15 Commits
Author SHA1 Message Date
schmidt.florian 813d96709e Deploy: make the LXC updater a real file so existing containers can bootstrap it
ci / build-test (push) Successful in 1m28s
The updater was emitted from a heredoc inside the installer, so a container
provisioned before it existed had no way to obtain /usr/bin/update — 'update'
just reported command not found, with no path forward short of reinstalling.

Ship it as deploy/install/metervault-update.sh and have the installer
install(1) it from the checkout it just built. An already-provisioned
container can now bootstrap from its own source tree after a git pull, and the
updater refreshes itself (atomic rename, since bash reads a running script
lazily) so the same stranding does not recur.

Uses echo rather than msg_warn for the missing-file case: msg_warn is not
otherwise relied on in this script, and an undefined function under the
framework ERR trap would abort an otherwise-successful install.

Claude-Session: https://claude.ai/code/session_01V6joyergfvVLFEizH1hJLd
2026-07-18 09:48:02 +02:00
schmidt.florian a3af4838e8 Import: reject duplicate reading targets in the CSV wizard
ci / build-test (push) Successful in 1m15s
Mapping two Reading columns onto one meter staged two readings per row at the
same timestamp. (meter_id, time) is the reading key, so the commit failed with
a raw EF change-tracker error that named neither the column nor the meter.

- Wizard Validate() rejects duplicate Reading targets, naming the columns and
  the meter. Reading-only: Delivery/TankLevel stage events, not readings.
- CommitAsync() re-validates. Previously only Preview did, so a mapping edited
  after a dry run reached the database unchecked.
- ImportService.GuardDuplicateReadings() backstops the same case for the API
  and any other non-wizard caller, reporting meter + date.

Claude-Session: https://claude.ai/code/session_01V6joyergfvVLFEizH1hJLd
2026-07-18 09:35:36 +02:00
schmidt.florian 400d349d6a Deploy: guard installer against host execution + self-contained update command
ci / build-test (push) Successful in 1m27s
Safety fix after a host-vs-container mishap: add a systemd-detect-virt guard at the top of the install script (before install.func is sourced) that refuses to run outside a container, so a mistaken invocation on the Proxmox host exits harmlessly instead of running 'apt upgrade' + installing PostgreSQL/.NET on the hypervisor (override METERVAULT_ALLOW_HOST=1). Also rewrite /usr/bin/update to a self-contained in-container rebuild (git pull + dotnet publish + restart) instead of re-running the ct script through the framework.

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 12:36:29 +02:00
schmidt.florian 8e2e632c74 Deploy: make LXC installer's cosmetic post-install steps non-fatal
ci / build-test (push) Successful in 1m8s
The framework's motd_ssh runs 'chmod -x /etc/update-motd.d/*', which returns 'Operation not permitted' in some unprivileged LXCs. Under the community-scripts ERR trap that aborted an already-successful install right before /usr/bin/update was written. Write the update command first, then run motd_ssh/customize/cleanup best-effort (motd_ssh now guarded like customize already was).

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 12:21:43 +02:00
schmidt.florian 18dd4f720d Deploy: Proxmox VE community-scripts LXC installer (Gitea, build-from-source)
ci / build-test (push) Successful in 1m18s
Adds deploy/ct/metervault.sh (host) + deploy/install/metervault-install.sh (in-LXC), modeled on MQTTower's community-scripts installer but adapted for MeterVault: it lives on public Gitea (not GitHub) and is a single Blazor app + TimescaleDB (not multi-mode). The host script sources the community-scripts framework, creates a Debian 12 LXC and runs the install script via pct exec. The install script sets up PostgreSQL 16 + TimescaleDB, installs the .NET SDK, builds the app from the public Gitea repo (no prebuilt tarball exists — releases ship as a container image), writes /etc/metervault/environment + a systemd unit on port 8760, and installs an 'update' command (git pull + rebuild). scripts/run-metervault-ct-install.sh is the maintainer helper. All three pass shellcheck (warning-level clean) and bash -n. README documents the one-liner.

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 11:18:27 +02:00
schmidt.florian 8550ed8d9e Ingestion: Home Assistant WebSocket push path
ci / build-test (push) Successful in 1m16s
HomeAssistantWebSocketWorker holds a persistent state_changed subscription per HA endpoint that opts in via the connector's WebSocket toggle (HaEndpointConfig.UseWebSocket): auth handshake, subscribe, ingest in real time, capped-backoff reconnect. The REST poll worker skips WS endpoints so each is served once. HaWebSocketProtocol holds the pure handshake/parse logic. Verified by 11 protocol unit tests + a live integration test against an in-process fake HA server. CLAUDE.md updated.

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 11:05:01 +02:00
schmidt.florian 14930bc3d8 Import: CSV mapping wizard with revertible batches
New /import/wizard: upload an arbitrary CSV, preview the column grid, map each column to a role + target meter/category + unit, dry-run, then commit as a revertible import_batch. The /import page now lists recent imports with one-click revert. Adds CsvImporter.ReadRawRows (raw preview) and Confirm.ConfirmAsync (generic confirm). Verified end-to-end in a real browser + direct DB checks.

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 11:05:01 +02:00
schmidt.florian b3b8b92520 Normalization: implement instant_rate mode (rate integrated over time)
The instant_rate mode existed in the enum but had no normalizer, so normalizing a power/flow sensor threw NotSupportedException. InstantRateNormalizer integrates the rate over time (trapezoidal, attributed to each interval's end reading); a per-hour rate in the meter's unit yields the consumption unit (kW->kWh, L/h->L). Registered in the engine; meter editor shows a mode hint. +4 Core tests.

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 11:05:01 +02:00
schmidt.florian fe3d81b192 Deploy: change default HTTP port 8080 -> 8760
8080 is a very common, collision-prone port. 8760 (hours in a year) is an uncommon default that also avoids Home Assistant's 8123. Applied across Dockerfile (ASPNETCORE_URLS/EXPOSE), compose (mapping + healthcheck), the Unraid template, README and a code comment. The METERVAULT_PORT host override still works.

Claude-Session: https://claude.ai/code/session_01Kib2MniVFbD95fkgLgBBnB
2026-07-17 11:05:01 +02:00
schmidt.florian 92438348e7 Flow: virtual "sum" meters that aggregate upstreams + demo chain
ci / build-test (push) Successful in 1m14s
Adds the "sum meter" the user asked for: a meter that doesn't physically exist
but represents the sum of other meters in the flow view.

- FlowService: a Virtual-mode meter has no readings of its own; its flow value is
  the sum of its upstream meters, resolved in topological order (so "Summe Solar"
  = Solar 1 + Solar 2, and Grid + Summe Solar → House with the remainder as
  "Other" = export / battery / inverter losses).
- Meters editor: a hint when Mode = Virtual explaining the sum-meter behaviour.
- Reference data seeds the full demo chain: Solar 1 + Solar 2 → Summe Solar;
  Netz + Summe Solar → Haus → Auto + Other — so /energy/1 shows a multi-level
  Sankey out of the box.
- Fix: SankeyChart Unit was passed as the literal string "_graph.Unit" (missing
  @) so node labels read "_graph.Unit" instead of "kWh". Caught by screenshotting
  the live page.

Test: Virtual_sum_meter_aggregates_its_upstreams. 69 Core + 50 Integration =
119 green. Live-verified with a browser screenshot of the multi-level flow.

Claude-Session: https://claude.ai/code/session_01Lz2RqAsnQhetqWNoCDfexK
2026-07-14 15:48:50 +02:00
schmidt.florian ecadbe1477 Flow: count generation meters as sources (grid + solar → house)
ci / build-test (push) Successful in 1m14s
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
schmidt.florian 85d650a8f5 Fix: enable global interactivity so dialogs/selects actually work
ci / build-test (push) Successful in 1m12s
Editing a meter (any admin dialog, select dropdown, snackbar, dark-mode toggle)
did nothing: pages declared @rendermode InteractiveServer individually, but
MainLayout — which hosts MudDialogProvider/MudPopoverProvider/MudSnackbarProvider
— was rendered by <Routes>, which was static. Inline MudDialogs and MudSelect
popovers render through those providers, so with the providers non-interactive no
dialog could ever open.

Set the render mode on <Routes> and <HeadOutlet> in App.razor (global
interactivity) and removed the now-redundant per-page @rendermode declarations
(they would otherwise throw "parent already has a render mode").

Why it slipped through: the integration render tests only issue a GET (static
prerender), which never exercises the SignalR circuit. Verified this fix with a
real headless-browser run (Playwright): the meter edit dialog opens and the
"Sub-meter of (upstream meters)" multi-select opens with options — proving the
layout providers are now interactive. 116 tests still green.

Claude-Session: https://claude.ai/code/session_01Lz2RqAsnQhetqWNoCDfexK
2026-07-14 14:22:15 +02:00
schmidt.florian 7e34aeccc8 Meter chain topology + per-energy-type flow (Sankey) pages
ci / build-test (push) Successful in 1m24s
Adds a meter hierarchy and a flow view: a downstream meter is a *subsection*
of an upstream one (not an addition), so you can see where a main meter's flow
divides — e.g. official water → garden, pool, other; grid/battery → all → car.

- MeterLink (schema + migration AddMeterLinks): a directed from→to flow edge.
  Multi-parent allowed (a merge, e.g. grid + solar → house); multi-child is a
  split. Cascade-deletes with either endpoint; unique + distinct-endpoint checks.
- FlowService: per energy type + period, builds a Sankey graph — nodes = meters
  sized by consumption; link value = downstream meter's consumption, split
  proportionally across multiple upstreams; unaccounted remainder under a meter
  becomes a synthetic "Other" node; depth via topological longest-path.
- SankeyChart.razor: hand-rolled inline-SVG Sankey (ApexCharts has no Sankey
  type) — columns by depth, nodes stacked by value, bezier ribbons sized by flow,
  left→right, theme-aware, HTML-encoded labels, tooltips. Built as a MarkupString
  to sidestep Razor's <text> element clash.
- /energy/{id} page (one per energy type): KPIs (consumption + cost), the flow
  Sankey, and the meter list. NavMenu now lists a link per energy type
  (Electricity, Water, Gas, …) loaded from the DB.
- Meters admin: cycle-safe "Sub-meter of (upstream meters)" multi-select
  (descendants excluded to prevent cycles); reconciles meter_link rows on save.
- Reference data seeds a demo chain (Haus → Auto) so electricity flow shows
  Haus dividing into Auto + Other.

Tests: FlowServiceTests (single-parent remainder; two-parent proportional
split); render test now asserts the flow chain + covers /energy/{id}. 69 Core +
47 Integration = 116 green. Live-verified: Haus 95,450 kWh → Auto 51,909 +
Other 43,541 (flow conserved), all 5 energy-type pages render.

Claude-Session: https://claude.ai/code/session_01Lz2RqAsnQhetqWNoCDfexK
2026-07-14 14:02:16 +02:00
schmidt.florian 09cd435c2b Admin write-CRUD, Home Assistant connector config, wiring audit
ci / build-test (push) Successful in 1m19s
Three requested phases.

1) Admin section (SDD §8.7) — MudBlazor inline-dialog CRUD, consistent pattern,
   delete guards, snackbar feedback, shared Confirm helper:
   - Energy types: create/edit/delete (blocks delete when meters reference it).
   - Meters: create/edit/delete; recomputes consumption when mode/baseline
     changes (NormalizationService over a fresh factory context, in a tx);
     delete cascades data (consumption+readings are Restrict → removed first).
   - A meter's ingest sources: manage on the meter-detail Sources tab
     (add/edit/delete MQTT/Tasmota/HA sources with typed config).
   - Tariffs: full CRUD (scope/component/value/validity).
   - Cost categories: CRUD + member management (meter or energy-type members).
   - Connectors: ingestion_endpoint CRUD (MQTT broker + Home Assistant);
     secrets referenced by env-var name only, never stored.
   - Settings: read-only effective-config view (settings are env-driven and
     reproducible, so an editable form would change nothing — kept honest).
   PV role is now editable on meters (MeterMeta.SetRole can clear a role).

2) Read Home Assistant — extracted a shared public HaEndpointConfig (was a
   private record in the worker), added HaConnectionTester (powers the connector
   "Test connection": checks base URL + env-resolved token, optionally reads one
   entity). Configuring an HA connector + an HA source on a meter drives the
   existing REST-poll worker end to end. (WebSocket push stays a future
   optimization; REST poll already reads HA.)

3) Wiring/placeholder audit — swept every OnClick/Href: all handlers are real,
   all internal links resolve to real routes, no TODO/stub/placeholder code.
   Fixed one genuine gap: MainLayout had no drawer toggle, so the nav was
   unreachable on narrow screens — added a hamburger button.

Tests: +6 (MeterMeta.SetRole role-removal; HaConnectionTester fail-closed
guard branches with a throwing HttpClientFactory proving no network on bad
config); render test now covers all admin routes. 69 Core + 45 Integration =
114 green. Live-verified in Docker: all admin pages 200, drawer toggle present,
Settings shows real effective config.

Claude-Session: https://claude.ai/code/session_01Lz2RqAsnQhetqWNoCDfexK
2026-07-14 11:22:17 +02:00
schmidt.florian 1282acf82c SDD §8 panels (PV/oil/meter-detail) + fix reference-data-in-Docker
Complete the SDD §8 dashboard views that were deferred at the M5 boundary,
and fix a shipping bug that left the Docker demo empty.

Bug: "Load reference data" created meters/tank/tariffs but imported zero
readings in Docker. Root cause: sampledata/ was excluded by .dockerignore and
never copied into the build stage, so the App csproj's linked Content glob
resolved to nothing at publish time; ReferenceDataImporter then silently
skipped the missing CSVs after already writing its marker meter, leaving the
DB permanently "loaded" but empty.
  - .dockerignore: stop excluding sampledata/
  - Dockerfile: COPY sampledata/ into the build stage
  - ReferenceDataImporter: fail-fast (validate CSVs exist before the marker
    meter) and throw instead of silently skipping a missing file
  - Program.cs + MeterVaultOptions: opt-in MeterVault__SeedReferenceData
    (compose METERVAULT_SEED=true) for a one-command populated demo

New SDD §8 panels (read models in Infrastructure/Dashboard, Blazor pages):
  - §8.4 Solar/PV (/solar): generation from GenerationCounter meters;
    self-consumption / autarky % / self-consumption % / savings derived from
    meters tagged total_load & grid_import via Meter.Meta role config
    (MeterRoles/MeterMeta) — nothing hardcoded by name.
  - §8.5 Oil/consumable (/consumables): tank level (cm→L calibrated), fill
    gauge, deliveries log, burner runtime, effective L/h (fixed/empirical),
    forecast-to-empty, tariff cost, monthly series.
  - §8.6 Meter detail (/meters/{id}): raw readings, normalized consumption,
    source status, tariff timeline, events, measured-vs-estimated markers.
  - Reusable SeriesChart component; nav links; Meters list rows link to detail.

Tests: MeterMetaTests (Core, +10); DashboardRenderTests extended to assert the
three panel services compute real figures and the new routes render (108 total,
all green). Live-verified in Docker: seed imports 302 readings / 347 consumption
rows; panels render (generation 16,481 kWh, oil 3,967 L) cross-checking the DB.

