18612b6ceSLoGin use core::{ 28612b6ceSLoGin fmt, 38d72b68dSJomo intrinsics::unlikely, 48612b6ceSLoGin ops::{self, Sub}, 58612b6ceSLoGin }; 613776c11Slogin 78d72b68dSJomo use crate::arch::CurrentTimeArch; 88d72b68dSJomo 9*881ff6f9Syuyi2439 use self::timekeeping::getnstimeofday; 1013776c11Slogin 1136fd0130Shoumkh pub mod clocksource; 1236fd0130Shoumkh pub mod jiffies; 13bacd691cSlogin pub mod sleep; 14ab5c8ca4Slogin pub mod syscall; 1536fd0130Shoumkh pub mod timeconv; 1601876902SGou Ngai pub mod timekeep; 1736fd0130Shoumkh pub mod timekeeping; 18bacd691cSlogin pub mod timer; 19da152319SLoGin 2013776c11Slogin /* Time structures. (Partitially taken from smoltcp) 2113776c11Slogin 2213776c11Slogin The `time` module contains structures used to represent both 2313776c11Slogin absolute and relative time. 2413776c11Slogin 2513776c11Slogin - [Instant] is used to represent absolute time. 2613776c11Slogin - [Duration] is used to represent relative time. 2713776c11Slogin 2813776c11Slogin [Instant]: struct.Instant.html 2913776c11Slogin [Duration]: struct.Duration.html 3013776c11Slogin */ 3136fd0130Shoumkh #[allow(dead_code)] 3236fd0130Shoumkh pub const MSEC_PER_SEC: u32 = 1000; 3336fd0130Shoumkh #[allow(dead_code)] 3436fd0130Shoumkh pub const USEC_PER_MSEC: u32 = 1000; 3536fd0130Shoumkh #[allow(dead_code)] 3636fd0130Shoumkh pub const NSEC_PER_USEC: u32 = 1000; 3736fd0130Shoumkh #[allow(dead_code)] 3836fd0130Shoumkh pub const NSEC_PER_MSEC: u32 = 1000000; 3936fd0130Shoumkh #[allow(dead_code)] 4036fd0130Shoumkh pub const USEC_PER_SEC: u32 = 1000000; 4136fd0130Shoumkh #[allow(dead_code)] 4236fd0130Shoumkh pub const NSEC_PER_SEC: u32 = 1000000000; 4336fd0130Shoumkh #[allow(dead_code)] 4436fd0130Shoumkh pub const FSEC_PER_SEC: u64 = 1000000000000000; 4513776c11Slogin 46ab5c8ca4Slogin /// 表示时间的结构体,符合POSIX标准。 47004e86ffSlogin #[derive(Debug, Clone, Copy, PartialEq, Eq, Default)] 48ab5c8ca4Slogin #[repr(C)] 496fc066acSJomo pub struct PosixTimeSpec { 50004e86ffSlogin pub tv_sec: i64, 51004e86ffSlogin pub tv_nsec: i64, 52004e86ffSlogin } 5320e3152eSlogin 546fc066acSJomo impl PosixTimeSpec { 5513776c11Slogin #[allow(dead_code)] 566fc066acSJomo pub fn new(sec: i64, nsec: i64) -> PosixTimeSpec { 576fc066acSJomo return PosixTimeSpec { 5820e3152eSlogin tv_sec: sec, 5920e3152eSlogin tv_nsec: nsec, 6020e3152eSlogin }; 6120e3152eSlogin } 628d72b68dSJomo 638d72b68dSJomo /// 获取当前时间 646fc066acSJomo #[inline(always)] 658d72b68dSJomo pub fn now() -> Self { 666fc066acSJomo getnstimeofday() 676fc066acSJomo } 686fc066acSJomo 696fc066acSJomo /// 获取当前CPU时间(使用CPU时钟周期计算,会存在回绕问题) 706fc066acSJomo pub fn now_cpu_time() -> Self { 718d72b68dSJomo #[cfg(target_arch = "x86_64")] 728d72b68dSJomo { 738d72b68dSJomo use crate::arch::driver::tsc::TSCManager; 748d72b68dSJomo let khz = TSCManager::cpu_khz(); 758d72b68dSJomo if unlikely(khz == 0) { 766fc066acSJomo return PosixTimeSpec::default(); 778d72b68dSJomo } else { 788d72b68dSJomo return Self::from(Duration::from_millis( 798d72b68dSJomo CurrentTimeArch::get_cycles() as u64 / khz, 808d72b68dSJomo )); 818d72b68dSJomo } 828d72b68dSJomo } 838d72b68dSJomo 848d72b68dSJomo #[cfg(target_arch = "riscv64")] 858d72b68dSJomo { 866fc066acSJomo return PosixTimeSpec::new(0, 0); 878d72b68dSJomo } 8820e3152eSlogin } 8913776c11Slogin 906fc066acSJomo /// 换算成纳秒 916fc066acSJomo pub fn total_nanos(&self) -> i64 { 926fc066acSJomo self.tv_sec * 1000000000 + self.tv_nsec 936fc066acSJomo } 946fc066acSJomo } 956fc066acSJomo 966fc066acSJomo impl Sub for PosixTimeSpec { 978612b6ceSLoGin type Output = Duration; 988612b6ceSLoGin fn sub(self, rhs: Self) -> Self::Output { 998612b6ceSLoGin let sec = self.tv_sec.checked_sub(rhs.tv_sec).unwrap_or(0); 1008612b6ceSLoGin let nsec = self.tv_nsec.checked_sub(rhs.tv_nsec).unwrap_or(0); 1018612b6ceSLoGin Duration::from_micros((sec * 1000000 + nsec / 1000) as u64) 1028612b6ceSLoGin } 1038612b6ceSLoGin } 1048612b6ceSLoGin 1056fc066acSJomo impl From<Duration> for PosixTimeSpec { 1068612b6ceSLoGin fn from(dur: Duration) -> Self { 1076fc066acSJomo PosixTimeSpec { 1088612b6ceSLoGin tv_sec: dur.total_micros() as i64 / 1000000, 1098612b6ceSLoGin tv_nsec: (dur.total_micros() as i64 % 1000000) * 1000, 1108612b6ceSLoGin } 1118612b6ceSLoGin } 1128612b6ceSLoGin } 1138612b6ceSLoGin 1146fc066acSJomo impl From<PosixTimeSpec> for Duration { 1156fc066acSJomo fn from(val: PosixTimeSpec) -> Self { 116840045afSLoGin Duration::from_micros(val.tv_sec as u64 * 1000000 + val.tv_nsec as u64 / 1000) 1178612b6ceSLoGin } 1188612b6ceSLoGin } 1198612b6ceSLoGin 12013776c11Slogin /// A representation of an absolute time value. 12113776c11Slogin /// 12213776c11Slogin /// The `Instant` type is a wrapper around a `i64` value that 12313776c11Slogin /// represents a number of microseconds, monotonically increasing 12413776c11Slogin /// since an arbitrary moment in time, such as system startup. 12513776c11Slogin /// 12613776c11Slogin /// * A value of `0` is inherently arbitrary. 12713776c11Slogin /// * A value less than `0` indicates a time before the starting 12813776c11Slogin /// point. 12913776c11Slogin #[derive(Debug, Copy, Clone, PartialEq, Eq, PartialOrd, Ord)] 13013776c11Slogin #[cfg_attr(feature = "defmt", derive(defmt::Format))] 13113776c11Slogin pub struct Instant { 13213776c11Slogin micros: i64, 13313776c11Slogin } 13413776c11Slogin 13513776c11Slogin #[allow(dead_code)] 13613776c11Slogin impl Instant { 13713776c11Slogin pub const ZERO: Instant = Instant::from_micros_const(0); 13813776c11Slogin 139da152319SLoGin /// mktime64 - 将日期转换为秒。 140da152319SLoGin /// 141da152319SLoGin /// ## 参数 142da152319SLoGin /// 143da152319SLoGin /// - year0: 要转换的年份 144da152319SLoGin /// - mon0: 要转换的月份 145da152319SLoGin /// - day: 要转换的天 146da152319SLoGin /// - hour: 要转换的小时 147da152319SLoGin /// - min: 要转换的分钟 148da152319SLoGin /// - sec: 要转换的秒 149da152319SLoGin /// 150da152319SLoGin /// 将公历日期转换为1970-01-01 00:00:00以来的秒数。 