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fabro-sh-0530[bot] e3bbe91053
Add GET/POST /automations/{id}/runs endpoints (#442)
## Summary

Implements the two automation run endpoints from issue #399, backed by a
significant refactor of the worker control channel from stdin JSONL to a
WebSocket-based pub/sub bus.

## What changed

### New API endpoints (`automations.rs`)

- `GET /automations/{id}/runs` — lists cached runs filtered to those
linked to the given automation ID, sorted newest-first, with
`page[limit]`/`page[offset]` pagination and the standard `{ data, meta
}` envelope.
- `POST /automations/{id}/runs` — requires `RequiredRunToolActor` auth,
checks that the automation exists and has an enabled API trigger
(returning 409 with `automation_api_trigger_disabled` otherwise),
materializes the run manifest, and delegates to the shared
`create_run_from_manifest` helper with a fully-populated
`AutomationRef`.

### `enabled_api_trigger()` helper (`fabro-automation`)

A new method on `Automation` encapsulates the "automation is enabled
**and** has an enabled API trigger" check, keeping the handler clean.

### Worker control channel: stdin JSONL → WebSocket bus

The most significant structural change is how the server delivers
control messages (answers, cancel, pause/unpause, steer, pair events) to
running workers:

| Before | After |
|---|---|
| Server pipes JSONL lines to worker stdin | Server publishes to
`WorkerControlBus`; worker connects via WebSocket |
| Worker reads stdin on a blocking OS thread | Worker manages a
reconnecting WebSocket with ping/pong liveness |
| No delivery deduplication | `AppliedWorkerControlDeliveryIds`
deduplicates replayed frames |
| No reconnect / resume | Worker reconnects with exponential backoff;
replays from last applied cursor |

The `LocalWorkerControlBus` replaces the old `mpsc` channel and stdin
pipe. `RunAnswerTransport::Subprocess` is renamed `Worker` and holds a
`run_id` + `Arc<dyn WorkerControlBus>` instead of a channel sender.
Worker stdin is now `Stdio::null()`.

New control messages `RunPause` / `RunUnpause` are added to the
protocol, wired through to `RunControlState`.

### Plan Summary

- Add `enabled_api_trigger()` to `Automation`.
- Implement `list_automation_runs` and `create_automation_run` handlers;
route them under `/automations/{id}/runs`.
- Expose `create_run_from_manifest` from the runs handler for reuse.
- Add `RequiredRunToolActor` extractor.
- Replace stdin JSONL worker control with `WorkerControlBus` + WebSocket
reconnect loop in the CLI worker.
- Add integration tests for all 409/201 cases, run persistence, listing
filters, pagination, and sorting.


### Fabro Details

<details>
<summary>Ran 8 stages in 51m 5s for $21.34</summary>

| Stage | Duration | Cost | Retries |
|---|---|---|---|
| start | 0s | – | 0 |
| toolchain | 1s | – | 0 |
| preflight_compile | 2m 8s | – | 0 |
| preflight_lint | 2m 23s | – | 0 |
| implement | 20m 52s | $13.05 | 0 |
| simplify_opus | 11m 5s | $5.70 | 0 |
| simplify_gpt | 5m 0s | $2.60 | 0 |
| verify | 9m 4s | – | 0 |
| **Total** | **51m 5s** | **$21.34** | **0** |

