The tree already links a working x86_64-pc-windows-gnu exe; turn that into a shipped artifact: - scripts/package.sh gains a `win` target (and `all` picks it up when the mingw toolchain is present) that cross-compiles and zips the exe + LICENSE + a README listing the yt-dlp/ffmpeg/mpv PATH deps. - Forgejo release workflow installs mingw-w64 + zip + the rust target, so a tag push produces yt-offline-<ver>-x86_64-windows.zip from the same Linux container — no Windows runner needed. - main.rs: attach_windows_console() (cfg(windows), windows-sys AttachConsole) reattaches a release build to the launching terminal so --web/CLI output is visible, while a double-click stays windowless (release sets windows_subsystem = "windows"). - ROADMAP 3.1 updated: Windows ships; macOS deferred (needs a Mac runner). Native Linux build + 128 unit / 11 integration tests still green. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
255 lines
10 KiB
Bash
Executable file
255 lines
10 KiB
Bash
Executable file
#!/usr/bin/env bash
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# Build distributable packages for yt-offline.
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#
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# Usage:
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# scripts/package.sh [deb|rpm|appimage|win|all]
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#
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# With no argument, builds everything that's buildable on the current host.
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# Output lands in dist/. Each format is independent — a failure in one
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# doesn't abort the others (the script reports a summary at the end).
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#
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# Prerequisites are installed on demand where possible:
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# - .deb → cargo-deb (cargo install cargo-deb)
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# - .rpm → cargo-generate-rpm (cargo install cargo-generate-rpm)
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# - AppImage → appimagetool (downloaded to dist/tools/ if missing)
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# - win .zip → x86_64-pc-windows-gnu target + mingw-w64 gcc + zip
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#
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# The Linux release binary is built once up front and reused by the Linux
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# formats; the Windows .zip cross-compiles a separate target on demand.
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# `all` skips the Windows zip unless the cross toolchain is present, so a
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# plain `all` on a stock Linux box still succeeds.
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set -uo pipefail
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ROOT="$(cd "$(dirname "${BASH_SOURCE[0]}")/.." && pwd)"
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cd "$ROOT"
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DIST="$ROOT/dist"
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TOOLS="$DIST/tools"
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mkdir -p "$DIST" "$TOOLS"
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# Pull version + name straight from Cargo.toml so packages stay in sync.
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VERSION="$(sed -n 's/^version = "\(.*\)"/\1/p' Cargo.toml | head -1)"
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PKG="yt-offline"
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ARCH="$(uname -m)"
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say() { printf '\033[1;36m==>\033[0m %s\n' "$*"; }
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warn() { printf '\033[1;33mwarn:\033[0m %s\n' "$*" >&2; }
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err() { printf '\033[1;31merror:\033[0m %s\n' "$*" >&2; }
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WANT="${1:-all}"
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declare -A RESULT # format → "ok <path>" | "skip <reason>" | "fail <reason>"
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# ── Build the release binary once ────────────────────────────────────────────
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build_binary() {
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say "building release binary (this is the slow part)…"
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if ! cargo build --release; then
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err "cargo build failed — aborting, no packages can be made"
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exit 1
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fi
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if [[ ! -x target/release/$PKG ]]; then
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err "expected target/release/$PKG to exist after build"
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exit 1
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fi
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}
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# ── .deb ─────────────────────────────────────────────────────────────────────
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build_deb() {
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say "building .deb"
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# Check via `cargo deb` rather than `command -v cargo-deb`: cargo
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# subcommands live in ~/.cargo/bin which may not be on PATH in CI,
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# but `cargo deb` resolves them through cargo itself.
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if ! cargo deb --help >/dev/null 2>&1; then
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say "installing cargo-deb…"
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cargo install cargo-deb || { RESULT[deb]="fail cargo-deb install failed"; return; }
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fi
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# --no-build: reuse the binary we already compiled above.
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if cargo deb --no-build --output "$DIST/"; then
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# cargo-deb names it ${PKG}_${VERSION}-1_${arch}.deb; find it.
