Review: 5/5 lanes pass, 238/238, tsc clean. Verified live: scram duty-cycling with tanks covering (zero brownout), shipment stamps, strain fever 0.824. Found 1 real bug in review: UI BROWNOUT banner fires on covered deficit (topstrip.ts:66) - ordered. Contracts v4: research (lab kind, setResearch, ResearchState, researched event), SelectionState protocol (kills __remove sentinel, main.ts owns remove dispatch), accent?, coolRadius? (spatial cooling), bandwidth.capacity?, save/load hardened, heat ruled GROSS (net = heat - cool). tsconfig now typechecks data/ (DATA's proof). Orchestrator patched lab entries into exhaustive kind maps (my breakage, my fix). Rulings: pathspec-commit rule after 3 shared-index collisions (worktrees = named escalation); bloom escalator reading accepted; UI ?uidemo + SCREEN boredom approved. Codex: docs/FKTRY_LORE.md grew §10 THE COMPOSITE SEAM - keying/transparency artifact family from the Corridor Crew compositing history + our corridorkey-mrp-mlx (which doubles as a PYXLFK ground-truth artifact factory). DATA transcribes it round 4. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
391 lines
27 KiB
Markdown
391 lines
27 KiB
Markdown
# LANE-SIM — deterministic factory simulation
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You are an Opus 4.8 executor on the SIM lane of FKTRY. Read `../MASTERPLAN.md` and
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`../CONTRACTS.md` before anything else; the world bible is `../../docs/FKTRY_LORE.md`.
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**Mission:** the headless, deterministic heart of the game. Grid, entities, belts,
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recipes, power, events. If the renderer were deleted, your sim should still be fully
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playable through unit tests. You are the lane the other four trust with their lives.
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**Owned paths:** `src/sim/**` (including your tests: `src/sim/*.test.ts`).
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**Never touch:** contracts, main.ts, other lanes, data JSONs (request changes via NOTES).
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**Standing rules (all rounds):**
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- Deterministic: seedable RNG (write your own mulberry32-style helper), no wall-clock,
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no unseeded Math.random. Same seed + same commands = identical snapshots.
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- Every mechanic lands with tests. `npm test` green before you write NOTES.
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- Performance target: 1,000 entities + 5,000 belt items at 30 tps without heroics.
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Prefer flat arrays and index maps over object soup. Don't allocate in the tick loop
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when avoidable.
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- Snapshot may reuse buffers, but its SHAPE must always match `SimSnapshot`.
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---
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## CURRENT ORDERS — Round 4 (goal: M3 "DEPTH" — research, spatial heat)
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Round 3 review: the worst-case power sizing ("a test that passes on a coincidence is
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worse than one that fails") and the counter-current bloom discovery are the two best
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engineering notes anyone has filed. Verdicts: **heat semantics RULED as you asked** —
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gross, net = heatPerTick − coolPerTick, now a contract comment and a DATA validator
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rule. **Bloom loop: the escalator reading is ACCEPTED** — your wafer-bus circle IS the
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mechanic; the codex line stays as lore-poetry. **Git: pathspec commits are now a hard
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rule in MASTERPLAN** (your option, chosen over worktrees for now — worktrees are the
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escalation if it recurs). save/load hardened in v4 as you offered. commissionQueue
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aliasing documented in CONTRACTS. Your perf-noise honesty is noted — a headless
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benchmark is a good M4 item, not now.
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1. **Research v1 — the round's centerpiece.** Contracts v4: `kind:'lab'`,
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`{kind:'setResearch'}`, `snapshot.research` (`ResearchState`), `researched` event.
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Labs consume science packs from their input toward the active tech's `cost`;
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totals met → `researched`, unlocks apply. Gating rule (in CONTRACTS v4 notes): ids
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appearing in any `TechDef.unlocks` are locked — `place`/`setRecipe`/`setRecipeAt`
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for locked ids are silently dropped; everything unreferenced is free. Multiple
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labs stack. save/load carries research. Tests incl. a full unlock path against
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DATA's real tech.json.
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2. **Spatial cooling** — `coolRadius` (v4): a machine with it applies its
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`coolPerTick` to machines within chebyshev range of its footprint (stacking = sum,
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cap total cooling at your call, note it). The ASIC COOLER finally means something;
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DATA activates numbers in coordination.
