Agent Skillsjazzyalex/agent-sessions › agent-session-format-check

agent-session-format-check

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用于验证 Agent Session 格式兼容性,通过运行监控脚本并分析报告数据,检测会话模式、使用限制及存储后端是否与新版本代理构建兼容。

skills/agent-session-format-check/SKILL.md jazzyalex/agent-sessions

触发场景

Agent CLI 更新后 监控标志漂移时 需要提升最大验证版本时

安装

npx skills add jazzyalex/agent-sessions --skill agent-session-format-check -g -y
更多选项

不安装直接使用

npx skills use jazzyalex/agent-sessions@agent-session-format-check

指定 Agent (Claude Code)

npx skills add jazzyalex/agent-sessions --skill agent-session-format-check -a claude-code -g -y

安装 repo 全部 skill

npx skills add jazzyalex/agent-sessions --all -g -y

预览 repo 内 skill

npx skills add jazzyalex/agent-sessions --list

SKILL.md

Frontmatter
{
    "name": "agent-session-format-check",
    "description": "Verify agent session format compatibility for Agent Sessions. Use when any agent CLI updates, when monitoring flags drift, or when bumping max verified versions (fixtures + docs + tests). Covers session schema, usage\/limits tracking, storage backends, and discovery path contracts for all supported agents."
}

Agent Session Format Check

Answer one precise question for every supported agent:

Can current Agent Sessions code support the latest available session/storage/usage format from the latest available agent build?

The answer must be layered. Do not collapse version checks, stale samples, schema fingerprints, discovery contracts, and usage probes into a vague severity label.

Evidence-first:

  • Gather a report + sample paths first.
  • Do not change parsers/fixtures/docs without explicit user approval.

Related skill: agent-support-matrix — maintains the matrix YAML, ledger, and update-checklist workflow. This skill focuses on detection and evidence collection; agent-support-matrix focuses on recording and gating version bumps.

Process doc: docs/agent-support/monitoring.md — defines the compatibility verdicts, legacy severity model, cadence, and escalation workflow that feed into this skill.


1 Quick Start (all agents)

  1. Run weekly monitoring:

    ./scripts/agent_watch.py --mode weekly
    

    Report path prints to stdout and is written under scripts/probe_scan_output/agent_watch/*/report.json.

  2. In report.json, check each agent under results.<agent>:

    • compatibility.verdict, compatibility.scope, compatibility.blockers, and compatibility.next_action
    • verified_version, installed.parsed_version, upstream.parsed_version
    • compatibility.latest_status to distinguish current_fetch_known, cached_latest, and unknown latest-source states
    • weekly.local_schema (newest local session used for fingerprinting)
    • weekly.schema_diff and evidence.schema_matches_baseline
    • evidence.sample_freshness and evidence.fresh_evidence_source
    • compatibility.latest_real_session_failure when a prebump attempt failed
    • severity and recommendation only as legacy escalation fields
  3. Usage / limits reading (Codex + Claude) — always verify every weekly run. These drift independently of session schema (see §2), so a clean schema does not imply healthy usage reading. Each agent's results.<agent>.weekly.probes is a list; for every relevant entry confirm ok == true and exit_code == 0:

    • Codex — label == "codex_status_probe" (parse codex_status_json): the active CLI status channel (five_hour, weekly percent-left). The passive channel is the session JSONL token_count / rate_limits events, covered by the schema fingerprint above.
    • Claude — label == "claude_usage_probe" (parse claude_usage_json): the authenticated /usage reading (session_5h, week_all_models, week_opus). Also label == "claude_status" (parse claude_status_json): status.claude.com indicator/incidents. A failed or unparsed usage probe is a usage-format or auth regression even when versions match and the session schema is clean — never skip it, and report each probe's ok explicitly rather than collapsing it into the compatibility verdict.
  4. Classify every new field for value, not just for safety (§1e). A field that parses cleanly is safe, which is not the same as handled. Do not close a drift finding until each new key or type has been called noise, watch, or feature-candidate — and candidates filed in docs/backlog.md, not left as a remark in the ledger.

Interpretation:

  • supports_latest: latest known build is covered by evidence.fresh_evidence_source == "latest_prebump_report" and compatibility.latest_real_session_evidence == true with compatibility.latest_status == "current_fetch_known".
  • supports_installed_only: installed build is covered by non-stale real local evidence, but latest is newer, cached from a prior report, unknown, or lacks fresh real-session proof.
  • latest_unknown: no configured/reachable latest source or no real-session driver exists; do not claim latest support. Check STEWARDS.md before calling this a finding — for a steward-verified agent not installed here, this verdict is the expected output and the agent belongs to its steward, not to you (§1g).
  • blocked_stale_sample: evidence predates the installed CLI; run prebump before claiming support.
  • blocked_no_fresh_evidence: a version changed but no fresh matching sample proves support.
  • format_drift_detected: unknown schema/storage/usage fields appeared; update fixtures/parsers.
  • blocked_thin_sample: the sample was both narrow and tiny, so it evidenced nothing either way (§5a). Generate a session that actually uses tools — not a one-line prompt.
  • monitoring_broken: latest source, usage probe, or discovery contract failed.
  • real_session_auth_failed in blockers: the real-session driver ran but the sandboxed agent was not authenticated; re-auth or provide the configured env token, then rerun prebump.

