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deep_time/dt/
gregorian.rs

1use crate::{ATTOS_PER_SEC, Dt, SEC_PER_DAYI64, Scale, Weekday, YmdHms, leap_seconds::leap_sec};
2
3impl Dt {
4    /// Converts a Unix timestamp (seconds since 1970-01-01 00:00:00)
5    /// to a proleptic Gregorian date (year, month, day).
6    pub const fn unix_sec_to_ymd(unix_sec: i64) -> (i64, u8, u8) {
7        let days = unix_sec.div_euclid(86400);
8
9        // Shift so we work relative to 0000-03-01 (makes leap year math cleaner)
10        let z = days + 719468;
11
12        let era = if z >= 0 {
13            z / 146097
14        } else {
15            (z - 146096) / 146097
16        };
17        let doe = z - era * 146097; // [0, 146096]
18        let yoe = (doe - doe / 1460 + doe / 36524 - doe / 146096) / 365; // [0, 399]
19        let y = yoe + era * 400;
20        let doy = doe - (365 * yoe + yoe / 4 - yoe / 100); // [0, 365]
21        let mp = (5 * doy + 2) / 153; // [0, 11]
22        let d = doy - (153 * mp + 2) / 5 + 1; // [1, 31]
23        let m = if mp < 10 { mp + 3 } else { mp - 9 }; // [1, 12]
24
25        let yr = y + if m <= 2 { 1 } else { 0 };
26
27        (yr, m as u8, d as u8)
28    }
29
30    /// Returns the calendar date and time for this instant.
31    ///
32    /// Converts to this [`Dt`]s `target` time scale using the internal current
33    /// `scale` before producing a result.
34    ///
35    /// ## Returns
36    ///
37    /// A [`YmdHms`] containing:
38    ///
39    /// - `yr`, `mo`, `day` — calendar date
40    /// - `hr` (0–23), `min` (0–59), `sec` (0–60)
41    /// - `attos` — fractional second in attoseconds (`0 ≤ attos < 10¹⁸`)
42    /// - `unix_attosec` — total attoseconds since the Unix epoch (`1970-01-01 00:00:00 UTC`)
43    ///   when this instant is expressed in the `new` scale
44    ///
45    /// ## Leap-second handling
46    ///
47    /// If `new` is one of the scales that use leap seconds (`UTC`, `UtcSpice`, or `UtcHist`)
48    /// **and** the instant falls exactly on a leap second, the returned `sec` will be `60`.
49    /// In every other case `sec` is in the range `0..=59`.
50    ///
51    /// The implementation converts internally to TAI before checking leap-second status,
52    /// ensuring correct detection regardless of the input scale.
53    ///
54    /// ## See also
55    ///
56    /// - [`Dt::from_ymd`](../struct.Dt.html#method.from_ymd)
57    ///
58    /// ## Examples
59    ///
60    /// ```rust
61    /// use deep_time::{Dt, Scale};
62    ///
63    /// // `from_ymd` always returns a TAI instant
64    /// let dt = Dt::from_ymd(2024, 6, 15, 12, 30, 45, 0, Scale::UTC);
65    /// let ymd = dt.to_ymd();
66    ///
67    /// assert_eq!(ymd.yr(), 2024);
68    /// assert_eq!(ymd.mo(), 6);
69    /// assert_eq!(ymd.day(), 15);
70    /// assert_eq!(ymd.hr(), 12);
71    /// assert_eq!(ymd.min(), 30);
72    /// assert_eq!(ymd.sec(), 45);
73    /// assert!(ymd.attos() == 0);
74    /// ```
75    pub fn to_ymd(&self) -> YmdHms {
76        let tai = self.to_tai();
77        let from_unix_epoch = self.to_scale_and_diff(Dt::UNIX_EPOCH, false);
78
79        let unix_sec = from_unix_epoch.to_sec64();
80        let frac = from_unix_epoch.to_sec_ufrac();
81        let (yr, mo, day) = Self::unix_sec_to_ymd(unix_sec);
82
83        let seconds_since_midnight = unix_sec.rem_euclid(SEC_PER_DAYI64);
84        let hr = (seconds_since_midnight / 3600) as u8;
85        let min = ((seconds_since_midnight % 3600) / 60) as u8;
86        let mut sec = (seconds_since_midnight % 60) as u8;
87        let is_leap = match tai.leap_sec(false) {
88            Some(i) => i.is_leap_sec,
89            None => false,
90        };
91        if self.target.uses_leap_seconds() && is_leap {
92            sec += 1;
93        }
94
95        YmdHms {
96            yr,
97            mo,
98            day,
99            hr,
100            min,
101            sec,
102            attos: frac,
103            scale: self.target,
104        }
105    }
106
107    /// Converts a proleptic Gregorian calendar date+time to a Unix timestamp
108    /// (seconds since 1970-01-01 00:00:00).
