Retail-lens review of chunk 6 (no blocking finding). Fixed:
- a cell that gets two object-list turns in one frame (a chamber reached
through two portals) submitted its emitters twice; retail's particle parts
sit in the same shadow_part_list as every other part and CPhysicsPart::Draw's
frame stamp suppresses the second draw, so the walk now dedupes the particle
turn with the same frame-scoped set that dedupes the cell shell;
- every visited land cell paid the full per-cell draw setup even with no
emitter; DrawForCell now returns after the cell lookup, retail's own cost
(DrawPartCell 0x005a07a0 `num_shadow_parts > 0`);
- CopyRenderableEmittersInCell maintains LastRenderScopeEmitterVisitCount;
- the OutdoorSceneParticleEntityIds / outdoorOwnerIds stub chain (permanently
empty, never read) is deleted through IWorldSceneRenderer,
WorldScenePViewRenderer, IWorldScenePasses and the composition root;
- AD-117 item 4 names the two behavioral residuals (owner-cell substitution;
no per-emission AddPartToShadowCells);
- ParticleHookSinkTests pins that an emitter's draw cell is its owner's pose
cell and survives the projection-visibility switch across the per-frame
view pass.
Gates: Core 4,988/4,988 (Vfx 108/108), App hermetic 6,760/6,760, Runtime
1,884/1,884.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Owner G2 finding: the purple cloud around an arriving character no longer
drew. The server keeps the player Hidden until acdream sends LoginComplete at
reveal completion (retail-correct); the Hidden-state script's emitters spawn
in the arrival cell and are view-eligible when the world appears, but the
walk drew an owner's emitters only through the owner's registry rows, and a
hidden owner's shadow is suspended. Retail's
CPhysicsObj::add_particle_shadow_to_cell (0x00514a70) gives an emitter one
shadow in its OWN current cell, drawn at that cell's turn regardless of the
parent's hidden state (add_shadows_to_cells 0x00514aed skips the flood for
state & 0x1000).
Port: ParticleSystem keeps a per-pass cell -> renderable-handles index
(maintained at every renderable/OwnerCellId change) and
CopyRenderableEmittersInCell; ParticleRenderer.DrawForCell; the walk draws
particles BY CELL at the existing turns (interior CellParticles, landscape
LandscapeCellParticles), the events fire for every visited cell, and every
owner-union particle path is deleted (UnionOwners/UnionNewOwners for
particles, the outdoor drawn-owner dedupe, the executor's owner
classification sets, the context ParticleOwnerIds members). The post-replay
per-cell pass double-submitted the root flood's emitters and is deleted: an
emitter draws once, at its cell's replay turn. AD-117 item 4 becomes a port
note (the index lives in the particle system; an emitter is not a physics
object in acdream). The temporary [pes-spawn]/[pes-vis] traces are removed
and the ACDREAM_DUMP_PLAYSCRIPT row restored.
Verified: timed arrival route logs/selfgate-20260903-062522-haze-chunk6,
frame h02-arrive-400ms shows the cloud at the character in Facility Hub.
Gates (Release): Core 4,987/4,987; Content 214/214; Runtime 1,884/1,884; App
hermetic lane 6,760/6,760; App InstalledDat 217 pass / 2 pre-existing #383.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
CObjCell::find_cell_list (0x0052b4e0) with num_sphere == 0 adds only the
current cell — interior CELLARRAY::add_cell at 0x0052b563, outdoor
CLandCell::add_all_outside_cells (0x00533630, the arg2 <= 0 branch:
adjust_to_outside + gid_to_lcoord + add_outside_cell) — and skips the
portal transit walk (`arg4 != 0 && arg2 != 0` at 0x0052b576). So a shapeless
object's transition cell array is its destination cell alone, exactly what
RefreshPositionRows publishes. Not an adaptation; the register row keeps
its three residual readings, the S3 packet drops the capture request, and
the registry/test comments cite the verified function.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Chunk 5 (consumer cutover): WalkProductionWorldData's per-cell views are
borrowed from ShadowObjectRegistry.GetRetailPartEntriesInCell and resolved
through RenderSceneQuery.TryGetByLocalEntityId; every render-side sweep,
bucket, parent-cell and root-position fallback is deleted (AD-116 for the
one-frame registry→scene window, counted in UnregisteredRenderMembershipCount).
A live entity with visual parts but no collision geometry registers
render-only (LiveEntityCollisionBuilder computes the part array before the
empty-shapes gate).
Closeout fixes found while landing it:
- RefloodOwnerForLandblock forwards the retained part array — a reflood is
retail's recalc_cross_cells over the SAME CPartArray; without it every owner
touched by a landblock replacement commit lost its render membership.
- Non-colliding DAT statics register render-only from BOTH publishers
(LandblockPhysicsPublisher.PublishStaticEntity,
LandblockPhysicsContentBuilder.RegisterRenderOnlyStatic). The G2 self-gate
pixel diff caught them vanishing (Facility Hub wall panels): retail floods
every object regardless of collision (CEnvCell::init_static_objects
0x0052c350, add_shadows_to_cells 0x00514ae0).
- S2 dual review fix batch (arch + retail lens, lead-verified):
Suspend clears the retail product (remove_shadows_from_cells 0x00511230 is
one transaction); AttachChild/DetachChild advance the mutation revision so
a prepared SetPosition cannot clobber a child's rows; an attached child
never floods on its own re-registration; RemoveLandblock and the non-rooted
RetireOwnerFromLandblock prune retail rows (render-only statics end with
their landblock); a render-only owner's no-cell-array commit republishes at
its destination cell (AD-117); an empty non-null part array is treated as
null; per-move closures/LINQ replaced by index loops; EnvCell shells stay
out of the scene's LocalEntityId index (payload-less records); the index
predicate compares the id; the dead per-cell scene indices are deleted.
Register: AD-116 (chunk 5), AD-117 (four residual Contract A/B readings).
Evidence: s2-membership-ownership-map.md §8 (chunk 5) and §9 (closeout).
Gates (Release): Core 4,984/4,984; Content 214/214; Runtime 1,884/1,884;
App hermetic lane 6,760/6,760; App InstalledDat lane 217 pass / 1 skip /
2 pre-existing #383 layout-fixture failures; App Windows lane 1/1.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Movement: CommitSetPosition's RefreshPositionRows/ReplacePositionRows and
the staged apply publish the retail render product from the exact cell
list collision just used, the transition's cell_array retail feeds
add_shadows_to_cells in CPhysicsObj::SetPositionInternal @0x00515330
(pseudo-C 283526-283539); the separate move-path bbox recompute is deleted.
calc_cross_cells @0x00515230 stays the distinct full-recompute path
(PhysicsShadowCommitAction.Recalculate).
Children (Contract B recursion): ShadowObjectRegistry.AttachChild/DetachChild
give an attached object the root's current cells as part entries only,
republished whenever the root's array changes, detached at withdrawal and
cascaded from the root's Deregister; nested attachment resolves to the root
with a bounded, cycle-safe chain. EquippedChildRenderController attaches at
realization (FromSetupRenderParts over the child's Setup) and detaches at
its single removal funnel. WalkProductionWorldData's dynamic sweep reads
TryGetRetailCellArray directly; the 64-hop parent-chain walk and its
FindParentLocalId plumbing are deleted. CollisionWorldState.Clear now
also clears the retail products.
Gates (implementer's isolated worktree at identical content): Release
build 0/0; Core 4,970/4,970; App hermetic 6,761/6,761; targeted
walk/child/live-entity/placement/comparator 166/166; Runtime 1,884/1,884.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
ShadowObjectRegistry computes the CELLARRAY once per registration under
Contract A (cylsphere route from the Setup's collision cylspheres, else the
bbox route over the whole visual part array) and derives BOTH products from
it: the collision rows (_entityToCells/_cells, CShadowObj per cell via
add_shadows_to_cells @0x00514ae0) and the per-part render entries
(AddPartsShadow @0x00517e40). The second, independent collision flood is
gone. A caller that supplies no part array floods from its collision shapes
exactly as before, so every legacy expectation holds byte-for-byte.