1a Real-Session Prebump Validation (required before latest claims)

Weekly scanning samples the newest on-disk session, which can predate a CLI upgrade and give a false "safe to bump" call (the codex 0.120.0 trap and the copilot session.shutdown trap). When weekly reports recommendation == run_prebump_validator — or before you stage any max_verified_version bump or latest-support claim — run the prebump path for every active agent being claimed. The driver exercises the currently installed CLI once inside a sandbox and diffs its output against the fixture baseline:

./scripts/agent_watch.py --mode prebump --agent codex --agent claude

Exit-code contract:

  • 0 — every requested agent produced a fresh session and the schema matches baseline. Safe to bump.
  • 2 — at least one fresh session's schema does not match baseline. Do not bump; investigate the schema diff in scripts/probe_scan_output/agent_watch/<slug>-prebump/report.json.
  • 3 — at least one driver failed (timeout, auth, CLI not found, or discovery contract violation — wrong session root, wrong glob, or missing required event types).
  • 4 — config/invariant error: unknown --agent (or one with no prebump block), missing/invalid discover_session contract, credential hygiene failure (oversize / mode), or sandbox breach (copilot hermeticity gate). Re-run with --allow-real-home only if you understand your real config dir will be mutated for that one invocation.

Flags:

  • --agent <name> (repeatable) — restrict to specific agents. An unknown agent or one without a prebump config block exits 4.
  • --keep-sandbox — preserve the temp $HOME for debugging.
  • --timeout-seconds N — per-driver timeout. CLI flag overrides per-agent config; falls back to config, then global default (120s).
  • --force-fresh — suppress staleness evaluation for this run only (records stale_reason=forced_fresh in the report).
  • --allow-real-home — copilot/real-HOME opt-in after a sandbox-breach diagnostic; never persistent.

A thin prebump can no longer downgrade a rich weekly union. A passing prebump replaces the weekly schema_diff with its own one-prompt session, and the thin-sample gate used to score only that: on 2026-08-13 codex reported blocked_thin_sample off a 20-event prebump while its weekly union carried 2808 clean events — adding evidence made the verdict worse. _sample_is_thin() is now applied to every available sample and only blocks when all of them are thin (pinned by test_thin_prebump_does_not_override_rich_weekly_union).

Give real_home_session agents a tool-using prompt. Their prebump session lands in the real store and enters the newest-_LOCAL_SCHEMA_SAMPLE_COUNT window, so a "Say hello" prompt actively degrades the next weekly sample — two such runs pushed antigravity's union down to 24 events and a genuine blocked_thin_sample. Claude's "Say hi, then use the Bash tool to run pwd." is the pattern; verify any prompt change with a real run, since a tool-using prompt can hang or return nothing on CLIs whose one-shot mode does not complete a tool turn.

A passing prebump is a floor, not a ceiling. Drivers use one-line prompts, so a fresh session may contain only the four most basic event types and still report fresh_matches_baseline=True — it proves the CLI still writes parseable output, not that rich event families are unchanged. For real_home_session: true agents that session also lands in the real store and becomes the newest sample; §5a's multi-session union is what stops it from masking drift. Check the fresh session's type count before treating a pass as broad evidence.

Configured real-session drivers today are codex, claude, antigravity, copilot, opencode, hermes, openclaw, cursor, pi, kimi, and grok. Droid is legacy-only and excluded from active checks. Qwen has no driver — it reports no_real_session_driver_configured and can never claim supports_latest; judge it on the weekly schema diff instead. That is not a gap to fill with code: Qwen's OAuth free tier was discontinued 2026-04-15, so no session can be generated at all until a paid plan or alternate provider is configured (see §1c).

Staleness short-circuits the schema verdict. blocked_stale_sample is reported instead of drift, so a stale agent can be hiding real drift behind it. Kimi sat at blocked_stale_sample while every one of its sessions carried two unmodelled event types; building its driver surfaced them immediately. Treat a stale verdict as "unknown", never as "clean".

Prebump uses the hybrid env-var-first auth policy: if the relevant API-key env var (OPENAI_API_KEY, ANTHROPIC_API_KEY, FACTORY_API_KEY, GITHUB_TOKEN) is set it is forwarded into the sandbox and real HOME is never read. Otherwise the driver copies the declared credential file from real HOME into the sandbox after running three hygiene gates (64 KiB max, mode 0600, ≤90-day mtime warning). v1 drivers: codex_exec, claude_print, antigravity_print, copilot_prompt, opencode_run, hermes_oneshot, openclaw_local_agent, cursor_agent_print, pi_prompt, and kimi_prompt. Some OAuth/keychain-backed CLIs use real_home_session: true; run them with --allow-real-home so the session lands in the real agent store instead of copying single-use auth state into a sandbox.


1b Claiming a Newer Upstream Build (install → fresh session → verify → bump)

A version bump is never just a YAML edit. max_verified_version claims that the app parses sessions written by that build, and the only thing that can prove it is a session that build actually wrote. So when upstream.parsed_version is newer than installed.parsed_version, the sequence is fixed:

1. Install the newer CLI (its own updater, brew, or npm — whatever owns it).
2. ./scripts/agent_watch.py --mode prebump --agent <name>     # writes a FRESH session
3. Confirm exit 0 and fresh_matches_baseline == true.
4. Only now bump max_verified_version + ledger + tracking log (§6).

Step 2 is not optional, and skipping it makes the report actively worse. Installing an update rewrites nothing on disk: the newest session is still the one the old build wrote, so it is now older than the CLI binary and the agent flips from supports_installed_only (a real claim, backed by real evidence) to blocked_stale_sample (which per §1a means unknown, never clean). That is why the 2026-08-13 pass deliberately did not install Hermes 0.19.0: without a working one-shot run to generate a fresh session, updating would have destroyed a verdict it could not replace. Install only if you can complete step 2.

