acdream/docs
Erik 4abd1b5eb7 fix(physics): AP-152 — dispatch collision shapes BSP-first, at emission and at the cell flood
The register row predicted "catching or stopping on a doorway sill". That
symptom could not have been occurring. `Transition.BspOnlyDispatch`
(TransitionTypes.cs:1348, landed 2026-05-25 as A6.P7) already skipped both
primitive branches (:3911, :3954) whenever the target's wire PhysicsState
carries HAS_PHYSICS_BSP_PS, and ACE sets that bit from CSetup.HasPhysicsBSP
for every affected Setup. The extra primitive was never tested for collision.

The live defect was CELL MEMBERSHIP. The same shape list feeds
`ShadowObjectRegistry.BuildFloodSpheres`, which had no such guard and
preferred Cylinders over everything whenever any Cylinder existed — retail's
SECOND priority applied ahead of its first. For the 73 CylSphere+BSP Setups
acdream therefore flooded shadow cells from the cylinder and never from the
slab: an object absent from cells it physically occupies, which is the
#98 / #168 symptom class, not the door-collision class the row named.

Retail, re-disassembled from the PDB-paired binary (v11.4186, CodeView GUID
9e847e2f-777c-4bd9-886c-22256bb87f32, check_exe_pdb.py MATCH) rather than
taken from Binary Ninja, which drops flag tests:

  CPhysicsObj::FindObjCollisions @0x0050f050
    0x0050f165  test dword [esi+0xa8], 0x10000
    0x0050f16f  je   0x50f1a2        ; clear -> primitive dispatch
    0x0050f18d  call 0x518180        ; CPartArray::FindObjCollisions
    0x0050f19d  jmp  0x50f2b0        ; UNCONDITIONAL, past BOTH primitive loops
                                     ; (CylSphere 0x50f1a2, Sphere 0x50f21d)
    0x0050f1d6  jae  0x50f317        ; CylSphere loop exhausted -> RETURN
    0x0050f22f  je   0x50f31b        ; zero Spheres -> RETURN seeded OK_TS

  CPhysicsObj::calc_cross_cells @0x00515230
    0x00515285  test dword [esi+0xa8], 0x10000
    0x0051528f  jne  0x515305 -> CPhysicsObj::find_bbox_cell_list @0x00510fc0
    0x005152d1  call 0x52b9f0        ; cylsphere branch, below the jump
    0x005152fb  call 0x52b990        ; sorting-sphere branch, below the jump

Priority at both consumers: BSP -> CylSphere -> Sphere -> nothing. BSP wins.
Every address above was resolved back to its symbol by exact lookup in
named-retail/symbols.json.

Changes:

* `ShadowShapeBuilder.FromSetup` gains a step-0 dispatch gate. Steps 1 and 2
  are skipped entirely when any part's EFFECTIVE GfxObj carries a physics
  BSP. The gate and step 3 now share one `EffectivePartGfxObjId` helper, so
  they cannot read different identities — a gate on `setup.Parts` would,
  after an ObjDesc swap, suppress the primitives while step 3 emitted
  nothing and `Build` returned null, deleting the entity's collision.
  Emission order is unchanged. This also removes acdream's undeclared
  reliance on the server sending the flag: the gate is derived from the
  parts, exactly as CPartArray::CacheHasPhysicsBSP @0x00518110 derives it.

* `ShadowObjectRegistry.BuildFloodSpheres` now applies calc_cross_cells'
  own order: BSP, else Cylinder, else everything. Given the gate above this
  is a no-op for every shape list acdream produces (FromSetup is now
  exclusive; both landblock-static publishers already emit homogeneous
  lists), so the measured membership delta remains attributable to the
  gate alone. It is kept for the same reason BspOnlyDispatch is kept: retail
  genuinely dispatches here, and it guards a future additive producer.

`Transition.BspOnlyDispatch` is deliberately untouched.

Register: AP-152 RETIRED with its four false statements corrected — the risk
statement (the symptom was already inert); "small and centred at the part
origin" (max primitive is 6.714 m, and 0x0200086E's sphere origin is
(0.759, 0.165, 5.842)); the cottage door's "~14 cm base Sphere" (it is
0.100 m; 0.141 is Setup.Radius, which AP-22 proved is never collision
geometry); and naming one pinning test where two existed. AP-153/154/155
filed: retail's dispatch flag is cached once at InitPartArrayObject+0x7e
where acdream's gate is live; the query-time guard takes a client-derived
flag off the wire; and the static publishers emit Setup Spheres as
height-capped Cylinders while BuildFloodSpheres approximates retail's
bounding box with bounding spheres.

