forked from heavy-duty/box
Review 4727756972 (A2): the backout no longer trusts gpasswd — it re-reads the live group database after removal; verified-absent gets the safe message, anything else screams ROLLBACK INCOMPLETE, exits nonzero, and names the exact remediation. The concurrent-login window (a session begun between usermod and backout keeps the group) is CLOSED to the extent the database can't reach: the backout detects live processes and names loginctl terminate-user, and the success wording claims only what was verified. Review 4727641752 (A1): a failed grant for a user whose membership predates the run (the hand-added-user scenario) now fails LOUDLY — they retain socket access on part-converged policy, and the message says so with both remediations (box revoke now, or fix and re-run). Their membership is not stripped: breaking a working user over a failed re-grant is its own hazard. The default-profile eth0 removal is deliberately not restored on failure — that mutation only reduces capability, and restoring it would move the failure state AWAY from fail-closed. Injected-failure coverage is criterion (n), both flavors: fresh-user backout (fault at the LAST mutation, so the rollback runs after every earlier one) with the group's absence verified and a converging re-run; blocked narrowing staged for real with an instance-local NIC parked on the private bridge. Review A3, resolution 3 with the measurement demanded: criterion (m) launches exactly 'incus launch --network boxnet' as the restricted user and probes the raw NIC from inside — egress works, RFC1918 dropped (the ACL is the network's), sibling probes dropped BOTH directions (the nft drop is the host's), name enumeration blocked. The scoped guarantee is now stated in box-design.md and measured on every run: box-minted instances carry per-NIC port_isolation; raw attachments keep every network- and host-owned control, losing only that redundant L2 layer. Instrument lesson kept as MU-5: the probe's first cut minted the non-cloud image — no DHCP client, no lease, and a dead NIC passes every negative probe vacuously; it now requires the lease before believing its own answers. Rehearsal: 54/54 (containers). test/cli.sh: 82 checks. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
364 lines
18 KiB
Bash
Executable file
364 lines
18 KiB
Bash
Executable file
#!/usr/bin/env bash
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# doctor.sh — is this host fit to mint boxes (and to drill), and if not, what
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# is wrong? Users reach it as 'box doctor'; the drill runs it directly.
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#
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# bash drill/doctor.sh # report
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# bash drill/doctor.sh --fix # report, then revert what the drill left behind
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#
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# The drill MUTATES the host in phase D (dns.mode, NIC filtering, ACL rules) to
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# rehearse the #16 hardening. If a run aborts before it reverts them, those
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# mutations outlive it — and the next run mints boxes on a broken network. That
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# is not a hypothetical: it is how a box came up with no DNS at all
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# ("Temporary failure resolving deb.debian.org" in cloud-init), and how a false
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# design veto against #16 got posted from a poisoned baseline.
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#
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# This script is the answer to "what state is the host actually in?" — the
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# question that kept getting answered by hand.
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#
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# ok/no/inf/head_ all return 0, so the 'A && ok "…" || no "…"' idiom this file
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# is built on cannot hit the C-may-run-when-A-is-true trap SC2015 warns about
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# (same reasoning as drill.sh's ok/no).
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# shellcheck disable=SC2015
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set -u
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FIX=0; PIN=0
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case "${1:-}" in
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--fix) FIX=1 ;;
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--pin-dns) PIN=1 ;;
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"") ;;
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*) echo "usage: doctor.sh [--fix | --pin-dns]"; exit 2 ;;
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esac
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bad=0
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ok() { printf ' \033[32mOK\033[0m %s\n' "$*"; }
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no() { printf ' \033[31mDIRTY\033[0m %s\n' "$*"; bad=$((bad + 1)); }
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inf() { printf ' %s\n' "$*"; }
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head_() { printf '\n\033[1m%s\033[0m\n' "$*"; }
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command -v incus >/dev/null || { echo "doctor: incus is not installed on this host."; exit 1; }
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timeout 10 incus list >/dev/null 2>&1 || {
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echo "doctor: the incus daemon is not answering (see issue #26 for recovery):"
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echo " sudo pkill -9 -f 'incusd shutdown'"
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echo " sudo systemctl stop incus.service incus.socket"
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echo " sudo systemctl reset-failed incus.service incus.socket"
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echo " sudo systemctl start incus.socket incus.service"
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exit 1
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}
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# The tier changes what this doctor can SEE, so it changes what it may JUDGE.
