapper over [`parse`] with default [`Options`].
pub fn parse_with(input: &str, now: &Zoned) -> Result<When, ParseError> {
    parse(input, now, Options::default())
}

fn iso(input: &str) -> Result<When, ParseError> {
    let s = input.trim();
    if let Ok(z) = s.parse::<Zoned>() {
        return Ok(When::DateTime(z));
    }
    if let Ok(d) = s.parse::<Date>() {
        return Ok(When::Date(d));
    }
    Err(UNK)
}

// ---------------------------------------------------------------------------
// Tokens
// ---------------------------------------------------------------------------

#[derive(Debug, Clone, Copy, PartialEq)]
enum Unit {
    Day,
    Week,
    Month,
    Year,
    Hour,
    Minute,
    Second,
}

#[derive(Debug, Clone, Copy, PartialEq)]
enum Meridiem {
    Am,
    Pm,
}

#[derive(Debug, Clone, Copy, PartialEq)]
enum Tok {
    Num(i64),
    Named(i64), // today=0, tomorrow=1, yesterday=-1, +/-2
    Unit(Unit),
    Weekday(Weekday),
    Month(i8),
    Quarter(i8),
    NumDate(i64, i64, i64, bool), // a, b, c, dotted (EU d.m.y) vs slashed
    Clock(i8, i8, Option<Meridiem>),
    Meridiem(Meridiem),
    Noon,
    Midnight,
    In,
    Ago,
    Next,
    Last,
    This,
    At,
    Unknown,
}

fn lex(input: &str) -> Vec<Tok> {
    let lowered = input.trim().to_lowercase().replace(',', " ");
    let mut out = Vec::new();
    for w in lowered.split_whitespace() {
        if let Some(mut sub) = compact_duration(w) {
            out.append(&mut sub);
        } else if let Some(t) = classify(w) {
            out.push(t);
        }
    }
    out
}

/// Expand compact durations like `2h30m` / `2ч30м` into Num/Unit token pairs.
/// Returns None unless the whole word is one or more `<digits><unit-letter>` groups.
fn compact_duration(w: &str) -> Option<Vec<Tok>> {
    let mut chars = w.chars().peekable();
    let mut out = Vec::new();
    while chars.peek().is_some() {
        let mut num = String::new();
        while chars.peek().is_some_and(|c| c.is_ascii_digit()) {
            num.push(chars.next().unwrap());
        }
        if num.is_empty() {
            return None;
        }
        let mut letters = String::new();
        while chars.peek().is_some_and(|c| c.is_alphabetic()) {
            letters.push(chars.next().unwrap());
        }
        let unit = compact_unit(&letters)?;
        out.push(Tok::Num(num.parse().ok()?));
        out.push(Tok::Unit(unit));
    }
    (!out.is_empty()).then_some(out)
}

fn compact_unit(s: &str) -> Option<Unit> {
    Some(match s {
        "d" | "дн" | "д" => Unit::Day,
        "w" | "н" => Unit::Week,
        "h" | "ч" => Unit::Hour,
        "m" | "м" => Unit::Minute,
        "s" | "с" => Unit::Second,
        _ => return None,
    })
}