The staged SetPosition pipeline now carries the retail part array, cell
array, route, and entries through TryCaptureOwnerState/InstallOwnerState
and publishes them beside the collision cell replacements, honoring the
keep-when-empty rule (SetPositionInternal num_cells gate, pc:283540) for
both products together; two new tests pin a cross-cell move and the
keep-when-empty case. Behavior change, retail-exact: an object with
decorative non-BSP parts now has its collision shapes registered in every
cell those parts reach (pinned by a two-cell fixture); all-BSP objects are
unchanged. Movement paths still take collision cells from the transition
and recompute the retail product separately; chunk 4 unifies them on the
transition's array as retail does. No particle emitter reaches this registry.
Gates (implementer's isolated worktree at identical content): Release
build 0/0; Core 4,961/4,961; App hermetic 6,760/6,760; collision/InstalledDat
fixtures 63/63; Runtime 1,884/1,884; Content 213/213.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
WalkProductionWorldData no longer floods; its indoor and outdoor static
sweeps read ShadowObjectRegistry.TryGetRetailCellArray (retail's
calc_cross_cells_static @0x00515160 -> AddPartsShadow @0x00517e40
CELLARRAY, computed once at registration). The App-owned render flood
(ResolveStaticRenderCells, its fingerprint cache, the primitive-Setup
special case) and Core's ComputeStaticRenderCells are deleted. The one
remaining fallback, an entity the physics publisher has not registered yet
while the projection journal already published it, buckets to the authored
parent cell and is counted per frame (UnregisteredStaticRenderFallbackCount)
for chunk 5 to judge on the connected route.
The Facility stair pin now registers at the projection's own entity id
(the old pure-function test never carried identity) and reads the retail
array; the installed-DAT comparator compares retail against collision.
Gates (run in the implementer's isolated worktree at identical content):
Release build 0/0; Core Physics 2,202/2,202; App hermetic 6,760/6,760 (the
two added WalkProductionWorldData tests); installed-DAT walk/flood/stair
family 24/24; Runtime 1,884/1,884.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S2 chunk 1 (Core half). ShadowObjectRegistry accepts the
object's whole visual part array as an optional registration input and
computes retail's CELLARRAY from it as a retained side product:
- route per CPhysicsObj::calc_cross_cells_static @0x00515160: cylsphere
(CObjCell::find_cell_list @0x0052b9f0 over the Setup's authored
cylspheres, carried as the Cylinder shapes of the COLLISION dispatch) when
(state & 0x10000) == 0 and a cylsphere exists, else the bbox route
(find_bbox_cell_list @0x00510fc0 via CellTransit.BuildShadowCellSetFromParts
over every visual part: physics sphere else drawing sphere, part box);
- per-cell part entries in array-then-part order for every part
(CPartArray::AddPartsShadow @0x00517e40), clip planes required iff the
array has more than one cell;
- Deregister clears everything (remove_shadows_from_cells @0x00511230);
UpdatePosition/CommitSetPosition recompute; ReplaceMultiPartPayload swaps
the part array without re-flooding.
_entityToCells and _cells are untouched; no production caller passes the
part array yet (chunk 1b), so this is a zero-behavior change. The lead
corrected the implementer's route decision, which had inspected the visual
part array for cylinders; retail's GetNumCylsphere reads Setup collision
data. Core Physics 2,202/2,202.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S1 review fixes (two Opus lens reviews, findings verified
by the lead against the decomp):
- a raw sides_type outside 0/1/2 constructs retail's default single-side
shape (ConstructMesh @0x0059DFA0 loop bounds default to 1) instead of
dropping the polygon; still counted as a data anomaly (corpus has none);
- the positive-surface stippling mask OR runs once per polygon before the
degenerate-fan guard, as retail's count loop does (pseudo-C 426859-426866);
- untextured slots keep their mask accounting but bake no texture and no
vertices (contract §9 item 3); the dev pak shrinks by 114 KB;
- failed surface-override / Surface / texture-dependency lookups are
attempted and logged once per slot, not once per candidate;
- cell-shell batches upload in ascending source surface index, retail's
built-EnvCell subset draw order (ConstructMesh attribute-range scan,
DrawMesh @0x0059D4A0); ordinary GfxObj meshes keep storage order;
- CellMesh.HasDrawableGeometry documented as the admission rule without
texture-dependency resolution (a conservative superset of emission);
- the stippling/surface equivalence sweep's cell half is pinned at zero
again; InAscendingSurfaceOrder is marked bake/upload/test-only;
- plan §5: reviewer findings are verified by the lead, one skeptic at most
for a blocking finding, never more than five agents per step.
Three new Content tests pin the mask hoist, the vertex-free untextured
slot, and the single-side fallback. Content 213/213, Core Meshing and
Conformance green, App hermetic 6,757/6,757, Release build 0/0.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S1 chunk B.
- CellMesh.Build's render role is deleted; CellMesh.HasDrawableGeometry
is the exact predicate (any sides_type candidate whose resolved surface
passes the built-EnvCell (Surface.Type & 6) != 0 test), and the
streaming build job consumes it. Core and Content no longer carry two
CellStruct interpretations.
- Installed-DAT scan over the complete Environment corpus (5,346
landblocks, 729,888 cells, 8,601,560 polygons, 8,608,746 candidates):
3,197 old-rule admissions were untextured surfaces the NoPos proxy let
through; zero new-only; zero unexplained; zero unknown sides values;
counts pinned as goldens against the contract's DAT hashes.
- Canonical pins: 0xF4180104 has eight ST_DOUBLE clip-map polygons and 44
drawable side calls; the canonical NoPos surfaces are type 0x11 and are
constructed but skipped; two independent extractions of all ten
canonical cells hash identically.
- AP-234 retired from the divergence register (161 active rows) with
ConstructMesh 0x0059DFA0 / DrawEnvCell 0x0059F170 / DrawMesh 0x0059D4A0.
- StipplingSurfaceEquivalenceTests no longer claims a build-time NoPos
skip; the cell half is report-only, the building half stays pinned.
- Inventory and policy remarks updated; plan ledger records chunk A and
the capture kit.
Core Meshing+Conformance 95/95, Content 208/208 (Lane!=Timing,
Lane!=PreparedPackage), App EnvCell/LandblockBuild/Streaming 432/432,
Release solution build 0 warnings / 0 errors.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Campaign OVERHAUL S1 chunk A. Retail's D3DPolyRender::ConstructMesh
@0x0059DFA0 is ported as one pure Core descriptor plus the Content
extraction that consumes it:
- side candidates come only from sides_type (0/1/2); NoPos/NoNeg mean
UV-array absence only and never suppress a side (CPolygon::UnPack
@0x00538650);
- ST_DOUBLE's second copy is reversed with a negative normal; ST_BOTH's
negative side has a negative normal and forward fan order (reverse is on
the copy ordinal, not the side ordinal);
- an absent UV-index array is UV index 0 (ConstructMesh @0x0059E691
xor ebx,ebx, arbitrated on the PDB-paired binary); copyVert @0x0059C080
zeroes coordinates only for a negative or out-of-range index or a vertex
without UVs, never by clamping to slot 0;
- the subset owner is the source surface-array index, emitted in ascending
slot order with retail's per-slot mask (2 > 8 > 4 precedence, positive
surface OR on signed stippling > 0);
- built-EnvCell admission is (Surface.Type & (BASE1_IMAGE|BASE1_CLIPMAP))
!= 0 after surface resolution (DrawEnvCell @0x0059F170 -> DrawMesh
@0x0059D4A0 arg4=1); untextured slots are constructed but not emitted;
- cell batches carry SourceSurfaceIndex, RetailSurfaceMask, RawSurfaceType,
IsCellShell, and fixed clockwise raster cull (RenderMeshSubset
@0x0059CA10); authored sides_type is no longer stored as GPU cull.