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# bin/box exports BOX_TIER; unset means a hand-run, which was always admin.
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# A restricted (incus-group) user cannot read the nft tables, the kernel's
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# bridge ports, or boxnet's (redacted) config — reporting those as DIRTY
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# would blame the host for the reader's own, correct, confinement. They get
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# the checks that are theirs: is the tier granted, is the contract in their
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# project, do their boxes actually resolve and route.
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TIER="${BOX_TIER:-admin}"
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if [ "$TIER" = restricted ]; then
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head_ "Access tier — restricted (the incus group: your own boxes, nothing else)"
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inf "the host stack (network, ACL, firewall, kernel state) is admin-owned;"
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inf "this doctor judges only what is yours to see"
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if [ "$FIX" = 1 ] || [ "$PIN" = 1 ]; then
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inf "--fix / --pin-dns are admin levers — ignored on this tier"
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FIX=0; PIN=0
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fi
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head_ "Your project — is the tier granted?"
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if incus profile show box-net >/dev/null 2>&1 </dev/null; then
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ok "the box-net profile is in your project — 'box new' lands on the hardened boxnet"
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iso="$(incus profile device get box-net eth0 security.port_isolation </dev/null 2>/dev/null)"
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[ "$iso" = "true" ] \
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&& ok "security.port_isolation = true (as shipped)" \
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|| no "security.port_isolation is NOT set in your box-net profile — re-grant refreshes it: ask an admin to re-run 'box grant $(id -un)'"
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else
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no "no box-net profile in your project — the restricted tier is granted per user"
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inf "fix: an admin runs: box grant $(id -un)"
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fi
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if incus network show boxnet >/dev/null 2>&1 </dev/null; then
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ok "boxnet is reachable from your project"
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else
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no "boxnet is not visible from your project — ask an admin to re-run 'box grant $(id -un)'"
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fi
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head_ "Can one of your boxes actually resolve DNS?"
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probe="$({ incus list "user.box=1" --format csv --columns ns 2>/dev/null
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incus list "user.claudebox=1" --format csv --columns ns 2>/dev/null; } \
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| awk -F, '$2 == "RUNNING" { print $1; exit }')"
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if [ -n "$probe" ]; then
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inf "probing inside '$probe':"
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timeout -k 5 25 incus exec "$probe" -- curl -sS -m 10 -o /dev/null https://1.1.1.1 </dev/null 2>/dev/null \
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&& ok "reaches 1.1.1.1 by address — egress routing is fine" \
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|| no "cannot reach 1.1.1.1 by address — egress routing is broken (an admin problem: box doctor as admin)"
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timeout -k 5 25 incus exec "$probe" -- getent hosts deb.debian.org </dev/null >/dev/null 2>&1 \
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&& ok "resolves deb.debian.org — DNS works" \
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|| no "CANNOT resolve deb.debian.org — an admin problem (the resolver pin lives on the host): box doctor as admin"
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else
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inf "no running box to probe with (mint one: box new --name work)"
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fi
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head_ "Verdict"
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if [ "$bad" -eq 0 ]; then
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printf ' \033[32mclean\033[0m — your tier is granted and your boxes are fit.\n\n'
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exit 0
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fi
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printf ' \033[31m%s problem(s)\033[0m — see the fixes above (most need an admin).\n\n' "$bad"
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exit 1
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fi
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# A FRESH host (no boxnet) is not a DIRTY one. Everything below that would
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# scream about a missing piece must first ask: missing from a stack, or never
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# set up? setup-host creates all of it, and the drill runs setup-host itself —
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# a bare host went 84/84 green minutes after this doctor called it unfit.
