BridgeAccountLink ties a game account to a website account. [link mints a
one-time, 5-minute code from an unambiguous alphabet (no O/0/I/1), holds it in a
Core-thread dict keyed to the account, and emits link.request. The website
relays the code back through the sidecar as link.confirm; the shard validates,
writes the WebsiteUserId account tag, and replies link.ok. A bad or expired code
gets link.error.
The tag persists to accounts.xml in ServUO's standard <tags> format, read by
LoadTags at boot, so a link survives restarts with no new persistence layer.
mob.login now carries webId when the account is linked, so the sidecar can
attribute a session to a site user without a lookup.
Safeguards: one-time codes; only the newest code per account is valid; per-account
30s rate limit against code spam; a 1-minute purge bounds the code table; the
websiteUserId is trusted only because the socket is loopback-only. The tag reaches
memory on confirm but disk only on the next save — a hard crash between loses it,
and the player just re-runs [link.
Verified end to end with a smart stub that reads the emitted code and confirms
it: link.request -> link.confirm -> link.ok, a bad code -> link.error, and the
tag observed in accounts.xml after a save. Evidence in docs/PLAN.md §15.
The [link command body is exposed as RequestLink(Mobile) so it can be driven in
tests without a client. Adds tools/stub_sidecar_link.ps1 and
tools/scaffolding/BridgeLinkProbe.cs.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
BridgeLink owns a TcpClient to 127.0.0.1 and nothing else touches it. Emit() is
called from the Core thread; it enqueues onto a bounded drop-oldest queue and
returns. A link thread drains the queue and reconnects with backoff; a reader
thread parses inbound lines and marshals each to the Core thread via
Timer.DelayCall. An absent, slow, or wedged sidecar therefore cannot stall the
shard, which is the property the rest of the bridge depends on.
Outbound JSON is written by hand into a StringBuilder because it runs on the
Core thread for every event and the measured budget assumes that cost. Inbound
uses JavaScriptSerializer: commands arrive at human rates, so correctness beats
speed, and parsing happens off the Core thread anyway. That needs a
System.Web.Extensions reference.
server.hello is emitted per connection rather than once at ServerStarted. A
sidecar that restarts independently would otherwise never learn which shard it
is attached to. It carries a bootId, stable across reconnects and fresh on every
shard restart, so the sidecar can tell "I reconnected" from "the shard
restarted" and keep or discard its cache accordingly.
Two defects found by testing and fixed before commit:
- Backoff ceiling was 30s, so a sidecar restart cost up to half a minute of
buffering on a loopback socket. Now 5s.
- A stale reader could kill a fresh connection: reader.Join(1s) can time out,
and the old thread's finally block then set the shared _dead flag, possibly
tearing down the connection that had replaced it. Connections now carry an
epoch and a reader only marks dead the one it owned.
Acceptance evidence recorded in docs/PLAN.md §11: boots with no sidecar, buffers
through the outage and drains on connect, round-trips ping/pong on the Core
thread, survives unknown kinds and malformed JSON, and reconnects unattended.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>