Prepared-mesh serializer gains the four fields; bake recipe 7 -> 8 with a
FullRebuild migration; pak format stays 2 (pinned). Ordinary GfxObj
extraction is unchanged. AP-234's register row and CellMesh unification
land in chunk B.
Core: 32 descriptor tests. Content: 170/170. Bake: 18/18. Launcher.Core:
365/365 (Lane!=Linux). Solution Release build 0 warnings / 0 errors.
Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
Retail never clips a particle to a portal view: each emitter's polys
join the ONE alpha list during its owner cell's far-to-near walk turn
(LScape::draw @0x00506330 iterates block_draw_list reversed; DrawBlock
@0x005A17C0 walks cells; ShouldDrawParticles @0x0050FE60 gates by cell
and distance), and occlusion is the depth test at FlushAlphaList
@0x0059D2E0 (its float is a COUNT threshold - 0f = flush all). The
1d2f2f73 architecture instead re-submitted particles once per
OutsideView slice under that slice's hardware clip slot, which cut
effects at aperture boundaries and drew nothing when no outside slice
was in view (the cathedral look-north disappearance).
Now: unattached emitters submit once per frame by owner-cell kind
(outdoor landcells in the landscape stage, interior EnvCells in the
final world scope - new UnattachedEmitterCellScope filter); cell,
shell-route, barrier-static, and late-stage owners submit their
per-slice cone-cull UNION once with clipSlot 0; and particles emit in
the stage matching their PARENT CELL - an interior dynamic whose
sphere straddles an exit-portal plane keeps its mesh in both stages
(#118) but its particles move to the final pass, so the interior
stage can no longer repaint over them (the aperture-band star cut).
Also lands the inert Change-2 primitives for the AP-236 retirement
(candle-behind-door): RetailAlphaQueue.FlushFartherThan drains only
the far prefix without resetting sources, plus the executor
passthrough and the conservative look-in threshold helper - nothing
calls them yet.
User-gated 2026-08-29 round 2 at the Sanctuary Cathedral: spell and
recall stars cover the whole room at every camera direction including
north; waterfall containment holds on retail's depth/seal mechanism;
adjacent-room particles/lights, walls, Holtburg, recall unregressed
(paperdoll remains pre-existing intermittent #443). Register: AP-236
filed for the remaining barrier-order divergence.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Harden keyboard and camera routing, inventory and vendor interactions, chat/emotes, relog portal flow, and paperdoll rendering. Add retail research, connected gate coverage, and release-gate validation.
Retail sends a raise and WAITS: one request in flight, the raise
controls ghost, and displayed state changes only when the authoritative
quality-change record lands (gmStatManagementUI @ 0x004F03F0 family,
pinned in docs/research/2026-07-10-retail-panel-behavior-pseudocode.md
§5, whose own conclusion names ApplyLocalRaise as the thing to remove).
The optimistic layer predates the inbound parsers — it existed so the
panel showed anything at all — and with CA2 delivering server truth it
became strictly harmful: against ACE, a wrong TrainSkill cost fails
SILENTLY, so the optimistic promote-and-debit could show a trained
skill the server refused with nothing to ever correct it.
Deleted: CharacterSheetProvider.ApplyLocalRaise + both spend helpers,
and LocalPlayerState's six optimistic mutators (ApplyAttributeRaise,
ApplyVitalRaise, ApplySkillRaise, ApplySkillTraining, DebitIntProperty,
DebitInt64Property) with their tests. Added: the one-in-flight latch in
HandleRaiseRequest, CharacterSheet.AwaitingRaise ghosting all raise
controls, and gate release on every authoritative quality signal
(attribute/character/player-property events unconditionally; vital
events only release-and-refresh while a raise is in flight, so regen
ticks stay out of the sheet-rebuild path). Panel unmount resets the
gate — retail's awaiting flag lives on the panel instance.
AP-73 NARROWS rather than retires: retail's release on a rejection that
produces NO quality change is statically unverifiable, and ACE sends
chat-only (Raise*) or nothing (RaiseSkill/TrainSkill) on failure; until
the CA5 live check, a silently-rejected request leaves the controls
ghosted until panel reopen — recorded with its observable symptom.
Also verified for CA4: the train button sends the DAT-exact TrainedCost
(ACE's silent exact-match rule), and there is correctly NO panel
specialize send — retail/ACE specialize only via the SkillAlterationDevice
item-use + confirmation round-trip, whose client seams
(SendConfirmationResponse 0x0275, the 0x028B WeenieErrorWithString chat
routing) already exist. Provider tests now pin the retail contract:
send-without-mutation, one-in-flight, release-on-record, release-on-
unmount, and the regen-tick rebuild guard. Full hermetic suite 15,327
passed / 0 failed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The recompute half of #431, on the CA1 verdict that retail computes
derived values LIVE at inquiry (Set* writes raw; InqSkillBaseLevel
0x00592140 -> SkillFormula::Calculate 0x00591960 re-derive per call;
InqRunRate 0x00592800 runs every motion tick; UI notifications carry no
value and widgets re-pull):
- LocalPlayerState gains the SkillTable formula resolver — the same
delegate shape (and App-side implementation, RetailSkillFormula over
the loaded SkillTable) the PlayerDescription path already uses. An
attribute write re-derives every skill snapshot's cached formula
contribution; recomputing at the only write that changes the inputs
yields values identical to retail's compute-on-read at every read. A
freshly TRAINED skill unseen at login derives its contribution live
instead of defaulting to zero forever.
- The router pushes movement-skill totals down the SAME seam
PlayerDescription uses (UpdateMovementSkillBase -> vitae/enchantment
recompute -> OnSkillsUpdated -> the App stats applier) after an
attribute update, and after a skill update for Run (24) / Jump (22)
only. This is what turns a Quickness raise into visible run speed
mid-session; the server's own movement-packet echo
(HandleRunRateUpdate -> ApplyServerRunRate) remains the correcting
authority.
- Vitals maxima needed no new plumbing: GetMaxApprox reads attribute
currents live and the vitals window binds getter lambdas re-read per
frame, so CA2's attribute fan-out completes that path. The character
panel already subscribes to AttributeChanged/CharacterChanged.
Tests: router behavior test drives the real WorldSession events through
the real router and asserts the full chain (state write, live 160/2=80
re-derivation, movement push totals, and that a non-movement skill does
NOT push); the subscription-count contract now includes the two new
events; Core tests cover the fresh-train resolver derivation. Full
hermetic suite 15,335 passed / 0 failed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The server's authoritative answers to a raise were dropped on the floor:
only the vitals pair (0x02E7/0x02E9) had parsers, so after any
RaiseAttribute/RaiseSkill/TrainSkill the client's stat model stayed
frozen at login's PlayerDescription — the root cause of #431's stale
derived skills and run speed. The GUI looked alive only because the
panel applies optimistic local raises.
New parsers with three-source-verified layouts (CA1 research doc §2.5/
§2.8): PrivateUpdateAttribute (0x02E3) and PrivateUpdateSkill (0x02DD —
the wire's ushort ranks + hardcoded adjustPP=1 pair and f64
lastUsedTime preserved exactly). WorldSession dispatches both as typed
events; LiveSessionEventRouter routes them into the J4 character owner's
LocalPlayerState like every other private update. The vestigial
PrivateUpdateSkillLevel (0x02DF) is deliberately unparsed — ACE has no
producer (verified).
OnAttributeUpdate now fans out to the derived-value observers, mirroring
retail's live-at-inquiry model (CACQualities::InqSkill 0x00592660 —
Set* writes raw, Inq* recomputes, notification carries no value): an
Endurance write notifies the Health AND Stamina vital observers (ACE
pushes only a Health record and its own comment says the client must
refresh both), Self notifies Mana, and every attribute write notifies
character-sheet consumers whose formula contributions just changed.
OnSkillWireUpdate preserves the login FormulaBonus — the wire record
carries no attribute contribution; CA3 replaces the cached field with
the live computation.
Also corrected while in the neighborhood: PropertyString.cs's comment
claimed opcode 0x02DD for PrivateUpdatePropertyString; ACE's enum says
0x02D5/0x02D6 (doc-only — nothing dispatched on either).