Claude-Session: https://claude.ai/code/session_01Lz2RqAsnQhetqWNoCDfexK
2026-07-14 09:52:11 +02:00
67 changed files with 6827 additions and 88 deletions
-1
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@@ -5,7 +5,6 @@
.git/
.github/
docs/
sampledata/
tests/
**/*.user
**/appsettings.*.Local.json
+1 -1
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@@ -6,7 +6,7 @@ This file provides guidance to Claude Code (claude.ai/code) when working with co
MeterVault is a self-hosted, local-first energy & utility metering platform: it ingests meter data from Home Assistant, Tasmota and 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, …) and meters are **user-defined, never hardcoded**.
**Status: implemented (M0M7).** The full solution is built and green — five projects, ~95 tests, working Docker deploy. `docs/SDD.md` remains the design reference; the milestone map (§12) matches the git history (M0…M7 commits). Remaining refinements (HA WebSocket push, dedicated PV/oil dashboard panels, full admin CRUD, full de-DE UI localization) are noted at the end of their milestone commits.
**Status: implemented (M0M7) + SDD §8 panels.** The full solution is built and green — five projects, ~108 tests, working Docker deploy. `docs/SDD.md` remains the design reference; the milestone map (§12) matches the git history (M0…M7 commits). The dedicated **PV/Solar** (`/solar`), **Oil/consumable** (`/consumables`) and **meter-detail** (`/meters/{id}`) views (SDD §8.4–§8.6) are implemented as read models in `Infrastructure/Dashboard` (`SolarService`, `ConsumableService`, `MeterDetailService`) — PV meters are found by `Mode == GenerationCounter` and grid/load meters by a `role` tag in `Meter.Meta` (`MeterRoles`/`MeterMeta`), so nothing is hardcoded by name. **Admin write-CRUD** (SDD §8.7) is implemented as MudBlazor inline-dialog pages: energy types, meters (+ recompute on mode/baseline change), a meter's ingest sources (meter-detail Sources tab), tariffs, cost categories + members, and connectors (`ingestion_endpoint`, secrets by env-var reference only). `/admin/settings` is a read-only effective-config view (settings are env-driven and reproducible, not DB-stored). **Home Assistant reading** is configured here: an HA connector (`BaseUrl` + `TokenEnv`) + an HA source (entity id) drives `HomeAssistantWorker`'s REST poll, or — with the connector's **WebSocket push** toggle (`HaEndpointConfig.UseWebSocket`) — `HomeAssistantWebSocketWorker` holds a persistent `state_changed` subscription and ingests in real time (the poll worker skips WS endpoints, so each is served once; `HaWebSocketProtocol` is the pure, unit-tested handshake/parse logic). `HaConnectionTester` powers the connector "Test connection" button. **Meter topology & flow**: `MeterLink` (a directed `from→to` edge; a downstream meter is a *subsection* of an upstream one, multi-parent allowed) drives a per-energy-type page `/energy/{id}` with a hand-rolled SVG **Sankey** (`SankeyChart.razor`, since ApexCharts has no Sankey type) computed by `FlowService` (link value = downstream consumption, split proportionally across multiple parents; unaccounted remainder → an "Other" node). Upstream meters are wired cycle-safely in the meter editor; the nav lists a link per energy type. **CSV mapping wizard** (`/import/wizard`): upload an arbitrary CSV, map columns → meters/roles, dry-run preview, then commit as a revertible `import_batch` (the `/import` page lists batches with one-click revert). The `instant_rate` mode is normalized (`InstantRateNormalizer`: rate integrated over time, trapezoidal). Remaining refinement: full de-DE UI-string localization (data parsing is already de-DE) — noted at its commit. Set `MeterVault__SeedReferenceData=true` (compose: `METERVAULT_SEED=true`) for a one-command populated demo.
## Source of truth
+32 -4
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@@ -22,7 +22,18 @@ full design.
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, meter list, one-click reference-data load, CSV dry-run.
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.
@@ -30,10 +41,26 @@ full design.
```bash
docker compose -f deploy/docker-compose.yml up -d
# open http://localhost:8080 → Import → "Load reference data" for a populated demo
# API docs at http://localhost:8080/swagger
# open http://localhost:8760 → 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:8760/swagger
```
## Quick start (Proxmox VE LXC)
A community-scriptsstyle installer builds a self-contained LXC (Debian + PostgreSQL/TimescaleDB +
the app as a systemd service). Run **on the Proxmox host**:
```bash
bash -c "$(curl -fsSL https://git.finalfactory.de/FinalFactory/MeterVault/raw/branch/master/deploy/ct/metervault.sh)"
```
It asks the standard container questions, optionally loads the demo dataset, and prints the URL
(`http://<ct-ip>:8760`) plus the generated DB password. Re-run `update` inside the container to pull
the latest source and rebuild. It builds from this public Gitea repo (there is no prebuilt tarball —
releases ship as a container image). See [`deploy/ct/metervault.sh`](deploy/ct/metervault.sh) and
[`deploy/install/metervault-install.sh`](deploy/install/metervault-install.sh).
Configuration is via environment variables (`Section__Key` double-underscore mapping), e.g.:
| Variable | Purpose |
@@ -44,6 +71,7 @@ Configuration is via environment variables (`Section__Key` double-underscore map
| `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).
@@ -54,7 +82,7 @@ of an environment variable, resolved at runtime.
## Pushing readings (Home Assistant)
```bash
curl -X POST http://localhost:8080/api/v1/readings \
curl -X POST http://localhost:8760/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}]'
```
+5 -3
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@@ -11,8 +11,10 @@ COPY src/Infrastructure/MeterVault.Infrastructure.csproj src/Infrastructure/
COPY src/App/MeterVault.App.csproj src/App/
RUN dotnet restore src/App/MeterVault.App.csproj
# Build & publish.
# Build & publish. sampledata/ must be present so the App csproj's linked Content glob
# (..\..\sampledata\*.csv) resolves at publish time — otherwise "Load reference data" ships empty.
COPY src/ ./src/
COPY sampledata/ ./sampledata/
RUN dotnet publish src/App/MeterVault.App.csproj -c Release -o /app/publish /p:UseAppHost=false
# Debian-based runtime (keeps full ICU — required by the de-DE CSV importer; do not use
@@ -23,8 +25,8 @@ RUN apt-get update \
&& apt-get install -y --no-install-recommends curl \
&& rm -rf /var/lib/apt/lists/*
COPY --from=build /app/publish ./
ENV ASPNETCORE_URLS=http://+:8080 \
ENV ASPNETCORE_URLS=http://+:8760 \
ASPNETCORE_ENVIRONMENT=Production \
DOTNET_SYSTEM_GLOBALIZATION_INVARIANT=false
EXPOSE 8080
EXPOSE 8760
ENTRYPOINT ["dotnet", "MeterVault.App.dll"]
+251
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@@ -0,0 +1,251 @@
#!/usr/bin/env bash
# shellcheck disable=SC1090 # community-scripts build.func is fetched at runtime
source <(curl -fsSL https://raw.githubusercontent.com/community-scripts/ProxmoxVE/main/misc/build.func)
# Copyright (c) 2021-2026 community-scripts ORG
# Author: FinalFactory
# License: MIT | https://github.com/community-scripts/ProxmoxVE/raw/main/LICENSE
# Source: https://git.finalfactory.de/FinalFactory/MeterVault
#
# Creates a Debian LXC and installs MeterVault (self-hosted energy & utility metering) natively:
# PostgreSQL + TimescaleDB, the .NET runtime, and the Blazor app built from the public Gitea repo,
# fronted by a systemd service. Unlike MQTTower (GitHub + prebuilt release tarballs), MeterVault
# lives on a public Gitea and ships only a container image, so this builds the app from source.
APP="MeterVault"
var_tags="${var_tags:-energy;metering;iot}"
var_cpu="${var_cpu:-2}"
var_ram="${var_ram:-3072}"
var_disk="${var_disk:-15}"
var_os="${var_os:-debian}"
# Debian 12 (bookworm): TimescaleDB's apt packages + PGDG PostgreSQL 16 are reliably built for it.
var_version="${var_version:-12}"
var_unprivileged="${var_unprivileged:-1}"
header_info "$APP"
variables
color
catch_errors
# Gitea (public) instead of GitHub: raw file URLs use /raw/branch/<branch>/<path>.
METERVAULT_DEPLOY_BASE="${METERVAULT_DEPLOY_BASE:-https://git.finalfactory.de/FinalFactory/MeterVault/raw/branch/master/deploy}"
METERVAULT_INSTALL_URL="${METERVAULT_INSTALL_URL:-${METERVAULT_DEPLOY_BASE}/install/metervault-install.sh}"
function update_script() {
header_info
check_container_storage
check_container_resources
if [[ ! -d /opt/metervault ]]; then
msg_error "No ${APP} Installation Found!"
exit
fi
if [[ ! -d /opt/metervault-src ]]; then
msg_error "No source checkout at /opt/metervault-src — cannot rebuild. Reinstall to restore it."
exit
fi
msg_info "Stopping ${APP}"
systemctl stop metervault
msg_ok "Stopped ${APP}"
msg_info "Pulling latest source and rebuilding (this can take a few minutes)"
cd /opt/metervault-src || exit 1
git fetch --depth 1 origin master
git reset --hard origin/master
dotnet publish src/App/MeterVault.App.csproj -c Release -o /opt/metervault /p:UseAppHost=false
msg_ok "Rebuilt ${APP}"
msg_info "Starting ${APP}"
systemctl start metervault
msg_ok "Started ${APP}"
msg_ok "Updated successfully!"
exit
}
start
# =============================================================================
# Custom questions (after the standard wizard, before build)
# =============================================================================
rand_hex() {
openssl rand -hex 16 2>/dev/null || head -c 16 /dev/urandom | xxd -p
}
# msg_info() runs a background spinner on stderr; whiptail also draws on stderr. Stop the spinner
# and clear the line first so dialogs don't render corrupted.
metervault_whiptail() {
stop_spinner
clear_line
whiptail "$@" 3>&1 1>&2 2>&3
}
collect_metervault_env() {
export METERVAULT_PORT="${METERVAULT_PORT:-8760}"
export METERVAULT_TIMEZONE="${METERVAULT_TIMEZONE:-Europe/Berlin}"
if [[ -z "${METERVAULT_DB_PASSWORD:-}" ]]; then
METERVAULT_DB_PASSWORD="$(rand_hex)"
msg_info "Generated PostgreSQL password for the metervault user: ${METERVAULT_DB_PASSWORD}"
fi
export METERVAULT_DB_PASSWORD
# Demo dataset: honour an explicit env value, otherwise ask.
local seed="${METERVAULT_SEED:-}"
case "${seed,,}" in
true | 1 | yes) export METERVAULT_SEED="true" ;;
false | 0 | no) export METERVAULT_SEED="false" ;;
*)
if metervault_whiptail --title "${APP}" --yesno \
"Load the bundled Energiebilanz demo dataset (meters, tariffs, ~2000 readings) on first start?" 10 70; then
export METERVAULT_SEED="true"
else
export METERVAULT_SEED="false"
fi
;;
esac
}
# =============================================================================
# Custom build_container — identical to the framework except the install script URL.
# The framework build_container() hardcodes the install URL to community-scripts/ProxmoxVE;
# once MeterVault is accepted upstream this whole function can be replaced by build_container.
# =============================================================================
metervault_build_container() {
# --- Network string (same logic as build.func) ---
NET_STRING="-net0 name=eth0,bridge=${BRG:-vmbr0}"
[[ -n "${MAC:-}" ]] && case "$MAC" in ,hwaddr=*) NET_STRING+="$MAC" ;; *) NET_STRING+=",hwaddr=$MAC" ;; esac
NET_STRING+=",ip=${NET:-dhcp}"
[[ -n "${GATE:-}" ]] && case "$GATE" in ,gw=) ;; ,gw=*) NET_STRING+="$GATE" ;; *) NET_STRING+=",gw=$GATE" ;; esac
[[ -n "${VLAN:-}" ]] && case "$VLAN" in ,tag=*) NET_STRING+="$VLAN" ;; *) NET_STRING+=",tag=$VLAN" ;; esac
[[ -n "${MTU:-}" ]] && case "$MTU" in ,mtu=*) NET_STRING+="$MTU" ;; *) NET_STRING+=",mtu=$MTU" ;; esac
case "${IPV6_METHOD:-none}" in
auto) NET_STRING+=",ip6=auto" ;;
dhcp) NET_STRING+=",ip6=dhcp" ;;
static) [[ -n "${IPV6_ADDR:-}" ]] && { NET_STRING+=",ip6=$IPV6_ADDR"; [[ -n "${IPV6_GATE:-}" ]] && NET_STRING+=",gw6=$IPV6_GATE"; } ;;
esac
# --- Features ---
FEATURES="nesting=1"
[[ "$CT_TYPE" == "1" ]] && FEATURES="${FEATURES},keyctl=1"
# --- Download install.func for the container ---
export FUNCTIONS_FILE_PATH
FUNCTIONS_FILE_PATH="$(curl -fsSL https://raw.githubusercontent.com/community-scripts/ProxmoxVE/main/misc/install.func)"
if [[ -z "$FUNCTIONS_FILE_PATH" || ${#FUNCTIONS_FILE_PATH} -lt 100 ]]; then
msg_error "Failed to download install.func"
exit 115
fi
# --- Standard exports (same as build.func build_container) ---
export DIAGNOSTICS="${DIAGNOSTICS:-no}"
export RANDOM_UUID="${RANDOM_UUID:-$(cat /proc/sys/kernel/random/uuid)}"
export EXECUTION_ID="${EXECUTION_ID:-$RANDOM_UUID}"
export SESSION_ID="${SESSION_ID:-${RANDOM_UUID:0:8}}"
export CACHER="${APT_CACHER:-}"
export CACHER_IP="${APT_CACHER_IP:-}"
export tz="${timezone:-$(timedatectl show --value --property=Timezone 2>/dev/null || echo UTC)}"
export APPLICATION="$APP"
export app="$NSAPP"
export PASSWORD="${PW:-}"
export VERBOSE="${VERBOSE:-no}"
export SSH_ROOT="${SSH:-no}"
export SSH_AUTHORIZED_KEY="${SSH_AUTHORIZED_KEY:-}"
export CTID="${CT_ID:-}"
export CTTYPE="${CT_TYPE:-1}"
export PCT_OSTYPE="$var_os"
export PCT_OSVERSION="$var_version"
export PCT_DISK_SIZE="${DISK_SIZE:-$var_disk}"
export IPV6_METHOD="${IPV6_METHOD:-none}"
BUILD_LOG="${BUILD_LOG:-/tmp/create-lxc-${SESSION_ID}.log}"
export BUILD_LOG
export INSTALL_LOG="/root/.install-${SESSION_ID}.log"
# --- MeterVault-specific exports ---
export METERVAULT_CT_URL="${METERVAULT_CT_URL:-${METERVAULT_DEPLOY_BASE}/ct/metervault.sh}"
# --- Build PCT_OPTIONS string ---
PCT_OPTIONS_STRING=" -hostname ${HN:-metervault}"
[[ -n "${TAGS:-}" ]] && PCT_OPTIONS_STRING+=$'\n'" -tags $TAGS"
[[ -n "$FEATURES" ]] && PCT_OPTIONS_STRING=" -features $FEATURES"$'\n'"$PCT_OPTIONS_STRING"
[[ -n "${SD:-}" ]] && PCT_OPTIONS_STRING+=$'\n'" $SD"
[[ -n "${NS:-}" ]] && PCT_OPTIONS_STRING+=$'\n'" $NS"
PCT_OPTIONS_STRING+=$'\n'" $NET_STRING"
PCT_OPTIONS_STRING+=$'\n'" -onboot 1"
PCT_OPTIONS_STRING+=$'\n'" -cores ${CORE_COUNT:-$var_cpu}"
PCT_OPTIONS_STRING+=$'\n'" -memory ${RAM_SIZE:-$var_ram}"
PCT_OPTIONS_STRING+=$'\n'" -unprivileged ${CT_TYPE:-1}"
[[ -n "${PW:-}" ]] && PCT_OPTIONS_STRING+=$'\n'" $PW"
export PCT_OPTIONS="$PCT_OPTIONS_STRING"
export TEMPLATE_STORAGE="${var_template_storage:-}"
export CONTAINER_STORAGE="${var_container_storage:-}"
# --- Create LXC (framework function) ---
create_lxc_container || exit $?
# --- Start container and wait for network ---
msg_info "Starting LXC Container"
pct start "$CTID"
for i in {1..10}; do
if pct status "$CTID" | grep -q "status: running"; then
msg_ok "Started LXC Container"
break
fi
sleep 1
[[ "$i" -eq 10 ]] && { msg_error "LXC Container did not start"; exit 117; }
done
msg_info "Waiting for network in LXC container"
local ip_in_lxc="" wait_secs=0
while true; do
ip_in_lxc=$(pct exec "$CTID" -- ip -4 addr show dev eth0 2>/dev/null | awk '/inet / {print $2}' | cut -d/ -f1)
[[ -z "$ip_in_lxc" ]] && ip_in_lxc=$(pct exec "$CTID" -- ip -6 addr show dev eth0 scope global 2>/dev/null | awk '/inet6 / {print $2}' | cut -d/ -f1 | head -n1)
[[ -n "$ip_in_lxc" ]] && break
sleep 1
wait_secs=$((wait_secs + 1))
if ((wait_secs % 20 == 0)); then
msg_warn "No IP on eth0 after ${wait_secs}s — still waiting (Ctrl+C to abort)"
fi
done
msg_ok "Network in LXC is reachable (${ip_in_lxc})"
# --- Base packages ---
msg_info "Customizing LXC Container"
sleep 2
pct exec "$CTID" -- bash -c "apt-get update 2>&1 && apt-get install -y sudo curl mc gnupg2 jq 2>&1" >>"$BUILD_LOG" 2>&1 || {
msg_error "Failed to install base packages"
exit 116
}
msg_ok "Customized LXC Container"
# --- Run MeterVault install script (the ONLY difference vs the framework build_container) ---
# pct exec (not lxc-attach): unprivileged LXC often returns EPERM from lxc-attach, and pct exec
# does not inherit the host env — pass METERVAULT_* explicitly (collect_metervault_env). Append to
# BUILD_LOG so failures show the real error.
msg_info "Running MeterVault install script (full output: ${BUILD_LOG})"
pct exec "$CTID" -- env \
CONTAINER_INSTALLING=true \
"METERVAULT_CT_URL=${METERVAULT_CT_URL:-${METERVAULT_DEPLOY_BASE}/ct/metervault.sh}" \
"METERVAULT_PORT=${METERVAULT_PORT:-8760}" \
"METERVAULT_TIMEZONE=${METERVAULT_TIMEZONE:-Europe/Berlin}" \
"METERVAULT_DB_PASSWORD=${METERVAULT_DB_PASSWORD:-}" \
"METERVAULT_SEED=${METERVAULT_SEED:-false}" \
bash -c "$(curl -fsSL "$METERVAULT_INSTALL_URL")" >>"$BUILD_LOG" 2>&1 || {
msg_error "MeterVault install script failed — see tail of ${BUILD_LOG}"
exit 1
}
}
collect_metervault_env
metervault_build_container
description
msg_ok "Completed Successfully!\n"
echo -e "${CREATING}${GN}${APP} setup has been successfully initialized!${CL}"
echo -e "${INFO}${YW} Access it using the following URL:${CL}"
echo -e "${TAB}${GATEWAY}${BGN}http://${IP}:${METERVAULT_PORT:-8760}${CL}"
echo -e "${TAB}${INFO}First run: open Import → \"Load reference data\" for a demo (unless you enabled seeding).${CL}"
echo -e "${TAB}${INFO}PostgreSQL user 'metervault' password: ${METERVAULT_DB_PASSWORD:-<generated>} (also in /etc/metervault/environment)${CL}"
+5 -2
View File
@@ -33,13 +33,16 @@ services:
MeterVault__TimeZone: ${METERVAULT_TIMEZONE:-Europe/Berlin}
MeterVault__Currency: ${METERVAULT_CURRENCY:-EUR}
MeterVault__Locale: ${METERVAULT_LOCALE:-en}
# Set true for a populated demo: loads the bundled Energiebilanz dataset on first start
# (idempotent). Leave false for a clean instance.
MeterVault__SeedReferenceData: ${METERVAULT_SEED:-false}
# REST API is closed by default. Set a key to enable it (or AllowAnonymousApi on a trusted LAN):
# MeterVault__ApiKeys__0: your-secret-key
# MeterVault__AllowAnonymousApi: "true"
ports:
- "${METERVAULT_PORT:-8080}:8080"
- "${METERVAULT_PORT:-8760}:8760"
healthcheck:
test: ["CMD-SHELL", "curl -fsS http://localhost:8080/healthz || exit 1"]
test: ["CMD-SHELL", "curl -fsS http://localhost:8760/healthz || exit 1"]
interval: 15s
timeout: 5s
retries: 5
+267
View File
@@ -0,0 +1,267 @@
#!/usr/bin/env bash
# Copyright (c) 2021-2026 community-scripts ORG
# Author: FinalFactory
# License: MIT | https://github.com/community-scripts/ProxmoxVE/raw/main/LICENSE
# Source: https://git.finalfactory.de/FinalFactory/MeterVault
#
# Runs inside the LXC: installs PostgreSQL + TimescaleDB and the .NET SDK, builds the MeterVault
# Blazor app from the public Gitea repo, and runs it as a systemd service. MeterVault publishes a
# container image (not a prebuilt tarball), so — unlike MQTTower — this builds from source.
: "${GITEA_BASE:=https://git.finalfactory.de}"
: "${GITEA_REPO:=FinalFactory/MeterVault}"
: "${METERVAULT_REPO_URL:=${GITEA_BASE}/${GITEA_REPO}.git}"
: "${METERVAULT_BRANCH:=master}"
: "${METERVAULT_PORT:=8760}"
: "${METERVAULT_TIMEZONE:=Europe/Berlin}"
: "${METERVAULT_SEED:=false}"
: "${METERVAULT_DB_PASSWORD:=}"
: "${PG_VERSION:=16}"
: "${DOTNET_CHANNEL:=10.0}"
: "${INSTALL_DIR:=/opt/metervault}"
: "${SOURCE_DIR:=/opt/metervault-src}"
: "${ENV_FILE:=/etc/metervault/environment}"
: "${DB_NAME:=metervault}"
: "${DB_USER:=metervault}"
# SAFETY GUARD — this must run INSIDE the MeterVault LXC, never on the Proxmox host.
# The community-scripts install.func setup below runs `apt upgrade` and installs PostgreSQL/.NET at
# the top level; on a hypervisor that is destructive. Refuse unless we're in a container. This runs
# BEFORE install.func is sourced, so a mistaken host invocation exits without touching anything.
# Override for unusual setups with METERVAULT_ALLOW_HOST=1.
if ! systemd-detect-virt --container --quiet 2>/dev/null && [[ "${METERVAULT_ALLOW_HOST:-}" != "1" ]]; then
echo "ERROR: Run this installer INSIDE the MeterVault LXC, not on the Proxmox host." >&2
echo " It installs PostgreSQL/.NET and runs 'apt upgrade' — destructive on a hypervisor." >&2
echo " Enter the container first (e.g. 'pct enter <ctid>') then re-run. Override: METERVAULT_ALLOW_HOST=1." >&2
exit 1
fi
INSTALL_FUNC_URL="${INSTALL_FUNC_URL:-https://raw.githubusercontent.com/community-scripts/ProxmoxVE/main/misc/install.func}"
FUNCTIONS_FILE_PATH="${FUNCTIONS_FILE_PATH:-$(curl -fsSL "$INSTALL_FUNC_URL")}"
# shellcheck disable=SC1091 # community-scripts install.func is fetched at runtime
source /dev/stdin <<<"$FUNCTIONS_FILE_PATH"
color
verb_ip6
catch_errors
setting_up_container
network_check
update_os
export APPLICATION="${APPLICATION:-MeterVault}"
export app="${app:-metervault}"
need_cmd() {
command -v "$1" >/dev/null 2>&1 || { msg_error "Missing command: $1"; exit 127; }
}
get_ipv4() {
hostname -I 2>/dev/null | tr ' ' '\n' | grep -E '^[0-9]+\.[0-9]+\.[0-9]+\.[0-9]+$' | head -n1 || true
}
rand_hex() {
openssl rand -hex 16 2>/dev/null || head -c 16 /dev/urandom | xxd -p
}
# Unprivileged LXC: systemctl enable may fail creating unit symlinks; start often works anyway.
systemctl_enable_now_best_effort() {
local svc="$1"
if systemctl enable -q --now "$svc" 2>/dev/null; then
return 0
fi
msg_info "systemctl enable --now failed for ${svc}; trying start only (common in unprivileged LXC)."
systemctl daemon-reload 2>/dev/null || true
if systemctl start "$svc" 2>/dev/null && systemctl is-active --quiet "$svc" 2>/dev/null; then
return 0
fi
msg_error "Could not start ${svc}. See: journalctl -xeu ${svc}"
return 1
}
# Append KEY=VALUE only if KEY is absent (safe re-runs / new keys across versions).
ensure_env_key() {
local file="$1" key="$2" value="$3"
if ! grep -q "^${key}=" "$file" 2>/dev/null; then
printf '%s=%s\n' "$key" "$value" >>"$file"
fi
}
install_postgres_timescaledb() {
export DEBIAN_FRONTEND=noninteractive
msg_info "Adding PostgreSQL (PGDG) and TimescaleDB apt repositories"
$STD apt-get install -y gnupg postgresql-common apt-transport-https lsb-release wget ca-certificates
# PGDG: the official PostgreSQL apt repo (provides a consistent postgresql-${PG_VERSION}).
$STD /usr/share/postgresql-common/pgdg/apt.postgresql.org.sh -y
local codename
codename="$(lsb_release -cs)"
echo "deb https://packagecloud.io/timescale/timescaledb/debian/ ${codename} main" >/etc/apt/sources.list.d/timescaledb.list
wget --quiet -O - https://packagecloud.io/timescale/timescaledb/gpgkey | gpg --dearmor -o /etc/apt/trusted.gpg.d/timescaledb.gpg
$STD apt-get update
msg_ok "Repositories added"
msg_info "Installing PostgreSQL ${PG_VERSION} + TimescaleDB"
$STD apt-get install -y "postgresql-${PG_VERSION}" "postgresql-client-${PG_VERSION}" "timescaledb-2-postgresql-${PG_VERSION}"
msg_ok "Installed PostgreSQL + TimescaleDB"
msg_info "Enabling the timescaledb preload"
local pgconf="/etc/postgresql/${PG_VERSION}/main/postgresql.conf"
if command -v timescaledb-tune >/dev/null 2>&1; then
timescaledb-tune --quiet --yes --pg-config "/usr/lib/postgresql/${PG_VERSION}/bin/pg_config" >/dev/null 2>&1 || true
fi
if ! grep -qE "^\s*shared_preload_libraries\s*=.*timescaledb" "$pgconf" 2>/dev/null; then
echo "shared_preload_libraries = 'timescaledb'" >>"$pgconf"
fi
systemctl restart postgresql
msg_ok "PostgreSQL restarted with timescaledb preloaded"
}
provision_database() {
msg_info "Creating the ${DB_NAME} database and role"
[[ -n "${METERVAULT_DB_PASSWORD}" ]] || METERVAULT_DB_PASSWORD="$(rand_hex)"
# Role: create or reset the password (idempotent re-runs).
if sudo -u postgres psql -tAc "SELECT 1 FROM pg_roles WHERE rolname='${DB_USER}'" | grep -q 1; then
sudo -u postgres psql -c "ALTER ROLE ${DB_USER} WITH LOGIN PASSWORD '${METERVAULT_DB_PASSWORD}';" >/dev/null
else
sudo -u postgres psql -c "CREATE ROLE ${DB_USER} WITH LOGIN PASSWORD '${METERVAULT_DB_PASSWORD}';" >/dev/null
fi
if ! sudo -u postgres psql -tAc "SELECT 1 FROM pg_database WHERE datname='${DB_NAME}'" | grep -q 1; then
sudo -u postgres psql -c "CREATE DATABASE ${DB_NAME} OWNER ${DB_USER};" >/dev/null
fi
# Pre-create the extension as superuser (CREATE EXTENSION timescaledb needs superuser); the app's
# migration then finds it present and its own CREATE EXTENSION IF NOT EXISTS is a no-op.
sudo -u postgres psql -d "${DB_NAME}" -c "CREATE EXTENSION IF NOT EXISTS timescaledb;" >/dev/null
msg_ok "Database ready"
}
install_dotnet_sdk() {
export DEBIAN_FRONTEND=noninteractive
msg_info "Installing the .NET SDK (${DOTNET_CHANNEL}) to build from source"
local deb_ver
deb_ver="$(. /etc/os-release 2>/dev/null && echo "${VERSION_ID%%.*}" || echo "12")"
if [[ "$deb_ver" != "11" && "$deb_ver" != "12" && "$deb_ver" != "13" ]]; then
deb_ver="12"
fi
if [[ ! -f /etc/apt/sources.list.d/microsoft-prod.list && ! -f /etc/apt/sources.list.d/microsoft-prod.sources ]]; then
$STD curl -fsSL "https://packages.microsoft.com/config/debian/${deb_ver}/packages-microsoft-prod.deb" -o /tmp/packages-microsoft-prod.deb
$STD dpkg -i /tmp/packages-microsoft-prod.deb
rm -f /tmp/packages-microsoft-prod.deb
fi
$STD apt-get update -y
$STD apt-get install -y "dotnet-sdk-${DOTNET_CHANNEL}"
msg_ok "Installed .NET SDK"
}
build_metervault() {
export DOTNET_CLI_TELEMETRY_OPTOUT=1 DOTNET_NOLOGO=1
msg_info "Fetching MeterVault source (${METERVAULT_REPO_URL})"
if [[ -d "${SOURCE_DIR}/.git" ]]; then
git -C "${SOURCE_DIR}" fetch --depth 1 origin "${METERVAULT_BRANCH}"
git -C "${SOURCE_DIR}" reset --hard "origin/${METERVAULT_BRANCH}"
else
rm -rf "${SOURCE_DIR}"
$STD git clone --depth 1 --branch "${METERVAULT_BRANCH}" "${METERVAULT_REPO_URL}" "${SOURCE_DIR}"
fi
msg_ok "Source ready at ${SOURCE_DIR}"
msg_info "Building MeterVault (dotnet publish — this can take a few minutes)"
# sampledata/ is at the repo root; the App csproj links it as Content so publish ships the demo CSVs.
$STD dotnet publish "${SOURCE_DIR}/src/App/MeterVault.App.csproj" -c Release -o "${INSTALL_DIR}" /p:UseAppHost=false
msg_ok "Published to ${INSTALL_DIR}"
}
write_env() {
mkdir -p "$(dirname "${ENV_FILE}")"
umask 077
local conn="Host=127.0.0.1;Port=5432;Database=${DB_NAME};Username=${DB_USER};Password=${METERVAULT_DB_PASSWORD}"
if [[ -f "${ENV_FILE}" ]]; then
msg_info "Environment exists; merging new keys and refreshing the connection string"
ensure_env_key "${ENV_FILE}" "ASPNETCORE_ENVIRONMENT" "Production"
ensure_env_key "${ENV_FILE}" "DOTNET_SYSTEM_GLOBALIZATION_INVARIANT" "false"
ensure_env_key "${ENV_FILE}" "ASPNETCORE_URLS" "http://+:${METERVAULT_PORT}"
ensure_env_key "${ENV_FILE}" "MeterVault__TimeZone" "${METERVAULT_TIMEZONE}"
ensure_env_key "${ENV_FILE}" "MeterVault__Currency" "EUR"
ensure_env_key "${ENV_FILE}" "MeterVault__Locale" "en"
ensure_env_key "${ENV_FILE}" "MeterVault__SeedReferenceData" "${METERVAULT_SEED}"
sed -i "s|^ConnectionStrings__Default=.*|ConnectionStrings__Default=${conn}|" "${ENV_FILE}"
grep -q '^ConnectionStrings__Default=' "${ENV_FILE}" || printf 'ConnectionStrings__Default=%s\n' "${conn}" >>"${ENV_FILE}"
msg_ok "Updated ${ENV_FILE}"
else
cat <<EOF >"${ENV_FILE}"
ASPNETCORE_ENVIRONMENT=Production
DOTNET_SYSTEM_GLOBALIZATION_INVARIANT=false
ASPNETCORE_URLS=http://+:${METERVAULT_PORT}
ConnectionStrings__Default=${conn}
MeterVault__TimeZone=${METERVAULT_TIMEZONE}
MeterVault__Currency=EUR
MeterVault__Locale=en
MeterVault__SeedReferenceData=${METERVAULT_SEED}
EOF
msg_ok "Wrote ${ENV_FILE}"
fi
chmod 600 "${ENV_FILE}"
}
write_systemd() {
cat <<'EOF' >/etc/systemd/system/metervault.service
[Unit]
Description=MeterVault (self-hosted energy & utility metering)
After=network-online.target postgresql.service
Wants=network-online.target
Requires=postgresql.service
[Service]
Type=simple
EnvironmentFile=/etc/metervault/environment
WorkingDirectory=/opt/metervault
ExecStart=/usr/bin/dotnet /opt/metervault/MeterVault.App.dll
Restart=always
RestartSec=5
[Install]
WantedBy=multi-user.target
EOF
}
# Install the in-container updater from the checkout we just built, rather than emitting it from a
# heredoc here. Keeping it a real file in the repo means an already-provisioned container can
# bootstrap /usr/bin/update itself after a git pull, instead of being stranded on whatever the
# installer wrote the day it ran.
write_update_command() {
local src="${SOURCE_DIR}/deploy/install/metervault-update.sh"
if [[ ! -f "${src}" ]]; then
echo "Updater script not found at ${src} — skipping 'update' command." >&2
return 0
fi
install -m 0755 "${src}" /usr/bin/update
}
main() {
need_cmd curl
ensure_dependencies git jq openssl sudo
install_postgres_timescaledb
provision_database
install_dotnet_sdk
build_metervault
write_env
write_systemd
systemctl daemon-reload 2>/dev/null || true
systemctl_enable_now_best_effort metervault
# Write the important post-install artifact first, then run cosmetic framework steps best-effort.
# motd_ssh's `chmod -x /etc/update-motd.d/*` returns "Operation not permitted" in some unprivileged
# LXCs; under the framework's ERR trap that would otherwise abort an already-successful install.
write_update_command
motd_ssh 2>/dev/null || true
customize 2>/dev/null || true
cleanup_lxc 2>/dev/null || true
local ip
ip="$(get_ipv4)"
msg_ok "MeterVault is up at http://${ip:-127.0.0.1}:${METERVAULT_PORT}"
}
main "$@"
+52
View File
@@ -0,0 +1,52 @@
#!/usr/bin/env bash
# MeterVault in-container updater — installed to /usr/bin/update by metervault-install.sh.
# Pulls the latest source and rebuilds in place: no host round-trip and no re-fetch of the
# community-scripts framework (safer + simpler than re-running the ct script).
#
# Kept as a standalone file rather than a heredoc in the installer so an already-provisioned
# container can bootstrap it straight from its own checkout:
# git -C /opt/metervault-src fetch --depth 1 origin master
# git -C /opt/metervault-src reset --hard origin/master
# install -m 0755 /opt/metervault-src/deploy/install/metervault-update.sh /usr/bin/update
set -euo pipefail
: "${SOURCE_DIR:=/opt/metervault-src}"
: "${INSTALL_DIR:=/opt/metervault}"
: "${METERVAULT_BRANCH:=master}"
# SAFETY GUARD — this must run INSIDE the MeterVault LXC, never on the Proxmox host.
if ! systemd-detect-virt --container --quiet 2>/dev/null; then
echo "Run 'update' inside the MeterVault LXC, not on the Proxmox host." >&2
exit 1
fi
if [[ ! -d "${SOURCE_DIR}/.git" ]]; then
echo "No source checkout at ${SOURCE_DIR} — cannot rebuild. Reinstall to restore it." >&2
exit 1
fi
export DOTNET_CLI_TELEMETRY_OPTOUT=1 DOTNET_NOLOGO=1
echo "Stopping metervault…"
systemctl stop metervault || true
echo "Pulling latest source…"
git -C "${SOURCE_DIR}" fetch --depth 1 origin "${METERVAULT_BRANCH}"
git -C "${SOURCE_DIR}" reset --hard "origin/${METERVAULT_BRANCH}"
echo "Rebuilding (dotnet publish — this can take a few minutes)…"
dotnet publish "${SOURCE_DIR}/src/App/MeterVault.App.csproj" -c Release -o "${INSTALL_DIR}" /p:UseAppHost=false
echo "Starting metervault…"
systemctl start metervault
# Refresh this script from the checkout we just pulled, so a change to the updater itself lands
# without stranding the container again. Atomic rename, never an in-place write: bash reads the
# running script lazily, so truncating it mid-run would corrupt the remainder of this execution.
self="${SOURCE_DIR}/deploy/install/metervault-update.sh"
if [[ -f "${self}" ]] && ! cmp -s "${self}" /usr/bin/update; then
install -m 0755 "${self}" /usr/bin/.update.new && mv /usr/bin/.update.new /usr/bin/update
echo "Updater itself refreshed — the new version applies from the next run."
fi
echo "MeterVault updated."
+2 -2
View File
@@ -11,10 +11,10 @@
<Privileged>false</Privileged>
<Overview>Self-hosted energy &amp; utility metering: ingest from Home Assistant/Tasmota/MQTT, normalize to consumption, and produce cost dashboards. Needs a TimescaleDB instance.</Overview>
<Category>HomeAutomation: Tools: Productivity:</Category>
<WebUI>http://[IP]:[PORT:8080]/</WebUI>
<WebUI>http://[IP]:[PORT:8760]/</WebUI>
<Icon>https://git.finalfactory.de/FinalFactory/MeterVault/raw/branch/master/docs/icon.png</Icon>
<Config Name="WebUI Port" Target="8080" Default="8080" Mode="tcp" Description="HTTP port" Type="Port" Display="always" Required="true">8080</Config>
<Config Name="WebUI Port" Target="8760" Default="8760" Mode="tcp" Description="HTTP port" Type="Port" Display="always" Required="true">8760</Config>
<Config Name="Database connection" Target="ConnectionStrings__Default" Default="Host=timescaledb;Port=5432;Database=metervault;Username=metervault;Password=changeme" Mode="" Description="PostgreSQL/TimescaleDB connection string" Type="Variable" Display="always" Required="true">Host=timescaledb;Port=5432;Database=metervault;Username=metervault;Password=changeme</Config>
+39
View File
@@ -0,0 +1,39 @@
#!/usr/bin/env bash
