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FINDINGS: 'The fill model is the next scorer' section (A2 chain grade -$7.54/fill x1344 confirms the surge kill; oracle harness chain grade vetoes the ledger-positive tiers; virtual-book +26% variance footnote; the five tandem tests and the makers-on-the-wall through-line). HANDOFF: snapshot -> 07-23 (7-wallet rev 5, dark flags, Friday agenda incl #20/#21). READMEs: /test consolidation row, measurement-harness research row, study statuses + new script inventory. Archive: value/ (closed 07-19) + its test, ETHERSCAN_MIGRATION.md, order_probe v1 -> archive/; replay_out/ gitignored; links repaired. Tests: all 7 active scripts pass post-move. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
130 lines
6.7 KiB
Markdown
130 lines
6.7 KiB
Markdown
# Etherscan migration — true resolution time through the whole stack
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**Goal:** every consumer of `res_t` reads the exact on-chain
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`ConditionResolution` timestamp instead of endDate metadata. Measured rot
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that motivates this (2026-07-08): the Jul-7 Brewers market carried
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`end_date_iso` **2026-05-05** and cache res_t **29h before** true resolution
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(04:51 next morning); a Jul-5 tennis match carried res_t **Jul-14** (future);
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an entire class of in-play sells could never pass a timestamp test.
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`payouts.resolution_time(cond)` (wired, verified) is the source; this plan
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is the *consumption* migration. **No code until the plan is agreed.**
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## Ground rules (scar tissue from the 2026-07-08 alignment audit)
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1. **Overlay, never rewrite.** Chain timestamps live in `resolution_times`
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(own table). `bets.res_t` is never mutated — provenance stays intact,
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every flip is a one-line revert per consumer.
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2. **One consumer per phase**, each with a before/after diff reviewed
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*before* publishing. Never two flips in one day.
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3. **Never couple a flip with a follow-set change** — attribution dies.
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4. **Calibration continuity:** any phase that changes model output adds a
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note (and a `rules_version` marker) to `live/history/calibration.csv`
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that day, so the live-vs-model series stays interpretable.
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5. Docs land with the phase, not after: FINDINGS gets the measured deltas,
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README gotchas get amendments, HANDOFF tracks the phase counter.
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## Scale facts (measured 2026-07-08)
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- 974,155 distinct conds in the bets cache; **783,911 resolved**;
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141,396 in exits; 66,095 in `resolutions` (payout cache); 1 in
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`resolution_times` (the Brewers proof).
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- Per-cond Etherscan queries are a non-starter: 784k ÷ 5 req/s ≈ 43h of
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calls against a 100k/day cap ≈ **8 days**.
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- **The chain sweep is the enabler:** ONE topic0-only `getLogs` walk over
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the CTF contract returns every ConditionResolution ever, 1,000 events per
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call ≈ **~1,000 calls ≈ minutes**, resumable by block cursor. Nightly
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increment afterward = 1–3 calls in `daily.sh`.
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- `res_t` consumer weight (grep): trust.py 26 · portfolio.py 23 ·
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cache.py 11 · conviction_scan.py 5 · validate_timing.py 4 · skill.py 4 ·
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sync_floors.py 1. Flip order below runs shallowest → deepest.
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## Phase 0 — full-chain backfill (enabler, no behavior change)
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Build `live/resolution_sweep.py`: windowed topic0-only walker over the CTF
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contract (chainid=137), resumable `last_block` cursor, throttled ≤5 req/s,
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writes `(cond, res_ts)` into `resolution_times`. Wire the incremental call
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into `daily.sh` (cache is single-writer — it runs inside the pipeline slot).
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Exit criteria / audits before any consumer flips:
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- **Coverage:** ≥99% of *resolved* conds that appear in any scoring path
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(trusted rows for scanned wallets, exits, portfolio replay) have a chain
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timestamp; sample the misses by hand.