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local out
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out="$(ls -t "$DIST"/${PKG}_*.deb 2>/dev/null | head -1)"
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RESULT[deb]="ok ${out:-$DIST}"
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else
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RESULT[deb]="fail cargo deb returned nonzero"
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fi
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}
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# ── .rpm ─────────────────────────────────────────────────────────────────────
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build_rpm() {
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say "building .rpm"
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if ! cargo generate-rpm --help >/dev/null 2>&1; then
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say "installing cargo-generate-rpm…"
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cargo install cargo-generate-rpm || { RESULT[rpm]="fail cargo-generate-rpm install failed"; return; }
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fi
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# cargo-generate-rpm packages the already-built binary; we stripped it
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# via the release profile so an explicit strip step isn't needed.
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if cargo generate-rpm --output "$DIST/"; then
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local out
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out="$(ls -t "$DIST"/${PKG}-*.rpm 2>/dev/null | head -1)"
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RESULT[rpm]="ok ${out:-$DIST}"
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else
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RESULT[rpm]="fail cargo generate-rpm returned nonzero"
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fi
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}
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# ── AppImage ─────────────────────────────────────────────────────────────────
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# Hand-rolled AppDir + appimagetool. We don't bundle the subprocess deps
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# (yt-dlp / ffmpeg / mpv) — they're expected on PATH like the package deps,
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# and bundling them would balloon the image and complicate licensing. The
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# AppImage carries the GUI binary + its shared-lib closure only.
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build_appimage() {
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say "building AppImage"
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local tool="$TOOLS/appimagetool"
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if [[ ! -x "$tool" ]]; then
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local tool_url="https://github.com/AppImage/appimagetool/releases/download/continuous/appimagetool-${ARCH}.AppImage"
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say "downloading appimagetool…"
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if ! curl -fL --retry 3 -o "$tool" "$tool_url"; then
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RESULT[appimage]="fail could not download appimagetool"
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return
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fi
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chmod +x "$tool"
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fi
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local appdir="$DIST/${PKG}.AppDir"
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rm -rf "$appdir"
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mkdir -p "$appdir/usr/bin" "$appdir/usr/share/applications" "$appdir/usr/share/icons/hicolor/256x256/apps"
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install -Dm755 "target/release/$PKG" "$appdir/usr/bin/$PKG"
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install -Dm644 youtube-backup.desktop "$appdir/usr/share/applications/$PKG.desktop"
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# AppImage wants the desktop file + icon at the AppDir root too.
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cp youtube-backup.desktop "$appdir/$PKG.desktop"
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install -Dm644 icon.png "$appdir/usr/share/icons/hicolor/256x256/apps/$PKG.png"
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cp icon.png "$appdir/$PKG.png"
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# AppRun is the entry point. Exec the bundled binary, forwarding args.
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cat > "$appdir/AppRun" <<'APPRUN'
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#!/usr/bin/env bash
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HERE="$(dirname "$(readlink -f "${0}")")"
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exec "$HERE/usr/bin/yt-offline" "$@"
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APPRUN
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chmod +x "$appdir/AppRun"
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local out="$DIST/${PKG}-${VERSION}-${ARCH}.AppImage"
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# ARCH env var tells appimagetool which arch to stamp into the runtime.
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if ARCH="$ARCH" "$tool" --no-appstream "$appdir" "$out" 2>&1; then
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RESULT[appimage]="ok $out"
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else
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RESULT[appimage]="fail appimagetool returned nonzero"
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fi
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rm -rf "$appdir"
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}
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# ── Windows .zip (cross-compiled via mingw-w64) ──────────────────────────────
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# Like the AppImage we don't bundle the subprocess deps (yt-dlp / ffmpeg /
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# mpv) — on Windows they're expected on PATH, and the README in the zip says
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# so. The release build links a GUI-subsystem exe (no console window); the
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# binary reattaches to the parent console at runtime for `--web`/CLI use
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# (see attach_windows_console in main.rs).