# Maintainer helper. Not part of the community-scripts tree under deploy/.
#
# If bash reports "$'\r': command not found" or "set: pipefail: invalid option", the file has
# CRLF line endings. Fix (use the real path to this file — not $0 from an interactive shell):
# sed -i 's/\r$//' /tmp/run-metervault-ct-install.sh && bash /tmp/run-metervault-ct-install.sh
#
# Run this **inside** an existing Debian LXC (not on the Proxmox host). It exports the same
# METERVAULT_* variables that deploy/ct/metervault.sh passes via pct exec, then runs the official
# install script from the public Gitea repo.
#
# Optional overrides file: export METERVAULT_INSTALL_ENV=/root/metervault-install.env
set -euo pipefail
[[ "${1:-}" == "-h" || "${1:-}" == "--help" ]] && { echo "Usage: $0 (run as root inside the LXC)"; exit 0; }
[[ "$(id -u)" -eq 0 ]] || { echo "error: run as root inside the container" >&2; exit 1; }
rand_hex() { openssl rand -hex 16 2>/dev/null || head -c 16 /dev/urandom | xxd -p; }
METERVAULT_DEPLOY_BASE="${METERVAULT_DEPLOY_BASE:-https://git.finalfactory.de/FinalFactory/MeterVault/raw/branch/master/deploy}"
METERVAULT_INSTALL_URL="${METERVAULT_INSTALL_URL:-${METERVAULT_DEPLOY_BASE}/install/metervault-install.sh}"
[[ -n "${METERVAULT_INSTALL_ENV:-}" && -f "${METERVAULT_INSTALL_ENV}" ]] && { set -a; # shellcheck source=/dev/null
source "${METERVAULT_INSTALL_ENV}"; set +a; }
export CONTAINER_INSTALLING="${CONTAINER_INSTALLING:-true}"
export METERVAULT_CT_URL="${METERVAULT_CT_URL:-${METERVAULT_DEPLOY_BASE}/ct/metervault.sh}"
export METERVAULT_PORT="${METERVAULT_PORT:-8760}"
export METERVAULT_TIMEZONE="${METERVAULT_TIMEZONE:-Europe/Berlin}"
export METERVAULT_SEED="${METERVAULT_SEED:-false}"
if [[ -z "${METERVAULT_DB_PASSWORD:-}" ]]; then
METERVAULT_DB_PASSWORD="$(rand_hex)"
echo "Generated METERVAULT_DB_PASSWORD: ${METERVAULT_DB_PASSWORD}"
fi
export METERVAULT_DB_PASSWORD
echo "METERVAULT_INSTALL_URL=${METERVAULT_INSTALL_URL} PORT=${METERVAULT_PORT} SEED=${METERVAULT_SEED}"
exec bash -c "$(curl -fsSL "$METERVAULT_INSTALL_URL")"
+2 -2
View File
@@ -10,11 +10,11 @@
<link rel="stylesheet" href="_content/MudBlazor/MudBlazor.min.css" />
<link rel="stylesheet" href="@Assets["MeterVault.App.styles.css"]" />
<ImportMap />
<HeadOutlet />
<HeadOutlet @rendermode="InteractiveServer" />
</head>
<body>
<Routes />
<Routes @rendermode="InteractiveServer" />
<ReconnectModal />
<script src="@Assets["_framework/blazor.web.js"]"></script>
<script src="_content/MudBlazor/MudBlazor.min.js"></script>
@@ -8,6 +8,8 @@
<MudLayout>
<MudAppBar Elevation="1" Dense="true">
<MudIconButton Icon="@Icons.Material.Filled.Menu" Color="Color.Inherit" Edge="Edge.Start"
OnClick="@(() => _drawerOpen = !_drawerOpen)" aria-label="Toggle navigation" />
<MudIcon Icon="@Icons.Material.Filled.Bolt" Class="mr-2" />
<MudText Typo="Typo.h6">MeterVault</MudText>
<MudSpacer />
+44
View File
@@ -1,11 +1,55 @@
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@using Microsoft.EntityFrameworkCore
@using MeterVault.Core.Domain
<MudNavMenu>
<MudNavLink Href="/" Match="NavLinkMatch.All" Icon="@Icons.Material.Filled.Dashboard">Overview</MudNavLink>
<MudNavLink Href="/trends" Match="NavLinkMatch.Prefix" Icon="@Icons.Material.Filled.ShowChart">Trends</MudNavLink>
@foreach (var type in _energyTypes)
{
<MudNavLink Href="@($"/energy/{type.Id}")" Match="NavLinkMatch.Prefix" Icon="@TypeIcon(type.Icon)">@type.DisplayName</MudNavLink>
}
<MudNavLink Href="/solar" Match="NavLinkMatch.Prefix" Icon="@Icons.Material.Filled.WbSunny">Solar / PV</MudNavLink>
<MudNavLink Href="/consumables" Match="NavLinkMatch.Prefix" Icon="@Icons.Material.Filled.OilBarrel">Oil / consumables</MudNavLink>
<MudNavLink Href="/meters" Match="NavLinkMatch.Prefix" Icon="@Icons.Material.Filled.Speed">Meters</MudNavLink>
<MudNavLink Href="/import" Match="NavLinkMatch.Prefix" Icon="@Icons.Material.Filled.UploadFile">Import</MudNavLink>
<MudDivider Class="my-2" />
<MudNavGroup Title="Admin" Icon="@Icons.Material.Filled.Settings" Expanded="false">
<MudNavLink Href="/admin/energy-types" Icon="@Icons.Material.Filled.Category">Energy types</MudNavLink>
<MudNavLink Href="/admin/tariffs" Icon="@Icons.Material.Filled.Euro">Tariffs</MudNavLink>
<MudNavLink Href="/admin/categories" Icon="@Icons.Material.Filled.Folder">Cost categories</MudNavLink>
<MudNavLink Href="/admin/connectors" Icon="@Icons.Material.Filled.SettingsInputComponent">Connectors</MudNavLink>
<MudNavLink Href="/admin/settings" Icon="@Icons.Material.Filled.Tune">Settings</MudNavLink>
</MudNavGroup>
</MudNavMenu>
@code {
private List<EnergyType> _energyTypes = [];
protected override async Task OnInitializedAsync()
{
try
{
await using var db = await DbFactory.CreateDbContextAsync();
_energyTypes = await db.EnergyTypes.AsNoTracking().OrderBy(t => t.Id).ToListAsync();
}
catch (Exception)
{
// Nav must never break the layout — a DB hiccup just hides the per-type links.
_energyTypes = [];
}
}
// Map the energy type's stored icon name to a Material icon; fall back to a generic gauge.
private static string TypeIcon(string? icon) => icon switch
{
"bolt" => Icons.Material.Filled.Bolt,
"water_drop" => Icons.Material.Filled.WaterDrop,
"local_gas_station" => Icons.Material.Filled.LocalGasStation,
"gas_meter" => Icons.Material.Filled.GasMeter,
"thermostat" => Icons.Material.Filled.Thermostat,
_ => Icons.Material.Filled.Bolt,
};
}
@@ -0,0 +1,260 @@
@page "/admin/categories"
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject ISnackbar Snackbar
@inject IDialogService DialogService
@using Microsoft.EntityFrameworkCore
@using MudBlazor
<PageTitle>MeterVault — Cost categories</PageTitle>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Cost categories</MudText>
<MudButton Variant="Variant.Filled" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Add" OnClick="@(() => OpenEdit(null))">
Add category
</MudButton>
</div>
@if (_categories is null)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
else
{
<MudTable Items="_categories" Dense="true" Hover="true" Elevation="2">
<HeaderContent>
<MudTh>Name</MudTh>
<MudTh>Sort</MudTh>
<MudTh>Members</MudTh>
<MudTh Style="text-align:right">Actions</MudTh>
</HeaderContent>
<RowTemplate>
<MudTd DataLabel="Name">
@if (!string.IsNullOrWhiteSpace(context.ColorHex))
{
<span style="display:inline-block;width:.8em;height:.8em;border-radius:2px;margin-right:.4em;background:@context.ColorHex"></span>
}
@context.Name
</MudTd>
<MudTd DataLabel="Sort">@context.Sort</MudTd>
<MudTd DataLabel="Members">@MemberSummary(context)</MudTd>
<MudTd DataLabel="Actions" Style="text-align:right">
<MudIconButton Icon="@Icons.Material.Filled.Edit" Size="Size.Small" OnClick="@(() => OpenEdit(context))" />
<MudIconButton Icon="@Icons.Material.Filled.Delete" Size="Size.Small" Color="Color.Error" OnClick="@(() => DeleteAsync(context))" />
</MudTd>
</RowTemplate>
</MudTable>
}
<MudDialog @bind-Visible="_editOpen" Options="_dialogOptions">
<TitleContent>
<MudText Typo="Typo.h6">@(_working.Id == 0 ? "New category" : $"Edit {_working.Name}")</MudText>
</TitleContent>
<DialogContent>
<MudTextField @bind-Value="_working.Name" Label="Name" Required="true" Class="mb-2" />
<MudTextField @bind-Value="_working.ColorHex" Label="Color hex (optional, e.g. #ff9800)" Class="mb-2" />
<MudNumericField T="int" @bind-Value="_working.Sort" Label="Sort order" Class="mb-2" />
@if (_working.Id != 0)
{
<MudDivider Class="my-3" />
<MudText Typo="Typo.subtitle2" Class="mb-2">Members</MudText>
@if (_members.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No members yet — add a meter or an energy type.</MudText>
}
else
{
<MudList T="string" Dense="true">
@foreach (var m in _members)
{
<MudListItem T="string">
<div class="d-flex align-center justify-space-between">
<span>@MemberLabel(m)</span>
<MudIconButton Icon="@Icons.Material.Filled.Close" Size="Size.Small" OnClick="@(() => RemoveMemberAsync(m.Id))" />
</div>
</MudListItem>
}
</MudList>
}
<div class="d-flex align-center mt-2" style="gap:.5rem; flex-wrap:wrap">
<MudSelect T="int?" @bind-Value="_addMeterId" Label="Add meter" Dense="true" Style="min-width:180px">
@foreach (var meter in _meters)
{
<MudSelectItem T="int?" Value="@((int?)meter.Id)">@meter.Name</MudSelectItem>
}
</MudSelect>
<MudButton Size="Size.Small" OnClick="AddMeterMemberAsync" Disabled="_addMeterId is null">Add</MudButton>
<MudSelect T="int?" @bind-Value="_addTypeId" Label="Add energy type" Dense="true" Style="min-width:180px">
@foreach (var t in _energyTypes)
{
<MudSelectItem T="int?" Value="@((int?)t.Id)">@t.DisplayName</MudSelectItem>
}
</MudSelect>
<MudButton Size="Size.Small" OnClick="AddTypeMemberAsync" Disabled="_addTypeId is null">Add</MudButton>
</div>
}
else
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mt-2">Save the category first to add members.</MudAlert>
}
</DialogContent>
<DialogActions>
<MudButton OnClick="@(() => _editOpen = false)">Close</MudButton>
<MudButton Color="Color.Primary" Variant="Variant.Filled" OnClick="SaveAsync">Save</MudButton>
</DialogActions>
</MudDialog>
@code {
private List<CostCategory>? _categories;
private List<Meter> _meters = [];
private List<EnergyType> _energyTypes = [];
private List<CostCategoryMember> _members = [];
private bool _editOpen;
private EditModel _working = new();
private int? _addMeterId;
private int? _addTypeId;
private readonly DialogOptions _dialogOptions = new() { MaxWidth = MaxWidth.Small, FullWidth = true };
protected override Task OnInitializedAsync() => LoadAsync();
private async Task LoadAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_categories = await db.CostCategories.AsNoTracking().Include(c => c.Members).OrderBy(c => c.Sort).ThenBy(c => c.Name).ToListAsync();
_meters = await db.Meters.AsNoTracking().OrderBy(m => m.Name).ToListAsync();
_energyTypes = await db.EnergyTypes.AsNoTracking().OrderBy(t => t.DisplayName).ToListAsync();
}
private string MemberSummary(CostCategory c)
{
var meters = c.Members.Count(m => m.MeterId is not null);
var types = c.Members.Count(m => m.EnergyTypeId is not null);
return meters + types == 0 ? "—" : $"{meters} meter(s), {types} type(s)";
}
private string MemberLabel(CostCategoryMember m) =>
m.MeterId is { } meterId ? $"Meter: {_meters.FirstOrDefault(x => x.Id == meterId)?.Name ?? $"#{meterId}"}"
: m.EnergyTypeId is { } typeId ? $"Type: {_energyTypes.FirstOrDefault(x => x.Id == typeId)?.DisplayName ?? $"#{typeId}"}"
: "—";
private void OpenEdit(CostCategory? category)
{
if (category is null)
{
_working = new EditModel();
_members = [];
}
else
{
_working = new EditModel { Id = category.Id, Name = category.Name, ColorHex = category.ColorHex, Sort = category.Sort };
_members = [.. category.Members];
}
_addMeterId = null;
_addTypeId = null;
_editOpen = true;
}
private async Task SaveAsync()
{
if (string.IsNullOrWhiteSpace(_working.Name))
{
Snackbar.Add("Name is required.", Severity.Warning);
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
if (_working.Id == 0)
{
var category = new CostCategory { Name = _working.Name.Trim(), ColorHex = Trim(_working.ColorHex), Sort = _working.Sort };
db.CostCategories.Add(category);
await db.SaveChangesAsync();
// Re-open on the new category so members can be added.
Snackbar.Add("Saved. Add members below.", Severity.Success);
await LoadAsync();
OpenEdit(_categories!.First(c => c.Id == category.Id));
return;
}
var existing = await db.CostCategories.FirstAsync(c => c.Id == _working.Id);
existing.Name = _working.Name.Trim();
existing.ColorHex = Trim(_working.ColorHex);
existing.Sort = _working.Sort;
await db.SaveChangesAsync();
_editOpen = false;
Snackbar.Add("Saved.", Severity.Success);
await LoadAsync();
}
private async Task AddMeterMemberAsync()
{
if (_addMeterId is not { } meterId)
{
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
if (!await db.CostCategoryMembers.AnyAsync(m => m.CategoryId == _working.Id && m.MeterId == meterId))
{
db.CostCategoryMembers.Add(new CostCategoryMember { CategoryId = _working.Id, MeterId = meterId });
await db.SaveChangesAsync();
}
_addMeterId = null;
await ReloadMembersAsync();
}
private async Task AddTypeMemberAsync()
{
if (_addTypeId is not { } typeId)
{
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
if (!await db.CostCategoryMembers.AnyAsync(m => m.CategoryId == _working.Id && m.EnergyTypeId == (short)typeId))
{
db.CostCategoryMembers.Add(new CostCategoryMember { CategoryId = _working.Id, EnergyTypeId = (short)typeId });
await db.SaveChangesAsync();
}
_addTypeId = null;
await ReloadMembersAsync();
}
private async Task RemoveMemberAsync(int memberId)
{
await using var db = await DbFactory.CreateDbContextAsync();
await db.CostCategoryMembers.Where(m => m.Id == memberId).ExecuteDeleteAsync();
await ReloadMembersAsync();
}
private async Task ReloadMembersAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_members = await db.CostCategoryMembers.AsNoTracking().Where(m => m.CategoryId == _working.Id).ToListAsync();
_categories = await db.CostCategories.AsNoTracking().Include(c => c.Members).OrderBy(c => c.Sort).ThenBy(c => c.Name).ToListAsync();
}
private async Task DeleteAsync(CostCategory category)
{
if (!await Confirm.DeleteAsync(DialogService, "Delete category",
$"Delete '{category.Name}' and its {category.Members.Count} membership(s)? Manual costs in this category are kept but unlinked."))
{
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
// Members cascade with the category; manual_cost.category_id is SetNull.
await db.CostCategories.Where(c => c.Id == category.Id).ExecuteDeleteAsync();
Snackbar.Add("Deleted.", Severity.Success);
await LoadAsync();
}
private static string? Trim(string? value) => string.IsNullOrWhiteSpace(value) ? null : value.Trim();
private sealed class EditModel
{
public int Id { get; set; }
public string Name { get; set; } = "";
public string? ColorHex { get; set; }
public int Sort { get; set; }
}
}
@@ -0,0 +1,252 @@
@page "/admin/connectors"
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject MeterVault.Infrastructure.Ingestion.HaConnectionTester HaTester
@inject ISnackbar Snackbar
@inject IDialogService DialogService
@using Microsoft.EntityFrameworkCore
@using MeterVault.Infrastructure.Ingestion
@using MudBlazor
<PageTitle>MeterVault — Connectors</PageTitle>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Connectors</MudText>
<MudButton Variant="Variant.Filled" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Add" OnClick="@(() => OpenEdit(null))">
Add connector
</MudButton>
</div>
<MudAlert Severity="Severity.Info" Class="mb-4" Dense="true">
Secrets are never stored here. Credentials/tokens are referenced by the <b>name of an environment variable</b>
(or Docker secret) resolved at runtime.
</MudAlert>
@if (_endpoints is null)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
else
{
<MudTable Items="_endpoints" Dense="true" Hover="true" Elevation="2">
<HeaderContent>
<MudTh>Name</MudTh>
<MudTh>Type</MudTh>
<MudTh>Enabled</MudTh>
<MudTh>Last status</MudTh>
<MudTh>Last seen</MudTh>
<MudTh Style="text-align:right">Actions</MudTh>
</HeaderContent>
<RowTemplate>
<MudTd DataLabel="Name">@context.Name</MudTd>
<MudTd DataLabel="Type">@context.Type</MudTd>
<MudTd DataLabel="Enabled">@(context.IsEnabled ? "yes" : "no")</MudTd>
<MudTd DataLabel="Last status">@(context.LastStatus ?? "—")</MudTd>
<MudTd DataLabel="Last seen">@(context.LastSeenAt?.ToString("yyyy-MM-dd HH:mm") ?? "—")</MudTd>
<MudTd DataLabel="Actions" Style="text-align:right">
<MudIconButton Icon="@Icons.Material.Filled.Edit" Size="Size.Small" OnClick="@(() => OpenEdit(context))" />
<MudIconButton Icon="@Icons.Material.Filled.Delete" Size="Size.Small" Color="Color.Error" OnClick="@(() => DeleteAsync(context))" />
</MudTd>
</RowTemplate>
</MudTable>
@if (_endpoints.Count == 0)
{
<MudAlert Severity="Severity.Normal" Class="mt-4">No connectors yet. Add an MQTT broker or a Home Assistant connection.</MudAlert>
}
}
<MudDialog @bind-Visible="_editOpen" Options="_dialogOptions">
<TitleContent>
<MudText Typo="Typo.h6">@(_working.Id == 0 ? "New connector" : $"Edit {_working.Name}")</MudText>
</TitleContent>
<DialogContent>
<MudSelect T="EndpointType" @bind-Value="_working.Type" Label="Type" Class="mb-2">
@foreach (var type in Enum.GetValues<EndpointType>())
{
<MudSelectItem T="EndpointType" Value="type">@type</MudSelectItem>
}
</MudSelect>
<MudTextField @bind-Value="_working.Name" Label="Name" Required="true" Class="mb-2" />
@if (_working.Type == EndpointType.HomeAssistant)
{
<MudTextField @bind-Value="_working.BaseUrl" Label="Base URL (e.g. http://homeassistant.local:8123)" Class="mb-2" />
<MudTextField @bind-Value="_working.TokenEnv" Label="Token env-var name (e.g. HA_TOKEN)" Class="mb-2" />
<MudSwitch T="bool" @bind-Value="_working.UseWebSocket" Label="Real-time WebSocket push" Color="Color.Primary" Class="mb-1" />
<MudText Typo="Typo.caption" Color="Color.Secondary" Class="mb-2 d-block">
On: subscribe to state changes and ingest in real time. Off: REST poll on each source's interval.
</MudText>
<MudTextField @bind-Value="_working.TestEntityId" Label="Test entity id (optional, e.g. sensor.house_power)" Class="mb-2" />
<MudButton Variant="Variant.Outlined" StartIcon="@Icons.Material.Filled.NetworkCheck" OnClick="TestHaAsync" Disabled="_testing" Class="mb-2">
Test connection
</MudButton>
@if (_testing)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" Class="mb-2" />
}
@if (_testResult is not null)
{
<MudAlert Severity="@(_testResult.Ok ? Severity.Success : Severity.Error)" Dense="true" Class="mb-2">@_testResult.Message</MudAlert>
}
}
else
{
<MudTextField @bind-Value="_working.Host" Label="Host" Class="mb-2" />
<MudNumericField T="int" @bind-Value="_working.Port" Label="Port" Class="mb-2" />
<MudSwitch T="bool" @bind-Value="_working.Tls" Label="TLS" Color="Color.Primary" Class="mb-2" />
<MudTextField @bind-Value="_working.UsernameEnv" Label="Username env-var name (optional)" Class="mb-2" />
<MudTextField @bind-Value="_working.PasswordEnv" Label="Password env-var name (optional)" Class="mb-2" />
<MudTextField @bind-Value="_working.ExtraTopics" Label="Extra topics (comma-separated, optional)" Class="mb-2" />
}
<MudSwitch T="bool" @bind-Value="_working.IsEnabled" Label="Enabled" Color="Color.Primary" />
</DialogContent>
<DialogActions>
<MudButton OnClick="@(() => _editOpen = false)">Cancel</MudButton>
<MudButton Color="Color.Primary" Variant="Variant.Filled" OnClick="SaveAsync">Save</MudButton>
</DialogActions>
</MudDialog>
@code {
private List<IngestionEndpoint>? _endpoints;
private bool _editOpen;
private bool _testing;
private HaTestResult? _testResult;
private EditModel _working = new();
private readonly DialogOptions _dialogOptions = new() { MaxWidth = MaxWidth.Small, FullWidth = true };
protected override Task OnInitializedAsync() => LoadAsync();
private async Task LoadAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_endpoints = await db.IngestionEndpoints.AsNoTracking().OrderBy(e => e.Name).ToListAsync();
}
private void OpenEdit(IngestionEndpoint? endpoint)
{
_testResult = null;
if (endpoint is null)
{
_working = new EditModel();
}
else if (endpoint.Type == EndpointType.HomeAssistant)
{
var ha = HaEndpointConfig.Parse(endpoint.Config);
_working = new EditModel
{
Id = endpoint.Id, Type = endpoint.Type, Name = endpoint.Name, IsEnabled = endpoint.IsEnabled,
BaseUrl = ha.BaseUrl, TokenEnv = ha.TokenEnv, UseWebSocket = ha.UseWebSocket,
};
}
else
{
var mqtt = EndpointConfig.Parse(endpoint.Config);
_working = new EditModel
{
Id = endpoint.Id, Type = endpoint.Type, Name = endpoint.Name, IsEnabled = endpoint.IsEnabled,
Host = mqtt.Host, Port = mqtt.Port, Tls = mqtt.Tls,
UsernameEnv = mqtt.UsernameEnv, PasswordEnv = mqtt.PasswordEnv,
ExtraTopics = string.Join(", ", mqtt.ExtraTopics),
};
}
_editOpen = true;
}
private async Task TestHaAsync()
{
_testing = true;
_testResult = null;
try
{
_testResult = await HaTester.TestAsync(_working.BaseUrl, _working.TokenEnv, _working.TestEntityId);
}
finally
{
_testing = false;
}
}
private async Task SaveAsync()
{
if (string.IsNullOrWhiteSpace(_working.Name))
{
Snackbar.Add("Name is required.", Severity.Warning);
return;
}
var config = _working.Type == EndpointType.HomeAssistant
? new HaEndpointConfig { BaseUrl = Trim(_working.BaseUrl), TokenEnv = Trim(_working.TokenEnv), UseWebSocket = _working.UseWebSocket }.ToJson()
: new EndpointConfig
{
Host = string.IsNullOrWhiteSpace(_working.Host) ? "localhost" : _working.Host.Trim(),
Port = _working.Port,
Tls = _working.Tls,
UsernameEnv = Trim(_working.UsernameEnv),
PasswordEnv = Trim(_working.PasswordEnv),
ExtraTopics = SplitTopics(_working.ExtraTopics),
}.ToJson();
await using var db = await DbFactory.CreateDbContextAsync();
if (_working.Id == 0)
{
db.IngestionEndpoints.Add(new IngestionEndpoint
{
Type = _working.Type, Name = _working.Name.Trim(), Config = config, IsEnabled = _working.IsEnabled,
});
}
else
{
var existing = await db.IngestionEndpoints.FirstAsync(e => e.Id == _working.Id);
existing.Type = _working.Type;
existing.Name = _working.Name.Trim();
existing.Config = config;
existing.IsEnabled = _working.IsEnabled;
}
await db.SaveChangesAsync();
_editOpen = false;
Snackbar.Add("Saved.", Severity.Success);
await LoadAsync();
}
private async Task DeleteAsync(IngestionEndpoint endpoint)
{
await using var db = await DbFactory.CreateDbContextAsync();
var sourceCount = await db.MeterSources.CountAsync(s => s.EndpointId == endpoint.Id);
var note = sourceCount > 0 ? $" {sourceCount} source(s) reference it and will be unlinked." : "";
if (!await Confirm.DeleteAsync(DialogService, "Delete connector", $"Delete '{endpoint.Name}'?{note}"))
{
return;
}
await db.IngestionEndpoints.Where(e => e.Id == endpoint.Id).ExecuteDeleteAsync();
Snackbar.Add("Deleted.", Severity.Success);
await LoadAsync();
}
private static string? Trim(string? value) => string.IsNullOrWhiteSpace(value) ? null : value.Trim();
private static IReadOnlyList<string> SplitTopics(string? csv) =>
string.IsNullOrWhiteSpace(csv) ? [] : [.. csv.Split(',', StringSplitOptions.RemoveEmptyEntries | StringSplitOptions.TrimEntries)];
private sealed class EditModel
{
public int Id { get; set; }
public EndpointType Type { get; set; } = EndpointType.HomeAssistant;
public string Name { get; set; } = "";
public bool IsEnabled { get; set; } = true;
// Home Assistant
public string? BaseUrl { get; set; }
public string? TokenEnv { get; set; }
public bool UseWebSocket { get; set; }
public string? TestEntityId { get; set; }
// MQTT broker
public string? Host { get; set; } = "localhost";
public int Port { get; set; } = 1883;
public bool Tls { get; set; }
public string? UsernameEnv { get; set; }
public string? PasswordEnv { get; set; }
public string? ExtraTopics { get; set; }
}
}
@@ -1,11 +1,18 @@
@page "/admin/energy-types"
@rendermode InteractiveServer
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject ISnackbar Snackbar
@inject IDialogService DialogService
@using Microsoft.EntityFrameworkCore
@using MudBlazor
<PageTitle>MeterVault — Energy types</PageTitle>
<MudText Typo="Typo.h4" Class="mb-4">Energy types</MudText>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Energy types</MudText>
<MudButton Variant="Variant.Filled" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Add" OnClick="@(() => OpenEdit(null))">
Add energy type
</MudButton>
</div>
@if (_types is null)
{
@@ -19,22 +26,159 @@ else
<MudTh>Display name</MudTh>
<MudTh>Base unit</MudTh>
<MudTh>Default mode</MudTh>
<MudTh Style="text-align:right">Actions</MudTh>
</HeaderContent>
<RowTemplate>
<MudTd DataLabel="Key">@context.Key</MudTd>
<MudTd DataLabel="Display name">@context.DisplayName</MudTd>
<MudTd DataLabel="Display name">
@if (!string.IsNullOrWhiteSpace(context.ColorHex))
{
<span style="display:inline-block;width:.8em;height:.8em;border-radius:2px;margin-right:.4em;background:@context.ColorHex"></span>
}
@context.DisplayName
</MudTd>
<MudTd DataLabel="Base unit">@context.BaseUnit</MudTd>
<MudTd DataLabel="Default mode">@context.DefaultMode</MudTd>
<MudTd DataLabel="Actions" Style="text-align:right">
<MudIconButton Icon="@Icons.Material.Filled.Edit" Size="Size.Small" OnClick="@(() => OpenEdit(context))" />
<MudIconButton Icon="@Icons.Material.Filled.Delete" Size="Size.Small" Color="Color.Error" OnClick="@(() => DeleteAsync(context))" />
</MudTd>
</RowTemplate>
</MudTable>
}
<MudDialog @bind-Visible="_editOpen" Options="_dialogOptions">
<TitleContent>
<MudText Typo="Typo.h6">@(_working.Id == 0 ? "New energy type" : $"Edit {_working.DisplayName}")</MudText>
</TitleContent>
<DialogContent>
<MudTextField @bind-Value="_working.Key" Label="Key (stable machine key, e.g. electricity)" Required="true" Class="mb-2" />
<MudTextField @bind-Value="_working.DisplayName" Label="Display name" Required="true" Class="mb-2" />
<MudTextField @bind-Value="_working.BaseUnit" Label="Base unit (kWh, m3, L, h)" Required="true" Class="mb-2" />
<MudSelect T="MeterMode" @bind-Value="_working.Mode" Label="Default mode" Class="mb-2">
@foreach (var mode in Enum.GetValues<MeterMode>())
{
<MudSelectItem T="MeterMode" Value="mode">@mode</MudSelectItem>
}
</MudSelect>
<MudTextField @bind-Value="_working.Icon" Label="Icon (optional)" Class="mb-2" />
<MudTextField @bind-Value="_working.ColorHex" Label="Color hex (optional, e.g. #4caf50)" />
</DialogContent>
<DialogActions>
<MudButton OnClick="@(() => _editOpen = false)">Cancel</MudButton>
<MudButton Color="Color.Primary" Variant="Variant.Filled" OnClick="SaveAsync">Save</MudButton>
</DialogActions>
</MudDialog>
@code {
private List<EnergyType>? _types;
private bool _editOpen;
private EditModel _working = new();
private readonly DialogOptions _dialogOptions = new() { MaxWidth = MaxWidth.Small, FullWidth = true };
protected override async Task OnInitializedAsync()
protected override Task OnInitializedAsync() => LoadAsync();
private async Task LoadAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_types = await db.EnergyTypes.AsNoTracking().OrderBy(t => t.Id).ToListAsync();
}
private void OpenEdit(EnergyType? type)
{
_working = type is null
? new EditModel()
: new EditModel
{
Id = type.Id,
Key = type.Key,
DisplayName = type.DisplayName,
BaseUnit = type.BaseUnit,
Mode = type.DefaultMode,
Icon = type.Icon,
ColorHex = type.ColorHex,
};
_editOpen = true;
}
private async Task SaveAsync()
{
if (string.IsNullOrWhiteSpace(_working.Key) || string.IsNullOrWhiteSpace(_working.DisplayName) || string.IsNullOrWhiteSpace(_working.BaseUnit))
{
Snackbar.Add("Key, display name and base unit are required.", Severity.Warning);
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
if (await db.EnergyTypes.AnyAsync(t => t.Key == _working.Key && t.Id != _working.Id))
{
Snackbar.Add($"Key '{_working.Key}' is already in use.", Severity.Error);
return;
}
if (_working.Id == 0)
{
db.EnergyTypes.Add(new EnergyType
{
Key = _working.Key.Trim(),
DisplayName = _working.DisplayName.Trim(),
BaseUnit = _working.BaseUnit.Trim(),
DefaultMode = _working.Mode,
Icon = string.IsNullOrWhiteSpace(_working.Icon) ? null : _working.Icon,
ColorHex = string.IsNullOrWhiteSpace(_working.ColorHex) ? null : _working.ColorHex,
});
}
else
{
var existing = await db.EnergyTypes.FirstAsync(t => t.Id == _working.Id);
existing.Key = _working.Key.Trim();
existing.DisplayName = _working.DisplayName.Trim();
existing.BaseUnit = _working.BaseUnit.Trim();
existing.DefaultMode = _working.Mode;
existing.Icon = string.IsNullOrWhiteSpace(_working.Icon) ? null : _working.Icon;
existing.ColorHex = string.IsNullOrWhiteSpace(_working.ColorHex) ? null : _working.ColorHex;
}
await db.SaveChangesAsync();
_editOpen = false;
Snackbar.Add("Saved.", Severity.Success);
await LoadAsync();
}
private async Task DeleteAsync(EnergyType type)
{
await using var db = await DbFactory.CreateDbContextAsync();
var meterCount = await db.Meters.CountAsync(m => m.EnergyTypeId == type.Id);
if (meterCount > 0)
{
Snackbar.Add($"Cannot delete '{type.DisplayName}': {meterCount} meter(s) still use it.", Severity.Error);
return;
}
if (!await Confirm.DeleteAsync(DialogService, "Delete energy type", $"Delete '{type.DisplayName}'? This cannot be undone."))
{
return;
}
var target = await db.EnergyTypes.FirstOrDefaultAsync(t => t.Id == type.Id);
if (target is not null)
{
db.EnergyTypes.Remove(target);
await db.SaveChangesAsync();
Snackbar.Add("Deleted.", Severity.Success);
}
await LoadAsync();
}
private sealed class EditModel
{
public short Id { get; set; }
public string Key { get; set; } = "";
public string DisplayName { get; set; } = "";
public string BaseUnit { get; set; } = "";
public MeterMode Mode { get; set; } = MeterMode.CumulativeCounter;
public string? Icon { get; set; }
public string? ColorHex { get; set; }
}
}
@@ -0,0 +1,72 @@
@page "/admin/settings"
@inject Microsoft.Extensions.Options.IOptions<MeterVault.Infrastructure.Options.MeterVaultOptions> Options
@using MudBlazor
<PageTitle>MeterVault — Settings</PageTitle>
<MudText Typo="Typo.h4" Class="mb-2">Settings</MudText>
<MudAlert Severity="Severity.Info" Class="mb-4" Dense="true">
These are the <b>effective</b> settings the running instance is using. They are configured via environment
variables (<code>MeterVault__Key</code> / <code>Section__Key</code>) or Docker/compose, not stored in the
database — so config stays reproducible and secrets never land in the DB. Change them in your compose/env and restart.
</MudAlert>
<MudGrid>
<MudItem xs="12" md="6">
<MudPaper Class="pa-4" Elevation="2" Style="height:100%">
<MudText Typo="Typo.h6" Class="mb-2">Locale &amp; time</MudText>
<MudSimpleTable Dense="true">
<tbody>
<tr><td>Timezone</td><td style="text-align:right"><code>@_o.TimeZone</code></td></tr>
<tr><td>Locale</td><td style="text-align:right"><code>@_o.Locale</code></td></tr>
<tr><td>Currency</td><td style="text-align:right"><code>@_o.Currency</code></td></tr>
<tr><td>Raw-reading retention</td><td style="text-align:right">@_o.RawRetentionDays days</td></tr>
</tbody>
</MudSimpleTable>
<MudText Typo="Typo.caption" Color="Color.Secondary" Class="mt-2">
Env keys: <code>MeterVault__TimeZone</code>, <code>MeterVault__Locale</code>,
<code>MeterVault__Currency</code>, <code>MeterVault__RawRetentionDays</code>.
</MudText>
</MudPaper>
</MudItem>
<MudItem xs="12" md="6">
<MudPaper Class="pa-4" Elevation="2" Style="height:100%">
<MudText Typo="Typo.h6" Class="mb-2">Access &amp; ingestion</MudText>
<MudSimpleTable Dense="true">
<tbody>
<tr>
<td>REST API</td>
<td style="text-align:right">
@if (_o.ApiKeys.Count > 0)
{
<MudChip T="string" Size="Size.Small" Color="Color.Success">@_o.ApiKeys.Count key(s) configured</MudChip>
}
else if (_o.AllowAnonymousApi)
{
<MudChip T="string" Size="Size.Small" Color="Color.Warning">open (anonymous)</MudChip>
}
else
{
<MudChip T="string" Size="Size.Small" Color="Color.Default">closed (401)</MudChip>
}
</td>
</tr>
<tr><td>Reverse-proxy trust</td><td style="text-align:right">@(_o.ReverseProxyTrust ? "on" : "off")</td></tr>
<tr><td>Live ingestion workers</td><td style="text-align:right">@(_o.EnableLiveIngestion ? "on" : "off")</td></tr>
<tr><td>Seed reference data on start</td><td style="text-align:right">@(_o.SeedReferenceData ? "on" : "off")</td></tr>
</tbody>
</MudSimpleTable>
<MudText Typo="Typo.caption" Color="Color.Secondary" Class="mt-2">
Set API keys with <code>MeterVault__ApiKeys__0</code>. Keys themselves are never shown here.
API docs at <MudLink Href="/swagger" Target="_blank">/swagger</MudLink>.
</MudText>
</MudPaper>
</MudItem>
</MudGrid>
@code {
private MeterVault.Infrastructure.Options.MeterVaultOptions _o = new();
protected override void OnInitialized() => _o = Options.Value;
}
+191 -11
View File
@@ -1,20 +1,23 @@
@page "/admin/tariffs"
@rendermode InteractiveServer
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject ISnackbar Snackbar
@inject IDialogService DialogService
@using Microsoft.EntityFrameworkCore
@using MudBlazor
<PageTitle>MeterVault — Tariffs</PageTitle>
<MudText Typo="Typo.h4" Class="mb-4">Tariffs</MudText>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Tariffs</MudText>
<MudButton Variant="Variant.Filled" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Add" OnClick="@(() => OpenEdit(null))">
Add tariff
</MudButton>
</div>
@if (_tariffs is null)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
else if (_tariffs.Count == 0)
{
<MudAlert Severity="Severity.Info">No tariffs yet. Load the reference data from <MudLink Href="/import">Import</MudLink>.</MudAlert>
}
else
{
<MudTable Items="_tariffs" Dense="true" Hover="true" Elevation="2">
@@ -25,26 +28,203 @@ else
<MudTh>Unit</MudTh>
<MudTh>Valid from</MudTh>
<MudTh>Valid to</MudTh>