Conformance tests cover both layouts (including holtburger's golden
skill fixture with adjustPP=1), truncation/wrong-opcode rejection, the
Endurance/Self/Quickness fan-out contract, and FormulaBonus
preservation. Full hermetic suite 15,333 passed / 0 failed (one
load-sensitive transport flake observed on the first run, passed alone
and on the clean re-run — filed as #439 rather than chased).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Part 1 deleted probes whose owning issues were closed. These 14 named no
issue at all, so each was traced to its introducing commit
(git log -S) instead of guessed at. Attribution split them three ways:
DELETED (7, investigations closed): ACDREAM_A8_DUMP_PV and
ACDREAM_DUMP_LIVE_SPAWNS (Phase A8), ACDREAM_DUMP_CLOTHING (#37),
ACDREAM_DUMP_EDGE_SLIDE (#32), ACDREAM_DUMP_STEPUP (L.2.3d-f),
ACDREAM_DUMP_VENDOR (the vendor campaign, 25 call sites across 8 files),
ACDREAM_DUMP_VITALS (#5, four independent read sites). VendorDiagnostics.cs
went entirely.
RECLASSIFIED (8, tools misfiled as probes): the DUMP_CELLS/DUMP_GFXOBJS
fixture-extraction family (replay-harness tooling with a roundtrip test),
PROBE_CELL (standing cell-transit tracer, pair of the permanent
PROBE_RESOLVE), DUMP_SKY and HIDE_PART (generic isolation tools), and
DUMP_STEEP_ROOF — which looked like an L.4 relic but observes LIVE
divergence-register row AD-56; deleting it would have removed the only
runtime lens on an active divergence. All moved to Permanent diagnostics
with their attribution recorded.
RESTORED (1): ACDREAM_DUMP_MOVE_TRUTH was deleted and un-deleted the same
day. It is not a probe — the canonical nine-stop soak
(run-connected-r6-soak.ps1) hard-fails every destination without its
'move-truth OUT' records, with a message that would misdirect the next
operator. Under the no-workarounds rule the gate's mechanism is restored,
not left broken with an IOU (#437, closed). Process lesson recorded on
both issues: a closed owning issue is NOT sufficient to delete a probe —
grep tools/ and the contract tests for consumers first.
Also lands the owner-requested default-off invariant: every diagnostic in
the codebase is inert until its env var is explicitly set. Exactly four
flags default ON and none is a diagnostic — RETAIL_CHASE, CAMERA_COLLIDE,
CAMERA_ALIGN_SLOPE, RETAIL_CLOSE_DEGRADES are retail behaviors wearing an
A/B off-switch. That set is now FROZEN by
LaunchOptionsDocumentationTests.OnlyTheFourRetailBehaviorFlagsDefaultOn;
docs/launch-options.md's Conventions and CLAUDE.md state the rule, and
CLAUDE.md now binds future probes to a documented row in the same commit.
The client reads 137 environment variables (161 at audit start); 40
temporary probes remain, every one attributed. Full hermetic suite 15,322
passed / 0 failed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Each of these was temporary apparatus added to chase one bug, and each was
supposed to be deleted in the commit that fixed it. Fourteen closed issues
later they were still here: #337's support/wire-mesh trio, #171's sticky
timeline, #119's viewer and entity dumps, #113's phantom probe, and a dozen
more. 3,493 lines removed; the client now reads 144 environment variables
instead of 161, and 47 temporary probes remain instead of 64.
This is not only tidying. Every probe leaves a branch on its hot path when
unset, several re-read the environment per call rather than caching, and
the volume buries the diagnostics that are actually load-bearing. It is
also a headless correctness matter: HeadlessStaticStateAudit reflects over
PhysicsDiagnostics' flags to refuse a multi-session host when any is set,
and cannot see probes that live outside that owner.
Four files went entirely — WalkMissDiagnostic.cs, CollisionMeshWireframe.cs
and two test files whose only subject was a deleted probe.
TransitionTypes.SetContactPlane also sheds its CallerMemberName /
CallerLineNumber parameters, which existed solely for #337's cpSrc=
attribution and carried the instruction to strip them with the probe
family; no call site passed them, so no behavior changes. F2's collision
overlay survives and reverts to its proxy-cylinder form, which is what
removing the ACDREAM_WIRE_MESH upgrade means.
LaunchOptionsDocumentationTests earned its keep here: it refused the
deletion until docs/launch-options.md moved the 17 rows into Retired and
the frozen direct-read counts came down (PhysicsEngine.cs to zero,
TransitionTypes.cs 3 to 2). The documentation could not drift during a
cleanup this wide.
The 14 probes that name no owning issue are deliberately NOT deleted.
Nothing records when they became safe to remove, and guessing is how a
future investigation loses apparatus it needed; #435 stays open for their
attribution.
Full hermetic suite 15,321 passed / 0 failed.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The aurora was never missing data — it was a missing mechanism plus a
misread. New decompile evidence closes the April-2026 contradiction:
retail plays the sky carriers' PES through the Setup's own DefaultScript
(GameSky::MakeObject @0x00506EE0 -> CPhysicsObj::makeObject @0x00513970
sets state|=0x80000; animate_static_object @0x00513DF0 ticks
ScriptManager + ParticleManager). The pes_id column stays dead — that
half of the April finding stands; the ids are byte-equal mirrors.
- SkyPesFrameController is now the production owner (ACDREAM_ENABLE_SKY_PES
deleted): script ids resolve from the Setup DefaultScript
(SkyObjectData.DefaultScriptId; the pes_id column is a one-time-logged
cross-check), slots persist by (index, gfx id, properties) per
CreateDeletePhysicsObjects @0x005073C0 — a day-group swap keeping the
carrier no longer restarts its emitters — and stale slots stop before
replacements claim the slot-derived owner id.
- RetailParticleFacing ports calc_draw_frame @0x0050DFA0: degrade mode 2
faces the viewer roll-free (set_vector_heading) instead of the camera
plane; modes 3/4/5 spin the authored frame around one local axis
(rotate_around_axis_to_vector) — Dereth authors 54 mode-5 emitters that
previously got no facing at all; 1,583 mode-2 emitters get the exact
law; authored/mode-1 paths are unchanged.
- The 2026-08-23 'whole-sky tint' was the Rainy-group lightning/thunder
PES playing at the debug anchor inside their 0.03-0.19 window, not the
aurora: the aurora is nine faint viewer-facing glows pulsing on
6.7/15/55-minute rebirth cycles, in every day group, all day.
Research: docs/research/2026-08-23-sky-default-script-port.md.
Register: AD-112 filed (camera-anchored synthetic owners vs sky-cell
physics objects). ISSUES #2 corrected (the playback ban is lifted by the
new evidence); #28 fix landed pending the connected night gate.
Tests: RetailParticleFacingTests (16), SkyPesFrameControllerTests (6);
hermetic suites App 6,076/0, Core 4,905/0.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The Holtburg windmill axle (GfxObj 0x010010CE, 8 polygons, all
Stippling.NoPos + SurfaceType.Base1Solid) extracted to a 0-vertex mesh.
NoPos ("NO_POS_UVS", acclient.h:7380-7388) means "this side has no
texture coordinates" — true of every solid-colour polygon, since
nothing samples them — not "there is no positive face". Extraction read
it as the latter and dropped the polygon entirely, client-wide, for
every untextured polygon on every object.
Retail's D3DPolyRender::DrawMesh (@0x0059d4a0, named-retail decomp
~line 426048) draws an untextured subset on an ordinary object exactly
like a textured one; the only retail cases that skip an untextured
subset are a building shell (RenderDeviceD3D::DrawBuilding @0x0059f2a0
sets ObjBuildingOrBuildingPart=1) or an EnvCell interior
(RenderDeviceD3D::DrawEnvCell @0x0059f170, arg4=1). The #119
investigation's "retail's skipNoTexture never draws them either"
conclusion was itself wrong as a general rule.