151da152319SLoGin /// 假设输入为正常的日期格式,即1980-12-31 23:59:59 => 年份=1980, 月=12, 日=31, 时=23, 分=59, 秒=59。 152da152319SLoGin /// 153da152319SLoGin /// [For the Julian calendar(俄罗斯在1917年之前使用,英国及其殖民地在大西洋1752年之前使用, 154da152319SLoGin /// 其他地方在1582年之前使用,某些社区仍然在使用)省略-year/100+year/400项, 155da152319SLoGin /// 并在结果上加10。] 156da152319SLoGin /// 157da152319SLoGin /// 这个算法最初由高斯(我认为是)发表。 158da152319SLoGin /// 159da152319SLoGin /// 要表示闰秒,可以通过将sec设为60(在ISO 8601允许)来调用此函数。 160da152319SLoGin /// 闰秒与随后的秒一样处理,因为它们在UNIX时间中不存在。 161da152319SLoGin /// 162da152319SLoGin /// 支持将午夜作为当日末尾的24:00:00编码 - 即明天的午夜(在ISO 8601允许)。 163da152319SLoGin /// 164da152319SLoGin /// ## 返回 165da152319SLoGin /// 166da152319SLoGin /// 返回:给定输入日期自1970-01-01 00:00:00以来的秒数 167da152319SLoGin pub fn mktime64(year0: u32, mon0: u32, day: u32, hour: u32, min: u32, sec: u32) -> Self { 168da152319SLoGin let mut mon: i64 = mon0.into(); 169da152319SLoGin let mut year: u64 = year0.into(); 170da152319SLoGin let day: u64 = day.into(); 171da152319SLoGin let hour: u64 = hour.into(); 172da152319SLoGin let min: u64 = min.into(); 173da152319SLoGin let sec: u64 = sec.into(); 174da152319SLoGin 175da152319SLoGin mon -= 2; 176da152319SLoGin /* 1..12 -> 11,12,1..10 */ 177da152319SLoGin if mon <= 0 { 178da152319SLoGin /* Puts Feb last since it has leap day */ 179da152319SLoGin mon += 12; 180da152319SLoGin year -= 1; 181da152319SLoGin } 182da152319SLoGin let mon = mon as u64; 183da152319SLoGin 184da152319SLoGin let secs = ((((year / 4 - year / 100 + year / 400 + 367 * mon / 12 + day) + year * 365 185da152319SLoGin - 719499) 186da152319SLoGin * 24 + hour) /* now have hours - midnight tomorrow handled here */ 187da152319SLoGin * 60 + min)/* now have minutes */ 188da152319SLoGin * 60 189da152319SLoGin + sec; /* finally seconds */ 190da152319SLoGin 191da152319SLoGin Self::from_secs(secs as i64) 192da152319SLoGin } 193da152319SLoGin 19413776c11Slogin /// Create a new `Instant` from a number of microseconds. 19513776c11Slogin pub fn from_micros<T: Into<i64>>(micros: T) -> Instant { 19613776c11Slogin Instant { 19713776c11Slogin micros: micros.into(), 19813776c11Slogin } 19913776c11Slogin } 20013776c11Slogin 20113776c11Slogin pub const fn from_micros_const(micros: i64) -> Instant { 20213776c11Slogin Instant { micros } 20313776c11Slogin } 20413776c11Slogin 20513776c11Slogin /// Create a new `Instant` from a number of milliseconds. 20613776c11Slogin pub fn from_millis<T: Into<i64>>(millis: T) -> Instant { 20713776c11Slogin Instant { 20813776c11Slogin micros: millis.into() * 1000, 20913776c11Slogin } 21013776c11Slogin } 21113776c11Slogin 21213776c11Slogin /// Create a new `Instant` from a number of milliseconds. 21313776c11Slogin pub const fn from_millis_const(millis: i64) -> Instant { 21413776c11Slogin Instant { 21513776c11Slogin micros: millis * 1000, 21613776c11Slogin } 21713776c11Slogin } 21813776c11Slogin 21913776c11Slogin /// Create a new `Instant` from a number of seconds. 