<MudTh Style="text-align:right">Actions</MudTh>
</HeaderContent>
<RowTemplate>
<MudTd DataLabel="Scope">@context.ScopeType @(context.ScopeId is { } id ? $"#{id}" : "")</MudTd>
<MudTd DataLabel="Scope">@ScopeLabel(context)</MudTd>
<MudTd DataLabel="Component">@context.Component</MudTd>
<MudTd DataLabel="Value">@Format.Number(context.Value, 4)</MudTd>
<MudTd DataLabel="Unit">@context.Unit</MudTd>
<MudTd DataLabel="Valid from">@context.ValidFrom.ToString("yyyy-MM-dd")</MudTd>
<MudTd DataLabel="Valid to">@(context.ValidTo?.ToString("yyyy-MM-dd") ?? "open")</MudTd>
<MudTd DataLabel="Actions" Style="text-align:right">
<MudIconButton Icon="@Icons.Material.Filled.Edit" Size="Size.Small" OnClick="@(() => OpenEdit(context))" />
<MudIconButton Icon="@Icons.Material.Filled.Delete" Size="Size.Small" Color="Color.Error" OnClick="@(() => DeleteAsync(context))" />
</MudTd>
</RowTemplate>
</MudTable>
@if (_tariffs.Count == 0)
{
<MudAlert Severity="Severity.Info" Class="mt-4">No tariffs yet. Add one, or load the reference data from <MudLink Href="/import">Import</MudLink>.</MudAlert>
}
}
<MudDialog @bind-Visible="_editOpen" Options="_dialogOptions">
<TitleContent>
<MudText Typo="Typo.h6">@(_working.Id == 0 ? "New tariff" : "Edit tariff")</MudText>
</TitleContent>
<DialogContent>
<MudSelect T="TariffScope" @bind-Value="_working.ScopeType" Label="Scope" Class="mb-2">
@foreach (var scope in Enum.GetValues<TariffScope>())
{
<MudSelectItem T="TariffScope" Value="scope">@scope</MudSelectItem>
}
</MudSelect>
@if (_working.ScopeType == TariffScope.EnergyType)
{
<MudSelect T="int?" @bind-Value="_working.ScopeId" Label="Energy type" Class="mb-2">
@foreach (var t in _energyTypes)
{
<MudSelectItem T="int?" Value="@((int?)t.Id)">@t.DisplayName</MudSelectItem>
}
</MudSelect>
}
else if (_working.ScopeType == TariffScope.Meter)
{
<MudSelect T="int?" @bind-Value="_working.ScopeId" Label="Meter" Class="mb-2">
@foreach (var m in _meters)
{
<MudSelectItem T="int?" Value="@((int?)m.Id)">@m.Name</MudSelectItem>
}
</MudSelect>
}
<MudSelect T="TariffComponent" @bind-Value="_working.Component" Label="Component" Class="mb-2">
@foreach (var component in Enum.GetValues<TariffComponent>())
{
<MudSelectItem T="TariffComponent" Value="component">@component</MudSelectItem>
}
</MudSelect>
<MudNumericField T="double" @bind-Value="_working.Value" Label="Value" Format="0.####" Class="mb-2" />
<MudTextField @bind-Value="_working.Unit" Label="Unit (e.g. EUR/kWh, EUR/m3, EUR/month)" Required="true" Class="mb-2" />
<MudTextField @bind-Value="_working.Currency" Label="Currency" Class="mb-2" />
<MudDatePicker @bind-Date="_working.ValidFrom" Label="Valid from" Class="mb-2" />
<MudDatePicker @bind-Date="_working.ValidTo" Label="Valid to (empty = open-ended)" Clearable="true" Class="mb-2" />
<MudTextField @bind-Value="_working.Notes" Label="Notes (optional)" />
</DialogContent>
<DialogActions>
<MudButton OnClick="@(() => _editOpen = false)">Cancel</MudButton>
<MudButton Color="Color.Primary" Variant="Variant.Filled" OnClick="SaveAsync">Save</MudButton>
</DialogActions>
</MudDialog>
@code {
private List<Tariff>? _tariffs;
private List<EnergyType> _energyTypes = [];
private List<Meter> _meters = [];
private bool _editOpen;
private EditModel _working = new();
private readonly DialogOptions _dialogOptions = new() { MaxWidth = MaxWidth.Small, FullWidth = true };
protected override async Task OnInitializedAsync()
protected override Task OnInitializedAsync() => LoadAsync();
private async Task LoadAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_tariffs = await db.Tariffs.AsNoTracking()
.OrderBy(t => t.Component).ThenBy(t => t.ValidFrom)
.ToListAsync();
_tariffs = await db.Tariffs.AsNoTracking().OrderBy(t => t.Component).ThenBy(t => t.ValidFrom).ToListAsync();
_energyTypes = await db.EnergyTypes.AsNoTracking().OrderBy(t => t.DisplayName).ToListAsync();
_meters = await db.Meters.AsNoTracking().OrderBy(m => m.Name).ToListAsync();
}
private string ScopeLabel(Tariff t) => t.ScopeType switch
{
TariffScope.Global => "Global",
TariffScope.EnergyType => $"Type: {_energyTypes.FirstOrDefault(x => x.Id == t.ScopeId)?.DisplayName ?? $"#{t.ScopeId}"}",
TariffScope.Meter => $"Meter: {_meters.FirstOrDefault(x => x.Id == t.ScopeId)?.Name ?? $"#{t.ScopeId}"}",
_ => t.ScopeType.ToString(),
};
private void OpenEdit(Tariff? tariff)
{
_working = tariff is null
? new EditModel { ValidFrom = DateTime.Today }
: new EditModel
{
Id = tariff.Id,
ScopeType = tariff.ScopeType,
ScopeId = tariff.ScopeId,
Component = tariff.Component,
Value = tariff.Value,
Unit = tariff.Unit,
Currency = tariff.Currency,
ValidFrom = tariff.ValidFrom.ToDateTime(TimeOnly.MinValue),
ValidTo = tariff.ValidTo?.ToDateTime(TimeOnly.MinValue),
Notes = tariff.Notes,
};
_editOpen = true;
}
private async Task SaveAsync()
{
if (string.IsNullOrWhiteSpace(_working.Unit) || _working.ValidFrom is null)
{
Snackbar.Add("Unit and valid-from are required.", Severity.Warning);
return;
}
if (_working.ScopeType != TariffScope.Global && _working.ScopeId is null)
{
Snackbar.Add("Select the energy type or meter this tariff applies to.", Severity.Warning);
return;
}
var scopeId = _working.ScopeType == TariffScope.Global ? null : _working.ScopeId;
await using var db = await DbFactory.CreateDbContextAsync();
if (_working.Id == 0)
{
db.Tariffs.Add(new Tariff
{
ScopeType = _working.ScopeType,
ScopeId = scopeId,
Component = _working.Component,
Value = _working.Value,
Unit = _working.Unit.Trim(),
Currency = string.IsNullOrWhiteSpace(_working.Currency) ? "EUR" : _working.Currency.Trim(),
ValidFrom = DateOnly.FromDateTime(_working.ValidFrom.Value),
ValidTo = _working.ValidTo is { } to ? DateOnly.FromDateTime(to) : null,
Notes = string.IsNullOrWhiteSpace(_working.Notes) ? null : _working.Notes,
});
}
else
{
var existing = await db.Tariffs.FirstAsync(t => t.Id == _working.Id);
existing.ScopeType = _working.ScopeType;
existing.ScopeId = scopeId;
existing.Component = _working.Component;
existing.Value = _working.Value;
existing.Unit = _working.Unit.Trim();
existing.Currency = string.IsNullOrWhiteSpace(_working.Currency) ? "EUR" : _working.Currency.Trim();
existing.ValidFrom = DateOnly.FromDateTime(_working.ValidFrom.Value);
existing.ValidTo = _working.ValidTo is { } to ? DateOnly.FromDateTime(to) : null;
existing.Notes = string.IsNullOrWhiteSpace(_working.Notes) ? null : _working.Notes;
}
await db.SaveChangesAsync();
_editOpen = false;
Snackbar.Add("Saved.", Severity.Success);
await LoadAsync();
}
private async Task DeleteAsync(Tariff tariff)
{
if (!await Confirm.DeleteAsync(DialogService, "Delete tariff", $"Delete this {tariff.Component} tariff ({Format.Number(tariff.Value, 4)} {tariff.Unit})?"))
{
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
var target = await db.Tariffs.FirstOrDefaultAsync(t => t.Id == tariff.Id);
if (target is not null)
{
db.Tariffs.Remove(target);
await db.SaveChangesAsync();
Snackbar.Add("Deleted.", Severity.Success);
}
await LoadAsync();
}
private sealed class EditModel
{
public int Id { get; set; }
public TariffScope ScopeType { get; set; } = TariffScope.EnergyType;
public int? ScopeId { get; set; }
public TariffComponent Component { get; set; } = TariffComponent.UnitPrice;
public double Value { get; set; }
public string Unit { get; set; } = "EUR/kWh";
public string Currency { get; set; } = "EUR";
public DateTime? ValidFrom { get; set; }
public DateTime? ValidTo { get; set; }
public string? Notes { get; set; }
}
}
+185
View File
@@ -0,0 +1,185 @@
@page "/consumables"
@inject ConsumableService ConsumablesSvc
@using MudBlazor
<PageTitle>MeterVault — Consumables</PageTitle>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Oil / consumables</MudText>
<MudSelect T="int" Value="_months" ValueChanged="OnRangeChanged" Label="Range" Dense="true" Style="max-width:200px">
<MudSelectItem T="int" Value="12">Last 12 months</MudSelectItem>
<MudSelectItem T="int" Value="24">Last 24 months</MudSelectItem>
<MudSelectItem T="int" Value="60">Last 5 years</MudSelectItem>
<MudSelectItem T="int" Value="1200">All time</MudSelectItem>
</MudSelect>
</div>
@if (_items is null)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
else if (_items.Count == 0)
{
<MudAlert Severity="Severity.Info">
No consumable meters found. Add a meter with mode <b>ConsumableBalance</b> and a tank, or load the reference
data from <MudLink Href="/import">Import</MudLink>.
</MudAlert>
}
else
{
@foreach (var item in _items)
{
<MudPaper Class="pa-4 mb-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-3">@item.Name</MudText>
<MudGrid>
<MudItem xs="12" md="4">
<MudText Typo="Typo.overline" Color="Color.Secondary">Tank level</MudText>
<MudText Typo="Typo.h5">
@(item.CurrentLevel is { } l ? $"{Format.Number(l, 0)} {item.Unit}" : "—")
</MudText>
<MudProgressLinear Color="@FillColor(item.FillFraction)" Value="@(item.FillFraction * 100)" Class="my-2" Size="Size.Large" />
<MudText Typo="Typo.caption" Color="Color.Secondary">
@Format.Number(item.FillFraction * 100, 0)% of @Format.Number(item.Capacity, 0) @item.Unit
@if (item.PhysicalLevel is { } cm && item.PhysicalUnit is "cm")
{
<text> · @Format.Number(cm, 0) cm</text>
}
@if (item.LevelAsOf is { } asOf)
{
<text> · as of @asOf.ToString("yyyy-MM-dd")</text>
}
</MudText>
</MudItem>
<MudItem xs="12" md="8">
<MudGrid>
<MudItem xs="6" sm="3">
<MudText Typo="Typo.overline" Color="Color.Secondary">Used (range)</MudText>
<MudText Typo="Typo.subtitle1">@Format.Number(item.ConsumptionInRange, 0) @item.Unit</MudText>
</MudItem>
<MudItem xs="6" sm="3">
<MudText Typo="Typo.overline" Color="Color.Secondary">Burner runtime</MudText>
<MudText Typo="Typo.subtitle1">@(item.BurnerHours is { } h ? $"{Format.Number(h, 0)} h" : "—")</MudText>
</MudItem>
<MudItem xs="6" sm="3">
<MudText Typo="Typo.overline" Color="Color.Secondary">Effective rate</MudText>
<MudText Typo="Typo.subtitle1">
@if (item.FixedRate is { } fr)
{
<text>@Format.Number(fr, 2) @item.Unit/h</text>
}
else if (item.EffectiveRate is { } er)
{
<text>@Format.Number(er, 2) @item.Unit/h</text>
}
else
{
<text>—</text>
}
</MudText>
<MudText Typo="Typo.caption" Color="Color.Secondary">@(item.RateMode)</MudText>
</MudItem>
<MudItem xs="6" sm="3">
<MudText Typo="Typo.overline" Color="Color.Secondary">Cost (range)</MudText>
<MudText Typo="Typo.subtitle1">@Format.Euro(item.CostInRange)</MudText>
</MudItem>
<MudItem xs="12" sm="6">
<MudText Typo="Typo.overline" Color="Color.Secondary">Forecast to empty</MudText>
<MudText Typo="Typo.subtitle1">
@(item.ForecastEmpty is { } fe ? fe.ToString("yyyy-MM-dd") : "—")
@if (item.AveragePerDay is { } apd)
{
<MudText Typo="Typo.caption" Color="Color.Secondary" Class="d-inline">
(@Format.Number(apd, 1) @item.Unit/day)
</MudText>
}
</MudText>
</MudItem>
</MudGrid>
</MudItem>
<MudItem xs="12" md="7">
<MudText Typo="Typo.subtitle2" Class="mb-2">Consumption by month</MudText>
<SeriesChart Series="@ChartFor(item)" Decimals="0" Height="260" />
</MudItem>
<MudItem xs="12" md="5">
<MudText Typo="Typo.subtitle2" Class="mb-2">Deliveries (@item.Deliveries.Count)</MudText>
@if (item.Deliveries.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No deliveries recorded.</MudText>
}
else
{
<div style="max-height:260px; overflow-y:auto">
<MudSimpleTable Dense="true" Hover="true">
<thead>
<tr><th>Date</th><th style="text-align:right">Amount</th></tr>
</thead>
<tbody>
@foreach (var delivery in item.Deliveries)
{
<tr>
<td>@delivery.Time.ToString("yyyy-MM-dd")</td>
<td style="text-align:right">@Format.Number(delivery.Amount, 0) @(delivery.Unit ?? item.Unit)</td>
</tr>
}
</tbody>
</MudSimpleTable>
</div>
}
</MudItem>
</MudGrid>
</MudPaper>
}
}
@code {
private int _months = 60;
private bool _loading;
private IReadOnlyList<ConsumableSummary>? _items;
protected override Task OnInitializedAsync() => LoadAsync();
private async Task OnRangeChanged(int months)
{
_months = months;
await LoadAsync();
}
private async Task LoadAsync()
{
if (_loading)
{
return;
}
_loading = true;
_items = null;
try
{
var asOf = DateOnly.FromDateTime(DateTime.UtcNow);
var from = asOf.AddMonths(-_months);
_items = await ConsumablesSvc.GetConsumablesAsync(new DateOnly(from.Year, from.Month, 1), asOf.AddMonths(1));
}
finally
{
_loading = false;
}
}
private static IReadOnlyList<SeriesChart.SeriesDef> ChartFor(ConsumableSummary item)
{
var points = item.Months
.Select(m => new SeriesChart.Point(m.Period.ToString("MMM yy", System.Globalization.CultureInfo.InvariantCulture), m.Consumption))
.ToList();
return [new SeriesChart.SeriesDef($"{item.Unit} used", ApexCharts.SeriesType.Bar, points)];
}
private static Color FillColor(double fraction) => fraction switch
{
< 0.15 => Color.Error,
< 0.30 => Color.Warning,
_ => Color.Success,
};
}
-1
View File
@@ -1,5 +1,4 @@
@page "/"
@rendermode InteractiveServer
@inject DashboardService Dash
<PageTitle>MeterVault — Overview</PageTitle>
+172
View File
@@ -0,0 +1,172 @@
@page "/energy/{Id:int}"
@inject FlowService Flow
@inject MeterVault.Infrastructure.Costing.CostService Costs
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@using Microsoft.EntityFrameworkCore
@using MudBlazor
<PageTitle>MeterVault — @(_graph?.EnergyType ?? "Energy")</PageTitle>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">@(_graph?.EnergyType ?? "Energy") flow</MudText>
<MudSelect T="int" Value="_months" ValueChanged="OnRangeChanged" Label="Range" Dense="true" Style="max-width:200px">
<MudSelectItem T="int" Value="12">Last 12 months</MudSelectItem>
<MudSelectItem T="int" Value="24">Last 24 months</MudSelectItem>
<MudSelectItem T="int" Value="60">Last 5 years</MudSelectItem>
<MudSelectItem T="int" Value="1200">All time</MudSelectItem>
</MudSelect>
</div>
@if (_graph is null)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
else if (!_graph.HasData)
{
<MudAlert Severity="Severity.Info">
No meters for this energy type yet. Add meters in <MudLink Href="/meters">Meters</MudLink>, or load the
reference data from <MudLink Href="/import">Import</MudLink>.
</MudAlert>
}
else
{
<MudGrid Class="mb-2">
<MudItem xs="12" sm="4">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Top-level throughput</MudText>
<MudText Typo="Typo.h5">@Format.Number(_graph.Total, 0) @_graph.Unit</MudText>
</MudPaper>
</MudItem>
<MudItem xs="12" sm="4">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Cost (range)</MudText>
<MudText Typo="Typo.h5">@Format.Euro(_cost)</MudText>
</MudPaper>
</MudItem>
<MudItem xs="12" sm="4">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Meters</MudText>
<MudText Typo="Typo.h5">@_meters.Count</MudText>
</MudPaper>
</MudItem>
</MudGrid>
<MudPaper Class="pa-4 mb-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-1">Flow</MudText>
@if (_graph.HasChain)
{
<MudText Typo="Typo.caption" Color="Color.Secondary" Class="mb-2">
Where the top-level flow goes. Arrow thickness ∝ amount; "Other" is the unmetered remainder.
</MudText>
<SankeyChart Nodes="_graph.Nodes" Links="_graph.Links" Unit="@_graph.Unit" />
}
else
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mb-3">
No meter chain configured yet. In <MudLink Href="/meters">Meters</MudLink> → edit a sub-meter and set its
<b>upstream meter(s)</b> to show where the main meter's flow divides (e.g. main → car, pool, other).
</MudAlert>
@if (_graph.Nodes.Count > 0)
{
<MudSimpleTable Dense="true" Hover="true">
<thead><tr><th>Meter</th><th style="text-align:right">Consumption</th></tr></thead>
<tbody>
@foreach (var node in _graph.Nodes.OrderByDescending(n => n.Value))
{
<tr>
<td>@node.Label</td>
<td style="text-align:right">@Format.Number(node.Value, 0) @_graph.Unit</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
}
</MudPaper>
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-2">Meters</MudText>
<MudSimpleTable Dense="true" Hover="true">
<thead><tr><th>Name</th><th>Mode</th><th>Upstream of</th><th style="text-align:right">Consumption</th></tr></thead>
<tbody>
@foreach (var meter in _meters)
{
<tr>
<td><MudLink Href="@($"/meters/{meter.Id}")">@meter.Name</MudLink></td>
<td>@meter.Mode</td>
<td>@UpstreamLabel(meter.Id)</td>
<td style="text-align:right">@Format.Number(NodeValue(meter.Id), 0) @_graph.Unit</td>
</tr>
}
</tbody>
</MudSimpleTable>
</MudPaper>
}
@code {
[Parameter]
public int Id { get; set; }
private int _months = 60;
private bool _loading;
private FlowGraph? _graph;
private double _cost;
private List<Meter> _meters = [];
private Dictionary<int, List<string>> _downstream = [];
protected override Task OnParametersSetAsync() => LoadAsync();
private async Task OnRangeChanged(int months)
{
_months = months;
await LoadAsync();
}
private async Task LoadAsync()
{
if (_loading)
{
return;
}
_loading = true;
_graph = null;
try
{
var asOf = DateOnly.FromDateTime(DateTime.UtcNow);
var from = new DateOnly(asOf.AddMonths(-_months).Year, asOf.AddMonths(-_months).Month, 1);
var to = asOf.AddMonths(1);
var typeId = (short)Id;
_graph = await Flow.GetFlowAsync(typeId, from, to);
await using var db = await DbFactory.CreateDbContextAsync();
_meters = await db.Meters.AsNoTracking().Where(m => m.EnergyTypeId == typeId).OrderBy(m => m.Name).ToListAsync();
var links = await db.MeterLinks.AsNoTracking()
.Where(l => _meters.Select(m => m.Id).Contains(l.FromMeterId))
.ToListAsync();
var names = _meters.ToDictionary(m => m.Id, m => m.Name);
_downstream = links
.GroupBy(l => l.FromMeterId)
.ToDictionary(g => g.Key, g => g.Select(l => names.GetValueOrDefault(l.ToMeterId, $"#{l.ToMeterId}")).ToList());
var fromUtc = new DateTimeOffset(from.Year, from.Month, from.Day, 0, 0, 0, TimeSpan.Zero);
var toUtc = new DateTimeOffset(to.Year, to.Month, to.Day, 0, 0, 0, TimeSpan.Zero);
double cost = 0;
foreach (var meter in _meters)
{
cost += (await Costs.GetMeterCostsAsync(meter.Id, fromUtc, toUtc, CostBucket.Month)).Sum(c => c.Cost);
}
_cost = cost;
}
finally
{
_loading = false;
}
}
private double NodeValue(int meterId) => _graph?.Nodes.FirstOrDefault(n => n.MeterId == meterId)?.Value ?? 0;
private string UpstreamLabel(int meterId) =>
_downstream.TryGetValue(meterId, out var children) && children.Count > 0 ? string.Join(", ", children) : "—";
}
+100 -7
View File
@@ -1,9 +1,13 @@
@page "/import"
@rendermode InteractiveServer
@inject MeterVault.Infrastructure.Import.ReferenceDataImporter ReferenceImporter
@inject MeterVault.Infrastructure.Import.CsvImporter CsvImporter
@inject MeterVault.Infrastructure.Import.ImportService ImportService
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject IDialogService Dialogs
@inject ISnackbar Snackbar
@using MeterVault.Infrastructure.Import
@using MeterVault.Infrastructure.Persistence
@using Microsoft.EntityFrameworkCore
<PageTitle>MeterVault — Import</PageTitle>
@@ -30,18 +34,23 @@
<MudItem xs="12" md="6">
<MudPaper Class="pa-4" Elevation="2" Style="height:100%">
<MudText Typo="Typo.h6">Dry-run a CSV</MudText>
<MudText Typo="Typo.body2" Color="Color.Secondary" Class="mb-3">
Upload a sheet and preview what would be staged (no changes are made).
<div class="d-flex align-center justify-space-between">
<MudText Typo="Typo.h6">Your own CSV</MudText>
<MudButton Variant="Variant.Filled" Color="Color.Secondary" Href="/import/wizard"
StartIcon="@Icons.Material.Filled.AutoFixHigh">Mapping wizard</MudButton>
</div>
<MudText Typo="Typo.body2" Color="Color.Secondary" Class="mb-3 mt-1">
Map an arbitrary sheet's columns to your meters/categories, preview and commit it as a
revertible import. Or dry-run against one of the built-in reference profiles below.
</MudText>
<MudSelect T="string" @bind-Value="_profileName" Label="Sheet type" Dense="true" Class="mb-2">
<MudSelect T="string" @bind-Value="_profileName" Label="Reference profile" Dense="true" Class="mb-2">
<MudSelectItem T="string" Value="@("Strom")">Electricity (Strom)</MudSelectItem>
<MudSelectItem T="string" Value="@("Wasser")">Water (Wasser)</MudSelectItem>
<MudSelectItem T="string" Value="@("Heizöl")">Heating oil (Heizöl)</MudSelectItem>
<MudSelectItem T="string" Value="@("Kosten")">Costs (Kosten)</MudSelectItem>
</MudSelect>
<MudButton HtmlTag="label" Variant="Variant.Outlined" StartIcon="@Icons.Material.Filled.UploadFile" for="csvUpload">
Choose CSV
Dry-run a reference sheet
</MudButton>
<InputFile id="csvUpload" OnChange="PreviewAsync" accept=".csv" style="display:none" />
</MudPaper>
@@ -72,6 +81,49 @@
</MudPaper>
</MudItem>
}
<MudItem xs="12">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-2">Recent imports</MudText>
@if (_batches.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No imports yet.</MudText>
}
else
{
<MudSimpleTable Dense="true" Hover="true">
<thead><tr><th>#</th><th>Source</th><th style="text-align:right">Rows</th><th>Imported</th><th>Status</th><th></th></tr></thead>
<tbody>
@foreach (var batch in _batches)
{
<tr>
<td>@batch.Id</td>
<td>@(batch.SourceName ?? "—")</td>
<td style="text-align:right">@batch.RowCount</td>
<td>@batch.CreatedAt.LocalDateTime.ToString("yyyy-MM-dd HH:mm")</td>
<td>
@if (batch.RevertedAt is not null)
{
<MudChip T="string" Size="Size.Small" Color="Color.Default">reverted</MudChip>
}
else
{
<MudChip T="string" Size="Size.Small" Color="Color.Success">active</MudChip>
}
</td>
<td style="text-align:right">
<MudButton Size="Size.Small" Variant="Variant.Outlined" Color="Color.Error"
StartIcon="@Icons.Material.Filled.Undo"
Disabled="@(batch.RevertedAt is not null || _reverting == batch.Id)"
OnClick="@(() => RevertAsync(batch))">Revert</MudButton>
</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
</MudPaper>
</MudItem>
</MudGrid>
@code {
@@ -79,9 +131,49 @@
private bool _referenceLoaded;
private string _profileName = "Strom";
private StagedImport? _preview;
private List<ImportBatch> _batches = [];
private int? _reverting;
protected override async Task OnInitializedAsync() =>
protected override async Task OnInitializedAsync()
{
_referenceLoaded = await ReferenceImporter.IsLoadedAsync();
await LoadBatchesAsync();
}
private async Task LoadBatchesAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_batches = await db.ImportBatches.AsNoTracking()
.OrderByDescending(b => b.Id)
.Take(25)
.ToListAsync();
}
private async Task RevertAsync(ImportBatch batch)
{
if (!await Confirm.ConfirmAsync(Dialogs, "Revert import?",
$"Delete all {batch.RowCount} rows from import #{batch.Id} ({batch.SourceName ?? "unnamed"}) and recompute the affected meters?",
"Revert"))
{
return;
}
_reverting = batch.Id;
try
{
await ImportService.RevertAsync(batch.Id);
Snackbar.Add($"Import #{batch.Id} reverted.", Severity.Success);
await LoadBatchesAsync();
}
catch (Exception ex)
{
Snackbar.Add($"Revert failed: {ex.Message}", Severity.Error);
}
finally
{
_reverting = null;
}
}
private async Task LoadReferenceAsync()
{
@@ -92,6 +184,7 @@
await ReferenceImporter.LoadAsync(dir);
_referenceLoaded = true;
Snackbar.Add("Reference data loaded.", Severity.Success);
await LoadBatchesAsync();
}
catch (Exception ex)
{
+416
View File
@@ -0,0 +1,416 @@
@page "/import/wizard"
@inject MeterVault.Infrastructure.Import.CsvImporter CsvImporter
@inject MeterVault.Infrastructure.Import.ImportService ImportService
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject ISnackbar Snackbar
@inject NavigationManager Nav
@using System.Text.Json
@using MeterVault.Core.Domain
@using MeterVault.Infrastructure.Import
@using MeterVault.Infrastructure.Persistence
@using Microsoft.EntityFrameworkCore
<PageTitle>MeterVault — Import wizard</PageTitle>
<div class="d-flex align-center mb-4" style="gap:1rem">
<MudIconButton Icon="@Icons.Material.Filled.ArrowBack" Href="/import" aria-label="Back to Import" />
<MudText Typo="Typo.h4">Import wizard</MudText>
</div>
<MudText Typo="Typo.body2" Color="Color.Secondary" Class="mb-4">
Upload any CSV, map its columns to your meters and categories, preview what would be staged, then
commit it as a revertible import. Values may use the German dialect (decimal comma, unit suffixes,
<code>Monat JJJJ</code> or <code>TT.MM.JJJJ</code> dates) — the same parser the reference sheets use.
</MudText>
<MudPaper Class="pa-4 mb-4" Elevation="2">
<div class="d-flex align-center" style="gap:1rem; flex-wrap:wrap">
<MudButton HtmlTag="label" Variant="Variant.Filled" Color="Color.Primary"
StartIcon="@Icons.Material.Filled.UploadFile" for="wizardUpload">
Choose CSV
</MudButton>
<InputFile id="wizardUpload" OnChange="OnFileAsync" accept=".csv" style="display:none" />
@if (_fileName is not null)
{
<MudText><b>@_fileName</b> — @_rows.Count rows, @_colCount columns</MudText>
}
</div>
</MudPaper>
@if (_colCount > 0)
{
<MudPaper Class="pa-4 mb-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-2">1. Parsing options</MudText>
<MudGrid>
<MudItem xs="12" sm="6" md="3">
<MudSelect T="int" @bind-Value="_dateColumn" Label="Date column" Dense="true">
@foreach (var i in Enumerable.Range(0, _colCount))
{
<MudSelectItem T="int" Value="i">@ColLabel(i)</MudSelectItem>
}
</MudSelect>
</MudItem>
<MudItem xs="12" sm="6" md="3">
<MudSelect T="DateKind" @bind-Value="_dateKind" Label="Date format" Dense="true">
<MudSelectItem T="DateKind" Value="DateKind.Auto">Auto-detect</MudSelectItem>
<MudSelectItem T="DateKind" Value="DateKind.MonthName">Month name (Januar 2024)</MudSelectItem>
<MudSelectItem T="DateKind" Value="DateKind.DayDotMonthYear">Day (31.12.2024)</MudSelectItem>
</MudSelect>
</MudItem>
<MudItem xs="6" sm="6" md="2">
<MudNumericField T="int" @bind-Value="_headerRow" Label="Header row" Min="0" Margin="Margin.Dense" />
</MudItem>
<MudItem xs="6" sm="6" md="2">
<MudNumericField T="int" @bind-Value="_firstDataRow" Label="First data row" Min="0" Margin="Margin.Dense" />
</MudItem>
<MudItem xs="12" md="2" Class="d-flex flex-column">
<MudSwitch T="bool" @bind-Value="_skipAllZero" Label="Skip zero rows" Color="Color.Primary" />
<MudSwitch T="bool" @bind-Value="_detectSwaps" Label="Detect swaps" Color="Color.Primary" />
</MudItem>
</MudGrid>
</MudPaper>
<MudPaper Class="pa-4 mb-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-2">2. Column preview</MudText>
<div style="overflow-x:auto">
<MudSimpleTable Dense="true" Bordered="true" Style="min-width:100%">
<thead>
<tr>
@foreach (var i in Enumerable.Range(0, _colCount))
{
<th style="@(i == _dateColumn ? "background:var(--mud-palette-primary-hover)" : "")">
Col @i@(i == _dateColumn ? " 📅" : "")
</th>
}
</tr>
</thead>
<tbody>
@foreach (var r in Enumerable.Range(0, Math.Min(_rows.Count, _firstDataRow + 8)))
{
<tr style="@(r < _firstDataRow ? "opacity:0.5" : "")">
@foreach (var i in Enumerable.Range(0, _colCount))
{
<td style="font-size:0.78rem; white-space:nowrap">@Cell(r, i)</td>
}
</tr>
}
</tbody>
</MudSimpleTable>
</div>
<MudText Typo="Typo.caption" Color="Color.Secondary">
Faded rows are before the first data row. The 📅 column supplies the date.
</MudText>
</MudPaper>
<MudPaper Class="pa-4 mb-4" Elevation="2">
<MudText Typo="Typo.h6" Class="mb-2">3. Map columns</MudText>
<div style="overflow-x:auto">
<MudSimpleTable Dense="true" Style="min-width:100%">
<thead>
<tr><th>Column</th><th>Sample</th><th style="min-width:160px">Role</th><th style="min-width:220px">Target</th><th style="min-width:120px">Unit</th></tr>
</thead>
<tbody>
@foreach (var i in Enumerable.Range(0, _colCount))
{
<tr>
<td>
<b>Col @i</b>
@if (!string.IsNullOrWhiteSpace(Header(i)))
{
<br /><span style="font-size:0.72rem; opacity:0.7">@Header(i)</span>
}
</td>
<td style="font-size:0.8rem; max-width:140px; overflow:hidden; text-overflow:ellipsis">@Sample(i)</td>
<td>
<MudSelect T="MappingRole" @bind-Value="_columns[i].Role" Dense="true" Margin="Margin.Dense">
@foreach (var role in Enum.GetValues<MappingRole>())
{
<MudSelectItem T="MappingRole" Value="role">@role</MudSelectItem>
}
</MudSelect>
</td>
<td>
@if (_columns[i].Role is MappingRole.Reading or MappingRole.Delivery or MappingRole.TankLevel)
{
<MudSelect T="int?" @bind-Value="_columns[i].MeterId" Dense="true" Margin="Margin.Dense"
Placeholder="Select meter" Clearable="true">
@foreach (var m in _meters)
{
<MudSelectItem T="int?" Value="m.Id">@m.Name (@m.Unit)</MudSelectItem>
}
</MudSelect>
}
else if (_columns[i].Role == MappingRole.ManualCost)
{
<MudSelect T="int?" @bind-Value="_columns[i].CategoryId" Dense="true" Margin="Margin.Dense"
Placeholder="Select category" Clearable="true">
@foreach (var c in _categories)
{
<MudSelectItem T="int?" Value="c.Id">@c.Name</MudSelectItem>
}
</MudSelect>
}
</td>
<td>
@if (_columns[i].Role is MappingRole.Reading or MappingRole.Delivery or MappingRole.TankLevel)
{
<MudTextField @bind-Value="_columns[i].Unit" Placeholder="e.g. kWh" Margin="Margin.Dense" />
}
</td>
</tr>
}
</tbody>
</MudSimpleTable>
</div>
</MudPaper>
@if (_validationErrors.Count > 0)
{
<MudAlert Severity="Severity.Warning" Class="mb-4">
@foreach (var err in _validationErrors)
{
<div>@err</div>
}
</MudAlert>
}
<MudPaper Class="pa-4 mb-4" Elevation="2">
<div class="d-flex align-center mb-2" style="gap:1rem; flex-wrap:wrap">
<MudText Typo="Typo.h6">4. Preview &amp; commit</MudText>
<MudButton Variant="Variant.Outlined" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Visibility"
OnClick="Preview">Dry-run preview</MudButton>
<MudButton Variant="Variant.Filled" Color="Color.Success" StartIcon="@Icons.Material.Filled.Save"
OnClick="CommitAsync" Disabled="_staged is null || _staged.TotalRows == 0 || _committing">
Commit import
</MudButton>
@if (_committing)
{
<MudProgressCircular Size="Size.Small" Indeterminate="true" Color="Color.Primary" />
}
</div>
@if (_staged is not null)
{
<div class="d-flex mt-2" style="gap:2rem; flex-wrap:wrap">
<MudText>Readings: <b>@_staged.Readings.Count</b></MudText>
<MudText>Events: <b>@_staged.Events.Count</b></MudText>
<MudText>Manual costs: <b>@_staged.ManualCosts.Count</b></MudText>
<MudText>Skipped rows: <b>@_staged.SkippedRows</b></MudText>
</div>
@if (_staged.TotalRows == 0)
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mt-2">
Nothing staged. Check the first-data-row, date column and column mappings above.
</MudAlert>
}
@if (_staged.Warnings.Count > 0)
{
<MudExpansionPanels Class="mt-3">
<MudExpansionPanel Text="@($"{_staged.Warnings.Count} warnings")">
@foreach (var warning in _staged.Warnings.Take(100))
{
<MudText Typo="Typo.body2">@warning</MudText>
}
</MudExpansionPanel>
</MudExpansionPanels>
}
}
</MudPaper>
}
@code {
private sealed class ColumnState
{
public MappingRole Role { get; set; } = MappingRole.Ignore;
public int? MeterId { get; set; }
public int? CategoryId { get; set; }
public string? Unit { get; set; }
}
private string? _fileName;
private string? _csvText;
private List<string[]> _rows = [];
private int _colCount;
private ColumnState[] _columns = [];
private int _dateColumn;
private DateKind _dateKind = DateKind.Auto;
private int _headerRow;
private int _firstDataRow = 1;
private bool _skipAllZero = true;
private bool _detectSwaps;
private List<Meter> _meters = [];
private List<CostCategory> _categories = [];
private StagedImport? _staged;
private List<string> _validationErrors = [];
private bool _committing;
private async Task OnFileAsync(InputFileChangeEventArgs args)
{
var file = args.File;
if (file is null)
{
return;
}
_fileName = file.Name;
using (var reader = new StreamReader(file.OpenReadStream(maxAllowedSize: 10 * 1024 * 1024)))
{
_csvText = await reader.ReadToEndAsync();
}
_rows = CsvImporter.ReadRawRows(new StringReader(_csvText)).ToList();
_colCount = _rows.Count == 0 ? 0 : _rows.Max(r => r.Length);
_columns = Enumerable.Range(0, _colCount).Select(_ => new ColumnState()).ToArray();
_dateColumn = 0;
_staged = null;
_validationErrors = [];
await using var db = await DbFactory.CreateDbContextAsync();
_meters = await db.Meters.AsNoTracking().OrderBy(m => m.Name).ToListAsync();
_categories = await db.CostCategories.AsNoTracking().OrderBy(c => c.Sort).ThenBy(c => c.Name).ToListAsync();
}
private void Preview()
{
_validationErrors = Validate();
if (_validationErrors.Count > 0)
{
_staged = null;
return;
}
using var reader = new StringReader(_csvText ?? string.Empty);
_staged = CsvImporter.Stage(BuildProfile(), reader);
}
private async Task CommitAsync()
{
if (_staged is null || _staged.TotalRows == 0)
{
return;
}
// The mapping can change after a dry run — re-check before writing.
_validationErrors = Validate();
if (_validationErrors.Count > 0)
{
_staged = null;
return;
}
_committing = true;
try
{
var mappingJson = JsonSerializer.Serialize(new
{
dateColumn = _dateColumn,
dateKind = _dateKind.ToString(),
firstDataRow = _firstDataRow,
columns = _columns
.Select((c, i) => new { index = i, role = c.Role.ToString(), c.MeterId, c.CategoryId, c.Unit })