- MeshExtractor.PrepareGfxObjMeshData / GfxObjMesh.Build: emit the
positive side whenever PosSurface is a valid index, regardless of
NoPos; the existing UV-index-0 fallback already produces zero
texcoords for a NoPos polygon with no UVs on the wire.
- RetailUntexturedSurfacePolicy.IsUntextured(SurfaceType): the one
place that answers "is this surface textured"
((type & (Base1Image|Base1ClipMap)) == 0), replacing the old
`isSolid = NoPos || Base1Solid` (which also mis-classified a NEG-side
batch by the POS-side's NoPos flag).
- RetailUntexturedSubsetPolicy.Draws(isBuildingShell, isUntextured):
the shared draw-time gate wired into WbDrawDispatcher.ClassifyBatches,
.PackedOracle.ClassifyPackedBatches, and
.DirectionalShadows.AddDirectionalShadowBatches — one predicate so the
three walks cannot drift (Campaign VM VM6 lesson).
- CellMesh.cs / MeshExtractor.PrepareCellStructMeshData deliberately
KEEP their NoPos-gated skip for cell-wall geometry — retail's
DrawEnvCell really does skip untextured subsets there; register row
AP-234 documents the NoPos-vs-Surface.Type approximation.
- PakFormat.CurrentBakeToolVersion 4->5 (LauncherInstallRecordStore in
lockstep): a pak baked by an older tool is missing every untextured
face. No bake was run as part of this commit.
Also fixed: WorldBuilder's own upstream ObjectMeshManager.cs has the
identical NoPos bug (ObjectMeshManager.cs:959,984) — our port had
faithfully carried it over, and our own conformance test
(Build_NoPosFlag_OnlyEmitsNegSide) asserted the bug as correct WB
conformance. Renamed/reworded to Build_NoPosFlag_EmitsBothPosAndNegSide
with a citation for why retail decomp overrides WB here.
Issue119UpNullGfxObjDumpTests re-run against the installed DAT:
#119's own two objects (0x010002B4 9/9 polys, 0x010008A8 1/1 poly) now
gate DRAWS on every polygon instead of extracting to nothing.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The Holtburg windmill (Setup 0x020003E5, cycle 0x0300061B) is a 60-frame
quarter turn that loops by 4-blade symmetry: frame 59 and frame 0 are the
same picture but 88.5 deg apart. BuildBlendedFrame wrapped the cyclic
node's next-frame index to frame 0, so the seam slerped 88.5 deg backwards
inside one 33 ms interval - the blades visibly flapped back every two
seconds.
Retail never blends animation frames at all: CPartArray::UpdateParts
(0x005190F0) applies get_part_frame(floor(frame_number)), holding every
authored frame for its interval and hard-cutting at the wrap. The
render-side blend now holds the boundary frame at BOTH ends of a node's
window - the same rule the #61 link-tail fix already applied to one-shot
nodes - so every seam is retail's cut while interior frames stay smooth
(the owner's choice over dropping the blend, 2026-08-23). Register row
AP-233 records the blend as the deviation it has been since the R1-P5
cutover.
Test: Advance_CyclicSeamHoldsLastFrameInsteadOfBlendingIntoFrame0 (fails
on the previous code at ~45 deg, passes held at 90 deg). Core 4,696/0,
App 6,068/0 hermetic (Release).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Narrow re-review of a82959f1: APPROVE, with follow-ups. All items landed.
N2 (structural): (a) extracted the ONE shared InstanceGroup-from-key
construction seam, WbDrawDispatcher.CreateGroupFromKey(key, registration,
frame) — before this there were two near-identical `new InstanceGroup
{ ... }` initializers (GetOrCreateInstanceGroup and GetOrCreatePackedGroup)
that had already drifted once (the round-2 F1 bug). Both routes call it now;
CreateGroupFromKey's own `new()` is the only production InstanceGroup
construction site repo-wide, same precedent as AppendPackedInstance. (b)
GroupKey.FoliageFlags lost its `= 0u` default and moved before CullMode in
the declaration (CullMode keeps its default, C# requires optional params to
trail required ones), so a `new GroupKey(...)` that omits it is a compile
error. Fixed every real construction site the reorder/requirement touched:
the 2 production sites, ToKey (a reconstruction from InstanceGroup the
review didn't count but the reorder broke), and 5 test sites (one more than
the review's "4" — InstanceGroupClearTests had a second, implicit
target-typed `MakeKey` factory the original count missed). Verified by a
full solution build.
N1: added CreateGroupFromKey_CopiesFoliageFlagsFromTheKey
(InstanceGroupClearTests) — a key carrying FoliageFlags 0x2 in, the created
group's FoliageFlags 0x2 out. That test plus N2b's required field are what
actually guard the round-2 F1 blocker; reworded PackedDispatcherOracleTests'
existing test comment to say what IT proves (the classification-to-
BuildIndirectArrays-to-BatchData.flags path), not that it guards the
classifier.
N3: corrected the plan's round-2 paragraph — folding FoliageFlags into the
G2/G3 digest is correct and symmetric, but CompareClassifiedOutput only
runs from RenderScenePViewFrameProductController.BuildAndCompare, which has
no production caller anywhere in src/AcDream.App/, and both of
RenderScenePViewFrameProductTests's own callers construct the controller
without the optional dispatcher argument — so the fold catches nothing
until that oracle is wired to an actual caller.
N4: the plan's F6 note now names both classification caches — the classic
route's EntityClassificationCache.EntityCacheEntry (self-heals per entity
on its own next eviction) and the packed route's
PackedProjectionClassificationEntry/PackedClassifiedBatch.Key
(PackedProjectionClassificationCache.BeginFrame clears its entire cache in
one shot on a RenderSceneGeneration change) — and notes neither mechanism
is keyed to a pack switch specifically.
N5: deleted the now-unused single-generic ComputeEntityHasCutoutSubset<T>
overload; its 4 test call sites now use the two-generic, zero-alloc
overload with an unused int context and a static (_, value) => value
lambda, so there is exactly one ComputeEntityHasCutoutSubset to keep
correct.
A6 (reviewer-filed): ResolveFoliageWind's _windMean/_windGust started at 0
and always eased toward the weather target by clock delta, with no
distinction for a graph's first-ever advance. A pinned clock
(ACDREAM_SKY_PHASE_SECONDS, the offline pixel gate's determinism pin) never
advances between calls, so the wind reached only whatever fraction the
first (1-second-clamped) step produced and sat there forever; live, the
first 10 s after a graph is constructed (pack selection / login) spun up
from dead calm even though the weather already IS what it is. Fixed at the
root: the first advance (_windFrameSerial == -1, the constructor sentinel)
now snaps _windMean/_windGust straight to the target; every later advance
eases over WeatherSystem.TransitionSeconds exactly as before. Added a
SetWindClockSecondsOverrideForTesting seam (_windClockSecondsOverride is no
longer readonly) so a hermetic test can advance the pinned clock by an
exact amount between two resolves without a real-time Thread.Sleep; two new
tests prove the first-advance snap is exact and a second advance still
eases at the normal rate. The three existing indoor/wind-disabled/amplitude
gate tests pass unchanged.
Verify: Release build 0 warnings/0 errors. App hermetic-lane filter
6,046/0 failed. Core.Tests 4,695/0 failed. Full hermetic-filtered solution:
15,274/0 failed across 15 projects.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Opus dual-lens review of the three VM6 commits (0930c35d, 39e8408c,
6cc5e183) found two blockers and two should-fix issues; all landed here
along with the review's nits and documentation corrections.
Blockers:
- A1: the procedural-scenery classifier tested bit 31 alone instead of
the full top nibble (0xF000_0000 == 0x8000_0000), so it also matched
LandblockStaticEntityIdAllocator's 0xC... namespace (fences/gates/
building shells with a cutout subset), the 0xDA11_D0xx paperdoll id,
and the 0xFFFF_FF01 portal-tunnel id as procedural scenery — all
three would have swayed. ProceduralSceneryIdAllocator.IsInNamespace
now does the exact top-nibble test; FoliageWindClassification
delegates to it.
