#!/usr/bin/env -S uv run """Build the desktop GUI application and package it with Velopack. Usage: uv run scripts/winbuild.py This runs in the project environment where dependencies are available via pyproject.toml. This script: 1. Reads the version from pyproject.toml 2. Runs `uv build` to produce the wheel/sdist 3. On Windows/macOS, downloads the ffmpeg binary for bundling 4. Builds MediaHive using PyInstaller 5. Packages with Velopack: Setup.exe (Windows), .pkg (macOS), .AppImage (Linux), plus the update feed in build/velopack/ that release.py uploads for in-app auto-updates 6. On Windows, also creates a portable ZIP (no auto-updates) """ import io import os import platform import shutil import stat import subprocess import sys import tarfile import urllib.request import zipfile from pathlib import Path import setuptools_scm # BtbN automated builds always publish a 'latest' tag with this asset. _FFMPEG_URL = ( "https://github.com/BtbN/ffmpeg-builds/releases/download/latest" "/ffmpeg-master-latest-win64-gpl.zip" ) _MACOS_ARM64_TOOL_URLS = { "ffmpeg": "https://www.osxexperts.net/ffmpeg81arm.zip", } _FFMPEG_STAGING = Path(__file__).parent.parent / "build" / "ffmpeg" _REPO_ROOT = Path(__file__).parent.parent _ASSETS_DIR = _REPO_ROOT / "mediahive" / "assets" # Velopack CLI (dotnet tool package). Runs on the machine's .NET runtime; the # produced Setup.exe/Update.exe are native and need no runtime on end-user # machines. Pin a version whose tools target an installed .NET major. _VPK_VERSION = "1.2.158" _VPK_URL = ( f"https://api.nuget.org/v3-flatcontainer/vpk/{_VPK_VERSION}" f"/vpk.{_VPK_VERSION}.nupkg" ) _VPK_STAGING = _REPO_ROOT / "build" / "vpk" def _platform_zip_suffix() -> str: machine = platform.machine().lower() arch = { "x86_64": "x64", "amd64": "x64", "arm64": "arm64", "aarch64": "arm64", }.get(machine, machine or "unknown") if sys.platform == "win32": return "win64" if sys.platform == "darwin": return f"macos-{arch}" return f"linux-{arch}" def fetch_ffmpeg() -> Path: """Download latest ffmpeg.exe from BtbN builds into build/ffmpeg/.""" dest = _FFMPEG_STAGING / "ffmpeg.exe" if dest.exists(): print(f"ffmpeg already staged at {dest}, skipping download.") return dest _FFMPEG_STAGING.mkdir(parents=True, exist_ok=True) print(f"Downloading ffmpeg from {_FFMPEG_URL} ...") with urllib.request.urlopen(_FFMPEG_URL) as resp: data = resp.read() print("Extracting ffmpeg.exe ...") with zipfile.ZipFile(io.BytesIO(data)) as zf: # The zip contains a top-level folder; ffmpeg.exe is under .../bin/ ffmpeg_entry = next( name for name in zf.namelist() if name.endswith("/bin/ffmpeg.exe") ) with zf.open(ffmpeg_entry) as src: Path(dest).write_bytes(src.read()) print(f"ffmpeg staged at {dest} ({dest.stat().st_size // 1024 // 1024} MB)") return dest def fetch_macos_arm64_binaries() -> dict[str, Path]: """Download prebuilt macOS arm64 ffmpeg binary into build/ffmpeg/.""" if sys.platform != "darwin" or platform.machine().lower() not in { "arm64", "aarch64", }: raise RuntimeError("macOS bundling is only supported for arm64 builds") _FFMPEG_STAGING.mkdir(parents=True, exist_ok=True) staged: dict[str, Path] = {} for tool_name, url in _MACOS_ARM64_TOOL_URLS.items(): dest = _FFMPEG_STAGING / tool_name if dest.exists(): print(f"{tool_name} already staged at {dest}, skipping download.") staged[tool_name] = dest continue print(f"Downloading {tool_name} from {url} ...") with urllib.request.urlopen(url) as