mirror of
https://github.com/tinyhumansai/openhuman.git
synced 2026-07-28 13:32:23 +00:00
733 lines
23 KiB
Bash
Executable File
733 lines
23 KiB
Bash
Executable File
#!/usr/bin/env bash
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# Strip host graphics libraries from AppImage bundles so they load the user's
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# system Mesa/libdrm/libva at launch instead of the older versions baked in by
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# lib4bin's ldd-walk on the ubuntu-22.04 build runner.
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#
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# Without this, AppImages built on Mesa 22.x fail to initialize on systems
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# with newer GPUs (RDNA3, Intel Arc, Lovelace) because the bundled drivers
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# can't talk to the host kernel/driver stack. AppImage convention is to never
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# ship graphics drivers — they must come from the host. See:
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# https://github.com/AppImageCommunity/pkg2appimage/blob/master/excludelist
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#
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# Only top-level lib directories are swept. CEF's own subdirs (swiftshader/,
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# locales/, libcef.so neighbors) are left alone — CEF ships its own
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# GLES/EGL implementation that must stay bundled.
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#
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# Usage: strip-appimage-graphics-libs.sh <bundle-root> [bundle-root...]
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# where <bundle-root> contains an `appimage/` subdir with *.AppImage files.
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#
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# Env:
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# TAURI_SIGNING_PRIVATE_KEY — re-sign modified artifacts when set
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# TAURI_SIGNING_PRIVATE_KEY_PASSWORD — passphrase for the key (may be empty)
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# APPIMAGETOOL_URL — override appimagetool download URL
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# APPIMAGETOOL_SHA256 — expected SHA256 of the download
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# (verified before use when set; rotate
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# alongside APPIMAGETOOL_URL)
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set -euo pipefail
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EXCLUDE_PATTERNS=(
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'libGL.so.*'
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'libGLX.so.*'
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'libGLdispatch.so.*'
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'libGLESv1_CM.so.*'
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'libGLESv2.so.*'
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'libEGL.so.*'
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'libgbm.so.*'
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'libdrm.so.*'
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'libdrm_*.so.*'
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'libva.so.*'
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'libva-drm.so.*'
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'libva-glx.so.*'
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'libva-x11.so.*'
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'libvdpau.so.*'
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'libxcb-dri2.so.*'
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'libxcb-dri3.so.*'
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'libxcb-glx.so.*'
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'libxcb-present.so.*'
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)
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# Default to a pinned release tag rather than the mutable `continuous` asset so
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# CI builds are reproducible and resistant to upstream replacement. Override via
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# APPIMAGETOOL_URL (and bump APPIMAGETOOL_SHA256 alongside it).
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default_appimagetool_url() {
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local target_arch="${APPIMAGE_TARGET_ARCH:-${MATRIX_TARGET:-$(uname -m)}}"
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case "$target_arch" in
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x86_64*|amd64*)
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echo "https://github.com/AppImage/appimagetool/releases/download/1.9.0/appimagetool-x86_64.AppImage"
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;;
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aarch64*|arm64*)
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echo "https://github.com/AppImage/appimagetool/releases/download/1.9.0/appimagetool-aarch64.AppImage"
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;;
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*)
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echo "[strip-libs] ERROR: unsupported appimagetool architecture: $target_arch" >&2
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return 1
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;;
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esac
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}
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APPIMAGETOOL_URL="${APPIMAGETOOL_URL:-$(default_appimagetool_url)}"
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APPIMAGETOOL_SHA256="${APPIMAGETOOL_SHA256:-}"
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ensure_appimagetool() {
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if command -v appimagetool >/dev/null 2>&1; then
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APPIMAGETOOL_BIN="$(command -v appimagetool)"
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return
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fi
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local tool=/tmp/appimagetool.AppImage
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if [ ! -x "$tool" ]; then
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echo "[strip-libs] Downloading appimagetool from $APPIMAGETOOL_URL"
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curl -fsSL "$APPIMAGETOOL_URL" -o "$tool"
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if [ -n "$APPIMAGETOOL_SHA256" ]; then
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echo "[strip-libs] Verifying appimagetool sha256"
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if ! echo "${APPIMAGETOOL_SHA256} ${tool}" | sha256sum -c -; then
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echo "[strip-libs] ERROR: appimagetool sha256 mismatch — refusing to run" >&2
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rm -f "$tool"
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exit 1
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fi
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else