An agent with no prebump driver cannot do this loop at all. It is permanently capped at supports_installed_only, however clean its weekly looks, because nothing can produce a session from a build on demand. Build the driver first — grok_single (added 2026-08-17) is the worked example, and see §1d for what building one involves.

Re-read the installed version after the run. Several CLIs self-update because the prebump invoked them — copilot, cursor and antigravity all did on 2026-08-13 — so the build you validated may not be the build you started with. Bump to what the post-run report says is installed, not to what you intended to install.


1c When an Agent Cannot Produce a Session At All

Some agents are blocked for reasons no driver can fix, and the distinction matters because it decides whether there is engineering work to do:

  • Fixable, ours — a broken install. OpenCode sat at installed=unknown with an Exec format error that read like a driver bug; /opt/homebrew/bin/opencode was actually the npm package's shell stub, because its postinstall never ran. Run file $(which <agent>) before suspecting anything schema-shaped.
  • Fixable, theirs — a broken agent config. OpenClaw and Hermes both fail on borrowed backends that are misconfigured in the user's own environment (§ledger 2026-08-13).
  • Not fixable by us — the account or plan is gone. Qwen's OAuth free tier was discontinued 2026-04-15; qwen -p returns "Run /auth to switch to Coding Plan, OpenRouter, Fireworks AI, or another provider," and qwen auth is itself "(removed)" in 0.21.x. No driver, re-login, or fixture can produce a session. Record the verdict honestly as blocked_stale_sample, say why in the matrix, and stop — it is a billing decision for the maintainer, not a task.

Do not let category three masquerade as category one. A missing driver looks like engineering work right up until you try to authenticate.


1d Building a Prebump Driver

Drivers live in scripts/agent_watch_prebump_drivers.py and register into DRIVERS; their config block is agents.<name>.prebump in agent-watch-config.json. Copy the nearest existing driver rather than starting from the Protocol.

Non-obvious requirements, each learned from a real failure:

  • Declare discover_session with the modern roots/globs/required_types keys. The config gate rejects anything else with exit 4, and the runtime validator then proves the driver returned the artifact it claimed rather than some other file.
  • Check the agent is in MATRIX_KEY_FOR_AGENT (scripts/agent_watch.py). A missing entry does not error: baseline_paths comes back empty, the diff takes its "no baseline → nothing diffs" branch, and the prebump reports fresh_matches_baseline=true having compared nothing. grok was missing from the prebump copy of that map on 2026-08-17 while present in the weekly copy, so its first driver would have passed vacuously. The map is now single-sourced and pinned by test_every_monitored_agent_is_registered_in_the_rebuild_tool.
  • Prefer an API-key env var; fall back to a credential file. prepare_auth is the only auth path — never build env from os.environ inside a driver. Some agents have no key env var at all (grok's only documented one is GROK_SANDBOX), so the credential copy is their sole route and the 0600 hygiene gate always applies.
  • Give it a tool-using prompt, and for real_home_session: true agents especially — their session lands in the real store and enters the newest-5 weekly window, so a "Say hello" prompt degrades next week's sample (§1a).
  • If a session is a directory, verify the sidecars before returning ok. Grok's summary.json is a discovery precondition; returning a transcript whose sidecar never landed hands the fingerprinter half a session and reports the gap as schema drift.

Then verify the driver the way you would verify a finding: run it, confirm baseline_type_count in the report is non-zero (proving a baseline was consulted), and confirm the fresh session actually contains a tool call rather than four trivial events.


1e The Value Pass (what new fields are for, not just whether they break us)

This check has a structural blind spot, and it is worth stating plainly: it asks only "does it still parse?" Because the parsers read JSON as dictionaries, the answer is almost always yes — an unknown key is never read, an unknown type falls to a default: branch and becomes a .meta event. So every finding exits the funnel as "no parser change needed," which is true and also the end of the thought. Nothing ever asks whether upstream just started telling us something a user would want to see.

The cost is not hypothetical. Kimi's turn.ended.durationMs was noted in the 2026-08-13 ledger as "the natural source of a per-turn duration UI" and then sat there, because a ledger note is a remark, not work. And Qwen shipped with "usage/rate-limit tracking" listed as an unsupported surface while every one of its transcripts carried full per-call token accounting — 53 records in one ordinary session. The data was never missing. Nobody opened it.

So classify every new key or type into exactly one of three buckets, and record which:

Bucket Meaning Action
noise internal plumbing, ids, or telemetry nobody would look at fixture only; say so once so it is not re-litigated
watch meaningful but not actionable yet — a field that will matter if it starts appearing widely, or that only one source emits fixture + a line in the ledger note
candidate carries information a user would want on screen fixture + an entry in docs/backlog.md

Cheap heuristics for spotting a candidate: it is a number a user would ask about (tokens, cost, duration, context size), it names something currently anonymous (which connector ran this tool, which model, which provenance), or it records a state transition the UI hides (mode changes, rewinds, compaction).

Two rules that keep this honest:

  • Check the value before believing the matrix. unsupported_surfaces describes what the app does, never what the agent emits. Qwen's entry made a present surface look absent for a full release. When a value pass contradicts a matrix line, the matrix line is the thing that is wrong.
  • Measure before promoting. Claude's budget_usd carries real dollars and looked like a free replacement for the estimated-cost path — until counting showed it in 2 of 410 recent sessions, because it only appears when a budget is set. Confirm how often a field actually occurs, and on which record types, before filing it as a candidate.

