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Lotus CI 11e102f7da chore: bump cinny submodule to be8e49a2
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2026-09-28 03:30:38 +00:00
jared 8ee90444ee Merge pull request #24: NVIDIA + Wayland keeps the GPU renderer
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2026-09-27 22:26:51 -04:00
Lotus CIandClaude Opus 5.5 bb5364b53c fix(linux): NVIDIA + Wayland keeps the GPU renderer (explicit-sync fix)
The 4.12.343 workaround (WEBKIT_DISABLE_DMABUF_RENDERER=1 + GDK_BACKEND=x11)
made the app launch but pushed every frame through shared memory under
XWayland: noticeably laggy at 3840x2058. The reporter's WAYLAND_DEBUG trace
showed the real cause on native Wayland:

  wl_display#1.error(wp_linux_drm_syncobj_surface_v1#51, 4,
    "explicit sync is used, but no acquire point is set")
  Gdk-Message: Error 71 (Protocol error) dispatching to Wayland display.

An explicit-sync bug, not a GBM format/modifier one. Their test matrix
(RTX 3070, driver 615.71.09, webkit2gtk 2.52.6, KDE Wayland):
- __NV_DISABLE_EXPLICIT_SYNC=1 alone: clean, GPU (DMA-BUF) renderer, smooth;
- WEBKIT_DISABLE_DMABUF_RENDERER=1 alone on Wayland: clean (no X11 needed);
- WEBKIT_DMABUF_RENDERER_DISABLE_GBM=1: same explicit-sync error on Wayland,
  "Failed to import DMABuf" under XWayland;
- X11/XWayland with the DMA-BUF renderer: "Failed to create GBM buffer".

