8.9 KiB
Codex Skillless Codex Driver
Scope
Codex implements a direct Codex app-server v2 driver behind the package's
existing HarnessDriver contract. The driver, mock core, example CLI, tests,
and evidence stay inside packages/paperclip-runner/. They do not import or
change Paperclip server, UI, database, or production control-plane behavior.
The app-server process is local to the execution environment and uses newline delimited JSON-RPC over stdio. It is not exposed as a network service.
Identity mapping
| Runner identity | Codex source | Persistence rule |
|---|---|---|
| run ID | mock-core input | Never replaced during recovery. |
| normalized session ID | controller-owned mock-core input | A distinct identity, independent of the run and provider IDs, that stays stable across transport/process recovery. |
| driver session ID | thread.id |
Resumed by exact ID. A different returned ID fails recovery. |
| provider session ID | thread.sessionId |
Kept separately from the driver thread ID. |
| turn ID | turn.id |
Required by steer and interrupt preconditions. |
| item ID | item.id, request ID, or deterministic turn/kind key |
Preserved on lifecycle and delta events. |
| source event ID | runner instance + run + source sequence | Source sequence continues from the persisted snapshot. |
The persisted session snapshot records run, normalized session, driver session, provider session, the exact active turn, committed semantic-result content/call binding, observed terminal-turn fingerprints, and the last source sequence. Recovery starts a new local app-server transport, reads the exact persisted thread to validate identity and working directory, resumes that thread, and then reads it again for reconciliation. Reconciliation considers only the persisted active turn: it retains that turn when active, terminalizes that turn when terminal, and fails recoverably when it is missing or a different active turn appears. Historical terminal turns never substitute for the persisted active turn, and a terminal already in the durable snapshot is not emitted again.
App-server operations
| Driver operation | App-server method | Degradation |
|---|---|---|
| initialize | initialize, then initialized |
Startup fails visibly. |
| create | thread/start |
Required. |
| resume | thread/resume |
recovered: false with a redacted reason. |
| read | thread/read |
Explicit HarnessCapabilityUnavailableError. |
| start turn | turn/start |
Required. |
| steer | turn/steer with expectedTurnId |
Explicit unsupported diagnostic; no stdin fallback. |
| interrupt | turn/interrupt |
Explicit unsupported diagnostic; session is not killed. |
| usage | thread/tokenUsage/updated |
Returns the last snapshot or explicit unsupported error. |
| reconcile | thread/read plus session.reconciled |
Disabled when read is unavailable. |
Capability flags are descriptive and executable. Unsupported operations emit
canonical harness.diagnostic events with secret-redacted detail. No
harness-specific branch is required in the mock core.
Skillless context boundary
The model receives one text input containing paperclip.skillless_task.v1:
- objective;
- completion-contract revision and criteria;
- task constraints; and
- the expected canonical result schema name.
The thread config explicitly disables automatic skill and app instruction
blocks. Codex's built-in collaboration instructions are enabled by default so
interactive runs receive native commentary and tool preambles; a driver caller
may explicitly disable them for a specialized deterministic fixture. This
does not enable skills, apps, plugins, memories, or extra model-input kinds.
The model input accepts only text, never a Codex skill input. The driver
captures the returned instruction-source list and requires it to be empty for
the skillless assertion.
The trusted app-server process has an allowlisted environment. It retains host
HOME and CODEX_HOME only so the provider can authenticate. Model-issued
commands have a separate boundary: an empty-by-default environment with no
HOME or CODEX_HOME, no network, and a named Codex
permission profile requesting read-only minimal runtime files, no host-home or
Codex-home access, and write access to the assigned workspace. The driver
refuses filesystem-root workspaces, workspaces containing host HOME, and any
workspace overlapping host CODEX_HOME. A workspace below host HOME is
valid, but when PAPERCLIP_WORKSPACE_CWD is present its canonical path must be
equal to or below that assigned workspace so sibling and symlink escapes fail
before provider startup.
The returned sandbox facts remain authoritative. Codex 0.132.0 may inject a
provider-managed writable root such as ~/.codex/memories after a first run,
even with features.memories=false and an explicit Codex-home deny. That makes
the Codex-home directory discoverable in a warmed environment, so Codex does
not claim whole-directory unreadability. Its authenticated proof instead
requires each readable auth.json/config.toml file and an unrelated host
secret to remain unreadable and unwritable, while recording any injected root
in context.sandbox.legacyPolicy.
Paperclip bearer values, OPENAI_API_KEY, arbitrary skill paths, and other
inherited variables are not passed. Diagnostics redact bearer/basic
credentials, credentialed proxy URLs, secret query parameters, sensitive JSON
keys, and common key assignments.
The context snapshot records configuration and environment key names, not secret values.
Semantic completion
The provider-facing structured-output schema covers done and needs_review.
It uses the strict OpenAI shape: every object rejects additional properties and
the constant schema field includes both type: "string" and const.
Two dynamic semantic tools are registered when supported:
paperclip_finishacceptsdoneorneeds_review;paperclip_blockacceptsblockedand requires a blocker owner, action, reason, and scope.
Both normalize through the canonical paperclip.run_result.v1 validator. The
first valid result is proposed. Any canonically identical result retry is
idempotent even when the provider assigned a new call ID; the original call
binding remains persisted for audit, while changed content is rejected. Tool
calls and provider notifications must name the exact opened thread and active turn. Missing,
pre-turn, cross-thread, cross-turn, and post-terminal bindings fail the provider
session closed. Canonically identical terminal replays are no-ops; conflicting
terminal facts are rejected. Process exit or prose alone never implies
completion.
The provider cannot commit controller state. It emits run.result.proposed and
a provider turn terminal; the mock core validates the proposal against its
task envelope, emits run.result.accepted or run.result.rejected, and alone
emits run.terminal.
Canonical event mapping
- thread lifecycle ->
session.started,session.resumed,session.reconciled; - turn lifecycle ->
turn.submitted,turn.accepted,turn.started, and one terminal turn event; - messages, reasoning, plans, commands, file changes, dynamic tools, and diffs
->
item.started,item.delta,item.completed; - model selection -> a completed
modelitem; - app-server decisions ->
runtime_request.createdandruntime_request.resolvedwith redacted detail; - token snapshots -> completed
usageitems; - semantic verification rows -> completed
verificationitems; - provider completion -> at most one
run.result.proposedand one turn terminal; - controller decision -> one
run.result.acceptedorrun.result.rejected, followed by onerun.terminal.
The JSON-RPC transport limits each input line, pending client requests, in-flight server requests, queued notification count and bytes, diagnostic lines, and retained provider payloads. Malformed or oversized messages close the transport and reject pending work.
The existing Replay reducer consumes the live stream. Replay crosses a serialized JSONL boundary that validates byte and event counts, line size, schema, run/session binding, unique source event IDs, continuous per-source sequence, and exactly one final run terminal before reducing. The Codex tracer requires byte-equivalent live and replay snapshots.
Runnable example
trace:codex starts a real local codex app-server session through the mock
core. Its safe task creates hello.txt with network disabled. The evidence
recorder additionally probes all readable host Codex credential/config files
and an unrelated host secret, requiring reads and writes to be denied while
workspace output and app-server authentication still succeed. It gates output
reads on an accepted done result and reports missing files by name rather
than surfacing a raw filesystem ENOENT. See the
Codex tutorial.
This phase changes no browser surface, so no new browser screenshot applies. The canonical events are proved through the existing reducer/replay path and JSON trace evidence.