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echo "[strip-libs] WARNING: APPIMAGETOOL_SHA256 not set — skipping integrity check" >&2
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fi
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chmod +x "$tool"
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fi
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APPIMAGETOOL_BIN="$tool"
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}
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ensure_desktop_file_validate() {
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if command -v desktop-file-validate >/dev/null 2>&1; then
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return
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fi
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local shim="/tmp/desktop-file-validate"
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printf '#!/bin/sh\nexit 0\n' > "$shim"
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chmod +x "$shim"
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export PATH="/tmp:$PATH"
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echo "[strip-libs] desktop-file-validate not found; installed no-op shim"
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}
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appimage_loader_name() {
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local target_arch="${APPIMAGE_TARGET_ARCH:-${MATRIX_TARGET:-$(uname -m)}}"
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case "$target_arch" in
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x86_64*|amd64*)
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echo "ld-linux-x86-64.so.2"
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;;
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aarch64*|arm64*)
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echo "ld-linux-aarch64.so.1"
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;;
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*)
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return 1
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;;
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esac
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}
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appimagetool_arch() {
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local target_arch="${APPIMAGE_TARGET_ARCH:-${MATRIX_TARGET:-$(uname -m)}}"
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case "$target_arch" in
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x86_64*|amd64*)
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echo "x86_64"
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;;
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aarch64*|arm64*)
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echo "aarch64"
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;;
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*)
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echo "[strip-libs] ERROR: unsupported AppImage repack architecture: $target_arch" >&2
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return 1
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;;
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esac
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}
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host_dynamic_loader() {
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local loader_name="$1"
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local candidates=()
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case "$loader_name" in
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ld-linux-x86-64.so.2)
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candidates=(
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"/lib64/$loader_name"
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"/lib/x86_64-linux-gnu/$loader_name"
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"/usr/lib64/$loader_name"
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"/usr/lib/$loader_name"
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)
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;;
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ld-linux-aarch64.so.1)
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candidates=(
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"/lib/$loader_name"
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"/lib/aarch64-linux-gnu/$loader_name"
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"/usr/lib/aarch64-linux-gnu/$loader_name"
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)
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;;
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esac
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local candidate
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for candidate in "${candidates[@]}"; do
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if [ -f "$candidate" ]; then
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echo "$candidate"
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return 0
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fi
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done
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return 1
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}
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is_executable_elf() {
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local candidate
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candidate="$1"
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[ -f "$candidate" ] || return 1
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[ -x "$candidate" ] || return 1
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[ "$(LC_ALL=C head -c 4 "$candidate" 2>/dev/null || true)" = $'\177ELF' ]
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}
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emit_entry_if_elf() {
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local candidate="$1"
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if is_executable_elf "$candidate"; then
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printf '%s\0' "$candidate" 2>/dev/null || true
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fi
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}
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emit_desktop_exec_candidate() {
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local appdir="$1"
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local command="$2"
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local candidate
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[ -n "$command" ] || return 0
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case "$command" in
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/*)
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emit_entry_if_elf "$appdir$command"
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;;
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*/*)
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emit_entry_if_elf "$appdir/$command"
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;;
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*)
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for candidate in "$appdir/$command" "$appdir/bin/$command" "$appdir/usr/bin/$command"; do
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emit_entry_if_elf "$candidate"
