Preserve pixel scroll offsets across inventory rebuilds, crop partially visible rows with nested geometry/UV clips, and replace the obsolete 560px resize ceiling with available screen height. Keep retail's row-sized wheel step while allowing continuous scrollbar thumb positions.
Co-Authored-By: Codex <codex@openai.com>
Route the selected stack quantity through retail GetObjectSplitSize semantics, send exact split-to-container and split-to-ground actions, and keep the original object in place until the server publishes the newly guided stack. Cover selection scoping, wire bytes, container placement, and world drops with conformance tests.
Co-Authored-By: Codex <codex@openai.com>
Keep the horizontal thumb at its raw pointer position so both endpoints are reachable, honor the stack entry's authored right alignment, and preserve PublicWeenieDesc plural names from CreateObject through the object table. Port retail's singular s/es fallback when no plural was sent.
Co-Authored-By: Codex <codex@openai.com>
Bind the authored stack count entry and horizontal slider to one Core split-quantity owner, preserve retail count-first naming and exact 1000-step rounding, refresh on stack changes, and consume the selected amount during merges. Conformance covers the production DAT fixture and retained pointer/focus paths.
Co-Authored-By: Codex <codex@openai.com>
Give retained buttons a reusable item-drop seam, wire the toolbar backpack target, and port retail stack-merge legality, capacity clamping, wire dispatch, destination selection, and immediate shortcut rekey notice. Record the live ACE merge gate and keep split quantity under AP-101.
Co-Authored-By: Codex <codex@openai.com>
Plan retail shortcut drops from a complete post-lift snapshot so fresh inventory items use cyclic-right displacement while toolbar aliases restore to their vacated slot. Apply local mutations atomically, preserve raw shortcut fields, emit exact Remove/Add ordering, and retire AP-102 after the live ACE gate.
Co-Authored-By: Codex <codex@openai.com>
Carry signed index, object id, and raw spell word losslessly through PlayerDescription, session storage, drag mutation, and AddShortcut wire serialization while keeping gmToolbarUI object-only. Retire AP-103 and record the live ACE relog persistence gate.
Co-Authored-By: Codex <codex@openai.com>
Port global toolbar use/select/create actions, migrate the collapsed Ctrl-number bindings, and route them through a focused retained-UI controller. Preserve shortcut aliases as aliases across inventory and paperdoll drops with retail's neutral/accept/reject drag states, preventing physical item moves such as unwielding an equipped helmet.
Co-Authored-By: Codex <codex@openai.com>
Port every reachable ClientUISystem cursor branch through the production DAT enum map, preserve global-default versus widget-local event ordering, and surface the registered OS fallback. Route all four toolbar stance indicators through the same combat toggle command as the key binding, with golden DAT and transition conformance coverage.
Co-Authored-By: Codex <codex@openai.com>
Route ACE server commands through the existing chat path, bind the retail paperdoll hit mask instead of its obscured viewport, and prefer authoritative private health vitals. Record the user-confirmed live gate and pin the production DAT widget type in tests.
Root cause (measured, not guessed): the OOM was a MANAGED Large-Object-Heap leak
(~5 GB in 6 min of roaming; working set 1.6 GB -> 7.6 GB), dominated by ~3.8 GB of
live System.Single[]. A heap-retention analysis of a captured gcdump traced 241 of
242 giant float arrays to a single List<float>: WbDrawDispatcher.InstanceGroup.Opacities.
#188 (2026-07-09, fading doors) added Opacities as a 5th per-instance parallel list
alongside Matrices/Slots/LightSets/IndoorFlags, but left it out of the per-frame
clear loop (WbDrawDispatcher.cs:959). So Opacities.Add(1.0f) fired once per drawn
instance per frame and the list never reset — growing forever; List<float> capacity
doubling produced the observed ~128 MB / ~512 MB power-of-two arrays and OOM after
~50 min. Hit both UI builds because it's core render, and started only recently
because Opacities did not exist before #188.
Fix: extract the per-frame reset into InstanceGroup.ClearPerInstanceData() (promoted
InstanceGroup private->internal) that clears ALL FIVE parallel lists in one place, so
a future 6th list can't silently drift out of the frame lifecycle again. Line 959 now
calls it. TDD: InstanceGroupClearTests asserts every parallel list resets (RED with
the old 4-list clear, GREEN after adding Opacities.Clear()).
Static-audit note: this is exactly why we measured before fixing — the audit ranked
GlobalMeshBuffer (GPU) #1 and the entity-dict leak #3; both were wrong about the
dominant cause. The dotnet-counters (managed vs native) + gcdump retention graph
named the real one-line culprit.
Secondary (NOT this commit): _groups dictionary is never pruned (bounded by distinct
group keys, empty groups are cheap) — filed as a follow-up, not the multi-GB driver.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
User-reported: logging in at a non-Holtburg position sometimes showed
stabs/scenery floating in the wrong place. Root-caused via a threading/
lifecycle trace, not inference: WorldSession transitions to InWorld
immediately after the login handshake (WorldSession.cs:608) — well
before the player's own spawn CreateObject (which carries their real
position) has arrived over the network. The streaming gate's old
condition (`!IsLiveModeWaitingForLogin || liveInWorld`) opened the
instant InWorld fired, letting the background streaming worker
(LandblockStreamer's dedicated Thread) build real landblocks using
whatever _liveCenterX/Y held at that moment — the Holtburg startup
placeholder, not a "not known yet" sentinel. Landblocks that started
building in that window bake their world offset from that placeholder
at build time; if their build was still in flight when the real spawn
arrived and recentered the world (ForceReloadWindow, which only
unloads already-RESIDENT landblocks), they finished and got applied
anyway — stale-positioned geometry landing wherever the guess put it
relative to whatever streamed in afterward with the corrected center.
