mirror of
https://github.com/lov3b/ecb-rates.git
synced 2025-02-22 18:00:11 +01:00
Merge branch 'better-cache'
This commit is contained in:
commit
1eb7716956
149
src/cache/cache_line.rs
vendored
149
src/cache/cache_line.rs
vendored
@ -1,10 +1,15 @@
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use std::rc::Rc;
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use chrono::serde::ts_seconds;
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use chrono::{DateTime, Local, Utc};
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use chrono::{DateTime, Datelike, FixedOffset, Local, NaiveDate, TimeDelta, Utc, Weekday};
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use serde::{Deserialize, Serialize};
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use crate::models::ExchangeRateResult;
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use crate::Hollidays;
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#[derive(Serialize, Deserialize, Debug)]
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const CET: FixedOffset = unsafe { FixedOffset::east_opt(3600).unwrap_unchecked() };
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#[derive(Serialize, Deserialize, Debug, PartialEq)]
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pub struct CacheLine {
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#[serde(with = "ts_seconds")]
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date: DateTime<Utc>,
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@ -14,10 +19,63 @@ pub struct CacheLine {
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}
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impl CacheLine {
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pub fn validate(&self) -> bool {
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let today = Local::now().naive_local().date();
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let saved = self.date.naive_local().date();
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saved == today
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pub fn is_valid(&self) -> bool {
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self.is_valid_at(Local::now().with_timezone(&CET))
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}
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pub fn is_valid_at(&self, now_cet: DateTime<FixedOffset>) -> bool {
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let saved_cet = self.date.with_timezone(&CET);
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// Shortcut: if the saved time is somehow *in the future* vs. 'now', treat as invalid.
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if saved_cet > now_cet {
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return false;
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}
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// This can be optimized, but it won't make a difference for the application
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let hollidays_opt = if now_cet.year() == saved_cet.year() {
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Some(Rc::new(Hollidays::new(now_cet.year())))
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} else {
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None
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};
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let mut day_iter = saved_cet.date_naive();
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let end_day = now_cet.date_naive();
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// Helper: checks if a day is open (ECB publishes).
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// weekend (Sat/Sun) or holiday is "closed".
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let is_open_day = |date: NaiveDate| {
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let wd = date.weekday();
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let is_weekend = wd == Weekday::Sat || wd == Weekday::Sun;
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let hollidays = hollidays_opt
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.clone()
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.unwrap_or_else(|| Rc::new(Hollidays::new(date.year())));
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let is_holiday = hollidays.is_holliday(&date);
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!(is_weekend || is_holiday)
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};
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while day_iter <= end_day {
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if is_open_day(day_iter) {
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// Potential publish time is day_iter at 16:00 CET
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let publish_time_cet = unsafe {
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day_iter
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.and_hms_opt(16, 0, 0)
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.unwrap_unchecked()
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.and_local_timezone(CET)
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.unwrap()
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};
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if publish_time_cet > saved_cet && publish_time_cet <= now_cet {
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return false;
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}
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}
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day_iter += TimeDelta::days(1);
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}
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// If we never found an open day’s 16:00 that invalidates the cache, we're good.
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true
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}
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pub fn new(exchange_rate_results: Vec<ExchangeRateResult>) -> Self {
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@ -28,3 +86,82 @@ impl CacheLine {
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}
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}
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}
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impl PartialEq<Vec<ExchangeRateResult>> for CacheLine {
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fn eq(&self, other: &Vec<ExchangeRateResult>) -> bool {
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&self.exchange_rate_results == other
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use chrono::TimeZone;
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fn cl(date_utc: DateTime<Utc>) -> CacheLine {
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CacheLine {
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date: date_utc,
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exchange_rate_results: vec![],
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}
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}
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#[test]
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fn test_cache_in_future() {
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let now_cet = Utc
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.with_ymd_and_hms(2025, 1, 1, 9, 0, 0)
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.unwrap()
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.with_timezone(&CET);
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let future_utc = Utc.with_ymd_and_hms(2025, 1, 2, 9, 0, 0).unwrap();
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assert!(!cl(future_utc).is_valid_at(now_cet));
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}
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#[test]
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fn test_same_open_day_before_16() {
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let now_cet = Utc
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.with_ymd_and_hms(2025, 1, 8, 12, 0, 0)
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.unwrap()