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- **negRisk verification:** confirm ConditionResolution fires for negRisk
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conds (oracle = the adapter) on a handful of known negRisk markets.
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- **Uniqueness:** assert one event per cond in the sweep (if re-reports
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exist, keep the LAST and document).
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- **The rot histogram:** distribution of `res_ts − metadata res_t` across
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all matched conds → FINDINGS. This quantifies 18 months of silent error
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and predicts which downstream metrics will move.
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## Phase 1 — read-only shadow audit (no behavior change)
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Recompute both ways, publish nothing:
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1. **validate_timing shadow:** med_lead_h and the held/timing gates with
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chain res_ts — does the 35-sharp membership change? Which wallets flip?
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2. **portfolio shadow:** replay with (a) settle/capital-recycle at true
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res_ts (today's game-day-midnight settles free capital EARLY — expect an
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equity haircut from honest capital lock), (b) timestamp sold-test
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primary with the price test retained as fallback. Record equity/record
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deltas per wallet.
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3. **trust shadow:** agreement rate between consensus res_t and chain
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res_ts — the empirical case for how much of trust.py survives Phase 5.
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Deliverable: one FINDINGS section with the three deltas. Flip order below
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is confirmed or reshuffled *on this data*.
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## Phase 2 — flip validate_timing (lowest stakes)
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Lead metrics + timing gates read chain res_ts (fallback: old logic where a
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cond has no event, e.g. genuinely unresolved). If sharp-list membership
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changes, that's honest — document the entrants/leavers like a follow-set
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change review. Sharps table republished; dashboards unchanged structurally.
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## Phase 3 — flip portfolio.py (moves published numbers)
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Settle times, sold-test primary, threshold windows (`res_t < START`) all
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read chain res_ts. Then: full row-audit vs the live bot book (the 7/9-style
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check — agreement must not regress), republish, calibration note (rule 4).
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Expect and pre-announce the equity change; the honest number wins.
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## Phase 4 — flip conviction_scan + skill + floors (selection layer)
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Train/test splits and conviction windows on chain res_ts. Floors re-pin via
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`sync_floors` and may shift a few % → coordinate a same-day
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`deploy_bot.sh` so bot and backtest keep gating identically (rule 3 still
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holds: no wallet adds/drops that day).
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## Phase 5 — simplify trust.py (LAST, biggest payoff)
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With chain res_ts + chain payouts covering all scoring conds, the consensus
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res_t machinery, the v2 self-certification split, and the 14-day pulled_at
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fallback reduce to: *"resolved on-chain? what payout? when?"* Keep consensus
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only as a fallback for conds absent from chain (Phase 0 says ~none).
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Regression bar: the sharp list before/after must be identical or every
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difference individually explained. This deletes the most complex code in
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the repo — do it after the chain data has soaked a week+.
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## Parallel track (independent, any time)
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Port insider.py's funding-cluster tracer from Alchemy `getLogs` (now capped
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at 10 blocks on free tier) to Etherscan V2 logs. No interaction with the
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res_t work.
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## Risks
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| risk | mitigation |
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|------|------------|
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| Etherscan limits/downtime | cache-forever table; resumable cursor; env `ETHERSCAN_KEY` override; sweep re-runnable idempotently |
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| negRisk event semantics differ | Phase 0 verification gate before any flip |
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| UMA disputes / duplicate events | uniqueness assert in Phase 0; disputes precede first report, immutable after |
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| DuckDB single-writer | sweep runs in the daily pipeline slot only |
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| numbers move and surprise | shadow audit first; pre-announced deltas; rules_version in calibration.csv |
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| Etherscan V2 API drift | pin chainid=137 param form; smoke test in sweep preamble |
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## Sequencing
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Phase 0+1 fit one session (~2–3h, mostly sweep runtime + audit reads).
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Each flip (2, 3, 4) is its own session with regen + publish + docs.
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Phase 5 waits a week+ of soak. Total: ~4 working sessions spread over
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~2 weeks, zero downtime, every step revertible.
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