Confirmed with the user this wasn't "wrong placeholder, need a better
one" — any placeholder racing against the real answer reproduces the
same bug. The fix removes the race instead: StreamingReadinessGate
.ShouldStream requires an explicit liveCenterKnown flag (true only once
the player's own spawn has been processed) in addition to liveInWorld.
Nothing streams in live mode until the real position is confirmed — no
placeholder value is ever acted on. Preserves the #106 gate-3 fix this
gate originally existed for (auto-entry waits for terrain under the
spawn; terrain streaming must not wait for chase mode in turn, or the
two deadlock) since liveCenterKnown becomes true independently of chase
mode, driven purely by the spawn packet's arrival.
The stricter render gate (GameWindow.cs:9596, hides ALL world geometry
until chase mode engages, no relaxation) already provided a partial
safety net and is unchanged — this fix stops the stale geometry from
ever being built, rather than relying on the render gate to hide it
until the reveal.
Core 2680+2skip / App 741+2skip / UI 425 / Net 385 green.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Found while investigating #189 (missing fountain/candle particles):
reverting the A7.L1 light-carrier hydration fix (9ebb2060) made the
Town Network fountain's water-spray particle work again, which didn't
fit the earlier dat-truth finding that the fountain's own entity was
never touched by that fix. Traced with ACDREAM_DUMP_ENTITY: the
fountain's hydrated entity.Id shifted between reverted (0x400007F8)
and fixed (0x40000815) builds — a 29-id delta matching the extra
mesh-less light carriers the A7.L1 fix now keeps alive earlier in the
same landblock's hydration pass.
Root cause: GameWindow's interior-entity id scheme
(interiorIdBase + localCounter, "0x40XXYY##") reserves only 8 bits
(256 values) for a landblock's ENTIRE interior static population — a
residual explicitly flagged in the #119 fix's own comment ("counter
overflow past 0xFF still bleeds into the lbY byte"). The Town Network
hub (205 cells, one landblock) already sat at 248 before A7.L1; the
light fix pushed it to 277, past the boundary. 0x40000815 decodes as
landblock Y=0x08 — NOT this dungeon's true Y=0x07 — the exact #119
cross-landblock aliasing bug, reincarnated by entity count instead of
a computation bug. EntityScriptActivator keys particle-script
instances by entity.Id directly (no landblock-hint disambiguation
unlike the #119 batch cache), so the aliased id silently broke the
fountain's script tracking.
Fix: AcDream.Core.World.InteriorEntityIdAllocator widens the counter
8->12 bits (256->4096) by shrinking the fixed class prefix from a
full byte (0x40) to its top nibble (0x4_) — verified safe against
every entity.Id classification check in GameWindow (none decode X/Y
back out, they only check thresholds/prefixes). Added a loud
one-time [id-overflow] log if a landblock ever exceeds the new
budget, so this class of bug can never hide silently again.
Core 2675+2skip / App 741+2skip / UI 425 / Net 385 green.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Root-caused via dat-truth inspection, not inference: the A7.L1 visible-
cell scoping fix (previous commit) had zero visual effect because the
Town Network fountain room (cell 0x00070144) registers ZERO lights of
its own — confirmed directly against the dat, not assumed. The room's
one dat-authored fixture, Setup 0x02000365 (a ceiling light 5m above the
fountain, warm color, intensity 100), has a single visual part that is a
#136-class runtime-hidden marker. Flattened mesh ref count: 0. GameWindow
's per-stab hydration loop treated meshRefs.Count==0 as "doesn't exist"
and dropped the whole entity before the Setup's Lights were ever read —
so a mesh-less "light attach point" fixture, a normal AC dat authoring
pattern, could never register. Retail's light registration (add_light,
CEnvCell::UnPack) is architecturally independent of a fixture's own mesh
visibility.
Fix: track the stab's Setup.Lights.Count alongside meshRefs during
hydration; keep the entity (with empty MeshRefs — nothing to draw, still
something to light) whenever either is nonzero. Extracted the decision
into EntityHydrationRules.ShouldKeepEntity (pure, unit-tested) since
GameWindow's hydration loop isn't independently testable. Confirmed no
downstream consumer assumes MeshRefs.Count >= 1 (WbDrawDispatcher already
guards on it before any indexing).
Core 2666+2skip / App 741+2skip / UI 425 / Net 385 green. Apparatus:
Issue93TownNetworkFountainRoomLightInspectionTests (dat-truth dump,
reusable for other rooms in this class).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The Town Network hub (498 registered fixtures) starved the player's own
room: BuildPointLightSnapshot's player-nearest-128 cap sorts by raw
Euclidean distance, which isn't a reliable proxy for "same room" in a
dense maze — a fixture on the other side of a wall can be geometrically
closer than the room's own torches and win the cap. LightSource.CellId
tagging and the [indoor-light] membership probe already existed from the
c500912b/#176 arc; the missing piece was a candidacy filter.
BuildPointLightSnapshot(playerWorldPos, visibleCells) now narrows
candidates to the frame's actual visible cells before the existing
dynamics-first player-nearest cap runs (cell-less lights, e.g. the viewer
fill, always included). GameWindow feeds LAST FRAME's already-rendered
RetailPViewFrameResult.DrawableCells — one frame of latency instead of
re-threading a mid-DrawInside callback, which was the exact mechanism
(c500912b) that caused the earlier #176 seam-floor flicker regression.
The distance-sort anchor stays the player, unchanged.
AP-85 updated in place (third revision) rather than adding a new row —
same underlying divergence, now with the render-visibility approximation
of retail's true DBObj-load/flush-bounded resident registry documented
alongside its residual risk (one unscoped frame on portal re-entry).