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WIN_TARGET="x86_64-pc-windows-gnu"
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build_win() {
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say "building Windows .zip ($WIN_TARGET)"
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if ! rustup target list --installed 2>/dev/null | grep -qx "$WIN_TARGET"; then
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RESULT[win]="skip rust target $WIN_TARGET not installed (rustup target add $WIN_TARGET)"
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return
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fi
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if ! command -v x86_64-w64-mingw32-gcc >/dev/null 2>&1; then
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RESULT[win]="skip mingw-w64 gcc not found (install mingw-w64)"
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return
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fi
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if ! command -v zip >/dev/null 2>&1; then
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RESULT[win]="skip zip not found"
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return
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fi
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if ! cargo build --release --target "$WIN_TARGET"; then
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RESULT[win]="fail cargo build --target $WIN_TARGET returned nonzero"
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return
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fi
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local exe="target/$WIN_TARGET/release/$PKG.exe"
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if [[ ! -f "$exe" ]]; then
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RESULT[win]="fail expected $exe after build"
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return
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fi
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local staging="$DIST/${PKG}-win"
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rm -rf "$staging"
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mkdir -p "$staging"
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install -m755 "$exe" "$staging/$PKG.exe"
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install -m644 LICENSE "$staging/LICENSE.txt"
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cat > "$staging/README.txt" <<README
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yt-offline ${VERSION} — Windows build
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Run the GUI by double-clicking yt-offline.exe.
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To run the headless web server, open PowerShell or Command Prompt in this
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folder and run:
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.\\yt-offline.exe --web 8080
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then browse to http://localhost:8080. (Launched from a terminal the server
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prints its logs to that terminal; double-clicked it runs windowless.)
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Runtime requirements — these external tools must be installed and on your
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PATH (the .exe shells out to them, it does not bundle them):
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yt-dlp https://github.com/yt-dlp/yt-dlp (the downloader engine)
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ffmpeg https://ffmpeg.org (muxing / transcode / dedup)
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mpv https://mpv.io (desktop playback; optional)
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config.toml and cookies.txt are read from the working directory, the same
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as on Linux. See the project README for configuration details.
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Licensed under the GNU Affero General Public License v3 or later; see
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LICENSE.txt. Source: https://codeberg.org/${PKG}
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README
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local out="$DIST/${PKG}-${VERSION}-x86_64-windows.zip"
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rm -f "$out"
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# -j junks paths so the zip has the three files at its root.
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if (cd "$staging" && zip -q -j "$out" "$PKG.exe" LICENSE.txt README.txt); then
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RESULT[win]="ok $out"
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else
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RESULT[win]="fail zip returned nonzero"
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fi
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rm -rf "$staging"
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}
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# Whether to fold the Windows zip into a bare `all` run: only when the cross
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# toolchain is actually present, so `all` on a stock Linux box still passes.
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win_available() {
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rustup target list --installed 2>/dev/null | grep -qx "$WIN_TARGET" \
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&& command -v x86_64-w64-mingw32-gcc >/dev/null 2>&1 \
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&& command -v zip >/dev/null 2>&1
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}
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# ── Dispatch ─────────────────────────────────────────────────────────────────
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# The Windows zip doesn't need the Linux release binary, so skip that slow
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# build when Windows is all that was asked for.
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if [[ "$WANT" != "win" ]]; then
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build_binary
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fi
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case "$WANT" in
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deb) build_deb ;;
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rpm) build_rpm ;;
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appimage) build_appimage ;;
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win) build_win ;;
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all) build_deb; build_rpm; build_appimage
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if win_available; then build_win; fi ;;
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*) err "unknown target '$WANT' (want: deb|rpm|appimage|win|all)"; exit 2 ;;
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esac
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# ── Summary ──────────────────────────────────────────────────────────────────
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echo
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say "package summary"
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status=0
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for fmt in deb rpm appimage win; do
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[[ -v RESULT[$fmt] ]] || continue
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state="${RESULT[$fmt]%% *}"
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detail="${RESULT[$fmt]#* }"
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case "$state" in
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ok) printf ' \033[1;32m✓\033[0m %-9s %s\n' "$fmt" "$detail" ;;
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skip) printf ' \033[1;33m–\033[0m %-9s %s\n' "$fmt" "$detail" ;;
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fail) printf ' \033[1;31m✗\033[0m %-9s %s\n' "$fmt" "$detail"; status=1 ;;
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esac
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done
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exit $status
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