Datasets:
File size: 8,344 Bytes
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license: cc-by-4.0
language:
- en
task_categories:
- tabular-classification
pretty_name: OracleEconLab Oracle Incentives and Accountability v1
size_categories:
- n<1K
tags:
- blockchain
- oracle
- economics
- trustworthy-ai
- tabular
configs:
- config_name: abc_dictionary
data_files: data/abc_dictionary.parquet
- config_name: uma_real_episode
data_files: data/uma_real_episode.parquet
- config_name: uma_real_episode_abc
data_files: data/uma_real_episode_abc.parquet
- config_name: uma_public_rpc_episode
data_files: data/uma_public_rpc_episode.parquet
- config_name: uma_public_rpc_abc
data_files: data/uma_public_rpc_abc.parquet
- config_name: uma_decisions
data_files: data/uma_decisions.parquet
- config_name: uma_decision_splits
data_files: data/uma_decision_splits.parquet
- config_name: decision_evidence
data_files: data/decision_evidence.parquet
- config_name: ai_feature_dictionary
data_files: data/ai_feature_dictionary.parquet
- config_name: public_ai_episodes
data_files: data/public_ai_episodes.parquet
- config_name: public_ai_decisions
data_files: data/public_ai_decisions.parquet
- config_name: public_ai_splits
data_files: data/public_ai_splits.parquet
- config_name: public_ai_evidence
data_files: data/public_ai_evidence.parquet
- config_name: public_ai_predictions
data_files: data/public_ai_predictions.parquet
- config_name: public_ai_metrics
data_files: data/public_ai_metrics.parquet
---
# OracleEconLab Oracle Incentives and Accountability v1
This review-sized draft turns fixed, public UMA protocol evidence into complete
or right-censored economic lifecycles. It is a release candidate for the paper
*Who Verifies Decentralized Information? Economic Incentives, Accountability,
and Trustworthy AI Across Oracle Protocols.*
## Dataset configurations
| Configuration | Rows | Observation unit | Purpose |
|---|---:|---|---|
| `abc_dictionary` | 28 | economic variable | Formulas, units, sources, missing rules and A/B/C family |
| `uma_real_episode` | 1 | cross-chain episode | End-to-end Polygon OOV2 to Ethereum DVM validation |
| `uma_real_episode_abc` | 28 | case-measure status | Honest mapping of every A/B/C measure to the real case |
| `uma_public_rpc_episode` | 1 | cross-chain episode | Clean-room episode reconstructed without curated-ledger input |
| `uma_public_rpc_abc` | 28 | case-measure status | Public-source-only A/B/C mapping and explicit unavailable states |
| `uma_decisions` | 810 | challenged proposal-time decision | Minimal four-action AI evaluation |
| `uma_decision_splits` | 810 | decision split assignment | Frozen chronological train/validation/test partition |
| `decision_evidence` | 2430 | timestamped evidence reference | Prediction-level provenance and leakage audit |
| `ai_feature_dictionary` | 16 | decision-time feature | Feature meaning, source and availability |
| `public_ai_episodes` | 64 | public-source cross-chain episode | Economic lifecycle reconstructed from fixed public receipts |
| `public_ai_decisions` | 64 | proposal-time decision | Credential-free public-source AI demonstration inputs |
| `public_ai_splits` | 64 | split assignment | Label-free chronological 44/10/10 partition |
| `public_ai_evidence` | 192 | timestamped evidence reference | Decision-time traceability for every demonstration prediction |
| `public_ai_predictions` | 70 | model/action output | Four-action predictions, confidence, evidence and protocol endpoint |
| `public_ai_metrics` | 7 | model evaluation | Calibration, coverage, abstention and stylized economic cost |
## A/B/C economic measure families
- **A — Verification concentration (Who verifies?):** HHI, top-k share,
effective number of monitors and threshold monitor count.