109    ///
110    /// - Expects **1 based** `mo` and `day`, and **0 based** `hr`, `min`, and `sec`.
111    /// - Does not perform any time scale conversions.
112    /// - Expects pre-clamped values.
113    pub const fn ymd_to_unix_sec(yr: i64, mo: u8, day: u8, hr: u8, min: u8, sec: u8) -> i64 {
114        let jd = Self::ymd_to_jd(yr, mo, day);
115        // 1970-01-01 00:00:00 UTC corresponds to JD 2440588
116        let days_since_1970 = jd.saturating_sub(2440588);
117        let time_of_day = (hr as i64) * 3600 + (min as i64) * 60 + (sec as i64);
118        days_since_1970
119            .saturating_mul(SEC_PER_DAYI64)
120            .saturating_add(time_of_day)
121    }
122
123    /// Converts a Julian Day Number (JD) to a proleptic Gregorian calendar date.
124    ///
125    /// - Returns `(year, month, day)` where `month` ∈ [1, 12] and `day` ∈ [1, 31]
126    ///   (standard 1-based Gregorian values).
127    /// - This is the inverse of [`Dt::ymd_to_jd`](../struct.Dt.html#method.ymd_to_jd).
128    /// - Supports the full `i64` range, including negative years and year zero.
129    pub const fn jd_to_ymd(jd: i64) -> (i64, u8, u8) {
130        let j = jd as i128;
131
132        #[inline]
133        const fn floor_div_pos(a: i128, b: i128) -> i128 {
134            if a >= 0 { a / b } else { (a - (b - 1)) / b }
135        }
136
137        let a = j + 32044;
138        let b = floor_div_pos(4 * a + 3, 146097);
139        let c = a - floor_div_pos(b * 146097, 4);
140        let d = floor_div_pos(4 * c + 3, 1461);
141        let e = c - floor_div_pos(1461 * d, 4);
142        let m = floor_div_pos(5 * e + 2, 153);
143        let day = (e - floor_div_pos(153 * m + 2, 5) + 1) as u8;
144        let mo = (m + 3 - 12 * floor_div_pos(m, 10)) as u8;
145        let yr = b * 100 + d - 4800 + floor_div_pos(m, 10);
146
147        (Dt::i128_to_i64(yr), mo, day)
148    }
149
150    /// Computes the Julian Day Number (JD) for a proleptic Gregorian calendar date at noon UT.
151    /// This is the inverse of [`jd_to_ymd`].
152    ///
153    /// ## Arguments
154    ///
155    /// * `yr`  - Year (any `i64`; proleptic Gregorian)
156    /// * `mo` - Month (**1-based**: `1` = January, `2` = February, ..., `12` = December)
157    /// * `day`   - Day of the month (**1-based**: `1` = first day of the month)
158    ///
159    /// The algorithm matches the standard astronomical convention used throughout the library
160    /// (`ymd_to_jd(2000, 1, 1) == 2451545`).
161    ///
162    /// ## Notes
163    ///
164    /// - This function expects **1 based** `mo` and `day`. Passing `mo = 0` or `day = 0` (or other
165    ///   out-of-range values) will produce incorrect results as this function does not perform
166    ///   value clamping.
167    /// - Does not deal with bad inputs like February with 30 days, does not do any clamping. If you
168    ///   need to sanitize a year, month, day input use
169    ///   [`Dt::clamp_mdhms`](../struct.Dt.html#method.clamp_mdhms) first.