- A2: GroupKey (the receiver's instance-batching key) did not carry
FoliageFlags while the caster's dedup key already did, so a scenery
instance and a non-scenery instance sharing a mesh subset coalesced
into one receiver InstanceGroup whose flags were last-writer-wins —
disagreeing with the correctly-keyed caster. GroupKey now carries
FoliageFlags, computed before key construction and set exactly once
at group creation; the imperative re-stamp is gone, and CachedBatch's
now-redundant FoliageFlags field is removed.
Should-fix:
- A3: the world receiver pass bound UniformAtmosphericFrame only by
accident (leftover from the caster pass, which runs first each
frame, since Vulkan binding state isn't reset between passes).
DirectionalShadowFrameBinding now carries the caster's exact
AtmosphericFrameBufferBinding and BindDirectionalShadowReceiver binds
it explicitly.
- A4: a Setup-composed tree's opaque trunk part never got the trunk
flag because HasCutoutSubset is cached per GfxObj part, not per
entity. FoliageWindClassification.ComputeEntityHasCutoutSubset now
ORs HasCutoutSubset across an entity's resolved sibling parts once
per entity, threaded into ClassifyBatches/AddDirectionalShadowBatches
via a new optional override parameter.
Nits: A5 hashes the per-vertex flutter seed relative to the instance
origin instead of absolute world XY (fp32 sin() precision loss at far
landblock corners), mirrored in both foliage_wind.glsl and
FoliageWindModel; A7 documents the max(maxHeight, 0.5) divide-guard as
a deliberate pseudocode divergence; A8 switches FoliageWindExclusions'
construction to ToFrozenSet() and softens the "never stale" doc
comment to "no slower than one frame behind."
Tests added: top-nibble classification (0xFFFFFFFFu now correctly
false), GroupKey inequality across entity-driven scenery/landblock-
static classification, a caster-batch test proving the same pairing
never coalesces, ComputeEntityHasCutoutSubset unit + end-to-end
two-part-Setup tests, the caster→receiver AtmosphericFrame binding
carry-through, flutter-hash translation invariance relative to
instance origin, and a Storm-wind mid-height displacement floor
guarding against a "no motion" regression.
Docs: plan VM6 body corrected to the five-row WeatherKind table, "bits
1 and 2", "all four" caster shaders, and top-nibble wording throughout;
the owner gate checklist's Rain/Storm step; the stale v1-only shader-
interface compatibility entry; semantic-bindings-v1.md's v2 members
folded into the main 192-byte block; the IA-25 register row's top-
nibble wording; AtmosphericFrameInputs.cs's ABI size reference.
foliage_wind.glsl's A5 change recompiled exactly the five shaders that
include it (mesh_atmospheric.vert, the four directional_shadow_world_*
casters) plus the manifest; no other .spv changed.
Verify: Release build 0 warnings/0 errors. App hermetic-lane filter
6,041/0 failed (no environment-specific failures this run).
RenderPackValidator 30/30. Full hermetic-filtered solution: 15,269/0
failed across 15 projects.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Procedural-scenery foliage (trees/bushes — entity ids in the
ProceduralSceneryIdAllocator's 0x8XXYYIII namespace) sways with weather in
mesh_atmospheric.vert and all four directional_shadow_world_* caster vertex
shaders, both calling the identical new foliage_wind.glsl include so the
shadow moves with the leaf by construction.
Classification (FoliageWindClassification, AcDream.App.Rendering.Wb): two
new BatchData.flags bits, computed once per (entity, subset) from four
inputs — entity id (bit 31 for procedural scenery), the pack's declared
FoliageExclusions membership, the subset's TranslucencyKind, and
ObjectRenderData.HasCutoutSubset (computed once per mesh at build time, not
per frame). Bit 1 marks an alpha-cutout leaf subset; bit 2 marks an opaque
trunk subset (only when its own mesh also owns a cutout subset, so rocks
stay still). WbDrawDispatcher.ClassifyBatches (world receiver) and
AddDirectionalShadowBatches (caster) call this with the same four inputs, so
casters and receivers classify identically without needing to share state.
Retail's mesh_modern/terrain_modern/mesh_detail pipelines never read these
bits, so pack-off output is unaffected.
Motion model (foliage_wind.glsl, mirrored bit-for-bit in the new
FoliageWindModel for hermetic CPU tests): height-squared-scaled slow lean
for every foliage subset, plus branch swing and per-vertex-hash-decorrelated
flutter for cutout subsets only. AtmosphericPostProcessGraph.ResolveFoliageWind
resolves the wind block once per frame.Serial — advanced by whichever of
RenderDirectionalShadows (which runs first) or RenderPostProcess is called
first that frame, with the second reading the already-advanced state, which
is what keeps the caster and receiver reading byte-identical clock/strength
values. The per-day-group mean/gust target (AtmospherePolicyDeclaration.
FoliageWindByDayGroup, keyed by the same day-group index convention
ActiveDayGroupMultipliers already established: Clear/Cloudy/Overcast/Rainy)
eases toward its target over WeatherSystem.TransitionSeconds (10s) so a
weather change never snaps; wind-enabled off or indoor instead gates the
OUTPUT to an exact zero (not an asymptotic approach) so a settings toggle or
cell transition is immediate. The wind clock is a Stopwatch started at graph
construction (monotonic, session-relative magnitude for GPU sin() accuracy),
overridable by the same ACDREAM_SKY_PHASE_SECONDS pin SkyRenderer already
uses, for deterministic offline gates.
New settings: wind-enabled, wind-strength, wind-direction-degrees (225°
default — no authored retail wind direction exists to read),
wind-lean-metres, wind-branch-metres, wind-flutter-metres (0 on Low),
wind-canopy-height-metres.
Register row IA-25 files this as an intentional, strictly opt-in divergence:
retail applies no per-vertex wind displacement to any geometry. Known,
accepted limitation: classification is per mesh-subset (one BatchData.flags
word per indirect-draw batch), not per entity instance, so the rare case of
one mesh subset being reachable from both a procedural-scenery and a
non-scenery placement would classify all of that subset's instances alike.
Tests: FoliageWindClassificationTests (the full classification matrix),
FoliageWindModelTests (identity on non-foliage/calm-wind/base-vertex,
canopy-top displacement bound, z-never-increases, trunk has no flutter
term), RenderPackAtmospherePolicyEvaluationTests (exact day-group lookup,
no interpolation across day-group ids, easing convergence without overshoot
or discontinuity), AtmosphericShaderAbiTests (each of the five shaders calls
acdreamFoliageDisplace exactly once; mesh_modern/terrain/mesh_detail call it
never), and four AtmosphericPostProcessGraphTests additions (indoor/disabled
exact-zero gating, settings-to-UBO wiring, same-frame-Serial idempotency —
the last proxies the caster/receiver agreement invariant without needing
this hermetic harness's WbDrawDispatcher/TerrainModernRenderer dependency
chain to exercise RenderDirectionalShadows directly).
App hermetic filter: 6015/6017 (the same 2 pre-existing failures as VM6a,
confirmed unrelated). Core.Tests hermetic: 4697/4697. RenderPackValidator.Tests:
30/30. Full solution Debug and Release builds green. Shader recompile
touched exactly the 5 edited files' .spv (plus manifest); the retail oracle
set and every other pack shader are byte-identical.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The Journal panel now has all three tabs working: contracts from the server,
and a per-character notebook with its searchable index.
Two ported details that a reimplementation would get wrong in a way nobody
notices until they lose work:
Every navigation button commits the current page FIRST. Retail's
ListenToElementMessage @0x004968D0 calls SaveThisPage on the way out of all
five of them, which is why paging away never eats what you just typed. And the
file is written when the notes page is HIDDEN, not only at exit — a crash then
costs at most the page in front of you.
