use super::{Animate, Procedure, ToAnimatedZero};
use crate::values::computed::Integer;
use crate::values::computed::LengthPercentage;
use crate::values::computed::{GridTemplateComponent, TrackList, TrackSize};
use crate::values::distance::{ComputeSquaredDistance, SquaredDistance};
use crate::values::generics::grid as generics;
fn discrete<T: Clone>(from: &T, to: &T, procedure: Procedure) -> Result<T, ()> {
if let Procedure::Interpolate { progress } = procedure {
Ok(if progress < 0.5 {
from.clone()
} else {
to.clone()
})
} else {
Ok(to.clone())
}
}
fn animate_with_discrete_fallback<T: Animate + Clone>(
from: &T,
to: &T,
procedure: Procedure,
) -> Result<T, ()> {
from.animate(to, procedure)
.or_else(|_| discrete(from, to, procedure))
}
impl Animate for TrackSize {
fn animate(&self, other: &Self, procedure: Procedure) -> Result<Self, ()> {
match (self, other) {
(&generics::TrackSize::Breadth(ref from), &generics::TrackSize::Breadth(ref to)) => {
animate_with_discrete_fallback(from, to, procedure)
.map(generics::TrackSize::Breadth)
},
(
&generics::TrackSize::Minmax(ref from_min, ref from_max),
&generics::TrackSize::Minmax(ref to_min, ref to_max),
) => Ok(generics::TrackSize::Minmax(
animate_with_discrete_fallback(from_min, to_min, procedure)?,
animate_with_discrete_fallback(from_max, to_max, procedure)?,
)),
(
&generics::TrackSize::FitContent(ref from),
&generics::TrackSize::FitContent(ref to),
) => animate_with_discrete_fallback(from, to, procedure)
.map(generics::TrackSize::FitContent),
(_, _) => discrete(self, other, procedure),
}
}
}
impl Animate for generics::TrackRepeat<LengthPercentage, Integer> {
fn animate(&self, other: &Self, procedure: Procedure) -> Result<Self, ()> {
match (&self.count, &other.count) {
(&generics::RepeatCount::Number(from), &generics::RepeatCount::Number(to))
if from == to =>
{
()
},
(_, _) => return Err(()),
}
let count = self.count;
let track_sizes = super::lists::by_computed_value::animate(
&self.track_sizes,
&other.track_sizes,
procedure,
)?;
let line_names = discrete(&self.line_names, &other.line_names, procedure)?;
Ok(generics::TrackRepeat {
count,
line_names,
track_sizes,
})
}
}
impl Animate for TrackList {
fn animate(&self, other: &Self, procedure: Procedure) -> Result<Self, ()> {
if self.values.len() != other.values.len() {
return Err(());
}
if self.is_explicit() != other.is_explicit() {
return Err(());
}
if self.has_auto_repeat() || other.has_auto_repeat() {
return Err(());
}
let values =
super::lists::by_computed_value::animate(&self.values, &other.values, procedure)?;
let line_names = discrete(&self.line_names, &other.line_names, procedure)?;
Ok(TrackList {
values,
line_names,
auto_repeat_index: self.auto_repeat_index,
})
}
}
impl ComputeSquaredDistance for GridTemplateComponent {
#[inline]
fn compute_squared_distance(&self, _other: &Self) -> Result<SquaredDistance, ()> {
Err(())
}
}
impl ToAnimatedZero for GridTemplateComponent {
#[inline]
fn to_animated_zero(&self) -> Result<Self, ()> {
Err(())
}
}