chore(render): use Affine2 where possible
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8955024bff
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5 changed files with 31 additions and 26 deletions
2
Cargo.lock
generated
2
Cargo.lock
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@ -4819,7 +4819,7 @@ checksum = "8ed6a63f02c8539c91a8685a86f4099661ba3da017932f6ebbea6de3f0fa7c90"
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[[package]]
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name = "smithay"
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version = "0.7.0"
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source = "git+https://github.com/smithay/smithay.git?rev=812bd33#812bd33259ff58810dadef6086d8385eeac1ca55"
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source = "git+https://github.com/smithay/smithay.git?rev=1ed69cb#1ed69cb55e9d0e9f38887c3b7d53d24365c4b14f"
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dependencies = [
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"aliasable",
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"appendlist",
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@ -144,4 +144,4 @@ lto = "fat"
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cosmic-protocols = { git = "https://github.com/pop-os//cosmic-protocols", branch = "main" }
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[patch.crates-io]
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smithay = { git = "https://github.com/smithay/smithay.git", rev = "812bd33" }
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smithay = { git = "https://github.com/smithay/smithay.git", rev = "1ed69cb" }
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@ -1,6 +1,6 @@
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use std::{borrow::Borrow, cell::RefCell, collections::HashMap};
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use glam::{Mat3, Vec2};
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use glam::{Affine2, Mat3, Vec2};
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use smithay::{
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backend::renderer::{
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element::Kind,
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@ -117,18 +117,22 @@ impl ShadowShader {
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let geo_loc = Vec2::new(-shader_geo.loc.x as f32, -shader_geo.loc.y as f32);
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shader_geo.loc += offset + geo.loc;
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let input_to_geo = Mat3::from_scale(area_size)
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* Mat3::from_translation(Vec2::new(
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-geo_loc.x / area_size.x,
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-geo_loc.y / area_size.y,
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));
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let input_to_geo = Mat3::from(
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Affine2::from_scale(area_size)
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* Affine2::from_translation(Vec2::new(
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-geo_loc.x / area_size.x,
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-geo_loc.y / area_size.y,
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)),
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);
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let window_geo_loc = Vec2::new(window_geo.loc.x as f32, window_geo.loc.y as f32);
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let window_input_to_geo = Mat3::from_scale(area_size)
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* Mat3::from_translation(Vec2::new(
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-window_geo_loc.x / area_size.x,
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-window_geo_loc.y / area_size.y,
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));
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let window_input_to_geo = Mat3::from(
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Affine2::from_scale(area_size)
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* Affine2::from_translation(Vec2::new(
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-window_geo_loc.x / area_size.x,
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-window_geo_loc.y / area_size.y,
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)),
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);
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let element = PixelShaderElement::new(
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shader,
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@ -3,7 +3,7 @@ use std::{
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sync::{LazyLock, Mutex},
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};
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use glam::{Mat3, Vec2};
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use glam::{Affine2, Mat3, Vec2};
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use smithay::{
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backend::{
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allocator::Fourcc,
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@ -231,16 +231,16 @@ impl BlurElement {
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// compute input_to_geo so that it crops the extended capture radius
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let geo_scale = {
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let Scale { x, y } = geo.size / extended_geo.size;
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Mat3::from_scale(Vec2::new(x as f32, y as f32)).inverse()
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Affine2::from_scale(Vec2::new(x as f32, y as f32)).inverse()
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};
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let geo_translation = {
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let offset = geo.loc - extended_geo.loc;
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Mat3::from_translation(-Vec2::new(
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Affine2::from_translation(-Vec2::new(
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(offset.x / extended_geo.size.w) as f32,
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(offset.y / extended_geo.size.h) as f32,
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))
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};
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let input_to_geo = geo_scale * geo_translation;
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let input_to_geo = Mat3::from(geo_scale * geo_translation);
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let uniforms = vec![
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Uniform::new("geo_size", (geometry.size.w as f32, geometry.size.h as f32)),
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@ -2,7 +2,7 @@
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use std::borrow::{Borrow, BorrowMut};
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use glam::{Mat3, Vec2};
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use glam::{Affine2, Mat3, Vec2};
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use smithay::utils::{Buffer, Logical, Physical, Point, Rectangle, Scale, Size, Transform};
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use smithay::{
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backend::renderer::{
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@ -63,18 +63,18 @@ where
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let view = elem.view();
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let transform = elem.transform();
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let transform_matrix = Mat3::from_translation(Vec2::new(0.5, 0.5))
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let transform_matrix = Affine2::from_translation(Vec2::new(0.5, 0.5))
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* transform.matrix()
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* Mat3::from_translation(-Vec2::new(0.5, 0.5));
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* Affine2::from_translation(-Vec2::new(0.5, 0.5));
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let geo_scale = {
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let Scale { x, y } = elem_geo.size.to_f64() / geo.size.to_f64();
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Mat3::from_scale(Vec2::new(x as f32, y as f32))
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Affine2::from_scale(Vec2::new(x as f32, y as f32))
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};
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let geo_translation = {
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let offset = (elem_geo.loc - geo.loc).to_f64();
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Mat3::from_translation(Vec2::new(
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Affine2::from_translation(Vec2::new(
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(offset.x / elem_geo.size.w as f64) as f32,
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(offset.y / elem_geo.size.h as f64) as f32,
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))
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@ -82,16 +82,17 @@ where
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let buf_scale = {
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let Scale { x, y } = buf_size.to_f64() / view.src.size.to_f64();
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Mat3::from_scale(Vec2::new(x as f32, y as f32))
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Affine2::from_scale(Vec2::new(x as f32, y as f32))
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};
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let buf_translation = Mat3::from_translation(Vec2::new(
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let buf_translation = Affine2::from_translation(Vec2::new(
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(view.src.loc.x / buf_size.w as f64) as f32,
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(view.src.loc.y / buf_size.h as f64) as f32,
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));
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let input_to_geo =
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transform_matrix * geo_scale * geo_translation * buf_scale * buf_translation;
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let input_to_geo = Mat3::from(
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transform_matrix * geo_scale * geo_translation * buf_scale * buf_translation,
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);
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let uniforms = vec![
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Uniform::new("geo_size", (geometry.size.w as f32, geometry.size.h as f32)),
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