rig/commands/lib/runner-config.sh
Claude 92fa2a9860 bootstrap: infer the tailnet tag from the pre-auth key, verify the granted tag
rig used to pass --ts-tag to `tailscale up --advertise-tags`, stating the
tailnet tag a second time with no way to know whether its request and the
key's own tags agreed. It asserted the tag it REQUESTED, never the tag control
GRANTED — the sshd first-wins bug in a different hat, and the same scar (both
M900s joined tag:server, retagged by hand, unnoticed).

Collapse the two sources of truth onto one: the key.

- `tailscale up` drops --advertise-tags; the key's tags apply.
- After join, poll `tailscale status --json` for `.Self.Tags` (netmap ground
  truth, not `debug prefs`) until tags appear or BackendState=Running, on BOTH
  the fresh-join and already-joined paths.
- UNTAGGED -> hard refusal: `tailscale logout` to back the user-owned node out,
  then die naming the fix (mint a tagged key).
- Role policy moves onto the effective tag: a runner must not have tag:server
  among the tags the key actually granted. Strictly stronger than before.
- --ts-tag is removed, and dies exit 2 with a message pointing at the key
  (consuming its value), not an "unknown flag".
- New array-aware reader json_string_array in lib/runner-config.sh (jq-free,
  never fails under set -e), with its own unit tests; bootstrap sources the lib.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-17 15:27:09 +00:00

99 lines
4.5 KiB
Bash

#!/usr/bin/env bash
# Shared reader for the runner's own on-disk config ($RUNNER_DIR/.runner).
# Sourced by the runner-* commands; never executed on its own.
# .runner is JSON, parsed here with grep/sed on purpose: a rig-bootstrapped box
# has no jq, and installing one to read two fields would be a poor trade.
#
# json_field <file> <key> — the first string value for <key>, empty if absent.
# Never fails: callers run under `set -e` with pipefail, where a grep that
# matches nothing would otherwise kill the script with no message. A missing
# key is a fact to test for, not an error to die on.
json_field() {
grep -o "\"$2\"[[:space:]]*:[[:space:]]*\"[^\"]*\"" "$1" 2>/dev/null \
| head -n1 | sed 's/.*:[[:space:]]*"//; s/"$//' || true
}
# json_string_array <file> <key> — the elements of the FIRST array named <key>,
# one per line, empty when the key is absent or the array is empty.
#
# json_field's sibling for the one shape it cannot read: `.Self.Tags` from
# `tailscale status --json` is a JSON array, and bootstrap must assert on it to
# learn the tag control actually GRANTED the node (the netmap's ground truth),
# not the tag rig requested. Same grep/sed spirit, same jq-free reason: a
# rig-bootstrapped box has no jq and we will not install one to read one field.
#
# `tr -d '\n'` first, because tailscale pretty-prints its JSON and an array
# spans lines — grep is line-oriented and would never see `[ ... ]` whole
# otherwise. `\[[^]]*\]` then captures the first flat array body for <key>
# (tag strings never contain `]`, so this is safe); the inner `grep -o` pulls
# every quoted token out of it, and `sed 1d` drops the key's own name — which
# `"key":[...]` leads with — leaving just the elements.
#
# FIRST array wins by design, and the caller leans on it: `tailscale status
# --json` emits Self before Peer (Go struct field order, stable), so the first
# "Tags" is the node's OWN, never a peer's. An absent key omits itself entirely
# (Go's omitempty) rather than emitting `[]` — which is exactly the untagged,
# user-owned node bootstrap must catch. Never fails under `set -e`+pipefail: a
# non-match is a fact to test for, like json_field, not a reason to die.
json_string_array() {
tr -d '\n' < "$1" 2>/dev/null \
| grep -o "\"$2\"[[:space:]]*:[[:space:]]*\[[^]]*\]" \
| head -n1 | grep -o '"[^"]*"' | sed '1d; s/^"//; s/"$//' || true
}
# runner_repo_url <runner_dir> — the repository this box's runner is registered
# to, empty when nothing is registered there.
runner_repo_url() {
[ -e "$1/.runner" ] || return 0
json_field "$1/.runner" gitHubUrl
}
# runner_agent_name <runner_dir> — the runner's name, empty when unregistered.
runner_agent_name() {
[ -e "$1/.runner" ] || return 0
json_field "$1/.runner" agentName
}
# assert_runner_repo <runner_dir> <owner/repo>
#
# Returns 0 when the box has no runner, or has one already registered to
# <owner/repo>: re-running `install` against the repo the box is already on is
# real convergence — it re-uses the binary, skips registration, exits 0.
#
# Returns 1, explaining itself on stderr, when the runner is registered to a
# DIFFERENT repo. Skipping *that* is not convergence, it is ignoring the
# argument: `install` would skip its configure step, restart the service on the
# OLD repo, and report success — leaving the repo you asked for with no runner
# and its jobs queued against one that will never come. Moving a runner between
# repos is a trust-boundary act, so it belongs to `repoint`, out loud.
assert_runner_repo() {
local dir="$1" repo="$2" current wanted
[ -e "$dir/.runner" ] || return 0
current="$(runner_repo_url "$dir")"
wanted="https://github.com/${repo}"
if [ -z "$current" ]; then
printf 'rig-runner: ERROR: %s\n' \
"${dir}/.runner exists but names no repository — this box's registration cannot
be read, so rig cannot tell whether it is already on ${wanted}.
Wipe the local registration and install again:
rig runner remove --local" >&2
return 1
fi
if [ "$current" = "$wanted" ]; then
return 0
fi
printf 'rig-runner: ERROR: %s\n' \
"this box's runner is already registered to ${current}, not ${wanted}.
install will not move a runner between repositories: it would leave the service
running against the OLD repo and report success. To move it in one act:
rig runner repoint --repo ${repo}
or take it off the old repo first, then install:
rig runner remove (deregisters from ${current}; needs a removal token)
rig runner remove --local (when you cannot mint one)" >&2
return 1
}