Projects were pinned to the image they were first created from. Both create paths preferred triple-c-snapshot-<id>:latest whenever it existed, and container_needs_recreation compared the container's live image against the triple-c.image label — which create_container wrote from the same image it created from. A tautology that could never fire. The only escape was Reset, which calls remove_project_volumes and destroys the login, skills and transcripts. Measured consequences on this host: real projects are missing socat (so the auth bridge cannot tunnel) and bubblewrap (so sandbox mode does not work), plus Mission Control and triple-c-sso-refresh, and sit 61 packages behind the base including ca-certificates, openssl and curl. Detection. create_container now writes triple-c.base-image-id (the image ID, not RepoDigests, which local-built and custom images do not have) and triple-c.create-image. container_needs_recreation takes the expected create-image and compares against the latter, so the check means something. base-image-id is deliberately NOT compared: a base bump would otherwise silently recreate from the snapshot, consuming the "you should migrate" signal without migrating. Staleness is surfaced, never acted on automatically. Migration keeps the volumes. /home/claude and ~/.claude are volumes and the image's copy is seed-only — permanently masked after first mount — so the login, ~/.claude.json, skills, transcripts, scheduler tasks, SSH keys, cargo, uv, ruff and Claude Code itself re-attach untouched. Only root-level state is rebuilt: apt packages are replayed against the new base rather than copied, so no stale libc is dragged forward, and /usr/local, /opt and the non-bind-mounted parts of /workspace are copied verbatim with tar --skip-old-files so they can never clobber a newer base binary. docker diff is not used: on a snapshot-derived container it reports only changes since the last commit. Raw image-vs-image diffing is filtered through dpkg ownership because it otherwise lies — 8,677 raw path differences on a real project reduced to 2 genuinely user-authored files, both loose /workspace-root files. Crash safety. snapshot:latest keeps pointing at the old image until the final commit, so any crash before it self-heals on next start. Later crashes are caught by reconcile_project_statuses. The rollback pin is a docker tag: 0.057s and 0 bytes. Rollback restores the system layer only — volumes are never touched — and the UI says so rather than implying a time machine. Fixes an infinite recreation loop shipped with the MCP removal. docker commit propagates labels to the image, so a container created from a snapshot inherited its non-empty triple-c.mcp-fingerprint and the one-shot shim recreated it again on every start, forever. Lineage labels are now always written explicitly. Documents the second, separate bug this uncovered: Dockerfile changes under /home/claude never reach an existing project, migration or not, because the volume masks them. Anything that must stay upgradable belongs in /usr/local/bin or /opt, or must be seeded by entrypoint.sh. 145 Rust tests, 227 frontend tests, both builds clean. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
254 lines
17 KiB
Markdown
254 lines
17 KiB
Markdown
# CLAUDE.md
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This file provides guidance to Claude Code (claude.ai/code) when working with code in this repository.
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## Project Overview
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Triple-C (Claude-Code-Container) is a Tauri v2 desktop application that sandboxes Claude Code inside Docker containers. It has two main parts: a React/TypeScript frontend, a Rust backend, and a Docker container image definition.