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done
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;;
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esac
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}
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discover_appimage_entry_binaries() {
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local appdir="$1"
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local desktop line exec_line command root candidate
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emit_entry_if_elf "$appdir/AppRun"
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emit_entry_if_elf "$appdir/sharun"
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while IFS= read -r -d '' desktop; do
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while IFS= read -r line || [ -n "$line" ]; do
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case "$line" in
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Exec=*)
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exec_line="${line#Exec=}"
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case "$exec_line" in
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\"*\")
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command="${exec_line#\"}"
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command="${command%%\"*}"
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;;
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\'*\')
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command="${exec_line#\'}"
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command="${command%%\'*}"
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;;
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*)
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command="${exec_line%%[[:space:]]*}"
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;;
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esac
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emit_desktop_exec_candidate "$appdir" "$command"
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;;
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esac
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done < "$desktop"
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done < <(find "$appdir" -maxdepth 1 -type f -name '*.desktop' -print0)
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for root in "$appdir" "$appdir/bin" "$appdir/usr/bin"; do
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[ -d "$root" ] || continue
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while IFS= read -r -d '' candidate; do
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emit_entry_if_elf "$candidate"
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done < <(find "$root" -maxdepth 1 -type f -perm /111 -print0)
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done
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}
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uses_sharun_launcher() {
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local appdir="$1"
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local candidate
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while IFS= read -r -d '' candidate; do
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if grep -a -q "Interpreter not found!" "$candidate" 2>/dev/null; then
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return 0
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fi
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done < <(discover_appimage_entry_binaries "$appdir")
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return 1
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}
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ensure_sharun_interpreter() {
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local appdir="$1"
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if ! uses_sharun_launcher "$appdir"; then
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return 1
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fi
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local loader_name
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if ! loader_name="$(appimage_loader_name)"; then
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echo "[strip-libs] ERROR: AppImage uses sharun but architecture is unsupported; cannot determine required loader" >&2
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exit 1
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fi
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local target="$appdir/lib/$loader_name"
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# Always replace — lib4bin may bundle an ld-linux from the CI runner
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# that is incompatible with newer host glibc (#3224, #3099).
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# The host_dynamic_loader source is the CI runner's own system ld-linux,
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# which is guaranteed compatible with the binary compiled on the same runner.
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rm -f "$target"
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local source
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if ! source="$(host_dynamic_loader "$loader_name")"; then
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echo "[strip-libs] ERROR: AppImage uses sharun but host loader $loader_name was not found; refusing to ship an AppImage that exits with 'Interpreter not found!'" >&2
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exit 1
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fi
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mkdir -p "$appdir/lib"
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cp -L "$source" "$target"
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chmod 755 "$target"
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echo "[strip-libs] bundling sharun interpreter ${target#"$appdir"/} from $source"
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return 0
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}
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rewrite_sharun_lib_path() {
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local appdir="$1"
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if ! uses_sharun_launcher "$appdir"; then
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return 1
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fi
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local lib_path="$appdir/shared/lib/lib.path"
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[ -s "$lib_path" ] || return 1
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if ! grep -E '(^|[+:])/home/runner/|(^|[+:])/__w/' "$lib_path" >/dev/null; then
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return 1
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fi
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echo "[strip-libs] rewriting CI runner paths in shared/lib/lib.path"
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local raw
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raw="$(cat "$lib_path")"
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local -a entries=()
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local entry
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while IFS= read -r entry; do
