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type-two cc39478a6e M15 bruschetta capstone: roast → assemble → the sog finger-press, day 14 end to end
The multi-station order, on the proven bones. Cut the sourdough (M10) →
toast (M1) → roast the tomatoes (toaster generalized) → assemble (garlic rub,
topping point-set, sog clock) → serve. Judge groups The Bread / The Topping /
The Bench. Planning is the mechanic: the temperature clock drifts the two
cheeses on real service time.

What I built on top of the partial work (sims + judge criteria + lines were
already in place and good — kept them):
- Temperature clock WIRED (sim/tempclock.ts): TempClock armed on bruschetta
  days, steps every tick while timing; a per-perishable fridge/bench toggle UI
  (game.showTempToggle) that reads the judge's own readiness word live; a
  toggle costs 8s service (reopening the fridge has teeth). Ticket hints:
  "get the brie out now", "leave the parmesan in".
- Roast tomatoes WIRED: OvenView routed after the toast lands on bruschetta
  orders (kitchen.onPopped branch → enterOven). Browning Field reused, blister
  past 0.6, collapse to sauce past 0.9. oven_tray.glb is absent → loadProp
  catch-fallback to the procedural tray (graceful, as designed).
- Assembly scene BUILT (scenes/assembly.ts, new): own toasted garlic-rubbed
  slice; G rubs the clove (one-swipe coverage), 1/2/3 drop tomato/cheese/basil
  as a point set; ENTER serves. Distribution scored by Clark-Evans (the rind
  code, fed the topping list); balance by mass-per-area band.
- Sog clock: rate x wet-mass x moisture / thickness — the doorstop resists,
  the thin slice surrenders; the judge presses a finger ("It bends. Toast
  should not bend.").
- Day 14 order added; enterOven/enterAssembly/serveBruschetta follow the exact
  runNextPrep/enterPrep/enterJuice machinery. Scorecard grouped
  bread/topping/bench via judge()'s existing group path.
- Harness (src/dev.ts): t.roast(s,power), t.rub(passes), t.assemble({...}),
  t.sogWait(s), t.tempToggle(id), and t.bruschetta() happy path returning the
  full grouped stats.

Fixes to the partial work: judge.ts shadowed the `order` param with a local
`const order` (rename → groupRank; would not typecheck); oven.ts material
opacity access typed as Material|Material[] (cast once).

Tuning (measured headless — the pure sims run without three.js):
- assembly SOG_RATE 0.006 → 0.004: doorstop (0.31) under a normal wet load
  (5 tomato ~2.1) served promptly (8s) stays CRISP (sog 0.21); dawdled 30s goes
  soft (0.77); a thin slice (0.12) bends inside ~15s. The bakery loaf matters.
- assembly MASS_BAND [1.1,2.1] → [2.5,4.5]: the old band scored a normal build
  (5t+4c+3b = 3.82 total mass) as an off-band 0; the band now sits around a
  proper generous topping. Sparse ~1.3 reads bare, a heap ~6.6 slides off.
- roasting RATE 0.042 kept; comment corrected to the measured window (power 6:
  stalls wet to ~26s, blisters 28-36s, collapses past ~40s).
- brie softensInSec 80 (from partial work) kept: out at order start, spreadable
  by assembly.

VERIFY (dev build; run in the console):
  t.start(); t.bruschetta()
Expected (headless sim + live path):
  roast:        {mean ~0.70, blister ~1.0, collapse 0, score ~1.0}
  distribution: ~1.0   (Clark-Evans R ~1.25, evenly strewn)
  balance:      {mass ~3.82 in band [2.5,4.5], score ~1.0}
  sog:          {value ~0.21, word "crisp", score ~0.99}
  rub:          {coverage ~0.35-0.5, score ~1.0}
  temp:         {score 1.0 (brie taken out, parmesan left in)}
  bench:        ~1.0   (clean roast, no slump)
  grade A/S, total ~9