</details>

<details>
<summary>Ran <code>ImplementPlan.fabro</code> (11 nodes and 14
edges)</summary>

```dot
digraph ImplementPlan {
    graph [
        goal="Implement and simplify",
        model_stylesheet="
            * { model: claude-opus-4-7; }
        "
    ]
    rankdir=LR

    start [shape=Mdiamond, label="Start"]
    exit  [shape=Msquare, label="Exit"]

    toolchain         [label="Toolchain", shape=parallelogram, script="command -v cargo >/dev/null || { curl --proto '=https' --tlsv1.2 -sSf https://sh.rustup.rs | sh -s -- -y && sudo ln -sf $HOME/.cargo/bin/* /usr/local/bin/; }; cargo --version 2>&1", max_retries=0]
    preflight_compile [label="Preflight Compile", shape=parallelogram, script="cargo check -q --workspace 2>&1", max_retries=0]
    preflight_lint    [label="Preflight Lint", shape=parallelogram, script="cargo +nightly-2026-04-14 clippy -q --workspace --all-targets -- -D warnings 2>&1", max_retries=0]
    fix_lints         [label="Fix Lints", prompt="The preflight lint step failed. Read the build output from context and fix all clippy lint warnings.", max_visits=3]
    implement         [label="Implement", prompt="Read the plan file referenced in the goal and implement every step. Make all the code changes described in the plan. Use red/green TDD.", model="gpt-55", reasoning_effort="xhigh"]
    simplify_opus     [label="Simplify (Opus)", prompt="@prompts/simplify.md"]
    simplify_gpt      [label="Simplify (GPT-55)", prompt="@prompts/simplify.md", model="gpt-55"]
    verify            [label="Verify", shape=parallelogram, script="git fetch origin main 2>&1 && git merge --no-edit --no-stat origin/main 2>&1 && cargo +nightly-2026-04-14 fmt --all 2>&1 && cargo dev docs refresh 2>&1 && cargo +nightly-2026-04-14 fmt --check --all 2>&1 && { command -v rg >/dev/null 2>&1 || { echo 'rg is required for verify'; exit 127; }; } && ! rg -n 'AuthMode::Disabled|RunAuthMethod|RunSubjectProvenance|\bActorRef\b|\bActorKind\b|AuthenticatedSubject|AuthenticatedService|AuthorizeRunScoped|AuthorizeRunBlob|AuthorizeStageArtifact|AuthorizeCommandLog|auth_method\s*==\s*\"disabled\"' lib/crates apps lib/packages docs/public/api-reference/fabro-api.yaml 2>&1 && cargo +nightly-2026-04-14 clippy --workspace --all-targets -- -D warnings 2>&1 && cargo nextest run --workspace --status-level slow --profile ci 2>&1 && cargo dev docs check 2>&1 && bun install --frozen-lockfile 2>&1 && (cd apps/fabro-web && bun run typecheck) 2>&1 && (cd apps/fabro-web && bun run test) 2>&1 && (cd lib/packages/fabro-api-client && bun run typecheck) 2>&1 && cargo dev build -- -p fabro-cli --release 2>&1", goal_gate=true, retry_target="fixup"]
    fixup             [label="Fixup", prompt="The verify step failed. Read the build output from context and fix all format, clippy, Rust test, docs, TypeScript typecheck/test, and build failures.", max_visits=3]

    start -> toolchain
    toolchain -> preflight_compile [condition="outcome=succeeded"]
    toolchain -> exit
    preflight_compile -> preflight_lint [condition="outcome=succeeded"]
    preflight_compile -> exit
    preflight_lint -> implement [condition="outcome=succeeded"]
    preflight_lint -> fix_lints
    fix_lints -> preflight_lint
    implement -> simplify_opus -> simplify_gpt -> verify
    verify -> exit  [condition="outcome=succeeded"]
    verify -> fixup
    fixup -> verify
}

```

</details>

⚒️ Generated with [Fabro](https://fabro.sh)

