# Conflicts: # docs/event-producer-consumer.md # examples/coding-agent/tests/code-mode.e2e.ts # examples/coding-agent/tests/harness.ts # examples/coding-agent/tests/resume.e2e.ts # examples/cordis-agent/tests/harness.ts # packages/bash/tool-bash/tests/integration.spec.ts # packages/compact/compact-basic/tests/compact-loop-repro.spec.ts # packages/cordis/tool-cordis/tests/integration.spec.ts # packages/core/agent-loop/tests/contract-regressions.spec.ts # packages/guard/repeat-tool-guard/tests/repeat-tool-guard.spec.ts # packages/hooks/hooks-claude/tests/bridge.spec.ts # packages/hooks/hooks-claude/tests/coverage.spec.ts # packages/hooks/hooks-codex/tests/bridge.spec.ts # packages/hooks/hooks-codex/tests/coverage.spec.ts # packages/todo/tool-todo/tests/integration.spec.ts
@deepseek-ai/dsh-hooks-codex
A cordis plugin that runs the supported subset of a user's existing Codex hook config on the harness's canonical interception seams. The Codex dialect half of the hooks subsystem. The dialect-agnostic primitives come from @deepseek-ai/dsh-hook-protocol; this bridge owns the Codex-shaped payloads, matcher mode, and decision mapping.
This bridge implements a deliberate subset of Codex's current hook protocol:
- Five of ten hook points:
PreToolUse,PostToolUse,SessionStart,UserPromptSubmit, andStop. - Regex-only matchers (no literal fast path; the matcher is always an unanchored regex).
- snake_case stdin payloads with
turn_id/modelextras, written without a trailing newline. - No Codex plugin env injection and no config-time placeholder substitution (the command still receives the executor's environment and runs through its shell).
- No pre-tool approval or rewrite path — a hook can block, but the bridge does not pre-approve or replace tool input.
A native cordis plugin could do everything this bridge does, more powerfully; the bridge exists only as a compatibility path for the mapped Codex subset (see the interception-seams RFC).
Config
import type { Config } from '@deepseek-ai/dsh-hooks-codex'
const config: Config = {
configPath: '/path/to/.codex/hooks.json', // required
model: 'deepseek-v4', // optional: stamped on every payload (Codex includes `model`)
defaultTimeoutMs: 600_000, // optional: per-hook timeout when a hook sets none
stderrSummaryMaxChars: 500, // optional: char cap on the hook/result event's persisted stderr summary
}
In a cordis.yml:
- dsh-hooks-codex:
configPath: ./.codex/hooks.json
model: deepseek-v4
The config is parsed once at load. configPath is process-level — a relative path resolves against the process launch cwd at load time, not per-session (TODO(per-session-hook-config)). A read/parse failure is contained (logs + registers nothing). Only sync type: 'command' hooks run — a non-command or async: true hook is parsed-and-skipped with a warning. A hook accepts timeout or the timeoutSec alias; one that sets neither runs under the protocol's reference default (DEFAULT_HOOK_TIMEOUT_MS from dsh-hook-protocol, 10 minutes). Events outside the five bridge-supported points are dropped at parse.
The hooks themselves run in the agent's session workspace: for the agent-scoped points the bridge passes the session's cwd as the hook process's working directory, so a hook operates in the user's project tree, not the server launch dir.
Hook points → seam Decisions
| Codex hook | Harness seam | Mapping |
|---|---|---|
SessionStart |
agent/session-start (emit) |
a plain-stdout hook's output → additionalContext → agent.inject() |
UserPromptSubmit |
agent/prompt-submit (waterfall) |
block (exit 2) → PromptDecision.block; additionalContext-only → delegate via next() then prepend a separately sourced context to downstream additionalContexts |
PreToolUse |
tools/pre-execute (waterfall) |
block → PreToolDecision.deny (no allow/ask) |
PostToolUse |
tools/post-execute (waterfall) |
block → block with feedback; additionalContext-only → delegate via next() then prepend a separately sourced context to the downstream decision; Code Mode defers sub-call contexts until the outer run_code result |
Stop |
agent/turn-continuation (waterfall) |
a blocking Stop hook forces continue with the reason as next-step steering |
A tool call's payload carries the real tool_name (the same value the matcher tests) and Codex's tool_input: { command } shape (the command arg when present, else ''). The matcher subject is the tool name (PreToolUse/PostToolUse) or the session source (SessionStart); UserPromptSubmit/Stop ignore matchers.