Sub-mechanic checks (after t.bruschetta up to the oven, or standalone):
  t.roast(26,6)  → mean ~0.56, blister ~0     ("under-roasted")
  t.roast(42,6)  → collapse ~0.69             ("collapsing to sauce")
  skip t.tempToggle('brie') → Temperature 0, worst "brie fridge-hard"
  thin slice + t.sogWait(15) → sog ~1.0, "it bends"

typecheck clean (tsc --noEmit), vite build clean. node_modules is a symlink to
the main checkout and is deliberately NOT committed (dir-only .gitignore rule
misses the symlink; staged the 12 source files explicitly).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-18 15:25:21 +10:00
.claude Drop accidentally-committed agent worktree pointer; ignore .claude/worktrees 2026-07-17 18:51:53 +10:00
public/assets M14 + juice routing merged; Stage 2 complete and gate-verified 2026-07-17 19:22:31 +10:00
scripts Mushrooms: three varieties for the prep bench, plus gen-assets machine fixes 2026-07-17 18:20:10 +10:00
src M15 bruschetta capstone: roast → assemble → the sog finger-press, day 14 end to end 2026-07-18 15:25:21 +10:00
.gitignore Drop accidentally-committed agent worktree pointer; ignore .claude/worktrees 2026-07-17 18:51:53 +10:00
index.html M0: scaffold — Vite+TS+Three+Rapier, slice sim core, asset pipeline 2026-07-16 21:16:18 +10:00
MASTERPLAN.md MASTERPLAN: toast to full service — six phases on the same bones 2026-07-17 18:30:38 +10:00
OPUS-BUILD-BRIEF-2.md M14 + juice routing merged; Stage 2 complete and gate-verified 2026-07-17 19:22:31 +10:00
OPUS-BUILD-BRIEF.md M0: scaffold — Vite+TS+Three+Rapier, slice sim core, asset pipeline 2026-07-16 21:16:18 +10:00
package-lock.json Mushrooms: three varieties for the prep bench, plus gen-assets machine fixes 2026-07-17 18:20:10 +10:00
package.json M0: scaffold — Vite+TS+Three+Rapier, slice sim core, asset pipeline 2026-07-16 21:16:18 +10:00
README.md M8: crunchy vs smooth, and the jar that separates 2026-07-16 23:03:57 +10:00
tsconfig.json M0: scaffold — Vite+TS+Three+Rapier, slice sim core, asset pipeline 2026-07-16 21:16:18 +10:00
vite.config.ts M0: scaffold — Vite+TS+Three+Rapier, slice sim core, asset pipeline 2026-07-16 21:16:18 +10:00

TOASTSIM

Bread goes in. You are judged.

A browser game about making toast, where the inputs are analog and the output is scored by a man who has been doing this for thirty-one years.

npm install
npm run dev      # http://localhost:5173

The loop

Order → toast → drawer → spread → verdict → next day.

  1. The ticket tells you what someone wants: how dark, which spread, how much, which utensil, and whether they'll tolerate burnt bits.
  2. The toaster has a dial and a lever and no timer. You go by smell.
  3. The drawer makes you find the right piece of cutlery in a tangle of similar ones — while your toast goes cold.
  4. The bench is where the game actually lives. See below.
  5. The judge scores nine criteria and has something to say about the worst one.

The mechanic

One control — the knife's angle (mouse wheel) — and three behaviours fall out of it:

angle contact what happens
flat wide, low pressure spreads — or tears the bread, if the spread is stiffer than the pressure you're allowed to make
steep narrow, high pressure scrapes spread back off, or lifts char off burnt toast
steep + fast, on bread with nothing left to take gouges

The trap: pressure comes from steepness, but past the scrape threshold a steep knife stops spreading. So a spread can demand more pressure than spreading mode can physically give:

situation yield angle needed scrape cliff at 0.62
fridge butter / cold toast 0.72 0.75 impossible
bench butter / cold toast 0.54 0.57 one click from disaster
fridge butter / fresh toast 0.36 0.38 fine
soft butter / fresh toast 0.16 0.12 dream mode

Cold toast with hard butter cannot be spread at any angle. The way out isn't technique — it's not dawdling in the drawer. That's why the drawer is there. The pressure gauge draws both marks so you can watch the gold sit past the red and understand exactly why you're losing.