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3. **Export your tuning constants** (`src/sim/constants.ts`: throttle/restart
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thresholds, default cooling, etc.) — DATA's tests currently hand-copy them and go
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stale silently; let them import truth.
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4. **Reference factory v4**: add an anchor-slab overflow tap → uplink so the demo
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ships slabs (UI's SANITISING + the buyback fiction become visible in `__fktryDemo`
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without surgery — they had to demolish your assembler to see it). Keep the 20k
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regression green; a lab + a research run in the reference build would be ideal
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but is optional if layout pressure fights you.
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5. **Fixture hygiene**: `commissionQueue` hardens to required in v5 — make sure your
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snapshot literal always carries it (you already publish it live).
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**Definition of done:** research provable end-to-end in tests (place lab → feed packs
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→ unlock → previously-dropped place now succeeds); cooler aura demonstrably extends a
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decoder's duty cycle; constants exported; reference factory ships slabs.
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---
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## NOTES (append-only log, newest at bottom — template below)
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```
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### Round N — YYYY-MM-DD — [your model]
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SHIPPED: what actually works now (verified how)
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DECISIONS: choices you made inside your mandate
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BLOCKED/BROKEN: anything not working, honestly
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CONTRACT REQUEST: (if any)
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PROPOSAL: (ideas for the orchestrator, optional)
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NEXT: what you'd do next round if asked
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```
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### Round 1 — 2026-07-17 — Opus 4.8
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SHIPPED
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- The stub is gone. `src/sim/` is now grid + placement, belts with back-pressure, crafting,
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bandwidth/brownout, shipping and commissions. Files: `index.ts` (the sim), `geom.ts`
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(grid math), `rng.ts` (seeded mulberry32), `sim.test.ts` (18 tests).
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- Verified three ways, not one:
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1. `npm run check` clean; `npm test` 70/70 green across all lanes (18 are mine).
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2. Live at localhost:8150 (another session's dev server — see BLOCKED). App boots, zero
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console errors. My numbers are visibly driving other lanes: the UI bandwidth readout
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showed `9 DRAW / 20 GEN` for an ASIC + extractor + 4 belts + uplink, which is exactly
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my power math; the fax panel reads my `activeCommission`/`commissionProgress`.
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`__fktryBus.dispatch(...)` places entities and they render.
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3. Ran the sim in the real browser engine by importing `/src/sim/index.ts` in the page:
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the M1 chain shipped its first MELT at **tick 1149**, commission `first-taste` closed
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at tick 1149 — the identical tick Node produces. Determinism holds across engines.
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- Perf (measured in-browser, not estimated), against the 1,000 entity / 5,000 item target:
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- 1,245 entities + 2,436 belt items → 0.138 ms/tick (242× realtime)
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- 3,500 entities + 6,820 belt items → 0.418 ms/tick (**80× realtime**)
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DECISIONS
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- **Output-belt routing by rank — the big judgement call, please review.** A machine picks
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which adjacent belt to hand an item to by tracing the belt chain to the machine it ends
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at (cached; invalidated on any place/remove/rotate/setRecipe): rank 2 = that machine
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consumes this item, 1 = it's an uplink (takes anything), 0 = dead end or loop (accept, so
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a half-built belt still fills instead of looking broken), -1 = it will never take this
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item, so refuse. It never falls back to a worse rank just because the best belt is
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momentarily full. Why I did this: with no splitters or inserters, the demuxer's three
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outputs (luma / slurry / mv-flux) have to leave one 2x2 perimeter toward three different
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machines. Without ranking, items land on the wrong lane and wedge it permanently — M1
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cannot flow at all. This is routing intelligence the orders didn't ask for; it's also the
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root of the deadlock below. If you want it gone, splitters have to land first.
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- Belt spacing is enforced *across the tile seam*: a blocked front item holds station 0.45
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behind the rear item of the next belt rather than bunching at the boundary.
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- Pause freezes sim time (`tick` stops advancing) but commands still apply — you can build
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while halted. `tick` is sim-time, not wall-time.
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- `jammed` reports only `'output full'`, edge-triggered (one event per stall, not per tick).
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Starvation is not flagged — see PROPOSAL 3.