Tests. Both pinning tests corrected, neither deleted:
`FromSetup_DoorSetup_ProducesFourShapes` -> `..._EmitsBspPartsOnly`;
`FromSetup_DoorSetup_SphereAtExpectedLocalOffset` re-hosted on
`_ => false`, the DAT-real configuration for the 3,605 Sphere-only Setups.
`FromSetup_ScaleFactor_MultipliesAllRadiiAndOffsets` was the campaign's
eighth green test covering nothing — its assertions sat inside
`if (CollisionType == Cylinder)` on a fixture with zero CylSpheres, so only
`Scale == 2.0f` ever ran. Proved empirically: with the sphere radius scale
deleted, the old body passes and the corrected body fails. Three new facts:
the effective-identity gate, the App-layer CylSphere+BSP registration (no
App fixture combined the two before), and the flood-set dispatch. One new
installed-DAT sweep pins 172 affected Setups (73 CylSphere+BSP, 99
Sphere+BSP) behind external bucket controls, re-measured independently and
agreeing exactly with the filing commit's separate sweep.

All eight sabotages run and reported; every discriminating fact reddens in
the intended direction and only there. Clean Release build after deleting
every bin/obj: 0 errors. Complete suite 11,203 passed / 4 skipped / 0
failed, +5 on the 11,198 baseline at ec29a732 — exactly the five added
facts, no new skips.

Blast radius, corrected: the FromSetup half is graphical-only (its sole
production caller is LiveEntityCollisionBuilder in AcDream.App, which
AcDream.Headless cannot reference — Headless -> Runtime -> Core/Content).
The BuildFloodSpheres half lives in AcDream.Core and DOES execute in
Headless via LandblockPhysicsContentBuilder, but is behaviour-neutral there
because both of that builder's registrations pass homogeneous lists.
Headless suite green at 89/89.

NOT yet gated live: this changes shadow-cell membership for 22 Setups used
by 151 Door weenies and 38 stationary props. Needs a connected session.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-08-06 14:51:36 +02:00
..
architecture fix(physics): AP-152 — dispatch collision shapes BSP-first, at emission and at the cell flood 2026-08-06 14:51:36 +02:00
audit docs: update audit — Sprint 1 items verified (sequence counters + scenery LCG) 2026-04-13 13:51:39 +02:00
plans docs: close the placement cutover ledger — #280 user-passed, remaining gates NOT RUN 2026-08-06 11:05:49 +02:00
reference docs(reference): preserve local ACE command catalog 2026-07-27 00:03:58 +02:00
reports docs: the overnight consolidation report, open questions first 2026-07-29 03:54:43 +02:00
research fix(physics): AP-152 — dispatch collision shapes BSP-first, at emission and at the cell flood 2026-08-06 14:51:36 +02:00
superpowers fix(world): remove non-retail portal exit fade 2026-07-15 23:20:52 +02:00
bugs.md docs: reconcile project status and navigation 2026-07-20 13:00:41 +02:00
ISSUES.md test(physics): settle #331 — the uphill "refusal" is the #137 anti-parallel absorb, not a defect 2026-08-06 14:08:22 +02:00
README.md docs: reconcile project state and refresh README 2026-07-27 12:53:31 +02:00

acdream documentation map

This page is the entry point for project documentation. It distinguishes current sources of truth from implementation history so an old plan or issue banner cannot silently override the current program state.