Candidates go in docs/backlog.md under the matching area section, using that file's own entry format, with verified stamped to the date of the sweep that found them. A format check should end with two outputs: a clean bill of health, and a short list of things upstream started telling us that we are not yet using.


1f Steward Check (what a community steward runs)

Each agent has a steward: a contributor who uses that agent daily and re-verifies its format a few times a year, or after a big vendor release. A steward is not expected to know any of the above. They run one command:

./scripts/steward_check.py <agent>       # ./scripts/steward_check.py --list-agents

It runs the ordinary weekly scan (§1) restricted to that one agent, against the steward's own local sessions, and answers in plain sentences with one of three exits:

  • 0 — all good. all good: <agent> format matches the baseline (N sessions sampled), plus the matrix's verified version. If their CLI is newer than the verified version and the schema still matches, it says the matrix entry can be bumped — that is the §1b evidence a maintainer needs.
  • 1 — drift. The schema diff in plain words, a redacted sample written to scripts/probe_scan_output/steward_check/<agent>/redacted-sample/, and a ready-to-paste GitHub issue body (also saved as issue.md).
  • 2 — cannot check. The CLI is not installed, there are no sessions on disk, or the repository has no baseline fixtures for that agent yet. Says which.

What it deliberately does not do: write or rebuild any baseline fixture. Deciding that drift is real and rebuilding a baseline stays a maintainer job (scripts/rebuild_stage0_baseline.py --agent <agent> --emit, §5a/§7).

The sample reuses rebuild_stage0_baseline._redact — the same trimming that produces committed fixtures — and then re-scans the result for home directories, emails, key-shaped strings, IPs and long opaque ids. If anything survives, the sample is withheld entirely and the issue body says so; a steward is never handed an almost-clean file to paste into a public issue.

Maintainer side of the same command: when a steward's issue arrives, its sample is already in fixture shape, so it drops straight into Resources/Fixtures/stage0/agents/<agent>/ for a baseline rebuild. Verify the redaction yourself anyway before committing (§7).


1g Agents With a Steward (what the maintainer does not chase)

STEWARDS.md assigns each agent a tier: Maintained (the maintainer runs it daily), Steward-verified (a named contributor re-checks it on their own machine), or Best-effort (nobody yet). A sweep must read that tier before deciding an agent is a problem, because the scan cannot distinguish "this agent is broken" from "this agent is not installed here." Both surface as installed=unknown, latest_unknown, cli_binary_unresolved, or a discovery contract failing no_local_file.

For a steward-verified agent that is absent from this machine, all of those are the expected, correct output. They are not findings. Do not:

  • report them as drift, gaps, or open work in the sweep summary;
  • install the CLI to "close" them — a maintainer install with no sessions in it produces no better evidence and starts a support obligation nobody asked for;
  • bump or lower max_verified_version from a machine with no sessions from that build. The steward's dated verification is the evidence, and overwriting it with a local guess destroys the only real record.

What a sweep does owe a steward-verified agent, in order:

  1. State the tier next to the verdict. "fx: latest_unknown — steward-verified, no local CLI" is a complete, honest line. "fx: latest_unknown" alone reads as a hole.
  2. Check the steward's date, not the schema. The question is not "did the format move?" — nobody here can answer that — it is "how long since anyone who runs this agent looked?" Two or three checks a year is the agreed cadence; past that, the entry is aging, and that is the finding.
  3. Ping, don't investigate. When it is due, or when upstream shipped a release the record predates, ask the steward to run ./scripts/steward_check.py <agent>. That is a ten-minute job for them and an impossible one here.
  4. Route what you already know. If the sweep saw something relevant — an upstream version the record predates, a contract that changed shape — put it in the ask so the steward is not re-deriving it.

Read the recommendation through the tier. The verdict vocabulary assumes the maintainer can run the agent, so for a steward-owned one it gives advice you cannot take. Translate: blocked_no_fresh_evidence / rec=run_prebump_validator on a steward agent does not mean "run prebump" — no driver here can produce a session for a CLI that is not installed. It means upstream moved past what the steward last verified, and the action is the ping in step 3. Configure the agent's upstream source even when nothing else about it is checkable locally: it is the only channel that can raise this, and without it the rule above is unenforceable. fx sat at upstream=unknown for exactly this reason while v0.0.6 and v0.0.7 shipped past a record reading 0.0.5, and the sweep reported nothing.

A steward-verified agent only becomes maintainer work when its steward goes quiet. At that point the honest move is to drop it to Best-effort in STEWARDS.md and say so, not to quietly keep claiming a verification nobody performed.

Ordering trap. STEWARDS.md is the human table and the matrix is the machine record; the file itself says the matrix wins on disagreement. But the tier lives only in STEWARDS.md — the matrix has no steward: field — so a purely matrix-driven sweep is structurally blind to stewardship and will keep re-reporting the same non-findings every week. Read both, and if you find yourself about to file a steward-verified agent as a gap, that is the bug.


2 Usage / Limits Drift (Codex + Claude)

Usage and limits tracking can drift independently of session schema. Monitor both.

Codex

  • Passive channel: session JSONL token_count / rate_limits event structure. This is covered by the schema fingerprint only because codex is fingerprinted nested (§5a) — these events live under event_msg.payload, and the flat fingerprint that ran until 2026-08-03 stopped at {payload,timestamp,type} and could never see them. If codex is ever moved back to the flat fingerprint, this channel goes unwatched again.
  • Active channel (weekly): codex_status_capture.sh output schema — parsed as codex_status_json by agent_watch.py.
  • Check: in results.codex.weekly.probes (a list), the entry with label == "codex_status_probe" returns ok == true and exit_code == 0. If not, investigate whether Codex changed its status output format.

