T34c only fixed the bounded modal-surface offenders. Bootstrap 5.3's bg-light
and bg-white are fixed light values that do NOT flip under [data-bs-theme=dark],
so every remaining use was a dark-mode contrast break. 35 swaps across 19 files:
surface / <pre> / <code> bg-light -> bg-body-secondary
panel bg-white -> bg-body
neutral badge bg-light text-dark -> bg-secondary-subtle text-secondary-emphasis
muted badge / input group bg-light text-muted -> bg-body-secondary text-body-secondary
DELIBERATELY LEFT (7 sites): the neutral member of a status-badge switch or
ternary whose siblings are all solid, non-theme-aware colours (bg-success,
bg-danger, bg-warning) — swapping only the neutral one to a subtle token breaks
the visual weight of the set, so these stay until the whole family is retoned:
Topology.razor:513 (Current badge) and :588 (InstanceState.NotDeployed)
InstanceConfigure.razor:1520 (same InstanceState switch)
NotificationReport.razor StatusBadgeClass fallback
TransportImport.razor ConflictKind badge fallback
SecuredWrites.razor text-bg-light fallback (a text-bg-* family with no
theme-aware member at all)
Health.razor:377 depth ternary
Also untouched by design: SchemaBuilder.razor:88 (already bg-light-subtle,
theme-aware), bg-dark text-light console panels, and site.css / #reconnect-modal.
InstanceConfigure.razor is edited concurrently elsewhere; its change here is 5
pure class-string swaps on existing lines, no reflow. No test asserted any of
these classes. Also marks all four M10 residuals done in the plan doc.
TemplateEdit was the last page still hand-rolling its own modal chrome after
M10 — T34c only tokenized its backdrops. All four member-authoring forms
(Attribute, Alarm, Native Alarm Source, Script) now open through
IDialogService.ShowAsync, so the single DialogHost in MainLayout owns the
backdrop, focus trap, Escape and focus restoration.
Pattern copied from the already-migrated pages (MoveDataConnectionDialog +
Templates' Move/Rename dialogs): each body is its own component beside the page
taking a DialogContext<bool>, owning its form state, rendering validation and
server errors INLINE while staying open, and closing with Close(true) only once
the save succeeded — at which point the page reloads. An inline RenderFragment
would NOT have worked: DialogHost renders the captured fragment in its own tree,
so the page's StateHasChanged could never refresh it.
Persistence deliberately stayed on the page (it owns TemplateService, the
inherited-member rules, and the repository-direct native-source path) and is
reached through an OnSaveAsync delegate returning null on success or the message
to display. Behaviour preserved verbatim, including the List-attribute encode +
Decode round-trip check, the name/trigger-type read-only-on-edit rules, the
duplicate-native-source-name guard, and NormalizeExecutionTimeout.
TemplateScriptDialog keeps all four tab panels mounted (Monaco and the JSONJoy
island must not tear down on tab switch) and hosts the Test Run panel, which
needs the live unsaved editor buffer, so it injects ScriptAnalysisService
directly and cancels an in-flight run on dispose.
Extraction moved markup that three structural source-scanning tests pinned;
all three were repointed at the new files rather than weakened:
- TemplateNativeAlarmSourceEditorTests (+ a new test asserting the form is
host-mounted and the body renders no chrome of its own)
- AttributeListEditorTests (list-editor reveal now in the dialog body)
- TestRunWarningTests (Real I/O warning travelled with the script panel)
Build 0/0; CentralUI.Tests 973/973 green.
TreeView<TItem> handled only Enter/Space on the chevron; the tree itself was
unreachable by keyboard. Implements the WAI-ARIA tree pattern:
- Roving tabindex on li[role=treeitem] — exactly one node is tabbable, so the
whole tree is a single Tab stop. Target resolved per render: last-focused node
while still visible -> SelectedKey -> first visible node. Browser focus follows
via a per-node ElementReference + FocusAsync in OnAfterRenderAsync, guarded by
the same JSException/JSDisconnectedException/InvalidOperationException triple
the context-menu focus already used (a no-op under bUnit).
- ArrowDown/ArrowUp move between VISIBLE nodes; ArrowRight expands a collapsed
branch else moves to first child; ArrowLeft collapses an expanded branch else
moves to parent; Home/End jump to first/last; Enter/Space activate through the
SAME path a click takes (OnContentClick / OnCheckboxToggle) so selection
semantics never diverge between input modes.
- ARIA: aria-level, aria-posinset, aria-setsize added; aria-selected now renders
true/false on selectable+checkbox trees and stays absent on non-selectable ones.
