100 lines
6.0 KiB
Markdown
100 lines
6.0 KiB
Markdown
---
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type: howto
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title: "Setting Up a New VM on a Home Proxmox Server (with the Usual Bells and Whistles)"
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summary: Reusable runbook for spinning up a new VM on a home Proxmox host — scoped API token access, human-performed VM creation, pre-install snapshot, Tailscale-first access, off-host backup job, and shared host-facts documentation. Proven via the hermes01 build, reused for a Home Assistant OS VM.
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tags:
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- type/howto
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- tool/proxmox
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- tool/tailscale
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- convention/infra-safety-scoping
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- domain/homelab
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scope: global
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last_updated: 2026-07-03
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update_note: experience-driven
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---
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# Setting Up a New VM on a Home Proxmox Server (with the Usual Bells and Whistles)
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This is the generalized pattern for standing up a new VM on a home Proxmox host with the
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access controls, safety net, and remote-access conventions that have proven out well.
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First proven end-to-end on the `hermes01` VM (self-hosted Hermes agent, completed
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2026-06-26); reused as the baseline for a second VM (Home Assistant OS) on 2026-07-03.
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It's a cross-project pattern, not tied to either specific service.
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This note is flagged `update_note: experience-driven` — when a new VM build finds a
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discrepancy (Proxmox UI changes, a step that no longer applies, a better ordering), update
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these steps rather than relying on a review date.
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## The steps
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1. **VM creation/import is a human-performed step, always.** Claude's Proxmox access should
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be a scoped API token (e.g. `claude@pve!ops`, credentials in a local env file like
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`~/.config/claude/pve.env`) allowlisted to specific VMIDs only — no host shell, and unable
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to touch protected/unrelated VMs. Creating or importing a new VM, and expanding the
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token's VMID allowlist to cover it, are both host-level changes that need a human at the
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Proxmox UI/host shell, not something the agent executes directly.
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2. **Take a pre-install snapshot before installing the primary service.** Proxmox UI → VM →
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Snapshots → Take Snapshot, right after the base OS is up and before the target
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application/service goes on. This gives a one-click rollback point if the install goes
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sideways — cheap insurance, always worth it.
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3. **Prefer Tailscale over public exposure for remote/admin access.** LAN SSH as a fallback
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for local operations; never expose the VM or its services directly to the public internet.
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4. **Set up a recurring, off-host backup job — not just the local snapshot.** Datacenter →
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Backup → Add:
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- Weekly schedule is a reasonable default cadence.
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- Snapshot mode (live, no VM downtime).
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- ZSTD compression.
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- Storage target should be off-host (e.g. a Synology NAS backup share) — an on-host-only
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backup doesn't survive a host/disk failure.
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- Retention: keep-last-4 (~a month of weekly restore points) is a reasonable default.
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- **Select VMs individually per backup job — never blanket-select all VMs.** This keeps
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protected/unrelated VMs from being accidentally swept into a job meant for one VM.
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5. **Verify the backup job actually works before trusting the schedule.** Run a one-off
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manual "Run now" execution and confirm the backup lands on the target storage. Don't
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assume the schedule will fire correctly untested.
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6. **Document host-level facts once, shared across all VM-specific projects — don't
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duplicate them per project.** Host address, VMID inventory, the token-scoping convention,
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and the safety rules (never touch protected VMs, no host shell, confirm destructive
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actions) belong in one place that every VM-specific project can actually see. Per-project
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duplication drifts — a safety rule updated in one project's docs silently goes stale in
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another's.
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**Where "one place" should live, if the VM projects are siblings under an umbrella
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directory**: put the shared facts directly in the umbrella's own CLAUDE.md, not in a
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separate sibling directory referenced via `@../shared/CLAUDE.md`. Claude Code's `@path`
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import resolver does not follow `../` references that escape a file's own directory
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tree — only same-directory and subdirectory imports resolve. A shared-facts file one
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level up and over from each VM project's CLAUDE.md silently never loads in a session
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scoped to that project; the path renders as a dead pointer. Verified empirically by
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launching a session with cwd inside a sibling project and checking which CLAUDE.md
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*content* (not just referenced paths) was actually present in context.
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The umbrella CLAUDE.md doesn't have this problem — it already auto-loads for any
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subdirectory cwd via Claude Code's ancestor-directory walk, so inlining the shared
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facts there makes them visible everywhere for free, no import needed. Per-project
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CLAUDE.md files then just point to it in prose ("see the umbrella CLAUDE.md's Proxmox
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Host section") rather than via `@import`. Subdirectory-descending imports (e.g. the
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umbrella file importing `@some-project/docs/foo.md`) are unaffected by this and work
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fine — the restriction is specifically on upward (`../`) traversal.
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7. **Before defaulting to a Docker/Container install for a self-hosted service, check
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whether a native/appliance-OS install path exists.** Docker-only installs sometimes lack
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the supervisor/plugin/add-on ecosystem that a purpose-built appliance OS provides (e.g.
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Home Assistant OS vs. Home Assistant Container, which is Core-only with no add-on store).
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If the appliance-OS path exists and the missing features matter, it's usually worth the
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OS being non-negotiable (can't run "Ubuntu + the app" and get the same feature set) rather
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than defaulting to whatever general-purpose OS you'd otherwise pick.
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## When this doesn't apply
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- Purely disposable/throwaway VMs (no data, no need to survive a host failure) can skip the
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backup job (steps 4–5) — snapshot alone is enough.
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- If the Proxmox host itself is not yours to scope access to this tightly (e.g. shared
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infra), the token-scoping convention in step 1 may not be available — fall back to
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documenting who has host access instead.
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