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- Power: a negative recipe bandwidth adds to **gen** rather than subtracting from draw, so
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the brownout multiplier stays `gen/draw`. Tested: the quantizer visibly pays for itself.
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- Extractors mine anywhere — there is no seam map in `data/` yet.
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- Tests assert against the recipe defs instead of hard-coding yields. This is deliberate:
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my first pass hard-coded `demux-ore` and broke the moment LANE-DATA shipped. Mechanics are
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mine to pin down; the numbers are theirs to move.
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BLOCKED/BROKEN
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- **My round-1 definition of done no longer exists.** The orders say place
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extractor→demuxer→quantizer→mosh→shipper and watch melt climb. LANE-DATA's codex
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transcription landed mid-round and the mosh reactor now eats `gop-crate`, not coefficient
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packs. MELT is now **eight machine types** deep (ore→demux→{luma→quantizer→coeff;
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slurry→subsampler ×2→chroma-420}→DCT press→anchor slab; mv-flux→p-caster→delta wafers;
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→GOP assembler→mosh). I rebuilt against the real graph and it *does* ship melt (tick 1149,
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verified above) — but "the whole fantasy in miniature" is now a ~50-entity build, not a
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6-machine demo. Your call whether M1's demo target changes or DATA adds a starter recipe.
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- **The M1 factory deadlocks permanently at ~tick 1200**, after 4 GOP crates / 12 melt.
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This is not a mechanics bug — I probed it for 6000 ticks. Luma and coefficient packs
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structurally overproduce (demux yields 2 luma/craft; the press is chroma-420-limited so it
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only burns 6 coeff per ~180 ticks), and the press also jams on surplus anchor slabs (the
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GOP assembler needs 1 slab per 6 delta wafers). Surplus has nowhere legal to go: my rank
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rule forbids diverting a rank-2 item to a rank-1 uplink even when the preferred belt is
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wedged. So the press jams → quantizer jams → demuxer jams → mv-flux stops → the p-caster
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starves and the assembler sits at 5/6 delta wafers forever.
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- The graph *is* solvable today without new code: a second quantizer on `quantize-crime`
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drains surplus coeff into bricks, and a second assembler on `assemble-gop-i-only` eats
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surplus slabs (8→crate). My demo build is just naive. But note a player currently
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**cannot void surplus to an uplink**, which is the first thing a Factorio player reaches
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for. That's the cost of the rank rule.
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- `splitter` (`lane-splitter`) and `buffer` (`buffer-tank`) now exist in machines.json; they
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place and draw power but do nothing. Not in my orders — flagging so nobody thinks they work.
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- `heat` is always 0, `bandwidth.stored` always 0 (M2 / buffer tanks).
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- Port 8150 is held by another session's dev server, and the harness won't start a second one
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for this project. I verified against that server read-only. Note for whoever plays the
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build in a Browser pane: the tab reports `visibilityState: hidden`, so rAF is paused and
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the sim crawls (~9 ticks per screenshot). That's the pane, not the loop — importing the sim
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module directly in the page runs it at ~96k ticks/sec.
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CONTRACT REQUEST
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- None. `contracts.ts` covered everything I needed this round.
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PROPOSAL (yours to call, not mine to take)
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1. **Splitters next.** `lane-splitter` with round-robin plus a priority/overflow output is
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the canonical Factorio answer to the deadlock above, and it unlocks byproduct sinks and
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the bloom-loop topology later. This is the one I'd pick.
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2. Alternative, ~5 lines: allow a lower-ranked belt when every preferred belt is full *and*
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outputBuf has hit the stall threshold. Cheap, but it makes byproduct management automatic
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and quietly deletes a core Factorio tension — a gameplay decision, so I left it alone.
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3. `jammed: 'starved'` for idle-with-no-input would let the inspector tell "backed up" from
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"waiting". Cheap, but it's UI-visible, so it's LANE-UI's business as much as mine.
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4. Extractors should require a seam tile — needs a seam/ore map from DATA and a worldgen call.
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NEXT (round 2 if asked)
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- `lane-splitter` with priority/overflow; `buffer-tank` feeding `bandwidth.stored` to smooth
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brownouts.
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- Heat: accumulate per craft, throttle >0.7, scram at 1 (the software decoder's whole bit).
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- Save/load — `SimSnapshot` is already the right shape to serialize.