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FRESH=0
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head_ "Network — boxnet"
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if incus network show boxnet >/dev/null 2>&1; then
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# dns.mode=none is SHIPPED — it is what stops a box enumerating its siblings
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# through the gateway's dnsmasq. Its ABSENCE is the problem, not its presence.
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dns="$(incus network get boxnet dns.mode 2>/dev/null)"
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if [ "$dns" = none ]; then
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ok "dns.mode = none — a box cannot enumerate its siblings by name"
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else
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no "dns.mode = ${dns:-<unset>} — a box can RESOLVE its siblings' names and addresses"
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inf "fix: re-run: box setup-host"
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[ "$FIX" = 1 ] && { incus network set boxnet dns.mode=none && inf "set: dns.mode=none"; }
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fi
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inf "ipv4.address = $(incus network get boxnet ipv4.address 2>/dev/null)"
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# Incus reports the network as "Created" whether or not anything is actually
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# SERVING it. Kill the daemon uncleanly (a wedge, an OOM, a SIGKILL) and it
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# can come back without respawning this network's dnsmasq — the bridge is up,
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# the config is perfect, and every box minted afterwards gets NO DHCP lease,
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# so it dies deep inside cloud-init with "Temporary failure resolving
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# deb.debian.org". Two cold mints and an hour of hunting went into learning
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# that Incus's own status does not cover this. Ask the process table instead.
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if pgrep -af 'dnsmasq.*--interface=boxnet' >/dev/null 2>&1; then
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ok "a dnsmasq is serving boxnet (DHCP + DNS)"
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else
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no "NO dnsmasq is serving boxnet — the bridge is up and incus says 'Created', but nothing hands out leases"
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inf "every box minted now gets no address, no DNS, and dies in cloud-init"
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inf "fix: timeout 60 incus delete -f <any boxes>; sudo systemctl restart incus"
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inf " (if it does not come back: teardown-host.sh, then re-run the drill)"
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[ "$FIX" = 1 ] && {
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inf "restarting incus to respawn it…"
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sudo systemctl restart incus && sleep 5
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pgrep -af 'dnsmasq.*--interface=boxnet' >/dev/null 2>&1 \
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&& inf "reverted: dnsmasq is serving boxnet again" \
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|| inf "STILL missing — run teardown-host.sh and let the drill rebuild the network"
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}
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fi
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ipv6="$(incus network get boxnet ipv6.address 2>/dev/null)"
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[ "$ipv6" = none ] && ok "ipv6.address = none (the isolation contract — every ACL rule is IPv4-only)" \
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|| no "ipv6.address = $ipv6 — IPv6 is on and NOT covered by any ACL rule"
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else
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FRESH=1
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inf "boxnet does not exist (a fresh host — setup-host.sh will create it)"
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fi
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head_ "Firewall — the box-to-box drop"
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if sudo nft list table bridge box >/dev/null 2>&1; then
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ok "nft bridge table 'box' is present — boxes cannot reach each other"
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elif [ "$FRESH" = 1 ]; then
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inf "not installed yet (a fresh host — setup-host.sh installs it)"
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else
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no "the box-to-box drop is MISSING — boxes can reach each other"
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inf "an L3 ACL never sees frames switched between two ports of one bridge;"
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inf "the drop is an nft BRIDGE-family rule, and without it siblings are wide open."
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inf "fix: sudo /usr/local/sbin/box-firewall"
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inf " (or: sudo systemctl restart box-firewall.service)"
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fi
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# box-net is the placement contract since the 0.4.0 rename; claude-dev is its
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# pre-rename ancestor and may linger while legacy boxes still reference it.
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# Check whichever exist — an unisolated NIC is a fault on either.
