Read the authored meter direction instead of inferring it from the combat element id, so the bright charge texture grows left-to-right from Speed. Keep the user-approved dark-red middle baseline visible independently and record its exact retail Recklessness visibility edge.
Co-Authored-By: Codex <codex@openai.com>
Preserve the authored gray track, trained-Recklessness range, live bright charge meter, and independent desired-power thumb while keeping Speed and Power over gray side regions. Correct retail text justification value 2 to left alignment and retain direct RenderSurface decoding in the texture inspection tool used to verify the assets.
Co-Authored-By: Codex <codex@openai.com>
Make the retained toolbar consume retail's payload-free selection notice from canonical live state so a reentrant Auto Target replacement cannot be erased by the outer clear. Restrict automatic acquisition to the requested hostile non-player monster policy and record the intentional PK edge divergence.
Co-Authored-By: Codex <codex@openai.com>
Replace the door-specific static-animation seed with one retail description-then-enter-world initializer shared by normal and reactive spawns. This preserves authoritative Dead and On/Off states, prevents replacement corpses from returning to Ready, and pins the lifecycle with Core and App tests.
Co-Authored-By: Codex <codex@openai.com>
Keep the velocity-only NPC adaptation inside the locomotion family so authoritative Dead motion remains persistent. Route selection clears through a dedicated combat target controller that reacquires the closest eligible creature when retail Auto Target conditions apply.
Co-Authored-By: Codex <codex@openai.com>
Keep AttackDone control statuses out of chat, preserve dead motion across zero-velocity position updates, render the authored power meter from right to left, and retain the rotatable viewer offset during target tracking.
Co-Authored-By: Codex <codex@openai.com>
Port ClientCombatSystem's Keep in View consumer through CameraSet's pivot-to-target boom heading, including the transformed half-metre target offset and melee/missile validity gates. Preserve the existing stateful chase damping and collision architecture, with conformance coverage and named-retail pseudocode.
Co-Authored-By: Codex <codex@openai.com>
Resolve authored StringInfo labels from local.dat, port gmCombatUI's runtime option captions and checkbox widgets, and bind horizontal scrollbar media by retail structural roles so the green power jewel is a thumb instead of a tiled track. Persist the three combat options and make Auto Target govern target acquisition.
Co-Authored-By: Codex <codex@openai.com>
Mount authored gmCombatUI, share one press/hold/release request state machine across DAT buttons and keybindings, and recover the exact 1.0s/0.8s power timing from matching retail x86. The same timer fixes jump charge, while ready-stance, response queueing, auto-repeat, layout binding, migration, and conformance coverage keep behavior architectural rather than panel-local.
Co-Authored-By: Codex <codex@openai.com>
Route accepted non-autonomous local UpdateMotion state through retail's wholesale interpreted-motion funnel, so ACE-selected melee and missile actions use the normal motion queue and action-stamp gate. Share nullable wire conversion with remotes and remove the local direct command replay.
Co-Authored-By: Codex <codex@openai.com>
Resolve stacked thrown weapons versus separately equipped missile ammo exactly like gmToolbarUI, normalize a zero stack to one, and refresh the authored missile indicator from equipment and stack events. Keep the decision in pure Core with retained and real-DAT conformance coverage.
Co-Authored-By: Codex <codex@openai.com>
Discover all seven panel launchers from their DAT panel-id attributes, route mounted panels through event-driven retained window state, and ghost unavailable panels. Port Use and Examine selection/target behavior with exact Appraise dispatch and retail cursor modes.
Co-Authored-By: Codex <codex@openai.com>
Resolve and sample retail's authored nine-color paperdoll click map, preserve local click coordinates, and select the stable highest-priority worn item with the player fallback. Keep targeted-use body clicks routed to self and pin both synthetic and live-DAT conformance.