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## Build & Development Commands
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All frontend/tauri commands run from the `app/` directory:
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```bash
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cd app
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npm ci # Install dependencies (required first time)
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npx tauri dev # Launch app in dev mode with hot reload (Vite on port 1420)
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npx tauri build # Production build (outputs to src-tauri/target/release/bundle/)
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npm run build # Frontend-only build (tsc + vite)
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npm run test # Run Vitest once
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npm run test:watch # Run Vitest in watch mode
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```
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Rust backend is compiled automatically by `tauri dev`/`tauri build`. To check Rust independently:
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```bash
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cd app/src-tauri
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cargo check # Type-check without full build
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cargo build # Build Rust backend only
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```
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Container image:
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```bash
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docker build -t triple-c-sandbox ./container
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```
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### Linux Build Dependencies (Ubuntu/Debian)
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```bash
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sudo apt-get install -y libgtk-3-dev libwebkit2gtk-4.1-dev libayatana-appindicator3-dev librsvg2-dev libsoup-3.0-dev patchelf libssl-dev pkg-config build-essential
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```
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## Architecture
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### Two-Process Model (Tauri IPC)
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- **React frontend** (`app/src/`) renders UI in the OS webview
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- **Rust backend** (`app/src-tauri/src/`) handles Docker API, credential storage, and terminal I/O
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- Communication uses two patterns:
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- `invoke()` — request/response for discrete operations (CRUD, start/stop containers)
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- `emit()`/`listen()` — event streaming for continuous data (terminal I/O)
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### Terminal I/O Flow
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```
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User keystroke → xterm.js onData() → invoke("terminal_input") → mpsc channel → docker exec stdin
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docker exec stdout → tokio task → emit("terminal-output-{sessionId}") → listen() → xterm.js write()
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```
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### Frontend Structure (`app/src/`)
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- **`store/appState.ts`** — Single Zustand store for all app state (projects, sessions, UI). The
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main area is a single ordered tab strip holding two tab kinds, keyed `term:<id>` and
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`home:<id>`; `activeSessionId` is *derived* from `activeTabKey` so exactly one thing is current.
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- **`hooks/`** — All Tauri IPC calls are encapsulated in hooks (`useTerminal`, `useProjects`, `useDocker`, `useSettings`)
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- **`lib/tauri-commands.ts`** — Typed `invoke()` wrappers; TypeScript types in `lib/types.ts` must match Rust models
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- **`components/terminal/TerminalView.tsx`** — xterm.js integration with WebGL rendering, URL detection for OAuth flow
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- **`components/layout/`** — TopBar, MainTabs (the unified tab strip), Sidebar, StatusBar
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- **`components/projects/`** — `ProjectRow` (select-only list row), `ProjectList`, `AddProjectDialog`,
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and the editors reused by Project Home
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- **`components/projects/home/`** — **Project Home**, the main-area view for a project:
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Overview / Sessions / Automation / Config / Files. Per-project configuration lives here, not in
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modals — see "UI conventions" below.
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- **`components/settings/`** — Host-level settings: Docker, AWS, Web Terminal, STT, shared auth
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- **`components/ui/`** — Shared primitives. **Use these; do not hand-roll replacements.**
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`Modal` (the only correct way to build a dialog — it supplies `role="dialog"`, `aria-modal`,
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focus trap and restore), `Button`, `Toggle`, `Field`, `SegmentedControl`, `StatusIndicator`,
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`SaveIndicator`, `OverflowMenu`, `ToastHost`, `Tooltip`
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### UI conventions
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- **Project config belongs in Project Home's Config tab, not a modal.** Modals are reserved for
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short, genuinely modal tasks (add project, confirm removal, token acquisition). The app
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previously had ~12 hand-rolled modals; they were consolidated deliberately.
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- **Never bypass the design tokens.** All colour comes from CSS custom properties in `index.css`.
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Filled buttons use `--accent-emphasis` (not `--accent`, which fails WCAG AA against white).
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Use `--text-disabled` rather than `disabled:opacity-50`.
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- **Never write `focus:outline-none`.** A global `:focus-visible` ring is defined in `index.css`.
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- **Status must not be encoded in colour alone** — `StatusIndicator` pairs a glyph with a word.
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- Keyboard: `Ctrl+T` new terminal, `Ctrl+Shift+W` close tab, `Ctrl+Tab` cycle, `Ctrl+1..9` jump.
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`Ctrl+W` is intentionally left alone — it is readline's `kill-word` inside the terminal.
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### Backend Structure (`app/src-tauri/src/`)
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- **`commands/`** — Tauri command handlers. These are the IPC entry points called by `invoke()`.
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Beyond docker/project/settings/terminal: `inspect_commands.rs` (read-only views into a
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container — Claude sessions, installed capabilities, scheduler tasks), `auth_bridge_commands.rs`,
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`auth_token_commands.rs`.