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PROFILES=""
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incus profile show box-net >/dev/null 2>&1 && PROFILES="box-net"
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incus profile show claude-dev >/dev/null 2>&1 && PROFILES="$PROFILES claude-dev"
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head_ "Profile — the NIC is the isolation contract"
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if [ -n "$PROFILES" ]; then
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for p in $PROFILES; do
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[ "$p" = claude-dev ] && inf "claude-dev is legacy (pre-rename boxes still reference it)"
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iso="$(incus profile device get "$p" eth0 security.port_isolation 2>/dev/null)"
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if [ "$iso" = "true" ]; then
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ok "$p: security.port_isolation = true — boxes cannot reach each other at L2"
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else
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no "$p: security.port_isolation is NOT set — BOXES CAN REACH EACH OTHER"
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inf "an L3 ACL cannot do this: two boxes on one bridge are on the same L2"
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inf "segment, so their frames are switched, never routed past the ACL."
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inf "fix: re-run: box setup-host"
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fi
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for k in security.mac_filtering security.ipv4_filtering; do
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v="$(incus profile device get "$p" eth0 "$k" 2>/dev/null)"
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if [ -z "$v" ]; then
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ok "$p: $k unset (as shipped)"
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else
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no "$p: $k = $v ← phase D left this behind. A box can fail to get on the network at all."
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[ "$FIX" = 1 ] && { incus profile device unset "$p" eth0 "$k" && inf "reverted: $k unset"; }
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fi
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done
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done
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inf "resources are per-box since 0.4.0 (stamped from the template at mint; BOX_CPU/BOX_MEMORY override)"
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else
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inf "box-net does not exist (a fresh host — setup-host.sh will create it)"
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fi
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head_ "ACL — box-isolate"
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if incus network acl show box-isolate >/dev/null 2>&1; then
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n="$(incus network acl show box-isolate | grep -c 'action:' || true)"
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inf "$n rules"
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incus network acl show box-isolate | grep -E 'action:|destination:' | sed 's/^/ /'
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if incus network acl show box-isolate | grep -q '@internal'; then
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no "an @internal rule survived phase D"
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[ "$FIX" = 1 ] && { incus network acl rule remove box-isolate egress action=drop destination=@internal && inf "reverted: @internal rule removed"; }
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fi
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else
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inf "box-isolate does not exist (a fresh host)"
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fi
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# Config is a claim; the bridge port is the fact. Incus can accept
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# security.port_isolation and the kernel can still have 'isolated off' on the
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# tap — and then boxes reach each other while every config says they cannot.
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# Ask the kernel.
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head_ "Bridge ports — the KERNEL's view (config is a claim; this is the fact)"
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BRIDGE=""
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for c in bridge /usr/sbin/bridge /sbin/bridge; do
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sudo "$c" -V >/dev/null 2>&1 && { BRIDGE="$c"; break; }
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done
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if [ -n "$BRIDGE" ]; then
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ports="$(sudo "$BRIDGE" -d link show 2>/dev/null | grep -A1 'master boxnet')"
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if [ -z "$ports" ]; then
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inf "no instance is attached to boxnet right now (mint a box to check the taps)"
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else
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printf '%s\n' "$ports" | sed 's/^/ /'
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if printf '%s' "$ports" | grep -q 'isolated on'; then
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ok "the bridge ports are ISOLATED — boxes cannot exchange frames at L2"
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else
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no "the bridge ports are NOT isolated ('isolated off') — BOXES CAN REACH EACH OTHER"
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inf "security.port_isolation in the profile is a claim; this line is the fact."
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inf "if the profile says true and the kernel says off, the flag is not being"
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inf "applied to VM taps and the isolation needs a different mechanism."