.Where(c => c.role != nameof(MappingRole.Ignore)),
});
var batchId = await ImportService.CommitAsync(_staged, _fileName, mappingJson);
Snackbar.Add($"Imported batch #{batchId}: {_staged.TotalRows} rows staged. Consumption recomputed.", Severity.Success);
Nav.NavigateTo("/import");
}
catch (Exception ex)
{
Snackbar.Add($"Commit failed: {ex.Message}", Severity.Error);
}
finally
{
_committing = false;
}
}
private List<string> Validate()
{
var errors = new List<string>();
if (_columns.Count(c => c.Role != MappingRole.Ignore) == 0)
{
errors.Add("Map at least one column to a role other than Ignore.");
}
for (var i = 0; i < _columns.Length; i++)
{
var c = _columns[i];
if (c.Role is MappingRole.Reading or MappingRole.Delivery or MappingRole.TankLevel && c.MeterId is null)
{
errors.Add($"Col {i} ({c.Role}) needs a target meter.");
}
if (c.Role == MappingRole.ManualCost && c.CategoryId is null)
{
errors.Add($"Col {i} (ManualCost) needs a target category.");
}
}
// Two Reading columns on one meter would stage two readings per row at the same timestamp,
// and (meter_id, time) is the reading key — reject it here rather than at the DB.
var duplicateTargets = _columns
.Select((c, i) => (Column: c, Index: i))
.Where(x => x.Column.Role == MappingRole.Reading && x.Column.MeterId is not null)
.GroupBy(x => x.Column.MeterId!.Value)
.Where(g => g.Count() > 1);
foreach (var group in duplicateTargets)
{
var meterName = _meters.FirstOrDefault(m => m.Id == group.Key)?.Name ?? $"meter {group.Key}";
var cols = string.Join(", ", group.Select(x => $"Col {x.Index}"));
errors.Add($"{cols} all read into '{meterName}'. Each Reading column needs its own meter.");
}
return errors;
}
private MappingProfile BuildProfile() => new()
{
Name = _fileName ?? "Custom CSV",
HeaderRowIndex = _headerRow,
FirstDataRowIndex = _firstDataRow,
DateColumn = _dateColumn,
DateKind = _dateKind,
SkipAllZeroRows = _skipAllZero,
DetectCumulativeSwaps = _detectSwaps,
Columns = Enumerable.Range(0, _colCount)
.Where(i => _columns[i].Role != MappingRole.Ignore)
.Select(i => new ColumnMapping
{
Index = i,
Role = _columns[i].Role,
MeterId = _columns[i].MeterId,
CategoryId = _columns[i].CategoryId,
Unit = string.IsNullOrWhiteSpace(_columns[i].Unit) ? null : _columns[i].Unit,
})
.ToList(),
};
private string Cell(int row, int col) =>
row >= 0 && row < _rows.Count && col < _rows[row].Length ? _rows[row][col] : string.Empty;
private string Header(int col) => Cell(_headerRow, col);
private string Sample(int col)
{
for (var r = _firstDataRow; r < _rows.Count && r < _firstDataRow + 20; r++)
{
var value = Cell(r, col);
if (!string.IsNullOrWhiteSpace(value))
{
return value;
}
}
return string.Empty;
}
private string ColLabel(int col)
{
var header = Header(col);
return string.IsNullOrWhiteSpace(header) ? $"Col {col}" : $"Col {col}: {header}";
}
}
+417
View File
@@ -0,0 +1,417 @@
@page "/meters/{Id:int}"
@inject MeterDetailService Details
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject ISnackbar Snackbar
@inject IDialogService DialogService
@inject NavigationManager Nav
@using Microsoft.EntityFrameworkCore
@using MeterVault.Infrastructure.Ingestion
@using MudBlazor
<PageTitle>MeterVault — Meter</PageTitle>
@if (_detail is null)
{
@if (_notFound)
{
<MudAlert Severity="Severity.Warning">Meter #@Id not found. <MudLink Href="/meters">Back to meters</MudLink></MudAlert>
}
else
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
}
else
{
<div class="d-flex align-center mb-4" style="gap:.75rem">
<MudIconButton Icon="@Icons.Material.Filled.ArrowBack" Href="/meters" Size="Size.Small" />
<MudText Typo="Typo.h4">@_detail.Name</MudText>
<MudChip T="string" Size="Size.Small" Color="Color.Primary">@_detail.EnergyType</MudChip>
<MudChip T="string" Size="Size.Small" Variant="Variant.Outlined">@_detail.Mode</MudChip>
@if (!_detail.IsActive)
{
<MudChip T="string" Size="Size.Small" Color="Color.Warning">retired</MudChip>
}
</div>
<MudGrid Class="mb-2">
<MudItem xs="6" sm="3">
<MudPaper Class="pa-3" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Consumption</MudText>
<MudText Typo="Typo.h6">@Format.Number(_detail.TotalConsumption, 0) @_detail.Unit</MudText>
</MudPaper>
</MudItem>
@if (_detail.TotalGeneration != 0)
{
<MudItem xs="6" sm="3">
<MudPaper Class="pa-3" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Generation</MudText>
<MudText Typo="Typo.h6">@Format.Number(_detail.TotalGeneration, 0) @_detail.Unit</MudText>
</MudPaper>
</MudItem>
}
<MudItem xs="6" sm="3">
<MudPaper Class="pa-3" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Readings</MudText>
<MudText Typo="Typo.h6">@_detail.ReadingCount</MudText>
<MudText Typo="Typo.caption" Color="Color.Secondary">
@(_detail.FirstReadingTime?.ToString("yyyy-MM") ?? "—") … @(_detail.LastReadingTime?.ToString("yyyy-MM") ?? "—")
</MudText>
</MudPaper>
</MudItem>
<MudItem xs="6" sm="3">
<MudPaper Class="pa-3" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Register span</MudText>
<MudText Typo="Typo.h6">
@(_detail.FirstReadingValue is { } f ? Format.Number(f, 0) : "—") →
@(_detail.LastReadingValue is { } l ? Format.Number(l, 0) : "—")
</MudText>
<MudText Typo="Typo.caption" Color="Color.Secondary">baseline @Format.Number(_detail.InitialBaseline, 0)</MudText>
</MudPaper>
</MudItem>
</MudGrid>
<MudTabs Elevation="2" Rounded="true" ApplyEffectsToContainer="true" Class="mt-2">
<MudTabPanel Text="@($"Readings ({_detail.ReadingCount})")">
@if (_detail.RecentReadings.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No raw readings.</MudText>
}
else
{
<MudText Typo="Typo.caption" Color="Color.Secondary">Most recent @_detail.RecentReadings.Count (raw, immutable audit truth).</MudText>
<MudSimpleTable Dense="true" Hover="true" Class="mt-2">
<thead><tr><th>Time</th><th style="text-align:right">Value</th><th>Quality</th><th>Flags</th></tr></thead>
<tbody>
@foreach (var r in _detail.RecentReadings)
{
<tr>
<td>@r.Time.ToString("yyyy-MM-dd HH:mm")</td>
<td style="text-align:right">@Format.Number(r.Value, 2) @_detail.Unit</td>
<td>@QualityChip(r.Quality)</td>
<td>@(r.Flags == MeterVault.Core.Domain.ReadingFlags.None ? "" : r.Flags.ToString())</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
</MudTabPanel>
<MudTabPanel Text="@($"Consumption ({_detail.ConsumptionCount})")">
@if (_detail.RecentConsumption.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No normalized consumption yet.</MudText>
}
else
{
<MudText Typo="Typo.caption" Color="Color.Secondary">Most recent @_detail.RecentConsumption.Count normalized deltas.</MudText>
<MudSimpleTable Dense="true" Hover="true" Class="mt-2">
<thead><tr><th>Time</th><th style="text-align:right">Amount</th><th>Kind</th><th>Quality</th></tr></thead>
<tbody>
@foreach (var c in _detail.RecentConsumption)
{
<tr>
<td>@c.Time.ToString("yyyy-MM-dd HH:mm")</td>
<td style="text-align:right">@Format.Number(c.Amount, 2) @_detail.Unit</td>
<td>@c.Kind</td>
<td>@QualityChip(c.Quality)</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
</MudTabPanel>
<MudTabPanel Text="@($"Events ({_detail.Events.Count})")">
@if (_detail.Events.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No events (swaps, deliveries, corrections).</MudText>
}
else
{
<MudSimpleTable Dense="true" Hover="true">
<thead><tr><th>Time</th><th>Type</th><th style="text-align:right">Amount</th><th style="text-align:right">Prev→New</th><th>Notes</th></tr></thead>
<tbody>
@foreach (var e in _detail.Events)
{
<tr>
<td>@e.Time.ToString("yyyy-MM-dd")</td>
<td>@e.Type</td>
<td style="text-align:right">@(e.Amount is { } a ? $"{Format.Number(a, 2)} {e.Unit}" : "—")</td>
<td style="text-align:right">@(e.PrevValue is { } p ? $"{Format.Number(p, 0)}→{Format.Number(e.NewValue ?? 0, 0)}" : "—")</td>
<td>@e.Notes</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
</MudTabPanel>
<MudTabPanel Text="@($"Tariffs ({_detail.Tariffs.Count})")">
@if (_detail.Tariffs.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No applicable tariffs.</MudText>
}
else
{
<MudSimpleTable Dense="true" Hover="true">
<thead><tr><th>Scope</th><th>Component</th><th style="text-align:right">Value</th><th>Unit</th><th>From</th><th>To</th></tr></thead>
<tbody>
@foreach (var t in _detail.Tariffs)
{
<tr>
<td>@t.Scope @(t.ScopeId is { } id ? $"#{id}" : "")</td>
<td>@t.Component</td>
<td style="text-align:right">@Format.Number(t.Value, 4)</td>
<td>@t.Unit</td>
<td>@t.ValidFrom.ToString("yyyy-MM-dd")</td>
<td>@(t.ValidTo?.ToString("yyyy-MM-dd") ?? "open")</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
</MudTabPanel>
<MudTabPanel Text="@($"Sources ({_sources.Count})")">
<div class="d-flex justify-end mb-2">
<MudButton Size="Size.Small" Variant="Variant.Filled" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Add" OnClick="@(() => OpenSource(null))">
Add source
</MudButton>
</div>
@if (_sources.Count == 0)
{
<MudText Typo="Typo.body2" Color="Color.Secondary">No ingest sources bound to this meter. Add one to pull from MQTT/Tasmota or Home Assistant.</MudText>
}
else
{
<MudSimpleTable Dense="true" Hover="true">
<thead><tr><th>Type</th><th>Target</th><th>Enabled</th><th>Last seen</th><th style="text-align:right">Last value</th><th>Status</th><th style="text-align:right">Actions</th></tr></thead>
<tbody>
@foreach (var s in _sources)
{
<tr>
<td>@s.SourceType</td>
<td>@SourceTarget(s)</td>
<td>@(s.IsEnabled ? "yes" : "no")</td>
<td>@(s.LastSeenAt?.ToString("yyyy-MM-dd HH:mm") ?? "—")</td>
<td style="text-align:right">@(s.LastValue is { } v ? Format.Number(v, 2) : "—")</td>
<td>@(s.LastStatus ?? "—")</td>
<td style="text-align:right">
<MudIconButton Icon="@Icons.Material.Filled.Edit" Size="Size.Small" OnClick="@(() => OpenSource(s))" />
<MudIconButton Icon="@Icons.Material.Filled.Delete" Size="Size.Small" Color="Color.Error" OnClick="@(() => DeleteSourceAsync(s))" />
</td>
</tr>
}
</tbody>
</MudSimpleTable>
}
</MudTabPanel>
</MudTabs>
<MudDialog @bind-Visible="_sourceOpen" Options="_dialogOptions">
<TitleContent>
<MudText Typo="Typo.h6">@(_sourceEdit.Id == 0 ? "New source" : "Edit source")</MudText>
</TitleContent>
<DialogContent>
<MudSelect T="SourceType" @bind-Value="_sourceEdit.SourceType" Label="Source type" Class="mb-2">
@foreach (var type in Enum.GetValues<SourceType>())
{
<MudSelectItem T="SourceType" Value="type">@type</MudSelectItem>
}
</MudSelect>
@if (_sourceEdit.SourceType is SourceType.HomeAssistant or SourceType.Mqtt or SourceType.Tasmota)
{
<MudSelect T="int?" @bind-Value="_sourceEdit.EndpointId" Label="Connector" Clearable="true" Class="mb-2">
@foreach (var e in _endpoints)
{
<MudSelectItem T="int?" Value="@((int?)e.Id)">@e.Name (@e.Type)</MudSelectItem>
}
</MudSelect>
}
@if (_sourceEdit.SourceType == SourceType.HomeAssistant)
{
<MudTextField @bind-Value="_sourceEdit.EntityId" Label="Entity id (e.g. sensor.house_power)" Class="mb-2" />
<MudTextField @bind-Value="_sourceEdit.Attribute" Label="Attribute (optional; blank = state)" Class="mb-2" />
<MudNumericField T="int?" @bind-Value="_sourceEdit.PollSeconds" Label="Poll interval (seconds)" Class="mb-2" />
}
else if (_sourceEdit.SourceType is SourceType.Mqtt or SourceType.Tasmota)
{
<MudTextField @bind-Value="_sourceEdit.Topic" Label="MQTT topic (e.g. tele/plug1/SENSOR)" Class="mb-2" />
<MudTextField @bind-Value="_sourceEdit.Path" Label="Value path (e.g. ENERGY.Total; blank = bare scalar)" Class="mb-2" />
<MudTextField @bind-Value="_sourceEdit.TimePath" Label="Time path (optional, e.g. Time)" Class="mb-2" />
}
<MudSelect T="SourceValueKind" @bind-Value="_sourceEdit.ValueKind" Label="Value kind" Class="mb-2">
@foreach (var kind in Enum.GetValues<SourceValueKind>())
{
<MudSelectItem T="SourceValueKind" Value="kind">@kind</MudSelectItem>
}
</MudSelect>
<div class="d-flex" style="gap:1rem">
<MudNumericField T="double" @bind-Value="_sourceEdit.Scale" Label="Scale" Class="mb-2" />
<MudNumericField T="double" @bind-Value="_sourceEdit.Offset" Label="Offset" Class="mb-2" />
<MudNumericField T="int" @bind-Value="_sourceEdit.Priority" Label="Priority" Class="mb-2" />
</div>
<MudSwitch T="bool" @bind-Value="_sourceEdit.IsEnabled" Label="Enabled" Color="Color.Primary" />
</DialogContent>
<DialogActions>
<MudButton OnClick="@(() => _sourceOpen = false)">Cancel</MudButton>
<MudButton Color="Color.Primary" Variant="Variant.Filled" OnClick="SaveSourceAsync">Save</MudButton>
</DialogActions>
</MudDialog>
}
@code {
[Parameter]
public int Id { get; set; }
private MeterDetailView? _detail;
private bool _notFound;
private List<MeterSource> _sources = [];
private List<IngestionEndpoint> _endpoints = [];
private bool _sourceOpen;
private SourceEdit _sourceEdit = new();
private readonly DialogOptions _dialogOptions = new() { MaxWidth = MaxWidth.Small, FullWidth = true };
protected override async Task OnParametersSetAsync()
{
_detail = null;
_notFound = false;
_detail = await Details.GetAsync(Id);
_notFound = _detail is null;
if (_detail is not null)
{
await LoadSourcesAsync();
}
}
private async Task LoadSourcesAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_sources = await db.MeterSources.AsNoTracking().Where(s => s.MeterId == Id).OrderBy(s => s.Priority).ToListAsync();
_endpoints = await db.IngestionEndpoints.AsNoTracking().OrderBy(e => e.Name).ToListAsync();
}
private static string SourceTarget(MeterSource s)
{
var config = SourceConfig.Parse(s.Config);
return s.SourceType == SourceType.HomeAssistant
? config.EntityId ?? "—"
: config.Topic ?? "—";
}
private void OpenSource(MeterSource? source)
{
if (source is null)
{
_sourceEdit = new SourceEdit();
}
else
{
var config = SourceConfig.Parse(source.Config);
_sourceEdit = new SourceEdit
{
Id = source.Id,
SourceType = source.SourceType,
EndpointId = source.EndpointId,
ValueKind = source.ValueKind,
Scale = source.Scale,
Offset = source.Offset,
Priority = source.Priority,
IsEnabled = source.IsEnabled,
EntityId = config.EntityId,
Attribute = config.Attribute,
PollSeconds = config.PollSeconds,
Topic = config.Topic,
Path = config.Path,
TimePath = config.TimePath,
};
}
_sourceOpen = true;
}
private async Task SaveSourceAsync()
{
var config = new SourceConfig
{
EntityId = Trim(_sourceEdit.EntityId),
Attribute = Trim(_sourceEdit.Attribute),
PollSeconds = _sourceEdit.PollSeconds,
Topic = Trim(_sourceEdit.Topic),
Path = Trim(_sourceEdit.Path),
TimePath = Trim(_sourceEdit.TimePath),
};
var configJson = System.Text.Json.JsonSerializer.Serialize(config,
new System.Text.Json.JsonSerializerOptions { DefaultIgnoreCondition = System.Text.Json.Serialization.JsonIgnoreCondition.WhenWritingNull });
await using var db = await DbFactory.CreateDbContextAsync();
if (_sourceEdit.Id == 0)
{
db.MeterSources.Add(new MeterSource
{
MeterId = Id,
SourceType = _sourceEdit.SourceType,
EndpointId = _sourceEdit.EndpointId,
Config = configJson,
ValueKind = _sourceEdit.ValueKind,
Scale = _sourceEdit.Scale,
Offset = _sourceEdit.Offset,
Priority = _sourceEdit.Priority,
IsEnabled = _sourceEdit.IsEnabled,
});
}
else
{
var existing = await db.MeterSources.FirstAsync(s => s.Id == _sourceEdit.Id);
existing.SourceType = _sourceEdit.SourceType;
existing.EndpointId = _sourceEdit.EndpointId;
existing.Config = configJson;
existing.ValueKind = _sourceEdit.ValueKind;
existing.Scale = _sourceEdit.Scale;
existing.Offset = _sourceEdit.Offset;
existing.Priority = _sourceEdit.Priority;
existing.IsEnabled = _sourceEdit.IsEnabled;
}
await db.SaveChangesAsync();
_sourceOpen = false;
Snackbar.Add("Source saved.", Severity.Success);
await LoadSourcesAsync();
}
private async Task DeleteSourceAsync(MeterSource source)
{
if (!await Confirm.DeleteAsync(DialogService, "Delete source", $"Delete this {source.SourceType} source?"))
{
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
await db.MeterSources.Where(s => s.Id == source.Id).ExecuteDeleteAsync();
Snackbar.Add("Source deleted.", Severity.Success);
await LoadSourcesAsync();
}
private static string? Trim(string? value) => string.IsNullOrWhiteSpace(value) ? null : value.Trim();
private sealed class SourceEdit
{
public int Id { get; set; }
public SourceType SourceType { get; set; } = SourceType.HomeAssistant;
public int? EndpointId { get; set; }
public SourceValueKind ValueKind { get; set; } = SourceValueKind.Register;
public double Scale { get; set; } = 1;
public double Offset { get; set; }
public int Priority { get; set; }
public bool IsEnabled { get; set; } = true;
public string? EntityId { get; set; }
public string? Attribute { get; set; }
public int? PollSeconds { get; set; } = 60;
public string? Topic { get; set; }
public string? Path { get; set; }
public string? TimePath { get; set; }
}
private static RenderFragment QualityChip(ReadingQuality quality) =>@<MudChip T="string" Size="Size.Small" Variant="Variant.Text"
Color="@(quality == ReadingQuality.Measured ? Color.Success : quality == ReadingQuality.Estimated ? Color.Warning : Color.Default)">@quality</MudChip>;
}
+304 -10
View File
@@ -1,11 +1,19 @@
@page "/meters"
@rendermode InteractiveServer
@inject Microsoft.EntityFrameworkCore.IDbContextFactory<MeterVault.Infrastructure.Persistence.MeterVaultDbContext> DbFactory
@inject MeterVault.Core.Normalization.INormalizationEngine Engine
@inject ISnackbar Snackbar
@inject IDialogService DialogService
@using Microsoft.EntityFrameworkCore
@using MudBlazor
<PageTitle>MeterVault — Meters</PageTitle>
<MudText Typo="Typo.h4" Class="mb-4">Meters</MudText>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Meters</MudText>
<MudButton Variant="Variant.Filled" Color="Color.Primary" StartIcon="@Icons.Material.Filled.Add" OnClick="@(() => OpenEdit(null))">
Add meter
</MudButton>
</div>
@if (_meters is null)
{
@@ -21,40 +29,120 @@ else
<MudTh>Unit</MudTh>
<MudTh>Sources</MudTh>
<MudTh>Last seen</MudTh>
<MudTh>Active</MudTh>
<MudTh Style="text-align:right">Actions</MudTh>
</HeaderContent>
<RowTemplate>
<MudTd DataLabel="Name">@context.Name</MudTd>
<MudTd DataLabel="Name"><MudLink Href="@($"/meters/{context.Id}")">@context.Name</MudLink></MudTd>
<MudTd DataLabel="Type">@context.EnergyType?.DisplayName</MudTd>
<MudTd DataLabel="Mode">@context.Mode</MudTd>
<MudTd DataLabel="Unit">@context.Unit</MudTd>
<MudTd DataLabel="Sources">@context.Sources.Count</MudTd>
<MudTd DataLabel="Last seen">
@{
var lastSeen = context.Sources
.Where(s => s.LastSeenAt != null)
.Select(s => s.LastSeenAt)
.DefaultIfEmpty(null)
.Max();
var lastSeen = context.Sources.Where(s => s.LastSeenAt != null).Select(s => s.LastSeenAt).DefaultIfEmpty(null).Max();
}
@(lastSeen?.ToString("yyyy-MM-dd HH:mm") ?? "—")
</MudTd>
<MudTd DataLabel="Active">@(context.IsActive ? "yes" : "no")</MudTd>
<MudTd DataLabel="Actions" Style="text-align:right">
<MudIconButton Icon="@Icons.Material.Filled.Edit" Size="Size.Small" OnClick="@(() => OpenEdit(context))" />
<MudIconButton Icon="@Icons.Material.Filled.Delete" Size="Size.Small" Color="Color.Error" OnClick="@(() => DeleteAsync(context))" />
</MudTd>
</RowTemplate>
</MudTable>
@if (_meters.Count == 0)
{
<MudAlert Severity="Severity.Info" Class="mt-4">
No meters yet. Go to <MudLink Href="/import">Import</MudLink> to load the reference data.
No meters yet. Add one, or go to <MudLink Href="/import">Import</MudLink> to load the reference data.
</MudAlert>
}
}
<MudDialog @bind-Visible="_editOpen" Options="_dialogOptions">
<TitleContent>
<MudText Typo="Typo.h6">@(_working.Id == 0 ? "New meter" : $"Edit {_working.Name}")</MudText>
</TitleContent>
<DialogContent>
<MudTextField @bind-Value="_working.Name" Label="Name" Required="true" Class="mb-2" />
<MudSelect T="short" @bind-Value="_working.EnergyTypeId" Label="Energy type" Class="mb-2">
@foreach (var t in _energyTypes)
{
<MudSelectItem T="short" Value="t.Id">@t.DisplayName</MudSelectItem>
}
</MudSelect>
<MudSelect T="MeterMode" @bind-Value="_working.Mode" Label="Measurement mode" Class="mb-2">
@foreach (var mode in Enum.GetValues<MeterMode>())
{
<MudSelectItem T="MeterMode" Value="mode">@mode</MudSelectItem>
}
</MudSelect>
@if (_working.Mode == MeterMode.Virtual)
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mb-2">
Virtual "sum" meter — it has no readings of its own. In the flow view it equals the sum of the
upstream meters you select below (e.g. Sum Solar = Solar 1 + Solar 2).
</MudAlert>
}
else if (_working.Mode == MeterMode.InstantRate)
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mb-2">
Power/flow sensor — readings are an instantaneous rate, integrated over time into consumption.
Store the value as a <b>per-hour</b> rate in this meter's unit (e.g. kW for kWh, L/h for L): a
source reporting W or L/min should carry a scale factor to convert it first.
</MudAlert>
}
<MudTextField @bind-Value="_working.Unit" Label="Unit" Required="true" Class="mb-2" />
<MudNumericField T="double" @bind-Value="_working.InitialBaseline" Label="Initial register baseline" Class="mb-2" />
<MudSelect T="string" @bind-Value="_working.Role" Label="PV role (optional)" Class="mb-2">
<MudSelectItem T="string" Value="@("")">— none —</MudSelectItem>
<MudSelectItem T="string" Value="@MeterRoles.TotalLoad">total_load</MudSelectItem>
<MudSelectItem T="string" Value="@MeterRoles.GridImport">grid_import</MudSelectItem>
<MudSelectItem T="string" Value="@MeterRoles.GridExport">grid_export</MudSelectItem>
</MudSelect>
<MudSelect T="int" MultiSelection="true" @bind-SelectedValues="_working.Upstream"
Label="Sub-meter of (upstream meters)" Class="mb-2"
MultiSelectionTextFunc="@(ids => UpstreamText(ids))"
HelperText="This meter measures a subsection of the selected meter(s)' flow.">
@foreach (var m in AvailableUpstream())
{
<MudSelectItem T="int" Value="m.Id">@m.Name</MudSelectItem>
}
</MudSelect>
<MudTextField @bind-Value="_working.Location" Label="Location (optional)" Class="mb-2" />
<MudTextField @bind-Value="_working.SerialNumber" Label="Serial number (optional)" Class="mb-2" />
<div class="d-flex" style="gap:1rem">
<MudTextField @bind-Value="_working.Manufacturer" Label="Manufacturer (optional)" Class="mb-2" />
<MudTextField @bind-Value="_working.Model" Label="Model (optional)" Class="mb-2" />
</div>
<MudSwitch T="bool" @bind-Value="_working.IsActive" Label="Active" Color="Color.Primary" />
@if (_working.Id != 0 && _working.RecomputeNeeded)
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mt-2">Mode/baseline changed — consumption will be recomputed on save.</MudAlert>
}
</DialogContent>
<DialogActions>
<MudButton OnClick="@(() => _editOpen = false)">Cancel</MudButton>
<MudButton Color="Color.Primary" Variant="Variant.Filled" OnClick="SaveAsync">Save</MudButton>
</DialogActions>
</MudDialog>
@code {
private List<Meter>? _meters;
private List<EnergyType> _energyTypes = [];
private List<MeterLink> _allLinks = [];
private bool _editOpen;
private EditModel _working = new();
private readonly DialogOptions _dialogOptions = new() { MaxWidth = MaxWidth.Small, FullWidth = true };
protected override async Task OnInitializedAsync()
protected override Task OnInitializedAsync() => LoadAsync();
private async Task LoadAsync()
{
await using var db = await DbFactory.CreateDbContextAsync();
_energyTypes = await db.EnergyTypes.AsNoTracking().OrderBy(t => t.DisplayName).ToListAsync();
_allLinks = await db.MeterLinks.AsNoTracking().ToListAsync();
_meters = await db.Meters
.AsNoTracking()
.Include(m => m.EnergyType)
@@ -62,4 +150,210 @@ else
.OrderBy(m => m.EnergyTypeId).ThenBy(m => m.Name)
.ToListAsync();
}
// Upstream candidates: same energy type, not self, and not a descendant (would create a cycle).
private IEnumerable<Meter> AvailableUpstream()
{
if (_meters is null)
{
return [];
}
var descendants = Descendants(_working.Id);
return _meters.Where(m => m.EnergyTypeId == _working.EnergyTypeId && m.Id != _working.Id && !descendants.Contains(m.Id));
}
private HashSet<int> Descendants(int meterId)
{
var result = new HashSet<int>();
if (meterId == 0)
{
return result;
}
var queue = new Queue<int>();
queue.Enqueue(meterId);
while (queue.Count > 0)
{
var current = queue.Dequeue();
foreach (var link in _allLinks.Where(l => l.FromMeterId == current))
{
if (result.Add(link.ToMeterId))
{
queue.Enqueue(link.ToMeterId);
}
}
}
return result;
}
private string UpstreamText(IReadOnlyList<string> ids)
{
var names = ids.Select(idText => int.TryParse(idText, out var id) ? _meters?.FirstOrDefault(m => m.Id == id)?.Name ?? idText : idText);
return string.Join(", ", names);
}
private void OpenEdit(Meter? meter)
{
if (meter is null)
{
_working = new EditModel { EnergyTypeId = _energyTypes.FirstOrDefault()?.Id ?? 0 };
}
else
{
_working = new EditModel
{
Id = meter.Id,
Name = meter.Name,
EnergyTypeId = meter.EnergyTypeId,
Mode = meter.Mode,
OriginalMode = meter.Mode,
Unit = meter.Unit,
InitialBaseline = meter.InitialBaseline,
OriginalBaseline = meter.InitialBaseline,
Role = MeterMeta.Role(meter.Meta) ?? "",
Location = meter.Location,
SerialNumber = meter.SerialNumber,
Manufacturer = meter.Manufacturer,
Model = meter.Model,
IsActive = meter.IsActive,
Upstream = _allLinks.Where(l => l.ToMeterId == meter.Id).Select(l => l.FromMeterId).ToHashSet(),
};
}
_editOpen = true;
}
private async Task SaveAsync()
{
if (string.IsNullOrWhiteSpace(_working.Name) || string.IsNullOrWhiteSpace(_working.Unit) || _working.EnergyTypeId == 0)
{
Snackbar.Add("Name, energy type and unit are required.", Severity.Warning);
return;
}
await using var db = await DbFactory.CreateDbContextAsync();
int meterId;
if (_working.Id == 0)
{
var meter = new Meter
{
Name = _working.Name.Trim(),
EnergyTypeId = _working.EnergyTypeId,
Mode = _working.Mode,
Unit = _working.Unit.Trim(),
InitialBaseline = _working.InitialBaseline,
Meta = MeterMeta.SetRole("{}", _working.Role),
Location = Trim(_working.Location),
SerialNumber = Trim(_working.SerialNumber),
Manufacturer = Trim(_working.Manufacturer),
Model = Trim(_working.Model),
IsActive = _working.IsActive,
};
db.Meters.Add(meter);
await db.SaveChangesAsync();
meterId = meter.Id;
}
else
{
await using var tx = await db.Database.BeginTransactionAsync();
var existing = await db.Meters.FirstAsync(m => m.Id == _working.Id);
existing.Name = _working.Name.Trim();
existing.EnergyTypeId = _working.EnergyTypeId;
existing.Mode = _working.Mode;
existing.Unit = _working.Unit.Trim();
existing.InitialBaseline = _working.InitialBaseline;
existing.Meta = MeterMeta.SetRole(existing.Meta, _working.Role);
existing.Location = Trim(_working.Location);
existing.SerialNumber = Trim(_working.SerialNumber);
existing.Manufacturer = Trim(_working.Manufacturer);
existing.Model = Trim(_working.Model);
existing.IsActive = _working.IsActive;
existing.UpdatedAt = DateTimeOffset.UtcNow;
await db.SaveChangesAsync();
if (_working.RecomputeNeeded)
{
var normalization = new MeterVault.Infrastructure.Normalization.NormalizationService(db, Engine);
await normalization.RecomputeMeterAsync(existing.Id, null);
await db.SaveChangesAsync();
}
await tx.CommitAsync();
meterId = existing.Id;
}
await SyncUpstreamAsync(db, meterId, _working.Upstream);
_editOpen = false;
Snackbar.Add("Saved.", Severity.Success);
await LoadAsync();
}
/// <summary>Reconciles the meter's incoming flow links to the selected upstream meters.</summary>
private static async Task SyncUpstreamAsync(MeterVault.Infrastructure.Persistence.MeterVaultDbContext db, int meterId, IEnumerable<int> desiredUpstream)
{
var desired = desiredUpstream.Where(id => id != meterId).ToHashSet();
var existing = await db.MeterLinks.Where(l => l.ToMeterId == meterId).ToListAsync();
foreach (var link in existing.Where(l => !desired.Contains(l.FromMeterId)))
{
db.MeterLinks.Remove(link);
}
foreach (var fromId in desired.Where(id => existing.All(l => l.FromMeterId != id)))
{
db.MeterLinks.Add(new MeterLink { FromMeterId = fromId, ToMeterId = meterId });
}
await db.SaveChangesAsync();
}
private async Task DeleteAsync(Meter meter)
{
await using var db = await DbFactory.CreateDbContextAsync();
var readings = await db.Readings.CountAsync(r => r.MeterId == meter.Id);
var consumption = await db.Consumption.CountAsync(c => c.MeterId == meter.Id);
var detail = readings + consumption > 0
? $" This will also delete {readings} reading(s) and {consumption} consumption row(s)."
: "";
if (!await Confirm.DeleteAsync(DialogService, "Delete meter", $"Delete '{meter.Name}'?{detail} This cannot be undone."))
{
return;
}
await using var tx = await db.Database.BeginTransactionAsync();
// reading/consumption FKs are Restrict — remove them first; events/sources/tank/members cascade.
await db.Consumption.Where(c => c.MeterId == meter.Id).ExecuteDeleteAsync();
await db.Readings.Where(r => r.MeterId == meter.Id).ExecuteDeleteAsync();
await db.Meters.Where(m => m.Id == meter.Id).ExecuteDeleteAsync();
await tx.CommitAsync();
Snackbar.Add("Deleted.", Severity.Success);
await LoadAsync();
}
private static string? Trim(string? value) => string.IsNullOrWhiteSpace(value) ? null : value.Trim();
private sealed class EditModel
{
public int Id { get; set; }
public string Name { get; set; } = "";
public short EnergyTypeId { get; set; }
public MeterMode Mode { get; set; } = MeterMode.CumulativeCounter;
public MeterMode OriginalMode { get; set; } = MeterMode.CumulativeCounter;
public string Unit { get; set; } = "";
public double InitialBaseline { get; set; }
public double OriginalBaseline { get; set; }
public string Role { get; set; } = "";
public string? Location { get; set; }
public string? SerialNumber { get; set; }
public string? Manufacturer { get; set; }
public string? Model { get; set; }
public bool IsActive { get; set; } = true;
public IReadOnlyCollection<int> Upstream { get; set; } = new HashSet<int>();
public bool RecomputeNeeded => Mode != OriginalMode || Math.Abs(InitialBaseline - OriginalBaseline) > 1e-9;
}
}
+148
View File
@@ -0,0 +1,148 @@
@page "/solar"
@inject SolarService SolarSvc
@using MudBlazor
<PageTitle>MeterVault — Solar / PV</PageTitle>
<div class="d-flex align-center justify-space-between mb-4 flex-wrap" style="gap:1rem">
<MudText Typo="Typo.h4">Solar / PV</MudText>
<MudSelect T="int" Value="_months" ValueChanged="OnRangeChanged" Label="Range" Dense="true" Style="max-width:200px">
<MudSelectItem T="int" Value="12">Last 12 months</MudSelectItem>
<MudSelectItem T="int" Value="24">Last 24 months</MudSelectItem>
<MudSelectItem T="int" Value="60">Last 5 years</MudSelectItem>
<MudSelectItem T="int" Value="1200">All time</MudSelectItem>
</MudSelect>
</div>
@if (_summary is null)
{
<MudProgressLinear Indeterminate="true" Color="Color.Primary" />
}
else if (!_summary.HasGeneration)
{
<MudAlert Severity="Severity.Info">
No generation meters found. Add a meter with mode <b>GenerationCounter</b>, or load the reference data from
<MudLink Href="/import">Import</MudLink>.
</MudAlert>
}
else
{
<MudGrid>
<MudItem xs="12" sm="6" md="3">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Generation</MudText>
<MudText Typo="Typo.h5">@Format.Number(_summary.Generation, 0) kWh</MudText>
</MudPaper>
</MudItem>
<MudItem xs="12" sm="6" md="3">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Self-consumption</MudText>
<MudText Typo="Typo.h5">@(_summary.SelfConsumption is { } s ? $"{Format.Number(s, 0)} kWh" : "—")</MudText>
@if (_summary.SelfConsumptionRatio is { } ratio)
{
<MudText Typo="Typo.caption" Color="Color.Secondary">@Format.Number(ratio * 100, 0)% of generation</MudText>
}
</MudPaper>
</MudItem>
<MudItem xs="12" sm="6" md="3">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Autarky</MudText>
<MudText Typo="Typo.h5">@(_summary.Autarky is { } a ? $"{Format.Number(a * 100, 0)} %" : "—")</MudText>
@if (_summary.GridImport is { } grid)
{
<MudText Typo="Typo.caption" Color="Color.Secondary">Grid draw @Format.Number(grid, 0) kWh</MudText>
}
</MudPaper>
</MudItem>
<MudItem xs="12" sm="6" md="3">
<MudPaper Class="pa-4" Elevation="2">
<MudText Typo="Typo.overline" Color="Color.Secondary">Savings (Ersparnis)</MudText>
<MudText Typo="Typo.h5">@(_summary.Savings is { } sav ? Format.Euro(sav) : "—")</MudText>
</MudPaper>
</MudItem>
<MudItem xs="12" md="8">
<MudPaper Class="pa-4" Elevation="2" Style="height:100%">
<MudText Typo="Typo.h6" Class="mb-2">Generation &amp; self-consumption</MudText>
<SeriesChart Series="_chart" Decimals="0" Height="340" />
</MudPaper>
</MudItem>
<MudItem xs="12" md="4">
<MudPaper Class="pa-4" Elevation="2" Style="height:100%">
<MudText Typo="Typo.h6" Class="mb-2">Generation by meter</MudText>
<MudSimpleTable Dense="true" Hover="true">
<tbody>
@foreach (var meter in _summary.Meters)
{
<tr>
