time.rs 11 KB

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  1. /*! Time structures.
  2. The `time` module contains structures used to represent both
  3. absolute and relative time.
  4. - [Instant] is used to represent absolute time.
  5. - [Duration] is used to represet relative time.
  6. [Instant]: struct.Instant.html
  7. [Duration]: struct.Duration.html
  8. */
  9. use core::{ops, fmt};
  10. /// A representation of an absolute time value.
  11. ///
  12. /// The `Instant` type is a wrapper around a `i64` value that
  13. /// represents a number of milliseconds, monotonically increasing
  14. /// since an arbitrary moment in time, such as system startup.
  15. ///
  16. /// * A value of `0` is inherently arbitrary.
  17. /// * A value less than `0` indicates a time before the starting
  18. /// point.
  19. #[derive(Debug, Copy, Clone, PartialEq, Eq, PartialOrd, Ord)]
  20. #[cfg_attr(feature = "defmt", derive(defmt::Format))]
  21. pub struct Instant {
  22. pub millis: i64,
  23. }
  24. impl Instant {
  25. /// Create a new `Instant` from a number of milliseconds.
  26. pub fn from_millis<T: Into<i64>>(millis: T) -> Instant {
  27. Instant { millis: millis.into() }
  28. }
  29. /// Create a new `Instant` from a number of seconds.
  30. pub fn from_secs<T: Into<i64>>(secs: T) -> Instant {
  31. Instant { millis: secs.into() * 1000 }
  32. }
  33. /// Create a new `Instant` from the current [std::time::SystemTime].
  34. ///
  35. /// See [std::time::SystemTime::now]
  36. ///
  37. /// [std::time::SystemTime]: https://doc.rust-lang.org/std/time/struct.SystemTime.html
  38. /// [std::time::SystemTime::now]: https://doc.rust-lang.org/std/time/struct.SystemTime.html#method.now
  39. #[cfg(feature = "std")]
  40. pub fn now() -> Instant {
  41. Self::from(::std::time::SystemTime::now())
  42. }
  43. /// The fractional number of milliseconds that have passed
  44. /// since the beginning of time.
  45. pub const fn millis(&self) -> i64 {
  46. self.millis % 1000
  47. }
  48. /// The number of whole seconds that have passed since the
  49. /// beginning of time.
  50. pub const fn secs(&self) -> i64 {
  51. self.millis / 1000
  52. }
  53. /// The total number of milliseconds that have passed since
  54. /// the biginning of time.
  55. pub const fn total_millis(&self) -> i64 {
  56. self.millis
  57. }
  58. }
  59. #[cfg(feature = "std")]
  60. impl From<::std::time::Instant> for Instant {
  61. fn from(other: ::std::time::Instant) -> Instant {
  62. let elapsed = other.elapsed();
  63. Instant::from_millis((elapsed.as_secs() * 1_000) as i64 + elapsed.subsec_millis() as i64)
  64. }
  65. }
  66. #[cfg(feature = "std")]
  67. impl From<::std::time::SystemTime> for Instant {
  68. fn from(other: ::std::time::SystemTime) -> Instant {
  69. let n = other.duration_since(::std::time::UNIX_EPOCH)
  70. .expect("start time must not be before the unix epoch");
  71. Self::from_millis(n.as_secs() as i64 * 1000 + n.subsec_millis() as i64)
  72. }
  73. }
  74. #[cfg(feature = "std")]
  75. impl Into<::std::time::SystemTime> for Instant {
  76. fn into(self) -> ::std::time::SystemTime {
  77. ::std::time::UNIX_EPOCH + ::std::time::Duration::from_millis(self.millis as u64)
  78. }
  79. }
  80. impl fmt::Display for Instant {
  81. fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
  82. write!(f, "{}.{}s", self.secs(), self.millis())
  83. }
  84. }
  85. impl ops::Add<Duration> for Instant {
  86. type Output = Instant;
  87. fn add(self, rhs: Duration) -> Instant {
  88. Instant::from_millis(self.millis + rhs.total_millis() as i64)
  89. }
  90. }
  91. impl ops::AddAssign<Duration> for Instant {
  92. fn add_assign(&mut self, rhs: Duration) {
  93. self.millis += rhs.total_millis() as i64;
  94. }
  95. }
  96. impl ops::Sub<Duration> for Instant {
  97. type Output = Instant;
  98. fn sub(self, rhs: Duration) -> Instant {
  99. Instant::from_millis(self.millis - rhs.total_millis() as i64)
  100. }
  101. }
  102. impl ops::SubAssign<Duration> for Instant {
  103. fn sub_assign(&mut self, rhs: Duration) {
  104. self.millis -= rhs.total_millis() as i64;
  105. }
  106. }
  107. impl ops::Sub<Instant> for Instant {
  108. type Output = Duration;
  109. fn sub(self, rhs: Instant) -> Duration {
  110. Duration::from_millis((self.millis - rhs.millis).abs() as u64)
  111. }
  112. }
  113. /// A relative amount of time.
