2020-08-27 13:45:01 +00:00
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use super::{Duration, Instant, SystemTime, UNIX_EPOCH};
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macro_rules! assert_almost_eq {
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($a:expr, $b:expr) => {{
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let (a, b) = ($a, $b);
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if a != b {
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let (a, b) = if a > b { (a, b) } else { (b, a) };
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2020-10-22 00:56:09 +00:00
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assert!(a - Duration::from_micros(1) <= b, "{:?} is not almost equal to {:?}", a, b);
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2020-08-27 13:45:01 +00:00
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}
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}};
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}
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#[test]
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fn instant_monotonic() {
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let a = Instant::now();
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let b = Instant::now();
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assert!(b >= a);
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}
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#[test]
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fn instant_elapsed() {
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let a = Instant::now();
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a.elapsed();
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}
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#[test]
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fn instant_math() {
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let a = Instant::now();
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let b = Instant::now();
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println!("a: {:?}", a);
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println!("b: {:?}", b);
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let dur = b.duration_since(a);
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println!("dur: {:?}", dur);
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assert_almost_eq!(b - dur, a);
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assert_almost_eq!(a + dur, b);
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2020-10-22 00:56:09 +00:00
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let second = Duration::SECOND;
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2020-08-27 13:45:01 +00:00
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assert_almost_eq!(a - second + second, a);
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assert_almost_eq!(a.checked_sub(second).unwrap().checked_add(second).unwrap(), a);
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// checked_add_duration will not panic on overflow
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let mut maybe_t = Some(Instant::now());
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let max_duration = Duration::from_secs(u64::MAX);
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// in case `Instant` can store `>= now + max_duration`.
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for _ in 0..2 {
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maybe_t = maybe_t.and_then(|t| t.checked_add(max_duration));
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}
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assert_eq!(maybe_t, None);
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// checked_add_duration calculates the right time and will work for another year
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let year = Duration::from_secs(60 * 60 * 24 * 365);
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assert_eq!(a + year, a.checked_add(year).unwrap());
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}
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#[test]
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fn instant_math_is_associative() {
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let now = Instant::now();
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let offset = Duration::from_millis(5);
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// Changing the order of instant math shouldn't change the results,
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// especially when the expression reduces to X + identity.
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assert_eq!((now + offset) - now, (now - now) + offset);
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}
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#[test]
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#[should_panic]
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fn instant_duration_since_panic() {
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let a = Instant::now();
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2020-10-22 00:56:09 +00:00
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(a - Duration::SECOND).duration_since(a);
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2020-08-27 13:45:01 +00:00
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}
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#[test]
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fn instant_checked_duration_since_nopanic() {
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let now = Instant::now();
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2020-10-22 00:56:09 +00:00
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let earlier = now - Duration::SECOND;
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let later = now + Duration::SECOND;
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2020-08-27 13:45:01 +00:00
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assert_eq!(earlier.checked_duration_since(now), None);
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2020-10-22 00:56:09 +00:00
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assert_eq!(later.checked_duration_since(now), Some(Duration::SECOND));
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2020-10-22 01:18:18 +00:00
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assert_eq!(now.checked_duration_since(now), Some(Duration::ZERO));
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2020-08-27 13:45:01 +00:00
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}
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#[test]
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fn instant_saturating_duration_since_nopanic() {
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let a = Instant::now();
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2020-10-22 00:56:09 +00:00
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let ret = (a - Duration::SECOND).saturating_duration_since(a);
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2020-10-22 01:18:18 +00:00
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assert_eq!(ret, Duration::ZERO);
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2020-08-27 13:45:01 +00:00
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}
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#[test]
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fn system_time_math() {
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let a = SystemTime::now();
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let b = SystemTime::now();
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match b.duration_since(a) {
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2020-10-22 01:18:18 +00:00
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Ok(Duration::ZERO) => {
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2020-08-27 13:45:01 +00:00
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assert_almost_eq!(a, b);
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}
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Ok(dur) => {
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assert!(b > a);
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assert_almost_eq!(b - dur, a);
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assert_almost_eq!(a + dur, b);
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}
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Err(dur) => {
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let dur = dur.duration();
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assert!(a > b);
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assert_almost_eq!(b + dur, a);
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assert_almost_eq!(a - dur, b);
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}
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}
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2020-10-22 00:56:09 +00:00
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let second = Duration::SECOND;
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2020-08-27 13:45:01 +00:00
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assert_almost_eq!(a.duration_since(a - second).unwrap(), second);
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assert_almost_eq!(a.duration_since(a + second).unwrap_err().duration(), second);
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assert_almost_eq!(a - second + second, a);
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assert_almost_eq!(a.checked_sub(second).unwrap().checked_add(second).unwrap(), a);
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2020-10-22 00:56:09 +00:00
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let one_second_from_epoch = UNIX_EPOCH + Duration::SECOND;
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2020-08-27 13:45:01 +00:00
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let one_second_from_epoch2 =
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2020-10-22 00:56:09 +00:00
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UNIX_EPOCH + Duration::from_millis(500) + Duration::from_millis(500);
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2020-08-27 13:45:01 +00:00
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assert_eq!(one_second_from_epoch, one_second_from_epoch2);
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// checked_add_duration will not panic on overflow
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let mut maybe_t = Some(SystemTime::UNIX_EPOCH);
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let max_duration = Duration::from_secs(u64::MAX);
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// in case `SystemTime` can store `>= UNIX_EPOCH + max_duration`.
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for _ in 0..2 {
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maybe_t = maybe_t.and_then(|t| t.checked_add(max_duration));
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}
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assert_eq!(maybe_t, None);
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// checked_add_duration calculates the right time and will work for another year
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let year = Duration::from_secs(60 * 60 * 24 * 365);
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assert_eq!(a + year, a.checked_add(year).unwrap());
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}
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#[test]
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fn system_time_elapsed() {
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let a = SystemTime::now();
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drop(a.elapsed());
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}
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#[test]
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fn since_epoch() {
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let ts = SystemTime::now();
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2020-10-22 00:56:09 +00:00
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let a = ts.duration_since(UNIX_EPOCH + Duration::SECOND).unwrap();
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2020-08-27 13:45:01 +00:00
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let b = ts.duration_since(UNIX_EPOCH).unwrap();
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assert!(b > a);
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2020-10-22 00:56:09 +00:00
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assert_eq!(b - a, Duration::SECOND);
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2020-08-27 13:45:01 +00:00
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2020-10-22 00:56:09 +00:00
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let thirty_years = Duration::SECOND * 60 * 60 * 24 * 365 * 30;
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2020-08-27 13:45:01 +00:00
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// Right now for CI this test is run in an emulator, and apparently the
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// aarch64 emulator's sense of time is that we're still living in the
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// 70s. This is also true for riscv (also qemu)
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//
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// Otherwise let's assume that we're all running computers later than
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// 2000.
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if !cfg!(target_arch = "aarch64") && !cfg!(target_arch = "riscv64") {
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assert!(a > thirty_years);
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}
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// let's assume that we're all running computers earlier than 2090.
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// Should give us ~70 years to fix this!
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let hundred_twenty_years = thirty_years * 4;
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assert!(a < hundred_twenty_years);
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}
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