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fi
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fi
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else
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inf "'bridge' (iproute2) not found — cannot read the kernel's view"
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fi
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head_ "Instances"
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left="$(incus list --format csv --columns ns 2>/dev/null)"
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[ -z "$left" ] && inf "(none)" || printf ' %s\n' "$left"
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for b in drill clone archive peer payroll cbprobe cbcopy cbnotours; do
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if incus config show "$b" >/dev/null 2>&1; then
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no "leftover drill box: $b"
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[ "$FIX" = 1 ] && { timeout 60 incus delete -f "$b" >/dev/null 2>&1 && inf "reverted: deleted $b"; }
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fi
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done
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# An interrupted multiuser.sh leaves its users (and their projects) behind —
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# and nothing else on this host will ever mention them. Its own cleanup is
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# 'box revoke --purge + userdel'; say so rather than absorbing them silently.
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for u in boxdrill1 boxdrill2 boxdrill3 boxdrill4; do
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if getent passwd "$u" >/dev/null 2>&1; then
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no "leftover rehearsal user: $u (an interrupted drill/multiuser.sh run)"
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inf "fix: sudo BOX_YES=1 box revoke $u --purge && sudo userdel -r $u"
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fi
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done
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# --- the box's DNS comes from the HOST's resolver. See issue #33. -----------
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head_ "Host resolver — a box's DNS is forwarded through this"
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hostns="$(grep -E '^nameserver' /etc/resolv.conf 2>/dev/null | awk '{print $2}' | tr '\n' ' ')"
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inf "/etc/resolv.conf: ${hostns:-<none>}"
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raw="$(incus network get boxnet raw.dnsmasq 2>/dev/null | tr '\n' ';')"
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if [ -n "$raw" ]; then
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ok "boxnet has a pinned resolver (raw.dnsmasq: $raw)"
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inf "boxes do NOT inherit the host's resolver — good (issue #33)"
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elif [ "$FRESH" = 1 ]; then
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# No boxnet, so there is nothing to pin YET. A VPN resolver on the host is
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# worth naming, but it is a fact about the host, not a fault in a stack
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# that does not exist — setup-host pins around it at creation.
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if printf '%s' "$hostns" | grep -qE '(^| )100\.(6[4-9]|[7-9][0-9]|1[01][0-9]|12[0-7])\.'; then
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inf "the host resolves via a CGNAT/Tailscale resolver ($hostns) — noted, not a fault:"
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inf "setup-host pins the box resolver to public upstreams, so boxes will not inherit it (issue #33)"
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else
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inf "no boxnet yet — setup-host.sh pins its resolver at creation"
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fi
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else
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# 100.64.0.0/10 is CGNAT — which is exactly Tailscale's range.
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if printf '%s' "$hostns" | grep -qE '(^| )100\.(6[4-9]|[7-9][0-9]|1[01][0-9]|12[0-7])\.'; then
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no "the host resolves via a CGNAT/Tailscale resolver ($hostns), and boxes INHERIT it — see issue #33"
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inf "· box DNS breaks whenever the tailnet's resolver does (this is what kills cold mints)"
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inf "· and tailnet names RESOLVE from inside a box, though its ACL blocks connecting to them"
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inf "fix: re-run: box setup-host (it pins the resolver)"
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inf " or quick-test the pin alone: bash drill/doctor.sh --pin-dns"
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else
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inf "boxes inherit the host's resolver (unpinned — setup-host.sh pins this now; re-run it)"
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fi
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fi
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if [ "$PIN" = 1 ]; then
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head_ "Pinning boxnet's resolver (issue #33)"
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if incus network set boxnet raw.dnsmasq "$(printf 'no-resolv\nserver=1.1.1.1\nserver=8.8.8.8\n')" 2>/tmp/pin.err; then
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ok "set raw.dnsmasq: no-resolv + 1.1.1.1 + 8.8.8.8 — dnsmasq now ignores /etc/resolv.conf"
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inf "a box's DNS no longer depends on the host's VPN state, and MagicDNS is out of the path"
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inf "re-run the drill; if the cold mint now succeeds, issue #33 is confirmed and the fix belongs in setup-host.sh"
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else
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no "incus rejected raw.dnsmasq: $(head -1 /tmp/pin.err 2>/dev/null)"
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inf "then raw.dnsmasq is the wrong lever and #33 needs a different mechanism — say so on the issue"
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fi
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fi
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head_ "Can a box actually resolve DNS?"
