Skills Artificial Intelligence De-identification Leakage Detection Gate

De-identification Leakage Detection Gate

v20260803
gating-deid-leakage
This skill implements a critical CI gate to ensure the privacy and performance integrity of de-identification models. It automatically fails the build if the model's recall on held-out PHI data drops below the defined threshold, or if any critical Personally Identifiable Information (PHI) is leaked (leakage must be zero). It enforces strict privacy standards in continuous integration pipelines, blocking unsafe merges.
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Overview

Gating De-id Leakage in CI

Logs, baselines, and models drift. The only durable defense is a gate that runs on every change and fails closed when de-identification regresses. This skill operationalizes OpenMed's leakage-first ethos into a CI check: recall must stay above the floor and critical leakage must be exactly zero, or the build goes red.

When to use this skill

  • You want a pytest test or CLI step that exits nonzero on de-id regression.
  • You need to block PRs that drop PHI recall or introduce a leak.
  • You want OpenMed's release gates (ReleaseGate, G1a–G8) enforced in CI.
  • You maintain a synthetic held-out PHI set and want it checked automatically.

For the full gate semantics see evaluating-with-leakage-gates; this skill is about wiring it into CI so it fails the build.

Quick start — a pytest gate

# tests/eval/test_deid_leakage_gate.py
import pytest
from openmed.eval import run_suite, ReleaseGate, RELEASABLE

RECALL_FLOOR = 0.99          # direct-identifier recall floor
HELD_OUT = "eval/heldout/phi_synthetic.json"   # SYNTHETIC, committed

@pytest.fixture(scope="module")
def gate_report():
    report = run_suite(
        HELD_OUT,
        suite="golden",
        model_name="OpenMed/Privacy-PII-Detection",
        device="cpu",
        metadata={"family": "PII", "tier": "base", "policy": "hipaa_safe_harbor"},
    )
    return ReleaseGate(milestone="v1.6", policy="hipaa_safe_harbor").evaluate(report)

def test_no_critical_leakage(gate_report):
    # Hard zero: one leaked SSN/credit-card is a breach, full stop.
    assert gate_report.critical_leakage_count == 0, "critical PHI leaked"

def test_recall_floor(gate_report):
    low = {
        label: r
        for label, r in gate_report.per_label_recall.items()
        if r < RECALL_FLOOR
    }
    assert not low, f"recall below floor: {low}"

def test_releasable(gate_report):
    # The structural decision: any failed gate -> QUARANTINED -> red build.
    failed = [c.gate for c in gate_report.gate_results if not c.passed]
    assert gate_report.decision == RELEASABLE, f"quarantined; failed gates: {failed}"

pytest exits nonzero on any failure, so CI turns red automatically.

Quick start — a CLI gate

The harness ships a main() that fails closed (exit 1 on quarantine):

# Produce a candidate report, then gate it. Nonzero exit blocks the job.
python -m openmed.eval.release_gates \
  --candidate eval/out/candidate_report.json \
  --baseline-store eval/baselines/last_green.json \
  --milestone v1.6 --policy hipaa_safe_harbor \
  --output release-gate-report.json

Exit codes: 0 RELEASABLE, 1 QUARANTINED, 2 evaluation error before a report. CI should treat 1 and 2 as failures.

Wire it into GitHub Actions

# .github/workflows/deid-gate.yml
name: de-id leakage gate
on: [pull_request]
jobs:
  gate:
    runs-on: ubuntu-latest
    steps:
      - uses: actions/checkout@v4
      - uses: astral-sh/setup-uv@v5
      - run: uv pip install --system -e ".[hf]"
      - name: Run de-id leakage gate
        run: uv run pytest tests/eval/test_deid_leakage_gate.py -q
      # The job fails (red) automatically if pytest exits nonzero.

Workflow

  1. Curate a synthetic held-out PHI set and commit it (offsets + labels, no real patient text). Use building-gold-corpus. It must be disjoint from any calibration/training data.
  2. Pick the floor from policy. Don't hardcode a magic number you invented — align to the gate's published floors (G1A_V16_RECALL_FLOOR etc. in openmed.eval.release_gates) and the active policy profile.
  3. Run the suite → gate the report (pytest fixture above).
  4. Assert two invariants: critical_leakage_count == 0 and per-label recall ≥ floor. Optionally assert decision == RELEASABLE for the full G1a–G8 check.
  5. Make it required. Mark the job a required status check so a red gate blocks merge — a passing-but-not-required gate protects nothing.
  6. On failure, the harness CLI can open/refresh a tracking issue (--issue-on-failure) so the regression is visible, not silently retried.

Hand-off to / from OpenMed

  • From evaluating-with-leakage-gates: this skill is the CI wrapper around the same ReleaseGate.evaluate(...) call — reuse its gate semantics.
  • From building-gold-corpus: supplies the synthetic held-out fixtures the gate runs against.
  • To authoring-model-cards: a green gate's GateReport is the evidence the model card cites under "evaluation".
  • Pairs with enforcing-nophi-logging: the gate proves the model doesn't leak; the logging guard proves your runtime doesn't leak.

Edge cases & gotchas

  • Fail closed, never open. If the candidate report is missing or the eval errors, treat it as a failure. Don't || true the step.
  • A passing F1 is not a passing gate. Recall floor + zero critical leakage are the load-bearing assertions; assert them explicitly even if you also check decision.
  • Held-out must stay held-out. If the gate set leaks into calibration or training, the gate measures memorization, not generalization. Keep splits disjoint (see building-gold-corpus).
  • Pin the model and milestone. Floors change per milestone (v1.6 vs v2.0); pin both so a "passing" gate doesn't silently weaken.
  • No real PHI in CI artifacts or logs. The gate report is offsets/hashes only; don't print fixture text in CI output.
  • Baselines are inputs, not outputs of the gate. Promote last-green baselines in a separate, reviewed step — never auto-write them from the gate job.

Standards & references

Info
Name gating-deid-leakage
Version v20260803
Size 6.83KB
Updated At 2026-08-04
Language