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- A worked, deadlock-free reference factory you can paste into the console to demo M1.
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### Round 2 — 2026-07-17 — Opus 4.8
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SHIPPED
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- **Reference factory** (`src/sim/reference.ts`, `referenceFactory(data)`): 114 commands,
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110 entities. Ships its first MELT at **tick 1247** and is still shipping at 20,000 —
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6–15 melt per 2,000-tick window, flat, no decay. Round 1's build wedged at ~1200; this
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one never does, and the demuxer's `jammed` stays null the whole way. Surplus becomes
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product instead of a deadlock: 1,136 macroblock bricks + 1,997 hf dust shipped, 219
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slurry voided over 20k ticks.
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- **Splitters** — round-robin, blocked outputs skipped, rank traced *through* them (a lane's
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rank is now the best outcome reachable across every terminal it can reach).
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- **Buffer tanks** — charge on surplus, discharge to cover a deficit, brownout only once dry;
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`bandwidth.stored` is the pool.
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- **Heat v1** — `heatPerTick` while active + `RecipeDef.heat` per craft, ambient cooling,
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throttle above 0.7, scram at 1.0, restart under 0.5, both edges emitting `scram`.
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- **Commission queue** — data-order activation, `commissionDone` advances, `repeat` re-enters
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at the back, progress still only counts while active.
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- **`jammed:'starved'`** and **`BeltItem.id`** (always set; survives belt transfers *and*
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splitters, so the renderer never sees an item teleport).
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- Verified: 37 sim tests green (18 + 15 M2 mechanics + 4 reference), tsc clean in `src/sim`.
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In the live app I dispatched the whole reference factory through `__fktryBus` — it builds,
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renders, and runs, and my round-2 work is already visibly driving other lanes: the UI reads
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`94 DRAW / 220 GEN` + `BUFFER` off bandwidth v2, the fax shows the **queue** ("NEXT IN
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TRAY: DUST ALLOWANCE"), and LANE-UI's OSHA voice is narrating my new flag ("DCT PRESS:
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INTAKE STARVED. NOTHING IS ARRIVING.").
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- Determinism holds across engines: browser and Node both give tick 1247 and identical
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per-window melt counts.
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- Perf: 3,500 entities + 6,820 belt items → 0.465 ms/tick (**72× realtime**). Round 1 was
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0.418 (80×); the ~11% is heat touching every entity every tick. Still well inside target.
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DECISIONS
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- **Heat curve (mine to pick, per orders).** Throttle is linear from 1.0 at heat 0.7 down to
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0.5 at heat 1.0 — so the lore's "tick rate visibly halves" lands exactly at the scram
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point. Ambient cooling is a flat 0.004/tick applied *always*, working or not (1.0 → cold in
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250 ticks ≈ 8s), which means any machine with `heatPerTick` below 0.004 can never overheat.
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Scram at 1.0, restart under 0.5, so a hot generator duty-cycles rather than dying.
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- **Throttle applies to `powerGen`, not just craft speed.** A hot decoder's output sags before
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it drops off the bus entirely — which is precisely the hole buffer tanks exist to fill. That
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synergy is my reading of "per-machine throttle"; say the word if generators should be exempt.
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- Scrammed machines keep their idle `powerDraw` (stopped, not unplugged) and freeze mid-craft
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progress, resuming on restart rather than binning the work.
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- Scram clears `jammed` and suppresses jam evaluation: a scrammed machine reports through
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`heat` + the `scram` event, not as a flow jam. Two channels, no double-reporting.
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- Splitters hold 2 items, mirrored into `inputBuf` so the inspector can see them. Any adjacent
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belt not pointing in is an output; the splitter's own `dir` is unused. Machines can't push
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straight into one — feed it with a belt.
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- **`starved` fires whenever a recipe sits idle without enough input — including a machine that
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simply outruns its feed.** LANE-UI: expect it to flicker on a fast machine with a slow
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supply. That's accurate rather than a bug, but you may want to debounce the voice line.
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- The reference factory validates every machine/recipe id against `data` and throws a named
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error, so DATA drift fails loudly instead of resurfacing as a mystery deadlock.
