MechaCat02 aeebdd2f3f fix(workflows): close re-review gaps in the pull round-trip + partial-failure UI
A re-review of eaf5ace surfaced three follow-ups, all in the fixes themselves:

- pull vs an old server: a returned empty `definition` can only mean a server
  predating the definition-in-list field (a real zero-step workflow is rejected
  at apply). Emitting a stepless `[[workflows]]` block would just fail the next
  apply, so `wire_workflow_to_manifest` now warns and skips it instead.
- base_ms/backoff defaults: the pull mapper keyed its default-omission off a
  hardcoded `500` literal. `default_base_ms` is now `pub` + re-exported, and the
  mapper omits whatever equals `default_base_ms()` / `WorkflowBackoff::default()`
  — no drift if a default ever changes.
- dashboard: a run that succeeds with an `on_error = continue` step failure now
  carries a partial-failure note in `run.error` (from the compute_advance
  change); the run-detail view rendered it as a red failure, contradicting the
  green "succeeded" badge. It now renders as a `.notice` (warning) for a
  succeeded run, `.error` only for a failed one.

Verified: fmt + clippy -D warnings clean; 450 lib tests; 5 workflow CLI
journeys (incl. the pull→plan round-trip); dashboard npm run check clean.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-12 19:08:21 +02:00

PiCloud

A lightweight, self-hosted, event-driven serverless compute platform. Upload a Rhai script, get an HTTP endpoint. Designed to run on a single modest server with no idle CPU cost, and to scale out to a small cluster when you need it.

Status: Phase 1 — MVP scaffolding in progress.

The authoritative design lives in serverless_cloud_blueprint.md.

Why

Existing serverless platforms are either cloud-locked, heavyweight, or both. PiCloud aims for the opposite end of the spectrum: one binary, one database, one reverse proxy — running on hardware you already own.

Architecture (one paragraph)

PiCloud splits into three logical services — manager (control plane: scripts, schedules, dashboard), orchestrator (per-node event ingress and dispatch), and executor (per-node Rhai sandbox) — each backed by a *-core Rust library. In MVP they run in a single process; in cluster mode they run as three binaries with one manager and one orchestrator + executor per node. Caddy fronts everything; PostgreSQL is the single source of truth.

See CLAUDE.md for working notes and serverless_cloud_blueprint.md for the full design.

Quick Start

Coming as scaffolding lands. For now:

# Rust toolchain (pinned via rust-toolchain.toml)
cargo check --workspace

# Run the all-in-one MVP binary (once main.rs is wired up)
cargo run -p picloud

Repository Layout

crates/
  shared/                 cross-cutting types
  executor-core/          Rhai engine + sandbox
  orchestrator-core/      event ingress, dispatch
  manager-core/           control plane
  picloud/                MVP all-in-one binary
  picloud-{manager,orchestrator,executor}/   cluster-mode binaries (skeleton)
dashboard/                SvelteKit
caddy/                    Caddyfile
docker/                   Dockerfiles
docs/
  git-workflow.md         Trunk-based workflow

Contributing

See docs/git-workflow.md for the branching and commit conventions. TL;DR: trunk-based, short-lived branches, Conventional Commits, no force-pushing main.

License

TBD.

Description
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