- Event scoping: @onkeydown:stopPropagation on the li, chevron, checkbox and
content slot, so nested nodes do not double-handle and consumer controls inside
NodeContent keep their own key handling. Browser scroll-on-Space/Arrow is
suppressed by a minimal NATIVE inline onkeydown on the root ul, targeted at
treeitems only — Blazor's preventDefault directive is all-or-nothing per
element, so on the li it would trap Tab and cancel Enter/Space on consumer
buttons. No CSP is configured, so the inline handler runs.
BuildVisibleNodes() mirrors RenderNode's visibility rules and must stay in step.
Tests: 31 new bUnit tests in TreeViewKeyboardNavigationTests; the 47 existing
TreeView tests are unchanged and still green. Docs: new keyboard/a11y section in
docs/components/TreeView.md.
M5.4 T4 threaded a `parentExecutionId` parameter through
AlarmActor.SpawnAlarmExecution → AlarmExecutionActor → ScriptRuntimeContext,
but every call site passed null — so alarm on-trigger runs were silently always
execution-tree roots, contradicting the "tag-cascade coverage is complete"
claim in CLAUDE.md and Component-AuditLog.md.
Source the id where a spawner genuinely exists: a static attribute write issued
by a site script (`Instance.SetAttribute`) or by an inbound API request
(`Route.To(...).SetAttributes(...)`, whose ParentExecutionId was already carried
to the site and then dropped). The id rides site-locally through three additive,
nullable fields — no wire, proto or central schema change:
ScriptRuntimeContext.SetAttribute / RouteToSetAttributesRequest.ParentExecutionId
→ SetStaticAttributeCommand.SourceExecutionId
→ AttributeValueChanged.SourceExecutionId (InstanceActor static-write path)
→ AlarmActor.SpawnAlarmExecution → AlarmExecutionActor → ScriptRuntimeContext
All four computed trigger types participate. Expression triggers evaluate off
the dispatcher, so the writer of the newest value folded into the snapshot is
captured *with* the snapshot and echoed home on ExpressionEvalResult /
ExpressionEvalFailed — a change arriving mid-flight cannot mis-attribute the
raise.
Deliberately still roots (documented, not deferred): alarms fired by Data
Connection Layer values (external device data has no spawning execution — this
includes the device echo of a script write to a *data-sourced* attribute, so
only static writes cascade), and ScriptActor value-change/conditional/
expression/timer trigger runs (a timer tick has no spawner; a WhileTrue/interval
run has no single identifiable write).
Tests: new SiteRuntime.Tests/Actors/AlarmCascadeParentExecutionTests pins all
three hops — SetAttribute stamps the run's ExecutionId, InstanceActor publishes
it on the change (and publishes null when absent), and ValueMatch/HiLo/
Expression alarms parent the on-trigger run to the writer while a DCL-originated
change leaves it a root.
Docs: CLAUDE.md and Component-AuditLog.md corrected from "complete" to the true
behaviour; Component-SiteRuntime.md gains an "Audit correlation of an on-trigger
run" section with the hop table and the by-design root cases.
Two verified-absent parity gaps between the service layer and the CLI /
ManagementActor command surface, both left as follow-ups by the 2026-05-11
design plans.
(1) area move. AreaService.MoveAreaAsync had existed since the deployment
topology page shipped but was reachable only from the Blazor UI. Adds
MoveAreaCommand(AreaId, NewParentAreaId?) to Commons, a ManagementActor
dispatch arm delegating straight to AreaService.MoveAreaAsync (not-found /
self-parent / descendant-cycle / cross-site / name-collision all surface as
the standard curated ManagementCommandException failure response; the service
writes its own "Move" audit row), and the CLI verb `site area move --id
[--parent-id]`. Omitting --parent-id moves the area to the site root, matching
the command's nullable NewParentAreaId. The command carries the SAME any-of
[Designer, Deployer] gate as CreateArea/UpdateArea/DeleteArea (arch-review C6):
re-parenting is the same structural authoring act, exposed on the same two
surfaces. Placed under the existing `site area` group rather than a new
top-level `area` group, alongside its create/update/delete siblings.
(2) template folder verbs. The five folder management commands have been
handled by ManagementActor since the folder-hierarchy plan, but the promised
CLI surface was never written. Adds `template folder
list|create|rename|move|reorder|delete` mapping 1:1 onto ListTemplateFolders /
CreateTemplateFolder / RenameTemplateFolder / MoveTemplateFolder /
ReorderTemplateFolder / DeleteTemplateFolder. --parent-id is omitted to target
the tree root; --direction takes the lowercase literals up/down, validated at
parse time by AcceptOnlyFromAmong (same case-sensitive contract as the audit
--channel/--kind/--status options).