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[ -n "$entry" ] || continue
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entries+=("$entry")
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done < <(printf '%s' "$raw" | tr '+:' '\n\n')
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local -a cleaned=()
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local rel seen_set=""
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for entry in "${entries[@]}"; do
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case "$entry" in
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/home/runner/*|/__w/*)
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rel="${entry##*/squashfs-root/}"
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if [ "$rel" = "$entry" ]; then
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rel="${entry##*/data/}"
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[ "$rel" != "$entry" ] || continue
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fi
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;;
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/*)
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continue
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;;
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*)
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rel="$entry"
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;;
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esac
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[ -d "$appdir/$rel" ] || continue
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case "+${seen_set}+" in
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*"+${rel}+"*) continue ;;
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esac
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seen_set="${seen_set}+${rel}"
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cleaned+=("$rel")
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done
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if [ "${#cleaned[@]}" -eq 0 ]; then
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cleaned=("shared/lib")
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fi
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local joined
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joined="$(IFS='+'; echo "${cleaned[*]}")"
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printf '%s' "$joined" > "$lib_path"
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echo "[strip-libs] lib.path rewritten to: $joined"
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}
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validate_sharun_lib_path() {
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local appdir="$1"
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if ! uses_sharun_launcher "$appdir"; then
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return 0
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fi
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local lib_path="$appdir/shared/lib/lib.path"
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if [ ! -s "$lib_path" ]; then
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echo "[strip-libs] ERROR: sharun AppImage is missing shared/lib/lib.path; refusing to ship an AppImage that exits with 'Interpreter not found!'" >&2
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exit 1
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fi
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if grep -E '(^|[+:])/home/runner/|(^|[+:])/__w/' "$lib_path" >/dev/null; then
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echo "[strip-libs] ERROR: shared/lib/lib.path contains CI runner paths; regenerate it with bundle-relative entries before release." >&2
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exit 1
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fi
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}
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# is_elf — true if the file begins with the ELF magic, regardless of the +x
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# bit. Shared objects (.so) are not executable but still carry the
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# DT_RPATH/DT_RUNPATH we need to sanitize, so the executable-only check in
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# is_executable_elf is too narrow here.
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is_elf() {
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local candidate="$1"
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[ -f "$candidate" ] || return 1
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[ "$(LC_ALL=C head -c 4 "$candidate" 2>/dev/null || true)" = $'\177ELF' ]
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}
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# sanitize_elf_rpaths — strip absolute CI build-machine paths (/home/runner,
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# /__w) from the DT_RPATH/DT_RUNPATH of every bundled ELF and rewrite them to
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# $ORIGIN-relative entries.
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#
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# Problem (issue #3224): libcef.so is copied verbatim into usr/lib by the
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# vendored sharun_cef bundler and is never ldd-processed by lib4bin, so any
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# absolute RUNPATH baked in on the build runner (e.g.
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# `/home/runner/.cache/tauri-cef/.../shared/lib`) survives into the shipped
|
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# AppImage. rewrite_sharun_lib_path() above only sanitizes the sharun lib.path
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# TEXT file — it never touches ELF headers. Those absolute, non-existent search
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# dirs leak the build-machine layout and, on a host that happens to have a
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# matching path, could shadow a bundled library.
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#
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# Fix: patchelf every ELF whose RPATH/RUNPATH contains a CI marker, dropping the
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# absolute CI components and keeping $ORIGIN-relative ones. Falls back to a
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# conservative `$ORIGIN:$ORIGIN/../shared/lib` when nothing relative remains.
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# ELFs whose RPATH is already clean ($ORIGIN-only or empty) are left untouched,
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# so the pass is idempotent.
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#
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# Returns 0 if any ELF was rewritten, 1 otherwise.
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sanitize_elf_rpaths() {
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local appdir="$1"
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if ! command -v patchelf >/dev/null 2>&1; then
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echo "[strip-libs] ERROR: patchelf not found; cannot sanitize build-machine RPATHs from bundled ELFs (issue #3224). Install patchelf on the build runner." >&2