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- **`auth_bridge/`** — Host-side loopback bridge so browser logins run *inside* a container can
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complete against the host browser. Discovers listeners by parsing `/proc/net/tcp{,6}` (the image
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has no `ss`/`netstat`/`lsof`), binds host `127.0.0.1` **only**, and tunnels in over the Docker
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API via `socat`. Opt-in per project.
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- **`browser_view/`** — Watch and take over the browser Claude drives with Playwright inside the
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container. Runs Playwright's own dashboard (`browser.bind()` + `playwright-cli show`) in the
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container and fronts it with a **token-gated** loopback proxy. Deliberately does **not** reuse
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the auth bridge's `PortForward`, which binds an unauthenticated port — fine for a throwaway
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OAuth listener, wrong for remote control of a browser. Host ports are confined to
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`47820..=47827` because CSP `frame-src` cannot express a port range and must enumerate them;
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a unit test asserts the Rust range matches `tauri.conf.json`. Opt-in per project.
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- **`docker/`** — Docker API layer using bollard:
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- `client.rs` — Singleton Docker connection via `OnceLock`
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- `container.rs` — Container lifecycle (create, start, stop, remove, inspect)
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- `exec.rs` — Attached exec streaming. `create_attached_exec()` is the **single** place an
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attached exec is opened; terminal sessions and the auth bridge both go through it.
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- `image.rs` — Image build/pull with progress streaming
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- `gateway.rs` — Optional LiteLLM sibling container giving Claude Code an Anthropic-format
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front end for providers that only speak OpenAI (see `gateway-container/`). Mirrors `stt.rs`.
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Binds `0.0.0.0` — unlike STT — because *project containers*, not the host process, consume
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it; it therefore **always** sets a LiteLLM `master_key`, since LiteLLM without one accepts
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any key.
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- `migration.rs` — Base-image migration: manifest capture via throwaway containers, the pure
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delta computation (dpkg-ownership filter, bind-mount exclusion, verbatim-copy set), and the
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crash-recovery state machine. See "Base-image migration" below.
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- `legacy_cleanup.rs` — One-release migration shim removing leftovers from the deleted MCP
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feature (containers labelled `triple-c.mcp-server`, `triple-c-net-*` networks). Deletable once
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users have migrated.
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- **`web_terminal/`** — Remote terminal access via axum HTTP+WebSocket server:
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- `server.rs` — Axum server lifecycle (start/stop), serves embedded HTML and handles WS upgrades
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- `ws_handler.rs` — Per-connection WebSocket handler with JSON protocol, session management, cleanup on disconnect
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- `terminal.html` — Self-contained xterm.js web UI embedded via `include_str!()`
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- **`models/`** — Serde structs (`Project`, `Backend`, `BedrockConfig`, `OllamaConfig`, `LlamaCppConfig`, `OpenAiCompatibleConfig`, `ClaudeCodeSettings`, `ContainerInfo`, `AppSettings`, `WebTerminalSettings`). These define the IPC contract with the frontend.
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- **`storage/`** — Persistence: `projects_store.rs` (JSON file with atomic writes), `secure.rs` (OS keychain via `keyring` crate), `settings_store.rs`
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### Container (`container/`)
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- **`Dockerfile`** — Ubuntu 24.04 base with Claude Code, Node.js 22, Python 3.12, Rust, Docker CLI, git, gh, AWS CLI v2, ripgrep, pnpm, uv, ruff pre-installed
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- **`entrypoint.sh`** — UID/GID remapping to match host user, SSH key setup, git config, docker socket permissions, Claude Code settings.json injection, then `sleep infinity`
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- **`triple-c-scheduler`** — Bash-based scheduled task system for recurring Claude Code invocations
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**`/home/claude` in the image is seed-only.** It is the mount point of the named volume
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`triple-c-home-{projectId}`, so after a project's *first* start the image's copy of that directory
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is masked permanently and can never be updated again. A change you make under `/home/claude` in
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the `Dockerfile` or in `entrypoint.sh`'s "copy this into the home dir" style reaches **new
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projects only** — existing ones will never see it, with or without a base-image migration.
