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dsh-ocsf-forwarder
charlotten7/dsh-ocsf-forwarder
Read-side SIEM forwarder for DeepSeek Harness: normalises session activity to OCSF and ships it
Instalar
dsh plugin --profile web add github:charlotten7/dsh-ocsf-forwarderREADME
dsh-ocsf-forwarder
A read-side SIEM forwarder for DeepSeek Harness. It observes the
session event firehose, normalises every event to OCSF 1.9.0 with the native ai_operation
profile, and writes newline-delimited OCSF JSON to a local append-only spool — optionally shipping
it to Splunk HTTP Event Collector or an OTLP/HTTP collector.
📖 Full documentation — including the complete event → OCSF mapping table for all 44 session event types.
What it does
- Subscribes to
session/event,session/createdandsession/disposed, and sweepsctx.sessions.list()at mount. - Correlates
tool/call↔tool/resultandapproval/asked↔approval/decided, emitting approval decision latency — the approval-fatigue signal. - Classifies tool calls by what they do: shell and code execution → Process Activity (1007), file tools → File System Activity (1001), web tools → HTTP Activity (4002), approvals and sandbox changes → Authorize Session (3003), everything else → API Activity (6003).
- Names the MCP server behind every
mcp__<server>__<tool>call. - Emits a high-severity record when a tool hands the task to an external harness, stating in the record that telemetry coverage ends at that boundary.
- Emits a periodic heartbeat carrying counters, live session count and delivery cursor, so a
host that goes quiet is distinguishable from one that is idle. A spool that has stopped writing
reports itself there at
severity_id: 5, with the count of what it dropped. - Chains every spooled record with the OCSF
record_integrityprofile, and shipsdsh-ocsf-verifyto check the chain. - Replays a resumed or forked session's constructor seed, which never reaches the live firehose.
- Keeps raw values out of the SOC lane: keyed digests, value classifications and lengths instead.
What it does not do
- It never writes to the session log.
Session.append()cannot set the envelope'signorableflag, so a plugin-owned event type makes the next resume throwSessionFormatUnsupportedErrorand refuse the entire session. All durable output goes to our own sink, and the plugin registers no waterfall listener, so it cannot change a tool call, an approval decision or a model request. - It is not a containment boundary. It runs in the agent's process at the agent's uid; an agent
that can run
bashcan delete or rewrite the spool — and can recompute the hash chain over what it wrote, because the algorithm is published. What it buys you is that records leave the host promptly and that a gap is visible — the chain's entry numbering,metadata.sequenceholes per session, and a shipper cursor that stopped advancing. - It ships no detection content, no alerting and no secret detectors.
Install
The profile must already compose a runnable agent — a profile carrying only
@deepseek-ai/dsh-base has no agent loop and this plugin would observe nothing:
dsh plugin --profile <name> add @deepseek-ai/dsh-headless@0.1.0-rc.6
dsh plugin --profile <name> add dsh-ocsf-forwarder
dsh --profile <name> --dump-config # verify the row is mounted
Pin @deepseek-ai/dsh-headless explicitly — its npm latest tag still points at 0.0.1-rc.1.
Install from the registry or a packed tarball, not from a git spec: lib/ is a build output
git does not carry.
Configure
- id: dsh-ocsf-forwarder
config:
spoolPath: /var/log/dsh/ocsf.jsonl # absolute; created 0640
splunk:
endpoint: https://splunk.example:8088
token: { source: env, variable: SPLUNK_HEC_TOKEN }
privacy:
hmacKey: { source: env, variable: DSH_OCSF_KEY }
Every numeric key must be a positive finite number, and those counting records or files must be
whole numbers — statsIntervalMs is the one exception, where 0 means "only at unload". A value
outside those ranges fails at load, because the alternative is worse than a refused mount:
batchSize: 0 makes the shipper loop without ever advancing its cursor.
The default privacy posture keeps raw values out of the SOC lane — argument values and command lines are digested, URLs reduced to their host. A second restricted lane carries verbatim payloads and must be explicitly acknowledged before it will open.
Every configuration key → · Record format and the mapping table →
Shipping to a SIEM
Splunk HEC and OTLP/HTTP are both supported; configure exactly one per spool. Delivery is cursor-based off the spool, so a collector outage costs nothing but disk, and the spool refuses to delete an un-drained generation rather than silently discarding unacknowledged evidence.
Splunk and OTLP setup → · Delivery and failure modes →
Tamper-evidence
Every record carries an OCSF 1.9.0 record_integrity attestation: the SHA-256 fingerprint of the
record, plus the uid and fingerprint of the record before it. Editing, deleting, or reordering a
spooled record breaks the chain at that record and at the one after it.
dsh-ocsf-verify /var/log/dsh/ocsf.jsonl # exits 0 intact, 1 broken, 2 unreadable
The fingerprints are unkeyed, so anyone can recompute them — which is the point, and which also means the chain does not resist the agent it observes. What it detects is a later edit by anything that does not recompute the chain, and it makes every record already shipped to a SIEM an anchor the spool can be checked against.
The canonicalisation, the threat model, and the cost →
Running it with dsh-netguard
Both packages emit OCSF into one index and share the correlation_uid scheme
<session>:<callId>, so a Network Activity record from netguard joins to this package's Process
Activity record for the same tool call — answering which tool call opened this connection.
metadata.uid is deliberately not shared: this package's key is <session>:<seq> over the
session log's event sequence, and netguard namespaces its own as <session>:netguard:<seq> so a
SIEM deduplicating on that field cannot mistake one package's records for the other's.
Development
nvm use 22 # Node ^22.19.0 || >=24, and pnpm 11
pnpm install
pnpm run typecheck
pnpm run test:coverage
pnpm run test:e2e # boots a real dsh against a mock model; no API key
Design decisions and their rationale live in ADR.md. Security policy is in SECURITY.md.
License
MIT
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