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docs(wiki): appliance provisioning runbook — booth unit 1 hardened (LUKS+TPM+SecureBoot+GRUB)
New wiki/decisions/appliance-provisioning.md: the hardware-verified step-by-step for
provisioning a booth PC (Dell OptiPlex 7070, i5-8500, discrete Nuvoton TPM 2.0) from
factory Windows to a hardened Ubuntu 26.04 LTS appliance. Every command was run on the
first real unit (2026-06-23). Captures the firmware-specific gotchas: Ventoy → 0x1A under
Secure Boot (flash ISO directly); the 7070 BIOS can't view db (verify via live USB); the
installer's hardware-backed encryption fails with PCR_UNUSABLE/dbt (use passphrase LUKS +
manual systemd-cryptenroll PCR-7 seal); GRUB password must be edit-only (--unrestricted)
to keep unattended boot.

OS hardening on unit 1 is COMPLETE + verified: LUKS FDE + TPM auto-unlock (PCR 7,
unattended) + Secure Boot (Deployed) + GRUB edit-lock (closes the init=/bin/bash root-shell
hole that PCR-7 sealing does not cover). Resolves the implementation half of
open-questions #12 for unit 1.

Cross-linked from disk-os-hardening; index + log updated. Still TODO on the box: Docker +
run the stack.

Claude-Session: https://claude.ai/code/session_01Xcm6ikLgGoCxxHrxtjkk5V
2026-06-23 15:53:56 +02:00

9.2 KiB

type, tags, sources, updated, status
type tags sources updated status
reference
parking
deployment
appliance
hardening
runbook
offline-first
2026-06-23 settled

Appliance provisioning runbook (booth PC)

Step-by-step to take a booth PC from factory Windows to a hardened, encrypted, container-running parking appliance. Written from the first real provisioning, 2026-06-23, on the actual hardware below — every command here was run and verified on that machine, including the firmware-specific workaround. Companion to disk-os-hardening (the why), tpm (TPM analysis), and container-deployment (the images this runs).

⚠ This box is the threat-model defence. The load-bearing anti-fraud control is still reconciliation over the append-only-event-chain — disk encryption + Secure Boot raise the cost of offline tamper, they don't replace reconciliation.

Reference hardware (first unit, 2026-06-23)

  • Dell OptiPlex 7070, Intel Core i5-8500 (Coffee Lake), 238 GB SATA SSD (/dev/sda).
  • TPM 2.0 — discrete Nuvoton (Get-Tpm → ManufacturerIdTxt NTC, fw 7.2.1.0). NOT Intel PTT/fTPM. Discrete ⇒ an external LPC/SPI bus exists (bus-sniff is a theoretical physical attack on PCR-only sealing — accepted; see tpm). Used PC — previous owner irrelevant.
  • Shipped Windows 11; formatted to Ubuntu 26.04 LTS (the decided platform — desktop-shell-tauri).
  • TPM: leave On. Used PC → Clear the TPM once (Security → TPM → Clear) so the prior owner's keys are wiped before LUKS enrollment. (PPI "Bypass for Clear" was unchecked → it asks for physical confirmation at next boot; that's normal.)
  • Secure Boot: Enabled, Deployed Mode (not Audit). "Enable Custom Mode" UNCHECKED = Standard Mode with stock Microsoft keys — this is what Ubuntu's signed shim needs. Do NOT touch PK/KEK/db/dbx. NB: the 7070's Expert Key Management is edit-only (Save/Replace/Append/Delete — no read-only "View Key"), so you cannot inspect db from BIOS; verify via the live USB instead (step 2).
  • Boot: UEFI only (no CSM/Legacy — a Legacy install has no Secure Boot / TPM-seal path).
  • Set a BIOS admin password.

2. Boot the Ubuntu 26.04 USB (Secure Boot ON)

  • Flash the ISO DIRECTLY (Rufus GPT/UEFI, Etcher, or dd). NOT Ventoy — Ventoy's own bootloader isn't in db, so Secure Boot rejects it with Verification failed: (0x1A) Security Violation (this is Secure Boot working correctly, not a fault). A directly-flashed Ubuntu USB boots the Microsoft-signed shim, which stock db trusts.
  • F12 at the Dell logo → pick the USB under UEFI BOOT.
  • Reaching the installer with Secure Boot ON = positive proof the MS third-party UEFI CA is in db (the verification the BIOS couldn't show us).

3. Encrypted install — the firmware workaround (IMPORTANT)

The 26.04 installer disk page offers: No Encryption / Encrypt with a passphrase / Use hardware-backed encryption (+ advanced LVM/ZFS, both ZFS experimental).

  • "Use hardware-backed encryption" FAILS on this 7070 with: PCR_UNUSABLE … error with secure boot policy (PCR7) measurements: generating secure boot profiles for systems with timestamp revocation (dbt) support is currently not supported. → Ubuntu's automated FDE profiler can't model PCR7 on Dell firmware carrying a dbt (UEFI timestamp revocation list). It is NOT a TPM or Secure-Boot fault — both are fine.
  • So: choose "Encrypt with a passphrase". Set a strong passphrase and SAVE IT OFF-MACHINE (phone / password manager). It is both the boot unlock (until TPM sealing) AND the permanent recovery slot. Finish the install.
  • Result (verify with lsblk): sda1 vfat /boot/efi, sda2 ext4 /boot, sda3 crypto_LUKS → dm_crypt-0 (LVM2) → ubuntu--vg-ubuntu--lv ext4 /.

