schmidt.florian ecadbe1477
ci / build-test (push) Successful in 1m14s
Flow: count generation meters as sources (grid + solar → house)
A meter's flow value is now its throughput — consumption OR generation output —
so a generation meter (solar) acts as a source that can feed downstream meters.
Setting a load meter's upstream to {grid, solar} now splits its consumption
across both proportionally, and the remainder under the sources (grid + solar −
load) surfaces as "Other" = export + battery/inverter losses. Negative values
(savings/balance virtuals) are clamped to 0 (a ribbon can't be negative). The
per-type KPI is relabelled "Top-level throughput" since it now spans generation.

Test: Generation_meter_counts_as_source (grid 75 + solar-gen 30 → house 40 →
28.57/11.43 split, 65 remainder). 69 Core + 48 Integration = 117 green.
Live-verified: electricity flow now shows Solar 1/2 as source nodes.

Claude-Session: https://claude.ai/code/session_01Lz2RqAsnQhetqWNoCDfexK
2026-07-14 14:33:29 +02:00

MeterVault

A self-hosted, local-first energy & utility metering platform. MeterVault pulls meter data from Home Assistant, Tasmota and raw MQTT on a schedule, stores every reading timestamped and immutable, normalizes it into consumption, and turns it into cost dashboards. Energy types (electricity, water, heating oil, gas, district heat, …) and meters are user-defined — nothing is hardcoded.

Successor to a hand-maintained Energiebilanz spreadsheet. See docs/SDD.md for the full design.

Features

  • Automatic ingestion from MQTT/Tasmota (persistent subscriptions) and Home Assistant (REST poll or push), plus manual entry, a REST push API, and CSV import.
  • Immutable raw readings on a TimescaleDB hypertable; a normalized, append-only consumption layer on top — reproducible, auditable.
  • Seven measurement modes (cumulative/generation registers, burner runtime, tank/consumable, direct delta, instant rate, virtual). Handles meter swaps, counter resets, tank dip-sticks with calibration, and virtual meters defined by an expression (PV self-consumption, savings, net).
  • Tariff engine with time-ranged price history (unit/base/feed-in), scoped global / per type / per meter; cost categories decoupled from energy types; meterless manual costs.
  • Continuous aggregates (daily/monthly/yearly, local timezone) so dashboards never scan raw.
  • Dashboard: cost KPIs with period-over-period deltas, "what costs most", a "what cost more/ less" difference view, trends, a PV/Solar panel (generation, self-consumption, autarky %, savings), an oil/consumable panel (tank gauge, deliveries, burner runtime, effective L/h, forecast-to-empty) and a per-meter detail view (raw readings, consumption, sources, tariff timeline, events), one-click reference-data load, CSV dry-run.
  • Per-energy-type flow pages (Electricity, Water, …): a Sankey diagram of the meter chain — a downstream meter is a subsection of an upstream one (main → car, pool, garden, …), arrow thickness ∝ amount, with an auto-computed "Other/unmetered" remainder. Meters can have several upstreams (a merge, e.g. grid + solar → house).
  • Admin UI: full create/edit/delete for energy types, meters (with consumption recompute on mode/baseline change, and cycle-safe upstream-meter wiring), ingest sources, tariffs, cost categories, and MQTT/Home-Assistant connectors; a "Test connection" for Home Assistant; effective-settings view.
  • REST API + OpenAPI/Swagger, API-key auth, reverse-proxy trust (Authelia/Traefik).
  • JSON config export/import for portability; Docker Compose + multi-arch image.

Quick start (Docker)

docker compose -f deploy/docker-compose.yml up -d
# open http://localhost:8080  → Import → "Load reference data" for a populated demo
# ...or start pre-populated:  METERVAULT_SEED=true docker compose -f deploy/docker-compose.yml up -d
# API docs at http://localhost:8080/swagger

Configuration is via environment variables (Section__Key double-underscore mapping), e.g.:

Variable Purpose
ConnectionStrings__Default PostgreSQL/Timescale connection string
MeterVault__TimeZone Local timezone for buckets/display (default Europe/Berlin)
MeterVault__ApiKeys__0 An API key accepted on the X-Api-Key header
MeterVault__AllowAnonymousApi true to open the REST API without a key (trusted LAN only)
MeterVault__ReverseProxyTrust true to honour X-Forwarded-User behind an auth proxy
MeterVault__EnableLiveIngestion false to disable the MQTT/HA workers
MeterVault__SeedReferenceData true to load the bundled demo dataset on first start (idempotent)

The REST API is closed by default: with no ApiKeys configured and AllowAnonymousApi off, it returns 401. Set at least one API key (or open it explicitly for a trusted network).

Secrets (broker/HA tokens) are never stored in the database — endpoint configs hold the name of an environment variable, resolved at runtime.

Pushing readings (Home Assistant)

curl -X POST http://localhost:8080/api/v1/readings \
  -H "X-Api-Key: $METERVAULT_API_KEY" -H "Content-Type: application/json" \
  -d '[{"meterId": 1, "time": "2026-01-01T12:00:00Z", "value": 47200}]'

See docs/wiring.md for wiring up Tasmota, MQTT and Home Assistant.

Development

dotnet build
dotnet test                       # integration tests spin a TimescaleDB via Testcontainers (needs Docker)
dotnet test tests/Core.Tests      # fast unit tests, no Docker
dotnet run --project src/App

Architecture, project layout and conventions live in CLAUDE.md.

Releasing

Edit the VERSION file on master; Gitea Actions tags vX.Y.Z and builds/pushes a multi-arch image to the Gitea container registry (.gitea/workflows/). Locally: pwsh deploy/build-and-push.ps1 -Registry git.finalfactory.de -Image finalfactory/metervault -Push. Requires a Docker-capable act_runner; the image build itself is self-contained.

License

Not yet chosen (see SDD §14). Add a LICENSE before the first public tag.

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