Co-Authored-By: Codex <codex@openai.com>
Parse and route the complete 0x0264 guid/fraction/valid response, send exact 0x0263 item-mana queries, and reproduce retail meter visibility plus guid-zero cancellation for mana and health selection changes. Keep the behavior in Core state and the retained selected-object controller with wire/state/UI conformance coverage.
Co-Authored-By: Codex <codex@openai.com>
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>
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>
Attached cdb to live retail (PDB MATCH), broke on PView::DrawCells (0x005a4840),
dumped cell_draw_num + cell_draw_list cell ids + the eye
(Render::FrameCurrent->viewer.viewpoint) while descending the Facility Hub spiral.
Retail's flood is dynamic and IDENTICAL in character to ours: from the spiral cells
it swings num 3->27 with gaze and collapses to 3 cells at many poses (cam=015d ->
{015d 015e 015f}). Our flood does the same (3->43). So retail does NOT keep the
staircase where we drop it -- the flood is exonerated as the cause.
Session trail (all in ISSUES #177): ruled out lighting, membership, camera coherence,
the collision sweep, the 0178/0182/0183 handoff cells, and edge-on eye-in-opening
(fix#1 shipped -> visual-gate-failed -> reverted, PortalVisibilityBuilder + AP-86 both
restored exactly). Freshest un-chased lead: the steps are STATIC objects (GfxObj
0x010000DE x6/cell) drawn via the viewcone cull, not cell shell.
Adds: Issue177StairDescentCameraFloodTests (real-camera+flood + composition +
flood-depth characterization pins) and a reusable retail-cdb capture toolchain
(tools/cdb/pview-verify.cdb, pview-spiral2.cdb with the correct top-level-qd detach --
qd in a CONDITIONAL bp action does NOT fire and strands cdb attached).
No production code change (fix#1 reverted). PARKED per user; M1.5 critical path next.
Co-Authored-By: Claude Opus 4.8 <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>
Diagnostic_FlappingCellViewRegion_SliverOrLarge: at the flap pose the admitted region is one degenerate triangle (ndcArea ~0), and ClipPlaneSet.From handles degenerates correctly (area<1e-7 -> Empty) - the cell's own gated geometry costs ~zero pixels either way. The a7 pseudocode CORRECTION-2 re-read kills the flood-scoped-lights framing (the pool is already resident+player-anchored since d8984e87). Remaining suspects: per-cell light-set SSBO slot assignment (SelectForCell) or the seal/punch assembly keyed to the drawn-cell list. Next instrument: parked ACDREAM_PROBE_SEAMDRAW=1 run, diff the washed cell's [seam-blk] applied-set lines between vis=31 and vis=32 frames. ISSUES #181 + render digest updated.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Issue181VisFlapReplayTests: headless flood replay at the live parked pose names cell 0x8A020181 - +-0.5mm eye perturbations flip its admission (at yaw15/pitch-20 for every direction). Issue181CameraParkStabilityTests: the camera loop parks BIT-EXACT with static inputs (0.00um over 2000 frames) - the live ~1mm/frame wander is the wall-press equilibrium (sought steps a*gap ~4mm into the wall per frame, the clip lands within adjust_to_plane's parametric 0.02 window; player physics bit-frozen per [resolve]). That wobble is retail-class. The defect is OURS: the A7 adaptation scopes light application to the camera flood's per-frame admission, so a sliver cell flapping flips whole lit regions; retail computes light reach once at registration (Render::add_static_light -> CObjCell::add_lights), camera-independent. Fix direction: registration-time per-light reach sets via the portal graph (pseudocode docs/research/2026-07-06-a7-per-cell-lighting-pseudocode.md). ISSUES #181 updated with the full chain.
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 dungeon render pair (purple seam flash + stair pop-in) resisted
desk root-causing, but the investigation narrowed the space to two
live theories and shipped permanent apparatus:
- Issue176177DungeonSeamInspectionTests: dat truth — corridor floors
ARE textured drawn PortalSide portal polys; the reciprocal is NoPos;
the 'stairs' are 0x8A020182's ramp shell (vertical portals, zero
statics); CellBSP partitions exactly at portal planes; DXT1 textures
carry zero transparent-mode texels.