fn classify(w: &str) -> Option<Tok> {
    if matches!(w, "on" | "the" | "of" | "в" | "во" | "на" | "к" | "тому") {
        return None;
    }
    if let Ok(n) = w.parse::<i64>() {
        return Some(Tok::Num(n));
    }
    if let Some(n) = ordinal(w) {
        return Some(Tok::Num(n));
    }
    if let Some(t) = numdate_tok(w) {
        return Some(t);
    }
    if let Some(t) = time_tok(w) {
        return Some(t);
    }
    if let Some(t) = ru_word(w) {
        return Some(t);
    }
    let tok = match w {
        "today" | "tonight" | "сегодня" => Tok::Named(0),
        "tomorrow" | "завтра" => Tok::Named(1),
        "yesterday" | "вчера" => Tok::Named(-1),
        "послезавтра" => Tok::Named(2),
        "позавчера" => Tok::Named(-2),
        "in" | "within" => Tok::In,
        "ago" => Tok::Ago,
        "next" => Tok::Next,
        "last" | "previous" => Tok::Last,
        "this" | "coming" => Tok::This,
        "at" => Tok::At,
        "noon" | "midday" => Tok::Noon,
        "midnight" => Tok::Midnight,
        "am" => Tok::Meridiem(Meridiem::Am),
        "pm" => Tok::Meridiem(Meridiem::Pm),
        "a" | "an" => Tok::Num(1),
        "day" | "days" => Tok::Unit(Unit::Day),
        "week" | "weeks" | "wk" => Tok::Unit(Unit::Week),
        "month" | "months" | "mo" => Tok::Unit(Unit::Month),
        "year" | "years" | "yr" => Tok::Unit(Unit::Year),
        "hour" | "hours" | "hr" | "hrs" => Tok::Unit(Unit::Hour),
        "minute" | "minutes" | "min" | "mins" => Tok::Unit(Unit::Minute),
        "second" | "seconds" | "sec" | "secs" => Tok::Unit(Unit::Second),
        "monday" | "mon" => Tok::Weekday(Weekday::Monday),
        "tuesday" | "tue" | "tues" => Tok::Weekday(Weekday::Tuesday),
        "wednesday" | "wed" => Tok::Weekday(Weekday::Wednesday),
        "thursday" | "thu" | "thur" | "thurs" => Tok::Weekday(Weekday::Thursday),
        "friday" | "fri" => Tok::Weekday(Weekday::Friday),
        "saturday" | "sat" => Tok::Weekday(Weekday::Saturday),
        "sunday" | "sun" => Tok::Weekday(Weekday::Sunday),
        "january" | "jan" => Tok::Month(1),
        "february" | "feb" => Tok::Month(2),
        "march" | "mar" => Tok::Month(3),
        "april" | "apr" => Tok::Month(4),
        "may" => Tok::Month(5),
        "june" | "jun" => Tok::Month(6),
        "july" | "jul" => Tok::Month(7),
        "august" | "aug" => Tok::Month(8),
        "september" | "sep" | "sept" => Tok::Month(9),
        "october" | "oct" => Tok::Month(10),
        "november" | "nov" => Tok::Month(11),
        "december" | "dec" => Tok::Month(12),
        "q1" => Tok::Quarter(1),
        "q2" => Tok::Quarter(2),
        "q3" => Tok::Quarter(3),
        "q4" => Tok::Quarter(4),
        _ => match number_word(w) {
            Some(n) => Tok::Num(n),
            None => Tok::Unknown,
        },
    };
    Some(tok)
}

fn ordinal(w: &str) -> Option<i64> {
    for suf in ["st", "nd", "rd", "th"] {
        if let Some(p) = w.strip_suffix(suf) {
            if !p.is_empty() && p.bytes().all(|b| b.is_ascii_digit()) {
                return p.parse().ok();
            }
        }
    }
    None
}

fn numdate_tok(w: &str) -> Option<Tok> {
    for (sep, dotted) in [('/', false), ('.', true)] {
        if !w.contains(sep) {
            continue;
        }
        let parts: Vec<&str> = w.split(sep).collect();
        let numeric = parts.len() == 3
            && parts
                .iter()
                .all(|p| !p.is_empty() && p.bytes().all(|b| b.is_ascii_digit()));
        if numeric {
            let a = parts[0].parse().ok()?;
            let b = parts[1].parse().ok()?;
            let c = parts[2].parse().ok()?;
            return Some(Tok::NumDate(a, b, c, dotted));
        }
    }
    None
}