170    /// - The result is the integer JD corresponding to **noon** on the given date.
171    #[inline]
172    pub const fn ymd_to_jd(yr: i64, mo: u8, day: u8) -> i64 {
173        let y = yr as i128;
174        let m = mo as i16;
175        let d = day as i16;
176
177        let a = (14 - m) / 12;
178        let y = y + 4800 - a as i128;
179        let m = m + 12 * a - 3;
180
181        let y4 = y >> 2; // floor(y / 4) — arithmetic shift works for negatives
182
183        // floor(y / 100)
184        let y100 = if y >= 0 { y / 100 } else { (y - 99) / 100 };
185
186        let y400 = y100 >> 2; // floor(y / 400)
187
188        let day_mo = d + (153 * m + 2) / 5;
189        let yr_part = 365 * y + y4 - y100 + y400 - 32045;
190
191        Dt::i128_to_i64(day_mo as i128 + yr_part)
192    }
193
194    /// Creates a **TAI** [`Dt`] from a proleptic gregorian date which is assumed to be on
195    /// the provided time scale.
196    ///
197    /// - Equivalent to [`Dt::from`](../struct.Dt.html#method.from) for the provided date.
198    ///   Except that conversion is performed prior to adding an extra second if the given
199    ///   `sec` is `60`.
200    /// - Returned [`Dt`] will be on the **TAI** time scale.
201    ///
202    /// All input components are clamped to their valid ranges:
203    /// - `mo`   → 1..=12 **1 based**
204    /// - `day`  → 1..=31 **1 based**
205    /// - `hr`   → 0..=23 **0 based**
206    /// - `min`  → 0..=59 **0 based**
207    /// - `sec`  → 0..=60 **0 based** (permits leap seconds)
208    /// - `attos` → 10¹⁸ **0 based** (clamped to under 1 second)
209    pub const fn from_ymd(
210        yr: i64,
211        mo: u8,
212        day: u8,
213        hr: u8,
214        min: u8,
215        sec: u8,
216        attos: u64,
217        scale: Scale,
218    ) -> Dt {
219        let (mo, day, hr, min, sec) = Dt::clamp_mdhms(yr, mo, day, hr, min, sec);
220        let attos = Dt::clamp_u64(attos, 0, ATTOS_PER_SEC - 1);
221
222        let sec_is_60 = sec == 60;
223        let s_for_unix = if sec_is_60 { 59 } else { sec };
224
225        let unix_sec = Dt::ymd_to_unix_sec(yr, mo, day, hr, min, s_for_unix);
226        let unix_attos = Dt::sec_to_attos(unix_sec as i128) + (attos as i128);
227
228        if sec_is_60 && scale.uses_leap_seconds() {
229            let t =
230                Dt::from_diff_and_scale(Dt::new(unix_attos, scale, scale), Dt::UNIX_EPOCH, false);
231            let is_leap = match leap_sec(t.add_sec(1).to_sec64(), false) {
232                Some(i) => i.is_leap_sec,
233                None => false,
234            };
235            if is_leap { t.add_sec(1) } else { t }
236        } else {
237            Dt::from_diff_and_scale(Dt::new(unix_attos, scale, scale), Dt::UNIX_EPOCH, false)
238        }
239    }
240
241    /// Computes the Julian Day Number from a Gregorian year and ordinal day-of-year.
242    #[inline]
243    pub const fn ydoy_to_jd(yr: i64, day_of_yr: u16) -> i64 {
244        let jd_jan1 = Self::ymd_to_jd(yr, 1, 1);
245        jd_jan1.saturating_add(day_of_yr as i64 - 1)
246    }
247
248    /// Converts a Julian Day Number to the corresponding weekday number (0 = Sunday … 6 = Saturday).
249    #[inline]
250    pub const fn jd_to_wkday(jd: i64) -> u8 {
251        let rem = ((jd as i128) + 1) % 7;
252        let positive = if rem < 0 { rem + 7 } else { rem };
253        positive as u8
254    }
255
256    /// Computes the Julian Day Number from an ISO week date (Monday-based week).