The search is CASE-SENSITIVE across label, title and notes: retail compares
with wcsstr and lowercases neither side. Making it insensitive would be
friendlier and would be a divergence, so it is ported as-is with a test naming
the reason. The double-click window is a full SECOND (m_LastClickTime + 1.0,
@0x00493158) rather than the 500 ms the item-interaction path uses, and firing
it clears the tracker so a third click does not re-open.
Two unlabelled buttons on the notes page turned out to be prev/next: retail
switches on (idElement - 0x10000565), which names them without a caption. The
running-timer readout is authored at the same x as the three day/hour/minute
boxes, so the strip is one or the other — that overlap is the data form of
ShowEditableTimer versus ShowRunningTimer, not a layout bug.
DeltaTimeToString moved out of the contract code into AcDream.Core.Ui. It is
ClientUISystem's, not gmContractsUI's — the journal timer and the contract
repeat countdown both call it, and it only lived under Quests because that was
its first caller. A bridge class to reach it across features would have been
the wrong answer to the same observation.
The journal file lives in the client's data directory rather than beside the
executable, for the same reason the chat log does. Register QJ-1.
Campaign QJ slices 3, 4 and 5 of 5 — code-complete, connected gate owed.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The Journal tab is not a quest feature: it is a per-character notebook with no
wire, no server and no dat content. The player writes it, and it persists to a
tagged text file recovered whole from LoadPages/SavePages.
Retail refuses a journal file that does not OPEN with <NEWP>, with its own
message. That strictness is ported rather than softened — accepting such a file
would scatter the first page's text into no page at all. An ABSENT or empty
file is the opposite case and must not error: that is simply a character who
has never written a page.
Three things the format does not say out loud, each with a test:
<PNUM> is written but page order IS file order, so a reader that trusted the
number would reshuffle a hand-edited file. A recorded location of (0, 0) is a
real place, so the location tags are written on a HasLocation flag rather than
on the numbers being non-zero. And the notes box is multi-line while the file
is line-oriented — an embedded newline would read back as a tagless line and
silently truncate the notes, so they are folded to spaces at the write.
The countdown belongs to the page it was started on, and what belongs in the
file is what is LEFT rather than what it started at — saving the start value
would resurrect the full duration on every reload.
Deleting the last remaining page empties the journal instead of leaving a blank
one behind; inventing a replacement would make the journal impossible to empty.
An out-of-range page is refused rather than clamped, because clamping moves the
player somewhere they did not ask to go.
Campaign QJ slices 1 and 2 of 5.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The wire carries an id, a stage and two timers. Every word the player reads
lives in portal.dat's ContractTable, which nothing in the tree had ever
opened — the only reference counted its entries in a CLI diagnostic. Chorizite
does decode it (322 contracts installed), which was a real question given it
declares TabooTable without decoding it.
FillProgressString @0x00498DE0 is the one real algorithm in this panel, and it
is now ported whole. Its x87 compares are the usual fcom/sahf pattern, so the
(status & 0x41) tests decode as "<= 0" rather than "< 0" — the difference
between a cooldown that expires and one that never does.
Three readings recorded as tests because each looks like a mistake:
TimeWhenDone is on the wire and is never read; an EMPTY QuestflagRepeatTime is
the entire difference between "Done" and "Available"; and DescriptionProgress
is a printf format taking stage-4, not a literal — rendering it verbatim shows
the player "%d/20 Tuskers".
DeltaTimeToString @0x00565E10 emits every part with a trailing space and then
overwrites the last one. That truncation is invisible in the decompiler output
(the instruction reads as pointer noise), so it was settled by decoding the
bytes: mov byte ptr [esp+eax+0x1b], cl with cl == 0 and eax == strlen writes
the terminator over buffer[len-1]. Guessing either way was a coin flip that
decides whether every repeat timer reads "Done (1h 30s to Repeat)".
The single-%d substitution is a MEASUREMENT, not a convenience: 89 of the 322
installed contracts author a progress format and every one uses exactly one
specifier. An installed-DAT test asserts that, so a future dat that ships two
fails there rather than silently rendering a raw specifier.
LayoutDump gained --contracts, which is how all of the above was measured.
Campaign QT slices 2 and 4 of 6.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
CT-B4 was filed as "the plain-text session chat log, path and rotation
UNKNOWN, needs a live check." Both unknowns dissolve once you read the
handler: there is no automatic session log. Retail's @log is a COMMAND.
DoSetOutput @0x0057E4F0 takes a filename, StartCopyOutputToFile @0x0057C8A0
does the fopen(name, "a+"), and running it again with no argument closes it.
Nothing rotates because it appends forever, and nothing has a fixed path
because the player names the file.
The path question that DOES exist — where a bare name lands — was answered
all along by retail's own help text, which CH4 extracted verbatim into our
help table a fortnight ago and nobody read: "a log file named Aclog.txt in
your Asheron's Call directory." A blocked question sat on top of a committed
answer.
We cannot use the install directory: the launcher replaces it atomically on
update, so a log written there is wiped by the next update or blocks it. The
client's own log directory is the equivalent that survives. Rooted paths are
honoured verbatim, as retail's fopen would. Register CT-5.
The verb was registered in the help table but NOT in the command catalog, so
/log printed help and did nothing — and the CH4 conformance registry recorded
it as a "server passthrough" precisely because that shape is indistinguishable
from an unimplemented client command. It never went on the wire at all. Both
are corrected, with the totals moved in the same commit rather than left to
drift.
Moving it into the catalog also moves which help table answers for it, so
retail's real text moved to the catalog-verb table in the same change. Without
that, /help log would have silently started printing acdream's own invented
one-line summary — caught by the coverage test, and now pinned by a test that
names the text.
All five replies are byte-decoded from the PDB-paired binary rather than read
off Binary Ninja's previews, which truncate at ~33 characters and would have
lost the second half of every one of them (including the two spaces retail
puts after "Copying chat to %s.").
The writer attaches on OPEN, not at startup — retail's help is explicit that
only what appears after the command is copied — and detaches from the
transcript it actually attached to, so a session teardown cannot leave a live
handler writing into a file the player believes is closed. What gets written
is the composed display line with the shared timestamp, because retail's
fprintf sits inside AddTextToScroll: downstream of composition, upstream of
glyph layout. Logging the raw entry text would have produced a file of bare
fragments with no speakers.
acdream's logs carry no inline tag markup where retail's do, since tags live
beside the text as spans here rather than inside it. Registered as CT-6 rather
than reconstructed purely to write it to a file.
Register: CT-5, CT-6.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Campaign CT slice A2. Pure parser, no UI, nothing wired yet.
Retail's client composes chat lines with the markup already embedded —
Handle_Communication__HearSpeech @0x005712A0 sprintf's it — and the text
element recognises it while appending (UIElement_Text::InqGlyphs @0x00468EA0),
calling TextTagFactory::MakeTag @0x00478480 per marker. A tagged speaker name
arrives as:
<Tell:IIDString:1342177290:Dww>Dww<\Tell> tells you, "hello"
ChatTagMarkup.Parse splits that into spans, consuming the markers: the name
under a tag, the remainder untagged.
The rule that decides where a tag ENDS is the one worth being careful about.
It is the absence of a colon, not the backslash: MakeTag requires a ':' to
succeed, so ANY bracketed text it cannot parse closes the open tag, and the
backslash in retail's own closer (TextTag::BuildEndTag @0x00479190) is
incidental to that. Porting "a closer starts with a backslash" would look
correct on every retail line and then diverge on everything else, so the test
pins all three of <\Tell>, <Tell> and <anything> as closers.
Two details taken from the decomp rather than guessed: only the FIRST colon of
an IIDString payload separates the id from the name, so a name containing a
colon survives intact (ParseStartTag @0x00478910); and an unterminated '<' is
ordinary text, so a player typing "is 3 < 4 really" does not lose the rest of
their sentence.
The parse also upholds the contract CT-A1's draw side enforces — the
concatenated span text always reproduces the visible line, because selection
and hit-testing index into that flat string.
Solution builds clean; full hermetic gate green.