fn ru_word(w: &str) -> Option<Tok> {
    let tok = match w {
        "через" | "спустя" => Tok::In,
        "назад" => Tok::Ago,
        "следующий" | "следующая" | "следующее" | "следующую" | "следующем" | "следующей"
        | "след" | "будущий" | "будущая" | "будущем" | "будущую" => {
            Tok::Next
        }
        "прошлый" | "прошлая" | "прошлое" | "прошлую" | "прошлом" | "прошлой" | "прошедшая"
        | "прошедшую" | "минувшую" => Tok::Last,
        "этот" | "эта" | "это" | "эту" | "этом" | "этой" | "этого" | "текущий" | "текущем" => {
            Tok::This
        }
        "полдень" | "полудень" => Tok::Noon,
        "полночь" | "полуночь" => Tok::Midnight,
        "утра" | "утро" | "утром" | "ночи" => Tok::Meridiem(Meridiem::Am),
        "вечера" | "вечер" | "вечером" => Tok::Meridiem(Meridiem::Pm),
        "день" | "дня" | "дней" | "дни" | "суток" | "сутки" => {
            Tok::Unit(Unit::Day)
        }
        "неделя" | "недели" | "неделю" | "недель" | "неделе" | "неделей" => {
            Tok::Unit(Unit::Week)
        }
        "месяц" | "месяца" | "месяцев" | "месяце" | "месяцы" => {
            Tok::Unit(Unit::Month)
        }
        "год" | "года" | "лет" | "году" | "годов" | "годы" => {
            Tok::Unit(Unit::Year)
        }
        "час" | "часа" | "часов" | "часу" => Tok::Unit(Unit::Hour),
        "минута" | "минуты" | "минут" | "минуту" | "минуте" | "мин" => {
            Tok::Unit(Unit::Minute)
        }
        "секунда" | "секунды" | "секунд" | "секунду" | "сек" => {
            Tok::Unit(Unit::Second)
        }
        "понедельник" | "понедельника" => Tok::Weekday(Weekday::Monday),
        "вторник" | "вторника" => Tok::Weekday(Weekday::Tuesday),
        "среда" | "среду" | "среды" => Tok::Weekday(Weekday::Wednesday),
        "четверг" | "четверга" => Tok::Weekday(Weekday::Thursday),
        "пятница" | "пятницу" | "пятницы" => Tok::Weekday(Weekday::Friday),
        "суббота" | "субботу" | "субботы" => Tok::Weekday(Weekday::Saturday),
        "воскресенье" | "воскресенья" | "воскресение" => {
            Tok::Weekday(Weekday::Sunday)
        }
        "январь" | "января" => Tok::Month(1),
        "февраль" | "февраля" => Tok::Month(2),
        "март" | "марта" => Tok::Month(3),
        "апрель" | "апреля" => Tok::Month(4),
        "май" | "мая" => Tok::Month(5),
        "июнь" | "июня" => Tok::Month(6),
        "июль" | "июля" => Tok::Month(7),
        "август" | "августа" => Tok::Month(8),
        "сентябрь" | "сентября" => Tok::Month(9),
        "октябрь" | "октября" => Tok::Month(10),
        "ноябрь" | "ноября" => Tok::Month(11),
        "декабрь" | "декабря" => Tok::Month(12),
        "один" | "одна" | "одно" | "одну" => Tok::Num(1),
        "два" | "две" => Tok::Num(2),
        "три" => Tok::Num(3),
        "четыре" => Tok::Num(4),
        "пять" => Tok::Num(5),
        "шесть" => Tok::Num(6),
        "семь" => Tok::Num(7),
        "восемь" => Tok::Num(8),
        "девять" => Tok::Num(9),
        "десять" => Tok::Num(10),
        "одиннадцать" => Tok::Num(11),
        "двенадцать" => Tok::Num(12),
        _ => return None,
    };
    Some(tok)
}

fn number_word(w: &str) -> Option<i64> {
    Some(match w {
        "one" => 1,
        "two" => 2,
        "three" => 3,
        "four" => 4,
        "five" => 5,
        "six" => 6,
        "seven" => 7,
        "eight" => 8,
        "nine" => 9,
        "ten" => 10,
        "eleven" => 11,
        "twelve" => 12,
        _ => return None,
    })
}