Core 2652+2skip / App 741+2skip / UI 425 / Net 385 green. Pending: user
visual gate at the Town Network fountain, and a #176 corridor-seam
non-regression recheck (Facility Hub, different landblock).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Lands the fading-secret-door feature and fixes the door "flip-back" that
surfaced while testing it.
#188 — fading-wall doors (e.g. "Pedestal Weak Spot") fade their wall part
out via TransparentPartHook instead of swinging:
- TranslucencyHookSink consumes TransparentPartHook -> TranslucencyFadeManager
(per-(entity,part) linear translucency ramp; holds at End frame).
- WbDrawDispatcher: new per-instance alpha SSBO (binding 7); ClassifyBatches
takes opacityMultiplier (1 - translucency, per CMaterial::SetTranslucencySimple
0x005396f0) forcing AlphaBlend; fully-invisible parts skipped.
- mesh_modern.vert/.frag: binding-7 InstanceAlphaBuf -> vOpacityMultiplier ->
FragColor.a *= vOpacityMultiplier.
- Register AP-89: the fade multiplies sampled texture alpha, not a separate
D3D9 material alpha channel (observably identical for texture-alpha==1 surfaces).
Door flip-back fix (affected BOTH #188 fading walls AND #187 sliding doors): a
door/wall that finished opening holds a single unchanging frame, so the
uncommitted IsEntityCurrentlyMoving cache-bypass narrowing dropped it onto the
Tier-1 static cache -- which only remembers the REST pose + opacity 1.0 --
snapping it visually shut/opaque while physics stayed open. Reverted that
narrowing: every Sequencer entity stays on the per-frame path (live pose + live
fade opacity), the known-good pre-optimization behavior. The per-frame CPU cost
that narrowing chased was a Debug-build artifact -- Release is GPU-bound
(~200 fps in Sawato, measured), so the unconditional add is free where it
matters. Left a code comment barring re-introduction.
Tests: full Core suite green (2649 passed, 2 skipped). Live visual gate PASSED --
both fading-wall and sliding doors hold open.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The door-swing animation rescue (GameWindow.cs:3897, for entities whose rest pose
is a static single frame but which still carry a reactive MotionTable) was gated on
an exact display-name string match. Sliding doors, gates, portcullises, and disguised
secret-passage props ("Magic Wall") all fail that check because their in-game Name
isn't literally "Door" -- so ACE's UpdateMotion for them was silently dropped forever
by the _animatedEntities.TryGetValue bail-out in OnLiveUpdateMotion.
Retail's own dispatch chain (ACCObjectMaint::CreateObject -> CPhysicsObj::
set_description -> SetMotionTableID -> CPartArray::SetMotionTableID 0x005186e0 ->
MotionTableManager::PerformMovement) is unconditionally data-driven: the only gate
for creating a motion dispatcher anywhere in that chain is "motion table id != 0" --
no CDoor class, no WeenieType switch, no name check. Production weenie data confirms
Sliding Door / Portcullis / Gate / Magic Wall all carry the identical WeenieType=Door
+ non-zero-MotionTableId shape as a plain "Door", differing only in display name.
Fix: the branch's existing `mtableId != 0` check (already computed one line later)
is now the entire gate, matching retail exactly. IsDoorSpawn deleted (dead code);
IsDoorName kept only for an unrelated diagnostic log-label filter.
Live-verified: sliding doors now animate open/closed correctly. Full regression
green (App 741 / Core 2631).
docs(#188): file the fading-wall render gap surfaced during #187's live gate
A "Pedestal Weak Spot" secret-passage door dispatches correctly (proving #187's fix
reaches it) but never visibly changes. Decoded its actual dat MotionTable directly
(0x090000F9): its open cycle carries EtherealHook + TransparentPartHook +
SoundTableHook -- a translucency-fade effect, not part-transform motion. acdream's
IAnimationHookSink documents these hook types as intended for "GfxObjMesh / renderer
state mutations" but no sink anywhere consumes them (only Particle/Lighting/Audio are
wired) -- confirmed via full-repo grep. Collision already works correctly via a
separate server-authoritative SetState wire message, independent of the animation
hook. This is feature-shaped rendering work (a per-part runtime alpha under the
mandatory N.5 bindless pipeline), not a quick fix -- filed for its own design pass.
Kept Issue188FadingDoorMotionTableInspectionTests.cs as a reusable MotionTable/hook
decoder for future "why doesn't this animate" questions.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The indoor GREY flap at a top-floor connecting room. The render portal side-cull
reconstructed each doorway's "interior side" (PortalClipPlane.InsideSide) from the
cell's AABB CENTROID. For a THIN connector cell (0xF6820118, 5 render polys), the
bounding-box center falls on the WRONG side of the 0118->0116 doorway, so the eye
read as a back-portal and the forward room 0116 was culled -> the aperture showed
the fog clear color = grey.
Retail's PView::InitCell (0x005a4b70) and acdream's own PHYSICS path
(CellTransit.cs:190) both read the explicit dat PortalSide bit ((Flags&2)==0)
instead of guessing from geometry. Port the render path (GameWindow.BuildLoadedCell)
to the same bit.
Proven by a live retail cdb trace (retail draws 0116 from the 0118 root at the grey
pose; tools/cdb/issue186-connector-decider.cdb) + an offline dat diagnostic
(Issue186...PortalSide_CentroidVsDatBit_AtGreyEye): the dat bit matches the old
centroid on every portal of these cells EXCEPT the one #186 breaks, so the switch is
surgical. Full regression green (App 741 / Core 2631); the CornerFlood + Issue113
dat-loading helpers updated to the same bit confirm every real Holtburg/tower/hall
cell floods identically. Touches neither PortalSideEpsilon nor the deleted
EyeInsidePortalOpening rescue (the two DO-NOT-RETRY traps).