Follow-on updates: the frozen authorization matrix gains its MoveArea entry
(reflection-driven, so a missing entry would have failed CI); CommandTreeTests
pins both new verb sets plus the omit-parent-id-means-root parse behaviour and
registry round-trips; ManagementActorTests covers the MoveArea role gate and
the delegate-to-service success/root/cycle/not-found paths; the CLI README and
Component-ManagementService.md document the new surface (the latter also gained
the previously-undocumented ReorderTemplateFolder); both plan docs' follow-up
lines are marked done.
The Native Alarm Source Overrides card had no bulk affordance — the CSV path
shipped CLI-only (instance native-alarm-source import --file), so the UI could
only retarget one source at a time inline.
Adds a second InputFile on that card, mirroring the attribute importer's UX
(hidden input behind a button-styled label, 512 KB cap, success/error alert
with the per-line error list, toast). Parsing reuses the SHARED
NativeAlarmSourceOverrideCsvParser — the exact parser the CLI uses — and the
new pure InstanceConfigure.BuildNativeAlarmSourceCsvImport applies the same
batch rules the server enforces in
ManagementActor.HandleSetInstanceNativeAlarmSourceOverrides: the source must
resolve, must not be template-locked, and may appear at most once; any error
rejects the whole file and applies nothing.
Semantics match the CLI: merge, not full replace — sources absent from the
file keep their existing override, a blank field keeps the inherited value,
and an all-blank row clears that source's override (equivalent to the CLI's
all-null override row, without leaving a dead row behind).
Persistence reuses the inline editor's path: SaveNativeOverride's upsert body
is extracted to UpsertNativeOverrideCore (no SaveChangesAsync inside), so the
import commits the validated batch in one SaveChangesAsync — no new server
method, no duplicated parsing.
Tests: InstanceConfigureNativeAlarmCsvImportTests (9) — happy path, blank-field
inheritance, all-blank clear, merge semantics, unknown/locked/duplicate source
and parser-error rejection, plus structural pins on the InputFile wiring.
Docs: Component-CentralUI.md native-alarm-source card gains the import bullet.
Adds rows 23-26 to the deferred-work register: live LDAP group-membership
re-query (blocked on ZB.MOM.WW.Auth.Ldap gaining a passwordless group
search), M8 large-bundle perf hardening (logged in the M9 completion design,
never given a plan or perf test), the Phase-8 WP-4 target-scale load test
(claimed complete by a 107-byte checklist stub with no evidence), and the
Ipsen MES MoveIn tail (-LT routing, PLC-output flags, Z28062 data).
Splits the review-08 "Failover-timing + broader perf envelope" row: the
failover-timing half is resolved by FailoverTimingTests, now a live [Fact]
on TwoNodeClusterFixture at production timings (PLAN-R2-01 T4); the S&F
drain-rate + per-subscriber backpressure half stays open as its own row.
Moves the closed folder drag-drop row (18, [PERM]) out of Deferred into the
Resolved table per the register's own rule.
The artifact apply (DeploymentManagerActor.HandleDeployArtifacts) was
upsert-only, so deleting an external system (or shared script, DB connection,
data connection) centrally never removed the site's SQLite row — a deleted
external system stayed callable from site scripts forever. Central always
ships the COMPLETE set of each artifact class (ArtifactDeploymentService
GetAll* snapshots; the wire's presence-tracking wrapper lists preserve
null-vs-empty), so the site now applies upsert-then-reconcile: after storing
the incoming set, SiteStorageService.DeleteRowsExceptAsync removes any stored
row absent from it, per artifact table. A null list still means 'field not
shipped' and touches nothing.
Runtime cleanup rides along: a reconciled-away shared script is unregistered
from the compiled SharedScriptLibrary (a stale delegate would stay callable
until restart), and a removed data connection is evicted from the DCL hash
cache and its live connection actor stopped via the previously-caller-less
RemoveConnectionCommand — both on the actor thread via the extended
ApplyArtifactDataConnectionsToDcl message. All four tables are
RegisterReplicated, so the deletes reach the standby as ordinary CDC row
tombstones.
Tests: storage-level reconcile per table (incl. empty-set-deletes-all and
idempotency) in ArtifactStorageTests; actor-level pins in
DeploymentManagerActorTests (orphan delete, null-set no-op, library
unregistration, DCL stop for the removed connection only). Docs:
Component-DeploymentManager + Component-SiteRuntime record the
full-set/reconcile semantics.
Design review 2026-08-01: (1) MES relevance = dedicated severity band 900-999
(script constants, real IsFlaggedForMES predicate); (2) MESReceiver version
DROPPED — CvdReactor is the only implementation, router returns a clean
not-supported error elsewhere; (3) Description = Message else AlarmTypeName;
(4) enrich the native mirror NOW with an additive AckTime (proto +
native_alarm_state + DCL stamping); (5) script names match the endpoints;
(6) shared ReactorAlarms on both sides, suffix behavior as planned;
(7) existing MES API key, no new roles. Plan is now ready to execute.