fn time_tok(w: &str) -> Option<Tok> {
    let (core, mer) = if let Some(s) = w.strip_suffix("pm") {
        (s, Some(Meridiem::Pm))
    } else if let Some(s) = w.strip_suffix("am") {
        (s, Some(Meridiem::Am))
    } else {
        (w, None)
    };
    if let Some((hs, ms)) = core.split_once(':') {
        let h = hs.parse::<i8>().ok()?;
        let m = ms.parse::<i8>().ok()?;
        if (0..=23).contains(&h) && (0..=59).contains(&m) {
            return Some(Tok::Clock(h, m, mer));
        }
        return None;
    }
    if mer.is_some() && !core.is_empty() && core.bytes().all(|b| b.is_ascii_digit()) {
        let h = core.parse::<i8>().ok()?;
        if (0..=23).contains(&h) {
            return Some(Tok::Clock(h, 0, mer));
        }
    }
    None
}

// ---------------------------------------------------------------------------
// Grammar
// ---------------------------------------------------------------------------

#[derive(Debug, Clone, Copy)]
enum WeekRel {
    Coming,
    Next,
    Last,
    This,
}

#[derive(Debug, Clone)]
enum Expr {
    DayOffset(i64),
    Offset(i64, Unit),
    Weekday(Weekday, WeekRel),
    Period(i64, Unit),
    Clock(i8, i8, Option<Meridiem>),
    At(Box<Expr>, Box<Expr>),
    NumDate(i64, i64, i64, bool),
    Ymd(i64, i8, i64), // year, month, day
    MonthDay(i8, i64),
    MonthNum(i8, i64), // month, then day-or-year (disambiguated at resolve time)
    MonthWhole(i8),
    Quarter(i8, Option<i64>),
    Duration(Vec<(i64, Unit)>),
}

fn parse_expr(toks: &[Tok]) -> Option<Expr> {
    if toks.is_empty() {
        return None;
    }
    if let Some((date_len, clock)) = split_trailing_clock(toks) {
        if date_len == 0 {
            return Some(clock);
        }
        let d = parse_date_expr(&toks[..date_len])?;
        return Some(Expr::At(Box::new(d), Box::new(clock)));
    }
    if let Some(d) = parse_duration(toks) {
        return Some(d);
    }
    parse_date_expr(toks)
}

/// A run of `<number> <unit>` pairs with no relative marker is a bare duration
/// (e.g. `3 hours 20 minutes`), distinct from an anchored offset (`in 3 hours`).
fn parse_duration(toks: &[Tok]) -> Option<Expr> {
    if toks.is_empty() || !toks.len().is_multiple_of(2) {
        return None;
    }
    let mut parts = Vec::new();
    for pair in toks.chunks_exact(2) {
        match pair {
            [Tok::Num(n), Tok::Unit(u)] => parts.push((*n, *u)),
            _ => return None,
        }
    }
    Some(Expr::Duration(parts))
}

/// Peel an optional trailing time-of-day, returning the length of the leading
/// date portion and the clock expression.
fn split_trailing_clock(toks: &[Tok]) -> Option<(usize, Expr)> {
    let n = toks.len();
    let (core_end, mer) = match toks[n - 1] {
        Tok::Meridiem(m) => (n - 1, Some(m)),
        _ => (n, None),
    };
    if core_end == 0 {
        return None;
    }
    let (h, m, cmer, core_start) = match toks[core_end - 1] {
        Tok::Noon => (12, 0, None, core_end - 1),
        Tok::Midnight => (0, 0, None, core_end - 1),
        Tok::Clock(h, m, cm) => (h, m, cm.or(mer), core_end - 1),
        Tok::Num(v) if (0..=23).contains(&v) => (v as i8, 0, mer, core_end - 1),
        _ => return None,
    };
    let preceded_by_at = core_start > 0 && toks[core_start - 1] == Tok::At;
    let justified = mer.is_some()
        || matches!(toks[core_start], Tok::Clock(..) | Tok::Noon | Tok::Midnight)
        || preceded_by_at;
    if !justified {
        return None;
    }
    let date_len = if preceded_by_at {
        core_start - 1
    } else {
        core_start
    };
    Some((date_len, Expr::Clock(h, m, cmer)))
}