New defaults when the NVIDIA driver is loaded:
- native Wayland: __NV_DISABLE_EXPLICIT_SYNC=1, GPU renderer kept;
- X11 session or user-forced GDK_BACKEND=x11: WEBKIT_DISABLE_DMABUF_RENDERER=1;
- never force X11 any more;
- LOTUS_GPU_SAFE_MODE=1: opt-in shared-memory rendering on Wayland too;
- LOTUS_NO_GPU_WORKAROUNDS=1 / user-set values: untouched.
One stderr line says what was set. 9 unit tests.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01PPmy3tPq869XDW4njjVaKA
2026-09-27 22:22:00 -04:00
jared 5b4528e4e5 Merge pull request #23: launch on NVIDIA + Wayland; webAppUrl
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2026-09-27 17:10:51 -04:00
2 changed files with 100 additions and 50 deletions
+1 -1
Submodule cinny updated: e2b23397bd...be8e49a2bb
+99 -49
View File
@@ -1,17 +1,22 @@
//! WebKitGTK workarounds for NVIDIA's proprietary driver on Linux.
//!
//! On NVIDIA + Wayland (reported on CachyOS/KDE, driver 615, webkit2gtk 2.52)
//! the app never shows a window: GDK dies with "Error 71 (Protocol error)
//! dispatching to Wayland display", and under XWayland WebKit's DMA-BUF
//! renderer then fails with "Failed to create GBM buffer … Invalid argument".
//! `WEBKIT_DISABLE_DMABUF_RENDERER=1 GDK_BACKEND=x11` makes it run normally.
//! Diagnosed on CachyOS/KDE Wayland, RTX 3070, driver 615.71.09, webkit2gtk
//! 2.52.6 (reported 2026-09-27, WAYLAND_DEBUG trace in the PR):
//! - Native Wayland: the compositor kills the connection with
//! `wp_linux_drm_syncobj_surface_v1 … "explicit sync is used, but no acquire
//! point is set"` (GDK: "Error 71 (Protocol error)"), i.e. an explicit-sync
//! bug between WebKit and the driver, not a buffer-format problem.
//! `__NV_DISABLE_EXPLICIT_SYNC=1` fixes it and keeps WebKit's GPU (DMA-BUF)
//! renderer, so that is the default on native Wayland.
//! - X11 / XWayland: the DMA-BUF renderer can't allocate or import buffers
//! ("Failed to create GBM buffer … Invalid argument", "Failed to import
//! DMABuf"), so there it is disabled (`WEBKIT_DISABLE_DMABUF_RENDERER=1`,
//! shared-memory frames). We never force X11 any more.
//!
//! So, before GTK/WebKit initialise, and only when the NVIDIA driver is loaded:
//! - `WEBKIT_DISABLE_DMABUF_RENDERER=1`;
//! - on a Wayland session with XWayland available, `GDK_BACKEND=x11`.
//!
//! Anything the user already set wins, and `LOTUS_NO_GPU_WORKAROUNDS=1`
//! disables all of it (e.g. once a newer driver/WebKit fixes this).
//! Opt-ins / opt-outs (anything the user already set always wins):
//! - `LOTUS_GPU_SAFE_MODE=1`: last resort, shared-memory rendering on Wayland
//! too (slower, especially at high resolutions).
//! - `LOTUS_NO_GPU_WORKAROUNDS=1`: change nothing.
/// Environment variables to set: pure, for tests.
pub(crate) fn decide(
@@ -22,15 +27,30 @@ pub(crate) fn decide(
if !nvidia || set("LOTUS_NO_GPU_WORKAROUNDS") {
return Vec::new();
}
let mut out = Vec::new();
if !set("WEBKIT_DISABLE_DMABUF_RENDERER") {
out.push(("WEBKIT_DISABLE_DMABUF_RENDERER", "1"));
}
let wayland = set("WAYLAND_DISPLAY")
let wayland_session = set("WAYLAND_DISPLAY")
|| get("XDG_SESSION_TYPE").is_some_and(|v| v.eq_ignore_ascii_case("wayland"));
// Only fall back to X11 when there is an X server (XWayland) to talk to.
if wayland && set("DISPLAY") && !set("GDK_BACKEND") {
out.push(("GDK_BACKEND", "x11"));
// GTK uses Wayland unless GDK_BACKEND says otherwise (it may list
// several, e.g. "wayland,x11": the first one wins).
let native_wayland = wayland_session
&& get("GDK_BACKEND").map_or(true, |v| {
v.is_empty()
|| v.trim_start().to_ascii_lowercase().starts_with("wayland")
|| v.trim() == "*"
});
let mut out = Vec::new();
let mut want = |k: &'static str, v: &'static str| {
if !set(k) {
out.push((k, v));
}
};
if native_wayland {
want("__NV_DISABLE_EXPLICIT_SYNC", "1");
if set("LOTUS_GPU_SAFE_MODE") {
want("WEBKIT_DISABLE_DMABUF_RENDERER", "1");
}
} else {
want("WEBKIT_DISABLE_DMABUF_RENDERER", "1");
}
out
}
@@ -44,9 +64,20 @@ fn nvidia_driver_loaded() -> bool {
/// Call first thing in `main`, before anything starts GTK or spawns threads.
pub fn apply() {
#[cfg(target_os = "linux")]
for (key, value) in decide(nvidia_driver_loaded(), |k| std::env::var(k).ok()) {
eprintln!("gpu-workarounds: NVIDIA driver detected, setting {key}={value} (LOTUS_NO_GPU_WORKAROUNDS=1 to disable)");
std::env::set_var(key, value);
{
let changes = decide(nvidia_driver_loaded(), |k| std::env::var(k).ok());
if changes.is_empty() {
return;
}
let list: Vec<String> = changes.iter().map(|(k, v)| format!("{k}={v}")).collect();
eprintln!(
"gpu-workarounds: NVIDIA driver detected, setting {} \
(LOTUS_GPU_SAFE_MODE=1 for shared-memory rendering, LOTUS_NO_GPU_WORKAROUNDS=1 to disable)",
list.join(" ")
);
for (key, value) in changes {
std::env::set_var(key, value);
}
}
}
@@ -71,51 +102,70 @@ mod tests {
}
#[test]
fn nvidia_wayland_gets_both() {
fn nvidia_wayland_keeps_gpu_renderer_and_disables_explicit_sync() {
assert_eq!(
run(true, WAYLAND),
vec![
("WEBKIT_DISABLE_DMABUF_RENDERER", "1"),
("GDK_BACKEND", "x11")
]
vec![("__NV_DISABLE_EXPLICIT_SYNC", "1")]
);
}
#[test]
fn nvidia_x11_session_only_disables_dmabuf() {
assert_eq!(
run(true, &[("DISPLAY", ":0")]),
vec![("WEBKIT_DISABLE_DMABUF_RENDERER", "1")]
);
}
#[test]
fn wayland_without_xwayland_keeps_wayland() {
assert_eq!(
run(true, &[("WAYLAND_DISPLAY", "wayland-0")]),
vec![("WEBKIT_DISABLE_DMABUF_RENDERER", "1")]
);
fn never_forces_x11() {
for env in [
WAYLAND,
&[("DISPLAY", ":0")][..],
&[("WAYLAND_DISPLAY", "w")][..],
] {
assert!(run(true, env).iter().all(|(k, _)| *k != "GDK_BACKEND"));
}
}
#[test]
fn xdg_session_type_counts_as_wayland() {
assert_eq!(
run(true, &[("XDG_SESSION_TYPE", "wayland"), ("DISPLAY", ":1")]),
run(true, &[("XDG_SESSION_TYPE", "wayland")]),
vec![("__NV_DISABLE_EXPLICIT_SYNC", "1")]
);
}
#[test]
fn nvidia_x11_session_disables_dmabuf_renderer() {
assert_eq!(
run(true, &[("DISPLAY", ":0"), ("XDG_SESSION_TYPE", "x11")]),
vec![("WEBKIT_DISABLE_DMABUF_RENDERER", "1")]
);
}
#[test]
fn user_forced_x11_on_wayland_counts_as_x11() {
let mut env = WAYLAND.to_vec();
env.push(("GDK_BACKEND", "x11"));
assert_eq!(
run(true, &env),
vec![("WEBKIT_DISABLE_DMABUF_RENDERER", "1")]
);
let mut env = WAYLAND.to_vec();
env.push(("GDK_BACKEND", "wayland,x11"));
assert_eq!(run(true, &env), vec![("__NV_DISABLE_EXPLICIT_SYNC", "1")]);
}
#[test]
fn safe_mode_adds_shared_memory_rendering_on_wayland() {
let mut env = WAYLAND.to_vec();
env.push(("LOTUS_GPU_SAFE_MODE", "1"));
assert_eq!(
run(true, &env),
vec![
("WEBKIT_DISABLE_DMABUF_RENDERER", "1"),
("GDK_BACKEND", "x11")
("__NV_DISABLE_EXPLICIT_SYNC", "1"),
("WEBKIT_DISABLE_DMABUF_RENDERER", "1")
]
);
}
#[test]
fn user_settings_win() {
let env = [
("WAYLAND_DISPLAY", "wayland-0"),
("DISPLAY", ":0"),
("WEBKIT_DISABLE_DMABUF_RENDERER", "0"),
("GDK_BACKEND", "wayland"),
];
let mut env = WAYLAND.to_vec();
env.push(("__NV_DISABLE_EXPLICIT_SYNC", "0"));
assert!(run(true, &env).is_empty());
}