  114. #[derive(Debug, Default, Copy, Clone, PartialEq, Eq, PartialOrd, Ord)]
  115. #[cfg_attr(feature = "defmt", derive(defmt::Format))]
  116. pub struct Duration {
  117. pub millis: u64,
  118. }
  119. impl Duration {
  120. /// Create a new `Duration` from a number of milliseconds.
  121. pub const fn from_millis(millis: u64) -> Duration {
  122. Duration { millis }
  123. }
  124. /// Create a new `Instant` from a number of seconds.
  125. pub const fn from_secs(secs: u64) -> Duration {
  126. Duration { millis: secs * 1000 }
  127. }
  128. /// The fractional number of milliseconds in this `Duration`.
  129. pub const fn millis(&self) -> u64 {
  130. self.millis % 1000
  131. }
  132. /// The number of whole seconds in this `Duration`.
  133. pub const fn secs(&self) -> u64 {
  134. self.millis / 1000
  135. }
  136. /// The total number of milliseconds in this `Duration`.
  137. pub const fn total_millis(&self) -> u64 {
  138. self.millis
  139. }
  140. }
  141. impl fmt::Display for Duration {
  142. fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
  143. write!(f, "{}.{:03}s", self.secs(), self.millis())
  144. }
  145. }
  146. impl ops::Add<Duration> for Duration {
  147. type Output = Duration;
  148. fn add(self, rhs: Duration) -> Duration {
  149. Duration::from_millis(self.millis + rhs.total_millis())
  150. }
  151. }
  152. impl ops::AddAssign<Duration> for Duration {
  153. fn add_assign(&mut self, rhs: Duration) {
  154. self.millis += rhs.total_millis();
  155. }
  156. }
  157. impl ops::Sub<Duration> for Duration {
  158. type Output = Duration;
  159. fn sub(self, rhs: Duration) -> Duration {
  160. Duration::from_millis(
  161. self.millis.checked_sub(rhs.total_millis()).expect("overflow when subtracting durations"))
  162. }
  163. }
  164. impl ops::SubAssign<Duration> for Duration {
  165. fn sub_assign(&mut self, rhs: Duration) {
  166. self.millis = self.millis.checked_sub(
  167. rhs.total_millis()).expect("overflow when subtracting durations");
  168. }
  169. }
  170. impl ops::Mul<u32> for Duration {
  171. type Output = Duration;
  172. fn mul(self, rhs: u32) -> Duration {
  173. Duration::from_millis(self.millis * rhs as u64)
  174. }
  175. }
  176. impl ops::MulAssign<u32> for Duration {
  177. fn mul_assign(&mut self, rhs: u32) {
  178. self.millis *= rhs as u64;
  179. }
  180. }
  181. impl ops::Div<u32> for Duration {
  182. type Output = Duration;
  183. fn div(self, rhs: u32) -> Duration {
  184. Duration::from_millis(self.millis / rhs as u64)
  185. }
  186. }
  187. impl ops::DivAssign<u32> for Duration {
  188. fn div_assign(&mut self, rhs: u32) {
  189. self.millis /= rhs as u64;
  190. }
  191. }
  192. impl ops::Shl<u32> for Duration {
  193. type Output = Duration;
  194. fn shl(self, rhs: u32) -> Duration {
  195. Duration::from_millis(self.millis << rhs)
  196. }
  197. }
  198. impl ops::ShlAssign<u32> for Duration {
  199. fn shl_assign(&mut self, rhs: u32) {
  200. self.millis <<= rhs;
  201. }
  202. }
  203. impl ops::Shr<u32> for Duration {
  204. type Output = Duration;
  205. fn shr(self, rhs: u32) -> Duration {
  206. Duration::from_millis(self.millis >> rhs)
  207. }
  208. }
  209. impl ops::ShrAssign<u32> for Duration {
  210. fn shr_assign(&mut self, rhs: u32) {
  211. self.millis >>= rhs;
  212. }
  213. }
  214. impl From<::core::time::Duration> for Duration {
  215. fn from(other: ::core::time::Duration) -> Duration {
  216. Duration::from_millis(
  217. other.as_secs() * 1000 + other.subsec_millis() as u64
  218. )