Scraping is the other tension: it rescues burnt toast and wrecks evenness doing it (char 99.9% → 54.5%, evenness 0.029 → 0.226). The judge notices both.

And MITEY is its own skill: spread it on, then take almost all of it back off. He wants to see the toast through it.

Peanut butter comes smooth or crunchy, and both are natural — the jar separates while it sits. The oil rises; the paste underneath dries out. An unstirred first dip is a slick (flows at almost no pressure, goes on thin and shiny), the dips after it are grout (fights like cold butter). Swirl the knife in the jar — about two and a half circles — to mix it back, and yes, stirring costs time, and time costs toast warmth. The judge reads the mass-weighted mean and spread of the consistency that actually landed: oil 0.50 ±0.00 — just right versus oil 0.54 ±0.23 — slick here, grout there, because a slick strip and a grout strip average to "correct" and nobody eats the average. Crunchy additionally has chunks, and the chunks are judged like rind (below).

Marmalade adds a second axis: the rind. Bits drop off the blade per unit of stroke distance, so a dabbing knife makes a pile and a moving knife lays a trail — and because the shed rate scales with what's left on the blade, one dip can't cover the slice. The judge scores the scatter with the ClarkEvans nearest-neighbour index (R ≈ 0 one clump, 1 random, above 1 deliberately even) and quotes it on the card: a corner dab reads "one clump (R 0.24)", three well-placed dips read "evenly strewn (R 1.17)". Scraping picks rind back up, so a clump can be argued with rather than started over.

The bread

Same dial, same 18 seconds, four breads:

bread 4s 9s 18s char
white 0.22 0.54 1.08 93%
multigrain 0.20 0.52 1.06 92%
raisin 0.30 0.76 1.14 99.8%
sourdough 0.11 0.33 0.74 14%

Sourdough's water has to boil off before the crust can brown, so it stalls and then accelerates hardest. Raisin bread is sugar: it browns early and burns early.

How it's built

  • Vite + TypeScript + three.js, Rapier for the drawer. No framework; the UI is a DOM overlay over one WebGL canvas.
  • The slice is the whole game's canvas: an extruded loaf silhouette with four 128×128 scalar fields — browning, dryness, spread, damage — packed into one RGBA8 texture per frame and composited by a custom shader. Everything the player does writes a field; everything the judge reads is a statistic over one.
  • Cutlery is procedural on purpose. The drawer asks you to tell a dessert fork from a dinner fork, and that's only fair if the silhouettes are authored.
  • Physics: compound boxes, never trimeshes. Grabbing is a capped PD spring, so a snagged piece fights what's lying on it instead of tunnelling through.

Layout

src/
  core/     app + loop, input, seeded rng, 2D field, synthesised audio
  sim/      bread, slice (geometry/fields/shader), toasting, spreads,
            spreading (the star mechanic), cutlery
  scenes/   kitchen (toast + spread), drawer (rapier), judge, props
  game/     game loop, orders, judging rubric, the judge's lines
  ui/       hud, title, cutlery silhouettes
  dev.ts    dev-only harness — drives real gestures deterministically

Dev harness

The game is driven by mouse gestures over a 3D scene, which makes "does it work" hard to answer by inspection. In a dev build, window.__t drives the real code paths at a chosen dt:

__t.toast(10, 6)      // lever down, 10s at power 6, pop, land
__t.spread(9, 0.55)   // dip and raster the slice at 0.55 units/sec
__t.stats()           // every field statistic the judge will read

It's also the escape hatch for headless browsers that never fire rAF — everything calls app.step(dt) directly.

Assets

Every asset was generated on-device and free via MODELBEAST, and is reproducible:

./scripts/gen-assets.sh        # fixed seeds; skips anything already present

flux_localbg_remove_localhunyuan3d_mlx. The judge's five expressions are one fixed seed and one fixed description with only the expression phrase varying, which is why he stays the same man while his face falls.

The toaster is procedural rather than the generated GLB — it needs a lever we can actually drive, and a dial that turns.