Live-gated: user-confirmed no grey at any camera angle; probe shows 216 root=0118
frames, 0 still grey (0118->0116 now TRV, vis=4).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Root cause (live capture #3 + code): GameWindow's per-part landblock shadow
registration used a synthetic part-id `entity.Id * 256u + partIndex` that
OVERFLOWS uint32 for class-prefixed landblock ids (0x40/0x80/0xC0...). The << 8
drops the prefix byte, so different-class entities sharing the low 24 bits
collide on ONE shadow part-id and Register's deregister-then-insert silently
overwrites one entity's collision geometry. Landblock 0xF682 had 23 such
collisions incl. the stair runs (0xF6822100 <- {0x40F68221, 0xC0F68221}, ...),
so 3 mid-staircase steps rendered but had no collision -> the player floats into
the hole and the (faithful) PrecipiceSlide wedge fires = the 'invisible wall
half-way up the stairs'.
Fix (Option A, retail-faithful): register each multi-part landblock entity via
ShadowObjectRegistry.RegisterMultiPart under its UNIQUE 32-bit entity.Id
(retail CPhysicsObj::add_shadows_to_cells 0x00514ae0 -> CPartArray::AddPartsShadow
- one object, a part array; no synthetic per-part id). New testable builder
ShadowShapeBuilder.FromLandblockBspParts decomposes each MeshRef.PartTransform to
local pos/rot/scale; RegisterMultiPart reconstructs the identical world placement.
Building shells stay excluded (building channel); the Setup cyl/sphere path is
unchanged (runs only when entityBsp==0, retail BSP-xor-cyl dispatch). Despawn is
landblock-scoped (RemoveLandblock by cell prefix), so the id change is safe.
Tests: ShadowRegistrationOverflowTests (overflow arithmetic; old scheme drops one;
RegisterMultiPart keeps both; builder). Issue185OutdoorStairsSeamReplayTests
(dat-free clean-climb pin). Core 2629 / App 741 green, 0 warnings.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Collapse the two-path fork in RemotePhysicsUpdater.Tick: the former Path A
(grounded PLAYER remotes advanced by the interp catch-up with ResolveWithTransition
deliberately OMITTED, per the now-retired issue-#40 premise) is gone. Every remote --
player and NPC -- now runs the SAME per-tick catch-up + sweep + shadow-follows-resolved.
Retail's UpdateObjectInternal (0x005156b0) has no player/remote fork; this is the
faithful shape. Player remotes now get terrain-Z snap (no slope staircase), wall
collision, and MONSTER collision -- previously (Path A) they skipped ALL collision.
RETAIL PvP (adversarial review caught this): two non-PK players WALK THROUGH each
other in AC (you can stand inside another non-PK player) -- they do NOT de-overlap.
The remote-player mover now carries IsPlayer|EdgeSlide (mirroring the LOCAL player at
PlayerMovementController), so CollisionExemption's PvP block exempts a non-PK pair,
exactly as retail sets IsPlayer on every object's own transition (OBJECTINFO::init
0x0050cf30) and FindObjCollisions (pc:276812) exempts it. The first 2b draft passed
bare EdgeSlide and de-overlapped players (MORE solid than retail); the 3-lens review
flagged it. PK/PKLite/Impenetrable are not plumbed onto the remote mover yet -- the
same M1.5 gap the local player carries (TS-23, extended).
#40 proven dead in code (before the gate): PlayerVsMonster_DeOverlapsAndAbsorbsTheStallBlip
drives the real ComputeOffset -> InterpolationManager catch-up (incl. the fail_count
blip-to-tail) for a player mover converging on a monster and asserts de-overlap +
maxSpike<0.30 -- the sweep absorbs the stall-blip. ConvergingPlayers_WalkThroughEachOther
proves the PvP exemption (non-PK players pass through). Path B already ran the
#40-feared config stably; #40 (May 2026) predates the CSphere/#137/#170/#171 rebuild.
Placement (HIGH, review finding 3): the player UP routing gains the SAME placement-snap
backstop Slice 1 gave NPCs (AP-87). Without it a UM-first player (RemoteMotion seeded
to the spawn pos, then a first UP in a different cell) would sweep from a stale cell ->
garbage -> the digest's invisible/misplaced-player bug. The 4 m bodyToTarget guard +
!willBeDrTicked + dist>96 snap; near placed corrections still enqueue for smooth
catch-up. Also seed Body.Position=worldPos at UP-handler RemoteMotion creation
(mirrors the UM handler :5176) for the UP-first case.
Coupled shadow edits (research finding 9): RETIRED the players-only raw-worldPos shadow
sync -- now that players run the sweep + shadow-follows-resolved, the raw sync would
re-snap a packed player's shadow into overlap each UP. Player shadows follow the
RESOLVED body via the DR-tick loop + a new player UP-branch-tail SyncRemoteShadowToBody.
Surviving player/NPC split (AP-88): the omega -- grounded PLAYERS keep the
ObservedOmega-or-seqOmega world-frame (Concatenate) fallback ("rectangle when running
circles"); NPCs + airborne keep ObservedOmega-only body-frame (Multiply). They commute
for an upright body + yaw omega, so the fork is faithful.
Register: TS-23 extended (remote-player mover PK gap); AP-86 updated (raw sync retired
for players too, Where column fixed); AP-88 added (omega fork + eval-order note).
Tests: Core 2623 / App 741 green, 0 warnings. 3-lens adversarial review + per-finding
verification (10 agents); all 6 confirmed findings addressed (2 substantive: PvP mover
flags + player placement-snap; 4 doc/cosmetic).