'Pattern 4: Integration Routing' — RouteIntegrationCallAsync →
SiteEnvelope(IntegrationCallRequest) → SiteCommunicationActor integration
handler — was plumbed end to end but connected at neither end: no
producer (zero callers) and no handler (AkkaHostedService never
registered LocalHandlerType.Integration). It was an early scaffold the
architecture routed around — the brokered External→Central→Site→Central
round-trip is served by the Inbound API's routed-site-script path (the
RouteTo* verbs, driven from CommunicationServiceInstanceRouter), which is
live, tested, and shares IntegrationTimeout.
Decision (#32): delete. Removed the IntegrationCall{Request,Response}
messages, RouteIntegrationCallAsync, the SiteCommunicationActor receive
block + _integrationHandler field + LocalHandlerType.Integration, and the
four tests that covered them (2 actor, 2 message-contract, 1 dispatcher-
reject, 1 mapper-reject). KEPT IntegrationTimeout — it is the live
timeout for the RouteTo* verbs. Updated the exclusion-narrative comments
(proto/mapper/dispatcher), design §4, the components doc timeout table,
and marked the known-issue RESOLVED.
Full solution build clean (0/0); Communication 634 + Host 421 green.
Net -172/+20 across 14 files. Not in the gRPC proto (was deliberately
excluded there), so no wire-format change.
Rebuilt scadabridge:latest from main @ 8524a7f7 and recreated only the
env2 containers. All three gate checks pass on site-x:
1. both site nodes boot with the key (StartupValidator fail-closed →
reaching 'Application started' proves the key present);
2. control-plane PSK auth: no-header / wrong-key ⇒ PermissionDenied,
correct key ⇒ success, on both nodes (:9123, :9124);
3. LocalDb unaffected (local-only; 0 errors, healthy boot).
Bonus: central registers site-x online via gRPC heartbeat; no real
ClusterClient/receptionist (only the benign ClusterClientSiteAuditClient
label, same as the primary rig). Noted a seed-data gap (ScadaBridgeConfig2
dbo.Sites is empty) — orthogonal to the transport.
ClusterClient→gRPC migration Phase 4 (docs/plans/2026-07-22-clusterclient-to-grpc-plan.md).
Phases 2/3 proved both directions on gRPC; this removes the Akka transport underneath.
Deleted:
- AkkaCentralTransport, AkkaSiteTransport (+ their dedicated tests)
- ISiteClientFactory + DefaultSiteClientFactory; CentralCommunicationActor legacy
ctor + SelectTransport (Host now builds GrpcSiteTransport and injects it)
- ClusterClient creation + both ClusterClientReceptionist.RegisterService calls in
AkkaHostedService; the RegisterCentralClient message + receive block
- CommunicationOptions.CentralContactPoints; the CentralTransport/SiteTransport
coexistence flags; the CentralTransportMode/SiteTransportKind enums
gRPC is now the only site↔central transport (site→central CentralControlService via
GrpcCentralTransport; central→site SiteCommandService via GrpcSiteTransport), both
built unconditionally by the Host. NoOpCentralTransport is the fail-loud null-default
so TestKit command-dispatch suites still construct the site actor without a wired
transport; production always injects GrpcCentralTransport.
Config: CentralGrpcEndpoints is now unconditional — CommunicationOptionsValidator
rejects blank entries (role-agnostic), and StartupValidator requires a Site node to
list >=1 endpoint (fail-fast, mirrors GrpcPsk). Rig configs moved
CentralContactPoints -> CentralGrpcEndpoints (docker x6, docker-env2 x2, Host default,
deploy/wonder-app-vd03). Kept Akka.Cluster.Tools (ClusterSingleton still used).
Tests: build 0/0; Communication.Tests 640, Host.Tests 421 green. Removed the
ClusterClient.Send per-site-routing tests (covered by the transport suites), swapped
the ISiteClientFactory-based ctors to a substitute ISiteCommandTransport, converted
the audit-push integration relay to an in-process bridge transport.
Docs: Component-Communication/Host/StoreAndForward, components/Communication,
topology-guide, grpc_streams (SUPERSEDED note), the frame-size known-issue (retired
amendment), and CLAUDE.md transport decisions.
Not included: the dead IntegrationCallRequest path (#32) is a separate user-owned
behavioral decision — SiteEnvelope routing is transport-agnostic so it still compiles.
Central flipped to SiteTransport=Grpc (both nodes, central-wide flag), sites
kept on gRPC from Phase 2 → both directions on gRPC at once. Central logs
'central→site command transport: gRPC (SiteCommandService)'; 0 ClusterClient-to-
site on either central.