Claude

  • Active channel (weekly): claude_usage_capture.sh output schema — parsed as claude_usage_json.
  • Context probe: ./scripts/claude-status --json records status.claude.com indicator/incidents (parsed as claude_status_json).
  • Check: in results.claude.weekly.probes (a list), the entry with label == "claude_usage_probe" returns ok == true — if false, the usage API response format may have changed, or authentication may be required. The label == "claude_status" entry (parse claude_status_json) reports status.claude.com indicator/incidents.
  • If probe health fails (parsing_failed, auth required, etc.), treat as high severity because the UI can break.

Known issue: Claude usage probe exit 16 (parsing_failed)

claude_usage_capture.sh can fail with exit 16 when Claude auth tokens are exhausted. The /usage TUI command itself stops working in this state. This is not a format change — resolution requires claude auth login. The failure is intermittent and clears after re-authentication. The Swift side silently retains the last known good snapshot.

What to look for in upstream release notes

  • New or renamed fields in usage/billing/token responses.
  • Auth changes (new scopes, cookie rotation, API key requirements).
  • Rate-limit header changes or new quota enforcement mechanisms.

2a Model Price Freshness (Session Runway $ burn)

The runway's $ presentation prices per-type token rates against a model table, so it drifts whenever a provider changes prices or ships a model slug we don't know — with no schema change and no failing probe. Nothing else in this scan catches it. Unlike a broken probe, stale prices fail silently: the number still renders, just wrong.

Sources of truth (fetch these, don't recall them):

The table lives in two places that MUST stay identical:

  • docs/prices.json — served to clients from GitHub Pages (corrects shipped apps with no release)
  • RunwayPriceTable.bundledJSON in AgentSessions/CodexStatus/RunwayPriceTable.swift — the compiled-in default (offline / pre-first-fetch)

Checks

  1. Prices unchanged? Compare every key's inputPerMTok / cachedInputPerMTok / outputPerMTok / cacheWritePerMTok against the official pages. Anthropic cache columns are derived: read = 0.1x input, 5m write = 1.25x input.

  2. New model slugs? Any tier we don't have a key for is dropped from $ (it still shows in tk/h), so a new model silently disappears from the cost view. Check what the local CLIs actually emit rather than guessing:

    # Codex: the model lives on turn_context lines
    grep -ho '"model":"[^"]*"' ~/.codex/sessions/$(date +%Y/%m)/*/*.jsonl | sort -u
    # Claude: message.model on assistant lines
    find ~/.claude/projects -name '*.jsonl' -mtime -7 -print0 \
      | xargs -0 -n1 jq -r 'select(.type=="assistant") | .message.model' 2>/dev/null | sort -u
    

    Every slug returned must resolve via longest-prefix against a table key.

    Known slugs that look alarming but are fine (verified 2026-07-14):

    • <synthetic> (Claude) — not a model. It appears on assistant lines and does carry a usage object, but every field is 0, so it forms a zero-rate component and dollarsPerHour skips it. Do NOT "fix" this by adding a price key; the zero-rate exemption is what keeps it from dropping the whole session. If Claude ever gives <synthetic> real tokens, that exemption stops applying and every Claude session would vanish from $ — re-check this if it changes.
    • codex-auto-review (Codex) — Codex's internal auto-review label, on turn_context. It bills real tokens, and because an unpriced contributing slice makes dollarsPerHour return nil for the whole session, a missing key here didn't understate the cost — it deleted the session from $ entirely. Priced at the gpt-5.6/sol default since 2026-08-03. This is the failure mode to look for whenever a session is missing from $: check for a slug with no key before anything else.
    • gpt-5.6-codex (Codex) — no key of its own; resolves to the gpt-5.6 fallback (sol pricing). OpenAI publishes no separate -codex rate, so that is the best available assumption. The bare gpt-5.6 key exists for exactly this.
  3. Prefix collisions? Keys match by longest prefix, so a shorter key must never shadow a longer one, and a legacy key must never capture a current slug (e.g. claude-opus-4-1 must NOT match claude-opus-4-8). Adding a bare claude-opus-4 would break exactly this. testPriceTableLegacyKeysPriceWithoutShadowingCurrent and testPriceTableBundledAndPrefixMatch pin it — run them after any table edit.

  4. Temporary pricing expired? Introductory/promo rates have end dates — but check whether the end date still stands before "correcting" anything. Claude Sonnet 5's $2/$10 was announced as introductory through 2026-08-31; Anthropic has since made it the standard price and cancelled the scheduled rise to $3/$15, so the explicit claude-sonnet-5 key at $2/$10 is correct and must not be reverted to the claude-sonnet $3/$15 fallback (verified 2026-08-30 against the pricing page's claude-sonnet-5-introductory-pricing note). A promo whose date has simply passed is the easy case; this is the one that costs you, because the stale plan reads as authoritative.

Updating

Edit docs/prices.json, mirror the identical change into bundledJSON, and always advance updated. Clients only accept a manifest whose updated is >= their bundled table's, so a forgotten bump means the correction is ignored — that date is the only thing preventing a stale cache from shadowing corrected prices. Pushing docs/prices.json corrects already-shipped apps within a day, with no release.

Verify: xcodebuild test -scheme AgentSessions -only-testing:AgentSessionsTests/CodexUsageParserTests

Cadence

Monthly is enough — provider prices move rarely, but when they move they move a lot (Opus went $15/$75 → $5/$25, a 3x overstatement that ran undetected). Also check on any new model launch, since an unknown slug drops that session from $ entirely.