  219. }
  220. }
  221. impl Into<::core::time::Duration> for Duration {
  222. fn into(self) -> ::core::time::Duration {
  223. ::core::time::Duration::from_millis(
  224. self.total_millis()
  225. )
  226. }
  227. }
  228. #[cfg(test)]
  229. mod test {
  230. use super::*;
  231. #[test]
  232. fn test_instant_ops() {
  233. // std::ops::Add
  234. assert_eq!(Instant::from_millis(4) + Duration::from_millis(6), Instant::from_millis(10));
  235. // std::ops::Sub
  236. assert_eq!(Instant::from_millis(7) - Duration::from_millis(5), Instant::from_millis(2));
  237. }
  238. #[test]
  239. fn test_instant_getters() {
  240. let instant = Instant::from_millis(5674);
  241. assert_eq!(instant.secs(), 5);
  242. assert_eq!(instant.millis(), 674);
  243. assert_eq!(instant.total_millis(), 5674);
  244. }
  245. #[test]
  246. fn test_instant_display() {
  247. assert_eq!(format!("{}", Instant::from_millis(5674)), "5.674s");
  248. assert_eq!(format!("{}", Instant::from_millis(5000)), "5.0s");
  249. }
  250. #[test]
  251. #[cfg(feature = "std")]
  252. fn test_instant_conversions() {
  253. let mut epoc: ::std::time::SystemTime = Instant::from_millis(0).into();
  254. assert_eq!(Instant::from(::std::time::UNIX_EPOCH),
  255. Instant::from_millis(0));
  256. assert_eq!(epoc, ::std::time::UNIX_EPOCH);
  257. epoc = Instant::from_millis(2085955200i64 * 1000).into();
  258. assert_eq!(epoc, ::std::time::UNIX_EPOCH + ::std::time::Duration::from_secs(2085955200));
  259. }
  260. #[test]
  261. fn test_duration_ops() {
  262. // std::ops::Add
  263. assert_eq!(Duration::from_millis(40) + Duration::from_millis(2), Duration::from_millis(42));
  264. // std::ops::Sub
  265. assert_eq!(Duration::from_millis(555) - Duration::from_millis(42), Duration::from_millis(513));
  266. // std::ops::Mul
  267. assert_eq!(Duration::from_millis(13) * 22, Duration::from_millis(286));
  268. // std::ops::Div
  269. assert_eq!(Duration::from_millis(53) / 4, Duration::from_millis(13));
  270. }
  271. #[test]
  272. fn test_duration_assign_ops() {
  273. let mut duration = Duration::from_millis(4735);
  274. duration += Duration::from_millis(1733);
  275. assert_eq!(duration, Duration::from_millis(6468));
  276. duration -= Duration::from_millis(1234);
  277. assert_eq!(duration, Duration::from_millis(5234));
  278. duration *= 4;
  279. assert_eq!(duration, Duration::from_millis(20936));
  280. duration /= 5;
  281. assert_eq!(duration, Duration::from_millis(4187));
  282. }
  283. #[test]
  284. #[should_panic(expected = "overflow when subtracting durations")]
  285. fn test_sub_from_zero_overflow() {
  286. let _ = Duration::from_millis(0) - Duration::from_millis(1);
  287. }
  288. #[test]
  289. #[should_panic(expected = "attempt to divide by zero")]
  290. fn test_div_by_zero() {
  291. let _ = Duration::from_millis(4) / 0;
  292. }
  293. #[test]
  294. fn test_duration_getters() {
  295. let instant = Duration::from_millis(4934);
  296. assert_eq!(instant.secs(), 4);
  297. assert_eq!(instant.millis(), 934);
  298. assert_eq!(instant.total_millis(), 4934);
  299. }
  300. #[test]
  301. fn test_duration_conversions() {
  302. let mut std_duration = ::core::time::Duration::from_millis(4934);
  303. let duration: Duration = std_duration.into();
  304. assert_eq!(duration, Duration::from_millis(4934));
  305. assert_eq!(Duration::from(std_duration), Duration::from_millis(4934));
  306. std_duration = duration.into();
  307. assert_eq!(std_duration, ::core::time::Duration::from_millis(4934));
  308. }
  309. }