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exit 1
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fi
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|
|
# Inverted truthiness: 1 == "no change" (shell-false), flips to 0 (shell-true)
|
|
# the first time an ELF is rewritten.
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local rewrote=1
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local search_roots=(
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"$appdir/usr/lib"
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"$appdir/shared/lib"
|
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"$appdir/lib"
|
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"$appdir/usr/bin"
|
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"$appdir/bin"
|
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)
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local root f cur cleaned entry
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for root in "${search_roots[@]}"; do
|
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[ -d "$root" ] || continue
|
|
while IFS= read -r -d '' f; do
|
|
is_elf "$f" || continue
|
|
cur="$(patchelf --print-rpath "$f" 2>/dev/null || true)"
|
|
[ -n "$cur" ] || continue
|
|
case "$cur" in
|
|
*"/home/runner/"*|*"/__w/"*) ;;
|
|
*) continue ;; # already clean — leave it untouched (idempotent)
|
|
esac
|
|
|
|
# Keep only $ORIGIN-relative entries; drop absolute / CI-marked ones.
|
|
local -a kept=()
|
|
local seen=""
|
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local old_ifs="$IFS"
|
|
IFS=':'
|
|
for entry in $cur; do
|
|
IFS="$old_ifs"
|
|
[ -n "$entry" ] || { IFS=':'; continue; }
|
|
case "$entry" in
|
|
'$ORIGIN'*) ;; # relative — keep
|
|
*) IFS=':'; continue ;; # absolute — drop
|
|
esac
|
|
case "+${seen}+" in
|
|
*"+${entry}+"*) IFS=':'; continue ;;
|
|
esac
|
|
seen="${seen}+${entry}"
|
|
kept+=("$entry")
|
|
IFS=':'
|
|
done
|
|
IFS="$old_ifs"
|
|
|
|
if [ "${#kept[@]}" -eq 0 ]; then
|
|
# No relative entry survived — synthesize a fallback that reaches the
|
|
# bundle's top-level shared/lib FROM THIS ELF's own directory. $ORIGIN is
|
|
# the ELF's dir, so the number of `../` hops equals the ELF's directory
|
|
# depth below the AppDir root: a file in usr/lib needs
|
|
# `$ORIGIN/../../shared/lib`, one in lib needs `$ORIGIN/../shared/lib`. A
|
|
# flat `$ORIGIN/../shared/lib` (the naive form) resolves to
|
|
# `usr/shared/lib` for usr/* files and would still miss libs at runtime.
|
|
local rel_dir comp up=""
|
|
rel_dir="$(dirname "${f#"$appdir"/}")"
|
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local ifs_save="$IFS"
|
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IFS='/'
|
|
for comp in $rel_dir; do
|
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[ -n "$comp" ] && [ "$comp" != "." ] && up="../$up"
|
|
done
|
|
IFS="$ifs_save"
|
|
cleaned="\$ORIGIN:\$ORIGIN/${up}shared/lib"
|
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else
|
|
cleaned="$(IFS=':'; echo "${kept[*]}")"
|
|
fi
|
|
|
|
patchelf --set-rpath "$cleaned" "$f"
|
|
echo "[strip-libs] patchelf rpath ${f#"$appdir"/}: '$cur' -> '$cleaned'"
|
|
rewrote=0
|
|
done < <(find "$root" -type f -print0)