257    pub const fn iso_wk_to_jd(iso_yr: i64, iso_wk: u8, wkday: Weekday) -> i64 {
258        let jan4_jd = Self::ymd_to_jd(iso_yr, 1, 4);
259        let wd_jan4 = Self::jd_to_wkday(jan4_jd);
260
261        let days_to_monday = {
262            let tmp = (wd_jan4 as i64).saturating_add(6);
263            let rem = tmp % 7;
264            if rem < 0 { rem + 7 } else { rem }
265        };
266
267        let monday_wk1 = jan4_jd.saturating_sub(days_to_monday);
268        let monday_requested =
269            monday_wk1.saturating_add(((iso_wk as i64).saturating_sub(1)).saturating_mul(7));
270
271        monday_requested.saturating_add((wkday.wkday_mon_0_based()) as i64)
272    }
273
274    /// Computes the Julian Day Number from a Sunday-based week-of-year (`%U`).
275    pub const fn wk_sun_to_jd(yr: i64, wk: u8, wkday: Weekday) -> i64 {
276        let jan1_jd = Self::ymd_to_jd(yr, 1, 1);
277        let wd_jan1 = Self::jd_to_wkday(jan1_jd);
278
279        let days_to_first_sunday = ((7u8 - wd_jan1) % 7u8) as i64;
280        let first_sunday_jd = jan1_jd.saturating_add(days_to_first_sunday);
281
282        let sunday_of_wk =
283            first_sunday_jd.saturating_add(((wk as i64).saturating_sub(1)).saturating_mul(7));
284
285        sunday_of_wk.saturating_add(wkday.wkday_sun_0_based() as i64)
286    }
287
288    /// Computes the Julian Day Number from a Monday-based week-of-year (`%W`).
289    pub const fn wk_mon_to_jd(yr: i64, wk: u8, wkday: Weekday) -> i64 {
290        let jan1_jd = Self::ymd_to_jd(yr, 1, 1);
291        let wd_jan1 = Self::jd_to_wkday(jan1_jd);
292
293        let days_to_first_monday = (1i64 - wd_jan1 as i64).rem_euclid(7);
294        let first_monday_jd = jan1_jd.saturating_add(days_to_first_monday);
295
296        let monday_of_wk =
297            first_monday_jd.saturating_add(((wk as i64).saturating_sub(1)).saturating_mul(7));
298
299        monday_of_wk.saturating_add((wkday.wkday_mon_0_based()) as i64)
300    }
301
302    /// Returns `true` if the given year is a Gregorian leap year under proleptic rules.
303    #[inline(always)]
304    pub const fn is_leap_yr(yr: i64) -> bool {
305        (yr & 3 == 0) && ((yr & 15 == 0) || (yr % 25 != 0))
306    }
307
308    const DAYS: [u8; 12] = [31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31];
309    /// Returns `true` if the supplied values form a valid proleptic Gregorian calendar date.
310    #[inline]
311    pub const fn is_valid_ymd(yr: i64, mo: u8, day: u8) -> bool {
312        if mo < 1 || mo > 12 || day < 1 {
313            return false;
314        }
315        // 0 = Jan, 1 = Feb, ..., 11 = Dec
316        let days = Self::DAYS[(mo - 1) as usize];
317        if mo == 2 && Self::is_leap_yr(yr) {
318            day <= days + 1 // 28 → 29
319        } else {
320            day <= days
321        }
322    }
323
324    /// Returns `true` if the given Gregorian year contains an ISO week 53.
325    pub const fn has_iso_wk_53(yr: i64) -> bool {
326        let jan1_jd = Self::ymd_to_jd(yr, 1, 1);
327        let wd_jan1 = Self::jd_to_wkday(jan1_jd);
328        wd_jan1 == 4 || (Self::is_leap_yr(yr) && wd_jan1 == 3)
329    }
330
331    /// Returns the ordinal day of the year (1-based).
332    ///
333    /// January 1 is day `1`; December 31 is day `365` or `366` (in leap years).
334    /// Uses the proleptic Gregorian calendar.
