Files
app/ROADMAP.md
T
stroblmeandClaude Opus 5 3d73e42313 Roadmap: tick the CI workflows and the broker/InfluxDB dev services
Both were already in the tree — the four workflows under .gitea/workflows and
the mosquitto/influxdb services in docker/compose.dev.yml. The CI line says
the wiring is unproven, since nothing here has watched it run on a push.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01XC2jX6Hdj7pxGGKzBTrbqB
2026-08-17 11:49:07 +02:00

223 lines
14 KiB
Markdown
Raw Blame History

This file contains ambiguous Unicode characters
This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.
# Roadmap
Component-level breakdown. The milestone-level master (M1M5, with the vision
decisions behind it) is `docs/private/roadmap.md` in the docs submodule.
Implementation strategy and record of existing/planned features. Completed items are
terse checklists — the requirement detail lives in `docs/private/vision.md` (goals,
requirements, decisions) and `docs/architecture/structure.canvas` (the four-way component split).
Remaining tasks keep enough scope to be actionable.
Legend: `[x]` done · `[ ]` planned · sub-lists split done vs. remaining for partial items.
Within each phase, remaining `[ ]` items are listed in rough priority order: making the
existing flow engine reachable and persistent precedes new feature breadth.
## Phase 0 — Workspace and platform
- [x] Root orchestrator repo with `app`, `index` and `docs` as submodules
- [x] `make init` bootstrap: secrets generation, per-stack `.env` propagation, shared
`proxy` docker network
- [x] Layered compose (`compose.yml``compose.dev.yml``compose.local.yml`) for both
stacks, one Traefik serving `${DOMAIN}`, `app.${DOMAIN}`, `api.${DOMAIN}`
- [x] Design token contract: root `DESIGN-GUIDELINES.md`, per-repo `DESIGN.md`,
byte-identical token blocks verified by `make design-check`
- [x] CI on Codeberg (Forgejo Actions): pre-commit, backend tests, Playwright, compose smoke
— the four workflows in `.gitea/workflows/`. Never observed running on a
Codeberg push from here, so treat the wiring as written but unproven
- [x] Soak and chaos harness: sustained load with the state backend, the broker and
the engine itself taken away underneath it. `backend/scripts/soak.py` behind
`make soak`, driving the durable webhook path through load, redis, engine and
broker scenarios, with every docker verb checked against an allow-list of this
stack's own containers. Two caveats: the redis scenario stops the container the
whole stack shares, and a cascade finishes fast enough that the engine kill
proves redelivery without stressing it
## Phase 1 — Backend: management
Python, optimised for development speed. Owns the graph structure, persistence and the
external interfaces. See `docs/architecture/structure.canvas`*Backend Management*.
- [x] FastAPI + SQLModel + Alembic + Postgres base with JWT auth and user management
- [x] Flow engine in `backend/app/flow/`: `Node` / `Pipeline` / `StateBackend`
(memory + Redis) / `FlowController`
- [x] Node types: HTTP, MQTT, InfluxDB, Delay, MLP
- [x] Flow-logic vocabulary as node types rather than repeated code: inject (manual,
interval, cron or at startup), switch, change, filter-unchanged, join, trigger,
command, file and ntfy. Each is configured by filling in a form the editor
generates from its parameter schema
- [x] `app/flow` is an importable package with absolute `app.flow.*` imports
- [x] Typed, serializable node I/O: every port declares a `DType`, messages are
JSON on the wire and in Redis, no pickle anywhere. Binary codecs are still
open — `DType.JSON` carries everything non-scalar for now
- [x] Message namespacing per flow (`flow.message`), with several producers per
message resolving to real fan-in
- [x] Secrets/credentials store for node integrations managed via the API/UI
(encrypted at rest, referenced from node params as `{"$secret": "name"}`);
`.env` bootstrap-only
- [x] Python modules for node code, managed from the UI: a pip manifest versioned
with the flows, installed with `uv pip sync` into a venv of the user's own on
the data volume. The worker processes run that interpreter, so an install
takes effect without restarting the engine and can never shadow the app's
own packages
- [x] Connector node contract: `ConnectorNode` with a declared contract version,
a polling coordinator that deduplicates, `x-secret` parameters the editor
renders as a secret picker, and health reporting. Connectors are installed
packages found through the `fluksio.node_types` entry point group; the
contract is documented in `docs/connectors/` with a working skeleton at
`connector-skeleton/`. The registry follows later
- [x] First real connectors written against that contract from outside the engine:
WF-RAC aircon, calendar, UniFi presence and Art-Net, in `connectors/`.