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# Any box will do — the drill's names are not the only boxes on a host, and
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# a pre-rename box (legacy tag) is as good a probe as a new one.
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probe="$({ incus list "user.box=1" --format csv --columns ns 2>/dev/null
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incus list "user.claudebox=1" --format csv --columns ns 2>/dev/null; } \
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| awk -F, '$2 == "RUNNING" { print $1; exit }')"
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if [ -n "$probe" ] && [ "$FIX" != 1 ]; then
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# Stdin MUST be pinned to /dev/null: with a TTY on stdin, 'incus exec' goes
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# interactive and puts the terminal in raw mode — the probe hangs forever,
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# timeout's TERM never takes (hence -k), and ^C is forwarded INTO the box
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# instead of killing the script. The drill learned this in #22; same rule here.
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inf "probing inside '$probe' — this separates DNS from routing, which is the whole question:"
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inf "its resolv.conf: $(timeout -k 5 20 incus exec "$probe" -- sh -c 'grep -m2 nameserver /etc/resolv.conf' </dev/null 2>/dev/null | tr '\n' ' ')"
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# Routing is probed by ADDRESS against the public internet, NOT by pinging
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# the gateway: box-firewall.sh drops everything from a box to the host
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# except DNS/DHCP, so ICMP to 10.88.0.1 fails BY DESIGN on a healthy host.
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# A gateway ping here is a check that can only ever lie.
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if timeout -k 5 25 incus exec "$probe" -- curl -sS -m 10 -o /dev/null https://1.1.1.1 </dev/null 2>/dev/null; then
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routing=1; ok "reaches 1.1.1.1 by address — egress routing is fine"
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else
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routing=0; no "cannot reach 1.1.1.1 by address — egress routing is broken (this is not DNS)"
|
|
fi
|
|
|
|
if timeout -k 5 25 incus exec "$probe" -- getent hosts deb.debian.org </dev/null >/dev/null 2>&1; then
|
|
ok "resolves deb.debian.org — DNS works"
|
|
else
|
|
no "CANNOT resolve deb.debian.org — this is exactly what kills cloud-init on every cold mint"
|
|
# Egress by address was probed above. If it worked, the fault is purely
|
|
# name resolution — i.e. the forwarder, i.e. issue #33.
|
|
if [ "$routing" = 1 ]; then
|
|
inf "…but it CAN reach 1.1.1.1 by address. So egress works and only NAME RESOLUTION is broken:"
|
|
inf "the fault is the forwarder the box inherits from the host — issue #33."
|
|
inf "test the fix: bash drill/doctor.sh --pin-dns then re-run the drill"
|
|
else
|
|
inf "…and it cannot reach 1.1.1.1 by address either — so egress itself is broken, not just DNS."
|
|
fi
|
|
fi
|
|
else
|
|
inf "no box to probe with (mint one, or run without --fix after a run)"
|
|
fi
|
|
|
|
head_ "Verdict"
|
|
if [ "$bad" -eq 0 ]; then
|
|
if [ "$FRESH" = 1 ]; then
|
|
printf ' \033[32mfresh\033[0m — no box stack on this host yet, and nothing dirty either.\n'
|
|
printf ' run: box setup-host (or the drill — it sets the host up itself)\n\n'
|
|
else
|
|
printf ' \033[32mclean\033[0m — this host is fit to mint boxes (and to drill).\n\n'
|
|
fi
|
|
exit 0
|
|
fi
|
|
printf ' \033[31m%s problem(s)\033[0m — this host is NOT fit to mint boxes (or to drill).\n' "$bad"
|
|
if [ "$FIX" = 1 ]; then
|
|
printf ' reverted what could be reverted; re-run doctor to confirm.\n\n'
|
|
else
|
|
printf ' run: bash drill/doctor.sh --fix\n\n'
|
|
fi
|
|
exit 1
|