335    pub fn day_of_yr(&self, ymd: Option<(i64, u8, u8)>) -> u16 {
336        let (yr, mo, day) = if let Some(ymd) = ymd {
337            ymd
338        } else {
339            let g = self.to_ymd();
340            (g.yr, g.mo, g.day)
341        };
342        Self::_day_of_yr(yr, mo, day)
343    }
344
345    pub(crate) fn _day_of_yr(yr: i64, mo: u8, day: u8) -> u16 {
346        let jd = Self::ymd_to_jd(yr, mo, day);
347        let jd_jan1 = Self::ymd_to_jd(yr, 1, 1);
348
349        let doy = jd.saturating_sub(jd_jan1).saturating_add(1);
350        doy as u16
351    }
352
353    /// Sunday-based week number (`%U` in strftime).
354    ///
355    /// Range: `0..=53`.
356    /// - Week 0 contains the days *before* the first Sunday of the year.
357    /// - Week 1 begins on the first Sunday of the year.
358    ///
359    /// The optional `ymd` and `doy` arguments are performance optimisations
360    /// (same pattern used throughout the file for `day_of_year`, `to_iso_wk_date`, etc.).
361    /// Pass whichever you already have; the function will use the fastest path.
362    pub fn wk_sun(&self, ymd: Option<(i64, u8, u8)>, doy: Option<u16>) -> u8 {
363        let (yr, _, _) = if let Some(ymd) = ymd {
364            ymd
365        } else {
366            let g = self.to_ymd();
367            (g.yr, g.mo, g.day)
368        };
369        let doy = if let Some(doy) = doy {
370            doy
371        } else {
372            self.day_of_yr(ymd)
373        };
374        Self::_wk_sun(yr, doy)
375    }
376
377    pub(crate) fn _wk_sun(yr: i64, doy: u16) -> u8 {
378        let jan1_jd = Self::ymd_to_jd(yr, 1, 1);
379        let wd_jan1 = Self::jd_to_wkday(jan1_jd);
380        let days_to_first_sunday = (7u8 - wd_jan1) % 7u8;
381        let first_sunday_doy = days_to_first_sunday as u16 + 1;
382        if doy < first_sunday_doy {
383            0
384        } else {
385            let days_since_first_sunday = doy.saturating_sub(first_sunday_doy);
386            ((days_since_first_sunday / 7) + 1) as u8
387        }
388    }
389
390    /// Monday-based week number (`%W` in strftime).
391    ///
392    /// Range: `0..=53`.
393    /// - Week 0 contains the days *before* the first Monday of the year.
394    /// - Week 1 begins on the first Monday of the year.
395    ///
396    /// The optional `ymd` and `doy` arguments are performance optimisations
397    /// (same pattern as `wk_sun`, `day_of_yr`, `to_iso_wk_date`, etc.).
398    pub fn wk_mon(&self, ymd: Option<(i64, u8, u8)>, doy: Option<u16>) -> u8 {
399        let (yr, _, _) = if let Some(ymd) = ymd {
400            ymd
401        } else {
402            let g = self.to_ymd();
403            (g.yr, g.mo, g.day)
404        };
405        let doy = if let Some(doy) = doy {
406            doy
407        } else {
408            self.day_of_yr(ymd)
409        };
410        Self::_wk_mon(yr, doy)
411    }
412
413    pub(crate) fn _wk_mon(yr: i64, doy: u16) -> u8 {
414        let jan1_jd = Self::ymd_to_jd(yr, 1, 1);
415        let wd_jan1 = Self::jd_to_wkday(jan1_jd);
416        let days_to_first_monday = (1i64 - wd_jan1 as i64).rem_euclid(7);
417        let first_monday_doy = days_to_first_monday as u16 + 1;
418        if doy < first_monday_doy {
419            0
420        } else {
421            let days_since_first_monday = doy.saturating_sub(first_monday_doy);
422            ((days_since_first_monday / 7) + 1) as u8
423        }
424    }
425
426    /// Returns the ISO 8601 week date for this `Dt`.
