Wires the live-ISO wizard from "shows three screens" to "actually invokes archinstall on the chosen disk", plus first-pass styling so it stops looking like raw <h1>/<form>. Webinstaller flow: - S1 form gains username/password/password2/language with server-side validation (hostname/username regex, ≥8 char password, match check). - /install/run writes user_configuration.json + user_credentials.json (creds 0600) to FURTKA_STATE_DIR (default /tmp/furtka), then execs `archinstall --config … --creds … --silent` as a backgrounded subprocess. - /install/log renders the subprocess output via meta-refresh polling. - FURTKA_DRY_RUN=1 short-circuits the exec for testing. - archinstall flag names verified against `archinstall --help` in an archlinux container before committing. Drive list: - drives.py now filters via `lsblk … -o NAME,SIZE,TYPE` keeping TYPE=disk, so the live ISO's own squashfs (loop) and CD-ROM (rom) stop appearing as install targets. Boot menu: - iso/build.sh sed-rebrands "Arch Linux install medium" → "Furtka Live Installer" across grub/, syslinux/, and efiboot/loader/ entries. Verified zero leftovers against the current releng profile. Styling: - static/style.css adopts the website's design tokens (palette, typography, gate-mark accent), with light + dark via prefers-color-scheme. - New base.html with header (gate SVG + FURTKA·INSTALLER wordmark + step indicator) and footer; all install templates extend it. - Drive picker uses radio cards with score chip; overview uses a summary table and a destructive "wipe drive" button. Tests: 17 pass (4 new in test_app.py covering validation + config builders, 2 new in test_drives.py covering the lsblk filter). Ruff clean. README roadmap updated to mark these done and explicitly defer the 26.0-alpha release until archinstall actually completes end-to-end on a VM. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
113 lines
2.9 KiB
Python
113 lines
2.9 KiB
Python
import subprocess
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def get_drive_health(device):
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try:
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result = subprocess.run(
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["smartctl", "-H", device],
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capture_output=True,
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)
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output = result.stdout.decode()
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if "PASSED" in output:
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return 10
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elif "FAILED" in output:
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return 0
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return 5
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except Exception as e:
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print(f"Error checking SMART status for {device}: {e}")
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return 5
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def get_drive_type_score(device):
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name = device.lower()
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if "nvme" in name:
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return 15
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if "ssd" in name:
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return 10
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return 5
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def parse_size_gb(size_str):
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size_str = size_str.strip().upper().replace(",", ".")
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if not size_str:
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return None
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if size_str.endswith("T"):
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return float(size_str[:-1]) * 1024
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if size_str.endswith("G"):
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return float(size_str[:-1])
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if size_str.endswith("M"):
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return float(size_str[:-1]) / 1024
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return None
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def get_size_score(size_gb):
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if size_gb is None:
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return 5
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if size_gb < 128:
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return 5
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if size_gb < 512:
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return 7
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return 10
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def score_device(device, size_gb):
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return get_drive_type_score(device) + get_drive_health(device) + get_size_score(size_gb)
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def parse_lsblk_output(output):
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"""Parse `lsblk -dn -o NAME,SIZE,TYPE` output into scored device dicts.
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Keeps only TYPE=disk so the live ISO's own squashfs (loop) and the boot
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CD-ROM (rom) don't show up as install targets.
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"""
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devices = []
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for line in output.strip().split("\n"):
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if not line:
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continue
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parts = line.split()
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if len(parts) < 3:
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continue
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name, size, dev_type = parts[0], parts[1], parts[2]
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if dev_type != "disk":
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continue
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device = f"/dev/{name}"
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devices.append(
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{
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"name": device,
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"size": size,
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"score": score_device(device, parse_size_gb(size)),
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}
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)
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devices.sort(key=lambda d: d["score"], reverse=True)
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return devices
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def list_scored_devices():
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"""Return [{name, size, score}, ...] for all physical disks, highest score first."""
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try:
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result = subprocess.run(
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["lsblk", "-dn", "-o", "NAME,SIZE,TYPE"],
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capture_output=True,
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text=True,
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check=True,
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)
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except subprocess.CalledProcessError as e:
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print(f"Error listing devices: {e}")
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return []
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return parse_lsblk_output(result.stdout)
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def main():
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devices = list_scored_devices()
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if not devices:
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print("No storage devices found.")
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return
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print(f"\n{'Device':<20} {'Size':<10} {'Score'}")
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print("-" * 40)
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for d in devices:
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print(f"{d['name']:<20} {d['size']:<10} {d['score']}")
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print(f"\nBest drive for boot: {devices[0]['name']} (score {devices[0]['score']})")
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if __name__ == "__main__":
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main()
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