---------

Co-authored-by: Fabro <noreply@fabro.sh>
2026-05-27 22:29:29 -04:00
.ai/prompts Unify fabro run foreground to use create + start + attach (#141) 2026-03-22 22:48:09 -04:00
.cargo refactor(dev): decouple CLI reference generation 2026-05-06 12:31:02 -04:00
.claude refactor: remove devcontainer support (#433) 2026-05-27 12:48:40 -04:00
.config refactor: remove devcontainer support (#433) 2026-05-27 12:48:40 -04:00
.fabro feat(sandbox): secure daytona snapshot names (#429) 2026-05-27 11:52:35 -04:00
.github feat(web): add Children tab to Run detail page (#294) 2026-05-17 10:21:40 -04:00
apps refactor: Remove inbound IP allowlisting (#443) 2026-05-27 22:29:08 -04:00
bin/agent chore: remove legacy FABRO_JWT_* key generation script 2026-04-25 12:33:03 -04:00
docker Add Docker host preflight checks 2026-05-09 19:25:30 -04:00
docs refactor: Remove inbound IP allowlisting (#443) 2026-05-27 22:29:08 -04:00
evals/swe-bench refactor(workflow): remove retro stage (#230) 2026-05-09 10:18:20 -04:00
installer refactor(release): simplify pre-release channel to nightly only 2026-04-17 11:39:19 -04:00
lib Add GET/POST /automations/{id}/runs endpoints (#442) 2026-05-27 22:29:29 -04:00
test fix(skills): Ensure the local server can access project skills (#383) 2026-05-24 13:22:00 -04:00
.dockerignore chore: move docker-context/ staging dir under tmp/ 2026-04-25 12:37:45 -04:00
.env.example chore: remove legacy FABRO_JWT_* key generation script 2026-04-25 12:33:03 -04:00
.gitattributes chore: mark generated fabro-api-client as linguist-generated 2026-05-16 17:17:42 -04:00
.gitignore fix(server): make --watch-web honest and fast 2026-05-06 10:36:01 -04:00
AGENTS.md refactor: remove devcontainer support (#433) 2026-05-27 12:48:40 -04:00
bun.lock Replace DIY overlay primitives with Radix UI + Sonner (#424) 2026-05-26 23:03:06 -04:00
Cargo.lock refactor: Remove inbound IP allowlisting (#443) 2026-05-27 22:29:08 -04:00
Cargo.toml feat(automation): persist automation refs on runs (#428) 2026-05-27 11:52:57 -04:00
CLAUDE.md Move CLAUDE.md to AGENTS.md with symlink for compatibility 2026-03-09 13:02:06 -04:00
clippy.toml refactor(docs): split docs/ into public/ and internal/ 2026-04-27 07:21:13 -07:00
CONTRIBUTING.md docs: offer issue-based contribution path alongside PRs 2026-05-16 13:40:23 -04:00
docker-compose.local.yaml chore(compose): drop debug log override for local docker 2026-04-30 08:25:50 -04:00
docker-compose.prod.yaml chore: move Caddyfile into docker/ 2026-04-27 11:23:02 -07:00
docker-compose.yaml Improve Docker Compose deployment defaults 2026-05-09 18:59:25 -04:00
Dockerfile feat(server): support stdout log destination 2026-04-26 14:52:15 -04:00
install.md Move install files to apps/marketing/public, symlink from repo root 2026-03-16 13:23:58 -04:00
install.sh Move install files to apps/marketing/public, symlink from repo root 2026-03-16 13:23:58 -04:00
LICENSE.md Add README.md and MIT LICENSE 2026-03-10 14:48:58 -04:00
package.json chore: remove stale SQLite references after retirement 2026-04-05 21:29:24 -04:00
README.md docs: accept outside pull requests 2026-05-13 07:27:26 -04:00
rustfmt.toml fmt 2026-04-11 11:27:46 -04:00

Fabro

The open source dark software factory for expert engineers

AI coding agents are powerful but unpredictable. You either babysit every step or review a 50-file diff you don't trust. Fabro gives you a middle path: define the process as a graph, let agents execute it, and intervene only where it matters. Why Fabro?

Rust License: MIT docs Discord

# With Claude Code
curl -fsSL https://fabro.sh/install.md | claude

# With Codex
codex "$(curl -fsSL https://fabro.sh/install.md)"

# With Homebrew
brew install fabro-sh/tap/fabro-nightly

# With Bash
curl -fsSL https://fabro.sh/install.sh | bash

Then run fabro server start to finish setup in your browser. The server opens a web wizard, exits when the wizard completes, and starts in configured mode the next time you run it.

Fabro Runs board showing workflows across Working, Pending, Verify, and Merge stages

Use Cases

  • Extend disengagement time — Stop babysitting an agent REPL. Define a workflow with verification gates and walk away — Fabro keeps the process on track without you.
  • Leverage ensemble intelligence — Seamlessly combine models from different vendors. Use one model to implement, another to cross-critique, and a third to summarize — all in a single workflow.
  • Share best practices across your team — Collaborate on version-controlled workflows that encode your software processes as code. Review, iterate, and reuse them like any other source file.
  • Reduce token bills — Route cheap tasks to fast, inexpensive models and reserve frontier models for the steps that need them. CSS-like stylesheets make this a one-line change.
  • Improve agent security — Run agents in cloud sandboxes with full network and filesystem isolation. Keep untrusted code off your laptop and out of your production environment.
  • Run agents 24/7 — Fabro's API server queues and executes runs continuously. Close your laptop — workflows keep running and results are waiting when you return.
  • Scale infinitely — Move execution off your laptop and into cloud sandboxes. Run as many concurrent workflows as your infrastructure allows.
  • Guarantee code quality — Layer deterministic verifications — test suites, linters, type checkers, LLM-as-judge — into your workflow graph. Failures trigger fix loops automatically.
  • Inspect every run — Query durable event streams, checkpoints, conclusions, and stage outputs to understand what happened and improve the workflow.
  • Specify in natural language — Define requirements as natural-language specs and let Fabro generate — and regenerate — implementations that conform to them.

