* fix: resolve reviewer head_sha from thread metadata, not frozen run config A push that lands while a reviewer run is in flight is delivered as a queued message into that run. The run's configurable is frozen at creation, so its head_sha still names the commit the run was created for — not the commit just pushed. publish_review then anchored the GitHub review to the stale commit and regressed last_reviewed_sha to it, and add_finding/update_finding stamped findings with the stale SHA. Persist the current head in thread metadata at every reviewer dispatch (both the ready-for-review and push paths, before they branch to create a run or queue a message), and add resolve_review_head_sha() which prefers the metadata head over the run config. Wire it into publish_review (review commit_id + last_reviewed_sha), add_finding (first_seen_sha) and update_finding (last_confirmed_sha). Falls back to the run config when metadata carries no head (first review, eval, tests). * fix: persist head_sha in manual review dispatch (trigger_pr_review_from_ref) resolve_review_head_sha prefers metadata[head_sha] over the run config, and the push/ready dispatchers write it — but trigger_pr_review_from_ref (Slack/GitHub @open-swe review, request_pr_review tool) created a run with a freshly-fetched config head while leaving metadata's head stale from a prior dispatch. A manual re-review at a newer commit would then resolve to the old head and publish/advance findings against it. Persist head_sha in that dispatch's metadata write too, so every run-creating reviewer dispatch keeps metadata in sync with the head its run targets. Caught by the Open SWE reviewer on this PR. |
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| .vscode | ||
| agent | ||
| evals/reviewer | ||
| scripts | ||
| static | ||
| tests | ||
| ui | ||
| .codespellignore | ||
| .dockerignore | ||
| .gitignore | ||
| AGENTS.md | ||
| CLAUDE.md | ||
| CUSTOMIZATION.md | ||
| default_prompt.md | ||
| Dockerfile | ||
| INSTALLATION.md | ||
| langgraph.json | ||
| LICENSE | ||
| Makefile | ||
| pyproject.toml | ||
| README.md | ||
| REVIEWER_DESIGN.md | ||
| SECURITY.md | ||
| uv.lock | ||
Open-source framework for building your org's internal coding agent.
Elite engineering orgs like Stripe, Ramp, and Coinbase are building their own internal coding agents — Slackbots, CLIs, and web apps that meet engineers where they already work. These agents are connected to internal systems with the right context, permissioning, and safety boundaries to operate with minimal human oversight.
Open SWE is the open-source version of this pattern. Built on LangGraph and Deep Agents, it gives you the same architecture those companies built internally: cloud sandboxes, Slack and Linear invocation, subagent orchestration, and automatic PR creation — ready to customize for your own codebase and workflows.
Note
💬 Read the announcement blog post here
Architecture
Open SWE makes the same core architectural decisions as the best internal coding agents. Here's how it maps to the patterns described in this overview of Stripe's Minions, Ramp's Inspect, and Coinbase's Cloudbot:
1. Agent Harness — Composed on Deep Agents
Rather than forking an existing agent or building from scratch, Open SWE composes on the Deep Agents framework — similar to how Ramp built on top of OpenCode. This gives you an upgrade path (pull in upstream improvements) while letting you customize the orchestration, tools, and middleware for your org.
create_deep_agent(
model="openai:gpt-5.5",
system_prompt=construct_system_prompt(...),
tools=[http_request, fetch_url, linear_comment, slack_thread_reply],
backend=sandbox_backend,
middleware=[ToolErrorMiddleware(), check_message_queue_before_model, ...],
)
2. Sandbox — Isolated Cloud Environments
Every task runs in its own isolated cloud sandbox — a remote Linux environment with full shell access. The repo is cloned in, the agent gets full permissions, and the blast radius of any mistake is fully contained. No production access, no confirmation prompts.
Open SWE supports multiple sandbox providers out of the box — Modal, Daytona, Runloop, and LangSmith — and you can plug in your own. See the Customization Guide for details.
This follows the principle all three companies converge on: isolate first, then give full permissions inside the boundary.
- Each thread gets a persistent sandbox (reused across follow-up messages)
- Sandboxes auto-recreate if they become unreachable
- Multiple tasks run in parallel — each in its own sandbox, no queuing
3. Tools — Curated, Not Accumulated
Stripe's key insight: tool curation matters more than tool quantity. Open SWE follows this principle with a small, focused toolset:
| Tool | Purpose |
|---|---|
execute |
Shell commands in the sandbox |
fetch_url |
Fetch web pages as markdown |
http_request |
API calls (GET, POST, etc.) |
linear_comment |
Post updates to Linear tickets |
slack_thread_reply |
Reply in Slack threads |
GitHub operations are performed with GH_TOKEN=dummy gh inside the sandbox, backed by the LangSmith proxy. Plus the built-in Deep Agents tools: read_file, write_file, edit_file, ls, glob, grep, write_todos, and task (subagent spawning).