427    ///
428    /// Returns `(iso_year, iso_week, weekday)` where:
429    /// - `iso_year` is the ISO week year (may differ from the Gregorian year near
430    ///   year boundaries),
431    /// - `iso_week` is the week number in the range `1..=53`,
432    /// - `weekday` is a [`Weekday`] value (Monday-based week).
433    ///
434    /// Follows the ISO 8601 standard: weeks start on Monday and week 1 is the
435    /// week containing January 4.
436    ///
437    /// The optional `ymd` argument is a performance optimization. If provided,
438    /// it is used directly; otherwise [`to_gregorian_ymd`](Self::to_gregorian_ymd)
439    /// is called internally.
440    pub fn to_iso_wk_date(&self, ymd: Option<(i64, u8, u8)>) -> (i64, u8, Weekday) {
441        let (yr, mo, day) = if let Some(ymd) = ymd {
442            ymd
443        } else {
444            let g = self.to_ymd();
445            (g.yr, g.mo, g.day)
446        };
447        Self::_to_iso_wk_date(yr, mo, day)
448    }
449
450    pub(crate) fn _to_iso_wk_date(yr: i64, mo: u8, day: u8) -> (i64, u8, Weekday) {
451        let jd = Self::ymd_to_jd(yr, mo, day);
452        let wd = Self::jd_to_wkday(jd);
453        let wd_iso = if wd == 0 { 7 } else { wd };
454
455        let jan4_jd = Self::ymd_to_jd(yr, 1, 4);
456        let wd_jan4 = Self::jd_to_wkday(jan4_jd);
457        let days_to_monday = {
458            let tmp = (wd_jan4 as i64) + 6;
459            let rem = tmp % 7;
460            if rem < 0 { rem + 7 } else { rem }
461        };
462
463        let monday_wk1 = jan4_jd - days_to_monday;
464
465        let days_since = jd - monday_wk1;
466
467        let wk = if days_since < 0 {
468            0u8
469        } else {
470            ((days_since / 7) + 1) as u8
471        };
472
473        let iso_yr = if wk == 0 {
474            yr - 1
475        } else if wk >= 53 && !Self::has_iso_wk_53(yr) {
476            yr + 1
477        } else {
478            yr
479        };
480
481        let iso_wk = if wk == 0 {
482            if Self::has_iso_wk_53(yr - 1) { 53 } else { 52 }
483        } else if (wk == 53 && !Self::has_iso_wk_53(yr)) || wk > 53 {
484            1
485        } else {
486            wk
487        };
488        let wkday_enum = match Weekday::from_monday_1_based(wd_iso) {
489            Some(w) => w,
490            None => Weekday::Monday,
491        };
492
493        (iso_yr, iso_wk, wkday_enum)
494    }
495
496    /// Number of days in a month under proleptic Gregorian rules.
497    #[inline]
498    pub const fn days_in_month(yr: i64, mo: u8) -> u8 {
499        match mo {
500            1 | 3 | 5 | 7 | 8 | 10 | 12 => 31,
501            4 | 6 | 9 | 11 => 30,
502            2 => {
503                if Self::is_leap_yr(yr) {
504                    29
505                } else {
506                    28
507                }
508            }
509            _ => 0,
510        }
511    }
512
513    /// Clamps month, day, hour, minutes, and seconds values. Clamps days to what is
514    /// correct for that particular propleptic gregorian month.
515    ///
516    /// For example the year 2000 is a leap year, and February in that year has 29 days
517    /// so the days are clamped to 1-29 in that year, but 1-28 in non-leap years.
518    pub const fn clamp_mdhms(
519        yr: i64,
520        mo: u8,
521        day: u8,
522        hr: u8,
523        min: u8,
524        sec: u8,
525    ) -> (u8, u8, u8, u8, u8) {
526        let mo = Self::clamp_u8(mo, 1, 12);
527        let max_day = Self::days_in_month(yr, mo);
528        let day = Self::clamp_u8(day, 1, max_day);
529        let h = Self::clamp_u8(hr, 0, 23);
530        let m = Self::clamp_u8(min, 0, 59);
531        let s = Self::clamp_u8(sec, 0, 60);
532
533        (mo, day, h, m, s)
534    }
535}