- Issue176177FacilityHubFloodReplayTests: production-matched flood
replays — approach/descent/gaze-sweep/walk all healthy with coherent
inputs; ScenarioE pins the flood's collapse-to-root sensitivity under
incoherent (root, eye) pairs.
- Issue176177SeamTransitLagTests: the resolver flips cells within one
tick-step of the portal plane — the 0.33-0.47m [cell-transit] 'lag'
in the gate logs is speed*tick quantization, not membership error.
Refuted (do NOT retry — ledger in the research doc): placeholder
texture, reciprocal z-fight, seal z-fight (seals only fire for
OtherCellId==0xFFFF), root/eye incoherence (production camera sweep is
mm-exact at planes), flood bistability, #119-class statics, undefined
DXT mips (both paths decode DXT->RGBA8; the compressed-array branch is
dead code), DXT1 alpha, fog mix (ramp ~538m), lightning leak (flash==0
in production), viewer-light pops (smooth (1-d/range) ramp).
Filed #178 (A8 double-sided shell stopgap still live) and #179
(lightning flash lacks an indoor gate — dormant). The purple can only
be the fog clear color (undrawn pixels) or the outdoor ambient+sun
tint; discrimination needs ONE probe launch (ACDREAM_PROBE_LIGHT +
ACDREAM_PROBE_PVINPUT + ACDREAM_PROBE_CELL) — protocol in
docs/research/2026-07-06-176-177-render-pair-investigation.md.
Suites: Core 2587 / App 719 green.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Three review finds, all in the runtime-toggle path or edge math (the
steady-state path was confirmed correct):
1. GPU stale-slot across toggle-off/on: the disabled branch now
Disposes the GpuFrameTimer (and nulls it) instead of Stop()-ing and
keeping it — a kept instance would poll slots left pending from
BEFORE the pause on re-enable and report temporally stale GPU
samples. The re-enable branch's existing null guard rebuilds the
ring fresh. Dispose is safe there: the branch runs at the top of
OnRender with the GL context current.
2. Stale stage accumulation across mid-stage toggle-off: a StageScope
disposed after the flag flips still calls EndStage, leaving a
partial delta in _stageAccumTicks. The re-baseline branch now
Array.Clear()s it alongside the GC re-baselining.
3. FrameStatsBuffer.Max() seeded with 0, clamping all-negative windows
(the alloc channel can go negative if the boundary ever crosses
threads) and disagreeing with Percentile(). Now seeds from the
first live sample after the empty check (slots [0.._count) are
always the live window regardless of ring wraparound); empty still
returns 0 to match Percentile. TDD: Max_AllNegative_ReturnsTrueMax
failed (returned 0) before the fix, passes after.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The plan's FormatReport_IsInvariantAndComplete test ends with a
DoesNotContain(",0") guard (after stripping the gc=3/1/0 token) proving
the formatter emits period decimals regardless of the host culture.
It was dropped in the Task 3 commit; restored verbatim. Passes as-is —
FormatReport already uses CultureInfo.InvariantCulture throughout.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Permanent frame profiler: FrameBoundary() at the top of OnRender measures
CPU frame time (swap-to-swap delta), brackets the frame in a GpuFrameTimer
TimeElapsed query (self-disabled under ACDREAM_WB_DIAG=1), and samples
per-frame allocated bytes + GC collection deltas. BeginStage(FrameStage)
scopes attribute CPU time to Update/Upload/ImGui. Emits one [frame-prof]
report line every ~5s while RenderingDiagnostics.FrameProfEnabled is on;
zero-cost stage scopes when off. Report formatting is a pure static
method, unit-tested for invariant-culture formatting and the gpu=off
fallback text.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>