|
|
done
|
|
|
|
return $rewrote
|
|
}
|
|
|
|
# validate_appimage_required_libs — fail the build loudly if a library the app
|
|
# binary hard-links (NEEDED) but which MUST travel inside the AppImage is absent
|
|
# from the bundle.
|
|
#
|
|
# Problem (issue #3224): the app links libxdo.so.3 via enigo
|
|
# (`#[link(name = "xdo")]`, used by src/openhuman/tools/impl/computer for Linux
|
|
# mouse/keyboard control). lib4bin's ldd-walk normally bundles it into
|
|
# shared/lib, but if a future runner image drops libxdo-dev or bumps its soname,
|
|
# the lib silently vanishes from the AppImage and the binary segfaults on launch
|
|
# on any host lacking the legacy soname (e.g. Arch, which ships libxdo.so.4). The
|
|
# .deb path already guards this via its `depends` (libxdo3) +
|
|
# linux_cef_deb_runtime_e2e; the AppImage path had no equivalent. This turns a
|
|
# silent runtime segfault into a loud build failure.
|
|
validate_appimage_required_libs() {
|
|
local appdir="$1"
|
|
if ! uses_sharun_launcher "$appdir"; then
|
|
return 0
|
|
fi
|
|
|
|
local root
|
|
for root in "$appdir/shared/lib" "$appdir/usr/lib" "$appdir/lib"; do
|
|
[ -d "$root" ] || continue
|
|
if [ -n "$(find "$root" -name 'libxdo.so*' -print -quit 2>/dev/null)" ]; then
|
|
return 0
|
|
fi
|
|
done
|
|
|
|
echo "[strip-libs] ERROR: AppImage is missing libxdo.so.* — the enigo NEEDED dependency was not bundled (issue #3224). The app would segfault on launch on hosts without the legacy libxdo soname (e.g. Arch). Ensure libxdo-dev is installed on the build runner so lib4bin's ldd-walk bundles it." >&2
|
|
exit 1
|
|
}
|
|
|
|
# patch_apprun_sharun_cwd — inject `cd "$APPDIR"` into AppRun before the final
|
|
# exec call so sharun resolves preload/library paths relative to the AppDir
|
|
# rather than the caller's CWD.
|
|
#
|
|
# Problem (issue #2822): sharun reads its `.preload` entry and library search
|
|
# paths relative to the process CWD. When a user launches the AppImage from
|
|
# any directory other than the AppDir itself (e.g. double-click from ~/Downloads)
|
|
# CWD != AppDir, so ld.so can't find `anylinux.so` (preload) or `libcef.so`
|
|
# (LD_LIBRARY_PATH entry). SHARUN_DIR is set correctly — the AppDir IS known —
|
|
# but sharun doesn't use it to anchor the preload/library arguments it hands to
|
|
# ld.so.
|
|
#
|
|
# Fix: prepend `cd "$APPDIR"` to the exec line in AppRun so the working
|
|
# directory is always the AppDir by the time sharun/the binary runs. This
|
|
# mirrors the verified manual workaround from the bug report.
|
|
#
|
|
# Returns 0 (true) if the AppRun was modified, 1 if no change was needed.
|
|
patch_apprun_sharun_cwd() {
|
|
local appdir="$1"
|
|
if ! uses_sharun_launcher "$appdir"; then
|
|
return 1
|
|
fi
|
|
|
|
local apprun="$appdir/AppRun"
|
|
if [ ! -f "$apprun" ]; then
|
|
# Some sharun bundles use the sharun binary directly as the AppDir entry
|
|
# point without a separate shell AppRun. Nothing to patch in that case.
|
|
return 1
|
|
fi
|
|
|
|
# Check if the file is a shell script (not an ELF binary).
|
|
local first_bytes
|
|
first_bytes="$(LC_ALL=C head -c 2 "$apprun" 2>/dev/null || true)"
|
|
if [ "$first_bytes" = $'\x7fE' ]; then
|
|
# AppRun is an ELF binary — cannot patch with sed.
|
|
return 1
|
|
fi
|
|
|
|
# Idempotency guard: skip if we already patched this AppRun.
|
|
# Match only the exact patched line — a loose substring (e.g. 'cd.*"$APPDIR"')
|
|
# would false-positive on comments like '# cd "$APPDIR"' or unrelated lines
|
|
# and leave the real `exec "$@"` unpatched.
|
|
local patched_line_re='^[[:space:]]*cd[[:space:]]+"\$APPDIR"[[:space:]]*&&[[:space:]]*exec[[:space:]]+"\$@"[[:space:]]*$'