Command matrix over SiteCommandService (all 200):
- ExecuteQuery (event-log) + ExecuteParked (parked) — all 3 sites
- ExecuteLifecycle disable/enable #95 on site-a — NEW live coverage vs 1B/P2
(SoakNotify instances survived the recreate as Enabled)
Resilience:
- hard-kill the ACTIVE site-a node mid-query-loop → in-flight call returned
TIMEOUT at exactly the 30s QueryTimeout deadline (bounded, no hang; deadline≠
retry — an in-flight call can't be safely re-sent)
- next + all subsequent queries recovered automatically via site-a-b
(SitePairChannelProvider NodeA→NodeB); site→central S&F never stopped
(notif 619→715, still no dupes)
- 0 PermissionDenied across all 8 nodes
ExecuteOpcUa/ExecuteRoute/TriggerFailover deferred (no OPC-bound instance / no
CLI verb; unit-proven). Rig left both-gRPC; git reverted to Akka default.
All 6 site nodes flipped to CentralTransport=Grpc; whole control plane
(heartbeat/health/notification S&F/audit) rides gRPC CentralControlService,
196 RPCs/90s 0 non-200, 0 PermissionDenied, 0 health-sequence regressions.
Soak driven by a live SoakNotify workload (3 instances, 3 notifs/5s):
- single-node active-kill (central-a): sticky failover central-a:8083→b:8083
logged instantly, central-b active in 29s, buffer drained 72→101, every 5s
bucket = exactly 3 through the gap, 101==101 distinct
- failback: central-a rejoined ready ~5s as standby, central-b kept active
(oldest-Up, no flap), traffic uninterrupted
- full outage (both central down ~59s): count frozen, cold re-form central-b
active ~14s, ~42 buffered drained, every 5s bucket = exactly 3 across the
whole dead window, 216==216 distinct — zero loss, zero dupes
Also previews Phase 5 checks 4 (failover/failback) and 5 (mid-drain kill).
Rig config reverted to Akka default (defaults stay Akka until Phase 4).
Refactor SiteCommunicationActor's central→site routing table into one
SiteCommandDispatcher — the single routing truth for the 28 migrated commands
(IntegrationCallRequest, the dead 29th, stays on the actor and out of the
dispatcher). The Akka actor and the new SiteCommandGrpcService both route through
one dispatcher instance so the two transports can never drift on where a command
goes. Server-side only: nothing central flips to gRPC yet (that is T1B.3);
ClusterClient remains the live path.
Decisions worth recording:
- Targets preserved byte-for-byte. Lifecycle/OPC UA/query/route → the Deployment
Manager singleton proxy; DeployArtifacts/EventLog/parked → their null-guarded
handlers with the exact same "handler not available" replies; the parked
handler stays NODE-LOCAL (per-node replicated-store owner), never the singleton
proxy — pinned by a dispatcher test that asserts the target is the parked probe
and NOT the dm proxy.
- Sender preservation intact. The actor's command handlers became thin
DispatchCommand delegations that still Forward (central Ask → reply routes
straight back); the existing SiteCommunicationActorTests pass unchanged, which
is the regression guard for that plumbing. UnsubscribeDebugView keeps its
fire-and-forget shape: the actor Forwards, the gRPC service Tells + returns the
synthetic UnsubscribeDebugViewAck so a unary RPC still answers.
- Ack-before-Leave on failover. The dispatcher's PrepareFailover resolves the
standby with a DRY-RUN (no leave) to build the ack, and hands back a deferred
CommitLeave; the gRPC service returns the ack, then schedules the real
Cluster.Leave — so a caller reaching the very node about to leave still gets its
ack instead of a broken stream. The actor path keeps today's coupled
resolve-and-leave (over ClusterClient the ack Tell only enqueues, so order is
immaterial). Proven at both levels: a dispatcher test asserts the ack is built
before CommitLeave runs, and a TestServer test asserts the recorded seam order
is resolve-then-leave.
- ControlPlaneAuthInterceptor gates SiteCommandService by EXTENDING
DefaultGatedPrefixes (descriptor-derived), not by adding a constructor — the
one-public-ctor invariant and its test stay green.
Tests: SiteCommandDispatcherTests (28-command routing incl. parked node-locality
and both failover paths) and SiteCommandGrpcService TestServer tests (auth,
readiness→Unavailable, one command per oneof group, failover ordering). Full
solution build 0/0; Communication.Tests 574 and Host.Tests 377 green. No active
<Protobuf> item.
