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This release is a pre-release and may not be stable for production use.

Pyplines System Manager

pyplines-system-manager installs, upgrades, verifies, and diagnoses a Pyplines appliance through the Docker or SSH infrastructure driver and the Kubernetes, PostgreSQL, and OCI APIs managed behind that boundary.

pipx install pyplines-system-manager
pyplines-system-manager

Running without a subcommand in an interactive terminal opens the Textual management interface. Explicit commands support Rich terminal output and authoritative JSON for automation. The manager is a capability-based thin client: it resolves the selected immutable published Platform Release OCI artifact and uses that release's inventory, Kubernetes resources, migrations, and image digests. Local Docker and production SSH appliances consume this same release; a source checkout and locally built platform images are not installation inputs. The manager never shells out to kubectl. A newer platform release does not require reinstalling the manager when it uses contracts and capabilities the installed client already supports.

For a local installation, Docker is the only host prerequisite. System Manager creates real k3s, PostgreSQL, and OCI registry services and never requires the operator to supply a kubeconfig or run k3d or kubectl. The local registry stores prepared Function images only; platform workloads are pulled by immutable digest from the published release repository.

The interactive interface opens on a stable, state-aware main menu:

New Installation
Upgrade Installation
Inspect Installation
Repair Installation
Exit

The interface uses the official Pyplines dark semantic palette: navy surfaces, steel-blue structure, signal-gold focus and primary actions, restrained functional status colors, and crisp bordered panels. The global header is simply Pyplines System Manager; workflow context belongs to the active screen.

The menu does not change shape as installation state changes. Instead, it recommends the appropriate workflow, disables actions that are not currently safe, and keeps the five operator-facing labels stable. It reconstructs state from the installation, release lock, credentials, Kubernetes resources, and any unfinished release transaction.

The installation journey is:

Installation configuration → Appliance infrastructure → Installation prerequisites
→ Published Platform Release → PostgreSQL migrations → Platform components
→ Platform readiness → Installation verification → Root authority → Complete

Selecting a menu action starts one monotonic controller in one persistent installer screen. The complete journey remains visible on the left, the current stage and any required input occupy the main panel, and the full-width Activity console remains visible below them. Explicit operation results advance stages automatically. Inspection does not navigate an active installation and completed stages never move backwards.

Infrastructure precedes credential checkpointing because a new local appliance must provide the Kubernetes authority in which installation credentials are stored. Existing production infrastructure is detected and skipped. Credential presence is not treated as proof of access: System Manager verifies PostgreSQL, the complete Platform Release image set, Function Runtimes, and the prepared Function registry before platform work begins. Anonymous registry access is accepted only when every required release artifact is readable.

Upgrade and repair both recheck installation prerequisites before assessment or diagnosis, then use the same release, migration, component, readiness, and verification stages. System-controlled stages advance automatically. Errors remain at the failed stage with retry and copyable diagnostic context.

Inspect Installation is read-only. Upgrade and repair use the same Journey screen and structured progress events as installation.

Plans show the release transition, pending migrations, affected components, and changed resources. Unchanged Kubernetes resources remain hidden until explicitly requested. Apply validates stable preconditions—configuration, release lock, desired release, and transaction identity—rather than comparing volatile inspection output. A harmless refresh therefore cannot invalidate the resolved distribution. A meaningful state change causes System Manager to resolve the distribution again before continuing.

Installation and upgrade work stays in one progress screen with durable lifecycle stages. An indeterminate activity indicator and the latest structured status remain visible while work runs. The indicator occupies the available space to the right of the Activity heading, associating it with the event stream without taking space from the stage body or input forms. Raw activity remains visible, independently scrollable, selectable, and copyable. The flow pauses only for required installation, credential, or Root input; secret values are never rendered in progress or activity output. Credential requirements open the inline form and resume automatically after verification; they are not presented as installation failures. Static stage explanations are omitted from the main panel.

Drag to select text and press Ctrl+C to copy it, press c to copy the current journey, or use the visible copy buttons. The installer cannot be exited while a stage is actively mutating the installation. Automation commands and their JSON contracts remain stable.

pyplines-system-manager --config pyplines-installation.yaml configure
pyplines-system-manager --config pyplines-installation.yaml doctor
pyplines-system-manager --output json --config pyplines-installation.yaml plan
pyplines-system-manager --config pyplines-installation.yaml apply --auto-approve
pyplines-system-manager --config pyplines-installation.yaml verify
pyplines-system-manager --config pyplines-installation.yaml stop
pyplines-system-manager --config pyplines-installation.yaml start

Interactive workflows may also be opened directly. These commands require a terminal; the existing plan, apply, and verify commands remain the automation interface.

pyplines-system-manager --config pyplines-installation.yaml install
pyplines-system-manager --config pyplines-installation.yaml upgrade
pyplines-system-manager --config pyplines-installation.yaml inspect
pyplines-system-manager --config pyplines-installation.yaml repair

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