BridgeProfile builds the read-models the website consumes; BridgeRequests
registers the inbound handlers. The sidecar asks, the shard answers on the Core
thread (inbound lines are marshaled through Timer.DelayCall before a handler
runs), so all of these read live world state safely.
- char.request: resolve by serial, or by account + slot, and reply with a full
profile (stats, all trained skills, worn equipment with flattened AOS mods,
resists). Works for offline characters since a logged-off mobile stays
resident until Delete.
- account.roster: light per-character summary, offline chars included.
- vendor.snapshot: every player vendor owned by an account, with held gold and
priced listings.
Each request may carry a reqId the reply echoes so the sidecar can correlate.
An unresolvable request gets a bridge.error reply rather than silence, so the
website can show a real failure instead of hanging.
Verified against the real world with a sending stub: all five requests answered,
both char lookup paths (account+slot and serial) returning the identical profile,
vendor.snapshot returning seed_000's two vendors and 80 listings, and the bad
account returning bridge.error. Two real-data findings noted in docs/PLAN.md §14:
a GM character can have skill base > cap (the website must not assume otherwise),
and the mod-flattening path still wants a genuinely kitted character to exercise
against real suffix gear.
Adds tools/stub_sidecar_request.ps1 (sends requests) and a hardened
tools/stub_sidecar.ps1 (survives reaping/rebind).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
uo-link
ServUO ⇄ Rust sidecar bridge. The shard emits newline-delimited JSON over a loopback TCP socket; the sidecar owns the WebSocket the website consumes.
ServUO plugin (C#, net48) ──loopback TCP, newline-JSON──► Rust sidecar ──WebSocket/JSON──► website
(Core-thread reads) ◄──inbound commands─────────────┘ (owns WS, auth, buffering, fan-out)
The shard never speaks WebSocket. Every world read happens on the Core thread; the socket is touched only by a dedicated writer thread draining a bounded queue.
Layout
| Path | What |
|---|---|
overlay/ |
Mirrors the ServUO server root. Everything here — and only this — copies over an install. |
patches/ |
Unified diffs against stock ServUO for files we must modify rather than add. |
tools/ |
Never deployed. Test scaffolding and anything else that must not reach a server. |
docs/PLAN.md |
Implementation plan, measured performance budget, and the full data catalog. |
docs/RESEARCH.md |
Original source-level research. Partly superseded — see the corrections table in PLAN.md §8. |
docs/SHARD_PREREQS.md |
Repairs the target shard needed before any of this could load. |
deploy.ps1 |
Copies overlay/ into a server root. -Verify diffs instead of writing. |
Anything under overlay/ is authoritative. Do not edit files in the server tree directly — edit here and deploy.
Deploy
.\deploy.ps1 -ServerPath C:\Users\colby\Desktop\servuo -Verify # show what would change
.\deploy.ps1 -ServerPath C:\Users\colby\Desktop\servuo # write
Status
| Phase | State |
|---|---|
0 — build fix (Scripts.csproj) |
done, verified end-to-end |
1 — transport (BridgeLink) |
done, acceptance in docs/PLAN.md §11 |
2 — event streams (BridgeEvents) |
done, acceptance in docs/PLAN.md §12 |
3 — sweeps (BridgeSweeps) |
done, acceptance in docs/PLAN.md §13 |
4 — request/response (BridgeRequests) |
done, acceptance in docs/PLAN.md §14 |
5 — [link account linking |
not started |
| 6 — town-crier inbound | not started |
7 — PlayerVendorSale core event |
not started |
| 8 — cheat signals | not started |
Phase 0 — what it fixes
ScriptCompiler.Compile() runs dotnet build Scripts/Scripts.csproj -c Release, prints the output, and never checks the exit code, then Assembly.LoadFrom("Scripts.dll") and returns true. Because that build passed no Platform, MSBuild defaulted to AnyCPU, and Scripts.csproj gated both OutputPath and DefineConstants on Configuration|Platform == Release|x64. So:
- the DLL landed in
Scripts/bin/Release/while the core loadsScripts.dllfrom the base directory, and TRACE;NEWTIMERS;ServUOwent undefined, so XmlSpawner compiled its non-ServUO branches.
Runtime script compilation therefore had no effect, silently. overlay/Scripts/Scripts.csproj conditions both property groups on Configuration alone.
Server.csproj is deliberately left alone: nothing under Server/ uses those symbols, and giving it OutputPath=..\ would make the boot-time build try to overwrite the running ServUO.exe.
The plugin (Phase 1)
overlay/Scripts/Custom/Bridge/:
| File | Responsibility |
|---|---|
BridgeConfig.cs |
Reads Config/Bridge.cfg in Configure(), before World.Load. |
BridgeJson.cs |
Outbound JSON by hand (Core thread, so no reflection serializer). Inbound via JavaScriptSerializer. |
BridgeLink.cs |
The socket. Link thread owns it; a bounded drop-oldest queue fronts it; a reader thread marshals inbound lines to the Core thread. |
BridgeBoot.cs |
Lifecycle, inbound dispatch, [bridge status|reload|ping]. |
BridgeEvents.cs |
EventSink subscriptions (Phase 2). Read-only, player-filtered, never emits secrets. |
BridgeSweeps.cs |
Polled streams (Phase 3): vitals, house decay on transition, economy supply. Core-thread timers. |
BridgeProfile.cs |
Read-model builders (Phase 4): full character profile, account roster. Core-thread reads. |
BridgeRequests.cs |
Inbound request handlers (Phase 4): char.request, account.roster, vendor.snapshot, with bridge.error replies. |
Emit() is called from the Core thread. It enqueues and returns — it never touches the socket, never blocks, never allocates a syscall. A wedged or absent sidecar cannot stall the shard, and that is the property everything else depends on.
Testing
tools/stub_sidecar.ps1 is a loopback listener that logs every line the shard sends. Run it, boot the shard, watch server.hello arrive. It survives a just-killed instance (SO_REUSEADDR) and won't die on a transient error.
.\tools\stub_sidecar.ps1 -Port 7788 -Log .\sidecar.log
tools/stub_sidecar_request.ps1 additionally sends inbound requests (char.request, account.roster, vendor.snapshot, plus an error case) right after the shard connects, and logs the replies — the harness used to validate Phase 4.
Note: the throwaway PowerShell sidecars are fragile — they get reaped and contend on their log file. The real Rust sidecar replaces them; don't read their flakiness as a shard problem. The shard buffers non-perishable events through any outage and reconnects on its own (observed reconnecting 5× unattended in one session).
tools/scaffolding/ holds the world seeder and the performance probe. Neither is deployed — deploy.ps1 only copies overlay/. They produced the budget in docs/PLAN.md §1. See tools/scaffolding/README.md.