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BLOCKED/BROKEN
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- **DATA carries none of the v2 fields, so heat and buffer tanks are inert in the real game.**
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No machine has `heatPerTick`, none has `bufferCap`, no recipe has `heat`, no commission has
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`repeat`. Both systems are fully implemented and tested — on a fixture I own
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(`pressure.test.ts`), because there is nothing in `data/` to test them against. The DoD's
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"heat throttles and scrams the software decoder" is proven mechanically, but the actual
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SOFTWARE DECODER cannot overheat until DATA gives it a number. This is the one thing
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standing between M2 heat and being real.
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- Starting values if they help (my suggestion, DATA's call): `software-decoder`
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`heatPerTick: 0.005` → ~33s of work then a ~4s scram, an ~89% duty cycle that reads as
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theatrical rather than punishing; `decode-asic` left at 0 (cool and inflexible, per the
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codex); `buffer-tank` `bufferCap: 600` ≈ 20s of cover against a 30-bandwidth deficit —
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enough to ride out exactly one decoder scram, which is a nice thing to discover.
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- `src/sim/data-validate.test.ts` is LANE-DATA's file living inside my owned path. I have not
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touched it. Worth an ownership ruling — either it moves to `data/`, or my lane doc should
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say I share the folder.
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CONTRACT REQUEST
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- `MachineDef.coolPerTick?: number` (default 0.004). Right now cooling is a global constant, so
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DATA can tune how fast a machine heats but not how fast it recovers — every machine cools 1.0
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→ 0.5 in exactly 125 ticks. The codex explicitly has ASIC coolers venting heat, which wants a
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per-machine number. Cheap to add, and I'd wire it the round it lands.
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PROPOSAL
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- `BeltItem.id` can drop the `?` in v3 whenever you like — I always set it already.
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- `referenceFactory`'s `setRecipe` commands depend on entity ids being handed out in placement
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order (1..N). That's true and deterministic, but it's an implicit coupling to my id
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allocation. A `setRecipeAt(pos)` command variant would remove it. Not urgent, just a
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tripwire worth knowing about before someone edits the layout.
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- Splitters have no filter or priority, and the reference factory proves you don't need either
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— skip-blocked self-balances. Worth revisiting only when bloom loops want a filtered tap.
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NEXT (round 3 if asked)
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- Save/load — `SimSnapshot` is already the right shape.
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- Bloom loops: my trace already treats a closed belt circle as "no terminal" → rank 0 → accept
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and pile, which is exactly what a loop wants. The P-frame duplicator should drop straight in.
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- HF dust piles + mosquito swarms (the rest of M2 PRESSURE) — the seeded RNG is sitting there
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unused and waiting for its first roll.
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- Heat, for real, the moment DATA has numbers.
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### Round 3 — 2026-07-17 — Opus 4.8
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SHIPPED
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- **Contracts v3 wired**: `EntityState.scrammed` (RENDER can delete its duplicated 0.5
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constant — the latch is mine to publish), `snapshot.commissionQueue` (active first then
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upcoming; UI's NEXT IN TRAY is now truth rather than a guess), `coolPerTick` per machine
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with my constant as the fallback, `setRecipeAt`, and `BeltItem.id` hardened to required.
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- **UNITS CONVERSION — confirmed, DATA please retune against this.** gen/draw are bandwidth
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per SECOND; `stored` is bandwidth-SECONDS. Charging and draining now divide by
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TICKS_PER_SECOND, so a 30/s deficit drains **1 stored per tick**, i.e. 30 per second.
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Concretely: `bufferCap: 240` = exactly 8.0s of cover against a 30/s deficit; the
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in-flight `300` = 10.0s. `pressure.test.ts` asserts that arithmetic tick by tick.
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- **save()/load()**: 26.9 KB for the 118-command reference factory. The bar I held it to is
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"the future is identical", not "the snapshot looks right" — every test loads a blob and
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runs BOTH sims 1,000+ ticks before comparing. Includes save→load→save byte-identity, a
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chained save/load×3, and pending-command preservation. 7 tests.
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- **Reference factory v3**: power restructured to 4× decode-asic (80/s) + 1× software-decoder
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(100/s) + 3× buffer-tank (900 bandwidth-seconds). Melt still first at tick 1247, still
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shipping at 20k, rate unchanged.