Key Features

Feature Description
🔀 Deterministic workflow graphs Define pipelines in Graphviz DOT with branching, loops, parallelism, and human gates. Diffable, reviewable, version-controlled
🙋 Human-in-the-loop Approval gates pause for human decisions. Steer running agents mid-turn. Interview steps collect structured input
🎨 Multi-model routing CSS-like stylesheets route each node to the right model and provider, with automatic fallback chains
☁️ Cloud sandboxes Run agents in isolated Daytona cloud VMs with snapshot-based setup, network controls, and automatic cleanup
🔌 SSH access and preview links Shell into running sandboxes with fabro sandbox ssh and expose ports with fabro sandbox preview for live debugging
🌲 Git checkpointing Every stage commits code changes and execution metadata to Git branches. Resume, revert, or trace any change
📊 Run observability Durable events, checkpoints, conclusions, and stage outputs make every run inspectable and exportable
Comprehensive API REST API with SSE event streaming and a React web UI. Run workflows programmatically or as a service
🦀 Single binary, no runtime One compiled Rust executable with zero dependencies. No Python, no Node, no Docker required
⚖️ Open source (MIT) Full source code, no vendor lock-in. Self-host, fork, or extend to fit your workflow

Example Workflow

A plan-approve-implement workflow where a human reviews the plan before the agent writes code:

Plan-Implement workflow graph showing Start → Plan → Approve Plan → Implement → Simplify → Exit with a Revise loop
digraph PlanImplement {
    graph [
        goal="Plan, approve, implement, and simplify a change"
        model_stylesheet="
            *        { model: claude-haiku-4-5; reasoning_effort: low; }
            .coding  { model: claude-sonnet-4-5; reasoning_effort: high; }
        "
    ]

    start [shape=Mdiamond, label="Start"]
    exit  [shape=Msquare, label="Exit"]

    plan      [label="Plan", prompt="Analyze the goal and codebase. Write a step-by-step plan.", reasoning_effort="high"]
    approve   [shape=hexagon, label="Approve Plan"]
    implement [label="Implement", class="coding", prompt="Read plan.md and implement every step."]
    simplify  [label="Simplify", class="coding", prompt="Review the changes for clarity and correctness."]

    start -> plan -> approve
    approve -> implement [label="[A] Approve"]
    approve -> plan      [label="[R] Revise"]
    implement -> simplify -> exit
}

Agents run as multi-turn LLM sessions with tool access. Human gates (hexagon) pause for approval. The stylesheet routes planning to a cheap model and coding to a frontier model. See the Graphviz DOT language reference for the full syntax.


📖 Documentation

Fabro ships with comprehensive documentation covering every feature in depth:

  • Getting Started -- Installation, first workflow, and why Fabro exists
  • Defining Workflows -- Node types, transitions, variables, stylesheets, and human gates
  • Executing Workflows -- Run configuration, sandboxes, checkpoints, observability, and failure handling
  • Tutorials -- Step-by-step guides from hello world to parallel multi-model ensembles
  • API Reference -- Full OpenAPI spec with authentication, SSE events, and client SDKs

Quick Start

Install

# With Claude Code
curl -fsSL https://fabro.sh/install.md | claude

# With Codex
codex "$(curl -fsSL https://fabro.sh/install.md)"

# With Homebrew
brew install fabro-sh/tap/fabro-nightly

# With Bash
curl -fsSL https://fabro.sh/install.sh | bash

Release binaries and the multi-arch Docker image ship with SLSA Build Provenance attestations. See Verifying Releases to check an artifact was built by our GitHub Actions workflow.

Then finish setup in your browser and initialize Fabro in your project:

fabro server start     # opens a web install wizard in your browser
                       # (server exits when the wizard finishes — start it again to run Fabro)

cd my-project
fabro repo init        # per project

For headless or scripted environments, fabro install runs the same setup as a CLI-only wizard.


Running Fabro

Fabro runs as a server. You choose where it runs:

  • On your laptop — install the CLI (above) and run fabro server start. Workflows pause when your laptop sleeps.
  • On a host (self-hosted) — deploy the Docker image with docker compose or any cloud container service (ECS, Cloud Run, Kubernetes). See Self-host with Docker.

One-click managed alternative for the same Docker image:

Deploy on Railway

See the deployment overview for the full picture.


Contributing to Fabro

Outside contributions are welcome! Whether it's a bug fix, a new feature, documentation, or a typo -- we'd love your help making Fabro better.

  • Bug fixes and small improvements -- Send a pull request directly.
  • Larger features or changes -- Open a GitHub Issue or start a Discussion first so we can align on the approach.
  • Questions -- Open a Discussion or email bryan@qlty.sh.

See CONTRIBUTING.md for build instructions and development workflow.


Help or Feedback


License

Fabro is licensed under the MIT License.