|
|
if grep -Eq "$patched_line_re" "$apprun" 2>/dev/null; then
|
|
return 1
|
|
fi
|
|
|
|
# Locate the exec line. AppRun scripts generated by lib4bin / sharun
|
|
# typically have a line of the form (possibly with leading whitespace):
|
|
# exec "$@"
|
|
# Patch it to:
|
|
# cd "$APPDIR" && exec "$@"
|
|
#
|
|
# The sed pattern is anchored to end-of-line ($) so trailing content (extra
|
|
# args, comments, redirections) doesn't get silently absorbed into the cd &&
|
|
# exec sequence.
|
|
#
|
|
# Use a temp file + mv to avoid truncating AppRun mid-write on failure.
|
|
local tmp_apprun
|
|
tmp_apprun="$(mktemp)"
|
|
if sed 's|^\([[:space:]]*\)exec "\$@"[[:space:]]*$|\1cd "$APPDIR" \&\& exec "$@"|' \
|
|
"$apprun" > "$tmp_apprun" \
|
|
&& grep -Eq "$patched_line_re" "$tmp_apprun"; then
|
|
chmod --reference="$apprun" "$tmp_apprun"
|
|
mv "$tmp_apprun" "$apprun"
|
|
echo "[strip-libs] patched AppRun: added 'cd \"\$APPDIR\"' before exec to fix sharun CWD preload resolution (issue #2822)"
|
|
return 0
|
|
else
|
|
rm -f "$tmp_apprun"
|
|
echo "[strip-libs] WARNING: could not locate 'exec \"\$@\"' in AppRun — sharun CWD fix not applied; AppImage may fail to launch from non-AppDir CWDs" >&2
|
|
return 1
|
|
fi
|
|
}
|
|
|
|
strip_one_appimage() {
|
|
local img="$1"
|
|
local original
|
|
original="$(realpath "$img")"
|
|
local name
|
|
name="$(basename "$original")"
|
|
local workdir
|
|
workdir="$(mktemp -d)"
|
|
|
|
echo "[strip-libs] Processing $original"
|
|
(
|
|
cd "$workdir"
|
|
chmod +x "$original"
|
|
if ! "$original" --appimage-extract >/dev/null; then
|
|
echo "[strip-libs] ERROR: --appimage-extract failed for $original" >&2
|
|
exit 1
|
|
fi
|
|
)
|
|
|
|
local appdir="$workdir/squashfs-root"
|
|
local removed=0
|
|
local added_loader=0
|
|
local rewrote_libpath=0
|
|
local patched_apprun=0
|
|
local rewrote_rpaths=0
|
|
local lib_roots=()
|
|
for candidate in \
|
|
"$appdir/usr/lib" \
|
|
"$appdir/usr/lib/x86_64-linux-gnu" \
|
|
"$appdir/usr/lib/aarch64-linux-gnu" \
|
|
"$appdir/shared/lib" \
|
|
"$appdir/shared/lib/x86_64-linux-gnu" \
|
|
"$appdir/shared/lib/aarch64-linux-gnu" \
|
|
"$appdir/lib" \
|
|
"$appdir/lib/x86_64-linux-gnu" \
|
|
"$appdir/lib/aarch64-linux-gnu"; do
|
|
[ -d "$candidate" ] && lib_roots+=("$candidate")
|
|
done
|
|
|
|
if [ "${#lib_roots[@]}" -eq 0 ]; then
|
|
echo "[strip-libs] WARNING: no known lib roots inside $original — layout changed?" >&2
|
|
else
|
|
for root in "${lib_roots[@]}"; do
|
|
for pattern in "${EXCLUDE_PATTERNS[@]}"; do
|
|
while IFS= read -r -d '' f; do
|
|
echo "[strip-libs] removing ${f#"$appdir"/}"
|
|
rm -f "$f"
|
|
removed=$((removed + 1))
|
|
done < <(find "$root" -maxdepth 1 -name "$pattern" -print0)
|
|
done
|
|
done
|
|
fi
|
|
|
|
if ensure_sharun_interpreter "$appdir"; then
|
|
added_loader=1
|
|
fi
|
|
if rewrite_sharun_lib_path "$appdir"; then
|
|
rewrote_libpath=1
|
|
fi
|
|
if patch_apprun_sharun_cwd "$appdir"; then
|
|
patched_apprun=1
|
|
fi
|
|
if sanitize_elf_rpaths "$appdir"; then
|
|
rewrote_rpaths=1
|
|
fi
|
|
validate_sharun_lib_path "$appdir"
|
|
validate_appimage_required_libs "$appdir"
|
|
|
|
if [ "$removed" -eq 0 ] && [ "$added_loader" -eq 0 ] && [ "$rewrote_libpath" -eq 0 ] && [ "$patched_apprun" -eq 0 ] && [ "$rewrote_rpaths" -eq 0 ]; then
|
|
echo "[strip-libs] No graphics libs, missing sharun interpreter, or build-machine RPATHs found in $original; leaving unchanged."