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- **Scram survival (the DoD numbers)**: first scram **t434**, restart **t934** (500-tick
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recovery = 16.7s), then a steady ~718-tick duty cycle at 47% uptime. **Brownout ticks
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across 20,000: zero.** Tanks sit at a 773/900 low-water mark in steady state. Melt per
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2,000-tick window: `[6,12,12,12,15,9,15,12,14,10]` — identical to round 2's naked-decoder
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build, so the duty cycle costs nothing measurable. The decoders black out; the line doesn't.
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- **Bloom loop**: a closed delta-wafer bus with five splitter taps escalates concentrate to
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grade 5. All six rungs craft; 4× grade-5 shipped by 20k. Plus a separate test of the loop
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mechanic itself (pure circle → rank 0 → cargo circulates forever, conserved, tracer fine).
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- Verified in the live browser as well as Node — identical tick numbers (1247 / 434 / 934),
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save/load round-trips there too, no console errors, and the UI is visibly reading the new
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fields: `94 DRAW / 180 GEN` is the new power block and `BUFFER 29` is a tank charging (that
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readout has never been non-zero before).
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- **Perf: 74.9× realtime** at 3,500 entities / 6,820 belt items (0.445 ms/tick, best of 3 on a
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freshly loaded page). See DECISIONS — beware my older numbers.
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DECISIONS
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- **Reference power is sized against the worst case, not the average.** The quantizers and
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subsamplers hand back ~30/s of compression bandwidth, but not while they're between crafts.
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Assume none of it. My first cut (3 ASIC + 2 tanks) passed every test and was quietly
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gambling: measured low-water 2.2 of 600, i.e. it survived only because compression happened
|
||
to be running. 4 ASIC + 3 tanks leaves 50% margin with compression at zero, and still works
|
||
if DATA reverts `bufferCap` 300→240. A test that passes on a coincidence is worse than one
|
||
that fails.
|
||
- **Bloom taps run hungriest-first, counter-current to the wafer flow — this is load-bearing.**
|
||
Wafers join the ring at one point and meet the taps in order, so the first tap eats first.
|
||
Put the bloom tap first (the obvious layout) and it swallows 49% of all wafers, grade 3
|
||
backs up 'output full' behind a starving grade 4, and 30,000 ticks yields exactly ONE
|
||
grade-5. Reversed: 4 by 20,000. Same machines, same recipes, one ordering decision. That's a
|
||
genuine lesson the topology teaches a player, and worth surfacing in-game somewhere.
|
||
- `updateHeat` early-outs on cold, cooling-less, unscrammed machines. Belts are ~99% of a big
|
||
factory and can never be anything but stone cold; skipping them paid for all of v3's other
|
||
additions and then some.
|
||
- `save()` carries what the snapshot deliberately hides: crafting/scram latches, splitter
|
||
queues *and cursors*, the RNG position, and the pending command queue. `load()` needs an
|
||
`init()`'d sim (GameData isn't in the blob) and rebuilds occupancy/tiles/belt-contents from
|
||
the defs rather than trusting the blob's ordering.
|
||
- Brownout comparison carries a 1e-9 epsilon: a tank covering a deficit exactly lands
|
||
`supplied === draw`, and float drift there would flicker the flag every single tick.
|
||
|
||
BLOCKED/BROKEN
|
||
- **DATA is mid-edit in the shared tree — I tuned against uncommitted values.**
|
||
`data/machines.json` is dirty as I write this. The reference factory's power is sized
|
||
against the working-tree numbers (software-decoder powerGen 100 / heatPerTick 0.0033 /
|
||
coolPerTick 0.001; buffer-tank bufferCap 300). If those land differently, re-check it; the
|
||
20k regression test is the net that will catch it.
|
||
- **Heat semantics need a one-line ruling.** My model cools every tick, working or not, so
|
||
`heatPerTick` is GROSS and the climb is `heatPerTick - coolPerTick`. DATA's *committed*
|
||
values (heatPerTick 0.0025, no coolPerTick → default 0.004) net to **-0.0015** — the
|
||
software decoder could never scram at all, and the DoD would have been unprovable. Their
|
||
*in-flight* values (0.0033 / 0.001) net +0.0023 and work. So we agree, but by luck of
|
||
timing, and the contract comment ("heat while active" / "per-machine cooling rate") doesn't
|
||
say which it means. Please make it say: *heatPerTick is gross; net climb is heatPerTick −
|
||
coolPerTick; a machine whose heatPerTick ≤ coolPerTick never overheats.* This is the same
|
||
class of bug as the gen/draw units one, and it cost DATA a round.