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So: **anything that must stay upgradable belongs in `/usr/local/bin` or `/opt`, or must be seeded
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by `entrypoint.sh` at runtime** (i.e. written on every start, from a source outside the home
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volume, the way `CLAUDE_INSTRUCTIONS` → `~/.claude/CLAUDE.md` and the Mission Control skill copy
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already are). Putting it in the image's `/home/claude` and expecting an image update to deliver it
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is the mistake.
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The flip side is the useful half of the same fact: Claude Code itself (`~/.local/bin`), cargo, uv,
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ruff, the OAuth login, `~/.claude.json`, skills, transcripts, scheduler tasks and SSH keys all
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re-attach for free when a container is recreated from a *different* image — which is what makes
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base-image migration cheap.
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### Container Lifecycle
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Containers use a **stop/start** model (not create/destroy). Installed packages persist across stops. The `.claude` config dir uses a named Docker volume (`triple-c-claude-config-{projectId}`), nested inside the home volume (`triple-c-home-{projectId}`), so OAuth tokens and Claude Code config survive container stop/start *and* container recreation.
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**Reset is the exception and it is destructive.** `rebuild_project_container` calls
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`remove_project_volumes`, which deletes *both* volumes — so a Reset wipes `~/.claude`,
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`~/.claude.json`, the OAuth credential, installed skills, and session transcripts. That is
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intentional (Reset exists to get back to a clean base image), but do not describe Reset as
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preserving credentials.
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### Base-image migration (`docker/migration.rs`, `commands/migration_commands.rs`)
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A container is created from `triple-c-snapshot-{projectId}:latest` whenever that image exists, and
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every recreation re-commits it — so without an explicit act, a project stays on the base image it
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was first built from **forever** and never picks up a new `socat`, a new `/usr/local/bin` shim or a
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security update. Migration is the non-destructive way out; Reset is the destructive one.
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- **Staleness is a surfaced signal, not an automatic trigger.** `triple-c.base-image-id` records
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the lineage but is deliberately **not** compared in `container_needs_recreation` — see the long
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comment there. Comparing it would recreate every project *from its own snapshot* on the next base
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bump: churn on the old base, and it would consume the "you should migrate" signal without
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migrating. `get_container_staleness` surfaces it; `migrate_project_to_base` acts on it.
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- **A missing lineage label means "unknown, probe instead", never "stale".**
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- **`:latest` keeps pointing at the old lineage until the final commit.** That is what makes every
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crash before that point self-heal — `start_project_container` just recreates from the old
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snapshot. After the container swap, the new container's `triple-c.migration-state=in-progress`
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label plus the persisted state file let `reconcile_project_statuses` offer resume or rollback.
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- **Rollback restores the system layer only.** The volumes are never touched at any point, so work
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done in `$HOME` during a migrated session survives a rollback. Say so in any UI copy.
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- **`/etc` is never copied**, only reported: the snapshot lineage has
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`/etc/apt/sources.list.d/nodesource.sources` where the current base has `nodesource.list`, and
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having both breaks every `apt-get update` on a duplicate source. Verified, not theoretical.
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- **`docker diff` is useless here** — on a snapshot-derived container it reports only changes since
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the last commit. Migration diffs two filesystem manifests instead, filtered through dpkg
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ownership and presence-in-the-new-base. Measured on a real project, that turns 8,677 raw path
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differences into 2 genuinely user-authored ones.