|
|
rm -rf "$workdir"
|
|
return
|
|
fi
|
|
echo "[strip-libs] Removed $removed file(s), added $added_loader loader file(s), patched AppRun=$patched_apprun, rewrote RPATHs=$rewrote_rpaths; repacking AppImage."
|
|
|
|
local rebuilt="$workdir/$name"
|
|
local appimage_arch
|
|
appimage_arch="$(appimagetool_arch)"
|
|
(
|
|
cd "$workdir"
|
|
ARCH="$appimage_arch" "$APPIMAGETOOL_BIN" --appimage-extract-and-run \
|
|
--no-appstream squashfs-root "$rebuilt" >/dev/null
|
|
)
|
|
mv "$rebuilt" "$original"
|
|
rm -rf "$workdir"
|
|
MODIFIED_PATHS+=("$original")
|
|
}
|
|
|
|
resign_artifact() {
|
|
local file="$1"
|
|
if [ -z "${TAURI_SIGNING_PRIVATE_KEY:-}" ]; then
|
|
return
|
|
fi
|
|
if ! command -v cargo-tauri >/dev/null 2>&1; then
|
|
echo "[strip-libs] WARNING: cargo-tauri not on PATH; cannot re-sign $file" >&2
|
|
return
|
|
fi
|
|
echo "[strip-libs] Re-signing $file"
|
|
rm -f "$file.sig"
|
|
cargo tauri signer sign \
|
|
--private-key "$TAURI_SIGNING_PRIVATE_KEY" \
|
|
--password "${TAURI_SIGNING_PRIVATE_KEY_PASSWORD:-}" \
|
|
"$file" >/dev/null
|
|
}
|
|
|
|
main() {
|
|
if [ $# -lt 1 ]; then
|
|
echo "Usage: $0 <bundle-root> [bundle-root...]" >&2
|
|
exit 2
|
|
fi
|
|
ensure_appimagetool
|
|
ensure_desktop_file_validate
|
|
shopt -s nullglob
|
|
MODIFIED_PATHS=()
|
|
local found_any=0
|
|
for root in "$@"; do
|
|
[ -d "$root/appimage" ] || continue
|
|
for img in "$root/appimage"/*.AppImage; do
|
|
found_any=1
|
|
strip_one_appimage "$img"
|
|
done
|
|
done
|
|
if [ "$found_any" -eq 0 ]; then
|
|
echo "[strip-libs] No AppImages found under any provided bundle root." >&2
|
|
return
|
|
fi
|
|
|
|
# Re-sign each modified .AppImage and rebuild its updater tarball + sig.
|
|
# The updater tarball is just a gzipped tar of the .AppImage (Tauri convention),
|
|
# so its contents are stale the moment we mutate the AppImage.
|
|
for original in "${MODIFIED_PATHS[@]:-}"; do
|
|
[ -n "$original" ] || continue
|
|
resign_artifact "$original"
|
|
|
|
local tar="$original.tar.gz"
|
|
if [ -e "$tar" ]; then
|
|
echo "[strip-libs] Rebuilding $(basename "$tar")"
|
|
tar -C "$(dirname "$original")" -czf "$tar" "$(basename "$original")"
|
|
resign_artifact "$tar"
|
|
fi
|
|
done
|
|
}
|
|
|
|
# Run main only when executed directly, not when sourced (e.g. by the
|
|
# scripts/release/test-strip-appimage-rpaths.sh regression test, which exercises
|
|
# sanitize_elf_rpaths / validate_appimage_required_libs in isolation).
|
|
if [ "${BASH_SOURCE[0]}" = "${0}" ]; then
|
|
main "$@"
|
|
fi
|