resp: data = resp.read() with zipfile.ZipFile(io.BytesIO(data)) as zf: entry_name = next( name for name in zf.namelist() if Path(name).name == tool_name and not name.endswith("/") ) with zf.open(entry_name) as src: Path(dest).write_bytes(src.read()) dest.chmod(dest.stat().st_mode | stat.S_IXUSR | stat.S_IXGRP | stat.S_IXOTH) # Make the bundled binary runnable when copied out of the zip/app on macOS. subprocess.run(["xattr", "-cr", str(dest)], check=False) subprocess.run(["codesign", "-f", "-s", "-", str(dest)], check=True) staged[tool_name] = dest print( f"{tool_name} staged at {dest} ({dest.stat().st_size // 1024 // 1024} MB)" ) return staged def ensure_macos_icon() -> Path: """Create mediahive.icns from mediahive.ico when building on macOS.""" icon_icns = _ASSETS_DIR / "mediahive.icns" if icon_icns.exists(): return icon_icns icon_ico = _ASSETS_DIR / "mediahive.ico" if not icon_ico.exists(): raise FileNotFoundError(f"Missing source icon: {icon_ico}") iconset_dir = _REPO_ROOT / "build" / "mediahive.iconset" iconset_dir.mkdir(parents=True, exist_ok=True) base_png = _REPO_ROOT / "build" / "mediahive-icon-1024.png" subprocess.run( ["sips", "-s", "format", "png", str(icon_ico), "--out", str(base_png)], check=True, ) size_entries = [ (16, "icon_16x16.png"), (32, "icon_16x16@2x.png"), (32, "icon_32x32.png"), (64, "icon_32x32@2x.png"), (128, "icon_128x128.png"), (256, "icon_128x128@2x.png"), (256, "icon_256x256.png"), (512, "icon_256x256@2x.png"), (512, "icon_512x512.png"), (1024, "icon_512x512@2x.png"), ] for pixels, name in size_entries: subprocess.run( [ "sips", "-z", str(pixels), str(pixels), str(base_png), "--out", str(iconset_dir / name), ], check=True, ) subprocess.run( ["iconutil", "-c", "icns", str(iconset_dir), "-o", str(icon_icns)], check=True, ) print(f"macOS app icon generated: {icon_icns}") return icon_icns def fetch_vpk() -> Path: """Download the Velopack CLI package into build/vpk/ (cached). Returns the path to vpk.dll, runnable with `dotnet vpk.dll ...`. """ vpk_dll = _VPK_STAGING / "tools" / "net10.0" / "any" / "vpk.dll" if vpk_dll.exists(): print(f"vpk already staged at {_VPK_STAGING}, skipping download.") return vpk_dll _VPK_STAGING.mkdir(parents=True, exist_ok=True) print(f"Downloading vpk from {_VPK_URL} ...") with urllib.request.urlopen(_VPK_URL) as resp: data = resp.read() with zipfile.ZipFile(io.BytesIO(data)) as zf: zf.extractall(_VPK_STAGING) if not vpk_dll.exists(): raise RuntimeError(f"vpk.dll not found in package at {vpk_dll}") print(f"vpk staged at {_VPK_STAGING}") return vpk_dll _DOTNET_STAGING = _REPO_ROOT / "build" / "dotnet" # aka.ms latest-runtime archives per platform (vpk needs .NET >= 8). _DOTNET_RUNTIME_URLS = { ("win32", "x64"): "https://aka.ms/dotnet/10.0/dotnet-runtime-win-x64.zip", ("darwin", "arm64"): "https://aka.ms/dotnet/10.0/dotnet-runtime-osx-arm64.tar.gz", ("linux", "x64"): "https://aka.ms/dotnet/10.0/dotnet-runtime-linux-x64.tar.gz", } def _dotnet_has_runtime(exe: Path) -> bool: """Check that `exe` runs and has Microsoft.NETCore.App >= 8.""" try: result = subprocess.run( [str(exe), "--list-runtimes"], capture_output=True, text=True, timeout=30 ) except (OSError, subprocess.TimeoutExpired): return False if result.returncode != 0: return False for line in result.stdout.splitlines(): parts = line.split() if len(parts) >= 2 and parts[0] == "Microsoft.NETCore.App": try: if int(parts[1].split(".")