Phase 1B's contract slice: the wire shape and the canonical translation for the
28 central→site commands that leave ClusterClient. No behaviour changes yet —
SiteCommunicationActor and CentralCommunicationActor are untouched; the
dispatcher refactor (T1B.2) and the central transport seam (T1B.3) consume this.
Protos/site_command.proto (package scadabridge.sitecommand.v1, service
SiteCommandService): six domain RPCs, each with a `oneof` request/reply
envelope. The grouping is what carries deadline policy — every command inside a
group shares a CommunicationOptions timeout class today, so one RPC per group
keeps the deadline choice in one place on the client and one dispatch switch on
the server, while the oneof keeps each command individually typed:
ExecuteLifecycle(6) · ExecuteOpcUa(8) · ExecuteQuery(4) · ExecuteParked(5) ·
ExecuteRoute(4) · TriggerFailover(1). IntegrationCallRequest — the 29th entry on
SiteCommunicationActor's receive table — is deliberately excluded as dead code
(2026-07-22-integration-call-routing-is-dead-code.md).
Contract decisions worth knowing:
- Nullable COLLECTIONS ride in per-collection wrapper messages
(DeployArtifactsCommand's six artifact lists, CertTrustResult.Certs,
RouteToCallRequest.Parameters). proto3 repeated/map collapses null into empty,
and that distinction is live at the site — the same silent-data-loss class the
transport round-trip guard exposed in PLAN-05 T8. Goldens cover null, empty
and populated for each.
- Nullable strings use the empty-string-means-null convention already set by
AuditEventDtoMapper, with ONE exception: RouteToWaitForAttributeRequest's
TargetValueEncoded, where "wait for the empty string" is a real target, so it
carries a StringValue wrapper. Both behaviours are asserted, not assumed.
- Nullable enums ride in one-field messages (proto3 enums have no presence and
no stock wrapper). Enum translation is an explicit switch in both directions —
never by ordinal — so reordering a C# enum cannot re-map the wire; every wire
enum reserves 0 for _UNSPECIFIED and decodes to a documented safe default
rather than faulting a command from a version-skewed peer.
- New LooseValueCodec carries the surviving `object?` members (script params and
return values, attribute values, tag read/write values) as a type-tagged union
so a boxed value keeps its runtime CLR type, as it does today under Akka's
type-preserving JSON serializer. Dates ride as invariant round-trip strings,
not Timestamp, which would silently normalise away DateTime.Kind and
DateTimeOffset.Offset. Lists/maps recurse; anything outside the tagged set
falls back to JSON and is documented as CLR-type-lossy.
- DebugViewSnapshot gets its own full-fidelity alarm/attribute messages rather
than reusing sitestream's AlarmStateUpdate, which flattens values to display
strings — right for a live stream, lossy for a snapshot the UI treats as
authoritative. The encoder omits an AlarmStateChanged.Condition that already
equals the record's derived default, so computed alarms round-trip exactly
(record equality compares the nullable backing field, not the property).
Tests are reflection-driven so the coverage cannot drift: the round-trip theory
enumerates the mapper's own ToProto overloads, the envelope guards enumerate the
generated oneof descriptors, and a missing golden fails the build. 216 new tests
green (Communication 532 total, Commons 684 total, solution build 0/0).
Codegen is checked in under SiteCommandGrpc/ per the sitestream recipe; the
<Protobuf> ItemGroup stays commented out (an active one segfaults protoc in the
linux_arm64 Docker image). docker/regen-proto.sh now handles every proto in that
ItemGroup instead of just sitestream, and re-comments idempotently.
Phase 0's gate doc now carries the full suite picture, not just the rig checks.
Playwright: 170 pass / 2 fail / 1 skip of 173. Both failures were run down to
root cause and both are pre-existing on main, unrelated to this branch (which
touches no EF, CentralUI, Transport or ManagementService file):
- TransportImportTests is a REAL production bug: BundleImporter.cs:1298 opens a
user-initiated transaction while the central context has EnableRetryOnFailure,
so SqlServerRetryingExecutionStrategy refuses the split query inside it and
bundle import fails against real MS SQL. The unit/integration suite cannot see
it -- the in-memory EF provider has no retrying strategy and BeginTransaction
is a no-op there.
- SmsNotificationE2ETests is a stale fixture: SID 'ACtest123' (2026-06-19) vs the
^AC[0-9a-fA-F]{32}$ guard added 2026-07-10 (40088a21). Failing since then, which
has also silenced everything after the toast assertion -- including the
secret-non-leak check on the Auth Token.
Also records that the earlier 44-failure run is void: a concurrent deploy.sh was
recreating the cluster underneath it.
Neither is fixed here; both are out of scope for a PSK-auth branch.