3 OpenCode Storage Changes

OpenCode's current local backend is SQLite at ~/.local/share/opencode/opencode.db. Legacy installs may still have a multi-file JSON tree (storage/session/, storage/message/, storage/part/). Monitoring is SQLite-first and falls back to the legacy JSON tree when no database is present.

Current layout

~/.local/share/opencode/opencode.db

# legacy fallback
~/.local/share/opencode/storage/session/<project>/ses_*.json
~/.local/share/opencode/storage/message/<sessionId>/msg_*.json
~/.local/share/opencode/storage/part/<messageId>/*.json

What to watch for

  • New storage backends: OpenCode is a Go application. Watch upstream releases for introduction of SQLite, BoltDB/bbolt, Badger, or other embedded databases alongside or replacing the JSON file tree.
  • Schema changes in any record type: session, message, or part records can evolve independently. The fingerprinter tracks keys per record kind.
  • New record types or directories: a new sibling to session/message/part would indicate a storage expansion.
  • Migration flags: look for version, migration, schema_version fields in session records or new migration files in the OpenCode repo.

Detection in agent_watch.py

  • opencode_storage_latest_session checks db_roots first and fingerprints session, message, and part rows from opencode.db.
  • If no database is present, _opencode_storage_session_tree_schema_fingerprint() walks the legacy JSON tree for a session and reports keys per record kind.
  • Risk keywords in agent-watch-config.json still flag release notes mentioning storage migrations such as SQLite, BoltDB/bbolt, Badger, or database changes.

3a Cursor Storage

Cursor uses two storage backends:

  • JSONL transcripts (~/.cursor/projects/<workspace>/agent-transcripts/<uuid>/<uuid>.jsonl) — primary session data, parsed by Agent Sessions. Subagent transcripts live in a subagents/ subdirectory.
  • SQLite chat databases (~/.cursor/chats/<workspace-hash>/<uuid>/store.db) — supplementary metadata (session name, model, timestamps). Key "0" in the meta table contains hex-encoded JSON.

The weekly scan fingerprints JSONL transcripts only. The SQLite probe (cursor_sqlite_probe.py) verifies the meta table is readable — it does not deep-fingerprint the database schema.

What to watch for:

  • New top-level keys on role: user/assistant lines.
  • New content block types beyond text, tool_use, tool_result, thinking.
  • The agent-transcripts/ directory being renamed or moved.
  • SQLite probe failures indicating meta table schema changes.

Note: Some machines may have a stale PATH shim for cursor even when Cursor.app is installed. The weekly monitor tries the PATH command first, then falls back to the embedded app CLI at /Applications/Cursor.app/Contents/Resources/app/bin/cursor --version.

Cursor CLI latest-source truth comes from the official installer script at https://cursor.com/install, which embeds downloads.cursor.com/lab/<build>/... agent CLI package URLs. The Homebrew cursor-cli cask page is a fallback. Do not use the unrelated npm package named cursor-agent.

Cursor Desktop agent windows use the same local surfaces as Cursor CLI: ~/.cursor/projects/*/agent-transcripts/**/*.jsonl for transcript content and ~/.cursor/chats/*/*/store.db for chat metadata. The weekly cursor_sqlite_probe must keep reporting the newest Desktop chat DB's agentId, createdAt, mode/model fields, mtime, and meta-key schema so fresh Desktop-only windows are visible even when their JSONL transcript is absent or older.


4 Discovery Path Contracts

Each agent has a discovery_path_contract in agent-watch-config.json defining the expected file layout Agent Sessions uses to discover sessions. If an upstream agent moves or renames its storage, discovery breaks even if the parser still works.

Weekly monitoring checks these contracts. When a contract fails:

  • severity escalates to high.
  • The session viewer will silently stop finding new sessions for that agent.
  • Investigate whether the agent changed its storage location or naming convention.

Key contracts (simplified from regexes in agent-watch-config.json):

Agent Expected pattern
Codex */sessions/YYYY/MM/DD/rollout-*.jsonl
Claude ~/.claude/projects/**/*.{jsonl,ndjson}
OpenCode */opencode/storage/session/*/ses_*.json
Hermes ~/.hermes/sessions/session_*.json
Antigravity ~/.gemini/antigravity/brain/<conversation-id>/*.md
Copilot ~/.copilot/session-state/*.jsonl
OpenClaw */agents/<id>/sessions/*.jsonl
Cursor ~/.cursor/projects/*/agent-transcripts/*/*.jsonl
Grok ~/.grok/sessions/<enc-workdir>/<sessionId>/chat_history.jsonl

required_companion_files — sidecars discovery refuses to work without

A contract may also declare required_companion_files, a list of paths resolved relative to the sampled transcript's own directory. Each entry is either a bare string (existence is enough) or {path, must_parse, note}, where must_parse: "json_object" additionally requires the file to load as a JSON object. A breach fails the whole contract, so it lands as severity: high, verdict: monitoring_broken, and a probe_or_discovery_failed blocker — the same escalation as a moved store.

Declare one whenever the app's discovery guard chain refuses a session over a file that is not the transcript. The schema fingerprint structurally cannot cover this: a sidecar that fails to load simply contributes no keys, and _schema_diff ignores missing_keys/missing_types on purpose (a thin sample legitimately lacks baseline types — that is what coverage_ratio is for). Sibling-union sampling then erases even that trace, because the other four sampled sessions refill the bucket. Verified on a copy of the real Grok store with one sidecar hidden: unknown_types: [], unknown_keys: {}, unknown_only_is_empty: true — a total discovery outage reporting as no drift. Never expect the schema channel to catch a missing companion file.