VISUAL GATE (acceptance test) owed by the user -- NOTE the corrected expectation:
(a) a player remote on a hill -- no slope staircase;
(b) two packed player remotes -- they WALK THROUGH each other (retail PvP), NOT
de-overlap (this corrects the design's original "players de-overlap" gate);
(c) a player remote cannot stand inside a MONSTER (new: player-vs-monster collision);
(d) remote walk/run/jump/land/turn UNCHANGED.
Handoff: docs/research/2026-07-07-184-slice2-unify-extract-handoff.md.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Extract the ~690-line per-remote dead-reckoning tick out of the >10k-line
GameWindow.TickAnimations into a testable AcDream.App.Physics.RemotePhysicsUpdater
(Code Structure Rule 1). The guard in TickAnimations now calls
_remotePhysicsUpdater.Tick(rm, ae, dt, _liveCenterX, _liveCenterY); the
animation/render half stays in GameWindow.
Pure, behaviour-neutral refactor — the Path A (grounded player remotes skip the
sweep) / Path B (NPCs + airborne players run it) FORK is preserved verbatim inside
the new class. Slice 2b collapses it.
Mechanics:
- Moved into RemotePhysicsUpdater: the Tick body (verbatim), SyncRemoteShadowToBody
(now called back from the NPC UP-branch tail), ApplyPositionManagerDelta,
TickRemoteMoveTo, ServerControlledVelocityStaleSeconds, and the diagnostics.
- Injected as delegates (kept on GameWindow — they have callers outside the DR
loop): GetSetupCylinder (player cylinder + moveto/sticky radii) and
ApplyServerControlledVelocityCycle (also called from the UP handler).
- AnimatedEntity: private -> internal (matches RemoteMotion) so the extracted
class can take it by type.
Verified byte-exact: the extracted Tick body reverse-transforms (re-indent +8, undo
the 4 delegate/id substitutions) to diff-identical against the original block.
Behaviour-neutral: Core 2621 / App 741 green (unchanged), 0 warnings. No visual gate
(2a is structure only).
Handoff: docs/research/2026-07-07-184-slice2-unify-extract-handoff.md section 3.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The per-tick remote de-overlap sweep used a hardcoded HUMAN collision sphere
(0.48 m radius / 1.835 m capsule top) for EVERY creature, so large and small
monsters de-overlapped at human spacing (register TS-46). Retail seeds the
transition from the object's OWN Setup sphere list scaled by its wire ObjScale
(CPhysicsObj::transition 0x00512dc0 -> init_sphere(GetNumSphere, GetSphere,
m_scale); ObjScale from set_description 0x00514f40).
Slice 3 (one call site, no signature change): before the Path B ResolveWithTransition
call, read the creature's Setup-derived dims via the existing GetSetupCylinder
helper -- (setup.Radius, setup.Height) x ObjScale, the same source the local player
and the moveto/sticky radii already use, consistent with the spawn-time shadow
registration's entScale -- and pass them as sphereRadius/sphereHeight. Fall back to
the human capsule when GetSetupCylinder returns (0,0) for a shapeless / unresolvable
Setup (a zero radius would degenerate the sweep). The player call site is unchanged
(the player IS the human Setup). stepUp/stepDown stay 0.4 m (retail derives those
from the Setup too -- an adjacent divergence left as-is).
Big monsters now spread wider, small ones tighter -- the de-overlap distance tracks
each creature's true radius.
Test: RemoteDeOverlapMechanismTests.ConvergingLargeCreatures_DeOverlapWiderThanHuman
(an R=0.9 pair settles ~1.8 m -- materially wider than the human 0.96 m contact --
proving the sweep de-overlaps at the radius it is given). Register: narrows TS-46
(remotes no longer human-dimmed; residual = the two-scalar reconstruction vs retail's
sphere list, plus the 0.4 m step heights). Core 2621 / App 741 green.
Research: workflow wf_e8306250-21b (3-agent read-only sweep: acdream data source /
retail init_sphere reference / minimal-edit path).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Packed monster remotes interpenetrate in acdream but barely in retail on the same
ACE. Retail de-overlaps them CLIENT-side: it sweeps every remote creature every
tick against neighbours' LIVE resolved positions (the collision shadow == the
resolved m_position, re-registered every moved transition step), with the server
position a gentle catch-up target (CPhysicsObj::MoveOrTeleport 0x00516330), not a
hard-snap. The collision math was already faithful; the bug was the reconciliation
(hard-snap) + the movement model (synth-velocity) + a stale shadow.
A first attempt (reverted) enqueued EVERYTHING and left the shadow at the raw
server position — it gate-failed with invisible monsters (an unplaced body blipped
over a huge distance into the sweep -> garbage pos) and the player stuck on offset
shadows. This redo fixes both root causes, mechanism-proven in a Core test first:
- NPC UpdatePosition routes through MoveOrTeleport with a PLACEMENT-SNAP: the body
is snapped to the server pos when it is not already near it (first UP, no
Sequencer to consume the queue, >96 m, or |Body - worldPos| > 4 m); only near DR
corrections enqueue. This restores the body's placement authority (no invisible
monsters). Airborne keeps the authoritative hard-snap.
- Grounded movement drives the body from the interp CATCH-UP (ComputeOffset ->
InterpolationManager::adjust_offset, REPLACE dichotomy) instead of synth-velocity
(get_state_velocity / SERVERVEL); MovementManager::UseTime runs unconditionally.
