agy-mcp
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MCP server that wraps the Antigravity CLI (agy): run agy prompts and peer reviews as async, restart-resilient jobs over stdio or Streamable HTTP.
agy-mcp
An MCP (Model Context Protocol) server that wraps the Antigravity CLI (agy), so any MCP client (Claude Code, Cursor, Cline, and others) can run agy prompts, peer reviews, and follow-up turns as native tools.
Status: feature complete (stdio and HTTP transports, async and sync job lifecycle, model and session discovery, cross-platform builds) and verified against a live agy (1.1.8).
Why
Driving agy from a shell for automation has two recurring problems:
agy -p(print mode) reads stdin even when the prompt is passed with-p. If stdin is an open pipe that never closes, it blocks indefinitely. The fix is to always close stdin (</dev/null), which is easy to forget.- A review can run for many minutes. A single blocking call ties up the caller and can exceed a client's tool-call timeout with nothing recoverable.
agy-mcp solves both by running agy as managed, asynchronous jobs behind a small, typed tool surface, and by capturing output to disk so a run survives a client disconnect or a server restart.
Every job runs agy --output-format stream-json, and the supervisor decodes that event stream as it arrives. That is where the conversation id, the response text, the failure message, and the token accounting all come from, so agy-mcp never has to infer any of them.
What it provides
agy_run/agy_status/agy_cancel: start anagyprompt, poll for completion, cancel if needed.agy_run_sync: start a prompt and wait for it inline (bounded, with MCP progress notifications); returns thejob_idto wait on or poll if it outlives the wait cap.agy_wait: block until an already-started job finishes (bounded, with MCP progress notifications); one call replaces anagy_statuspoll loop.list_models: enumerate availableagymodels.list_sessions: list known conversations so review threads can be continued.
Session continuation rides agy's own durable conversation store (--conversation <id>), so threads survive across calls without keeping a process warm.
A delegated run can modify your files. agy is launched with--dangerously-skip-permissions, so the agent it starts can read and write anywhere undercwd and under every directory passed in dirs, without prompting. For a review that must
not touch the repo, say so explicitly in the prompt. The tools declare this on the wire: agy_run andagy_run_sync are annotated destructiveHint: true / openWorldHint: true, agy_cancel isdestructiveHint: true / idempotentHint: true, and agy_status, agy_wait, list_models
and list_sessions are readOnlyHint: true. Annotations are hints, so a client is free to
ignore them; one that does gate confirmation on them may stop prompting for the four
read-only tools.
Two transports run the same core:
- stdio (default): zero-config, one line in your MCP client config.
- Streamable HTTP (opt-in): a long-lived, loopback-only daemon for multi-client use. See HTTP mode.
Requirements
agy 1.1.8 or newer, on
PATHor configured explicitly viaAGY_MCP_AGY_PATH. This is a hard floor, not a recommendation: 1.1.8 added--output-formatto print mode, and agy-mcp drives every job through thestream-jsonformat it introduced. Older builds are refused rather than degraded.The version is checked once per process, the first time a tool actually needs agy, and the verdict is cached. A binary that is too old is reported as
agy 1.1.8 or newer is required ...; found 1.1.7 at /usr/local/bin/agy. A failed check is deliberately not cached, so upgrading agy is picked up without restarting the server.A missing
agydoes not stop the server from starting.initialize,tools/list, andlist_sessionsnever exec it, so the lookup is deferred: the server starts, logs a warning to stderr, serves discovery normally, and the tools that do need the binary (agy_run,agy_run_sync,list_models) fail per call withagy not found on PATH; set AGY_MCP_AGY_PATH. Anagyinstalled later is picked up without restarting the server. An explicitAGY_MCP_AGY_PATHis treated differently: it is a claim about one specific binary, so a typo or a non-executable target still fails fast at startup.Go 1.26+ to build.