Built by `make connectors` and installed into the image. Reading only for
now — the aircon package cannot produce a command and Art-Net keeps its
packets off the wire until `transmit` is switched on
- [x] Node lifecycle as a protocol (`start`/`stop`/`report_health` on `Node`),
replacing the controller's per-type isinstance chains — the same hooks a
connector implements, validated on the built-in nodes first
- [x] Flow persistence: `flow.json` plus node sources per flow, replacing the
watch-directory prototype
- [x] REST + WebSocket API over the engine: create/read/update flows, edit node
source, run, and stream values, node status and execution events
- [x] Dependency-loop detection and graph validation surfaced as API errors
- [x] Per-flow start/stop, stored in a `runtime.json` beside the flow so it
survives a restart and stays out of the autosaved document; pause/resume
holds a flow's nodes while its values keep arriving
- [x] Node log streaming: what a node prints, and the traceback of one that
fails, reach the editor as `node_log` events
- [x] MQTT broker / InfluxDB compose services for local development
(`mosquitto` and `influxdb` in `docker/compose.dev.yml`)
- [x] Git-based versioning of the flow store (one commit per saved change)
- [x] Draft/publish split: edits autosave to `flow.draft.json` / `nodes.draft/`,
the engine runs only the published files, and publishing promotes the
draft. Saves carry the version they were based on, so a second client
editing the same flow is refused rather than overwritten
- [ ] Import/export of a flow as human-readable code plus a JSON structure
- [x] Per-input/-output discretization interval setting: a port publishes, or
wakes its node, at most every n seconds. State keeps the latest value, so
only the delivery is skipped
- [x] Alert / notification handler: engine failures — a node raising, a connection
dropping, a flow quarantined, the queue gone — reach ntfy, email or a webhook.
Mostly it declines to send: the same fault repeating is one alert with a count,
a flapping connection is muted, and there is a ceiling per hour. Configured
through the API at `/alerts/config`, with a test send per channel
- [x] Deep health check (`GET /utils/health/`): reports event-loop lag and state-backend
reachability and fails the container healthcheck, so a wedged engine is restarted
rather than counted as up. One engine per deployment — the API image runs a single
worker, because a second one would be a second engine
- [x] Supervised background tasks: a node's subscription, schedule or poll loop is
restarted with growing delay when it dies, and a flow that spends its failure
budget is quarantined and surfaced rather than left crash-looping. The loops
themselves no longer carry private retry logic
- [x] Durable work queue: every external trigger is journaled to Redis Streams before
anything runs and acknowledged once its cascade finishes, so an engine that dies
mid-cascade picks the work up again instead of losing it. A reaper reclaims what
a dead consumer never acknowledged; nodes that reach outside are skipped on a
redelivery they already ran. Long-lived worker pools replace the per-wave
executors, and a delay now waits in the queue rather than on a worker thread
- [x] Engine history in Postgres: a second bus subscriber folds executions, errors,
timings and queue lag into per-minute rollups, keeps failures with their
traceback and an audit trail of who published what, and records one row per
cascade — including the manual runs and previews that never went through the
queue. Read back through `/observability/*`, which always answers 200 so a
degraded engine still renders, and pruned on a retention window
- [ ] Test nodes: a small node dragged onto an existing one, smoke or unit, blocking
deployment on failure
- [ ] User management scoped per flow and per data set
- [x] MCP server over the same API: agents authenticate through a built-in
OAuth 2.1 authorization server (dynamic registration, PKCE, rotating
refresh tokens) and drive the flow API through 20 tools. Tokens are
RS256, signed with their own keypair, so the set can be revoked on its
own — and an additional issuer is one branch in `deps.decode_token`,
which is the seam remote access needs later
- [ ] LLM interface for natural-language flow authoring beyond the MCP tools
## Phase 2 — Backend: processing
Rust, optimised for throughput. Executes nodes and distributes them across workers. See
`docs/architecture/structure.canvas`*Backend Processing*.