22013776c11Slogin pub fn from_secs<T: Into<i64>>(secs: T) -> Instant { 22113776c11Slogin Instant { 22213776c11Slogin micros: secs.into() * 1000000, 22313776c11Slogin } 22413776c11Slogin } 22513776c11Slogin 22613776c11Slogin /// Create a new `Instant` from the current time 22713776c11Slogin pub fn now() -> Instant { 228*881ff6f9Syuyi2439 let tm = getnstimeofday(); 229*881ff6f9Syuyi2439 Self::from_micros(tm.tv_sec * 1000000 + tm.tv_nsec / 1000) 23013776c11Slogin } 23113776c11Slogin 23213776c11Slogin /// The fractional number of milliseconds that have passed 23313776c11Slogin /// since the beginning of time. 23413776c11Slogin pub const fn millis(&self) -> i64 { 23513776c11Slogin self.micros % 1000000 / 1000 23613776c11Slogin } 23713776c11Slogin 23813776c11Slogin /// The fractional number of microseconds that have passed 23913776c11Slogin /// since the beginning of time. 24013776c11Slogin pub const fn micros(&self) -> i64 { 24113776c11Slogin self.micros % 1000000 24213776c11Slogin } 24313776c11Slogin 24413776c11Slogin /// The number of whole seconds that have passed since the 24513776c11Slogin /// beginning of time. 24613776c11Slogin pub const fn secs(&self) -> i64 { 24713776c11Slogin self.micros / 1000000 24813776c11Slogin } 24913776c11Slogin 25013776c11Slogin /// The total number of milliseconds that have passed since 25113776c11Slogin /// the beginning of time. 25213776c11Slogin pub const fn total_millis(&self) -> i64 { 25313776c11Slogin self.micros / 1000 25413776c11Slogin } 25513776c11Slogin /// The total number of milliseconds that have passed since 25613776c11Slogin /// the beginning of time. 25713776c11Slogin pub const fn total_micros(&self) -> i64 { 25813776c11Slogin self.micros 25913776c11Slogin } 26013776c11Slogin } 26113776c11Slogin 26213776c11Slogin impl fmt::Display for Instant { 26313776c11Slogin fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 26413776c11Slogin write!(f, "{}.{:0>3}s", self.secs(), self.millis()) 26513776c11Slogin } 26613776c11Slogin } 26713776c11Slogin 26813776c11Slogin impl ops::Add<Duration> for Instant { 26913776c11Slogin type Output = Instant; 27013776c11Slogin 27113776c11Slogin fn add(self, rhs: Duration) -> Instant { 27213776c11Slogin Instant::from_micros(self.micros + rhs.total_micros() as i64) 27313776c11Slogin } 27413776c11Slogin } 27513776c11Slogin 27613776c11Slogin impl ops::AddAssign<Duration> for Instant { 27713776c11Slogin fn add_assign(&mut self, rhs: Duration) { 27813776c11Slogin self.micros += rhs.total_micros() as i64; 27913776c11Slogin } 28013776c11Slogin } 28113776c11Slogin 28213776c11Slogin impl ops::Sub<Duration> for Instant { 28313776c11Slogin type Output = Instant; 28413776c11Slogin 28513776c11Slogin fn sub(self, rhs: Duration) -> Instant { 28613776c11Slogin Instant::from_micros(self.micros - rhs.total_micros() as i64) 