<td>@meter.Name</td>
<td style="text-align:right">@Format.Number(meter.Generation, 0) kWh</td>
</tr>
}
</tbody>
</MudSimpleTable>
@if (!_summary.HasLoadContext)
{
<MudAlert Severity="Severity.Info" Dense="true" Class="mt-3">
Tag a meter <code>total_load</code> and one <code>grid_import</code> (in meter metadata)
to unlock self-consumption, autarky and savings.
</MudAlert>
}
</MudPaper>
</MudItem>
</MudGrid>
}
@code {
private int _months = 60;
private bool _loading;
private SolarSummary? _summary;
private IReadOnlyList<SeriesChart.SeriesDef> _chart = [];
protected override Task OnInitializedAsync() => LoadAsync();
private async Task OnRangeChanged(int months)
{
_months = months;
await LoadAsync();
}
private async Task LoadAsync()
{
if (_loading)
{
return;
}
_loading = true;
_summary = null;
try
{
var asOf = DateOnly.FromDateTime(DateTime.UtcNow);
var from = asOf.AddMonths(-_months);
_summary = await SolarSvc.GetSummaryAsync(new DateOnly(from.Year, from.Month, 1), asOf.AddMonths(1));
var generation = _summary.Months
.Select(m => new SeriesChart.Point(m.Period.ToString("MMM yy", System.Globalization.CultureInfo.InvariantCulture), m.Generation))
.ToList();
var series = new List<SeriesChart.SeriesDef>
{
new("Generation", ApexCharts.SeriesType.Bar, generation),
};
if (_summary.HasLoadContext)
{
var self = _summary.Months
.Select(m => new SeriesChart.Point(m.Period.ToString("MMM yy", System.Globalization.CultureInfo.InvariantCulture), m.SelfConsumption ?? 0))
.ToList();
series.Add(new("Self-consumption", ApexCharts.SeriesType.Bar, self));
}
_chart = series;
}
finally
{
_loading = false;
}
}
}
-1
View File
@@ -1,5 +1,4 @@
@page "/trends"
@rendermode InteractiveServer
@inject DashboardService Dash
<PageTitle>MeterVault — Trends</PageTitle>
+165
View File
@@ -0,0 +1,165 @@
@using System.Globalization
@using System.Text
@using System.Net
@using MeterVault.Infrastructure.Dashboard
@if (string.IsNullOrEmpty(_svg))
{
<MudBlazor.MudText Typo="MudBlazor.Typo.body2" Color="MudBlazor.Color.Secondary">No flow to show for this period.</MudBlazor.MudText>
}
else
{
<div style="width:100%; overflow-x:auto">
@((MarkupString)_svg)
</div>
}
@code {
private const double W = 1000;
private const double NodeWidth = 16;
private const double NodeGap = 12;
private const double LeftPad = 8;
private const double RightPad = 8;
[Parameter, EditorRequired]
public IReadOnlyList<FlowNode> Nodes { get; set; } = [];
[Parameter, EditorRequired]
public IReadOnlyList<FlowLink> Links { get; set; } = [];
[Parameter]
public string Unit { get; set; } = "";
private string _svg = "";
protected override void OnParametersSet() => _svg = BuildSvg();
private string BuildSvg()
{
if (Nodes.Count == 0)
{
return "";
}
var maxDepth = Nodes.Max(n => n.Depth);
var columns = Nodes.GroupBy(n => n.Depth).ToDictionary(g => g.Key, g => g.OrderByDescending(n => n.Value).ToList());
var maxCount = columns.Values.Max(c => c.Count);
var height = Math.Max(320, (maxCount * 46) + 40);
// One value→pixel scale so every column fits (flow is conserved → column totals are ~equal;
// the densest column with the most gaps constrains the scale).
var scale = double.MaxValue;
foreach (var col in columns.Values)
{
var sum = col.Sum(n => n.Value);
if (sum > 0)
{
scale = Math.Min(scale, (height - ((col.Count - 1) * NodeGap) - 20) / sum);
}
}
if (double.IsInfinity(scale) || scale <= 0)
{
scale = 1;
}
var colStep = maxDepth == 0 ? 0 : (W - LeftPad - RightPad - NodeWidth) / maxDepth;
var geo = new Dictionary<string, NodeGeo>();
foreach (var (depth, col) in columns)
{
var heights = col.Select(n => Math.Max(3, n.Value * scale)).ToList();
var colHeight = heights.Sum() + ((col.Count - 1) * NodeGap);
var y = (height - colHeight) / 2;
var x = LeftPad + (depth * colStep);
for (var i = 0; i < col.Count; i++)
{
geo[col[i].Id] = new NodeGeo(x, y, heights[i]);
y += heights[i] + NodeGap;
}
}
// Ribbon band offsets: order each source's out-links by target y, each target's in-links by source y.
var srcOffset = new Dictionary<string, double>();
var dstOffset = new Dictionary<string, double>();
var srcBand = new Dictionary<FlowLink, double>();
var dstBand = new Dictionary<FlowLink, double>();
foreach (var group in Links.GroupBy(l => l.From))
{
foreach (var link in group.OrderBy(l => geo.TryGetValue(l.To, out var g) ? g.Y : 0))
{
srcBand[link] = srcOffset.GetValueOrDefault(group.Key);
srcOffset[group.Key] = srcBand[link] + (link.Value * scale);
}
}
foreach (var group in Links.GroupBy(l => l.To))
{
foreach (var link in group.OrderBy(l => geo.TryGetValue(l.From, out var g) ? g.Y : 0))
{
dstBand[link] = dstOffset.GetValueOrDefault(group.Key);
dstOffset[group.Key] = dstBand[link] + (link.Value * scale);
}
}
var color = Nodes.ToDictionary(n => n.Id, n => n.ColorHex ?? "#607D8B");
var label = Nodes.ToDictionary(n => n.Id, n => n.Label);
var sb = new StringBuilder();
sb.Append(CultureInfo.InvariantCulture,
$"<svg viewBox=\"0 0 {F(W)} {F(height)}\" width=\"100%\" style=\"height:{F(height)}px;min-width:520px;color:var(--mud-palette-text-primary)\" role=\"img\" aria-label=\"Flow diagram\">");
// Ribbons first (under nodes).
foreach (var link in Links)
{
if (!geo.TryGetValue(link.From, out var s) || !geo.TryGetValue(link.To, out var t))
{
continue;
}
var band = link.Value * scale;
var sy0 = s.Y + srcBand[link];
var ty0 = t.Y + dstBand[link];
var sx = s.X + NodeWidth;
var tx = t.X;
var midX = (sx + tx) / 2;
var path =
$"M{F(sx)},{F(sy0)} C{F(midX)},{F(sy0)} {F(midX)},{F(ty0)} {F(tx)},{F(ty0)} " +
$"L{F(tx)},{F(ty0 + band)} C{F(midX)},{F(ty0 + band)} {F(midX)},{F(sy0 + band)} {F(sx)},{F(sy0 + band)} Z";
var tip = Enc($"{label.GetValueOrDefault(link.From)} → {label.GetValueOrDefault(link.To)}: {Fmt(link.Value)}");
sb.Append(CultureInfo.InvariantCulture,
$"<path d=\"{path}\" fill=\"{Enc(color.GetValueOrDefault(link.From, "#607D8B"))}\" fill-opacity=\"0.38\"><title>{tip}</title></path>");
}
// Nodes + labels.
foreach (var node in Nodes)
{
if (!geo.TryGetValue(node.Id, out var g))
{
continue;
}
var rightmost = node.Depth == maxDepth;
var labelX = rightmost ? g.X - 6 : g.X + NodeWidth + 6;
var anchor = rightmost ? "end" : "start";
var fill = Enc(node.ColorHex ?? "#607D8B");
var name = Enc(node.Label);
var val = Enc(Fmt(node.Value));
sb.Append(CultureInfo.InvariantCulture,
$"<rect x=\"{F(g.X)}\" y=\"{F(g.Y)}\" width=\"{F(NodeWidth)}\" height=\"{F(g.H)}\" rx=\"2\" fill=\"{fill}\"><title>{name}: {val}</title></rect>");
sb.Append(CultureInfo.InvariantCulture,
$"<text x=\"{F(labelX)}\" y=\"{F(g.Y + (g.H / 2))}\" text-anchor=\"{anchor}\" dominant-baseline=\"middle\" font-size=\"13\" fill=\"currentColor\">" +
$"<tspan>{name}</tspan><tspan x=\"{F(labelX)}\" dy=\"15\" font-size=\"11\" fill-opacity=\"0.65\">{val}</tspan></text>");
}
sb.Append("</svg>");
return sb.ToString();
}
private string Fmt(double value) => $"{value.ToString("N0", CultureInfo.GetCultureInfo("de-DE"))} {Unit}".Trim();
private static string F(double value) => value.ToString("0.##", CultureInfo.InvariantCulture);
private static string Enc(string value) => WebUtility.HtmlEncode(value);
private readonly record struct NodeGeo(double X, double Y, double H);
}
@@ -0,0 +1,47 @@
@using ApexCharts
@if (HasData)
{
<ApexChart TItem="SeriesChart.Point" Options="_options" Height="@Height">
@foreach (var series in Series)
{
<ApexPointSeries TItem="SeriesChart.Point"
Items="series.Points"
SeriesType="series.Type"
Name="@series.Name"
XValue="p => p.Label"
YValue="p => (decimal)Math.Round(p.Value, Decimals)" />
}
</ApexChart>
}
else
{
<MudText Typo="Typo.body2" Color="MudBlazor.Color.Secondary">No data in this range.</MudText>
}
@code {
/// <summary>A single (label, value) point in a series.</summary>
public sealed record Point(string Label, double Value);
/// <summary>A named series rendered as bars or a line over the shared category axis.</summary>
public sealed record SeriesDef(string Name, SeriesType Type, IReadOnlyList<Point> Points);
[Parameter, EditorRequired]
public IReadOnlyList<SeriesDef> Series { get; set; } = [];
[Parameter]
public int Height { get; set; } = 300;
[Parameter]
public int Decimals { get; set; } = 2;
private bool HasData => Series.Any(s => s.Points.Count > 0);
private readonly ApexChartOptions<SeriesChart.Point> _options = new()
{
Theme = new Theme { Mode = Mode.Dark },
DataLabels = new DataLabels { Enabled = false },
Legend = new Legend { Position = LegendPosition.Top },
Stroke = new Stroke { Width = 3, Curve = Curve.Smooth },
};
}
+22
View File
@@ -0,0 +1,22 @@
using MudBlazor;
namespace MeterVault.App;
/// <summary>Small wrapper over MudBlazor's message box for delete/confirm prompts in admin pages.</summary>
public static class Confirm
{
public static async Task<bool> DeleteAsync(IDialogService dialog, string title, string message)
{
var result = await dialog.ShowMessageBoxAsync(title, message, yesText: "Delete", cancelText: "Cancel")
.ConfigureAwait(false);
return result == true;
}
/// <summary>A generic yes/cancel confirmation with a caller-supplied confirm-button label.</summary>
public static async Task<bool> ConfirmAsync(IDialogService dialog, string title, string message, string confirmText)
{
var result = await dialog.ShowMessageBoxAsync(title, message, yesText: confirmText, cancelText: "Cancel")
.ConfigureAwait(false);
return result == true;
}
}
+9 -1
View File
@@ -60,7 +60,7 @@ try
app.UseStatusCodePagesWithReExecute("/not-found", createScopeForStatusCodePages: true);
app.UseSerilogRequestLogging();
app.UseReverseProxyTrust();
// No HTTPS redirection: the app serves plain HTTP (port 8080) behind a reverse proxy
// No HTTPS redirection: the app serves plain HTTP (port 8760) behind a reverse proxy
// that terminates TLS (SDD §10). HTTPS redirection here would break the container and proxy.
app.UseAntiforgery();
@@ -104,6 +104,14 @@ static async Task MigrateDatabaseAsync(WebApplication app)
await db.Database.MigrateAsync().ConfigureAwait(false);
await DatabaseSeeder.SeedAsync(db).ConfigureAwait(false);
Log.Information("Database migrations applied and defaults seeded");
if (options.SeedReferenceData)
{
var importer = scope.ServiceProvider.GetRequiredService<MeterVault.Infrastructure.Import.ReferenceDataImporter>();
var dir = Path.Combine(AppContext.BaseDirectory, "sampledata");
await importer.LoadAsync(dir).ConfigureAwait(false);
Log.Information("Reference dataset ensured (SeedReferenceData=true)");
}
}
/// <summary>Exposed for WebApplicationFactory-based integration tests.</summary>
+1 -1
View File
@@ -21,7 +21,7 @@ public enum MeterMode
/// <summary>Source already reports increments. The value is the increment.</summary>
DirectDelta,
/// <summary>Power/flow sensor (schema-supported; worker deferred post-v1). Integrate rate over time.</summary>
/// <summary>Power/flow sensor. Consumption = rate integrated over time (trapezoidal).</summary>
InstantRate,
/// <summary>Computed from other meters via a user-defined expression.</summary>
+23
View File
@@ -0,0 +1,23 @@
namespace MeterVault.Core.Domain;
/// <summary>
/// A directed flow edge in the meter topology: energy/water measured by <see cref="ToMeter"/> is a
/// <em>subsection</em> of the flow through <see cref="FromMeter"/> (upstream → downstream). Not an
/// addition — a sub-meter shows where an upstream meter's flow goes. Multiple edges into one meter
/// model a merge (e.g. house load fed by grid + solar); multiple edges out model a split
/// (main → car, pool, …). Drives the per-energy-type flow (Sankey) view.
/// </summary>
public sealed class MeterLink
{
public int Id { get; set; }
/// <summary>Upstream meter (the larger flow this edge draws from).</summary>
public int FromMeterId { get; set; }
public Meter? FromMeter { get; set; }
/// <summary>Downstream meter (the subsection).</summary>
public int ToMeterId { get; set; }
public Meter? ToMeter { get; set; }
}
+89
View File
@@ -0,0 +1,89 @@
using System.Text.Json;
namespace MeterVault.Core.Domain;
/// <summary>
/// A meter's optional role in an energy system, stored under <c>role</c> in <see cref="Meter.Meta"/>.
/// Roles let analytic panels (e.g. the PV self-consumption/autarky view) find the relevant meters
/// by configuration rather than by hardcoded names — nothing domain-specific is baked into code
/// (SDD §5.2, §8.4). A PV install typically tags one meter <see cref="TotalLoad"/> and one
/// <see cref="GridImport"/>; self-consumption is then <c>total_load grid_import</c>.
/// </summary>
public static class MeterRoles
{
/// <summary>Meter measuring the site's total consumption (all loads).</summary>
public const string TotalLoad = "total_load";
/// <summary>Meter measuring energy drawn from the grid.</summary>
public const string GridImport = "grid_import";
/// <summary>Meter measuring energy exported to the grid.</summary>
public const string GridExport = "grid_export";
}
/// <summary>Typed reads over a meter's free-form <c>Meta</c> JSON (jsonb). Tolerant of malformed
/// or empty JSON — returns null rather than throwing, so a bad blob never breaks a dashboard.</summary>
public static class MeterMeta
{
/// <summary>The meter's configured <c>role</c> (see <see cref="MeterRoles"/>), or null if unset/invalid.</summary>
public static string? Role(string? meta) => ReadString(meta, "role");
/// <summary>Reads a top-level string property from the meta JSON; null if absent or unparsable.</summary>
public static string? ReadString(string? meta, string property)
{
if (string.IsNullOrWhiteSpace(meta))
{
return null;
}
try
{
using var doc = JsonDocument.Parse(meta);
return doc.RootElement.ValueKind == JsonValueKind.Object
&& doc.RootElement.TryGetProperty(property, out var value)
&& value.ValueKind == JsonValueKind.String
? value.GetString()
: null;
}
catch (JsonException)
{
return null;
}
}
/// <summary>Returns <paramref name="meta"/> with <c>role</c> set to <paramref name="role"/>.</summary>
public static string WithRole(string? meta, string role) => SetRole(meta, role);
/// <summary>Returns <paramref name="meta"/> with <c>role</c> set, or removed when null/empty.</summary>
public static string SetRole(string? meta, string? role)
{
var map = ToMap(meta);
if (string.IsNullOrWhiteSpace(role))
{
map.Remove("role");
}
else
{
map["role"] = role;
}
return JsonSerializer.Serialize(map);
}
private static Dictionary<string, object?> ToMap(string? meta)
{
if (string.IsNullOrWhiteSpace(meta))
{
return new Dictionary<string, object?>();
}
try
{
return JsonSerializer.Deserialize<Dictionary<string, object?>>(meta) ?? new Dictionary<string, object?>();
}
catch (JsonException)
{
return new Dictionary<string, object?>();
}
}
}
@@ -24,6 +24,7 @@ public sealed class NormalizationEngine : INormalizationEngine
new Normalizers.RuntimeCounterNormalizer(),
new Normalizers.ConsumableBalanceNormalizer(),
new Normalizers.DirectDeltaNormalizer(),
new Normalizers.InstantRateNormalizer(),
new Normalizers.VirtualNormalizer(),
]);
@@ -0,0 +1,55 @@
using MeterVault.Core.Domain;
namespace MeterVault.Core.Normalization.Normalizers;
/// <summary>
/// Power/flow sensor (SDD §5.2 <c>instant_rate</c>): the reading value is an instantaneous rate, not
/// a register. Consumption is the rate integrated over time (trapezoidal rule between consecutive
/// samples), attributed to the interval's end reading — so the first reading only seeds the integral
/// and N readings produce N1 consumption rows.
/// <para>
/// The value is treated as a rate expressed <em>per hour</em> in the meter's own unit, i.e.
/// <c>rate × Δhours = consumption</c>. Power in kW integrated over hours yields kWh; a flow in L/h
/// yields L; m³/h yields m³. A source that reports a native unit (W, L/min) should carry a
/// scale/offset that converts it to this canonical per-hour rate before it is stored as a reading.
/// Signs are preserved (a bidirectional power sensor may go negative on export).
/// </para>
/// </summary>
public sealed class InstantRateNormalizer : IMeterNormalizer
{
public MeterMode Mode => MeterMode.InstantRate;
public IEnumerable<Consumption> Normalize(NormalizationContext context)
{
ArgumentNullException.ThrowIfNull(context);
var readings = context.Readings.OrderBy(r => r.Time).ToList();
Reading? previous = null;
foreach (var reading in readings)
{
if (previous is not null)
{
var hours = (reading.Time - previous.Time).TotalHours;
if (hours > 0)
{
// Trapezoidal integral of the rate over [previous, reading]; the linear mean of
// the two samples is exact for a rate that varies linearly between them.
var amount = (previous.Value + reading.Value) / 2d * hours;
yield return new Consumption
{
MeterId = context.Meter.MeterId,
Time = reading.Time,
Amount = amount,
Kind = ConsumptionKind.Consumption,
Quality = reading.Quality,
ImportBatchId = reading.ImportBatchId,
};
}
}
previous = reading;
}
}
}
@@ -0,0 +1,35 @@
using MeterVault.Core.Domain;
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>One recorded delivery into a consumable store.</summary>
public sealed record DeliveryRow(DateTimeOffset Time, double Amount, string? Unit);
/// <summary>One month of consumable draw.</summary>
public sealed record ConsumableMonth(DateOnly Period, double Consumption);
/// <summary>
/// The oil / consumable panel read model (SDD §8.5) for one <see cref="MeterMode.ConsumableBalance"/>
/// meter: current tank level (physical + volume), fill vs capacity, deliveries, associated burner
/// runtime, effective L/h (fixed or empirical), forecast-to-empty, tariff cost and a monthly series.
/// </summary>
public sealed record ConsumableSummary(
int MeterId,
string Name,
string Unit,
double Capacity,
double? CurrentLevel,
double? PhysicalLevel,
string? PhysicalUnit,
DateTimeOffset? LevelAsOf,
double FillFraction,
double ConsumptionInRange,
double? BurnerHours,
double? EffectiveRate,
double? FixedRate,
TankRateMode RateMode,
double? AveragePerDay,
DateOnly? ForecastEmpty,
double CostInRange,
IReadOnlyList<DeliveryRow> Deliveries,
IReadOnlyList<ConsumableMonth> Months);
@@ -0,0 +1,177 @@
using Dapper;
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Costing;
using MeterVault.Infrastructure.Normalization;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>
/// Read model for the oil / consumable panel (SDD §8.5). Works for any
/// <see cref="MeterMode.ConsumableBalance"/> meter backed by a <see cref="Tank"/> — heating oil is
/// only the reference case. Current level is the latest dipstick reading (cm calibrated to volume)
/// plus deliveries recorded since; the effective burn rate pairs the consumable's litres with the
/// runtime hours of same-energy-type <see cref="MeterMode.RuntimeCounter"/> meters. DbContext
/// factory keeps it Blazor-circuit safe.
/// </summary>
public sealed class ConsumableService(IDbContextFactory<MeterVaultDbContext> contextFactory, CostService costService)
{
private readonly IDbContextFactory<MeterVaultDbContext> _contextFactory = contextFactory;
private readonly CostService _costService = costService;
public async Task<IReadOnlyList<ConsumableSummary>> GetConsumablesAsync(
DateOnly from, DateOnly to, CancellationToken cancellationToken = default)
{
await using var db = await _contextFactory.CreateDbContextAsync(cancellationToken).ConfigureAwait(false);
var meters = await db.Meters.AsNoTracking()
.Where(m => m.Mode == MeterMode.ConsumableBalance)
.ToListAsync(cancellationToken).ConfigureAwait(false);
var summaries = new List<ConsumableSummary>();
foreach (var meter in meters)
{
var tank = await db.Tanks.AsNoTracking().FirstOrDefaultAsync(t => t.MeterId == meter.Id, cancellationToken).ConfigureAwait(false);
if (tank is null)
{
continue;
}
summaries.Add(await BuildAsync(db, meter, tank, from, to, cancellationToken).ConfigureAwait(false));
}
return summaries;
}
private async Task<ConsumableSummary> BuildAsync(
MeterVaultDbContext db, Meter meter, Tank tank, DateOnly from, DateOnly to, CancellationToken cancellationToken)
{
var calibration = MeterConfigFactory.FromMeter(meter, tank).Tank?.Calibration;
var fromUtc = ToUtc(from);
var toUtc = ToUtc(to);
var events = await db.MeterEvents.AsNoTracking()
.Where(e => e.MeterId == meter.Id && (e.EventType == MeterEventType.TankLevel || e.EventType == MeterEventType.Delivery))
.OrderBy(e => e.Time)
.ToListAsync(cancellationToken).ConfigureAwait(false);
var lastLevel = events.LastOrDefault(e => e.EventType == MeterEventType.TankLevel);
double? currentLevel = null;
double? physicalLevel = null;
string? physicalUnit = null;
DateTimeOffset? levelAsOf = null;
if (lastLevel is not null)
{
physicalLevel = lastLevel.Amount;
physicalUnit = lastLevel.Unit;
levelAsOf = lastLevel.Time;
var volume = ToVolume(lastLevel, calibration);
// Deliveries recorded after the last dipstick raise the actual contents.
var since = events.Where(e => e.EventType == MeterEventType.Delivery && e.Time > lastLevel.Time).Sum(e => e.Amount ?? 0);
currentLevel = volume + since;
}
var fillFraction = tank.Capacity > 0 && currentLevel is { } level
? Math.Clamp(level / tank.Capacity, 0, 1)
: 0;
var deliveries = events
.Where(e => e.EventType == MeterEventType.Delivery)
.OrderByDescending(e => e.Time)
.Select(e => new DeliveryRow(e.Time, e.Amount ?? 0, e.Unit))
.ToList();
var consumptionInRange = await SumConsumptionAsync(db, meter.Id, fromUtc, toUtc, cancellationToken).ConfigureAwait(false);
// Burner runtime: same-energy-type runtime meters feed this consumable's L/h analytic.
var runtimeMeterIds = await db.Meters.AsNoTracking()
.Where(m => m.EnergyTypeId == meter.EnergyTypeId && m.Mode == MeterMode.RuntimeCounter)
.Select(m => m.Id)
.ToListAsync(cancellationToken).ConfigureAwait(false);
double? burnerHours = null;
foreach (var id in runtimeMeterIds)
{
burnerHours = (burnerHours ?? 0) + await SumConsumptionAsync(db, id, fromUtc, toUtc, cancellationToken).ConfigureAwait(false);
}
double? effectiveRate = burnerHours is > 0 ? consumptionInRange / burnerHours : null;
double? fixedRate = tank.RateMode == TankRateMode.Fixed ? tank.FixedRate : null;
var (averagePerDay, forecastEmpty) = await ForecastAsync(db, meter.Id, currentLevel, levelAsOf, cancellationToken).ConfigureAwait(false);
var costInRange = (await _costService.GetMeterCostsAsync(meter.Id, fromUtc, toUtc, CostBucket.Month, cancellationToken).ConfigureAwait(false))
.Sum(c => c.Cost);
var months = await MonthlyConsumptionAsync(db, meter.Id, fromUtc, toUtc, cancellationToken).ConfigureAwait(false);
return new ConsumableSummary(
meter.Id, meter.Name, tank.Unit, tank.Capacity, currentLevel, physicalLevel, physicalUnit, levelAsOf,
fillFraction, consumptionInRange, burnerHours, effectiveRate, fixedRate, tank.RateMode,
averagePerDay, forecastEmpty, costInRange, deliveries, months);
}
/// <summary>Recent burn rate and a forecast-to-empty anchored at the last level reading, using
/// the trailing 365 days of consumption (delivery-only early history would otherwise skew it).</summary>
private static async Task<(double? AveragePerDay, DateOnly? ForecastEmpty)> ForecastAsync(
MeterVaultDbContext db, int meterId, double? currentLevel, DateTimeOffset? levelAsOf, CancellationToken cancellationToken)
{
var latest = await db.Consumption.AsNoTracking()
.Where(c => c.MeterId == meterId)
.OrderByDescending(c => c.Time)
.Select(c => (DateTimeOffset?)c.Time)
.FirstOrDefaultAsync(cancellationToken).ConfigureAwait(false);
if (latest is null || currentLevel is not { } level || level <= 0)
{
return (null, null);
}
var windowStart = latest.Value.AddDays(-365);
var recent = await db.Consumption.AsNoTracking()
.Where(c => c.MeterId == meterId && c.Time > windowStart && c.Time <= latest.Value)
.SumAsync(c => (double?)c.Amount, cancellationToken).ConfigureAwait(false) ?? 0;
if (recent <= 0)
{
return (null, null);
}
var averagePerDay = recent / 365.0;
var anchor = levelAsOf ?? latest.Value;
var daysToEmpty = level / averagePerDay;
// Guard against absurd horizons (near-zero burn) that overflow DateTime.
var forecast = daysToEmpty < 365 * 100
? DateOnly.FromDateTime(anchor.UtcDateTime.AddDays(daysToEmpty))
: (DateOnly?)null;
return (averagePerDay, forecast);
}
private static async Task<double> SumConsumptionAsync(
MeterVaultDbContext db, int meterId, DateTimeOffset from, DateTimeOffset to, CancellationToken cancellationToken) =>
await db.Consumption.AsNoTracking()
.Where(c => c.MeterId == meterId && c.Time >= from && c.Time < to)
.SumAsync(c => (double?)c.Amount, cancellationToken).ConfigureAwait(false) ?? 0;
private static async Task<IReadOnlyList<ConsumableMonth>> MonthlyConsumptionAsync(
MeterVaultDbContext db, int meterId, DateTimeOffset from, DateTimeOffset to, CancellationToken cancellationToken)
{
const string sql =
"SELECT (time_bucket(INTERVAL '1 month', \"time\", 'Europe/Berlin') AT TIME ZONE 'Europe/Berlin')::date AS period, " +
"sum(amount) AS amount " +
"FROM consumption WHERE meter_id = @meterId AND \"time\" >= @from AND \"time\" < @to " +
"GROUP BY period ORDER BY period";
var connection = db.Database.GetDbConnection();
var command = new CommandDefinition(sql, new { meterId, from, to }, cancellationToken: cancellationToken);
var rows = await connection.QueryAsync<(DateOnly Period, double Amount)>(command).ConfigureAwait(false);
return rows.Select(r => new ConsumableMonth(r.Period, r.Amount)).ToList();
}
private static double ToVolume(MeterEvent level, MeterVault.Core.Normalization.CalibrationCurve? calibration)
{
var value = level.Amount ?? 0;
var isCentimetres = string.Equals(level.Unit, "cm", StringComparison.OrdinalIgnoreCase);
return isCentimetres && calibration is not null ? calibration.ToVolume(value) : value;
}
private static DateTimeOffset ToUtc(DateOnly date) => new(date.Year, date.Month, date.Day, 0, 0, 0, TimeSpan.Zero);
}
@@ -0,0 +1,26 @@
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>A node in the flow graph: a meter, or a synthetic "Other/unmetered" remainder.</summary>
public sealed record FlowNode(string Id, string Label, double Value, int Depth, string? ColorHex, bool IsOther, int? MeterId);
/// <summary>A directed flow edge with the quantity that flows along it, in the energy type's base unit.</summary>
public sealed record FlowLink(string From, string To, double Value);
/// <summary>
/// The per-energy-type flow graph (SDD-style topology view): meters as nodes sized by consumption,
/// directed edges sized by the flow along each configured link, plus "Other" remainders where an
/// upstream meter's flow isn't fully accounted for by its sub-meters. Rendered as a Sankey diagram.
/// </summary>
public sealed record FlowGraph(
short EnergyTypeId,
string EnergyType,
string Unit,
double Total,
IReadOnlyList<FlowNode> Nodes,
IReadOnlyList<FlowLink> Links)
{
public bool HasData => Nodes.Count > 0;
/// <summary>True when meters are actually chained (not just a flat, unlinked list).</summary>
public bool HasChain => Links.Count > 0;
}
+158
View File
@@ -0,0 +1,158 @@
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>
/// Builds the per-energy-type flow graph (Sankey) from the meter topology (<see cref="MeterLink"/>)
/// and consumption over a period. Each meter is a node sized by its consumption; each configured
/// edge carries the downstream meter's consumption (split proportionally when a meter has several
/// upstreams); the unaccounted remainder under a meter becomes a synthetic "Other" node. Nothing is
/// hardcoded per energy type — it works for electricity, water, gas, … alike. DbContext factory
/// keeps it Blazor-circuit safe.
/// </summary>
public sealed class FlowService(IDbContextFactory<MeterVaultDbContext> contextFactory)
{
private const double Epsilon = 0.01;
private readonly IDbContextFactory<MeterVaultDbContext> _contextFactory = contextFactory;
public async Task<FlowGraph> GetFlowAsync(short energyTypeId, DateOnly from, DateOnly to, CancellationToken cancellationToken = default)
{
await using var db = await _contextFactory.CreateDbContextAsync(cancellationToken).ConfigureAwait(false);
var energyType = await db.EnergyTypes.AsNoTracking().FirstOrDefaultAsync(t => t.Id == energyTypeId, cancellationToken).ConfigureAwait(false);
var meters = await db.Meters.AsNoTracking().Where(m => m.EnergyTypeId == energyTypeId).ToListAsync(cancellationToken).ConfigureAwait(false);
if (energyType is null || meters.Count == 0)
{
return new FlowGraph(energyTypeId, energyType?.DisplayName ?? "", energyType?.BaseUnit ?? "", 0, [], []);
}
var meterIds = meters.Select(m => m.Id).ToHashSet();
var fromUtc = ToUtc(from);
var toUtc = ToUtc(to);
// A meter's flow value is its throughput: consumption OR generation output — so a generation
// meter (solar) can act as a source feeding downstream meters (grid + solar → house). A meter
// is normally one kind, so summing both kinds is that meter's flow. Negatives (savings/balance
// virtual meters) are clamped to 0 — a flow ribbon can't be negative.
var sums = await db.Consumption.AsNoTracking()
.Where(c => c.Time >= fromUtc && c.Time < toUtc)
.GroupBy(c => c.MeterId)
.Select(g => new { MeterId = g.Key, Total = g.Sum(x => x.Amount) })
.ToListAsync(cancellationToken).ConfigureAwait(false);
var value = sums.Where(s => meterIds.Contains(s.MeterId)).ToDictionary(s => s.MeterId, s => Math.Max(0, s.Total));
double V(int id) => value.GetValueOrDefault(id);
var links = await db.MeterLinks.AsNoTracking()
.Where(l => meterIds.Contains(l.FromMeterId) && meterIds.Contains(l.ToMeterId))
.ToListAsync(cancellationToken).ConfigureAwait(false);
var parents = meters.ToDictionary(m => m.Id, _ => new List<int>());
var children = meters.ToDictionary(m => m.Id, _ => new List<int>());
foreach (var link in links)
{
children[link.FromMeterId].Add(link.ToMeterId);
parents[link.ToMeterId].Add(link.FromMeterId);
}
var depth = ComputeDepths(meters.Select(m => m.Id).ToList(), parents, children);
// Aggregate ("sum") meters: a Virtual-mode meter has no measurements of its own — in the flow
// it is the sum of its upstream meters (e.g. "Sum Solar" = Solar 1 + Solar 2). Resolve these in
// topological (depth) order so each aggregate sees its already-resolved upstream values.
var aggregates = meters.Where(m => m.Mode == MeterMode.Virtual).Select(m => m.Id).ToHashSet();
foreach (var id in meters.Select(m => m.Id).OrderBy(id => depth.GetValueOrDefault(id)))
{
if (aggregates.Contains(id))
{
value[id] = parents[id].Sum(V);
}
}
// Link value: a child's consumption flows in from its parent(s); with several parents it is
// split proportionally to the parents' own consumption (equal split if those are all zero).
var flowLinks = new List<FlowLink>();
var outgoingByParent = meters.ToDictionary(m => m.Id, _ => 0d);
foreach (var (childId, parentIds) in parents)
{
if (parentIds.Count == 0)
{
continue;
}
var parentTotal = parentIds.Sum(V);
foreach (var parentId in parentIds)
{
var share = parentIds.Count == 1 ? 1d
: parentTotal > Epsilon ? V(parentId) / parentTotal
: 1d / parentIds.Count;
var linkValue = V(childId) * share;
if (linkValue > Epsilon)
{
flowLinks.Add(new FlowLink(NodeId(parentId), NodeId(childId), linkValue));
outgoingByParent[parentId] += linkValue;
}
}
}
var nodes = new List<FlowNode>();
foreach (var meter in meters)
{
// Keep a meter node if it carries flow or participates in the topology.
if (V(meter.Id) <= Epsilon && children[meter.Id].Count == 0 && parents[meter.Id].Count == 0)
{
continue;
}
nodes.Add(new FlowNode(NodeId(meter.Id), meter.Name, V(meter.Id), depth.GetValueOrDefault(meter.Id), energyType.ColorHex, false, meter.Id));
// Unaccounted remainder under a meter with sub-meters → "Other".
if (children[meter.Id].Count > 0)
{
var remainder = V(meter.Id) - outgoingByParent[meter.Id];
if (remainder > Epsilon)
{
var otherId = $"other{meter.Id}";
nodes.Add(new FlowNode(otherId, $"Other ({meter.Name})", remainder, depth.GetValueOrDefault(meter.Id) + 1, "#78909C", true, null));
flowLinks.Add(new FlowLink(NodeId(meter.Id), otherId, remainder));
}
}
}
var total = meters.Where(m => parents[m.Id].Count == 0).Sum(m => V(m.Id));
return new FlowGraph(energyTypeId, energyType.DisplayName, energyType.BaseUnit, total, nodes, flowLinks);
}
/// <summary>Longest-path depth from the roots (Kahn topological relaxation); robust to stray cycles.</summary>
private static Dictionary<int, int> ComputeDepths(
List<int> ids, Dictionary<int, List<int>> parents, Dictionary<int, List<int>> children)
{
var depth = ids.ToDictionary(id => id, _ => 0);
var indegree = ids.ToDictionary(id => id, id => parents[id].Count);
var queue = new Queue<int>(ids.Where(id => indegree[id] == 0));