fn parse_date_expr(toks: &[Tok]) -> Option<Expr> {
    match toks {
        [Tok::Named(n)] => Some(Expr::DayOffset(*n)),
        [Tok::In, Tok::Num(n), Tok::Unit(u)] => Some(Expr::Offset(*n, *u)),
        [Tok::In, Tok::Unit(u)] => Some(Expr::Offset(1, *u)),
        [Tok::Num(n), Tok::Unit(u), Tok::Ago] => Some(Expr::Offset(-(*n), *u)),
        [Tok::Unit(u), Tok::Ago] => Some(Expr::Offset(-1, *u)),
        [Tok::Next, Tok::Weekday(w)] => Some(Expr::Weekday(*w, WeekRel::Next)),
        [Tok::Last, Tok::Weekday(w)] => Some(Expr::Weekday(*w, WeekRel::Last)),
        [Tok::This, Tok::Weekday(w)] => Some(Expr::Weekday(*w, WeekRel::This)),
        [Tok::Weekday(w)] => Some(Expr::Weekday(*w, WeekRel::Coming)),
        [Tok::Next, Tok::Unit(u)] if is_period(*u) => Some(Expr::Period(1, *u)),
        [Tok::Last, Tok::Unit(u)] if is_period(*u) => Some(Expr::Period(-1, *u)),
        [Tok::This, Tok::Unit(u)] if is_period(*u) => Some(Expr::Period(0, *u)),
        [Tok::NumDate(a, b, c, dotted)] => Some(Expr::NumDate(*a, *b, *c, *dotted)),
        [Tok::Num(d), Tok::Month(m), Tok::Num(y)] => Some(Expr::Ymd(*y, *m, *d)),
        [Tok::Month(m), Tok::Num(d), Tok::Num(y)] => Some(Expr::Ymd(*y, *m, *d)),
        [Tok::Num(d), Tok::Month(m)] => Some(Expr::MonthDay(*m, *d)),
        [Tok::Month(m), Tok::Num(x)] => Some(Expr::MonthNum(*m, *x)),
        [Tok::Month(m)] => Some(Expr::MonthWhole(*m)),
        [Tok::Quarter(q)] => Some(Expr::Quarter(*q, None)),
        [Tok::Quarter(q), Tok::Num(y)] => Some(Expr::Quarter(*q, Some(*y))),
        _ => None,
    }
}

fn is_period(u: Unit) -> bool {
    matches!(u, Unit::Week | Unit::Month | Unit::Year)
}

// ---------------------------------------------------------------------------
// Resolver
// ---------------------------------------------------------------------------

fn resolve(expr: &Expr, now: &Zoned, opts: Options) -> Result<When, ParseError> {
    let today = now.date();
    let tz = now.time_zone().clone();
    match expr {
        Expr::DayOffset(n) => dadd(today, Span::new().days(*n)).map(When::Date),
        Expr::Offset(n, u) => resolve_offset(today, now, *n, *u),
        Expr::Weekday(w, rel) => resolve_weekday(today, *w, *rel, opts.dialect).map(When::Date),
        Expr::Period(n, u) => resolve_period(today, *n, *u, opts.week_start, &tz),
        Expr::Clock(h, m, mer) => {
            let (h, m) = clock24(*h, *m, *mer)?;
            at_time(today, h, m, &tz).map(When::DateTime)
        }
        Expr::At(d, c) => {
            let base = match resolve(d, now, opts)? {
                When::Date(d) => d,
                _ => return Err(UNK),
            };
            let (h, m) = match **c {
                Expr::Clock(h, m, mer) => clock24(h, m, mer)?,
                _ => return Err(UNK),
            };
            at_time(base, h, m, &tz).map(When::DateTime)
        }
        Expr::NumDate(a, b, c, dotted) => {
            resolve_numdate(*a, *b, *c, *dotted, opts.dialect).map(When::Date)
        }
        Expr::Ymd(y, m, d) => mkdate(*y, *m, *d).map(When::Date),
        Expr::MonthDay(m, d) => mkdate(today.year() as i64, *m, *d).map(When::Date),
        Expr::MonthNum(m, x) => {
            if (1..=31).contains(x) {
                mkdate(today.year() as i64, *m, *x).map(When::Date)
            } else {
                month_range(norm_year(*x), *m, &tz)
            }
        }
        Expr::MonthWhole(m) => month_range(today.year() as i64, *m, &tz),
        Expr::Quarter(q, y) => {
            let year = match y {
                Some(v) => norm_year(*v),
                None => today.year() as i64,
            };
            quarter_range(year, *q, &tz)
        }
        Expr::Duration(parts) => Ok(When::Duration(build_span(parts))),
    }
}