28713776c11Slogin } 28813776c11Slogin } 28913776c11Slogin 29013776c11Slogin impl ops::SubAssign<Duration> for Instant { 29113776c11Slogin fn sub_assign(&mut self, rhs: Duration) { 29213776c11Slogin self.micros -= rhs.total_micros() as i64; 29313776c11Slogin } 29413776c11Slogin } 29513776c11Slogin 29613776c11Slogin impl ops::Sub<Instant> for Instant { 29713776c11Slogin type Output = Duration; 29813776c11Slogin 29913776c11Slogin fn sub(self, rhs: Instant) -> Duration { 30013776c11Slogin Duration::from_micros((self.micros - rhs.micros).unsigned_abs()) 30113776c11Slogin } 30213776c11Slogin } 30313776c11Slogin 30413776c11Slogin /// A relative amount of time. 30513776c11Slogin #[derive(Debug, Default, Copy, Clone, PartialEq, Eq, PartialOrd, Ord)] 30613776c11Slogin #[cfg_attr(feature = "defmt", derive(defmt::Format))] 30713776c11Slogin pub struct Duration { 30813776c11Slogin micros: u64, 30913776c11Slogin } 31013776c11Slogin 31113776c11Slogin impl Duration { 31213776c11Slogin pub const ZERO: Duration = Duration::from_micros(0); 31313776c11Slogin /// Create a new `Duration` from a number of microseconds. 31413776c11Slogin pub const fn from_micros(micros: u64) -> Duration { 31513776c11Slogin Duration { micros } 31613776c11Slogin } 31713776c11Slogin 31813776c11Slogin /// Create a new `Duration` from a number of milliseconds. 31913776c11Slogin pub const fn from_millis(millis: u64) -> Duration { 32013776c11Slogin Duration { 32113776c11Slogin micros: millis * 1000, 32213776c11Slogin } 32313776c11Slogin } 32413776c11Slogin 32513776c11Slogin /// Create a new `Instant` from a number of seconds. 32613776c11Slogin pub const fn from_secs(secs: u64) -> Duration { 32713776c11Slogin Duration { 32813776c11Slogin micros: secs * 1000000, 32913776c11Slogin } 33013776c11Slogin } 33113776c11Slogin 33213776c11Slogin /// The fractional number of milliseconds in this `Duration`. 33313776c11Slogin pub const fn millis(&self) -> u64 { 33413776c11Slogin self.micros / 1000 % 1000 33513776c11Slogin } 33613776c11Slogin 33713776c11Slogin /// The fractional number of milliseconds in this `Duration`. 33813776c11Slogin pub const fn micros(&self) -> u64 { 33913776c11Slogin self.micros % 1000000 34013776c11Slogin } 34113776c11Slogin 34213776c11Slogin /// The number of whole seconds in this `Duration`. 34313776c11Slogin pub const fn secs(&self) -> u64 { 34413776c11Slogin self.micros / 1000000 34513776c11Slogin } 34613776c11Slogin 34713776c11Slogin /// The total number of milliseconds in this `Duration`. 34813776c11Slogin pub const fn total_millis(&self) -> u64 { 34913776c11Slogin self.micros / 1000 35013776c11Slogin } 35113776c11Slogin 35213776c11Slogin /// The total number of microseconds in this `Duration`. 35313776c11Slogin pub const fn total_micros(&self) -> u64 { 35413776c11Slogin self.micros 35513776c11Slogin } 35613776c11Slogin } 35713776c11Slogin 35813776c11Slogin impl fmt::Display for Duration { 35913776c11Slogin fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 36013776c11Slogin write!