- [ ] Parallel invocation of stateless nodes over independent input sets, to
keep I/O delay minimal (stateful I/O nodes keep serializing via the
`synchronous` mechanism)
- [x] Run user Python nodes out of process: a pool of persistent worker subprocesses
speaking one JSON object per line, entered through a proxy the controller
installs as the node's function, so every execution path funnels through it
unchanged. A crash costs one subprocess, a per-node timeout is a kill, and
cancelling from the canvas is that same kill on request
- [ ] Extract node execution from the Python prototype into a Rust engine
- [ ] Worker distribution and load balancing across capable devices
- [ ] Input/output validation at the node boundary
- [ ] Data aggregation and discretization
## Phase 3 — Frontend: admin view
React + Vite, primarily desktop but usable on mobile. See `docs/architecture/structure.canvas`
*Frontend Admin View*.
- [x] Dashboard SPA shell: TanStack Router, floating frosted sidebar, auth flows,
generated OpenAPI SDK
- [x] Node canvas (`@xyflow/react`) showing nodes and their connections, which
are derived from message names rather than stored
- [x] Tab-style view of atomic flows, with a floating dock
- [x] Embedded code editor (Monaco) for node source
- [x] Live values on the edges, with the last payload and its time on click
- [x] Provenance: every value says what caused it, so an edge pulses for the producer
that actually published rather than every producer of that message. A dashboard
control, another flow or an API caller is drawn as a label on the canvas instead
of being invisible — which also gives cross-flow wiring the link in/out it lacked
- [x] Validation shown on the node it belongs to, and summarised in the dock
- [x] Publish control and draft markers in the flow bar, discard in the flow
panel, and a conflict dialog when another client got there first
- [x] Marking a node reusable, and placing a shared one from the palette
- [x] Secret picker for credential parameters, so a password never lands in
`flow.json`
- [x] Dashboard showing which flows run, which are stopped and which have
errors, with a switch per flow
- [x] Logs panel in the canvas dock, pause/resume beside Run, and replaying an
edge's last message from the inspector
- [ ] Device assignment per node, selectable from compatible devices
- [ ] Test-node affordance on the canvas
- [ ] User management screens
- [x] Screens for what the API used to own alone: the secrets store and the alert
channels/rules each get a sidebar page, and the OAuth clients an agent
registers are listed and revocable under Admin — which needed its
management endpoints written first
- [x] Health sections: how the engine is doing now (nodes, flows, queue, loop lag)
over what it has been doing all day — throughput and failure charts, a
per-flow table, the recent cascades, failures that expand to their
traceback, dead-lettered work and the audit trail. Hovering a chart
filters the list beside it to that minute and a click pins it
- [x] Brain graph: every published flow at once, with nodes that talk to the
same outside thing — a broker topic, a URL, a bucket — drawn as a single
neuron, so the wiring that runs between flows through a broker is visible at
all. Laid out by a force simulation settled once and then frozen, lit by the
same socket the editor listens to, and read-only: a neuron leads back to the
flow it came from
- [x] Both of the above sit on Home rather than at routes of their own: the brain
flat across the top, the health sections under the flow switches. One
overview instead of three
- [x] Mobile-friendly canvas: touch connect, full-screen node panel
- [ ] Installable as a PWA (`vite-plugin-pwa`)
## Phase 4 — Frontend: dashboard view
Shares components with the admin view. See `docs/architecture/structure.canvas`
*Frontend Dashboard View*.
- [x] User-defined dashboard layout with edit and view modes: dashboards are their own
documents, widgets bind to message names, and the input ones publish back. View
mode is plain CSS grid, so a panel that only displays loads no editing code
- [x] Chart widget drawing a message's history through uPlot, with `--chart-1…5`
as one lightness ramp of the brand hue; a widget bound to the wrong dtype,
or to nothing, is flagged the way a failing node is
- [x] Layout by dragging and resizing (react-grid-layout), a grid size per
dashboard, and `/view/{name}` — a full-bleed route that loads neither the
editor nor the grid library, which is what a wall panel is pointed at
- [ ] Per-device view
## Phase 5 — Website and docs
- [x] Marketing site with a live node-graph demo, shared design system
- [ ] Published documentation site fed from the `docs` submodule
- [ ] Umami analytics configured (the site still ships the placeholder script)