| name | auditing-part11-trails |
| description | Generates and verifies 21 CFR Part 11-style audit trails — who/what/when, electronic signatures, and tamper-evidence — for OpenMed pipelines in GxP and clinical-trial (GCP) settings. Use when the user runs OpenMed in a regulated/validated environment and needs an attributable, time-stamped, tamper-evident record of each processing action, electronic-signature manifestations, or computer-system-validation (CSV) evidence. Trigger keywords: 21 CFR Part 11, Part 11, audit trail, electronic signature, e-signature, GxP, GCP, GLP, GMP, CSV, computer system validation, data integrity, ALCOA, tamper-evident, contemporaneous. Pairs adjacent to OpenMed: maps directly onto OpenMed deidentify(audit=True) -> signed AuditReport with .sign(key)/.verify(key), whose repro_hash + HMAC give the tamper-evidence and attribution Part 11 expects. This is a compliance-enablement aid, not a validation certification. |
| license | Apache-2.0 |
| metadata | {"project":"OpenMed","category":"compliance-regulatory","pairs":"adjacent","version":"1.0"} |
Auditing 21 CFR Part 11 trails for OpenMed pipelines
In FDA-regulated GxP work (GCP clinical trials, GLP, GMP) any electronic
record used to support a regulatory decision must meet 21 CFR Part 11: it has
to be attributable (who), contemporaneous and time-stamped (when),
describe what changed, be tamper-evident, and — where a signing event
occurs — carry a controlled electronic signature. These map onto the
ALCOA+ data-integrity expectations (Attributable, Legible, Contemporaneous,
Original, Accurate, +Complete/Consistent/Enduring/Available).
OpenMed's deidentify(..., audit=True) already emits a deterministic,
PHI-free AuditReport that you can .sign() (HMAC-SHA256) and later
.verify(). That gives you the tamper-evidence and attribution primitives;
this skill wraps them in the who/when/what/e-signature envelope Part 11 wants.
This is a compliance-enablement aid. Part 11 compliance also requires
validated systems (CSV), SOPs, and access controls that live outside any single
library — a QA/validation lead signs off.
When to use
- OpenMed runs inside a validated/GxP environment and each run must leave an
attributable, tamper-evident record.
- You need to wrap an OpenMed
AuditReport with who/when/what + an
e-signature manifestation (meaning, signer, timestamp).
- You must verify a stored trail hasn't been altered, or produce CSV evidence
for an inspection.
How OpenMed's AuditReport maps to Part 11
| Part 11 expectation | 21 CFR cite | OpenMed mechanism |
|---|
| Tamper-evident, accurate copies | 11.10(b),(c) | AuditReport.to_json() + repro_hash over the canonical payload |
| Audit trail: what changed, when | 11.10(e) | AuditReport.spans (action per identifier), input_hash/deidentified_text_hash, openmed_version, manifest_hash |
| Operational/authority checks; attribution | 11.10(d),(g) | AuditSignature.key_id (signer/key identity) + your envelope's user id |
| Signature manifestation (name, date, meaning) | 11.50 | Your envelope fields signer, signed_at, meaning |
| Signature/record linking, non-repudiation | 11.70, 11.200 | HMAC-SHA256 over the canonical payload via .sign() / .verify() |
The HMAC binds the signature to that exact report content: any later edit to a
span, hash, or field changes repro_hash, so .verify() fails — that is the
tamper-evidence.
Quick start
import openmed, json, datetime as dt
note = "Subject S-014 (DOB 1962-08-09) reported headache on 2024-05-01."
report = openmed.deidentify(note, policy="hipaa_safe_harbor", audit=True)
report.sign(b"<release-hmac-key>", key_id="omv-signer-2026")
trail = {
"record": report.to_dict(),
"who": "j.smith@sponsor.example",
"when": dt.datetime.now(dt.timezone.utc).isoformat(),
"what": "PHI de-identification of source narrative (study X, subject S-014)",
"signature_manifestation": {
"signer_printed_name": "Jane Smith",
"meaning": "reviewed and approved",
"signed_at": dt.datetime.now(dt.timezone.utc).isoformat(),
},
"system": {"openmed_version": report.openmed_version,
"manifest_hash": report.manifest_hash},
}
with open("part11_trail.json", "w") as fh:
json.dump(trail, fh, indent=2, sort_keys=True)
ok = report.verify(b"<release-hmac-key>", original_text=note)
assert ok, "AUDIT TRAIL TAMPERED OR KEY MISMATCH"
Workflow
- Authenticate the actor in your own IdP/access system (Part 11 needs unique
IDs and operational checks — outside the library). Capture the user id.
- Run the processing step with
audit=True to get the deterministic record.
- Sign with a controlled release key from a vault/HSM; record
key_id.
Never embed the key in source or the trail.
- Build the Part 11 envelope — who, when (UTC, contemporaneous), what, and
the signature manifestation (printed name, meaning, timestamp) per 11.50.
- Append, never overwrite. Store trails write-once (WORM / append-only
store). The audit trail itself must be protected and retained.
- Verify on retrieval with
.verify(key, original_text=..., deidentified_text=...)
to confirm neither the record nor the bound texts changed.
- Retain per the study/retention schedule; keep keys and any reversible
mapping in a separate, access-controlled store.
Hand-off to / from OpenMed
- Produce the record:
auditing-deidentification-runs
(deidentify(audit=True) → AuditReport) is the source of the signed,
PHI-free trail this skill envelopes.
- Coverage evidence:
auditing-safe-harbor-checklist documents that the
18 identifier categories were handled — useful as a CSV artifact.
- No-PHI logging:
enforcing-nophi-logging ensures the surrounding
application logs don't leak identifiers into the trail.
- HIPAA overlap:
checking-hipaa-compliance — Part 11 audit controls and the
HIPAA Security Rule audit-controls standard (164.312(b)) reinforce each other.
- OpenMed runs on-device, so the record-generating step stays inside your
validated boundary.
Edge cases & gotchas
- Part 11 ≠ one library. The signed
AuditReport gives tamper-evidence and
attribution, but Part 11 also requires validated systems (CSV), SOPs, training,
and access controls you implement around it. Don't claim "Part 11 compliant"
from the audit object alone.
- Unsigned = not tamper-evident.
.sign() is a deliberate step; signature
is None until called. Empty/None keys are rejected.
- Key management is the crux. The HMAC is only as trustworthy as the key.
Use a vault/HSM, rotate via
key_id, and never store the key with the trail.
- Contemporaneous timestamps. Use a synchronized, trusted clock (UTC) at the
moment of the action — back-dating breaks ALCOA "Contemporaneous".
- Append-only retention. A trail you can silently overwrite isn't an audit
trail. Use WORM/append-only storage and protect it from the operators it audits.
- No PHI in the envelope. The
AuditReport is hash-and-offset only; don't
reintroduce identifiers in the what/who free-text fields.
- HMAC is symmetric. It proves integrity to holders of the key, not public
non-repudiation. If you need third-party non-repudiation, layer an asymmetric
signature over
report.to_json().
Standards & references