The server builds and runs on Linux, macOS, and Windows. Job supervision (running agy as managed jobs via
agy_run/agy_run_sync/agy_status/agy_cancel) is implemented on Linux and macOS (process groups, SIGTERM cancel, an advisory flock) and on Windows (Job Objects,OpenProcess+ process creation time,LockFileEx); stdio/HTTP serving,list_models, andlist_sessionswork identically everywhere.Windows behaves the same as Linux with two documented differences:
- Cancel and hard timeout are hard kills. Linux sends agy
SIGTERMand waits a 10s grace beforeSIGKILL; Windows has no equivalent signal for a detached process, soTerminateJobObjectends the whole process tree immediately with no flush window. - Cancel is delivered via a sentinel file, not a signal. The manager writes a
cancelfile into the job directory and the supervisor polls for it (a few hundred ms), since Windows cannot signal an arbitrary process. Liveness uses the process creation time (an absolute wall-clock value) to defend against PID recycling, which subsumes the Linux boot-id check across reboots.
- Cancel and hard timeout are hard kills. Linux sends agy
Note: every job spawns a fresh
agyprocess, which on startup launches whatever MCP servers are configured in agy's ownmcp_config.json. Peer-review and automation runs usually do not need those servers, and a slow or hanging one adds latency to every job. agy 1.0.7+ bounds this with a per-server launchtimeout(set-1to disable it). If startup is slow, give the unneeded servers atimeoutin agy'smcp_config.json, or point agy at a trimmed config.Note (continuation): a follow-up turn runs
agy --conversation <id> -p <prompt>, and the job result is theresponsefield of agy's terminalresultevent. Verified against 1.1.8: a resumed run returns only the new turn and echoes the same conversation id, withnum_turnsincremented.Note (auth): agy-mcp passes its own process environment through to every spawned
agy, so agy's normal OAuth credentials are used by default. For headless or daemon deployments (HTTP mode, cron) where no browser is available, setUSE_ADC=1in the server's environment to have agy authenticate via Google Application Default Credentials instead of the interactive sign-in flow (agy 1.0.11+). No agy-mcp flag or code change is needed; unset it to fall back to the other sign-in methods.
Install
go install github.com/tphakala/agy-mcp/v2@latest
The module path carries a /v2 suffix from v2.0.0 on, as Go requires for a major version. go install github.com/tphakala/agy-mcp@latest still resolves, but to the last v1 release.
Use with Claude Code (stdio)
claude mcp add agy -- agy-mcp
Or add to your MCP client config:
{
"mcpServers": {
"agy": { "command": "agy-mcp" }
}
}
Tools
agy_run(prompt, model?, dirs?, conversation_id?, continue_latest?, cwd?, timeout?)->{ job_id, conversation_id?, state }agy_run_sync(prompt, model?, dirs?, conversation_id?, continue_latest?, cwd?, timeout?, wait?)->{ job_id, state, elapsed, result?, error?, conversation_id?, partial?, num_turns?, usage?, note? }agy_status(job_id)->{ state, elapsed, result?, error?, conversation_id?, partial?, num_turns?, usage? }agy_wait(job_id, wait?)->{ job_id, state, elapsed, result?, error?, conversation_id?, partial?, num_turns?, usage?, note? }agy_cancel(job_id)->{ state }list_models()->{ models }list_sessions(dir?)->{ sessions }
usage is agy's own token accounting (input_tokens, output_tokens, thinking_tokens, cache_read_tokens, total_tokens), and together with num_turns it appears once a run reports a terminal result. partial marks a result reconstructed from the streamed text because agy never reported a final one, which happens when a run is cancelled, times out, or its supervisor dies mid-stream.
Parameter and result fields carry their own descriptions in the tool schemas, so a client sees
them without consulting this file. The constraints worth knowing up front: conversation_id
and continue_latest are mutually exclusive (setting continue_latest true alongside aconversation_id is an error); timeout is a Go duration and a value above 24h is rejected
outright, and on expiry theagy process tree is killed and the job ends in state failed; wait defaults to 2m and is
silently clamped to 10m, and it bounds only the inline wait, never the job itself. agy_cancel
is asynchronous, so it usually returns running and the job settles to cancelled a moment
later.
A fresh agy_run (no conversation_id, no continue_latest) reports the conversation agy
created for it. agy names the conversation in the init event of its stream, which arrives
about a second after the process starts, so agy_run waits briefly (up to 2s) for it and
returns a real conversation_id. If the wait expires the field comes back empty andagy_status supplies it moments later; either way the thread can be continued.