[0]) >= 8: return True except ValueError: continue return False def fetch_dotnet() -> str: """Resolve a dotnet host with a modern (>= 8) runtime, bootstrapping one into build/dotnet/ if none is found. A plain `dotnet` may resolve to a runtime-only installation, and long-running services (CI runners) may carry a stale environment without DOTNET_ROOT or scoop paths — so probe known locations explicitly. """ exe_name = "dotnet.exe" if sys.platform == "win32" else "dotnet" candidates: list[Path] = [] root = os.environ.get("DOTNET_ROOT") if root: candidates.append(Path(root) / exe_name) if sys.platform == "win32": candidates.append( Path(r"C:\ProgramData\scoop\apps\dotnet-sdk\current") / exe_name ) which = shutil.which("dotnet") if which: candidates.append(Path(which)) staged = _DOTNET_STAGING / exe_name candidates.append(staged) for exe in candidates: if exe.exists() and _dotnet_has_runtime(exe): print(f"Using dotnet at {exe}") return str(exe) machine = platform.machine().lower() arch = {"x86_64": "x64", "amd64": "x64", "arm64": "arm64", "aarch64": "arm64"}.get( machine, machine ) url = _DOTNET_RUNTIME_URLS.get((sys.platform, arch)) if url is None: raise RuntimeError(f"No dotnet runtime download for {sys.platform}/{arch}") print(f"Downloading dotnet runtime from {url} ...") with urllib.request.urlopen(url) as resp: data = resp.read() _DOTNET_STAGING.mkdir(parents=True, exist_ok=True) if url.endswith(".zip"): with zipfile.ZipFile(io.BytesIO(data)) as zf: zf.extractall(_DOTNET_STAGING) else: with tarfile.open(fileobj=io.BytesIO(data), mode="r:gz") as tf: tf.extractall(_DOTNET_STAGING) staged.chmod(staged.stat().st_mode | stat.S_IXUSR | stat.S_IXGRP | stat.S_IXOTH) if not _dotnet_has_runtime(staged): raise RuntimeError(f"Bootstrapped dotnet at {staged} failed runtime check") print(f"dotnet staged at {_DOTNET_STAGING}") return str(staged) def build_velopack(version: str) -> Path: """Build the Velopack installer/bundle for this platform. Windows: per-user Setup.exe. macOS: .pkg installer. Linux: .AppImage. Also produces the update feed (releases..json, *.nupkg) in build/velopack/ for release.py to upload — in-app auto-updates read it from the Gitea release. Velopack installs carry no Mark-of-the-Web, so the .NET CLR loads pythonnet/pywebview assemblies that it refuses from a downloaded ZIP. """ if sys.platform == "darwin": dist_folder = _REPO_ROOT / "build" / "MediaHive.app" icon = _ASSETS_DIR / "mediahive.icns" rid = "osx-arm64" main_exe = "MediaHive" artifact_ext = ".pkg" elif sys.platform == "win32": dist_folder = _REPO_ROOT / "build" / "MediaHive" icon = _ASSETS_DIR / "mediahive.ico" rid = "win-x64" main_exe = "MediaHive.exe" artifact_ext = ".exe" else: dist_folder = _REPO_ROOT / "build" / "MediaHive" icon = _ASSETS_DIR / "mediahive.png" rid = "linux-x64" main_exe = "MediaHive" artifact_ext = ".AppImage" if not dist_folder.exists(): raise FileNotFoundError(f"Distribution folder not found: {dist_folder}") vpk_dll = fetch_vpk() releases_dir = _REPO_ROOT / "build" / "velopack" cmd = [ fetch_dotnet(), str(vpk_dll), "pack", "--packId", "MediaHive", "--packVersion", version, "--packDir", str(dist_folder), "--mainExe", main_exe, "--packAuthors", "MediaHive", "--packTitle", "MediaHive", "--icon", str(icon), "--runtime", rid, "--outputDir", str(releases_dir), ] print(f"Running: {' '.join(cmd)}") try: result = subprocess.run(cmd, cwd=_REPO_ROOT, capture_output=True, text=True) except OSError as exc: raise