The gate's first run failed on a defect the green suite could not see: two public
constructors on ControlPlaneAuthInterceptor made Grpc.AspNetCore's activation
throw per call, so correct key, wrong key and no key all produced identical
errors. Recorded in full because the symptom (Unknown / "Exception was thrown by
handler") points at the handler, not at auth, and because phases 1A/1B both add
services to this same interceptor — they must extend DefaultGatedPrefixes rather
than add a second public constructor.
Also records what the gate does NOT cover: live streaming under load, key
rotation on a running pair, and docker-env2 (keyed but neither redeployed nor
gated).
Phase 0 of the ClusterClient→gRPC migration
(docs/plans/2026-07-22-clusterclient-to-grpc-plan.md). Standalone hardening: it
closes a gap that exists today and is a precondition for moving command/control
onto gRPC in later phases.
T0.1 — delete the ManagementActor ClusterClientReceptionist registration.
It was built for an out-of-cluster CLI that was never written: the shipped CLI
speaks HTTP Basic to /management, which asks the actor in-process through
ManagementActorHolder. Nothing in the repo ever sent to /user/management. The
actor still runs there; only the cross-boundary advertisement is gone. Six
documents claimed the CLI used ClusterClient — including the CLI's own README
"Architecture Notes" — and are corrected here rather than left to rot.
T0.2 — record, do not port, the dead integration-routing path.
IntegrationCallRequest is unwired at BOTH ends: RouteIntegrationCallAsync has
zero callers anywhere, and RegisterLocalHandler(Integration, …) appears only in
a test, so production always answers "Integration handler not available". It is
excluded from the gRPC contract (28 of 29 commands migrate) rather than
enshrined on an additive-only wire format, and deleting it during a
transport migration would mix a behavioural change into a change whose whole
value is that behaviour is identical. See
docs/known-issues/2026-07-22-integration-call-routing-is-dead-code.md.
T0.3 — preshared-key authentication on SiteStreamService.
The service shipped with no auth at all: plaintext h2c, no interceptor, so
anything that could reach a site node's :8083 could open a live data stream or
read audit rows back via PullAuditEvents/PullSiteCalls. ControlPlaneAuthInterceptor
now gates /sitestream.SiteStreamService/ — modeled on LocalDbSyncAuthInterceptor
(constant-time compare, fail-closed, PermissionDenied) but gating a SET of
service prefixes so phases 1A/1B add services rather than interceptors. LocalDb
sync keeps its own separate key: it authenticates the pair partner, not central,
and collapsing the two would make a site's central-facing key also admit writes
into its database.
Keys are per site (SB-GRPC-PSK-<siteId>), never fleet-wide, so a compromised
site yields only its own. Central attaches them through ControlPlaneCredentials,
which binds CallCredentials to the channel — covering unary and streaming
uniformly, and letting the key resolve asynchronously, which a client
interceptor could not do without blocking. All three central→site channel
creation sites go through it (SiteStreamGrpcClient and both audit pull invokers);
the pull invokers' channel caches are re-keyed by (site, endpoint) because
credentials are per-site and bound to the channel.
Two decisions beyond the plan:
* StartupValidator now requires GrpcPsk on Site nodes. The plan specified only
the runtime gate, but fail-closed with no boot check produces a node that
joins, answers heartbeats and reports healthy while refusing every stream,
audit pull and telemetry ingest — silent and total. Same reasoning as the
existing inbound API-key pepper rule.
* Added Communication:SitePsks as a central-side key map. The plan assumed
central would read the store, seeded via a dev KEK; the docker rig
deliberately boots with no master key, so store-only resolution would leave
it unable to dial its own sites. The store stays primary — it is the only
source that can serve a site added at runtime — with the map covering
key-less hosts and one-off pins. Neither source falling back to
"unauthenticated" is the invariant.
T0.4 — dev keys on both rigs and tests.
34 tests. The seven that matter most exercise a real in-process gRPC stack over
TestServer: the unit tests on either side of the wire would both stay green if
the halves disagreed, and gRPC refuses call credentials on a plaintext channel
by default — the UnsafeUseInsecureChannelCallCredentials opt-in is only provable
by making a real call. They confirm correct key passes on unary AND streaming,
wrong key and no-credentials both get PermissionDenied, and an unresolvable key
fails the call with nothing reaching the service.
OPERATIONAL: a site node upgraded to this build without a key will not boot.
That includes the gitignored deploy/wonder-app-vd03/ overlay.
CentralFailoverControl lives in Components/Health/ (matching AuditKpiTiles /
SiteCallKpiTiles) rather than inline in Health.razor, so it is testable without
standing up the whole dashboard's DI graph.
- Admin-gated via AuthorizeView + RequireAdmin. The Health page itself is
intentionally all-roles, so the gate belongs on the control, not the page.