- SHADOW-FOLLOWS-RESOLVED: after each tick's sweep the collision shadow is
re-registered at the resolved body (SyncRemoteShadowToBody), movement-gated
(|Body - LastShadowSyncPos| > 1 cm). The per-UP :5669 raw-pos sync is now
PLAYERS-ONLY, so an NPC's shadow is only ever written to its resolved body ->
neighbours de-overlap against resolved bodies, the spread PERSISTS, and collision
== render (no stuck-on-nothing). Landing clears the interp queue.
Preserved: airborne path, sticky #171 (gate + StickyManager overwrite of the seeded
frame), omega, the #173 bounce, landing, the node_fail_counter watchdog, and Path A
(player remotes, untouched -- Slice 2 unifies it).
Tests (RemoteDeOverlapMechanismTests): converging pair settles STABLE at 0.86 m
(barely overlapping = the retail look) WITH the shadow-sync vs <0.40 m (full
overlap) WITHOUT it; a third test drives the REAL InterpolationManager loop and
confirms the sweep absorbs the stall-blip (no pop-into-neighbour). 2-lens Opus
review (CONCERNS) addressed: movement-gated re-flood for the town-FPS risk;
players-only :5669; the blip-absorption test.
Register: retires TS-41 (SERVERVEL synth-velocity -> catch-up), narrows TS-44 (NPC
UP unified onto the interp queue; gate kept for orientation), adds AP-86
(shadow-follows-resolved impl) + AP-87 (MoveOrTeleport 4 m/no-Sequencer placement
snap). Known residual: the de-overlap sweep uses the human sphere for the mover, so
large creatures de-overlap at human radii (TS-46; Slice 3 plumbs Setup dims).
Visual gate PASSED (user: monsters visible + spacing much better). Core 2620 /
App 741 green.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Replaces PlayerMovementController's ad-hoc airborne-only reflect + Velocity.Z landing
snap with the verbatim retail chain: cached_velocity = (resolved-old)/dt (separate
reporting value), SetPositionInternal contact determination (kept Velocity.Z<=0 gate for
acdream's always-step-down resolver), then handle_all_collisions (fsf<=1 reflect / fsf>1
zero — the airborne-stuck bleed). Contact is committed BEFORE the reflect so the landing
gate isn't defeated by a reflected +Z; that ordering + the ungated small-velocity-zero
(Slice 1a) retire AD-25's micro-bounce spiral.
Load-bearing: handle_all_collisions + cached_velocity are gated on candidateMoved (retail
UpdateObjectInternal pc:283657 only reaches SetPositionInternal when the integrated
candidate moved off m_position). After fsf>1 zeros a blocked jump, the next frame
integrates zero motion (velMag2==0), so the candidate hasn't moved — skipping the response
that frame lets gravity rebuild the velocity instead of re-zeroing it and re-wedging.
End-to-end Core test (Issue182CrowdJumpTests): a jump blocked by an overhead creature
bleeds its +12 up-velocity to ~0 within a couple frames (fsf>1) and the body grounds on
the manufactured plane instead of hanging with persistent +12. Core 2617 / App 741 green.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Completes the TS-3 stub (the deferred 'full physics port'):
- ValidateTransition: the fsf increment/reset ladder + the fsf>=3 upward-contact-plane
manufacture (retail validate_transition 0x0050aa70 pc:272625-656; ACE Transition.cs:
1029-1061). Runs after acdream's fused contact block (structural adaptation preserving
the L.2.3c/L.2.4/A6.P3 contact-retention divergences), deriving retail's _redo as
cleanAdvance || OnWalkable — a grounded wall-slide is not a stuck-fall.
- The sweep-loop fsf early-out (retail find_valid_position pc:273745 / ACE :587): stop
as soon as fsf != 0, so a later advancing sub-step can't reset it in the same frame
(load-bearing — without it the counter never escalates across frames).
- ObjectInfo.MoverHasGravity gate (pc:272625).
- PhysicsEngine: seed ci.fsf from the body's Stationary* bits AFTER InitPath
(retail transition() pc:280940-947); writeback publishes body.FramesStationaryFall +
encodes the Stationary* bits (co-located with the fsf compute so the round-trip is
self-contained in Core; retail encodes in handle_all_collisions — register note).
Tests: FramesStationaryFallTests — an airborne jump wedged under an overhead creature
escalates fsf 0->1->2->3 and at fsf 3 manufactures the UP plane (grounded 'glide onto
the crowd top'); a grounded wall-slide never accumulates fsf. Core 2609/0.
Behaviour dormant in ordinary locomotion (fsf stays 0 unless a gravity mover is blocked).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Verbatim UpdatePhysicsInternal (0x00510700): the small-velocity-zero
(<0.25 m/s) fires unconditionally, not gated on OnWalkable (the old acdream
divergence) — gravity re-accelerates the same frame via the unconditional
v += a*dt. Adds TransientStateFlags.Stationary{Fall,Stop,Stuck} (0x10/0x20/0x40)
for the fsf round-trip, plus PhysicsBody.FramesStationaryFall and the separate
CachedVelocity field (retail's two-velocity model — reporting/DR only, never fed
to the integrator). All 1536 physics tests green.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Humanoid creatures/players collide as body Spheres (ShadowShapeBuilder emits
Sphere-type shadows for a Setup with Spheres + no CylSpheres), so player-vs-monster
crowd contact ran through Transition.SphereCollision — a hand-rolled 3-D wall-slide
(register TS-45), NOT a port of retail CSphere::intersects_sphere. It shaved no eps,
force-pushed each contact RADIALLY to a fixed combinedR+1cm shell, ignored the head
sphere, and always returned Slid. In a crowd the opposing radial de-penetration
pushes from neighbours fight each other -> the player wedges and can't wiggle free
(the user's live report).