|
||
- Sanity check that DATA's intent was always a scram: `bufferCap` 240 ÷ 55 gen = 4.36s of
|
||
cover, against my 4.17s recovery at the time. They sized the tank to ride out exactly one
|
||
scram before the decoder could produce one.
|
||
- **`asic-cooler` (new) currently does nothing.** `coolPerTick: 0.02`, `powerGen: 5`, no
|
||
`heatPerTick` — cooling is per-machine and there is no adjacency mechanic, so it cools
|
||
itself, and it has no heat to shed. It's a 5-bandwidth generator with a great flavour text.
|
||
If it's meant to cool its NEIGHBOURS, that's spatial heat: a real feature needing orders and
|
||
probably a `coolRadius` field. Say the word.
|
||
- **The codex's literal bloom loop is not expressible.** "Any closed belt circle with a
|
||
duplicator on it; contents compound each lap" cannot work with per-grade recipes: a machine
|
||
runs one recipe, so a lone duplicator can never consume its own output, and a grade-5
|
||
returning to a grade-1 duplicator wedges that lane permanently. The shape that composes is
|
||
the wafer-bus circle I built. The literal version needs a single self-upgrading recipe
|
||
(grade-N → grade-N+1), which `RecipeDef` can't express — inputs/outputs are concrete item
|
||
ids. Either accept the escalator reading, or that's a schema change.
|
||
- Ownership wart is gone: `data/validate.test.ts` is staged by DATA and `src/sim/**` is purely
|
||
mine again. Thank you.
|
||
- **My round-3 sim code is committed inside `45003db [ui] REMOVE mode`, not under a `[sim]`
|
||
commit — please don't read that as a LANE-UI ownership violation.** All five lanes share one
|
||
working tree and one index. I had `src/sim/**` staged; LANE-UI's session ran an
|
||
add-everything commit in the same repo a moment later and swept my staged files in with
|
||
theirs. By the time my own `[sim]` commit ran there was nothing left to commit, and 45003db
|
||
was already pushed. The code is correct and complete in the tree (48 sim tests green, tsc
|
||
clean, verified in-browser); only the attribution is wrong, and rewriting pushed history
|
||
under four concurrent sessions would do more damage than the mislabel. Flagging it so your
|
||
per-lane diff doesn't fire. See PROPOSAL.
|
||
|
||
CONTRACT REQUEST
|
||
- None. v3 covered everything.
|
||
|
||
PROPOSAL
|
||
- `Sim.save?/load?` can drop the `?` in v4 — I always implement both.
|
||
- `snapshot.commissionQueue` aliases the live array rather than copying it each tick. Covered
|
||
by "snapshot is read-only", but worth a line in CONTRACTS since it's newly mutable-looking.
|
||
- Treat my round-1/round-2 perf figures (80× / 72×) as soft. I re-measured on a page loaded
|
||
with leftover sims and got anywhere from 59× to 12× for the *same* build; a fresh page gives
|
||
74.9× consistently across three runs. The numbers were never wrong so much as noisy — if you
|
||
ever want perf tracked properly it should be a headless benchmark, not a browser probe.
|
||
- **The shared working tree needs a commit rule.** Five sessions share one repo *and one git
|
||
index*, so any lane running `git add -A` / `git commit -a` silently commits whatever another
|
||
lane has staged at that instant — that's how my sim work ended up inside a `[ui]` commit this
|
||
round, and it'll keep happening. Cheapest fix: a standing rule that lanes only ever
|
||
`git add <their own explicit paths>` and never `-A`/`-a`/`.`. Failing that, `git worktree`
|
||
per lane would make it structurally impossible.
|
||
|
||
NEXT (round 4 if asked)
|
||
- HF dust piles + mosquito swarms — the seeded RNG is still unrolled, and save/load already
|
||
carries its state, so wildlife can land without touching persistence.
|
||
- The Correction / parity mites (M3's enemy).
|
||
- Spatial heat + `coolRadius`, if the ASIC cooler is meant to mean something.
|
||
- A self-upgrading bloom recipe, if you want the codex's literal loop.
|