Every agent-scoped stdin payload carries session_id and transcript_path. The bridge resolves the latter through ctx.sessionPersistence.locate(session.header) when available and otherwise sends null, preserving the Codex string | null shape. Lookup does not create or flush the artifact, so a path can be absent before the first turn-end checkpoint or omit the current open turn.
SessionStart — the one emit point — runs detached; each run chain is tracked, and disposing the bridge aborts a still-running hook process, then drains the continuation before the dispose resolves (createDetachedRuns in dsh-hook-protocol).
Context source
Injected context carries an explicit { kind: 'plugin', plugin: 'hooks-codex' } source (agent.inject() would otherwise default it to { kind: 'user' }).
Model Experience
Hook-provided context
What the model sees: SessionStart, accepted prompt, and post-tool hooks can add source-attributed context messages; a blocking Stop hook adds its reason as next-step steering.
Token effect: No cost when hooks return no context. Hook text is data-dependent, logged, and resent until compaction.
Blocked prompt or tool outcome
What the model sees: Provider-supplied reasons pass through verbatim. When absent, a blocked prompt uses exactly blocked by UserPromptSubmit hook, a denied tool becomes Error: blocked by PreToolUse hook, blocked post-tool feedback is exactly blocked by PostToolUse hook, and a blocking stop adds steering exactly continue: blocked by Stop hook. Codex systemMessage is not surfaced.
Token effect: Blocking a prompt removes its request tokens; denial or feedback adds the retained fallback or provider text; forced continuation pays another full request.
Known Limitations and Deferred Work
- Unsupported hook events (5 of Codex's current 10):
PermissionRequest,PreCompact,PostCompact,SubagentStart, andSubagentStop. Config for these events is silently dropped during parsing. The comparison baseline is Codex's official hook reference. SessionStartis partial: plain stdout and JSONadditionalContextwork, but the hook runs detached, so context can miss the first request (TODO(session-start-gating)).UserPromptSubmitis partial: blocking plus plain-stdout or JSON context work, but the commonsystemMessageand{"continue": false}controls are not enforced.PreToolUseis partial: blocking works, butadditionalContext,permissionDecision: "allow", andupdatedInputare ignored. Every tool is represented astool_input: { command }, so non-shell tool arguments are not faithfully exposed to the hook.PostToolUseis partial: blocking feedback and JSONadditionalContextwork, but{"continue": false}is not enforced, non-shell tool arguments are reduced to{ command }, and structured tool output is flattened to text intool_response.Stopis partial: blocking forces another model turn, butstop_hook_activeis alwaysfalse,last_assistant_messageis alwaysnull, and{"continue": false}is not enforced. An unconditionally blocking hook therefore force-continues every step unless it self-limits (TODO(stop-loop-guard)).- Common payload and output fields are partial: every mapped event reports
transcript_path: null, the statically configuredmodel, andpermission_mode: "default"instead of current Codex runtime values.systemMessageis logged + warned but not surfaced, and{"continue": false}is recorded but does not apply Codex's event-specific stop behavior (TODO(hook-continue-false)). - Config loading and execution are partial: one process-level
configPathis parsed at load; Codex's active user, project, session, system/managed, and plugin layers, trust controls, and inlineconfig.tomlhook form are not implemented (TODO(per-session-hook-config)). Only synchronouscommandhandlers run, current metadata such asstatusMessageandcommandWindowsis ignored, and matching handlers run serially rather than with Codex's concurrent launch semantics.