4a Grok Sessions Are Directories

A Grok session is a directory, not a file: chat_history.jsonl holds the transcript and the sibling summary.json holds everything discovery depends on (info.id, info.cwd, current_model_id, chat_format_version). Fingerprinting only the transcript would leave that half unwatched, so _grok_session_schema_fingerprint() merges the summary in as a summary bucket — schema diffs on summary/summary.info are summary.json drift, not transcript drift.

The sidecar is a discovery precondition, not a schema nicety. GrokSessionDiscovery.discoverSessionFiles() skips any session directory whose summary.json is absent, so losing that one file removes every Grok session from the app. Merging it into the fingerprint does not protect it — see §4 required_companion_files, which is what actually flips the verdict. Grok declares it with must_parse: "json_object", deliberately stricter than the app's own fileExists guard: a present-but-corrupt sidecar still lists the session but strips its id, cwd, title and both timestamps. _grok_session_schema_fingerprint() also records a summary_error (missing / unreadable / invalid_json / not_json_object) so the fingerprint stops pretending it read a sidecar it could not.

Grok's parser is now tolerant like the other twelve. GrokSessionParser used to decode summary.json through a Codable struct, so one field arriving with a new type threw and try? dropped the whole sidecar — id, cwd, title, model and both timestamps at once. It reads JSONSerialization dictionaries field by field now, so vendor additions are ignored keys and a changed field costs exactly that field. Drift is therefore an alert here (this scan), never a crash — pinned by GrokSessionParserTests.testUnknownNewFieldsAreIgnored and testSidecarFieldOfTheWrongTypeCostsOnlyThatField.

Grok is fingerprinted nested (§5a). Flat would stop at {type, content, ...} and hide the content-part types (user.content:text, user.content:image) and backend_tool_call.kind.action, which is where its format actually moves. arguments is opaque — it is a tool's parameter object, not Grok format.

The baseline is two session directories: grok/ (top-level) and grok/subagent/. That split is deliberate — session_kind appears only on subagent sessions and is absent from top-level ones, so stamping it on the top-level fixture would have taught the inverted semantics to anything that later classifies on it. Keys that belong to one kind go in that kind's fixture; the baseline unions both.

Latest version comes from two sources that disagree. Grok ships a native x.ai binary through the grok-build Homebrew cask, and the cask lags x.ai releases. The grok_update_check probe declares latest_version_key: "latestVersion", and _reconcile_latest_version_from_probes() takes the higher of cask and CLI — max, not replace, because the CLI answers only for its own pinned channel, so a lower CLI answer must never hide a newer published release. The chosen number's origin is in upstream.parsed_version_provenance (cli_probe / upstream_source / both_agree / cached_prior_report), the full comparison in upstream.reconciliation, and any disagreement prints on the weekly summary line as latest_disagree=probe:<v>/source:<v>/used:<v>. Never read upstream.parsed_version without its provenance.

Still unwatched: subagents/<childId>/meta.json — the parent's sidecar, and the only place parent_session_id and subagent_type appear, so the hierarchy feature depends on it (the grok/subagent/ fixture is a subagent session, not that sidecar) — and the compaction/ subtree. No fixture covers either yet. Also unwatched: the app's 50 MB defaultFullParseMaxBytes ceiling, above which GrokSessionParser silently declines to parse a transcript, and a wholesale move of the ~/.grok/sessions root, which surfaces only as local_schema.error: no_files_found plus a stale sample rather than as a named contract failure (discovery_contract_failed is gated on a file having been found).


5a How the Fingerprint Works (and what it cannot see)

Read this before trusting a clean unknown_types=[].

Nested vs flat. _schema_fingerprint_for_agent() in scripts/agent_watch.py is the one place that decides depth. Codex, Copilot and Claude use _nested_jsonl_schema_fingerprint (depth 3); Kimi uses its own loop-event walker; everyone else is flat. Baseline and observed sample always go through this same function — fingerprinting one side flat and the other nested diffs two different alphabets.

Lists are unioned across every element (capped at _NESTED_LIST_SAMPLE_LIMIT), not sampled by their first item. Claude's message.content mixes text/thinking/tool_use blocks, so first-item-only made later block types invisible — the exact drift the nesting exists to catch.

Two rules keep nesting from manufacturing drift:

  • _NESTED_OPAQUE_KEYS — keys whose values are open-ended maps. Codex's patch_apply_end.changes is keyed by absolute file path; descending into it invents a bucket per edited file and writes real user paths into report artifacts. Copilot keys modelMetrics by model id. Add a key here rather than accepting the noise.
  • The :type discriminator applies only at the payload wrapper (depth 0→1), where the real event union lives (event_msg.payload:token_count). Deeper, type tags enum-like config variants (sandbox_policy:read-only), and splitting on those makes an ordinary settings change look like schema drift.

Claude's opaque keys are input and toolUseResult — both are TOOL-defined payloads, not Claude format, so walking them would make every new tool read as schema drift.

Still flat: OpenClaw, Pi, Droid, plus the bespoke Hermes/OpenCode/Cursor/Kimi fingerprinters. Their payload interiors are unwatched; nothing has been lost to that yet, but the same blind spot applies in principle.

