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charter

PyPI Python Tests License: MIT

Your agent forgets everything, holds every credential, and works in one checkout.

The charter status line: the active workspace and its open todos, four cloned repos with their branches, dirty and unpushed markers, CI status and open pull requests, then the personas with their vault and memory state.

charter is a control plane for coding agents working across many repos on GitHub or GitLab: durable personas, isolated per-task workspaces, and a credential vault the model never reads from. It runs inside Claude Code, opencode and Codex, enforcing the same rules in each.

That image is the status line under Claude Code, redrawn from disk every turn — the task you're on, the repos it owns and what branch each is sitting on, which are dirty or unpushed, CI and open PRs, and the roles you can hand work to. No git subprocess and no network on the render path. It is generated, not mocked: docs/assets/ holds the script that produced it. On a harness with no status bar, charter statusline --watch puts the same render in any spare terminal.

60 seconds

Terminal recording: charter init scaffolds a control plane, charter discover writes an inventory of every repo in the org, charter clone pulls one into the active workspace, and charter status shows the result.

uv tool install charter-cp                        # the CLI  — one per machine, for your terminal
claude plugin marketplace add diazoxide/charter   # Claude Code's plugin — one per project, and it carries the version
claude plugin install charter@charter

mkdir my-control-plane && cd my-control-plane
charter init --forge github --owner my-org
charter doctor
charter discover
charter clone some-repo

Two artifacts, and you want both. The CLI is a single machine-global install — what you type in your own terminal, and what CI or a cron job runs. The plugin is installed per project, out of a cache Claude Code keeps holding every version at once, which is why a plane's pinned version is the plugin's and not the binary's: two planes on one laptop can sit on different charters without fighting. A CLI-only install leaves the plugin's hooks inert, and the plugin ships no Python of its own — every hook it declares shells out to the CLI. The plugin loads on the next session, so restart after installing it. → docs/install.md

  • charter init scaffolds charter.toml, the baseline directories (personas/, inventory/, workspaces/), a .gitignore tuned for the layout, and the status line above. Additive and idempotent — re-running it is always safe. It converts the directory it runs in into a control plane, so run it somewhere you mean to.
  • charter doctor preflights python, git, git identity, the forge CLI and its auth, and names what's missing before anything else trips over it.
  • charter discover queries the forge and writes inventory/repos.json — the tracked map of every repo in the org, complete even when nothing is cloned yet.
  • charter clone <repo> clones on demand into the active workspace, already carrying the one-credential git policy below.

You don't need charter if

  • You work in one repo, on one task at a time.
  • Your agent touches no credential you'd mind seeing in a transcript.
  • Nothing it works out in a session is worth having next week.

Any one of those and this is overhead. If two or three of them made you wince, keep reading — each section below is a failure that happened often enough to get built around.


Dozens of repos, several tasks in flight, one checkout

A team's work doesn't sit in one repository, and an engineer rarely has one task open. Two features and a hotfix means three sets of branches across a shifting set of repos, and if they share a checkout you spend the day stashing.

A control plane holds an inventory of every repo in the org, personas each with their own memory and vault, and one workspace directory per task. Each workspace holds repo clones on their own branches, and a clone can be split into git worktrees so parallel sub-agents each get a branch of the same repo.

A workspace is one directory of clones per task (workspaces/<task>/<repo>), each repo on its own branch. Moving between tasks is charter workspace use <name> and nothing follows you across — no stash, no context bleed, no half-applied branch from yesterday.

Two sub-agents that need the same repo is the case that breaks everything else. Cloning it twice wastes the disk and they still collide. A worktree splits one clone into several checkouts (.worktrees/<repo>/<piece>), a branch each, so the pieces genuinely run at the same time. charter worktree remove refuses if it would drop uncommitted or unpushed work.

A workspace carries its own intent. Claude Code's task list dies with the session; charter ws todo records what the task still means to do, and each workspace holds a one-line Vision that a fork inherits.

And it travels. charter workspace snapshot writes repos and branches into a committed manifest, restore rebuilds the whole thing on another machine, and fork copies a workspace's charter, manifest and memory. A workspace marked LIVE (charter workspace live) commits its manifest and memory, so several engineers can work the same task and share what each session learned. Workspaces are local — fully private, nothing committed — until you say otherwise.

Its own repo, or yours. A control plane is any directory holding charter.toml, so it can be a dedicated repo — a monorepo for your polyrepo — or charter init inside the monorepo you already have, which offers to clone that repo into workspaces/default/. Either way work happens in the workspace clones, never in the plane root: two sessions sharing one working tree thrash each other's branches, so the status line and doctor warn when the plane root is dirty or off its default branch. → docs/workspaces.md


One agent holding every credential and every context

A single agent carrying every token, every convention and every repo's history is both a security problem and a quality one — it has access it doesn't need for the task in front of it, and a context full of things that don't apply.

charter persona list: three personas — devops, qa and reviewer — each with a role, a named vault and its status, with the active one marked.

