hyperfine 1.21.0

A command-line benchmarking tool
use std::marker::PhantomData;

use uom::si;

pub use si::f64::{Information, Ratio, Time};
pub use si::information::{byte, gibibyte, kibibyte, mebibyte, tebibyte};
pub use si::ratio::ratio;
pub use si::time::{hour, microsecond, millisecond, minute, nanosecond, second};
pub use uom::num_traits::Zero;

pub use units::{InformationUnit, IsUnit, TimeUnit};

pub mod statistics;
mod units;

pub trait FormatQuantity {
    type Unit;

    fn suitable_unit(&self) -> Self::Unit;

    fn format_with_precision(&self, unit: Self::Unit, precision: usize) -> String;
    fn format(&self, unit: Self::Unit) -> String;
    fn format_auto(&self) -> String;
    fn format_value(&self, unit: Self::Unit) -> String;
}

impl FormatQuantity for Time {
    type Unit = TimeUnit;

    fn suitable_unit(&self) -> TimeUnit {
        if *self < Time::new::<millisecond>(1.0) {
            TimeUnit::MicroSecond
        } else if *self < Time::new::<second>(1.0) {
            TimeUnit::MilliSecond
        } else {
            TimeUnit::Second
        }
    }

    /// Format the time duration in the given unit with the given precision.
    fn format_with_precision(&self, u: TimeUnit, precision: usize) -> String {
        u.format(*self, precision)
    }

    /// Format the time duration in the given unit.
    fn format(&self, unit: TimeUnit) -> String {
        let value = self.format_with_precision(unit, unit.preferred_precision());
        format!("{} {}", value, unit.short_name())
    }

    /// Format the given time duration. The unit will be determined automatically.
    fn format_auto(&self) -> String {
        self.format(self.suitable_unit())
    }

    /// Like `format`, but without displaying the unit.
    fn format_value(&self, unit: TimeUnit) -> String {
        self.format_with_precision(unit, unit.preferred_precision())
    }
}

pub const fn const_time_from_seconds(value: f64) -> Time {
    // Quantity::new in uom is not yet const: https://docs.rs/uom/0.36.0/uom/si/struct.Quantity.html
    Time {
        dimension: PhantomData,
        units: PhantomData,
        value,
    }
}

impl FormatQuantity for Information {
    type Unit = InformationUnit;

    fn suitable_unit(&self) -> InformationUnit {
        if *self < Information::new::<kibibyte>(1.0) {
            InformationUnit::Byte
        } else if *self < Information::new::<mebibyte>(1.0) {
            InformationUnit::KibiByte
        } else if *self < Information::new::<gibibyte>(1.0) {
            InformationUnit::MebiByte
        } else {
            InformationUnit::GibiByte
        }
    }

    /// Format the information in the given unit with the given precision.
    fn format_with_precision(&self, u: InformationUnit, precision: usize) -> String {
        u.format(*self, precision)
    }

    /// Format the information in the given unit.
    fn format(&self, unit: InformationUnit) -> String {
        let value = self.format_with_precision(unit, unit.preferred_precision());
        format!("{} {}", value, unit.short_name())
    }

    /// Format the given information. The unit will be determined automatically.
    fn format_auto(&self) -> String {
        self.format(self.suitable_unit())
    }

    /// Like `format`, but without displaying the unit.
    fn format_value(&self, unit: InformationUnit) -> String {
        self.format_with_precision(unit, unit.preferred_precision())
    }
}

#[test]
fn test_time() {
    let time = Time::new::<millisecond>(123.4);
    assert_eq!(time.get::<millisecond>(), 123.4);

    let time_s = time.get::<second>();
    approx::assert_relative_eq!(time_s, 0.1234);

    let time_us = time.get::<microsecond>();
    approx::assert_relative_eq!(time_us, 123400.0);
}

#[test]
fn test_information() {
    use uom::si::information::pebibyte;

    let information = Information::new::<kibibyte>(8.);
    assert_eq!(information.get::<byte>(), 8192.);

    let information_kib = information.get::<kibibyte>();
    assert_eq!(information_kib, 8.);

    let largest_exactly_representable = Information::new::<byte>(9_007_199_254_740_992.);
    assert_eq!(largest_exactly_representable.get::<pebibyte>(), 8.);
}

#[test]
fn test_suiteable_unit_time() {
    assert_eq!(Time::new::<second>(1.3).suitable_unit(), TimeUnit::Second);
    assert_eq!(Time::new::<second>(1.0).suitable_unit(), TimeUnit::Second);
    assert_eq!(
        Time::new::<second>(0.999).suitable_unit(),
        TimeUnit::MilliSecond
    );
    assert_eq!(
        Time::new::<second>(0.0005).suitable_unit(),
        TimeUnit::MicroSecond
    );
    assert_eq!(
        Time::new::<second>(0.).suitable_unit(),
        TimeUnit::MicroSecond
    );
    assert_eq!(
        Time::new::<second>(1000.0).suitable_unit(),
        TimeUnit::Second
    );
}

#[test]
fn test_suitable_unit_information() {
    assert_eq!(
        Information::new::<byte>(512.0).suitable_unit(),
        InformationUnit::Byte
    );
    assert_eq!(
        Information::new::<byte>(2048.0).suitable_unit(),
        InformationUnit::KibiByte
    );
    assert_eq!(
        Information::new::<byte>(2_097_152.0).suitable_unit(),
        InformationUnit::MebiByte
    );
    assert_eq!(
        Information::new::<byte>(2_147_483_648.0).suitable_unit(),
        InformationUnit::GibiByte
    );
}

#[test]
fn test_format() {
    let time = Time::new::<millisecond>(123.4);
    assert_eq!(time.format(TimeUnit::Second), "0.123 s");
    assert_eq!(time.format(TimeUnit::MilliSecond), "123.4 ms");
    assert_eq!(time.format_auto(), "123.4 ms");
    assert_eq!(time.format(TimeUnit::MicroSecond), "123400.0 µs");

    let peak_memory_usage = Information::new::<kibibyte>(8.);
    assert_eq!(peak_memory_usage.format_auto(), "8.0 KiB");
    assert_eq!(peak_memory_usage.format(InformationUnit::Byte), "8192 B");
    assert_eq!(
        peak_memory_usage.format(InformationUnit::KibiByte),
        "8.0 KiB"
    );
}

#[test]
fn test_format_duration_unit_with_unit() {
    let out = Time::new::<second>(1.3).format(TimeUnit::Second);
    assert_eq!("1.300 s", out);

    let out = Time::new::<second>(1.3).format(TimeUnit::MilliSecond);
    assert_eq!("1300.0 ms", out);

    let out = Time::new::<second>(1.3).format(TimeUnit::MicroSecond);
    assert_eq!("1300000.0 µs", out);
}