fn build_span(parts: &[(i64, Unit)]) -> Span {
    let (mut y, mut mo, mut w, mut d, mut h, mut mi, mut s) = (0i64, 0, 0, 0, 0, 0, 0);
    for (n, u) in parts {
        match u {
            Unit::Year => y += n,
            Unit::Month => mo += n,
            Unit::Week => w += n,
            Unit::Day => d += n,
            Unit::Hour => h += n,
            Unit::Minute => mi += n,
            Unit::Second => s += n,
        }
    }
    Span::new()
        .years(y)
        .months(mo)
        .weeks(w)
        .days(d)
        .hours(h)
        .minutes(mi)
        .seconds(s)
}

fn norm_year(y: i64) -> i64 {
    if (0..100).contains(&y) {
        2000 + y
    } else {
        y
    }
}

fn mkdate(y: i64, m: i8, d: i64) -> Result<Date, ParseError> {
    let y: i16 = y.try_into().map_err(|_| OOR)?;
    let d: i8 = d.try_into().map_err(|_| OOR)?;
    Date::new(y, m, d).map_err(|_| UNK)
}

/// Resolve a numeric date, biasing day/month order by dialect and separator,
/// then auto-correcting an impossible month (e.g. US `3/15/2026` under Intl).
fn resolve_numdate(
    a: i64,
    b: i64,
    c: i64,
    dotted: bool,
    dialect: Dialect,
) -> Result<Date, ParseError> {
    let (year, mut day, mut month) = if a >= 1000 {
        (a, c, b) // yyyy/mm/dd
    } else {
        let year = norm_year(c);
        let (day, month) = if dotted || dialect == Dialect::Intl {
            (a, b) // d.m.y / d/m/y
        } else {
            (b, a) // m/d/y
        };
        (year, day, month)
    };
    if month > 12 && day <= 12 {
        std::mem::swap(&mut day, &mut month);
    }
    let month: i8 = month.try_into().map_err(|_| UNK)?;
    mkdate(year, month, day)
}

fn month_range(y: i64, m: i8, tz: &TimeZone) -> Result<When, ParseError> {
    let y: i16 = y.try_into().map_err(|_| OOR)?;
    let start = Date::new(y, m, 1).map_err(|_| UNK)?;
    let end = dadd(start, Span::new().months(1))?;
    Ok(When::Range {
        start: midnight(start, tz)?,
        end: midnight(end, tz)?,
    })
}

fn quarter_range(y: i64, q: i8, tz: &TimeZone) -> Result<When, ParseError> {
    if !(1..=4).contains(&q) {
        return Err(UNK);
    }
    let y: i16 = y.try_into().map_err(|_| OOR)?;
    let start = Date::new(y, (q - 1) * 3 + 1, 1).map_err(|_| UNK)?;
    let end = dadd(start, Span::new().months(3))?;
    Ok(When::Range {
        start: midnight(start, tz)?,
        end: midnight(end, tz)?,
    })
}