4. Seal LUKS to the TPM (manual — PCR 7 only)

Do this AFTER first boot. Manual enrollment sidesteps the installer's dbt profiler and lets us pick PCRs. Bind to PCR 7 only (Secure Boot state): it catches the attack that matters (disabling Secure Boot to boot a tampered kernel) WITHOUT breaking on routine kernel/GRUB updates (which churn PCRs 4/8/9 → would otherwise drop every boot to the passphrase). Firmware-only PCR 0 is the fallback if PCR 7 ever errors.

sudo apt update && sudo apt install -y tpm2-tools
sudo tpm2_pcrread sha256                 # sanity: PCRs 0-10 populated, PCR 7 has a real value

# Enroll the TPM (prompts for the EXISTING install passphrase to authorize the new slot):
sudo systemd-cryptenroll --tpm2-device=auto --tpm2-pcrs=7 /dev/sda3

# Verify TWO slots — keep BOTH (slot 0 password = recovery, slot 1 tpm2 = auto-unlock):
sudo systemd-cryptenroll /dev/sda3
#   SLOT TYPE
#      0 password
#      1 tpm2

Wire it into boot (back up first; the mapping is dm_crypt-0, the LUKS UUID is in /etc/crypttab):

sudo cp /etc/crypttab /etc/crypttab.bak
sudo sed -i 's/none luks$/none luks,tpm2-device=auto/' /etc/crypttab
cat /etc/crypttab     # → dm_crypt-0 UUID=… none luks,tpm2-device=auto
sudo update-initramfs -u
sudo reboot
  • Boots straight to login, no passphrase prompt = ✅ TPM auto-unlock works (unattended reboot achieved — VERIFIED on this unit 2026-06-23).
  • Still prompts = PCR mismatch; type the passphrase (NOT locked out), then retry with --tpm2-pcrs=0. The password slot + crypttab.bak make this fully reversible.

Re-seal runbook: a BIOS update / Secure Boot change alters PCR 7 → the TPM refuses → boot falls back to the passphrase prompt (not a brick). After such a change, re-run step 4's systemd-cryptenroll --wipe-slot=tpm2 --tpm2-device=auto --tpm2-pcrs=7 /dev/sda3 to re-bind.

5. GRUB password — EDIT-ONLY (VERIFIED 2026-06-23)

Closes the init=/bin/bash / systemd.unit=rescue.target local-root hole: without it, anyone at the keyboard presses e at the GRUB menu, edits the kernel cmdline, and boots to a root shell with no login. The PCR-7 TPM seal does NOT cover this — editing the GRUB cmdline doesn't change PCR 7 (Secure Boot policy), so the TPM still releases the key and the attacker lands on the decrypted disk. This is the specific countermeasure for the threat-model. Use edit-only mode (--unrestricted) so the box still boots UNATTENDED — the password is required only to EDIT entries, never to boot.

grub-mkpasswd-pbkdf2          # enter a password (twice) → copy the grub.pbkdf2.sha512.* hash

Add the superuser (paste YOUR hash) to the end of /etc/grub.d/40_custom:

set superusers="admin"
password_pbkdf2 admin grub.pbkdf2.sha512.10000.<YOUR_HASH>

Make menu entries bootable WITHOUT the password (edit-only) — in /etc/grub.d/10_linux, set the active CLASS= line to include --unrestricted:

CLASS="--class gnu-linux --class gnu --class os --unrestricted"

Regenerate + VERIFY BOTH HALVES landed in the real config BEFORE rebooting (a GRUB misconfig means a rescue-USB recovery):

sudo update-grub
sudo grep -c "password_pbkdf2" /boot/grub/grub.cfg   # want ≥1 (password present)
sudo grep -c "unrestricted"    /boot/grub/grub.cfg   # want ≥1 (entries bootable w/o password)
sudo reboot

✅ VERIFIED on this unit: boots straight to login (no GRUB prompt, TPM still auto-unlocks) AND pressing e at the menu prompts for admin + password. Store the GRUB password off-machine (alongside the LUKS passphrase).

OS hardening on the first unit is now COMPLETE: LUKS FDE + TPM auto-unlock (PCR 7) + Secure Boot (Deployed) + GRUB edit-lock.

5b. Further hardening (TODO — not yet done)

  • Key-based SSH only (disable password auth) if SSH is enabled at all.
  • No/locked-down desktop — single-purpose; autostart the kiosk (desktop-shell-tauri).
  • Consider moving the host event-signing key into the TPM (non-extractable) — tpm, open-questions #12.
  • sudo apt autoremove the leftover old kernel (linux-*-7.0.0-14) once the new one is proven.

6. Runtime — Docker stack

Per container-deployment: install Docker Engine + compose, then run the parking-server + parking-vision images via docker-compose.yml -f docker-compose.prod.yml. Provide a real JWT_SECRET (openssl rand -hex 32) and COOKIE_SECURE=0 (plain-http booth LAN — see disk-os-hardening deploy-time runbook). Images are published to the Gitea registry by build-images.yml on push to dev/main.

Quick-reference: the gotchas, in order they bit us

  1. Ventoy USB → 0x1A Security Violation under Secure Boot → flash the ISO directly instead.
  2. 7070 BIOS has no "View Key" → can't inspect db; the live-USB boot IS the verification.
  3. Installer "hardware-backed encryption" → PCR_UNUSABLE/dbt → use passphrase LUKS + manual seal.
  4. Bind TPM to PCR 7 only, not a multi-PCR set (kernel updates churn 4/8/9 → passphrase every boot).
  5. Always keep the password slot + an off-machine copy of the passphrase (TPM is never the only key).
  6. GRUB password MUST be edit-only (--unrestricted on entries) or it prompts on EVERY boot → breaks unattended reboot. Verify grep -c unrestricted /boot/grub/grub.cfg ≥1 before rebooting.