Port the full CSphere family verbatim — dispatcher 0x00537A80 + step_sphere_up /
slide_sphere / land_on_sphere / collide_with_point / step_sphere_down — the direct
analog of the 2026-07-05 CCylSphere port (#172). The grounded slide now routes
through the shared crease SlideSphere (0x00537440, #116-Ghidra-confirmed) ->
tangential shuffle along the contact toward gaps, retail-faithful. isCreature
(target creature/missile) gates OFF the stand-on/land-on branches (2 & 5). ACE
Sphere.cs = readable oracle; pseudocode doc 2026-07-07-csphere-collision-family.
Retail-faithfulness verified: CTransition::validate_transition (0x0050aa70:272593)
reverts curr_pos on any non-clean-OK step, so a deep-mutual-overlap start wedges in
retail too — the realistic crowd-edge graze slides free (SphereCollisionFamilyTests
slide-around trajectory: player grazes a creature's SW, curves around its west side,
continues N).
TS-45 retired, AP-84 added (PerfectClip TOI dead in M1.5). Core 2603/0, App 741/0.
Pending user visual gate.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The former #143 flag forced every server-object light onto the D3D dynamic path (1/d attenuation, range x1.5); retail's stationary fixtures use the static calc_point_light curve (0x0059c8b0, Ghidra-verified: f=(1-d/range)*intensity*wrap/d^3 beyond 1m, range=falloff*1.3, per-channel colour clamp) - the dynamic path burned every Facility Hub lamp ~10x hotter than retail at 3m, producing the saturated magenta wash that zebra-striped normal wall geometry into the #176 'stripes/triangles' pattern (VSync-on test + clean captures characterized it as STATIC over-bright content, not flicker/tearing/camera). The shader's static branch already implements the verified curve faithfully (mesh_modern.vert pointContribution - its wrap constants pin LIGHT_POINT_RANGE=0.75), so the whole fix is the registration decision. Site-A lights are all stationary today (AP-44); genuinely moving lights re-earn isDynamic when they exist. Suites green.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The user's retail axiom (camera rock steady pressed into walls) vs our measured wall-press wander (~0.5mm/frame limit cycle, headless pin Issue181WallPressEquilibriumTests) sent us back to the decomp. Ghidra (clean, vs the BN x87 mush): retail VIEWERS subdivide the sweep into EXACTLY radius-length steps anchored at the start (offsetPerStep = offset*r/len, numSteps = floor(len/r)+1) with the final step recomputed mid-loop as the exact remainder (find_transitional_position 0x0050bdf0), and the negligible-offset abort is NON-viewer-only. Ours used ceil equal-slices for everything and aborted viewers too. Ported faithfully (pseudocode docs/research/2026-07-06-viewer-step-subdivision-pseudocode.md); non-viewer stepping already matched (TRANSITIONAL_PERCENT_OF_RADIUS=1.0).
Measurement: the wall-press limit cycle is UNCHANGED by the port (537.8um avg; a bit-exact 12-frame cycle: ~130um/frame inward creep x11 then a 2.6mm snap). With adjust_to_plane + adjust_sphere_to_poly now also Ghidra-verified faithful, the residual mm cycle is likely retail-class plateau physics - invisible at retail's 60fps vsync, tear-interleaved into visible stripes at our ~1500fps unsynced. The decisive user test: VSync ON (Settings/F11). Fallback discriminator: cdb-trace retail's viewer at a wall press. Suites green (Core 2600 / App 733 / UI 425 / Net 385).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
ApplyLoadedTerrainLocked registered every static Setup light per apply, and RegisterOwnedLight appends unconditionally. A landblock can RE-apply without an unload in between (#168 ForceReloadWindow, Far->Near promotion) and static entity ids are deterministic, so each re-apply stacked another copy of the same lights under the same owner - the [seam-ent] x2->x4 growth, invisible to the identity-keyed [seam-blk] probe (stacked copies share one owner identity while intensity multiplies). The wash intensifies over the session and the stacked exact-tie copies destabilize the 128-cap pool selection sort. Fix: UnregisterOwner(entity.Id) before the per-entity register loop - re-apply idempotent, first apply a no-op. The live-spawn path keeps its existing guid-dedup teardown (GameWindow:3134 -> :4679). Suites green.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The autonomous visual loop on the stateful-sought camera exposed the true
root of the #176 stripes: a ~19Hz SAWTOOTH. The sought re-extends ~3mm/frame
and the sweep silently passes while the 0.3m viewer sphere presses up to
~0.25m past the wall plane, then clips a whole transition step (~0.27m) back.
Headless replay against the real Facility Hub corridor BSP (0x8A020164, the
captured ray) reproduced it exactly: pre-fix, embedded targets passed
unclipped and the first detection stopped at the PREVIOUS STEP BOUNDARY,
tracking the target (eyeBack = s - 0.27).
Root cause: BSPQuery.AdjustToPlane - copied from ACE's BSPTree.cs port -
was structurally inverted and ALWAYS returned false (the touchTime==1 branch
re-placed the sphere at the unchanged check position; touchTime<1 iterated
doing nothing; the <0.02 convergence exit returned false). With the
PerfectClip exact-contact machinery dead, CollideWithPt always fell to the
bare Collided path and the transition reverted the colliding step whole.
ACE never noticed: PERFECT_CLIP (0x40) is a client camera flag the server
never exercises (feedback_bn_decomp_field_names class 3 - the retail binary
outranks ACE in branches ACE never runs). The pre-stateful camera flipped
1-step vs 2-step backoffs on mm drift - the measured pulledIn 0.27 <-> 0.53
of the original #176 strobe was step quantization all along.