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.with_timezone(&CET);
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let cache_utc = Utc.with_ymd_and_hms(2025, 1, 8, 10, 0, 0).unwrap();
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assert!(cl(cache_utc).is_valid_at(now_cet));
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}
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#[test]
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fn test_same_day_after_16() {
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let now_cet = Utc
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.with_ymd_and_hms(2025, 1, 8, 17, 0, 0)
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.unwrap()
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.with_timezone(&CET);
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let cache_utc = Utc.with_ymd_and_hms(2025, 1, 8, 14, 0, 0).unwrap();
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assert!(!cl(cache_utc).is_valid_at(now_cet));
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}
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#[test]
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fn test_saved_after_16_same_day() {
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let now_cet = Utc
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.with_ymd_and_hms(2025, 1, 8, 18, 0, 0)
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.unwrap()
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.with_timezone(&CET);
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let cache_utc = Utc.with_ymd_and_hms(2025, 1, 8, 17, 0, 0).unwrap();
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assert!(cl(cache_utc).is_valid_at(now_cet));
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}
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#[test]
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fn test_multi_day_old_cache_should_invalidate_if_open_day_passed() {
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let now_cet = Utc
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.with_ymd_and_hms(2025, 1, 10, 18, 0, 0)
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.unwrap()
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.with_timezone(&CET);
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let cache_utc = Utc.with_ymd_and_hms(2025, 1, 5, 10, 0, 0).unwrap();
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assert!(!cl(cache_utc).is_valid_at(now_cet));
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}
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#[test]
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fn test_multi_day_holiday_scenario() {
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let now_cet = Utc
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.with_ymd_and_hms(2025, 12, 26, 19, 0, 0)
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.unwrap()
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.with_timezone(&CET);
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let cache_utc = Utc.with_ymd_and_hms(2025, 12, 24, 10, 0, 0).unwrap();
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assert!(cl(cache_utc).is_valid_at(now_cet));
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}
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}
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152
src/holiday.rs
Normal file
152
src/holiday.rs
Normal file
@ -0,0 +1,152 @@
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use chrono::{Days, NaiveDate};
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/// Calculates the hollidays recognized by the EU
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/// ECB recognizes the following hollidays https://www.ecb.europa.eu/ecb/contacts/working-hours/html/index.en.html
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#[derive(Debug, Clone)]
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pub struct Hollidays {
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hollidays: [NaiveDate; 15],
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}
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impl Hollidays {
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pub fn is_holliday(&self, date: &NaiveDate) -> bool {
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self.hollidays.contains(date)
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}
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pub fn new(year: i32) -> Self {
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assert!((1583..=4099).contains(&year));
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let easter_sunday = Self::calc_easter_sunday(year);
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let easter_monday = easter_sunday + Days::new(1);
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let good_friday = easter_sunday - Days::new(2);
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let ascension_day = easter_sunday + Days::new(39);
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let whit_monday = easter_sunday + Days::new(50);
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let corpus_christi = easter_sunday + Days::new(60);
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let year_years_day = unsafe { NaiveDate::from_ymd_opt(year, 1, 1).unwrap_unchecked() };
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let labour_day = unsafe { NaiveDate::from_ymd_opt(year, 5, 1).unwrap_unchecked() };
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let robert_schuman_declaration =
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unsafe { NaiveDate::from_ymd_opt(year, 5, 9).unwrap_unchecked() };
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let german_unity_day = unsafe { NaiveDate::from_ymd_opt(year, 10, 3).unwrap_unchecked() };
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let all_saints_day = unsafe { NaiveDate::from_ymd_opt(year, 11, 1).unwrap_unchecked() };
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let christmas_eve = unsafe { NaiveDate::from_ymd_opt(year, 12, 24).unwrap_unchecked() };
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let christmas_day = unsafe { NaiveDate::from_ymd_opt(year, 12, 25).unwrap_unchecked() };
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let christmas_holiday = unsafe { NaiveDate::from_ymd_opt(year, 12, 26).unwrap_unchecked() };
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let new_years_eve = unsafe { NaiveDate::from_ymd_opt(year, 12, 31).unwrap_unchecked() };
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let hollidays = [
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easter_sunday,
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easter_monday,
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good_friday,
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ascension_day,
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whit_monday,
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corpus_christi,
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year_years_day,
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labour_day,
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robert_schuman_declaration,
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german_unity_day,
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all_saints_day,
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christmas_eve,
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christmas_day,
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christmas_holiday,
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new_years_eve,
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];
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Self { hollidays }
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}
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/// Returns Easter Sunday for a given year (Gregorian calendar).
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/// This uses a variation of the Butcher's algorithm.
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/// Valid for years 1583..=4099 in the Gregorian calendar.