(f, "{}.{:03}s", self.secs(), self.millis()) 36113776c11Slogin } 36213776c11Slogin } 36313776c11Slogin 36413776c11Slogin impl ops::Add<Duration> for Duration { 36513776c11Slogin type Output = Duration; 36613776c11Slogin 36713776c11Slogin fn add(self, rhs: Duration) -> Duration { 36813776c11Slogin Duration::from_micros(self.micros + rhs.total_micros()) 36913776c11Slogin } 37013776c11Slogin } 37113776c11Slogin 37213776c11Slogin impl ops::AddAssign<Duration> for Duration { 37313776c11Slogin fn add_assign(&mut self, rhs: Duration) { 37413776c11Slogin self.micros += rhs.total_micros(); 37513776c11Slogin } 37613776c11Slogin } 37713776c11Slogin 37813776c11Slogin impl ops::Sub<Duration> for Duration { 37913776c11Slogin type Output = Duration; 38013776c11Slogin 38113776c11Slogin fn sub(self, rhs: Duration) -> Duration { 38213776c11Slogin Duration::from_micros( 38313776c11Slogin self.micros 38413776c11Slogin .checked_sub(rhs.total_micros()) 38513776c11Slogin .expect("overflow when subtracting durations"), 38613776c11Slogin ) 38713776c11Slogin } 38813776c11Slogin } 38913776c11Slogin 39013776c11Slogin impl ops::SubAssign<Duration> for Duration { 39113776c11Slogin fn sub_assign(&mut self, rhs: Duration) { 39213776c11Slogin self.micros = self 39313776c11Slogin .micros 39413776c11Slogin .checked_sub(rhs.total_micros()) 39513776c11Slogin .expect("overflow when subtracting durations"); 39613776c11Slogin } 39713776c11Slogin } 39813776c11Slogin 39913776c11Slogin impl ops::Mul<u32> for Duration { 40013776c11Slogin type Output = Duration; 40113776c11Slogin 40213776c11Slogin fn mul(self, rhs: u32) -> Duration { 40313776c11Slogin Duration::from_micros(self.micros * rhs as u64) 40413776c11Slogin } 40513776c11Slogin } 40613776c11Slogin 40713776c11Slogin impl ops::MulAssign<u32> for Duration { 40813776c11Slogin fn mul_assign(&mut self, rhs: u32) { 40913776c11Slogin self.micros *= rhs as u64; 41013776c11Slogin } 41113776c11Slogin } 41213776c11Slogin 41313776c11Slogin impl ops::Div<u32> for Duration { 41413776c11Slogin type Output = Duration; 41513776c11Slogin 41613776c11Slogin fn div(self, rhs: u32) -> Duration { 41713776c11Slogin Duration::from_micros(self.micros / rhs as u64) 41813776c11Slogin } 41913776c11Slogin } 42013776c11Slogin 42113776c11Slogin impl ops::DivAssign<u32> for Duration { 42213776c11Slogin fn div_assign(&mut self, rhs: u32) { 42313776c11Slogin self.micros /= rhs as u64; 42413776c11Slogin } 42513776c11Slogin } 42613776c11Slogin 42713776c11Slogin impl ops::Shl<u32> for Duration { 42813776c11Slogin type Output = Duration; 42913776c11Slogin 43013776c11Slogin fn shl(self, rhs: u32) -> Duration { 43113776c11Slogin Duration::from_micros(self.micros << rhs) 43213776c11Slogin } 43313776c11Slogin } 43413776c11Slogin 43513776c11Slogin impl ops::ShlAssign<u32> for Duration { 