Multi-session sampling. Weekly fingerprints the newest _LOCAL_SCHEMA_SAMPLE_COUNT (5) sessions and unions them. This exists because sampling one session let whichever session was newest decide the verdict — a 4-line "Say hello" prebump session, left in the real store by --allow-real-home, once flipped antigravity from format_drift_detected to clean with the drift still sitting in a 92KB session two files back. When required_types is configured, sibling sampling must honour it (_newest_files_with_types): OpenClaw's **/*.jsonl glob otherwise sweeps in audit logs and an embedded codex-home and reports codex's event types as OpenClaw drift.

blocked_thin_sample fires only when a sample is both narrow (<50% of baseline types) and tiny (<25 events). Coverage alone is not enough: baselines deliberately contain rare interactive-only families (ai-title, pr-link, permission-mode) that a perfectly healthy 1000-event session will never contain.

Never build a fixture from a handful of recent sessions. Rare families are rare, so a 5-session sample misses them by construction and the weekly then reports "drift" every time one surfaces — alerts that mean our baseline was incomplete, not upstream changed. On 2026-08-04 that gap was 13 of 24 Claude attachment subtypes and 9 of 18 Codex event_msg families. Rebuild from every session on disk instead:

./scripts/rebuild_stage0_baseline.py --agent claude          # report the gap
./scripts/rebuild_stage0_baseline.py --agent claude --emit   # append redacted coverage

It sweeps all discoverable sessions, greedily harvests the fewest real records that close the gap, and redacts every scalar (only type/role/subtype/model survive, because those are the schema). Read its report before --emit: a bucket keyed by a UUID, path or header name is a free-form map that belongs in _NESTED_OPAQUE_KEYS, not in the fixture. That is how collab_waiting_end.statuses (keyed by thread id) and system.error.headers (keyed by HTTP header, carrying set-cookie) were caught.

Baseline semantics. _baseline_type_keys_for_agent() excludes *schema_drift* fixtures. So once a drifted type is verified and handled, it belongs in the normal baseline fixture — otherwise it re-reports as drift every week forever (Copilot's session.auto_mode_resolved and session.usage_checkpoint did exactly that from 2026-07-22 until 2026-08-03). schema_drift.jsonl is for adversarial/speculative shapes only.


5 What to Collect as Evidence

Alongside the report fields below, record the value-pass ruling (§1e) for every new key or type: noise, watch, or candidate. A finding is not closed until it has one, and candidates are not closed until they are in docs/backlog.md.

From the weekly report (all agents):

  • The path in results.<agent>.weekly.local_schema.file (newest session).
  • The schema diff summary: unknown_types, unknown_keys (additive drift), missing_types, missing_keys (may mean "not observed in this sample").
  • Probe results and ok status for usage probes.
  • Discovery path contract pass/fail status.

Optional (recommended when a bump is needed):

  • Copy the newest session file(s) into scripts/agent_captures/<timestamp>/<agent>/.
  • Keep captures private (do not commit raw sessions; they can contain paths and prompts).

6 Verification Update Checklist (after approval)

  1. Refresh fixtures for the affected agent under Resources/Fixtures/stage0/agents/<agent>/. Put verified-and-handled types in the normal fixture, not schema_drift.jsonl — see §5a. Make the fixture a superset of the old key sets; silently dropping keys shrinks the baseline.
  2. Ensure fixtures include the "important" event families when present:
    • Session metadata / session_meta payload keys.
    • Tool call / tool result events.
    • Usage/limits events (token_count, rate_limits, billing) when emitted.
    • Optional event wrappers (compaction, context, delta events) when present.
    • For OpenCode: representative session, message, and part JSON files.
  3. Bump the verified version record — only after a session written by that build exists (§1b). If the version you are bumping to is newer than what is installed, stop and run the install → prebump → verify loop first; a bump with no fresh session behind it is an unbacked claim, and installing without generating one regresses the agent to blocked_stale_sample.
    • docs/agent-support/agent-support-matrix.yml (agents.<key>.max_verified_version)
    • Append a new entry in docs/agent-support/agent-support-ledger.yml
    • Add a line to docs/agent-json-tracking.md under "Upstream Version Check Log"
  4. Run tests locally:
    xcodebuild -project AgentSessions.xcodeproj -scheme AgentSessions \
      -destination 'platform=macOS' test
    
  5. Run discovery-contract tests:
    ./scripts/xcode_test_stable.sh -only-testing:AgentSessionsTests/SessionParserTests
    

7 Redaction Guardrails (fixtures)

When turning a real session into a committed fixture:

  • Replace long instruction bodies with a short placeholder string (keep structure).
  • Remove or truncate large base64/data-url blobs if present.
  • Prefer keeping only minimal, deterministic message text (e.g., "List the files").
  • Keep the schema shape intact: do not delete keys just because values were redacted.
  • For OpenCode multi-file fixtures: redact each file independently but preserve cross-file references (session ID in message paths, message ID in part paths).

版本历史

  • da13918 当前 2026-09-09 11:16

    修复了 fx 代理上游源缺失导致监控规则无法触发的问题,确保能正确检测版本滞后。

  • 0a81ad4 2026-08-28 14:39

    移除对 Gemini CLI 的支持,清理相关死代码和配置项。

  • d213416 2026-08-20 04:16

    修复 GrokSessionParser 的侧边栏解析容错问题,新增 steward-check 命令;增加新字段分类逻辑(噪音/观察/候选),防止误判上游数据变更。

  • e881b78 2026-07-25 10:02

同 Skill 集合

.claude/skills/deploy/SKILL.md
.claude/skills/release-notes/SKILL.md
skills/agent-support-matrix/SKILL.md
skills/sc-skill/SKILL.md
tools/handover/SKILL.md
skills/add-agent-support/SKILL.md

元信息

文件数
0
版本
da13918
Hash
5e0db1dd
收录时间
2026-07-25 10:02

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