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fn calc_easter_sunday(year: i32) -> NaiveDate {
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// For reference: https://en.wikipedia.org/wiki/Computus#Butcher's_algorithm
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let a = year % 19;
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let b = year / 100;
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let c = year % 100;
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let d = b / 4;
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let e = b % 4;
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let f = (b + 8) / 25;
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let g = (b - f + 1) / 3;
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let h = (19 * a + b - d - g + 15) % 30;
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let i = c / 4;
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let k = c % 4;
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let l = (32 + 2 * e + 2 * i - h - k) % 7;
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let m = (a + 11 * h + 22 * l) / 451;
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let month = (h + l - 7 * m + 114) / 31;
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let day = (h + l - 7 * m + 114) % 31 + 1;
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NaiveDate::from_ymd_opt(year, month as u32, day as u32)
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.expect("Invalid date calculation for Easter Sunday")
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use chrono::NaiveDate;
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#[test]
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fn test_holidays_2025() {
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let year = 2025;
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let holliday = Hollidays::new(year);
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let easter_sunday_2025 = NaiveDate::from_ymd_opt(2025, 4, 20).unwrap();
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assert!(
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holliday.is_holliday(&easter_sunday_2025),
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"Easter Sunday 2025"
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);
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let new_years_2025 = NaiveDate::from_ymd_opt(2025, 1, 1).unwrap();
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assert!(holliday.is_holliday(&new_years_2025), "New Year's Day 2025");
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let labour_day_2025 = NaiveDate::from_ymd_opt(2025, 5, 1).unwrap();
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assert!(holliday.is_holliday(&labour_day_2025), "Labour Day 2025");
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let random_workday_2025 = NaiveDate::from_ymd_opt(2025, 2, 10).unwrap();
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assert!(
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!holliday.is_holliday(&random_workday_2025),
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"Random weekday 2025"
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);
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}
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#[test]
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fn test_holidays_2026() {
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let year = 2026;
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let holliday = Hollidays::new(year);
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let easter_sunday_2026 = NaiveDate::from_ymd_opt(2026, 4, 5).unwrap();
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assert!(
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holliday.is_holliday(&easter_sunday_2026),
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"Easter Sunday 2026"
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);
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let german_unity_day_2026 = NaiveDate::from_ymd_opt(2026, 10, 3).unwrap();
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assert!(
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holliday.is_holliday(&german_unity_day_2026),
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"Day of German Unity 2026"
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);
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let random_workday_2026 = NaiveDate::from_ymd_opt(2026, 2, 10).unwrap();
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assert!(
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!holliday.is_holliday(&random_workday_2026),
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"Random weekday 2026"
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);
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}
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#[test]
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#[should_panic]
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fn test_year_too_low() {
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disable_panic_stack_trace();
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let _ = Hollidays::new(1000);
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}
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#[test]
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#[should_panic]
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fn test_year_too_high() {
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disable_panic_stack_trace();
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let _ = Hollidays::new(9999);
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}
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fn disable_panic_stack_trace() {
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std::panic::set_hook(Box::new(|x| {
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let _ = x;
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}));
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}
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}
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@ -1,9 +1,12 @@
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pub mod cache;
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pub mod cli;
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mod holiday;
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pub mod models;
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pub mod os;
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pub mod parsing;
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pub mod table;
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pub mod cache;
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pub use holiday::Hollidays;
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const APP_NAME: &'static str = "ECB-rates";
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|
14
src/main.rs
14
src/main.rs
@ -45,7 +45,7 @@ async fn main() -> ExitCode {
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|| false,
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|c| {
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c.get_cache_line(cli.resolution)
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.map_or_else(|| false, |cl| cl.validate())
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.map_or_else(|| false, |cl| cl.is_valid())
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},
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);
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let mut parsed = if cache_ok {
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@ -65,7 +65,18 @@ async fn main() -> ExitCode {
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return ExitCode::FAILURE;
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}
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};
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if !cache_ok {
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let not_equal_cache = cache.as_ref().map_or_else(
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|| true,
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|cache_local| {
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cache_local
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.get_cache_line(cli.resolution)
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.map_or_else(|| true, |cache_line| cache_line == &parsed)
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},
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);
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if not_equal_cache {
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if let Some(cache_safe) = cache.as_mut() {
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let cache_line = CacheLine::new(parsed.clone());
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cache_safe.set_cache_line(cli.resolution, cache_line);
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@ -74,6 +85,7 @@ async fn main() -> ExitCode {
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}
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}
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}
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}
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parsed
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};
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|
@ -1,7 +1,7 @@
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use serde::{Deserialize, Serialize};
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use std::collections::HashMap;
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|
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#[derive(Debug, Serialize, Deserialize, Clone)]
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#[derive(Debug, Serialize, Deserialize, Clone, PartialEq)]
|
||||
pub struct ExchangeRateResult {
|
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pub time: String,
|
||||
pub rates: HashMap<String, f64>,
|
||||
|
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