Records the measured before/after for Lane B (their pre-tension cascade is gone),
and flags that full bed coverage costing >=59 m2 is deliberate design rather than
a tuning miss — with an assert in both directions so nobody optimises the
tradeoff away by accident.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Also records the KeyboardInput.holding getter trap: assigning to it from a probe
silently no-ops and looks identical to broken interact wiring. Cost me a nearly
false bug report; Lane D needs it for the on-record §7 run.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
rake_pivot shipped as a childless empty, so rotating it moved nothing — and
rotating the whole GLB instead, which is the only alternative, tips the concrete
footing out of the ground along with the post. DESIGN.md makes raking away from
the load a player decision, so the handle has to actually work.
It now holds post + pad_eye + top_anchor, with footing left on the root: rake it
8° and the post leans while the concrete stays planted. Asserted both directions
in e.test.js — the head must travel over 0.3 m and the footing under 0.01.
Same class as the canopy bug, found the same way: by driving the handle in a
test instead of eyeballing the model. Exported dims unchanged.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Decision 3 doesn't clear its own 60% bar: measured against lane/c over 8
headings and the full 90 s, flat-horizontal is 34% of flat-pitched, not
>=60%. The downdraft is 0.3 of the GUST component only, so storm_02's
strongest is -4.5 m/s against a 32.6 m/s horizontal peak, and pressure
goes as v^2. Needs ~0.55-0.6, or a fraction of total speed.
Also flags for A: rig.step needs the 4th debris arg or crates fly through
the sail; and the cheap-rig cascade fires at t=0.4s from pre-tension on
the 192 m2 quad, which decision 2 fixes.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Stood in for world.shedTable and rig.repair/cornerPos in the live game and drove
the whole scenario through the real sim, real interact and real rig: take a
spare, carry it to a blown corner, hold to re-rig, spare consumed, corner back.
Lane D's half of gate 3 is done; the gap is two small seams, now specified with
working code rather than a request.
Selftest 136/0/0 across all five lanes (was 121) — no other suite moved.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Includes the controlled downdraft rebalance table for Lane B, the frozen
debris.pieces seam, and the garden-HP design question for Lane A (rain shadow
vs sun coverage).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
At gate 1 the ped walked straight through the house. Collision now stops it
0.30 m off the wall face (expected -9.70, measured -9.70), off trunks, posts and
the fence, and slides along a wall hit at an angle. Injected as opts.collide the
way groundAt already was, so player.sim.js stays zero-import and node-runnable.
Two things the real yard taught, neither guessable from the plan:
- `fence` is a GROUP of 37 child meshes whose combined box is the entire 30x20 m
yard, so one box per solids entry is useless. Flattened to 43 leaf boxes.
- the house ROOF spans y 2.99-3.21 and reaches 0.4 m FURTHER into the yard than
the wall under it (eaves overhang). A flat footprint test would stop a 1.7 m
person dead at an invisible eave, so every box is filtered by vertical overlap
with the body and the roof drops out on its own.
Boxes are built once (solids are static) and distance-pruned — no per-frame
raycast, which is the thing Lane A measured as catastrophic on the terrain.
The M3 pack is wired: carrying swaps locomotion to Carry/CarryIdle; an
interaction names its own verb through a new `clip` field on the interact spec
(Crank at a turnbuckle, PickUp at the shed table); StumbleBack fires on a gust
that breaks your stride but can't floor you — below knockWind on purpose, so a
storm reads as shoved → stumbling → floored rather than fine-fine-fine-flat.
TakeCover (hold C) became a real mechanic rather than a pose: brace and knockWind
x2.0, shove x0.25. A 38 m/s gale floors you standing and doesn't while braced;
let go in the same gale and you're down in half a second. It raises the bar, it
does not remove it — a big enough gust still wins, braced or not. So the storm's
answer to "the gusts are too strong to cross the yard" is now wait one out and
move in the lull, which is the repair-window language DESIGN.md already uses.
wireYardActions now reads sailRig.corners[i] live by index instead of capturing
the corner object — per Lane A's warning that attach() replaces the array, a
captured corner is one the sim no longer steps and would gate forever on a
`broken` flag that can never change again.