fn resolve_offset(today: Date, now: &Zoned, n: i64, u: Unit) -> Result<When, ParseError> {
    match u {
        Unit::Day => dadd(today, Span::new().days(n)).map(When::Date),
        Unit::Week => dadd(today, Span::new().weeks(n)).map(When::Date),
        Unit::Month => dadd(today, Span::new().months(n)).map(When::Date),
        Unit::Year => dadd(today, Span::new().years(n)).map(When::Date),
        Unit::Hour => zadd(now, Span::new().hours(n)).map(When::DateTime),
        Unit::Minute => zadd(now, Span::new().minutes(n)).map(When::DateTime),
        Unit::Second => zadd(now, Span::new().seconds(n)).map(When::DateTime),
    }
}

fn resolve_weekday(
    today: Date,
    target: Weekday,
    rel: WeekRel,
    dialect: Dialect,
) -> Result<Date, ParseError> {
    let cur = wnum(today.weekday());
    let tgt = wnum(target);
    let fwd = (tgt - cur).rem_euclid(7); // 0..6 to upcoming (incl. today)
    let delta = match rel {
        WeekRel::Coming | WeekRel::This => fwd,
        WeekRel::Next => match dialect {
            Dialect::Us => {
                if fwd == 0 {
                    7
                } else {
                    fwd
                }
            }
            Dialect::Intl => fwd + 7,
        },
        WeekRel::Last => {
            let back = (cur - tgt).rem_euclid(7);
            -(if back == 0 { 7 } else { back })
        }
    };
    dadd(today, Span::new().days(delta as i64))
}

fn resolve_period(
    today: Date,
    n: i64,
    u: Unit,
    week_start: Weekday,
    tz: &TimeZone,
) -> Result<When, ParseError> {
    let (start, end) = match u {
        Unit::Week => {
            let back = (wnum(today.weekday()) - wnum(week_start)).rem_euclid(7);
            let s = dadd(today, Span::new().days(-(back as i64) + n * 7))?;
            (s, dadd(s, Span::new().days(7))?)
        }
        Unit::Month => {
            let base = date(today.year(), today.month(), 1);
            let s = dadd(base, Span::new().months(n))?;
            (s, dadd(s, Span::new().months(1))?)
        }
        Unit::Year => {
            let base = date(today.year(), 1, 1);
            let s = dadd(base, Span::new().years(n))?;
            (s, dadd(s, Span::new().years(1))?)
        }
        _ => return Err(UNK),
    };
    Ok(When::Range {
        start: midnight(start, tz)?,
        end: midnight(end, tz)?,
    })
}

fn clock24(h: i8, m: i8, mer: Option<Meridiem>) -> Result<(i8, i8), ParseError> {
    let h = match mer {
        Some(Meridiem::Pm) => {
            if h == 12 {
                12
            } else {
                h + 12
            }
        }
        Some(Meridiem::Am) => {
            if h == 12 {
                0
            } else {
                h
            }
        }
        None => h,
    };
    if (0..=23).contains(&h) && (0..=59).contains(&m) {
        Ok((h, m))
    } else {
        Err(UNK)
    }
}

fn wnum(w: Weekday) -> i32 {
    match w {
        Weekday::Monday => 0,
        Weekday::Tuesday => 1,
        Weekday::Wednesday => 2,
        Weekday::Thursday => 3,
        Weekday::Friday => 4,
        Weekday::Saturday => 5,
        Weekday::Sunday => 6,
    }
}

fn dadd(d: Date, sp: Span) -> Result<Date, ParseError> {
    d.checked_add(sp).map_err(|_| OOR)
}

fn zadd(z: &Zoned, sp: Span) -> Result<Zoned, ParseError> {
    z.checked_add(sp).map_err(|_| OOR)
}

fn at_time(d: Date, h: i8, m: i8, tz: &TimeZone) -> Result<Zoned, ParseError> {
    d.at(h, m, 0, 0).to_zoned(tz.clone()).map_err(|_| OOR)
}

fn midnight(d: Date, tz: &TimeZone) -> Result<Zoned, ParseError> {
    d.at(0, 0, 0, 0).to_zoned(tz.clone()).map_err(|_| OOR)
}