Current snapshot — 2026-07-27

  • Milestone state: M3, “Cast a spell,” landed 2026-07-21. M4, “Live in the world,” is active.
  • M4 gameplay program: resume the pre-M4 world-interaction completion program. Favorite-spell overflow, status Use/Assess, and the complete assessment surface are user-accepted. Equipped-child picking and vendor browse/transactions remain Slices 46.
  • Structural/runtime state: all eight GameWindow decomposition slices, Modern Runtime Slices AJ, and the connected visual/lifecycle gates are complete. GameWindow is a 1,622-line composition/callback shell. AcDream.Runtime.GameRuntime owns canonical session, entity/object, gameplay, movement, physics, projectile, environment, and portal state; graphical and no-window hosts borrow the same owner graph.
  • Headless state: Slice K is complete. AcDream.Headless is a presentation-free Windows/Linux host with deterministic commands/events, shared immutable content, multi-session isolation, reconnect, resource telemetry, and 1/5/10/30-session gates. The final two-account native-Linux soak completed ten minutes, logged out through ACE, and converged every ownership ledger.
  • Linux graphical state: Slice L0 and the L1 implementation checkpoint are complete at 66f114b2 and 11501d52. Native Windows passes the active modern-GL/audio/window smoke. WSLg X11/Wayland correctly reject their missing GL_ARB_bindless_texture. Physical-Linux validation and L2L6 are explicitly deferred; resume at the supported AMD/NVIDIA L1 gate.
  • Completed gameplay gates: R6 locomotion/collision/projectile/teleport/ radar, two-client portal-out/materialization, indoor prepared collision, loot ordering, local/remote ground drops, and selection-marker lifetime.
  • Separate visual verification: issue #225, the shared-alpha lifestone/particle result; its connected resource-lifetime and performance routes pass.
  • Carried behaviour debt: issue #153 (far teleport onto an unstreamed edge), #116 (narrowed slide response), #235 (capped/RDP jump cadence), and the active temporary-stopgap rows in the divergence register.
  • Divergence audit: 189 active rows — IA 18, AD 38, AP 91, TS 38, and UN 4 — plus retained struck/retired historical rows such as TS-37.
  • Latest automated baseline: the Release build succeeds with the 17 test-project warnings tracked by issue #228; 8,826 tests pass and five are intentionally skipped. App passes 3,763 / 3 skips. The L1 Windows supported smoke and WSLg X11/Wayland negative-capability reports all end with zero window/GL/input/audio ownership.

Sources of truth

Read these in this order when deciding what to do next:

  1. plans/2026-05-12-milestones.md — the active playable outcome, freeze boundaries, and visual gates.
  2. plans/2026-04-11-roadmap.md — strategic phase ledger: shipped, active, deferred, and future work.
  3. ISSUES.md — tactical defects and small follow-ups. The status inside an issue is authoritative; physical order is not.
  4. architecture/retail-divergence-register.md — every known place runtime behavior can differ from retail.
  5. architecture/acdream-architecture.md and architecture/code-structure.md — ownership, dependency, update-thread, and extraction rules.
  6. architecture/worldbuilder-inventory.md — rendering/DAT code already owned in-tree versus mechanisms still ours to port.

If these disagree, milestones control the current outcome, the roadmap controls work ordering, the issue status controls the individual defect, and the architecture documents control implementation shape. Reconcile the stale document in the same change; do not leave both claims standing.

Research and implementation records

  • research/named-retail/ is the primary retail oracle: named pseudo-C, headers, symbols, and types from the Sept 2013 build.
  • research/decompiled/ is the older Ghidra fallback.
  • research/ contains focused pseudocode, traces, fixtures, and gate reports. A dated research note records evidence; it does not become a new roadmap.
  • superpowers/specs/ and superpowers/plans/ are per-slice design and execution records. Completed plans remain historical.
  • audit/ contains completion and conformance audits.
  • reference/ace-commands.md preserves the local ACE server's complete in-game command catalog and points to the authoritative per-command help surface.

Durable memory

  • ../claude-memory/MEMORY.md indexes the live subsystem memories and the render/physics digests. Read a domain digest before changing that subsystem, especially its DO-NOT-RETRY table.
  • ../memory/ contains stable engineering references such as the modern rendering pipeline, two-tier streaming, and toolchain notes.

Memory accelerates recall; it does not outrank the canonical documents above. When current truth changes, update the relevant canonical document and distill only the durable lesson into memory.

Historical and deprecated documents

  • bugs.md is the April 2026 bug snapshot. It is preserved for archaeology and is not an active ledger.
  • Dated plans and specs describe the decision at that time. Their completion wording is historical unless the current milestone/roadmap explicitly links the item as active.
  • Old R1→R8 architecture sequencing is superseded. Current execution comes from the milestones and strategic roadmap.

Documentation maintenance rules

  • Update milestone, roadmap, issue, divergence, architecture, and memory claims in the same commit when a shipped change affects them.
  • Keep one issue ID per defect. Narrow an issue in place; do not reuse another issue's number as a shorthand.
  • Mark automated, connected, and visual gates separately. An automated pass is not a visual acceptance, and an RDP throughput sample is not a local-display visual comparison.
  • Preserve research history, but remove stale “current/next” claims from living documents once the state advances.