- Disabled with an explanatory title when the pair has no online standby;
the authoritative guard remains server-side against live cluster membership.
- Confirmation dialog (IDialogService, the page idiom) warns that singletons
hand over, in-flight work on the active node is interrupted, and THIS PAGE
will disconnect and reconnect against the new active node -- Traefik routes
the UI to the node being restarted, so a working failover otherwise reads as
a crash the admin caused.
- A refused failover (service returns null) surfaces the refusal; the UI never
reports a failover that did not happen.
7 bUnit tests. Two harness requirements that bit first: AuthorizeView needs a
cascading AuthenticationState (the app supplies it from the layout), and
BunitContext pre-registers a placeholder IAuthorizationService that throws on
policy evaluation -- both handled the same way NavMenuTests documents.
Runbook paragraphs added to Component-ClusterInfrastructure.md (new Manual
Failover section) and docker/README.md.
Every node now lists ITSELF as seed-nodes[0] and its partner second. Akka runs
FirstSeedNodeProcess -- the only bootstrap path that can form a NEW cluster when
no peer answers InitJoin -- exclusively for seed-nodes[0]; every other node runs
JoinSeedNodeProcess and retries InitJoin forever. That is why a lone cold-starting
central-b never came Up (the "registered outage gap"), and self-first ordering
closes it using Akka's own protocol.
- 6 node appsettings swapped (the *-node-b configs; the -a nodes were already
self-first). All 14 shipped node configs now satisfy the invariant.
- StartupValidator enforces it at boot, comparing host AND port -- the invariant
fails silently when broken, so it is enforced loudly. NOTE: the gitignored
deploy/wonder-app-vd03/ overlay must be reordered before its next deploy or
that node will refuse to boot.
- SelfFirstSeedBootstrapTests: real in-process clusters at production
failure-detection timings, incl. a falsifiability control proving the OLD
peer-first ordering never forms.
Rejected alternative (implemented, measured, discarded): an external self-form
timer calling Cluster.Join(SelfAddress) after a window. It sits outside Akka's
join handshake and so cannot tell "no seed answered" from "a seed answered and
the join is in flight". On a routine standby restart the peer is alive but the
join stalls behind removal of the node's own stale incarnation; a Join(self)
during TryingToJoin abandons the in-flight join and forms a second cluster at
the same address -- still split after 90s. Docs that claimed self-first ordering
was unsafe for simultaneous cold start are corrected: while mutually reachable
the InitJoin handshake converges them to one cluster (measured).
CLAUDE.md was corrected in 34227991 but the component docs were not, so the
same understatements — plus several outright wrong statements — survived where
a reader is most likely to meet them.
ClusterInfrastructure.md carried the worst of it. It described active/standby as
cluster leadership and showed an IsActiveNode snippet doing
`cluster.State.Leader == self.Address`. No such code exists: ActiveNodeGate
returns ClusterActivityEvaluator.SelfIsOldest, and ActiveNodeEvaluator's own doc
comment says "never cluster.State.Leader". A second snippet (siteCallAuditShutdown
.AddTask) described a hand-rolled drain that has since been folded into
SingletonRegistrar.Start. Both snippets are replaced with what the code does. The
central singleton table listed 3 of the 7 registered singletons. The downing
section still described keep-oldest as the strategy and omitted
downing-provider-class entirely; it now shows the branching block cf3bd52f
introduced, with the accepted dual-active trade stated rather than the old
"impossible to boot" framing. Note the requirements-side spec,
docs/requirements/Component-ClusterInfrastructure.md, was already rewritten by
cf3bd52f — this is the components-side doc, which was untouched.
Communication.md described two transports; there are three — the deployment
config fetch over HTTP was missing. Each row now names which side dials, because
the gRPC entry gave a data direction (site to central) without saying who hosts
the server, which reads as the opposite of the truth: the only MapGrpcService in
the tree is in Program.cs's Site branch, and central dials in. The SiteEnvelope
snippet called DeployInstanceAsync, which is not a member of CommunicationService;
the heartbeat bullet claimed a cluster-leadership check; the proto summary listed
4 of 6 RPCs.
DeploymentManager.md still said the pipeline sends DeployInstanceCommand carrying
FlattenedConfigurationJson. It stages a PendingDeployment and sends a
RefreshDeploymentCommand; the config travels over the HTTP fetch. That is the
change the 128 KB frame-size issue forced, and the doc predated it.
Two of the five briefed drifts turned out not to be errors: nothing claimed the
transports were authenticated, and nothing asserted per-site ActorSystem names —
both were simply unstated. They are now stated, since silence about an
unauthenticated boundary is its own problem.
Docs only; no code changed.
Claude-Session: https://claude.ai/code/session_01GASWkNEi68FSCtvr6rLoEW