var processed = 0;
while (queue.Count > 0)
{
var node = queue.Dequeue();
processed++;
foreach (var child in children[node])
{
depth[child] = Math.Max(depth[child], depth[node] + 1);
if (--indegree[child] == 0)
{
queue.Enqueue(child);
}
}
}
// Any nodes left (a cycle) keep depth 0 — the admin prevents cycles, this is just a guard.
return depth;
}
private static string NodeId(int meterId) => $"m{meterId}";
private static DateTimeOffset ToUtc(DateOnly date) => new(date.Year, date.Month, date.Day, 0, 0, 0, TimeSpan.Zero);
}
@@ -0,0 +1,47 @@
using MeterVault.Core.Domain;
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>A raw reading row for the meter-detail table.</summary>
public sealed record ReadingRow(DateTimeOffset Time, double Value, ReadingQuality Quality, ReadingFlags Flags);
/// <summary>A normalized consumption row for the meter-detail table.</summary>
public sealed record ConsumptionDetailRow(DateTimeOffset Time, double Amount, ConsumptionKind Kind, ReadingQuality Quality);
/// <summary>A meter lifecycle/correction event row.</summary>
public sealed record EventRow(DateTimeOffset Time, MeterEventType Type, double? Amount, double? PrevValue, double? NewValue, string? Unit, string? Notes);
/// <summary>A tariff applicable to the meter (own / energy-type / global scope), for the timeline.</summary>
public sealed record TariffRow(TariffScope Scope, int? ScopeId, TariffComponent Component, double Value, string Unit, DateOnly ValidFrom, DateOnly? ValidTo);
/// <summary>
/// The meter-detail read model (SDD §8.6): identity, register span, totals, recent raw readings
/// and normalized consumption (measured-vs-estimated markers via quality), the applicable tariff
/// timeline, and lifecycle events (swaps/deliveries/corrections). Source management loads the
/// source entities directly (they are editable), so it is not part of this read model.
/// </summary>
public sealed record MeterDetailView(
int Id,
string Name,
string EnergyType,
MeterMode Mode,
string Unit,
string? Location,
string? SerialNumber,
string? Manufacturer,
string? Model,
double InitialBaseline,
bool IsActive,
int ReadingCount,
int ConsumptionCount,
DateTimeOffset? FirstReadingTime,
DateTimeOffset? LastReadingTime,
double? FirstReadingValue,
double? LastReadingValue,
double TotalConsumption,
double TotalGeneration,
IReadOnlyList<ReadingRow> RecentReadings,
IReadOnlyList<ConsumptionDetailRow> RecentConsumption,
IReadOnlyList<EventRow> Events,
IReadOnlyList<TariffRow> Tariffs,
int SourceCount);
@@ -0,0 +1,83 @@
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>
/// Read model for the meter-detail view (SDD §8.6). Bounds the raw-reading and consumption pulls
/// (this is the one place the UI touches raw rows) and gathers source status, the applicable tariff
/// timeline and lifecycle events. DbContext factory keeps it Blazor-circuit safe.
/// </summary>
public sealed class MeterDetailService(IDbContextFactory<MeterVaultDbContext> contextFactory)
{
private const int MaxRows = 200;
private readonly IDbContextFactory<MeterVaultDbContext> _contextFactory = contextFactory;
public async Task<MeterDetailView?> GetAsync(int meterId, CancellationToken cancellationToken = default)
{
await using var db = await _contextFactory.CreateDbContextAsync(cancellationToken).ConfigureAwait(false);
var meter = await db.Meters.AsNoTracking()
.Include(m => m.EnergyType)
.Include(m => m.Sources)
.FirstOrDefaultAsync(m => m.Id == meterId, cancellationToken).ConfigureAwait(false);
if (meter is null)
{
return null;
}
var readingCount = await db.Readings.AsNoTracking().CountAsync(r => r.MeterId == meterId, cancellationToken).ConfigureAwait(false);
var consumptionCount = await db.Consumption.AsNoTracking().CountAsync(c => c.MeterId == meterId, cancellationToken).ConfigureAwait(false);
var first = await db.Readings.AsNoTracking().Where(r => r.MeterId == meterId)
.OrderBy(r => r.Time).Select(r => new { r.Time, r.Value })
.FirstOrDefaultAsync(cancellationToken).ConfigureAwait(false);
var last = await db.Readings.AsNoTracking().Where(r => r.MeterId == meterId)
.OrderByDescending(r => r.Time).Select(r => new { r.Time, r.Value })
.FirstOrDefaultAsync(cancellationToken).ConfigureAwait(false);
var totalConsumption = await db.Consumption.AsNoTracking()
.Where(c => c.MeterId == meterId && c.Kind == ConsumptionKind.Consumption)
.SumAsync(c => (double?)c.Amount, cancellationToken).ConfigureAwait(false) ?? 0;
var totalGeneration = await db.Consumption.AsNoTracking()
.Where(c => c.MeterId == meterId && c.Kind == ConsumptionKind.Generation)
.SumAsync(c => (double?)c.Amount, cancellationToken).ConfigureAwait(false) ?? 0;
var recentReadings = await db.Readings.AsNoTracking()
.Where(r => r.MeterId == meterId)
.OrderByDescending(r => r.Time).Take(MaxRows)
.Select(r => new ReadingRow(r.Time, r.Value, r.Quality, r.Flags))
.ToListAsync(cancellationToken).ConfigureAwait(false);
var recentConsumption = await db.Consumption.AsNoTracking()
.Where(c => c.MeterId == meterId)
.OrderByDescending(c => c.Time).Take(MaxRows)
.Select(c => new ConsumptionDetailRow(c.Time, c.Amount, c.Kind, c.Quality))
.ToListAsync(cancellationToken).ConfigureAwait(false);
var events = await db.MeterEvents.AsNoTracking()
.Where(e => e.MeterId == meterId)
.OrderByDescending(e => e.Time)
.Select(e => new EventRow(e.Time, e.EventType, e.Amount, e.PrevValue, e.NewValue, e.Unit, e.Notes))
.ToListAsync(cancellationToken).ConfigureAwait(false);
var energyTypeId = meter.EnergyTypeId;
var tariffs = await db.Tariffs.AsNoTracking()
.Where(t => t.ScopeType == TariffScope.Global
|| (t.ScopeType == TariffScope.EnergyType && t.ScopeId == energyTypeId)
|| (t.ScopeType == TariffScope.Meter && t.ScopeId == meterId))
.OrderBy(t => t.Component).ThenBy(t => t.ValidFrom)
.Select(t => new TariffRow(t.ScopeType, t.ScopeId, t.Component, t.Value, t.Unit, t.ValidFrom, t.ValidTo))
.ToListAsync(cancellationToken).ConfigureAwait(false);
return new MeterDetailView(
meter.Id, meter.Name, meter.EnergyType?.DisplayName ?? "—", meter.Mode, meter.Unit,
meter.Location, meter.SerialNumber, meter.Manufacturer, meter.Model, meter.InitialBaseline, meter.IsActive,
readingCount, consumptionCount,
first?.Time, last?.Time, first?.Value, last?.Value,
totalConsumption, totalGeneration,
recentReadings, recentConsumption, events, tariffs, meter.Sources.Count);
}
}
@@ -0,0 +1,37 @@
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>One month of the PV panel: generation, and (when role-tagged meters exist) the
/// self-consumption / grid-draw / savings split that reproduces the sheet's Netz-Einsparung column.</summary>
public sealed record SolarMonth(
DateOnly Period,
double Generation,
double? SelfConsumption,
double? GridImport,
double? TotalLoad,
double? Savings);
/// <summary>Per-generation-meter total over the selected period (for the ranked list).</summary>
public sealed record GenerationMeterRow(int MeterId, string Name, double Generation);
/// <summary>
/// The PV / solar panel read model (SDD §8.4): total generation plus, when the install has tagged
/// a <c>total_load</c> and <c>grid_import</c> meter, self-consumption, autarky %, self-consumption %
/// and savings (Ersparnis). Derived metrics are null when no role config exists.
/// </summary>
public sealed record SolarSummary(
double Generation,
double? TotalLoad,
double? GridImport,
double? SelfConsumption,
double? Autarky,
double? SelfConsumptionRatio,
double? Savings,
IReadOnlyList<GenerationMeterRow> Meters,
IReadOnlyList<SolarMonth> Months)
{
/// <summary>True when the install has the role-tagged meters needed for self-consumption metrics.</summary>
public bool HasLoadContext => TotalLoad is not null && GridImport is not null;
/// <summary>True when at least one generation meter exists.</summary>
public bool HasGeneration => Meters.Count > 0;
}
@@ -0,0 +1,116 @@
using Dapper;
using MeterVault.Core.Costing;
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
namespace MeterVault.Infrastructure.Dashboard;
/// <summary>
/// Read model for the PV / solar panel (SDD §8.4). Generation comes from every
/// <see cref="MeterMode.GenerationCounter"/> meter; self-consumption / autarky / savings are derived
/// from the meters tagged <see cref="MeterRoles.TotalLoad"/> and <see cref="MeterRoles.GridImport"/>
/// — so nothing is hardcoded by meter name. Reads only the aggregated consumption hypertable
/// (monthly, Europe/Berlin) via Dapper; safe from a Blazor circuit via a DbContext factory.
/// </summary>
public sealed class SolarService(IDbContextFactory<MeterVaultDbContext> contextFactory)
{
private readonly IDbContextFactory<MeterVaultDbContext> _contextFactory = contextFactory;
public async Task<SolarSummary> GetSummaryAsync(DateOnly from, DateOnly to, CancellationToken cancellationToken = default)
{
await using var db = await _contextFactory.CreateDbContextAsync(cancellationToken).ConfigureAwait(false);
var meters = await db.Meters.AsNoTracking().ToListAsync(cancellationToken).ConfigureAwait(false);
var generationMeters = meters.Where(m => m.Mode == MeterMode.GenerationCounter).ToList();
var loadMeter = meters.FirstOrDefault(m => MeterMeta.Role(m.Meta) == MeterRoles.TotalLoad);
var gridMeter = meters.FirstOrDefault(m => MeterMeta.Role(m.Meta) == MeterRoles.GridImport);
var fromUtc = ToUtc(from);
var toUtc = ToUtc(to);
// Monthly generation per generation meter.
var genByMeter = new Dictionary<int, IReadOnlyDictionary<DateOnly, double>>();
foreach (var meter in generationMeters)
{
genByMeter[meter.Id] = await MonthlyAsync(db, meter.Id, fromUtc, toUtc, cancellationToken).ConfigureAwait(false);
}
var loadByMonth = loadMeter is null
? null
: await MonthlyAsync(db, loadMeter.Id, fromUtc, toUtc, cancellationToken).ConfigureAwait(false);
var gridByMonth = gridMeter is null
? null
: await MonthlyAsync(db, gridMeter.Id, fromUtc, toUtc, cancellationToken).ConfigureAwait(false);
var tariffs = gridMeter is null
? []
: await db.Tariffs.AsNoTracking().ToListAsync(cancellationToken).ConfigureAwait(false);
// Union of all months that carry any data.
var periods = new SortedSet<DateOnly>();
foreach (var series in genByMeter.Values)
{
periods.UnionWith(series.Keys);
}
if (loadByMonth is not null)
{
periods.UnionWith(loadByMonth.Keys);
}
var months = new List<SolarMonth>();
foreach (var period in periods)
{
var generation = genByMeter.Values.Sum(s => s.GetValueOrDefault(period));
double? load = loadByMonth?.GetValueOrDefault(period);
double? grid = gridByMonth?.GetValueOrDefault(period);
double? self = load is not null && grid is not null ? load - grid : null;
double? savings = null;
if (self is { } selfValue && gridMeter is not null)
{
var price = TariffResolver.ResolveValue(
tariffs, TariffComponent.UnitPrice, gridMeter.Id, gridMeter.EnergyTypeId,
new DateOnly(period.Year, period.Month, 15));
savings = selfValue * price;
}
months.Add(new SolarMonth(period, generation, self, grid, load, savings));
}
var meterRows = generationMeters
.Select(m => new GenerationMeterRow(m.Id, m.Name, genByMeter[m.Id].Values.Sum()))
.OrderByDescending(r => r.Generation)
.ToList();
var totalGeneration = meterRows.Sum(r => r.Generation);
double? totalLoad = loadByMonth?.Values.Sum();
double? totalGrid = gridByMonth?.Values.Sum();
double? totalSelf = totalLoad is not null && totalGrid is not null ? totalLoad - totalGrid : null;
double? autarky = totalSelf is not null && totalLoad is > 0 ? totalSelf / totalLoad : null;
double? selfRatio = totalSelf is not null && totalGeneration > 0 ? totalSelf / totalGeneration : null;
double? totalSavings = months.Any(m => m.Savings is not null) ? months.Sum(m => m.Savings ?? 0) : null;
return new SolarSummary(
totalGeneration, totalLoad, totalGrid, totalSelf, autarky, selfRatio, totalSavings, meterRows, months);
}
private static async Task<IReadOnlyDictionary<DateOnly, double>> MonthlyAsync(
MeterVaultDbContext db, int meterId, DateTimeOffset from, DateTimeOffset to, CancellationToken cancellationToken)
{
const string sql =
"SELECT (time_bucket(INTERVAL '1 month', \"time\", 'Europe/Berlin') AT TIME ZONE 'Europe/Berlin')::date AS period, " +
"sum(amount) AS amount " +
"FROM consumption WHERE meter_id = @meterId AND \"time\" >= @from AND \"time\" < @to " +
"GROUP BY period";
var connection = db.Database.GetDbConnection();
var command = new CommandDefinition(sql, new { meterId, from, to }, cancellationToken: cancellationToken);
var rows = await connection.QueryAsync<(DateOnly Period, double Amount)>(command).ConfigureAwait(false);
return rows.ToDictionary(r => r.Period, r => r.Amount);
}
private static DateTimeOffset ToUtc(DateOnly date) => new(date.Year, date.Month, date.Day, 0, 0, 0, TimeSpan.Zero);
}
@@ -33,8 +33,16 @@ public static class DependencyInjection
services.AddScoped<ReferenceDataImporter>();
services.AddScoped<IngestionService>();
services.AddScoped<MqttMessageRouter>();
// HttpClient + HA tester are available even with live ingestion off, so the admin
// "Test connection" works without the background workers running.
services.AddHttpClient();
services.AddScoped<HaConnectionTester>();
services.AddScoped<Costing.CostService>();
services.AddScoped<Dashboard.DashboardService>();
services.AddScoped<Dashboard.SolarService>();
services.AddScoped<Dashboard.ConsumableService>();
services.AddScoped<Dashboard.MeterDetailService>();
services.AddScoped<Dashboard.FlowService>();
services.AddScoped<Backup.ExportService>();
return services;
@@ -49,6 +57,7 @@ public static class DependencyInjection
services.AddHttpClient();
services.AddHostedService<MqttIngestionWorker>();
services.AddHostedService<HomeAssistantWorker>();
services.AddHostedService<HomeAssistantWebSocketWorker>();
return services;
}
}
+6
View File
@@ -222,6 +222,12 @@ public sealed class CsvImporter
return true;
}
/// <summary>
/// Reads the raw CSV grid (no profile applied) so the import wizard can show a column preview
/// and let the user map columns before staging. Rows are ragged (their own field counts).
/// </summary>
public static IReadOnlyList<string[]> ReadRawRows(TextReader reader) => ReadRows(reader);
internal static List<string[]> ReadRows(TextReader reader)
{
var config = new CsvConfiguration(CultureInfo.InvariantCulture)
@@ -18,6 +18,7 @@ public sealed class ImportService(MeterVaultDbContext db, NormalizationService n
StagedImport staged, string? sourceName, string? mappingJson, CancellationToken cancellationToken = default)
{
ArgumentNullException.ThrowIfNull(staged);
GuardDuplicateReadings(staged);
await using var tx = await _db.Database.BeginTransactionAsync(cancellationToken).ConfigureAwait(false);
@@ -89,6 +90,31 @@ public sealed class ImportService(MeterVaultDbContext db, NormalizationService n
await tx.CommitAsync(cancellationToken).ConfigureAwait(false);
}
/// <summary>
/// A reading is keyed by (meter, time), so a staged set holding two rows for one meter at one
/// timestamp cannot be written. Usually a mapping that points two source columns at one meter —
/// report it in those terms instead of letting EF surface a change-tracker error.
/// </summary>
private static void GuardDuplicateReadings(StagedImport staged)
{
var duplicates = staged.Readings
.GroupBy(r => (r.MeterId, r.Time))
.Where(g => g.Count() > 1)
.ToList();
if (duplicates.Count == 0)
{
return;
}
var sample = string.Join("; ", duplicates.Take(3)
.Select(g => $"meter {g.Key.MeterId} at {g.Key.Time:yyyy-MM-dd}"));
throw new InvalidOperationException(
$"{duplicates.Count} duplicate reading(s): the same meter is written twice at the same " +
$"timestamp ({sample}). Check that no two mapped columns target the same meter.");
}
private static IEnumerable<int> AffectedMeters(StagedImport staged) =>
staged.Readings.Select(r => r.MeterId)
.Concat(staged.Events.Select(e => e.MeterId))
@@ -33,6 +33,10 @@ public sealed class ReferenceDataImporter(MeterVaultDbContext db, ImportService
return;
}
// Fail fast BEFORE creating the marker meter: if the CSVs are missing (e.g. not shipped in
// the image) we must not seed a half-loaded dataset that IsLoadedAsync then reports as done.
EnsureSampleFilesPresent(sampleDataDirectory);
await DatabaseSeeder.SeedAsync(_db, cancellationToken).ConfigureAwait(false);
var electricity = await EnergyTypeIdAsync("electricity", cancellationToken).ConfigureAwait(false);
@@ -47,8 +51,15 @@ public sealed class ReferenceDataImporter(MeterVaultDbContext db, ImportService
var wasser = Meter("Zähler Wasser", water, MeterMode.CumulativeCounter, "m3", initialBaseline: 820);
var oilTank = Meter("Öltank", oil, MeterMode.ConsumableBalance, "L");
var burner = Meter("Brenner", oil, MeterMode.RuntimeCounter, "h");
// A virtual "sum" meter: no readings of its own — in the flow view it equals Solar 1 + Solar 2.
var sumSolar = Meter("Summe Solar", electricity, MeterMode.Virtual, "kWh");
_db.Meters.AddRange(haus, netz, auto, solar1, solar2, wasser, oilTank, burner);
// Tag the PV meters' roles (config, not hardcoded names) so the Solar panel can derive
// self-consumption = total_load grid_import and savings generically (SDD §8.4).
haus.Meta = MeterMeta.WithRole(haus.Meta, MeterRoles.TotalLoad);
netz.Meta = MeterMeta.WithRole(netz.Meta, MeterRoles.GridImport);
_db.Meters.AddRange(haus, netz, auto, solar1, solar2, wasser, oilTank, burner, sumSolar);
await _db.SaveChangesAsync(cancellationToken).ConfigureAwait(false);
_db.Tanks.Add(new Tank
@@ -59,6 +70,16 @@ public sealed class ReferenceDataImporter(MeterVaultDbContext db, ImportService
Calibration = $"{{\"volumePerUnit\":{ReferenceProfiles.OilLitresPerCm.ToString(System.Globalization.CultureInfo.InvariantCulture)}}}",
});
// Demo flow chain (electricity /energy view): Solar 1 + Solar 2 → Summe Solar; then
// Grid + Summe Solar → Haus → Auto + "Other". The remainder under Grid/Summe Solar is the
// input that didn't reach the house load (solar export / battery / inverter losses).
_db.MeterLinks.AddRange(
new MeterLink { FromMeterId = solar1.Id, ToMeterId = sumSolar.Id },
new MeterLink { FromMeterId = solar2.Id, ToMeterId = sumSolar.Id },
new MeterLink { FromMeterId = netz.Id, ToMeterId = haus.Id },
new MeterLink { FromMeterId = sumSolar.Id, ToMeterId = haus.Id },
new MeterLink { FromMeterId = haus.Id, ToMeterId = auto.Id });
AddElectricityTariffs(electricity);
AddTariff(TariffScope.EnergyType, water, 5.00, "EUR/m3", new DateOnly(2022, 11, 1));
// Strom and Wasser costs are computed from meters + tariffs; only Heizung comes from the
@@ -86,12 +107,32 @@ public sealed class ReferenceDataImporter(MeterVaultDbContext db, ImportService
Columns = [new ColumnMapping { Index = 3, Role = MappingRole.ManualCost, CategoryId = heizungCategoryId }],
};
private static readonly string[] RequiredFiles = [ElectricityFile, WaterFile, OilFile, CostsFile];
/// <summary>Throws a clear error if the sample directory or any reference CSV is missing, so a
/// failed load surfaces to the user instead of silently seeding meters with no data.</summary>
private static void EnsureSampleFilesPresent(string sampleDataDirectory)
{
if (!Directory.Exists(sampleDataDirectory))
{
throw new DirectoryNotFoundException(
$"Reference-data directory not found: '{sampleDataDirectory}'. The bundled Energiebilanz CSVs are missing from this deployment.");
}
var missing = RequiredFiles.Where(f => !File.Exists(Path.Combine(sampleDataDirectory, f))).ToList();
if (missing.Count > 0)
{
throw new FileNotFoundException(
$"Reference CSV(s) missing from '{sampleDataDirectory}': {string.Join(", ", missing)}.");
}
}
private async Task ImportSheetAsync(string dir, string file, MappingProfile profile, CancellationToken cancellationToken)
{
var path = Path.Combine(dir, file);
if (!File.Exists(path))
{
return;
throw new FileNotFoundException($"Reference CSV disappeared during import: '{path}'.", path);
}
StagedImport staged;
@@ -46,6 +46,8 @@ public sealed record EndpointConfig
}
}
public string ToJson() => JsonSerializer.Serialize(this, Options);
public string? ResolveUsername() => Resolve(UsernameEnv);
public string? ResolvePassword() => Resolve(PasswordEnv);
@@ -0,0 +1,67 @@
using System.Net.Http.Headers;
using Microsoft.Extensions.Logging;
namespace MeterVault.Infrastructure.Ingestion;
/// <summary>Outcome of a Home Assistant connectivity test.</summary>
public sealed record HaTestResult(bool Ok, string Message, double? SampleValue = null);
/// <summary>
/// Verifies a Home Assistant connection from the admin UI: checks the base URL + resolved token
/// against <c>GET /api/</c>, and optionally reads one entity's state. Confirms the app can actually
/// read HA before a source is relied upon (SDD §6.2). Token is resolved by reference (env var).
/// </summary>
public sealed class HaConnectionTester(IHttpClientFactory httpClientFactory, ILogger<HaConnectionTester> logger)
{
private readonly IHttpClientFactory _httpClientFactory = httpClientFactory;
private readonly ILogger<HaConnectionTester> _logger = logger;
public async Task<HaTestResult> TestAsync(
string? baseUrl, string? tokenEnv, string? entityId, CancellationToken cancellationToken = default)
{
if (string.IsNullOrWhiteSpace(baseUrl))
{
return new HaTestResult(false, "Base URL is required.");
}
if (string.IsNullOrWhiteSpace(tokenEnv))
{
return new HaTestResult(false, "Token env-var name is required (the token is resolved from it at runtime).");
}
var token = Environment.GetEnvironmentVariable(tokenEnv);
if (string.IsNullOrWhiteSpace(token))
{
return new HaTestResult(false, $"Environment variable '{tokenEnv}' is not set on the server.");
}
var client = _httpClientFactory.CreateClient();
client.Timeout = TimeSpan.FromSeconds(10);
try
{
using var request = new HttpRequestMessage(HttpMethod.Get, $"{baseUrl.TrimEnd('/')}/api/");
request.Headers.Authorization = new AuthenticationHeaderValue("Bearer", token);
using var response = await client.SendAsync(request, cancellationToken).ConfigureAwait(false);
if (!response.IsSuccessStatusCode)
{
return new HaTestResult(false, $"HA returned {(int)response.StatusCode} {response.ReasonPhrase}.");
}
if (string.IsNullOrWhiteSpace(entityId))
{
return new HaTestResult(true, "Connected — Home Assistant API reachable and token accepted.");
}
var state = await new HaStateClient(client).GetStateAsync(baseUrl, token, entityId, null, cancellationToken).ConfigureAwait(false);
return state is { } value
? new HaTestResult(true, $"Connected — {entityId} = {value.Value}.", value.Value)
: new HaTestResult(false, $"Connected, but '{entityId}' has no numeric state (unavailable/unknown or non-numeric).");
}
catch (Exception ex)
{
_logger.LogWarning(ex, "Home Assistant connection test failed for {BaseUrl}", baseUrl);
return new HaTestResult(false, $"Connection failed: {ex.Message}");
}
}
}
@@ -0,0 +1,54 @@
using System.Text.Json;
using System.Text.Json.Serialization;
namespace MeterVault.Infrastructure.Ingestion;
/// <summary>
/// The parsed <see cref="Core.Domain.IngestionEndpoint.Config"/> JSON for a Home Assistant
/// connection (SDD §6.2). The long-lived token is stored by reference only: <see cref="TokenEnv"/>
/// names an environment variable resolved at runtime — never the token itself (SDD §6.4).
/// </summary>
public sealed record HaEndpointConfig
{
private static readonly JsonSerializerOptions Options = new()
{
PropertyNameCaseInsensitive = true,
DefaultIgnoreCondition = JsonIgnoreCondition.WhenWritingNull,
};
/// <summary>Base URL of the Home Assistant instance, e.g. <c>http://homeassistant.local:8123</c>.</summary>
public string? BaseUrl { get; init; }
/// <summary>Name of the environment variable holding the long-lived access token.</summary>
public string? TokenEnv { get; init; }
/// <summary>
/// When true, a persistent WebSocket subscription pushes state changes in real time
/// (<see cref="HomeAssistantWebSocketWorker"/>); when false (default) the REST poll worker
/// samples on each source's interval. An endpoint is handled by exactly one of the two.
/// </summary>
public bool UseWebSocket { get; init; }
public static HaEndpointConfig Parse(string? json)
{
if (string.IsNullOrWhiteSpace(json))
{
return new HaEndpointConfig();
}
try
{
return JsonSerializer.Deserialize<HaEndpointConfig>(json, Options) ?? new HaEndpointConfig();
}
catch (JsonException)
{
return new HaEndpointConfig();
}
}
public string ToJson() => JsonSerializer.Serialize(this, Options);
/// <summary>Resolves the token from the referenced environment variable (null if unset).</summary>
public string? ResolveToken() =>
string.IsNullOrWhiteSpace(TokenEnv) ? null : Environment.GetEnvironmentVariable(TokenEnv);
}
@@ -31,10 +31,16 @@ public sealed class HaStateClient(HttpClient httpClient)
return ParseState(await JsonDocument.ParseAsync(stream, cancellationToken: cancellationToken).ConfigureAwait(false), attribute);
}
internal static HaState? ParseState(JsonDocument document, string? attribute)
{
var root = document.RootElement;
internal static HaState? ParseState(JsonDocument document, string? attribute) =>
ParseStateElement(document.RootElement, attribute);
/// <summary>
/// Extracts a numeric value + last-updated time from a Home Assistant state object (the REST
/// entity payload, or a <c>new_state</c> from a WebSocket <c>state_changed</c> event — they share
/// the same shape). Returns null for <c>unavailable</c>/<c>unknown</c>/non-numeric states.
/// </summary>
internal static HaState? ParseStateElement(JsonElement root, string? attribute)
{
double value;
if (string.IsNullOrWhiteSpace(attribute))
{
@@ -0,0 +1,70 @@
using System.Text.Json;
namespace MeterVault.Infrastructure.Ingestion;
/// <summary>
/// Pure helpers for the Home Assistant WebSocket API (<c>/api/websocket</c>): the auth handshake
/// (<c>auth_required</c> → <c>auth</c> → <c>auth_ok</c>), subscribing to <c>state_changed</c> events,
/// and reading the entity id + <c>new_state</c> out of an event frame. No I/O — the transport lives
/// in <see cref="HomeAssistantWebSocketWorker"/>, which keeps this unit-testable.
/// </summary>
internal static class HaWebSocketProtocol
{
/// <summary>Derives the WebSocket endpoint from an HTTP base URL (http→ws, https→wss, path <c>/api/websocket</c>).</summary>
public static Uri WebSocketUri(string baseUrl)
{
var http = new Uri(baseUrl.TrimEnd('/') + "/api/websocket", UriKind.Absolute);
var scheme = http.Scheme.Equals("https", StringComparison.OrdinalIgnoreCase) ? "wss" : "ws";
return new UriBuilder(http) { Scheme = scheme }.Uri;
}
public static string AuthMessage(string token) =>
JsonSerializer.Serialize(new { type = "auth", access_token = token });
public static string SubscribeStateChanged(int id) =>
JsonSerializer.Serialize(new { id, type = "subscribe_events", event_type = "state_changed" });
public static string? MessageType(JsonElement root) =>
root.TryGetProperty("type", out var type) && type.ValueKind == JsonValueKind.String ? type.GetString() : null;
public static bool IsAuthRequired(JsonElement root) => MessageType(root) == "auth_required";
public static bool IsAuthOk(JsonElement root) => MessageType(root) == "auth_ok";
public static bool IsAuthInvalid(JsonElement root) => MessageType(root) == "auth_invalid";
/// <summary>
/// If <paramref name="root"/> is a <c>state_changed</c> event with a numeric-capable
/// <c>new_state</c> object, yields the entity id and that state object. The caller extracts the
/// numeric value (state or a named attribute) per source via
/// <see cref="HaStateClient.ParseStateElement"/>.
/// </summary>
public static bool TryReadStateChanged(JsonElement root, out string entityId, out JsonElement newState)
{
entityId = string.Empty;
newState = default;
if (MessageType(root) != "event"
|| !root.TryGetProperty("event", out var evt)
|| !evt.TryGetProperty("event_type", out var evtType)
|| evtType.GetString() != "state_changed"
|| !evt.TryGetProperty("data", out var data))
{
return false;
}
if (!data.TryGetProperty("entity_id", out var id) || id.ValueKind != JsonValueKind.String)
{
return false;
}
if (!data.TryGetProperty("new_state", out var state) || state.ValueKind != JsonValueKind.Object)
{
return false; // entity removed (new_state null) — nothing to ingest.
}
entityId = id.GetString()!;
newState = state;
return true;
}
}
@@ -0,0 +1,292 @@
using System.Collections.Concurrent;
using System.Net.WebSockets;
using System.Text;
using System.Text.Json;
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
using Microsoft.Extensions.DependencyInjection;
using Microsoft.Extensions.Hosting;
using Microsoft.Extensions.Logging;
namespace MeterVault.Infrastructure.Ingestion;
/// <summary>
/// Real-time Home Assistant ingestion via the WebSocket API (SDD §6.2 push path). For each enabled
/// HA endpoint whose config sets <c>UseWebSocket</c>, holds a persistent connection that authenticates,
/// subscribes to <c>state_changed</c> events, and ingests changes for the endpoint's configured
/// entities as they happen. Reconnects with capped backoff. Endpoints without <c>UseWebSocket</c> stay
/// on the REST poll worker (<see cref="HomeAssistantWorker"/>) — each endpoint is served by exactly one.
/// Tokens are resolved from environment variables named in the endpoint config, never stored plaintext.
/// </summary>
public sealed class HomeAssistantWebSocketWorker(
IServiceScopeFactory scopeFactory,
ILogger<HomeAssistantWebSocketWorker> logger) : BackgroundService
{
private static readonly TimeSpan SuperviseInterval = TimeSpan.FromSeconds(15);
private static readonly TimeSpan InitialBackoff = TimeSpan.FromSeconds(2);
private static readonly TimeSpan MaxBackoff = TimeSpan.FromSeconds(60);
private static readonly TimeSpan EntityMapTtl = TimeSpan.FromSeconds(30);
private readonly IServiceScopeFactory _scopeFactory = scopeFactory;
private readonly ILogger<HomeAssistantWebSocketWorker> _logger = logger;
private readonly ConcurrentDictionary<int, Task> _connections = new();
protected override async Task ExecuteAsync(CancellationToken stoppingToken)
{
using var timer = new PeriodicTimer(SuperviseInterval);
do
{
try
{
await SuperviseAsync(stoppingToken).ConfigureAwait(false);
}
catch (OperationCanceledException) when (stoppingToken.IsCancellationRequested)
{
break;
}
catch (Exception ex)
{
_logger.LogWarning(ex, "Home Assistant WebSocket supervisor tick failed; will retry");
}
}
while (await timer.WaitForNextTickAsync(stoppingToken).ConfigureAwait(false));
}
/// <summary>Starts a connection loop for each WebSocket-enabled endpoint that isn't already running.</summary>
private async Task SuperviseAsync(CancellationToken stoppingToken)
{
List<int> wsEndpointIds;
await using (var scope = _scopeFactory.CreateAsyncScope())
{
var db = scope.ServiceProvider.GetRequiredService<MeterVaultDbContext>();
var endpoints = await db.IngestionEndpoints
.Where(e => e.IsEnabled && e.Type == EndpointType.HomeAssistant)
.ToListAsync(stoppingToken).ConfigureAwait(false);
wsEndpointIds = endpoints
.Where(e => HaEndpointConfig.Parse(e.Config).UseWebSocket)
.Select(e => e.Id)
.ToList();
}
// Reap finished connection loops (endpoint disabled/removed, or terminal failure).
foreach (var id in _connections.Where(kv => kv.Value.IsCompleted).Select(kv => kv.Key).ToList())
{
_connections.TryRemove(id, out _);
}
foreach (var endpointId in wsEndpointIds)
{
// Fire-and-forget: the loop stores its own Task in _connections and self-terminates when
// the endpoint is disabled/removed; the supervisor reaps completed entries above.
_ = _connections.GetOrAdd(endpointId, id => Task.Run(() => RunConnectionAsync(id, stoppingToken), stoppingToken));
}
}
/// <summary>Connect → listen → reconnect loop for one endpoint, until it is disabled or the app stops.</summary>
private async Task RunConnectionAsync(int endpointId, CancellationToken stoppingToken)
{
var backoff = InitialBackoff;
while (!stoppingToken.IsCancellationRequested)
{
HaEndpointConfig config;
string? token;
await using (var scope = _scopeFactory.CreateAsyncScope())
{
var db = scope.ServiceProvider.GetRequiredService<MeterVaultDbContext>();
var endpoint = await db.IngestionEndpoints
.FirstOrDefaultAsync(e => e.Id == endpointId, stoppingToken).ConfigureAwait(false);
if (endpoint is null || !endpoint.IsEnabled)
{
return; // gone/disabled — stop; the supervisor will restart it if it comes back.
}
config = HaEndpointConfig.Parse(endpoint.Config);
if (!config.UseWebSocket)
{
return; // switched to poll mode.
}
token = config.ResolveToken();
}
if (string.IsNullOrWhiteSpace(config.BaseUrl) || string.IsNullOrWhiteSpace(token))
