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7 Commits
a7112f1577
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v0.1.3
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| b007184a4e | |||
| aac2ab4c83 | |||
| 2c9130a90b | |||
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beb64f4df9
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2a99d35797
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6571672df8
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20363b498c
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@@ -0,0 +1,11 @@
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# Alpine/musl hosts: rustup's *-linux-musl targets default to crt-static, which
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# tries to statically link system libraries as well. Alpine ships libxkbcommon.so
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# but no libxkbcommon.a, so the final link fails with:
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# ld: cannot find -lxkbcommon
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# ld: have you installed the static version of the xkbcommon library ?
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# Link dynamically instead, which is what a binary running on the host wants.
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[target.aarch64-unknown-linux-musl]
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rustflags = ["-C", "target-feature=-crt-static"]
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[target.x86_64-unknown-linux-musl]
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rustflags = ["-C", "target-feature=-crt-static"]
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@@ -122,6 +122,7 @@ jobs:
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echo " User aur" >> ~/.ssh/config
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echo " User aur" >> ~/.ssh/config
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ssh-keyscan aur.archlinux.org >> ~/.ssh/known_hosts 2>/dev/null
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ssh-keyscan aur.archlinux.org >> ~/.ssh/known_hosts 2>/dev/null
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rm -rf /tmp/aur-gpupaper
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git clone ssh://aur@aur.archlinux.org/gpupaper.git /tmp/aur-gpupaper
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git clone ssh://aur@aur.archlinux.org/gpupaper.git /tmp/aur-gpupaper
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cp aur/PKGBUILD /tmp/aur-gpupaper/
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cp aur/PKGBUILD /tmp/aur-gpupaper/
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cd /tmp/aur-gpupaper
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cd /tmp/aur-gpupaper
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Generated
+1
-1
@@ -473,7 +473,7 @@ dependencies = [
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[[package]]
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[[package]]
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name = "gpupaper"
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name = "gpupaper"
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version = "0.1.1"
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version = "0.1.3"
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dependencies = [
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dependencies = [
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"anyhow",
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"anyhow",
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"bytemuck",
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"bytemuck",
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+1
-1
@@ -1,6 +1,6 @@
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[package]
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[package]
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name = "gpupaper"
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name = "gpupaper"
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version = "0.1.1"
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version = "0.1.3"
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edition = "2021"
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edition = "2021"
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[[bin]]
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[[bin]]
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+1
-1
@@ -1,6 +1,6 @@
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# Maintainer: Bendik Aagaard Lynghaug <bendik.lynghaug@gmail.com>
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# Maintainer: Bendik Aagaard Lynghaug <bendik.lynghaug@gmail.com>
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pkgname=gpupaper
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pkgname=gpupaper
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pkgver=0.1.1
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pkgver=0.1.3
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pkgrel=1
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pkgrel=1
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pkgdesc="Wayland layer-surface wallpaper runner powered by GLSL/WGSL fragment shaders (wgpu)"
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pkgdesc="Wayland layer-surface wallpaper runner powered by GLSL/WGSL fragment shaders (wgpu)"
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arch=('x86_64' 'aarch64')
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arch=('x86_64' 'aarch64')
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@@ -0,0 +1,29 @@
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// i don't remember what i based this off of or if it was just fiddling,
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// found it in my shader list and thought the clouds were pretty good,
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// for what it is
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uniform float time;
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uniform vec2 resolution;
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float noise(vec3 p) {
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float v = 0.0, a;
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for (a = .85; a > .15; a *=.75) {
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v += a * abs(dot( sin( .1*time + .1*p.z + .1*p/a) , vec3(a*3.)) );
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p += p;
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}
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return v;
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}
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void mainImage(out vec4 o, vec2 u) {
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float i = 0.0, s = 0.0;
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o = vec4(0.0);
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vec3 p = vec3(0.0);
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vec2 r = resolution;
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u = ( u+u - r.xy ) / r.y;
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for( ; i++ < 1e2; ) {
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p += vec3(u * s, s);
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s = .1 + .2* abs( 12.-abs(p.y) - noise(p) );
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o += 1./s;
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}
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o = tanh(vec4(5,2,1,0)*o /3e3/ length(u));
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}
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+11
-1
@@ -243,11 +243,21 @@ impl SurfaceRenderer {
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fps: u32,
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fps: u32,
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) -> Result<Self> {
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) -> Result<Self> {
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let caps = surface.get_capabilities(&gpu.adapter);
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let caps = surface.get_capabilities(&gpu.adapter);
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// A surface may advertise formats that need features we never requested when
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// creating the device (see `required_features` above). Picking one of those
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// fails validation at `create_render_pipeline`. Turnip/Adreno enumerates
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// 16-bit-norm formats (needing TEXTURE_FORMAT_16BIT_NORM) before the plain
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// 8-bit ones, so filter by what the device actually supports rather than
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// relying on enumeration order.
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let supported = gpu.device.features();
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let usable = |f: &wgpu::TextureFormat| supported.contains(f.required_features());
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let format = caps
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let format = caps
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.formats
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.formats
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.iter()
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.iter()
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.copied()
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.copied()
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.find(|f| !f.is_srgb())
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.find(|f| !f.is_srgb() && usable(f))
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.or_else(|| caps.formats.iter().copied().find(usable))
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.unwrap_or(caps.formats[0]);
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.unwrap_or(caps.formats[0]);
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let present_mode =
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let present_mode =
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+10
-7
@@ -168,14 +168,11 @@ pub fn run(
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let is_all = target_output == "all" || target_output == "*";
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let is_all = target_output == "all" || target_output == "*";
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if is_all {
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if is_all {
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let wl_outputs: Vec<_> = state.output_state.outputs().collect();
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// OutputHandler::new_output already attached one layer per existing
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if wl_outputs.is_empty() {
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// output during the roundtrip above. Only fall back to a compositor-
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// No outputs reported yet; let the compositor assign.
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// assigned surface if none arrived.
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if state.outputs.is_empty() {
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state.attach_output(&qh, None);
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state.attach_output(&qh, None);
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} else {
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for wl_out in &wl_outputs {
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state.attach_output(&qh, Some(wl_out));
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}
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}
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}
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} else {
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} else {
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let wl_out = find_output(&state.output_state, &target_output);
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let wl_out = find_output(&state.output_state, &target_output);
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@@ -343,6 +340,12 @@ impl OutputHandler for AppState {
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output: wl_output::WlOutput,
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output: wl_output::WlOutput,
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) {
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) {
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if self.target_output == "all" || self.target_output == "*" {
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if self.target_output == "all" || self.target_output == "*" {
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let name = self
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.output_state
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.info(&output)
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.and_then(|i| i.name)
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.unwrap_or_else(|| "<unnamed>".into());
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log::info!("attaching output: {}", name);
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self.attach_output(qh, Some(&output));
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self.attach_output(qh, Some(&output));
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}
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}
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}
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}
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