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use std::cmp::{max, Ordering};
use std::num::Wrapping;
use std::ops::{Add, Div, Mul, Neg, Sub};
use std::time::{Duration, Instant};
use std::u32;
pub mod connection;
pub mod handshake;
pub mod receiver;
pub mod sender;
pub mod stats;
#[derive(Debug, Copy, Clone, PartialEq, Eq)]
pub struct TimeStamp(Wrapping<u32>);
#[derive(Debug, Copy, Clone, PartialEq, Eq, Ord, PartialOrd)]
pub struct TimeSpan(i32);
const TIMESTAMP_MASK: u128 = u32::MAX as u128;
#[derive(Copy, Clone, Debug)]
pub struct TimeBase(Instant);
impl TimeSpan {
pub fn from_micros(us: i32) -> Self {
Self(us)
}
pub fn as_micros(self) -> i32 {
self.0
}
pub fn abs(self) -> Self {
Self(self.0.abs())
}
pub fn as_secs_f64(self) -> f64 {
self.0 as f64 / 1e6
}
}
impl TimeStamp {
pub fn from_micros(us: u32) -> Self {
Self(Wrapping(us))
}
pub fn as_micros(self) -> u32 {
(self.0).0
}
pub fn as_secs_f64(self) -> f64 {
(self.0).0 as f64 / 1e6
}
pub fn as_duration(self) -> Duration {
Duration::from_micros(u64::from(self.as_micros()))
}
}
impl PartialOrd<TimeStamp> for TimeStamp {
fn partial_cmp(&self, other: &TimeStamp) -> Option<Ordering> {
Some(self.cmp(other))
}
}
impl Ord for TimeStamp {
fn cmp(&self, other: &Self) -> Ordering {
(*self - *other).as_micros().cmp(&0)
}
}
impl Add<TimeSpan> for TimeStamp {
type Output = TimeStamp;
#[allow(clippy::suspicious_arithmetic_impl)]
fn add(self, rhs: TimeSpan) -> Self::Output {
TimeStamp(if rhs.0 > 0 {
self.0 + Wrapping(rhs.0 as u32)
} else {
self.0 - Wrapping(rhs.0.abs() as u32)
})
}
}
impl Sub<TimeSpan> for TimeStamp {
type Output = TimeStamp;
fn sub(self, rhs: TimeSpan) -> Self::Output {
self + -rhs
}
}
impl Sub<TimeStamp> for TimeStamp {
type Output = TimeSpan;
fn sub(self, rhs: TimeStamp) -> TimeSpan {
let pos_sub = self.0 - rhs.0;
let neg_sub = rhs.0 - self.0;
if pos_sub < neg_sub {
TimeSpan(pos_sub.0 as i32)
} else {
-TimeSpan(neg_sub.0 as i32)
}
}
}
impl Neg for TimeSpan {
type Output = TimeSpan;
fn neg(self) -> Self::Output {
Self(-self.0)
}
}
impl Mul<i32> for TimeSpan {
type Output = TimeSpan;
fn mul(self, rhs: i32) -> Self::Output {
Self(self.0 * rhs)
}
}
impl Add<TimeSpan> for TimeSpan {
type Output = TimeSpan;
fn add(self, rhs: TimeSpan) -> Self::Output {
Self(self.0 + rhs.0)
}
}
impl Div<i32> for TimeSpan {
type Output = TimeSpan;
fn div(self, rhs: i32) -> Self::Output {
Self(self.0 / rhs)
}
}
impl Sub<TimeSpan> for TimeSpan {
type Output = TimeSpan;
fn sub(self, rhs: TimeSpan) -> Self::Output {
Self(self.0 - rhs.0)
}
}
impl TimeBase {
pub fn new(start_time: Instant) -> Self {
Self(start_time)
}
#[allow(clippy::trivially_copy_pass_by_ref)]
pub fn timestamp_from(&self, instant: Instant) -> TimeStamp {
assert!(
self.0 <= instant,
"Timestamps are only valid after the timebase start time"
);
TimeStamp(Wrapping(
((instant - self.0).as_micros() & TIMESTAMP_MASK) as u32,
))
}
#[allow(clippy::trivially_copy_pass_by_ref)]
pub fn instant_from(&self, now: Instant, timestamp: TimeStamp) -> Instant {
let wraps = ((now - self.0).as_micros() >> 32) as u64;
self.0
+ Duration::from_micros(wraps * u64::from(std::u32::MAX) + timestamp.as_micros() as u64)
}
pub fn adjust(&mut self, delta: TimeSpan) {
if delta.0 > 0 {
self.0 += Duration::from_micros(delta.0 as u64);
} else {
self.0 -= Duration::from_micros(delta.0.abs() as u64);
}
}
pub fn origin_time(&self) -> Instant {
self.0
}
}
#[cfg(test)]
mod timebase {
use super::*;
use proptest::prelude::*;
proptest! {
#[test]
fn timestamp_roundtrip(expected_ts: u32) {
let timebase = TimeBase::new(Instant::now());
let expected_ts = TimeStamp::from_micros(expected_ts);
let ts = timebase.timestamp_from(timebase.instant_from(Instant::now(), expected_ts));
assert_eq!(ts, expected_ts);
}
#[test]
fn timestamp_from(expected_ts: u32, n in 0u64..10) {
let now = Instant::now();
let timebase = TimeBase::new(now);
let delta = ((std::u32::MAX as u64 + 1)* n) + expected_ts as u64;
let instant = now + Duration::from_micros(delta as u64);
let ts = timebase.timestamp_from(instant);
assert_eq!(ts, TimeStamp::from_micros(expected_ts));
}
#[test]
fn adjust(drift: i16) {
let now = Instant::now();
let mut timebase = TimeBase::new(now);
let drift = TimeSpan::from_micros(i32::from(drift));
let original_ts = timebase.timestamp_from(now);
timebase.adjust(drift);
let ts = timebase.timestamp_from(now + Duration::from_micros(1_000_000));
assert_eq!(ts, original_ts - drift + TimeSpan::from_micros(1_000_000));
}
}
}
#[cfg(test)]
mod timestamp {
use super::*;
#[test]
#[allow(clippy::eq_op)]
fn subtract_timestamp() {
let a = TimeStamp::from_micros(10);
let max = a - TimeSpan(11);
let b = TimeStamp::from_micros(11);
assert_eq!(a - a, TimeSpan::from_micros(0));
assert_eq!(b - a, TimeSpan::from_micros(1));
assert_eq!(a - b, TimeSpan::from_micros(-1));
assert!(max < a);
assert!(b > a);
assert!(b > max);
assert_eq!(max.as_micros(), u32::MAX);
}
}
pub struct Timer {
period: Duration,
last: Instant,
}
impl Timer {
const MIN_PERIOD: Duration = Duration::from_micros(1);
pub fn new(period: Duration, now: Instant) -> Timer {
Timer {
period: max(period, Self::MIN_PERIOD),
last: now,
}
}
pub fn period(&mut self) -> Duration {
self.period
}
pub fn next_instant(&self) -> Instant {
self.last + self.period
}
pub fn reset(&mut self, now: Instant) {
self.last = now;
}
pub fn set_period(&mut self, period: Duration) {
self.period = period;
}
pub fn check_expired(&mut self, now: Instant) -> Option<Instant> {
if self.period.as_nanos() == 0 {
return Some(now);
}
if now >= self.next_instant() {
let elapsed = now - self.last;
let elapsed_periods = elapsed.as_nanos() / self.period.as_nanos();
self.last += self.period * elapsed_periods as u32;
Some(self.last)
} else {
None
}
}
}