35 Lane D asserts, 0 fail (was 20). Carry/shelter/knockdown verified against the
real 17-clip pack in the assembled game, not only in the harness.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Also records what the assembly turned up for the other lanes: the rigSail() door
Lane B's picking adapter must come through, the knockdown(t, ...) argument order
that would have silently broken Lane D's get-up, and the evidence for Lane C's
dispose() light-restoration ask.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Flags for other lanes: load/rating are newtons now (HUD shows kN); the
yard's 7 anchors only admit 70-192 m2 quads when real shade sails are
20-50 m2; and flat-horizontal is currently the lowest-load geometry,
which inverts DESIGN.md's central shade-vs-survival tension and can't be
fixed inside sail.js.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
player.sim.js Deterministic core, zero imports: camera-relative movement, the
state-machine table, wind slow/gust-shove/knockdown. step(dt,t)
is the whole clock — no Date.now, no Math.random, no rAF — so a
storm fast-forwards identically in selftest and in the game.
player.js The view: rig load per the 90sDJsim DEVMANUAL rig rules
(SkeletonUtils.clone, height-normalise off the MEASURED head
bone, canonicalised bone namespace), clip retarget, and
createPlayer() satisfying the Player contract.
interact.js Hold-E with radial progress + wireYardActions (re-rig 2.5 s,
turnbuckle trim 1.2 s, carry-one-item), duck-typed so it no-ops
cleanly until Lane B lands sailRig.repair/trim.
d.test.js 20 asserts in Lane A's harness: 38 pass / 3 skip overall.
Ported from the 2D prototype's shape (game.js:250-252), retuned to m/s: the
slow curve, and shove gated to gusts only and scaling with speed² so gusts have
teeth. Knockdown needs 0.5 s of SUSTAINED overload — deliberately the same rule
as a sail corner letting go, so cloth and people speak one language.
Two decisions worth the review:
- The knockdown pitches the root in code rather than playing the Falling clip's
root. Shared clips must drop Hips.quaternion (a different-orientation source
lays the target flat), so a clip physically cannot lie the body down. Doing it
in code also lets the fall go DOWNWIND of the gust that caused it, which a
canned clip could never do, and keeps it deterministic.
- Gust magnitude is recovered from a slow EMA of local wind rather than widening
Lane C's contract: wind.sample() gives the total and gustTelegraph() only fires
BEFORE a gust, so nothing reports gust size during the hold. The EMA
self-calibrates to whatever storm JSON Lane C authors.
Verified in a real scene, not only in asserts: head bone 1.715 m at fig scale
0.983, all six clips bound, walk/run at the tuned speeds, the body lies down and
gets back up, hold-E fires exactly once per press.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Also corrects the worktree-collision attribution: the checkout that moved HEAD
off lane/a was mine, not Lane D's.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Replaces the skip stub with the checks Lane A's header asked for — every GLB
loads, is metre-scale with height on +Y, and keeps the nodes other lanes query
by name — plus anchor world-position and the garden bed's three damage states.
This catches what the Blender side structurally cannot: Blender exports
Z-up->Y-up and imports Y-up->Z-up, so a broken export_yup round-trips green.
A native glTF reader is the only thing that can prove the file.
GLTFLoader is imported dynamically on purpose. Three.js addons import the bare
specifier `three`, no page in the repo has an importmap yet, and selftest.html
turns an un-importable lane module into a hard FAIL — so a static import would
redden Lane A's merge gate over a harness gap rather than a real defect. It
skips with the fix instead, and lights up by itself once the importmap lands.
Verified behind a temporary probe first: 36/36 pass. Need logged in THREADS.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
PLAN3D §2's inventory was verified against the M1 Ultra, but we build on the
M3 Ultra, where several of those libraries are absent or moved. Records the
real paths and flags the gaps that block Lanes A and D, plus the node/anchor
contracts other lanes consume.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Lane D is working in the shared ~/Documents/shades checkout rather than its own
clone, so its git checkout moved HEAD off lane/a mid-session and Lane A's M0
commits landed straight on main. No damage this time, but two agents sharing one
HEAD and one index will eventually eat someone's uncommitted work.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
§2's paths were substantially wrong. Re-verified against the filesystem:
3D-STORE is at ~/Documents/Destroyulater/3D-STORE (its clean_glbs debris set is
real, just relocated), while 3D=models/, character_kit/, mixamo-fetch/ and FBX/
do not exist on this box at all. That last group is Lane D's whole animation
pipeline, so it's flagged loudly rather than quietly patched.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>