A persona is a small named scope with its own charter, its own committed memory, its own vault, and a delegate-when line saying what should be handed to it. charter persona sync-agents turns each one into a real Claude Code sub-agent, so dispatching a role is ordinary delegation rather than a prompt trick.

They compose the way people do: extends: inherits a parent's charter, uses: says this role routes work to that one, and agent-tools narrows what the generated sub-agent may touch. They are committed files, so a persona is a team artifact — your reviewer is your teammate's reviewer. → docs/personas.md


You are always teaching the agent the same things

CLAUDE.md holds what you sat down and wrote. It doesn't hold what the agent worked out at 2am — that the flaky checkout test is a DNS timeout rather than the code, that billing deploys gate on the e2e suite and not the unit ones. That knowledge dies with the session, so next week you explain it again or watch it get rediscovered the slow way.

flowchart LR
    w1["charter persona remember devops<br/>“billing deploys gate on the e2e suite”"]
    w2["charter ws remember<br/>“the ledger queue must drain before cutover”"]

    w1 --> pm["personas/devops/memory/*.md<br/>one fact per file"]
    w2 --> wm["workspaces/billing-migration/memory/*.md"]

    pm --> r{{"charter recall &quot;ledger&quot;"}}
    wm --> r
    sh["shared memory<br/>every persona reads it"] --> r

    r --> s["next session — yours,<br/>or a teammate's agent"]

Memory has three dimensions and they do different jobs: a persona's own (what this role knows), shared (what every role should know), and the workspace's (what this task established). One fact per markdown file.

charter recall searches all three in a single pass — by keyword, or with --since 2w and --all-workspaces for when you remember roughly when something was decided but not where or in what words. They are ordinary files, so how far a note travels — disk only, committed, or pushed to the team — is one setting, [memory].share, and it defaults to local.


Credentials that end up in the transcript

The moment an agent reads a token, that token is in the context window — and from there in the transcript, the logs, and any summary fed into a later prompt. A vault hands the value to a command instead of to the model:

sequenceDiagram
    autonumber
    participant M as Claude Code session
    participant A as devops sub-agent
    participant C as charter CLI
    participant V as devops vault
    participant K as kubectl

    M->>A: "did prod roll out cleanly?"
    A->>C: secret exec devops --env TOKEN=API_TOKEN
    C->>V: resolve API_TOKEN
    V-->>C: value, in charter's process only
    C->>K: spawn, TOKEN in the child env
    K-->>C: output, may echo the value
    C-->>A: output, value redacted
    A-->>M: "rollout 3/3 ready"
    Note over M,A: no step here ever put the value in a context window

Reads are masked by default, --reveal refuses a non-interactive stdout, and the plugin's guard denies both that flag and cat-ing a vault file outright.

Vaults are pluggable, and the provider is where the storage guarantee comes from. Three ship today — plain_file, reference (point at a value that lives elsewhere) and 1password — and more are coming. Read docs/secrets.md before storing anything real: plain_file is plaintext at mode 0600, with no encryption at rest. What every provider buys you is the same and it is the point — the model never sees the value. What only a real backend buys you is encryption. The vault is not a password manager; 1Password is, and charter will read from it.

A browser login, with the password never typed into the conversation. charter browser install generates Playwright's own driving pages into the plane (.claude/skills/playwright-cli/) — charter vendors none of them, so a Playwright fix doesn't wait on a charter release. What charter ships is the two halves Playwright doesn't: the credential bridge (charter secret exec --dotenv resolves vault keys into one 0600 temp file and points PLAYWRIGHT_MCP_SECRETS_FILE at it, so you refer to a password by name and Playwright substitutes and redacts it), and per-worker session isolation (-s=<name> gives each worker independent cookies, localStorage, IndexedDB and tabs — so N agents are logged in as N different users at once).


Seeing what every agent is actually doing

The status line at the top of this page is the whole point: one render, from disk, every turn. The active task and its open todos, every cloned repo with its branch, dirty and unpushed markers, CI status and open PRs pulled from each clone's own forge, and the personas with their vault and memory state.

Who is in which tree. A repo or worktree row says which persona was last seen working in it and how long ago — ▸steward now, ▸forge 7m +1. An observation with an age, never a claim that anyone is still there. A piece that has said nothing for a while shows as exactly that: silence, with an age, because a worker that dies declares nothing.

Whether your roster is real. charter persona stats reports each role's memory count, recency, a quality proxy, and how many times it was actually dispatched as a sub-agent — so you can see whether a persona is doing work or whether that work is quietly routing to a generic agent. charter persona lint catches dangling uses:, missing delegate-when, and stale generated agents.

What the guards did. charter trace shows guard denials, tool approvals, secret warnings and memory writes for the session. charter doctor preflights the lot.


No database, no server, no daemon

Git is the state. Personas, memories, todos, manifests, inventory and config are ordinary committed files in ordinary git repos — which is why a teammate's agent can start where yours left off, why git log is the audit trail, and why there is nothing to deploy, migrate or back up separately.

