Prune the unused legacy Adjust and Blend list implementations

This commit is contained in:
Dennis Kobert
2026-08-23 20:00:24 +00:00
parent 2575b94e8f
commit 9ca897963f
2 changed files with 1 additions and 72 deletions

View File

@@ -12,17 +12,9 @@ impl Adjust<Color> for Color {
#[cfg(feature = "std")]
mod adjust_std {
use super::*;
use core_types::list::List;
use raster_types::{CPU, Raster};
use vector_types::GradientStops;
impl Adjust<Color> for List<Raster<CPU>> {
fn adjust(&mut self, map_fn: impl Fn(&Color) -> Color) {
for element in self.iter_element_values_mut() {
element.adjust(&map_fn);
}
}
}
impl Adjust<Color> for Raster<CPU> {
fn adjust(&mut self, map_fn: impl Fn(&Color) -> Color) {
for color in self.data_mut().data.iter_mut() {
@@ -30,20 +22,6 @@ mod adjust_std {
}
}
}
impl Adjust<Color> for List<Color> {
fn adjust(&mut self, map_fn: impl Fn(&Color) -> Color) {
for element in self.iter_element_values_mut() {
*element = map_fn(element);
}
}
}
impl Adjust<Color> for List<GradientStops> {
fn adjust(&mut self, map_fn: impl Fn(&Color) -> Color) {
for element in self.iter_element_values_mut() {
element.adjust(&map_fn);
}
}
}
impl Adjust<Color> for GradientStops {
fn adjust(&mut self, map_fn: impl Fn(&Color) -> Color) {
for color in self.color.iter_mut() {

View File

@@ -21,7 +21,6 @@ impl Blend<Color> for Color {
mod blend_std {
use super::*;
use core::cmp::Ordering;
use core_types::list::List;
use raster_types::Image;
use raster_types::Raster;
@@ -37,52 +36,6 @@ mod blend_std {
}
}
impl Blend<Color> for List<Raster<CPU>> {
fn blend(&self, under: &Self, blend_fn: impl Fn(Color, Color) -> Color) -> Self {
let mut result_list = self.clone();
let pair_count = result_list.len().min(under.len());
for index in 0..pair_count {
let Some(over) = result_list.element(index) else { break };
let Some(under_element) = under.element(index) else { break };
let data = over.data.iter().zip(under_element.data.iter()).map(|(a, b)| blend_fn(*a, *b)).collect();
let (width, height) = (over.width, over.height);
*result_list.element_mut(index).unwrap() = Raster::new_cpu(Image {
data,
width,
height,
base64_string: None,
});
}
result_list
}
}
impl Blend<Color> for List<Color> {
fn blend(&self, under: &Self, blend_fn: impl Fn(Color, Color) -> Color) -> Self {
let mut result_list = self.clone();
let pair_count = result_list.len().min(under.len());
for index in 0..pair_count {
let Some(over) = result_list.element(index) else { break };
let Some(under_element) = under.element(index) else { break };
let new_val = blend_fn(*over, *under_element);
*result_list.element_mut(index).unwrap() = new_val;
}
result_list
}
}
impl Blend<Color> for List<GradientStops> {
fn blend(&self, under: &Self, blend_fn: impl Fn(Color, Color) -> Color) -> Self {
let mut result_list = self.clone();
let pair_count = result_list.len().min(under.len());
for index in 0..pair_count {
let Some(over) = result_list.element(index) else { break };
let Some(under_element) = under.element(index) else { break };
let new_val = over.blend(under_element, &blend_fn);
*result_list.element_mut(index).unwrap() = new_val;
}
result_list
}
}
impl Blend<Color> for GradientStops {
fn blend(&self, under: &Self, blend_fn: impl Fn(Color, Color) -> Color) -> Self {
let mut combined_stops = self.position.iter().chain(under.position.iter()).copied().collect::<Vec<_>>();
@@ -208,7 +161,6 @@ fn color_overlay<T: Adjust<Color> + Clone + Send + Sync + no_std_types::context:
mod test {
use core_types::blending::BlendMode;
use core_types::color::Color;
use core_types::list::List;
use raster_types::Image;
use raster_types::Raster;
@@ -223,8 +175,7 @@ mod test {
// 100% of the output should come from the multiplied value
let opacity = 100.;
let result = super::color_overlay(&(), List::new_from_element(Raster::new_cpu(image.clone())), overlay_color, BlendMode::Multiply, opacity);
let result = result.element(0).unwrap().clone();
let result = super::color_overlay(&(), Raster::new_cpu(image.clone()), overlay_color, BlendMode::Multiply, opacity);
// The output should just be the original green and alpha channels (as we multiply them by 1 and other channels by 0)
assert_eq!(result.data[0], Color::from_rgbaf32_unchecked(0., image_color.g(), 0., image_color.a()));