Fresh runs are not serialized. Any number of them can run in one directory at the same
time, bounded only by the global concurrency cap. Earlier versions refused a second fresh run
in a directory that already had one, because the conversation id had to be inferred by diffing
agy's shared conversation cache and that inference was only sound while nothing else could
touch the same entry. Reading the id from agy's own stream removes the ambiguity and the
restriction with it.
What is still serialized is a conversation: two runs continuing the same conversation_id
cannot overlap, because concurrent agy sessions on one conversation trigger a known session-lock
hang in agy itself. The second is refused with a conflict error rather than queued. That gate is
rebuilt at startup from jobs whose supervisor outlived a server restart, so it holds across
restarts.
Conversation serialization also holds across separate agy-mcp processes, which matters in
stdio mode, where each MCP client session spawns its own process sharing oneAGY_MCP_STATE_DIR. A per-conversation advisory lock (flock on a file under<state-dir>/locks/) stops two sibling sessions from continuing the same conversation at once.
The global concurrency cap, by contrast, is enforced per process: with N client sessions each
capped at the configured limit, up to N times that many runs can be in flight. Lock files are
left in place by design (unlinking a flock file races), so locks/ keeps one empty file per
conversation ever locked.
Two caveats, both now scoped to continuations only. AGY_MCP_STATE_DIR must live on a local
filesystem that supports flock (not NFS, where flock may be a no-op or fail); a continuation
is refused rather than started if the lock cannot be taken, so cross-process exclusion can never
silently lapse. And across a server restart there is a brief window, while the manager process is
down, before it re-takes the locks for jobs whose supervisor outlived it; a sibling process that
continues the same conversation during that window is not blocked. The in-process gate is always
restored at startup, so this gap is limited to the restart window itself. Fresh runs take no lock
at all and are unaffected by either caveat.
Completion wake for Claude Code
Claude Code does not surface MCP server notifications to the model: progress notifications are UI-only, and there is no server-initiated push that can wake the model when an async job finishes. Polling agy_status after agy_run is the protocol-level baseline. agy-mcp ships a hook bridge that turns job completion into a real wake instead, built on Claude Code's asyncRewake hook mechanism: a background PostToolUse hook that exits with code 2 wakes the model with the hook's stderr as a system reminder.
Add to your Claude Code settings.json:
{
"hooks": {
"PostToolUse": [
{
"matcher": "mcp__agy__agy_run(_sync)?",
"hooks": [
{ "type": "command", "command": "agy-mcp hook-wait", "asyncRewake": true, "timeout": 3700 }
]
}
]
}
}
How it behaves:
- After every
agy_run, the hook waits (in the background, off the session's critical path) for the job's completion sentinel and then wakes Claude with a one-line message naming thejob_idand final state, prompting the model to callagy_statuswhen the result is actually ready. agy_run_synccalls that returned their result inline produce no wake; a sync call that overran its wait cap (and so returned a still-running job) gets the same completion wake asagy_run.- On timeout (default 1h,
-timeoutto change) the hook still wakes Claude, reporting the job as still running, so a long job is never silently lost, provided the outer hooktimeoutexceeds hook-wait's own-timeout(see thesettings.jsonnote below). An externally interrupted wait (a SIGINT or SIGTERM delivered to hook-wait) also wakes, with a distinct "wait interrupted" message pointing atagy_waitandagy_status, rather than exiting silently and dropping the owed wake. On any internal error the hook exits 0 silently; it can never disrupt the tool call it observes. The hook-leveltimeoutinsettings.json(3700 above) must exceed hook-wait's own-timeout(1h by default), so hook-wait's internal timeout always fires first and reports the wake itself; if the outertimeoutis equal or lower, Claude Code kills the hook process first and the exit-2 wake is lost, silently defeating that guarantee. - The
agyin the matcher patternmcp__agy__agy_run(_sync)?is the server name you passed toclaude mcp add agy; if you registered the server under a different name, change both theclaude mcp addname and thatagysegment of the matcher. - Claude Code runs hooks with the user's shell environment, not the MCP server entry's own env block, so if the server is registered with a custom
AGY_MCP_STATE_DIRthe same value must also be exported in the shell (or passed inline in the hook command) or hook-wait will silently look in the wrong state directory and never wake.