The wheel has zero Python dependencies (dependencies = []). What charter does need is what you already have: Python ≥3.11, git, and gh or glab authenticated for the forge you use. The browser lane additionally shells out to npx. That is the whole list — charter doctor checks every item of it and names what's missing.


The model

  • Control plane — any directory marked by charter.toml. Not a fixed location: cd anywhere beneath one and commands resolve it by walking up, the way git resolves .git.
  • Workspace — an isolated, per-task directory of repo clones (workspaces/<name>/<repo>). default always exists; charter workspace create <name> --use starts a new one.
  • Worktree — a further split within one workspace's clone (workspaces/<ws>/.worktrees/<repo>/<piece>), so parallel sub-agents each get their own branch of the same repo without re-cloning it.
  • Piece — one worktree seen as a unit of work. Creating it is the claim, because git already arbitrates who wins the path; the worker later declares done or abandoned. There is deliberately no failed or blocked — a worker that dies declares nothing, and that silence, with an age, is what gets reported. → ADR 0011
  • Persona — a specialist role identity with a committed charter, persistent memory, and a named vault — dispatchable as an isolated Claude Code sub-agent. charter's differentiator; see docs/personas.md.
  • Memory — durable notes a persona or workspace records as it works. How far a note travels — disk only, committed, or pushed to the team — is one setting, [memory].share, and it defaults to local.
  • Vault — where a persona's credentials live. The provider decides the storage guarantee; the boundary is the same for all of them, and it is that the value never enters an agent's context or transcript.

Also in the box

  • Three harnesses, one set of rules. charter runs inside claude-code, opencode and codex — the names $CHARTER_HARNESS holds — and enforces the same invariants in each: the plane-root guard, the one-credential rule, the secret-leak check, the persona's declared tools. What differs is not what charter enforces but what each harness lets charter offer, and charter harness list prints that gap rather than leaving you to find it. Neither opencode nor codex has a status bar charter can render into, which is what charter statusline --watch is for; codex needs one extra command (charter harness install codex) because nothing in a plugin can tell a shell which harness it is. → docs/harnesses.md
  • An unattended run that stops to ask a question. Every git operation authenticates with that repo's own forge CLI token over HTTPS — never an SSH key, never signing — because a passphrase prompt hangs an agent until it times out. → docs/git-policy.md
  • Everyone on a slightly different charter. [charter].version in charter.toml pins one version like a lockfile, measured against the plugin — so two planes on one laptop can sit on different charters, and claude plugin update charter@charter moves this plane and no other. → docs/control-plane.md
  • A rule you want everyone prompted for. charter guard ask 'terraform apply *' writes a Claude Code permissions.ask rule into the plane's committed settings. charter keeps no list of its own — one record, nothing to sync. → ADR 0014
  • A tool that silently stopped existing. After a rename removed the shim they launched through, MCP servers failed with ENOENT and their tools simply vanished from the session. charter doctor now names any registered launcher whose path does not exist, and the one-line fix.
  • A plane writing down charter's own rules, and getting them wrong later. The plugin ships the skills for its surface — charter:secrets, charter:working-in-a-clone, charter:persona and charter:browser. They version with the CLI, so a plane no longer needs a copy that can drift out from under it.

Learn more

Every page below is also readable from the CLI, so an agent working in a control plane does not need a vendored copy that can drift from the binary it is describing:

charter docs list             # the topics
charter docs show secrets     # the page, from the install that implements it

charter doctor names a plane that has kept its own copy of one of these, or of a shipped skill. It never tells you to delete it — an override may be deliberate — only that a local copy wins, is compared to nothing, and drifts unwatched in both directions.

  • docs/install.md — both artifacts, alternatives to uv, and what charter init writes before you let it.
  • docs/control-plane.mdcharter.toml in full: every key, a self-hosted example, a mixed-forge example, the memory posture, the version pin.
  • docs/personas.md — the charter format, inheritance, the memory model, and dispatching a persona as a sub-agent, end to end.
  • docs/workspaces.md — the session lock and how to get out of it, LIVE vs LOCAL and where your notes actually go, and what belongs in workspace.md versus memory versus the manifest.
  • docs/secrets.md — exactly what the vault does and does not protect against, secret exec, and feeding a tool that wants a dotenv file.
  • docs/harnesses.md — Claude Code, opencode and Codex: how each is wired, what each cannot carry, and the one command Codex needs.
  • docs/git-policy.md — the one-credential rule, and why a denial from the plugin's guard is the rule working rather than a bug.
  • docs/hooks.md — everything the plugin does without being asked: what fires when, the four guards, what gets injected, and what gets counted.
  • docs/mcp.md — giving an MCP server a persona's vault credentials without the value entering the model, and what the per-persona tool allowlist does and does not constrain.
  • docs/forges.md — what GitLab and GitHub each need, self-hosted hosts, and the rule for a repo name that collides across forges.

Contributing

Issues and pull requests are welcome — see CONTRIBUTING.md for the dev setup and what a good change looks like, and SECURITY.md for how to report something sensitive. The test suite is stdlib unittest:

python3 -m unittest discover -s tests

MIT licensed.

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