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### Authentication
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Per-project, independently configured:
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- **Anthropic (OAuth)** — `claude login` in terminal, token persists in config volume
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- **AWS Bedrock** — Static keys, profile, or bearer token injected as env vars
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- **Ollama** — Connect to a local or remote Ollama server via `ANTHROPIC_BASE_URL` (e.g., `http://host.docker.internal:11434`)
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- **llama.cpp** — Connect to a local or remote `llama-server` via `ANTHROPIC_BASE_URL` (e.g., `http://host.docker.internal:8080`, its default port)
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- **OpenAI Compatible** — Connect through a gateway implementing the **Anthropic Messages API** (LiteLLM) via `ANTHROPIC_BASE_URL` + `ANTHROPIC_AUTH_TOKEN`
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**Claude Code only ever speaks the Anthropic Messages API** (`POST /v1/messages?beta=true`) to
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`ANTHROPIC_BASE_URL` — never OpenAI's `/v1/chat/completions`. Ollama and llama.cpp implement
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`/v1/messages` natively, which is why each gets a plain base-URL backend with no translation shim.
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A server that only exposes an OpenAI-shaped API does not work behind any backend.
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For every backend pointing at a custom endpoint (`Backend::uses_custom_endpoint`), all four
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`ANTHROPIC_DEFAULT_{OPUS,SONNET,HAIKU,FABLE}_MODEL` vars are pinned to the backend's configured
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model id, with an optional per-backend Haiku override. Without this, Claude Code's background
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calls resolve `haiku` to an Anthropic model id the local server does not have and fail silently.
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Anthropic and Bedrock deliberately keep Claude Code's own defaults.
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`ANTHROPIC_SMALL_FAST_MODEL` is deprecated and must not be used.
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## Styling
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- **Tailwind CSS v4** with the Vite plugin (`@tailwindcss/vite`). No separate tailwind config file.
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- All colors use CSS custom properties in `index.css` `:root` (e.g., `--bg-primary`, `--text-secondary`, `--accent`)
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- `color-scheme: dark` is set on `:root` for native dark-mode controls
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- **Do not** add a global `* { padding: 0 }` reset — Tailwind v4 uses CSS `@layer`, and unlayered CSS overrides all layered utilities
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## Key Conventions
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- Frontend types in `lib/types.ts` must stay in sync with Rust structs in `models/`
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- Tauri commands are registered in `lib.rs` via `.invoke_handler(tauri::generate_handler![...])`
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- `capabilities/default.json` grants permissions for **plugin** commands only (`core:`, `dialog:`,
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`store:`, `opener:`). Application commands registered through `generate_handler!` do **not**
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need an entry there — adding one is not required and none exists for any app command.
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- The `projects.json` file uses atomic writes (write to `.tmp`, then `rename()`). Corrupted files are backed up to `.bak`.
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- **Adding project state that changes the container?** `container_needs_recreation()` is entirely
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**label-based** — it does not diff the container's env. If a new setting affects the container's
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environment or configuration, you must also write a corresponding `triple-c.*` label at creation
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and compare it there, or the change will silently not take effect until some unrelated setting
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forces a rebuild. Never put a secret in a label; labels are readable via `docker inspect`.
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(`triple-c.base-image-id` is the one deliberate exception — it is written but not compared; the
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reasoning is in the comment beside the check.)
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- **Always write a `triple-c.*` label explicitly, even when the value is empty.** Docker merges an
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image's labels into a container's at creation, and `docker commit` copies container labels onto
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the snapshot image — so a label stamped once rides that snapshot into *every* future container
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forever. Verified on this host, and it is not hypothetical: `triple-c.mcp-fingerprint` has not
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been written by any code since the MCP feature was removed, yet a snapshot image was found still
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carrying a non-empty one, which made its one-shot recreation shim recreate that project on every
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single start. Writing the key explicitly overrides the inherited value — the same defence
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`MANAGED_AUTH_KEYS` applies to env vars.
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- **New model fields need an explicit serde default when the correct default isn't the zero value.**
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`#[serde(default)]` on a `bool` yields `false`; follow the `default_full_permissions` pattern in
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`models/project.rs` for anything that should default to true.
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- Cross-platform paths: Docker socket is `/var/run/docker.sock` on Linux/macOS, `//./pipe/docker_engine` on Windows
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## Testing
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Frontend tests use Vitest with jsdom environment and React Testing Library. Setup file at `src/test/setup.ts`. Run a single test file:
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```bash
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cd app
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npx vitest run src/path/to/test.test.ts
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```
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