Two related subcommands, useful beyond Claude Code:
agy-mcp wait-job [-timeout 1h] <job_id>blocks until the job is terminal and prints the final state word (done,failed, orcancelled) to stdout. Exit codes: 0 terminal, 1 error, 2 usage, 3 timeout, 130 interrupted. It needs only the job state directory, not the agy binary, so it works in minimal environments.agy-mcp hook-wait [-timeout 1h]is the hook entrypoint described above: it reads the PostToolUse payload from stdin, so it is not useful to invoke by hand, but it is a single self-contained binary call, no shell wrapper or jq required, and it works on Linux, macOS, and Windows. The file-based wake contract is exercised by tests on all three platforms; the signal-interrupt wake (SIGINT/SIGTERM) is a POSIX behavior and is tested there.
MCP clients other than Claude Code get the same no-polling benefit in-protocol: call agy_wait with a job_id from agy_run (or from an agy_run_sync that outlived its inline wait) and the tool blocks (bounded by wait, default 2m, max 10m) until the job finishes.
HTTP mode
agy-mcp -http 127.0.0.1:8765
HTTP mode is opt-in and only accepts a loopback bind address (localhost, 127.0.0.1, or ::1). A non-loopback address (including :8765, which binds all interfaces) is refused at startup, so it cannot be accidentally exposed.
Two extra hardening layers are always available:
- Origin/CSRF protection is always on. A state-changing cross-origin browser request (one carrying a cross-site
Sec-Fetch-Siteor a mismatchedOrigin) is rejected with403. Normal non-browser MCP clients (Claude Code, Cursor, the go-sdk client) send noOriginheader and are unaffected. - Optional bearer token. Set
-http-token <token>(orAGY_MCP_HTTP_TOKEN) to requireAuthorization: Bearer <token>on every request; a missing or wrong token gets401. The flag overrides the env var. Off by default, so the bare loopback mode stays unauthenticated.
agy-mcp -http 127.0.0.1:8765 -http-token "$(openssl rand -hex 32)"
Upgrading from v1
v2 requires agy 1.1.8 and drives it through --output-format stream-json. The upgrade is safe to do in place, but two things are worth knowing.
Stop the server before replacing the binary. The supervisor is the same agy-mcp binary re-executed as agy-mcp run-job <dir>, so replacing it under a live v1 server pairs an old manager with a new supervisor. The supervisor detects that case and asks agy for the event stream anyway, so no result is lost, but a v1 manager and a v2 process sharing one AGY_MCP_STATE_DIR briefly disagree about cross-process locking, and a v1 run's conversation id can be misattributed in that window.
Jobs already in the state directory keep working. A job dir written by v1 loads cleanly (the two removed meta.json fields are simply ignored) and its result is still reported in full. Two degradations apply until those jobs age out of the 24h TTL:
- A v1 fresh run may report no
conversation_id. v1 recovered it by diffing agy's conversation cache, and v2 has no such path. Recover the thread withlist_sessionsif you need it. - Cancelled and interrupted v1 jobs behave as before; only the id is affected.
Behaviour changes to check your client against: agy_run now blocks up to 2s waiting for agy to name the conversation, instead of returning instantly; fresh runs in the same directory no longer conflict, so anything that relied on that conflict error as a mutex now gets real concurrency (and agy runs with --dangerously-skip-permissions, so concurrent runs edit one working tree); and list_models is now refused on an agy older than 1.1.8, even though agy models itself would work there.
Configuration
| Env | Default | Meaning |
|---|---|---|
AGY_MCP_AGY_PATH |
agy on PATH |
path to the agy binary |
AGY_MCP_STATE_DIR |
$XDG_STATE_HOME/agy-mcp |
job state directory |
AGY_MCP_DEFAULT_MODEL |
agy default | default model |
AGY_MCP_HTTP_TOKEN |
(none) | optional bearer token for HTTP mode; empty = unauthenticated |
Development
go build ./...
go test ./... -race
golangci-lint run
CI builds and vets on Linux, macOS, and Windows; runs the race-enabled test suite on Linux and macOS; and runs the test suite (without the race detector) on Windows.
License
MIT. See LICENSE.
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