Note for the record: PreparedAssetVerificationCacheTests.BackupRecoveryHashes-
TheBackupEvenWhenTheLiveCacheIsValid failed once during this slice's gate and
then passed isolated, as a class, and on a full-gate rerun. This branch touches
no launcher code, so it is load-sensitive rather than caused here — flagging it
rather than silently re-running, since a test that only fails under parallel
load is worth someone classifying.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Two gaps from the MossTank shipment review.
**apiVersion was declared in every manifest and checked by nothing.** The
loader now refuses an unsupported contract BEFORE loading any code from the
plugin — checking after the fact is not equivalent, because by then the
assembly is in a collectible context and the mismatch surfaces as a type-load
or missing-member failure from inside the plugin, which reads like the plugin
is broken rather than built for a different host. PluginApi (Current /
MinimumSupported) lives in Plugin.Abstractions beside the contract it
versions, and the refusal is a distinct PluginApiVersionException so callers
can tell "update the client or the plugin" from "this plugin is broken". The
tests pin the ordering too: a manifest with a future apiVersion AND a missing
dll must fail on the version, a supported one on the dll.
**A launcher-launched client loaded no plugins until the user typed ids.**
LA5 distinguishes an omitted allow-list (load all) from an explicit empty one
(load none); a fresh character profile's list is empty, so it composed to
load-none. Direct launches pass null and load everything -- which is why the
gap never showed in development: the two launch paths disagreed and the
launcher was the one users get. This REVERSES the LA5 default deliberately:
"nothing configured" now composes to the omitted list, so plugins are on by
default, including ones installed later. The opt-out is kept -- losing it
would be a real regression for stripped sessions -- respelled as the literal
id "none", and the launcher's plugin box says so.
The cross-host shared fixture composes its explicit-load-none case through
the new spelling, keeping the reader-side contract tests (App and Headless
both preserve an explicit empty list) exactly as they were.
Complete Release suite: 14,469 tests pass on the standard hermetic lane
filter, 0 failures.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
First consumer of acdream's plugin automation surface, and the first slice of
the VTank-class plugin milestone
(docs/research/2026-07-29-vtank-plugin-automation-requirements.md).
MossTank shows a panel with a Buff button; clicking it casts every self-buff
the character is missing, skips what is already in force at an equal or higher
tier, and refreshes what is nearly expired.
The host/plugin line is the load-bearing decision here. The host publishes
spell DATA -- family, tier, difficulty, mana, duration -- plus a cast
primitive with a preflight gate. The plugin owns the POLICY. That is the
architectural conclusion the requirements research reached: VTank's engine
lived in plugin-land, built on Decal's primitives, and baking "best buff for
skill X" into the host would start pulling the engine inward one convenience
at a time.
Why the plan is driven off the spellbook rather than off trained skills, which
is the obvious reading of "buff every trained and specialised skill": the
client cannot honestly make that mapping. The link between a spell and the
stat it modifies arrives from the SERVER in the enchantment message and is
absent from the client's own spell table. What the client does know is which
spells the character has learned -- and a character only learns buffs for the
skills they use, so the spellbook reaches the same set without inventing a
mapping the client has no grounds for.
Surface added, all BCL-only so Plugin.Abstractions keeps its zero project
references:
* ICharacterInfo, ISpellCatalog, IMagicCommands, grouped behind one
IAutomationSurface so IPluginHost grows by one member rather than three.
* IEvents.Tick. Automation is sequences, not single calls -- a buff pass casts
several spells and must wait between them. Without a host tick a plugin
would need its own timer thread re-entering the host off its update thread.
* NoOpAutomationSurface for hosts with no live session, so a plugin keeps one
code path and checks IsAvailable.
Markup gained <button> and <label>; it previously supported only <meter>, with
a comment promising the rest. Buttons bind onclick to an Action property and
FAIL THE PANEL LOAD if it does not resolve -- a silently dead button is worse
than a panel that refuses to load, because the user clicks and there is
nothing to diagnose. Labels bind through a Func so a status line tracks its
binding instead of freezing at build time.
Enchantment reads use EnchantmentsInEffectSnapshot rather than the raw active
set: retail leaves a weaker same-family enchantment in the registry while a
stronger one is in force, and a plugin asking "am I buffed?" means in force.
BuffPlan is a pure function of (known buffs, active enchantments) precisely so
it can be tested without a session; 9 tests cover tier supersede, the
family-0 no-stack bucket that must not be de-duplicated, expiry refresh, and
plan stability across the rebuilds the tick loop performs.
Solution builds clean; 14,421 tests pass on the standard hermetic lane filter,
0 failures.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Run 170's Windows gate went red on 37 tests across four assemblies while the
same commit passed 14,370/0 locally. The failures were all one family:
Expected: "You have 1 500p" <- built with the machine's culture
Actual: "You have 1,500p" <- production, correctly invariant
The runner is Swedish; this dev box is not. These tests had been passing on CI
only because that machine's registry locale had been pinned by hand — machine
state, which came undone (almost certainly the reboot after today's hang).
Re-pinning it would be a workaround on one machine for a defect in the repo,
so this fixes the repo instead.
Two genuinely different bugs were hiding in that one symptom.
1. TESTS that build an expected string with the ambient culture and compare it
to invariant production output, and test-side recording sinks whose traces
are compared against literal golden strings. Those only ever passed on a
machine that happens to format like the invariant culture. Pinned to
InvariantCulture: the vendor purse/cost expectations, and the motion-funnel,
animation-sequencer, framebuffer-resize, resource-slot, and runtime-attack
trace sinks.
2. PRODUCTION that formats player-visible retail text with the ambient culture.
This one matters beyond CI: retail is a US client, so it shows "2.50",
"1,500p" and "(-20)" to everyone. On a Swedish machine acdream was showing
"2,50", "1 500p" and "(-20)" with U+2212 MINUS SIGN — the audience for this
alpha is literally Swedish. Converted 76 sites to InvariantCulture across the
item/creature appraisal formatters, the character stat panel's buff and vitae
parentheticals, the appraisal and link-status controllers, the chat
/framerate and /location output, the camera sensitivity toast, the
time-override toast, the F3 dump, the sky diagnostics, and the world-frame
invariant-failure message.
DATES are deliberately left on the current culture (CharacterController's
birth/login stamp, RuntimeHouseState's purchase expiry). Retail has no answer
for a non-US player's date format, and forcing "08/19/2026 7:00:00 PM" on
them is a UX decision, not a retail-fidelity one.
Apparatus, so the next occurrence is reproducible instead of mysterious:
tests/TestCultureInitializer.cs adds an opt-in ACDREAM_TEST_CULTURE knob to
every test assembly, linked in through a new tests/Directory.Build.props.
Unset — what CI and everyone runs — it changes nothing.
ACDREAM_TEST_CULTURE=sv-SE dotnet test ...
reproduced all 37 CI failures on this machine plus 6 more the runner's own
locale does not surface (the Unicode-minus family), and drove the fix.
Verified both ways on the full solution under the release-gate filter:
default culture 14,370 passed / 0 failed, and ACDREAM_TEST_CULTURE=sv-SE
14,370 passed / 0 failed.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Three tests reached the CI gate needing the installed retail DATs, which no
build machine has, and failed with FileNotFoundException on client_cell_1.dat:
- Issue127FloodFlipReplayTests (both facts replay via ResolveDatDir)
- FindCellListConformanceTests.FindCellList_DoorwayThreshold_IndoorPicks_
MatchRetail, the one untagged method among already-tagged siblings
They now carry [Trait("Lane", "InstalledDat")] like every other DAT test, so
the gate filter excludes them and the local DAT lane still runs them.
Also reverts the DOTNET_SYSTEM_GLOBALIZATION_INVARIANT pin from the previous
commit. It was too blunt: it fixed the 40 decimal-comma failures but broke
ChatLogTests.FormatTimestampPrefix_UsesLiteralColons_RegardlessOfCurrentCulture,
which legitimately constructs a culture and cannot under invariant mode. The
runner's HKCU locale (LocaleName=en-SE, sDecimal=',') was corrected to en-US
instead, which is the actual defect.