Rewritten per the retail binary (pseudocode doc
docs/research/2026-07-06-adjust-to-plane-pseudocode.md):
- BSPTREE::adjust_to_plane (0x00539bf0): clearTime/hitTime bounds (0.0/1.0),
Phase 1 walks plane-touch times re-testing the whole tree (the tree test
feeds a DIFFERENT blocking poly back into the next iteration), Phase 2
binary-searches with the SHARED iteration counter, window < 0.02 =
CONVERGED, final commit = last known-clear time. Only failure = Phase-1
exhaustion.
- CPolygon::adjust_sphere_to_poly (0x00538170): early-out = plane-band test
at the START position (was: precise-poly test at the check position);
touch side = sign(dpPos)*radius (was: hard-coded -radius; ACE misdecoded
it as movement.LengthSquared() <= r^2); result unclamped per retail.
Replay pin Issue180CorridorSweepHysteresisReplayTests: short-of-touch
targets pass, past-touch targets always clip, and the clipped stop is the
CONSTANT surface-contact point (eyeBack 1.609 across the band; spread
< 0.03m) instead of tracking the target.
Suites green (Core 2600+2skip / App 729+2skip / UI 425 / Net 385).
Pending: visual-loop re-verify + the user gate (#180 + #176 re-gate).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The camera-collision sweep strobed the eye 0.27m every ~5-10 frames while
the compressed chase boom moved along corridor walls (pulledIn 0.27<->0.53
on ~1.4mm input drift): RetailChaseCamera re-demanded the FULL-length ideal
boom from scratch each frame, so the pivot->eye ray re-rolled the same
knife-edge r+-eps graze on the double-faced slabs every frame, and its two
first-contact solutions tear-interleaved at ~1700fps into the #176
"stripes/triangles".
Retail never re-rolls that ray. CameraManager::UpdateCamera (0x00456660)
interpolates FROM THE CURRENT SWEPT VIEWER toward the desired pose
(interpolate_origin/rotation, stiffness 0.45 x dt x 10, clamped) and the
result becomes viewer_sought_position (SmartBox::PlayerPhysicsUpdatedCallback
0x00452d60); update_viewer (0x00453ce0) sweeps pivot->SOUGHT. Pressed against
a wall the sweep ray extends one interpolation step past the contact
(sub-mm at high fps), so a bistable graze can move the eye by at most that
step - the strobe is structurally impossible. A 0.4mm/2e-4 dead-band parks
the sought exactly on the viewer when converged (0x00456fcd-0x00457035).
- RetailChaseCamera: _dampedEye -> _soughtEye + _publishedEye (retail's two
Positions); lerp base = the published (swept) viewer; sweep targets the
sought; total-fallback (ViewerCellId==0) resets the sought like
set_viewer(player_pos, 1). The old "collision must NOT feed back into the
damped state" comment had the coupling backwards - what stays clean is the
transient desired pose, not the sought.
- SweepEye untouched (faithful update_viewer port, exonerated by the #180
investigation).
- Tests: the old pin asserting instant full re-extension after a clamp
(the divergence itself) replaced with four retail pins: gradual
re-extension, sweep-target-converges-onto-contact, total-fallback
re-extends from the player, wall-press glide stability.
- Pseudocode doc: docs/research/2026-07-06-camera-sought-position-pseudocode.md
(UpdateCamera tail incl. the sought derivation + set_viewer reset semantics
+ Frame interpolate/close_rotation).
- Register: AD-37 (forward-vector nlerp vs quaternion slerp), AD-38
(init-at-full-extension vs retail re-extend-from-player) - both
pre-existing, identified during the decomp reading.
Suites green (Core 2599+2skip / App 729+2skip / UI 425 / Net 385).
Pending: autonomous visual verify + user gate (#180 + the #176 re-gate).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The #176 gate-2 failure ("stripes/triangles flickering when the camera
is pushed into walls; nothing when zoomed out") is NOT a render defect.
Isolation apparatus added this commit:
- ACDREAM_LIGHT_DEBUG shader modes (mesh_modern.vert/frag + uLightDebug
upload in EnvCellRenderer/WbDrawDispatcher): 1 = ambient-only,
2 = dynamics killed, 3 = raw vLit field (texture ignored). The
pattern SURVIVES mode 3 -> not texture; lives above the light data.
- ACDREAM_CLIP_DEBUG=1 (RenderingDiagnostics.ClipDebugNoShellTrim +
the EnvCellRenderer slot-fill gate): shell pass draws cells WHOLE
(retail's shape). Pattern survives -> the per-cell clip trim is
exonerated.
With every render suspect dead, an autonomous visual loop (synthetic
back-into-wall input + GDI window captures + the [flap-sweep] probe)
pinned the mechanism numerically: at a compressed moving boom the
camera-collision sweep is BISTABLE - consecutive sweeps with ~1.4 mm
input drift flip the first-contact solution 0.27 m along the boom
(pulledIn 0.27<->0.53, every ~5-10 frames, all 368k sweeps ok=True),
and at ~1700 fps unsynced every monitor refresh tear-interleaves the
two views = the stripe/hatch patterns. Filed as #180 with the retail
anchor: viewer_sought_position is STATEFUL (SmartBox 0x00452d75 feeds
the CURRENT swept viewer into CameraManager::UpdateCamera 0x00456660
and assigns the return to the sought, 0x00452d84) - the target
converges to the collided position instead of re-rolling the full
knife-edge ray per frame like our RetailChaseCamera does. SweepEye
itself ports update_viewer 0x00453ce0 faithfully and is exonerated.
Also recorded in #176: the site-A weenie light-registration leak (a
portal's I100 light stacked x2->x4 over one session as re-CreateObject
re-registered it under fresh entity ids).
The #176 lighting fix (d8984e87) remains live-verified; #176 re-gates
after #180 lands. ISSUES: #180 filed, #176 updated. Suites: Core
2599+2skip; toggles inert by default.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>