4. Context Engineering — AGENTS.md + Source Context
Open SWE gathers context from two sources:
AGENTS.md— If the repo contains anAGENTS.mdfile at the root, it's read from the sandbox and injected into the system prompt. This is your repo-level equivalent of Stripe's rule files: encoding conventions, testing requirements, and architectural decisions that every agent run should follow.- Source context — The full Linear issue (title, description, comments) or Slack thread history is assembled and passed to the agent, so it starts with rich context rather than discovering everything through tool calls.
5. Orchestration — Subagents + Middleware
Open SWE's orchestration has two layers:
Subagents: The Deep Agents framework natively supports spawning child agents via the task tool. The main agent can fan out independent subtasks to isolated subagents — each with its own middleware stack, todo list, and file operations. This is similar to Ramp's child sessions for parallel work.
Middleware: Deterministic middleware hooks run around the agent loop:
check_message_queue_before_model— Injects follow-up messages (Linear comments or Slack messages that arrive mid-run) before the next model call. You can message the agent while it's working and it'll pick up your input at its next step.notify_step_limit_reached— After-agent hook that posts a Slack reply when the agent hits the model-call limit, so users get a clear signal instead of silence.ToolErrorMiddleware— Catches and handles tool errors gracefully.
6. Invocation — Slack, Linear, and GitHub
All three companies in the article converge on Slack as the primary invocation surface. Open SWE does the same:
- Slack — Mention the bot in any thread. Supports
repo:owner/namesyntax to specify which repo to work on. The agent replies in-thread with status updates and PR links. - Linear — Comment
@opensweon any issue. The agent reads the full issue context, reacts with 👀 to acknowledge, and posts results back as comments. - GitHub — Tag
@openswein PR comments on agent-created PRs to have it address review feedback and push fixes to the same branch.
Each invocation creates a deterministic thread ID, so follow-up messages on the same issue or thread route to the same running agent.
7. Validation — Prompt-Driven
The agent is instructed to run linters, formatters, and tests before committing, and is responsible end-to-end for committing, pushing, opening/updating the draft PR, and replying in the source channel. This is an area where you can extend Open SWE for your org: add deterministic CI checks, visual verification, or review gates as additional middleware. See the Customization Guide for how.
Comparison
| Decision | Open SWE | Stripe (Minions) | Ramp (Inspect) | Coinbase (Cloudbot) |
|---|---|---|---|---|
| Harness | Composed (Deep Agents/LangGraph) | Forked (Goose) | Composed (OpenCode) | Built from scratch |
| Sandbox | Pluggable (Modal, Daytona, Runloop, etc.) | AWS EC2 devboxes (pre-warmed) | Modal containers (pre-warmed) | In-house |
| Tools | ~15, curated | ~500, curated per-agent | OpenCode SDK + extensions | MCPs + custom Skills |
| Context | AGENTS.md + issue/thread | Rule files + pre-hydration | OpenCode built-in | Linear-first + MCPs |
| Orchestration | Subagents + middleware | Blueprints (deterministic + agentic) | Sessions + child sessions | Three modes |
| Invocation | Slack, Linear, GitHub | Slack + embedded buttons | Slack + web + Chrome extension | Slack-native |
| Validation | Prompt-driven | 3-layer (local + CI + 1 retry) | Visual DOM verification | Agent councils + auto-merge |
Features
- Trigger from Linear, Slack, or GitHub — mention
@openswein a comment to kick off a task - Instant acknowledgement — reacts with 👀 the moment it picks up your message
- Message it while it's running — send follow-up messages mid-task and it'll pick them up before its next step
- Run multiple tasks in parallel — each task runs in its own isolated cloud sandbox
- GitHub OAuth built-in — authenticates with your GitHub account automatically
- Opens PRs automatically — commits changes and opens a draft PR when done, linked back to your ticket
- Subagent support — the agent can spawn child agents for parallel subtasks
- Web dashboard — a companion app (in
ui/) for GitHub login, per-user model/profile settings, team defaults, enabled-repo and review-style management, user mappings, and an Agents chat UI
Getting Started
- Installation Guide — local dev (backend + dashboard), GitHub App creation, LangSmith, Linear/Slack/GitHub triggers, and production deployment
- Customization Guide — swap the sandbox, model, tools, triggers, system prompt, and middleware for your org
License
MIT