use std::marker::PhantomData;
use crate::quantity::{
byte, gibibyte, hour, kibibyte, mebibyte, microsecond, millisecond, minute, second, tebibyte,
Information, Time,
};
pub trait IsUnit {
type Quantity;
fn dispatch(&self) -> Box<dyn UnitImpl<Quantity = Self::Quantity>>;
fn preferred_precision(&self) -> usize;
fn short_name(&self) -> &'static str {
self.dispatch().short_name()
}
fn format(&self, value: Self::Quantity, precision: usize) -> String {
self.dispatch().format_value(value, precision)
}
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum TimeUnit {
MicroSecond,
MilliSecond,
Second,
Minute,
Hour,
}
impl IsUnit for TimeUnit {
type Quantity = Time;
fn dispatch(&self) -> Box<dyn UnitImpl<Quantity = Time>> {
match self {
TimeUnit::MicroSecond => Box::new(TimeUnitDispatcher::<microsecond>::new()),
TimeUnit::MilliSecond => Box::new(TimeUnitDispatcher::<millisecond>::new()),
TimeUnit::Second => Box::new(TimeUnitDispatcher::<second>::new()),
TimeUnit::Minute => Box::new(TimeUnitDispatcher::<minute>::new()),
TimeUnit::Hour => Box::new(TimeUnitDispatcher::<hour>::new()),
}
}
fn preferred_precision(&self) -> usize {
match self {
TimeUnit::Second => 3,
_ => 1,
}
}
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum InformationUnit {
Byte,
KibiByte,
MebiByte,
GibiByte,
TebiByte,
}
impl IsUnit for InformationUnit {
type Quantity = Information;
fn dispatch(&self) -> Box<dyn UnitImpl<Quantity = Information>> {
match self {
InformationUnit::Byte => Box::new(InformationUnitDispatcher::<byte>::new()),
InformationUnit::KibiByte => Box::new(InformationUnitDispatcher::<kibibyte>::new()),
InformationUnit::MebiByte => Box::new(InformationUnitDispatcher::<mebibyte>::new()),
InformationUnit::GibiByte => Box::new(InformationUnitDispatcher::<gibibyte>::new()),
InformationUnit::TebiByte => Box::new(InformationUnitDispatcher::<tebibyte>::new()),
}
}
fn preferred_precision(&self) -> usize {
match self {
InformationUnit::Byte => 0,
_ => 1,
}
}
}
pub trait UnitImpl {
type Quantity;
fn short_name(&self) -> &'static str;
fn format_value(&self, value: Self::Quantity, precision: usize) -> String;
}
struct TimeUnitDispatcher<U: uom::si::time::Unit + uom::Conversion<f64, T = f64>> {
u: PhantomData<U>,
}
impl<U: uom::si::time::Unit + uom::Conversion<f64, T = f64>> TimeUnitDispatcher<U> {
fn new() -> Self {
TimeUnitDispatcher { u: PhantomData }
}
}
impl<U: uom::si::time::Unit + uom::Conversion<f64, T = f64>> UnitImpl for TimeUnitDispatcher<U> {
type Quantity = Time;
fn short_name(&self) -> &'static str {
U::abbreviation()
}
fn format_value(&self, value: Time, precision: usize) -> String {
format!("{value:.precision$}", value = value.get::<U>())
}
}
struct InformationUnitDispatcher<U: uom::si::information::Unit + uom::Conversion<f64, T = f64>> {
u: PhantomData<U>,
}
impl<U: uom::si::information::Unit + uom::Conversion<f64, T = f64>> InformationUnitDispatcher<U> {
fn new() -> Self {
InformationUnitDispatcher { u: PhantomData }
}
}
impl<U: uom::si::information::Unit + uom::Conversion<f64, T = f64>> UnitImpl
for InformationUnitDispatcher<U>
{
type Quantity = Information;
fn short_name(&self) -> &'static str {
U::abbreviation()
}
fn format_value(&self, value: Information, precision: usize) -> String {
format!("{value:.precision$}", value = value.get::<U>())
}
}
#[test]
fn test_time_unit_short_name() {
assert_eq!("s", TimeUnit::Second.short_name());
assert_eq!("ms", TimeUnit::MilliSecond.short_name());
assert_eq!("µs", TimeUnit::MicroSecond.short_name());
assert_eq!("min", TimeUnit::Minute.short_name());
assert_eq!("h", TimeUnit::Hour.short_name());
}
#[test]
fn test_unit_format() {
use crate::quantity::FormatQuantity;
let value = Time::new::<second>(123.456789);
assert_eq!("123.457", value.format_value(TimeUnit::Second));
assert_eq!("123456.8", value.format_value(TimeUnit::MilliSecond));
assert_eq!(
"1234.6",
Time::new::<second>(0.00123456).format_value(TimeUnit::MicroSecond)
);
assert_eq!("2.1", value.format_value(TimeUnit::Minute));
assert_eq!("0.0", value.format_value(TimeUnit::Hour));
}