- **B — Incentives and frictions (Why verify?):** reward/bond, capital-days,
fees, Gas, verification cost and scenario-based expected private utility.
- **C — Accountability outcomes (What happens?):** dispute, adjudication,
transfer, realized payoff, delay and right censoring.
A/B/C are measure families. They are not the project's Sample A/B/C data
cohorts. Identity, decision-time, cross-chain-link and provenance fields remain
supporting fields rather than being mislabeled as economic outcomes.
## Construction and provenance
The fixed cutoff is `2026-06-30T23:59:59Z`. The real case begins with canonical
Polygon request, proposal, dispute and settlement records, links them to the
Ethereum DVM with a Grade-A deterministic match, reconciles token flows, and
separates returned principal from realized reward. Every processed episode or
decision contains transaction/evidence references and a deterministic
provenance identifier. File integrity is recorded in `checksums.csv`.
The main reconstruction commands live in the GitHub `real-release-v1.5`
branch. `public_evidence/` includes the five fixed receipts, canonical headers,
case specification, source checksums and verified contract-semantic rules used
by the clean-room entry. This draft contains review-sized processed evidence; it does not claim
that every protocol ledger can be regenerated without archive infrastructure.
The executed `notebooks/uma_minimal_trustworthy_ai_demo.ipynb` loads the frozen
tables, reruns the leakage audit and chronological evaluation, and writes the
review-sized artifacts under `demo_outputs/`. Its reported performance is not
edited or filtered after execution.
The independent `public_ai_evidence/` path closes the public-source chain for a
fixed 64-episode demonstration: a label-free transaction registry, 280 canonical
Polygon/Ethereum receipt and header bundles, decoded economic episodes,
decision-time features, model outputs and QC. Live mode uses credential-free
public endpoints; offline mode deterministically replays the frozen snapshot.
The model result is intentionally reported even when weak. It is a pipeline
demonstration rather than evidence of production challenge quality.
## Trustworthy-AI task
At the OOV2 proposal timestamp, the benchmark emits one of `Accept`,
`Investigate`, `Challenge`, or `Abstain`. The endpoint is whether the later UMA
protocol resolution rejects the proposal. Only decision-time fields may be
used as model inputs. Columns whose names end in `_outcome_only`, the protocol
label, dispute result and settlement evidence are evaluation-only and must not
enter the model.
The 810 observations condition on proposals that were actually challenged,
Grade-A linked, price-consistent and flow-exact. The task is therefore a
conditional protocol-outcome evaluation, not a causal policy for all proposals
and not an independent truth classifier.
## Intended uses
- audit economic variable construction and source traceability;
- reproduce the real UMA episode and its payoff decomposition;
- evaluate calibration, abstention, leakage and robustness on the conditional
decision cohort;
- study A/B/C constructs within their declared observation units.
## Uses that are not validated
- production deployment of automated challenges;
- causal claims that rewards or penalties improve truthfulness;
- treating protocol acceptance or DVM resolution as independent factual truth;
- identity, geography or intent inference from blockchain addresses;
- aggregation of heterogeneous token amounts without asset-preserving conversion.
## Biases and limitations
The decision cohort has selective labels because it includes only actually
challenged UMA requests. It over-represents mechanisms and market adapters for
which exact cross-chain and token-flow evidence is recoverable. Address-level
concentration is not entity-level concentration. Off-chain investigation labor
is unavailable and remains a declared scenario. Independent factual truth is
available only for a small external-rule subset outside the core protocol label.
## Personal and sensitive information
The data contain public pseudonymous contract/account addresses, transaction
hashes and block metadata. They contain no asserted mapping from an address to
a natural person and must not be used to infer human identity. RPC endpoint
URLs, credentials and private keys are not included.
## Licensing
Original curated tables and documentation are CC BY 4.0. Upstream contracts,
APIs and third-party records remain governed by their own terms. See
`DATA_LICENSE.md` and `CITATION.cff`.
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