RuntimeError(f"vpk failed to start: {exc}") from exc if result.returncode != 0: raise RuntimeError( f"vpk pack failed with exit code {result.returncode}\n" f"stdout:\n{result.stdout}\nstderr:\n{result.stderr}" ) setup = next(iter(sorted(releases_dir.glob(f"*Setup*{artifact_ext}"))), None) if setup is None: setup = next(iter(sorted(releases_dir.glob(f"*{artifact_ext}"))), None) if setup is None: raise RuntimeError(f"vpk produced no *{artifact_ext} in {releases_dir}") artifact = ( _REPO_ROOT / "build" / f"MediaHive-{version}-{_platform_zip_suffix()}-setup{artifact_ext}" ) artifact.unlink(missing_ok=True) setup.rename(artifact) return artifact def read_version() -> str: """Read version via setuptools_scm (same logic as hatch-vcs).""" return setuptools_scm.get_version(root=str(_REPO_ROOT)) def build_wheel() -> None: """Run uv build to produce the wheel and sdist.""" repo_root = _REPO_ROOT cmd = ["uv", "build"] print(f"Running: {' '.join(cmd)}") result = subprocess.run(cmd, cwd=repo_root) if result.returncode != 0: raise RuntimeError(f"uv build failed with exit code {result.returncode}") def build_executable() -> None: """Run PyInstaller to build the desktop GUI app.""" repo_root = _REPO_ROOT spec_file = Path(__file__).parent / "MediaHive.spec" cmd = [ sys.executable, "-m", "PyInstaller", "--noconfirm", "--clean", "--distpath", str(repo_root / "build"), "--workpath", str(repo_root / "build" / ".pyinstaller-work"), str(spec_file), ] print(f"Running: {' '.join(cmd)}") result = subprocess.run(cmd, cwd=repo_root) if result.returncode != 0: raise RuntimeError(f"PyInstaller failed with exit code {result.returncode}") def create_zip(version: str) -> Path: """Create a version-numbered ZIP file of the build/MediaHive folder.""" repo_root = _REPO_ROOT dist_folder = repo_root / "build" / "MediaHive" if not dist_folder.exists(): raise FileNotFoundError(f"Distribution folder not found: {dist_folder}") zip_name = f"MediaHive-{version}-{_platform_zip_suffix()}.zip" if sys.platform == "win32": # Distinguish from the Velopack installer (MediaHive-*-win64-setup.exe) zip_name = zip_name.replace("-win64.zip", "-win64-portable.zip") zip_path = repo_root / "build" / zip_name zip_path.parent.mkdir(parents=True, exist_ok=True) print(f"Creating {zip_path}...") shutil.make_archive( str(zip_path.with_suffix("")), # removes .zip so make_archive can add it "zip", root_dir=str(dist_folder), # zip contents of MediaHive/, not the folder itself ) return zip_path def main() -> None: # Windows consoles default to cp1252, which can't encode ✓/✗ sys.stdout.reconfigure(errors="replace") sys.stderr.reconfigure(errors="replace") try: version = read_version() print(f"MediaHive version: {version}") if sys.platform == "win32": fetch_ffmpeg() elif sys.platform == "darwin": fetch_macos_arm64_binaries() ensure_macos_icon() else: print( "Skipping ffmpeg bundling on this platform " "(uses system ffmpeg if available)." ) build_wheel() build_executable() artifacts = [build_velopack(version)] if sys.platform == "win32": # Velopack-less plain-folder distribution (with MOTW strip) artifacts.append(create_zip(version)) for artifact_path in artifacts: print(f"✓ Built successfully: {artifact_path}") print(f" Size: {artifact_path.stat().st_size / (1024 * 1024):.1f} MB") except (FileNotFoundError, OSError, RuntimeError, ValueError) as e: print(f"✗ Build failed: {e}", file=sys.stderr) sys.exit(1) if __name__ == "__main__": main()