43613776c11Slogin fn shl_assign(&mut self, rhs: u32) { 43713776c11Slogin self.micros <<= rhs; 43813776c11Slogin } 43913776c11Slogin } 44013776c11Slogin 44113776c11Slogin impl ops::Shr<u32> for Duration { 44213776c11Slogin type Output = Duration; 44313776c11Slogin 44413776c11Slogin fn shr(self, rhs: u32) -> Duration { 44513776c11Slogin Duration::from_micros(self.micros >> rhs) 44613776c11Slogin } 44713776c11Slogin } 44813776c11Slogin 44913776c11Slogin impl ops::ShrAssign<u32> for Duration { 45013776c11Slogin fn shr_assign(&mut self, rhs: u32) { 45113776c11Slogin self.micros >>= rhs; 45213776c11Slogin } 45313776c11Slogin } 45413776c11Slogin 45513776c11Slogin impl From<::core::time::Duration> for Duration { 45613776c11Slogin fn from(other: ::core::time::Duration) -> Duration { 45713776c11Slogin Duration::from_micros(other.as_secs() * 1000000 + other.subsec_micros() as u64) 45813776c11Slogin } 45913776c11Slogin } 46013776c11Slogin 46113776c11Slogin impl From<Duration> for ::core::time::Duration { 46213776c11Slogin fn from(val: Duration) -> Self { 46313776c11Slogin ::core::time::Duration::from_micros(val.total_micros()) 46413776c11Slogin } 46513776c11Slogin } 46613776c11Slogin 46713776c11Slogin /// 支持与smoltcp的时间转换 46813776c11Slogin impl From<smoltcp::time::Instant> for Instant { 46913776c11Slogin fn from(val: smoltcp::time::Instant) -> Self { 47013776c11Slogin Instant::from_micros(val.micros()) 47113776c11Slogin } 47213776c11Slogin } 47313776c11Slogin 474840045afSLoGin impl From<Instant> for smoltcp::time::Instant { 475840045afSLoGin fn from(val: Instant) -> Self { 476840045afSLoGin smoltcp::time::Instant::from_millis(val.millis()) 47713776c11Slogin } 47813776c11Slogin } 47913776c11Slogin 48013776c11Slogin /// 支持与smoltcp的时间转换 48113776c11Slogin impl From<smoltcp::time::Duration> for Duration { 48213776c11Slogin fn from(val: smoltcp::time::Duration) -> Self { 48313776c11Slogin Duration::from_micros(val.micros()) 48413776c11Slogin } 48513776c11Slogin } 48613776c11Slogin 487840045afSLoGin impl From<Duration> for smoltcp::time::Duration { 488840045afSLoGin fn from(val: Duration) -> Self { 489840045afSLoGin smoltcp::time::Duration::from_millis(val.millis()) 49013776c11Slogin } 49113776c11Slogin } 492fbe6becdSLoGin 493fbe6becdSLoGin pub trait TimeArch { 494fbe6becdSLoGin /// Get CPU cycles (Read from register) 495fbe6becdSLoGin fn get_cycles() -> usize; 4968cb2e9b3SLoGin 4978cb2e9b3SLoGin /// Calculate expire cycles 4988cb2e9b3SLoGin /// 4998cb2e9b3SLoGin /// # Arguments 5008cb2e9b3SLoGin /// 5018cb2e9b3SLoGin /// - `ns` - The time to expire in nanoseconds 5028cb2e9b3SLoGin /// 5038cb2e9b3SLoGin /// # Returns 5048cb2e9b3SLoGin /// 5058cb2e9b3SLoGin /// The expire cycles 5068cb2e9b3SLoGin fn cal_expire_cycles(ns: usize) -> usize; 507b8ed3825SDonkey Kane 508b8ed3825SDonkey Kane /// 将CPU的时钟周期数转换为纳秒 509b8ed3825SDonkey Kane fn cycles2ns(cycles: usize) -> usize; 510fbe6becdSLoGin } 511