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Codex conversations never appeared in the session list, and the resume path skipped codex, so picking one back up meant finding its thread id by hand and POSTing codexConfig.resumeSessionId to /api/sessions. Two gaps caused it: - The unified list is built from ~/.claude/projects plus omp's own store. Codex writes to neither: its rollouts live in ~/.codex/sessions/<y>/<m>/<d>. - terminal-ui.js sends a continuation only for the CLIs with a "continue most recent" flag. Codex has no such flag — it names a thread by an exact id — and nothing supplied one. Add codex-transcript.ts, the codex analog of omp-transcript.ts, and wire it into gatherUnifiedInputs() beside the omp scan. A rollout row carries `resumeId`, the thread id `codex resume` takes, and the resume path sends it as codexConfig.resumeSessionId. `resumeId` is what keeps the two kinds of row apart: only a transcript scanner sets it, so a LIVE codex row — whose sessionId is Codeman's own uuid — can never ask codex for a thread that does not exist. Three things measured against a real store of 519 rollouts rather than assumed: - Rollouts are far too large to read whole (median 407 KiB, p90 1.3 MiB, max 25 MiB, 381 MiB total), so this reads a 128 KiB head for the identity and the opening prompt and a bounded tail for the most recent one. session_meta is written once and never rewritten, so per-path identity is cached; a warm rescan of that store costs ~75ms against ~470ms cold. - codex 0.152.1 emits no event_msg/user_message rows at all. It writes event_msg/item_completed carrying an item.type of UserMessage. Both shapes are read, plus response_item as a last resort. - That last resort sees injected context, and the first such row is the repo's AGENTS.md every time, so injections are dropped rather than used as titles. Sub-agent threads (thread_source: 'subagent') are left out; codex spawns them for itself and on a real store they outnumber the resumable threads.