{
_logger.LogWarning("HA WebSocket endpoint {EndpointId} missing base URL or token; retrying", endpointId);
}
else
{
try
{
await ListenAsync(endpointId, config.BaseUrl!, token!, stoppingToken).ConfigureAwait(false);
backoff = InitialBackoff; // clean close → reset backoff.
}
catch (OperationCanceledException) when (stoppingToken.IsCancellationRequested)
{
return;
}
catch (Exception ex)
{
_logger.LogWarning(ex, "HA WebSocket connection to endpoint {EndpointId} dropped; reconnecting", endpointId);
await UpdateEndpointStatusAsync(endpointId, "disconnected", CancellationToken.None).ConfigureAwait(false);
}
}
try
{
await Task.Delay(backoff, stoppingToken).ConfigureAwait(false);
}
catch (OperationCanceledException) when (stoppingToken.IsCancellationRequested)
{
return;
}
backoff = TimeSpan.FromSeconds(Math.Min(MaxBackoff.TotalSeconds, backoff.TotalSeconds * 2));
}
}
private async Task ListenAsync(int endpointId, string baseUrl, string token, CancellationToken stoppingToken)
{
using var ws = new ClientWebSocket();
await ws.ConnectAsync(HaWebSocketProtocol.WebSocketUri(baseUrl), stoppingToken).ConfigureAwait(false);
// Handshake: auth_required → auth → auth_ok.
using (var required = await ReceiveJsonAsync(ws, stoppingToken).ConfigureAwait(false))
{
if (!HaWebSocketProtocol.IsAuthRequired(required.RootElement))
{
// Some setups may not send auth_required first; proceed to auth regardless.
_logger.LogDebug("HA WebSocket did not send auth_required first (type={Type})", HaWebSocketProtocol.MessageType(required.RootElement));
}
}
await SendAsync(ws, HaWebSocketProtocol.AuthMessage(token), stoppingToken).ConfigureAwait(false);
using (var authResult = await ReceiveJsonAsync(ws, stoppingToken).ConfigureAwait(false))
{
if (!HaWebSocketProtocol.IsAuthOk(authResult.RootElement))
{
throw new InvalidOperationException(
$"Home Assistant WebSocket auth failed (type={HaWebSocketProtocol.MessageType(authResult.RootElement)}).");
}
}
await SendAsync(ws, HaWebSocketProtocol.SubscribeStateChanged(1), stoppingToken).ConfigureAwait(false);
await UpdateEndpointStatusAsync(endpointId, "connected (ws)", stoppingToken).ConfigureAwait(false);
_logger.LogInformation("HA WebSocket connected for endpoint {EndpointId}", endpointId);
var entityMap = await LoadEntityMapAsync(endpointId, stoppingToken).ConfigureAwait(false);
var mapLoadedAt = DateTimeOffset.UtcNow;
while (!stoppingToken.IsCancellationRequested && ws.State == WebSocketState.Open)
{
using var doc = await ReceiveJsonAsync(ws, stoppingToken).ConfigureAwait(false);
if (!HaWebSocketProtocol.TryReadStateChanged(doc.RootElement, out var entityId, out var newState))
{
continue;
}
if (DateTimeOffset.UtcNow - mapLoadedAt > EntityMapTtl)
{
entityMap = await LoadEntityMapAsync(endpointId, stoppingToken).ConfigureAwait(false);
mapLoadedAt = DateTimeOffset.UtcNow;
}
if (!entityMap.TryGetValue(entityId, out var sources))
{
continue;
}
foreach (var (sourceId, attribute) in sources)
{
if (HaStateClient.ParseStateElement(newState, attribute) is { } state)
{
await IngestAsync(sourceId, state, stoppingToken).ConfigureAwait(false);
}
}
}
}
/// <summary>Maps each configured entity id to the sources (and optional attribute) that read it.</summary>
private async Task<Dictionary<string, List<(int SourceId, string? Attribute)>>> LoadEntityMapAsync(
int endpointId, CancellationToken cancellationToken)
{
await using var scope = _scopeFactory.CreateAsyncScope();
var db = scope.ServiceProvider.GetRequiredService<MeterVaultDbContext>();
var sources = await db.MeterSources.AsNoTracking()
.Where(s => s.IsEnabled && s.SourceType == SourceType.HomeAssistant && s.EndpointId == endpointId)
.ToListAsync(cancellationToken).ConfigureAwait(false);
var map = new Dictionary<string, List<(int, string?)>>(StringComparer.OrdinalIgnoreCase);
foreach (var source in sources)
{
var config = SourceConfig.Parse(source.Config);
if (string.IsNullOrWhiteSpace(config.EntityId))
{
continue;
}
if (!map.TryGetValue(config.EntityId, out var list))
{
map[config.EntityId] = list = [];
}
list.Add((source.Id, config.Attribute));
}
return map;
}
private async Task IngestAsync(int sourceId, HaState state, CancellationToken cancellationToken)
{
await using var scope = _scopeFactory.CreateAsyncScope();
var ingestion = scope.ServiceProvider.GetRequiredService<IngestionService>();
await ingestion.IngestAsync(sourceId, state.Time, state.Value, cancellationToken).ConfigureAwait(false);
}
private async Task UpdateEndpointStatusAsync(int endpointId, string status, CancellationToken cancellationToken)
{
try
{
await using var scope = _scopeFactory.CreateAsyncScope();
var db = scope.ServiceProvider.GetRequiredService<MeterVaultDbContext>();
var endpoint = await db.IngestionEndpoints
.FirstOrDefaultAsync(e => e.Id == endpointId, cancellationToken).ConfigureAwait(false);
if (endpoint is not null)
{
endpoint.LastStatus = status;
endpoint.LastSeenAt = DateTimeOffset.UtcNow;
await db.SaveChangesAsync(cancellationToken).ConfigureAwait(false);
}
}
catch (Exception ex)
{
_logger.LogDebug(ex, "Failed to update HA endpoint {EndpointId} status", endpointId);
}
}
private static Task SendAsync(ClientWebSocket ws, string json, CancellationToken cancellationToken) =>
ws.SendAsync(Encoding.UTF8.GetBytes(json), WebSocketMessageType.Text, endOfMessage: true, cancellationToken);
/// <summary>Reads one (possibly fragmented) text message and parses it as JSON.</summary>
private static async Task<JsonDocument> ReceiveJsonAsync(ClientWebSocket ws, CancellationToken cancellationToken)
{
using var buffer = new MemoryStream();
var chunk = new byte[8192];
WebSocketReceiveResult result;
do
{
result = await ws.ReceiveAsync(chunk, cancellationToken).ConfigureAwait(false);
if (result.MessageType == WebSocketMessageType.Close)
{
throw new InvalidOperationException(
$"Home Assistant closed the WebSocket ({result.CloseStatus}: {result.CloseStatusDescription}).");
}
buffer.Write(chunk, 0, result.Count);
}
while (!result.EndOfMessage);
buffer.Position = 0;
return await JsonDocument.ParseAsync(buffer, cancellationToken: cancellationToken).ConfigureAwait(false);
}
}
@@ -1,5 +1,4 @@
using System.Collections.Concurrent;
using System.Text.Json;
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
@@ -55,9 +54,14 @@ public sealed class HomeAssistantWorker(
var ingestion = scope.ServiceProvider.GetRequiredService<IngestionService>();
var client = new HaStateClient(_httpClientFactory.CreateClient());
var endpoints = await db.IngestionEndpoints
// Endpoints using the WebSocket push path are served by HomeAssistantWebSocketWorker; skip
// them here so a source is never both polled and pushed.
var enabled = await db.IngestionEndpoints
.Where(e => e.IsEnabled && e.Type == EndpointType.HomeAssistant)
.ToDictionaryAsync(e => e.Id, cancellationToken).ConfigureAwait(false);
.ToListAsync(cancellationToken).ConfigureAwait(false);
var endpoints = enabled
.Where(e => !HaEndpointConfig.Parse(e.Config).UseWebSocket)
.ToDictionary(e => e.Id);
if (endpoints.Count == 0)
{
return;
@@ -99,10 +103,8 @@ public sealed class HomeAssistantWorker(
HaStateClient client, IngestionService ingestion, IngestionEndpoint endpoint,
MeterSource source, SourceConfig config, CancellationToken cancellationToken)
{
var endpointConfig = ParseHaEndpoint(endpoint.Config);
var token = string.IsNullOrWhiteSpace(endpointConfig.TokenEnv)
? null
: Environment.GetEnvironmentVariable(endpointConfig.TokenEnv);
var endpointConfig = HaEndpointConfig.Parse(endpoint.Config);
var token = endpointConfig.ResolveToken();
if (string.IsNullOrWhiteSpace(endpointConfig.BaseUrl) || string.IsNullOrWhiteSpace(token)
|| string.IsNullOrWhiteSpace(config.EntityId))
@@ -125,28 +127,4 @@ public sealed class HomeAssistantWorker(
}
}
private static HaEndpoint ParseHaEndpoint(string? json)
{
if (string.IsNullOrWhiteSpace(json))
{
return new HaEndpoint();
}
try
{
return JsonSerializer.Deserialize<HaEndpoint>(json,
new JsonSerializerOptions { PropertyNameCaseInsensitive = true }) ?? new HaEndpoint();
}
catch (JsonException)
{
return new HaEndpoint();
}
}
private sealed record HaEndpoint
{
public string? BaseUrl { get; init; }
public string? TokenEnv { get; init; }
}
}
@@ -19,6 +19,13 @@ public sealed class MeterVaultOptions
/// <summary>Run EF migrations on startup. Disable for tests that migrate out-of-band.</summary>
public bool RunMigrationsAtStartup { get; set; } = true;
/// <summary>
/// Load the bundled Energiebilanz reference dataset on startup if the database has none yet
/// (idempotent — guarded by a marker meter). Off by default; set <c>MeterVault__SeedReferenceData=true</c>
/// for a one-command populated demo/test instance.
/// </summary>
public bool SeedReferenceData { get; set; }
/// <summary>Start the MQTT/Home Assistant ingestion workers. Disable for tests.</summary>
public bool EnableLiveIngestion { get; set; } = true;
@@ -16,6 +16,7 @@ public sealed class MeterVaultDbContext(DbContextOptions<MeterVaultDbContext> op
public DbSet<EnergyType> EnergyTypes => Set<EnergyType>();
public DbSet<Meter> Meters => Set<Meter>();
public DbSet<MeterSource> MeterSources => Set<MeterSource>();
public DbSet<MeterLink> MeterLinks => Set<MeterLink>();
public DbSet<Reading> Readings => Set<Reading>();
public DbSet<Consumption> Consumption => Set<Consumption>();
public DbSet<MeterEvent> MeterEvents => Set<MeterEvent>();
@@ -74,6 +75,16 @@ public sealed class MeterVaultDbContext(DbContextOptions<MeterVaultDbContext> op
e.HasIndex(x => x.MeterId);
});
b.Entity<MeterLink>(e =>
{
e.ToTable("meter_link");
e.HasKey(x => x.Id);
e.HasOne(x => x.FromMeter).WithMany().HasForeignKey(x => x.FromMeterId).OnDelete(DeleteBehavior.Cascade);
e.HasOne(x => x.ToMeter).WithMany().HasForeignKey(x => x.ToMeterId).OnDelete(DeleteBehavior.Cascade);
e.HasIndex(x => new { x.FromMeterId, x.ToMeterId }).IsUnique();
e.ToTable(t => t.HasCheckConstraint("ck_meter_link_distinct", "from_meter_id <> to_meter_id"));
});
// Hypertable — the (meter_id, time) PK contains the partition column (time),
// which Timescale requires. Converted to a hypertable in a raw-SQL migration.
b.Entity<Reading>(e =>
@@ -0,0 +1,931 @@
// <auto-generated />
using System;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
using Microsoft.EntityFrameworkCore.Infrastructure;
using Microsoft.EntityFrameworkCore.Migrations;
using Microsoft.EntityFrameworkCore.Storage.ValueConversion;
using Npgsql.EntityFrameworkCore.PostgreSQL.Metadata;
#nullable disable
namespace MeterVault.Infrastructure.Persistence.Migrations
{
[DbContext(typeof(MeterVaultDbContext))]
[Migration("20260714114901_AddMeterLinks")]
partial class AddMeterLinks
{
/// <inheritdoc />
protected override void BuildTargetModel(ModelBuilder modelBuilder)
{
#pragma warning disable 612, 618
modelBuilder
.HasAnnotation("ProductVersion", "10.0.9")
.HasAnnotation("Relational:MaxIdentifierLength", 63);
NpgsqlModelBuilderExtensions.HasPostgresExtension(modelBuilder, "timescaledb");
NpgsqlModelBuilderExtensions.UseIdentityByDefaultColumns(modelBuilder);
modelBuilder.Entity("MeterVault.Core.Domain.AppSetting", b =>
{
b.Property<string>("Key")
.HasMaxLength(128)
.HasColumnType("character varying(128)")
.HasColumnName("key");
b.Property<string>("Value")
.IsRequired()
.HasColumnType("jsonb")
.HasColumnName("value");
b.HasKey("Key")
.HasName("pk_app_setting");
b.ToTable("app_setting", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.Consumption", b =>
{
b.Property<int>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.Property<DateTimeOffset>("Time")
.HasColumnType("timestamp with time zone")
.HasColumnName("time");
b.Property<short>("Kind")
.HasColumnType("smallint")
.HasColumnName("kind");
b.Property<double>("Amount")
.HasColumnType("double precision")
.HasColumnName("amount");
b.Property<int?>("ImportBatchId")
.HasColumnType("integer")
.HasColumnName("import_batch_id");
b.Property<short>("Quality")
.HasColumnType("smallint")
.HasColumnName("quality");
b.HasKey("MeterId", "Time", "Kind")
.HasName("pk_consumption");
b.HasIndex("ImportBatchId")
.HasDatabaseName("ix_consumption_import_batch_id");
b.ToTable("consumption", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.CostCategory", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<string>("ColorHex")
.HasColumnType("text")
.HasColumnName("color_hex");
b.Property<string>("Name")
.IsRequired()
.HasMaxLength(128)
.HasColumnType("character varying(128)")
.HasColumnName("name");
b.Property<int>("Sort")
.HasColumnType("integer")
.HasColumnName("sort");
b.HasKey("Id")
.HasName("pk_cost_category");
b.ToTable("cost_category", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.CostCategoryMember", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<int>("CategoryId")
.HasColumnType("integer")
.HasColumnName("category_id");
b.Property<short?>("EnergyTypeId")
.HasColumnType("smallint")
.HasColumnName("energy_type_id");
b.Property<int?>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.HasKey("Id")
.HasName("pk_cost_category_member");
b.HasIndex("CategoryId")
.HasDatabaseName("ix_cost_category_member_category_id");
b.HasIndex("EnergyTypeId")
.HasDatabaseName("ix_cost_category_member_energy_type_id");
b.HasIndex("MeterId")
.HasDatabaseName("ix_cost_category_member_meter_id");
b.ToTable("cost_category_member", null, t =>
{
t.HasCheckConstraint("ck_cost_category_member_target", "meter_id IS NOT NULL OR energy_type_id IS NOT NULL");
});
});
modelBuilder.Entity("MeterVault.Core.Domain.EnergyType", b =>
{
b.Property<short>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("smallint")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<short>("Id"));
b.Property<string>("BaseUnit")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("base_unit");
b.Property<string>("ColorHex")
.HasColumnType("text")
.HasColumnName("color_hex");
b.Property<DateTimeOffset>("CreatedAt")
.ValueGeneratedOnAdd()
.HasColumnType("timestamp with time zone")
.HasColumnName("created_at")
.HasDefaultValueSql("now()");
b.Property<string>("DefaultMode")
.IsRequired()
.HasMaxLength(32)
.HasColumnType("character varying(32)")
.HasColumnName("default_mode");
b.Property<string>("DisplayName")
.IsRequired()
.HasMaxLength(128)
.HasColumnType("character varying(128)")
.HasColumnName("display_name");
b.Property<string>("Icon")
.HasColumnType("text")
.HasColumnName("icon");
b.Property<string>("Key")
.IsRequired()
.HasMaxLength(64)
.HasColumnType("character varying(64)")
.HasColumnName("key");
b.HasKey("Id")
.HasName("pk_energy_type");
b.HasIndex("Key")
.IsUnique()
.HasDatabaseName("ix_energy_type_key");
b.ToTable("energy_type", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.ImportBatch", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<DateTimeOffset>("CreatedAt")
.ValueGeneratedOnAdd()
.HasColumnType("timestamp with time zone")
.HasColumnName("created_at")
.HasDefaultValueSql("now()");
b.Property<string>("Mapping")
.HasColumnType("jsonb")
.HasColumnName("mapping");
b.Property<DateTimeOffset?>("RevertedAt")
.HasColumnType("timestamp with time zone")
.HasColumnName("reverted_at");
b.Property<int>("RowCount")
.HasColumnType("integer")
.HasColumnName("row_count");
b.Property<string>("SourceName")
.HasColumnType("text")
.HasColumnName("source_name");
b.HasKey("Id")
.HasName("pk_import_batch");
b.ToTable("import_batch", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.IngestionEndpoint", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<string>("Config")
.IsRequired()
.ValueGeneratedOnAdd()
.HasColumnType("jsonb")
.HasColumnName("config")
.HasDefaultValueSql("'{}'::jsonb");
b.Property<bool>("IsEnabled")
.HasColumnType("boolean")
.HasColumnName("is_enabled");
b.Property<DateTimeOffset?>("LastSeenAt")
.HasColumnType("timestamp with time zone")
.HasColumnName("last_seen_at");
b.Property<string>("LastStatus")
.HasColumnType("text")
.HasColumnName("last_status");
b.Property<string>("Name")
.IsRequired()
.HasMaxLength(128)
.HasColumnType("character varying(128)")
.HasColumnName("name");
b.Property<string>("Type")
.IsRequired()
.HasMaxLength(32)
.HasColumnType("character varying(32)")
.HasColumnName("type");
b.HasKey("Id")
.HasName("pk_ingestion_endpoint");
b.ToTable("ingestion_endpoint", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.ManualCost", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<double>("Amount")
.HasColumnType("double precision")
.HasColumnName("amount");
b.Property<int?>("CategoryId")
.HasColumnType("integer")
.HasColumnName("category_id");
b.Property<string>("Currency")
.IsRequired()
.HasMaxLength(8)
.HasColumnType("character varying(8)")
.HasColumnName("currency");
b.Property<int?>("ImportBatchId")
.HasColumnType("integer")
.HasColumnName("import_batch_id");
b.Property<int?>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.Property<string>("Notes")
.HasColumnType("text")
.HasColumnName("notes");
b.Property<DateOnly>("PeriodEnd")
.HasColumnType("date")
.HasColumnName("period_end");
b.Property<DateOnly>("PeriodStart")
.HasColumnType("date")
.HasColumnName("period_start");
b.HasKey("Id")
.HasName("pk_manual_cost");
b.HasIndex("CategoryId")
.HasDatabaseName("ix_manual_cost_category_id");
b.HasIndex("ImportBatchId")
.HasDatabaseName("ix_manual_cost_import_batch_id");
b.HasIndex("MeterId")
.HasDatabaseName("ix_manual_cost_meter_id");
b.ToTable("manual_cost", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.Meter", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<DateTimeOffset>("CreatedAt")
.ValueGeneratedOnAdd()
.HasColumnType("timestamp with time zone")
.HasColumnName("created_at")
.HasDefaultValueSql("now()");
b.Property<short>("EnergyTypeId")
.HasColumnType("smallint")
.HasColumnName("energy_type_id");
b.Property<double>("InitialBaseline")
.HasColumnType("double precision")
.HasColumnName("initial_baseline");
b.Property<DateOnly?>("InstalledAt")
.HasColumnType("date")
.HasColumnName("installed_at");
b.Property<bool>("IsActive")
.ValueGeneratedOnAdd()
.HasColumnType("boolean")
.HasDefaultValue(true)
.HasColumnName("is_active");
b.Property<string>("Location")
.HasColumnType("text")
.HasColumnName("location");
b.Property<string>("Manufacturer")
.HasColumnType("text")
.HasColumnName("manufacturer");
b.Property<string>("Meta")
.IsRequired()
.ValueGeneratedOnAdd()
.HasColumnType("jsonb")
.HasColumnName("meta")
.HasDefaultValueSql("'{}'::jsonb");
b.Property<string>("Mode")
.IsRequired()
.HasMaxLength(32)
.HasColumnType("character varying(32)")
.HasColumnName("mode");
b.Property<string>("Model")
.HasColumnType("text")
.HasColumnName("model");
b.Property<string>("Name")
.IsRequired()
.HasColumnType("text")
.HasColumnName("name");
b.Property<DateOnly?>("RetiredAt")
.HasColumnType("date")
.HasColumnName("retired_at");
b.Property<string>("SerialNumber")
.HasColumnType("text")
.HasColumnName("serial_number");
b.Property<string>("Unit")
.IsRequired()
.HasColumnType("text")
.HasColumnName("unit");
b.Property<DateTimeOffset>("UpdatedAt")
.ValueGeneratedOnAdd()
.HasColumnType("timestamp with time zone")
.HasColumnName("updated_at")
.HasDefaultValueSql("now()");
b.HasKey("Id")
.HasName("pk_meter");
b.HasIndex("EnergyTypeId", "IsActive")
.HasDatabaseName("ix_meter_energy_type_id_is_active");
b.ToTable("meter", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterEvent", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<double?>("Amount")
.HasColumnType("double precision")
.HasColumnName("amount");
b.Property<string>("EventType")
.IsRequired()
.HasMaxLength(32)
.HasColumnType("character varying(32)")
.HasColumnName("event_type");
b.Property<int?>("ImportBatchId")
.HasColumnType("integer")
.HasColumnName("import_batch_id");
b.Property<string>("Meta")
.IsRequired()
.ValueGeneratedOnAdd()
.HasColumnType("jsonb")
.HasColumnName("meta")
.HasDefaultValueSql("'{}'::jsonb");
b.Property<int>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.Property<double?>("NewValue")
.HasColumnType("double precision")
.HasColumnName("new_value");
b.Property<string>("Notes")
.HasColumnType("text")
.HasColumnName("notes");
b.Property<double?>("PrevValue")
.HasColumnType("double precision")
.HasColumnName("prev_value");
b.Property<DateTimeOffset>("Time")
.HasColumnType("timestamp with time zone")
.HasColumnName("time");
b.Property<string>("Unit")
.HasColumnType("text")
.HasColumnName("unit");
b.HasKey("Id")
.HasName("pk_meter_event");
b.HasIndex("ImportBatchId")
.HasDatabaseName("ix_meter_event_import_batch_id");
b.HasIndex("MeterId", "Time")
.HasDatabaseName("ix_meter_event_meter_id_time");
b.ToTable("meter_event", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterLink", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<int>("FromMeterId")
.HasColumnType("integer")
.HasColumnName("from_meter_id");
b.Property<int>("ToMeterId")
.HasColumnType("integer")
.HasColumnName("to_meter_id");
b.HasKey("Id")
.HasName("pk_meter_link");
b.HasIndex("ToMeterId")
.HasDatabaseName("ix_meter_link_to_meter_id");
b.HasIndex("FromMeterId", "ToMeterId")
.IsUnique()
.HasDatabaseName("ix_meter_link_from_meter_id_to_meter_id");
b.ToTable("meter_link", null, t =>
{
t.HasCheckConstraint("ck_meter_link_distinct", "from_meter_id <> to_meter_id");
});
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterSource", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<string>("Config")
.IsRequired()
.ValueGeneratedOnAdd()
.HasColumnType("jsonb")
.HasColumnName("config")
.HasDefaultValueSql("'{}'::jsonb");
b.Property<int?>("EndpointId")
.HasColumnType("integer")
.HasColumnName("endpoint_id");
b.Property<bool>("IsEnabled")
.HasColumnType("boolean")
.HasColumnName("is_enabled");
b.Property<DateTimeOffset?>("LastSeenAt")
.HasColumnType("timestamp with time zone")
.HasColumnName("last_seen_at");
b.Property<string>("LastStatus")
.HasColumnType("text")
.HasColumnName("last_status");
b.Property<double?>("LastValue")
.HasColumnType("double precision")
.HasColumnName("last_value");
b.Property<int>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.Property<double>("Offset")
.HasColumnType("double precision")
.HasColumnName("offset");
b.Property<int>("Priority")
.HasColumnType("integer")
.HasColumnName("priority");
b.Property<double>("Scale")
.ValueGeneratedOnAdd()
.HasColumnType("double precision")
.HasDefaultValue(1.0)
.HasColumnName("scale");
b.Property<string>("SourceType")
.IsRequired()
.HasMaxLength(32)
.HasColumnType("character varying(32)")
.HasColumnName("source_type");
b.Property<string>("ValueKind")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("value_kind");
b.HasKey("Id")
.HasName("pk_meter_source");
b.HasIndex("EndpointId")
.HasDatabaseName("ix_meter_source_endpoint_id");
b.HasIndex("MeterId")
.HasDatabaseName("ix_meter_source_meter_id");
b.ToTable("meter_source", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.Reading", b =>
{
b.Property<int>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.Property<DateTimeOffset>("Time")
.HasColumnType("timestamp with time zone")
.HasColumnName("time");
b.Property<int>("Flags")
.HasColumnType("integer")
.HasColumnName("flags");
b.Property<int?>("ImportBatchId")
.HasColumnType("integer")
.HasColumnName("import_batch_id");
b.Property<short>("Quality")
.HasColumnType("smallint")
.HasColumnName("quality");
b.Property<int?>("SourceId")
.HasColumnType("integer")
.HasColumnName("source_id");
b.Property<double>("Value")
.HasColumnType("double precision")
.HasColumnName("value");
b.HasKey("MeterId", "Time")
.HasName("pk_reading");
b.HasIndex("ImportBatchId")
.HasDatabaseName("ix_reading_import_batch_id");
b.ToTable("reading", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.Tank", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<DateTimeOffset?>("CachedAt")
.HasColumnType("timestamp with time zone")
.HasColumnName("cached_at");
b.Property<double?>("CachedBalance")
.HasColumnType("double precision")
.HasColumnName("cached_balance");
b.Property<string>("Calibration")
.HasColumnType("jsonb")
.HasColumnName("calibration");
b.Property<double>("Capacity")
.HasColumnType("double precision")
.HasColumnName("capacity");
b.Property<double?>("FixedRate")
.HasColumnType("double precision")
.HasColumnName("fixed_rate");
b.Property<double?>("LowThreshold")
.HasColumnType("double precision")
.HasColumnName("low_threshold");
b.Property<int>("MeterId")
.HasColumnType("integer")
.HasColumnName("meter_id");
b.Property<string>("RateMode")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("rate_mode");
b.Property<double?>("ReorderThreshold")
.HasColumnType("double precision")
.HasColumnName("reorder_threshold");
b.Property<string>("Unit")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("unit");
b.HasKey("Id")
.HasName("pk_tank");
b.HasIndex("MeterId")
.IsUnique()
.HasDatabaseName("ix_tank_meter_id");
b.ToTable("tank", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.Tariff", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<string>("Component")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("component");
b.Property<string>("Currency")
.IsRequired()
.HasMaxLength(8)
.HasColumnType("character varying(8)")
.HasColumnName("currency");
b.Property<string>("Notes")
.HasColumnType("text")
.HasColumnName("notes");
b.Property<int?>("ScopeId")
.HasColumnType("integer")
.HasColumnName("scope_id");
b.Property<string>("ScopeType")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("scope_type");
b.Property<string>("Unit")
.IsRequired()
.HasMaxLength(16)
.HasColumnType("character varying(16)")
.HasColumnName("unit");
b.Property<DateOnly>("ValidFrom")
.HasColumnType("date")
.HasColumnName("valid_from");
b.Property<DateOnly?>("ValidTo")
.HasColumnType("date")
.HasColumnName("valid_to");
b.Property<double>("Value")
.HasColumnType("double precision")
.HasColumnName("value");
b.HasKey("Id")
.HasName("pk_tariff");
b.HasIndex("ScopeType", "ScopeId", "Component", "ValidFrom")
.HasDatabaseName("ix_tariff_scope_type_scope_id_component_valid_from");
b.ToTable("tariff", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.Consumption", b =>
{
b.HasOne("MeterVault.Core.Domain.Meter", null)
.WithMany()
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.Restrict)
.IsRequired()
.HasConstraintName("fk_consumption_meter_meter_id");
});
modelBuilder.Entity("MeterVault.Core.Domain.CostCategoryMember", b =>
{
b.HasOne("MeterVault.Core.Domain.CostCategory", "Category")
.WithMany("Members")
.HasForeignKey("CategoryId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_cost_category_member_cost_category_category_id");
b.HasOne("MeterVault.Core.Domain.EnergyType", null)
.WithMany()
.HasForeignKey("EnergyTypeId")
.OnDelete(DeleteBehavior.Cascade)
.HasConstraintName("fk_cost_category_member_energy_type_energy_type_id");
b.HasOne("MeterVault.Core.Domain.Meter", null)
.WithMany()
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.Cascade)
.HasConstraintName("fk_cost_category_member_meter_meter_id");
b.Navigation("Category");
});
modelBuilder.Entity("MeterVault.Core.Domain.ManualCost", b =>
{
b.HasOne("MeterVault.Core.Domain.CostCategory", null)
.WithMany()
.HasForeignKey("CategoryId")
.OnDelete(DeleteBehavior.SetNull)
.HasConstraintName("fk_manual_cost_cost_category_category_id");
b.HasOne("MeterVault.Core.Domain.Meter", null)
.WithMany()
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.SetNull)
.HasConstraintName("fk_manual_cost_meter_meter_id");
});
modelBuilder.Entity("MeterVault.Core.Domain.Meter", b =>
{
b.HasOne("MeterVault.Core.Domain.EnergyType", "EnergyType")
.WithMany("Meters")
.HasForeignKey("EnergyTypeId")
.OnDelete(DeleteBehavior.Restrict)
.IsRequired()
.HasConstraintName("fk_meter_energy_type_energy_type_id");
b.Navigation("EnergyType");
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterEvent", b =>
{
b.HasOne("MeterVault.Core.Domain.Meter", null)
.WithMany()
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_meter_event_meter_meter_id");
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterLink", b =>
{
b.HasOne("MeterVault.Core.Domain.Meter", "FromMeter")
.WithMany()
.HasForeignKey("FromMeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_meter_link_meter_from_meter_id");
b.HasOne("MeterVault.Core.Domain.Meter", "ToMeter")
.WithMany()
.HasForeignKey("ToMeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_meter_link_meter_to_meter_id");
b.Navigation("FromMeter");
b.Navigation("ToMeter");
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterSource", b =>
{
b.HasOne("MeterVault.Core.Domain.IngestionEndpoint", "Endpoint")
.WithMany()
.HasForeignKey("EndpointId")
.OnDelete(DeleteBehavior.SetNull)
.HasConstraintName("fk_meter_source_ingestion_endpoints_endpoint_id");
b.HasOne("MeterVault.Core.Domain.Meter", "Meter")
.WithMany("Sources")
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_meter_source_meter_meter_id");
b.Navigation("Endpoint");
b.Navigation("Meter");
});
modelBuilder.Entity("MeterVault.Core.Domain.Reading", b =>
{
b.HasOne("MeterVault.Core.Domain.Meter", null)
.WithMany()
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.Restrict)
.IsRequired()
.HasConstraintName("fk_reading_meter_meter_id");
});
modelBuilder.Entity("MeterVault.Core.Domain.Tank", b =>
{
b.HasOne("MeterVault.Core.Domain.Meter", "Meter")
.WithMany()
.HasForeignKey("MeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_tank_meter_meter_id");
b.Navigation("Meter");
});
modelBuilder.Entity("MeterVault.Core.Domain.CostCategory", b =>
{
b.Navigation("Members");
});
modelBuilder.Entity("MeterVault.Core.Domain.EnergyType", b =>
{
b.Navigation("Meters");
});
modelBuilder.Entity("MeterVault.Core.Domain.Meter", b =>
{
b.Navigation("Sources");
});
#pragma warning restore 612, 618
}
}
}
@@ -0,0 +1,60 @@
using Microsoft.EntityFrameworkCore.Migrations;
using Npgsql.EntityFrameworkCore.PostgreSQL.Metadata;
#nullable disable
namespace MeterVault.Infrastructure.Persistence.Migrations
{
/// <inheritdoc />
public partial class AddMeterLinks : Migration
{
/// <inheritdoc />
protected override void Up(MigrationBuilder migrationBuilder)
{
migrationBuilder.CreateTable(
name: "meter_link",
columns: table => new
{
id = table.Column<int>(type: "integer", nullable: false)
.Annotation("Npgsql:ValueGenerationStrategy", NpgsqlValueGenerationStrategy.IdentityByDefaultColumn),
from_meter_id = table.Column<int>(type: "integer", nullable: false),
to_meter_id = table.Column<int>(type: "integer", nullable: false)
},
constraints: table =>
{
table.PrimaryKey("pk_meter_link", x => x.id);
table.CheckConstraint("ck_meter_link_distinct", "from_meter_id <> to_meter_id");
table.ForeignKey(
name: "fk_meter_link_meter_from_meter_id",
column: x => x.from_meter_id,
principalTable: "meter",
principalColumn: "id",
onDelete: ReferentialAction.Cascade);
table.ForeignKey(
name: "fk_meter_link_meter_to_meter_id",
column: x => x.to_meter_id,
principalTable: "meter",
principalColumn: "id",
onDelete: ReferentialAction.Cascade);
});
migrationBuilder.CreateIndex(
name: "ix_meter_link_from_meter_id_to_meter_id",
table: "meter_link",
columns: new[] { "from_meter_id", "to_meter_id" },
unique: true);
migrationBuilder.CreateIndex(
name: "ix_meter_link_to_meter_id",
table: "meter_link",
column: "to_meter_id");
}
/// <inheritdoc />
protected override void Down(MigrationBuilder migrationBuilder)
{
migrationBuilder.DropTable(
name: "meter_link");
}
}
}
@@ -499,6 +499,39 @@ namespace MeterVault.Infrastructure.Persistence.Migrations
b.ToTable("meter_event", (string)null);
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterLink", b =>
{
b.Property<int>("Id")
.ValueGeneratedOnAdd()
.HasColumnType("integer")
.HasColumnName("id");
NpgsqlPropertyBuilderExtensions.UseIdentityByDefaultColumn(b.Property<int>("Id"));
b.Property<int>("FromMeterId")
.HasColumnType("integer")
.HasColumnName("from_meter_id");
b.Property<int>("ToMeterId")
.HasColumnType("integer")
.HasColumnName("to_meter_id");
b.HasKey("Id")
.HasName("pk_meter_link");
b.HasIndex("ToMeterId")
.HasDatabaseName("ix_meter_link_to_meter_id");
b.HasIndex("FromMeterId", "ToMeterId")
.IsUnique()
.HasDatabaseName("ix_meter_link_from_meter_id_to_meter_id");
b.ToTable("meter_link", null, t =>
{
t.HasCheckConstraint("ck_meter_link_distinct", "from_meter_id <> to_meter_id");
});
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterSource", b =>
{
b.Property<int>("Id")
@@ -812,6 +845,27 @@ namespace MeterVault.Infrastructure.Persistence.Migrations
.HasConstraintName("fk_meter_event_meter_meter_id");
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterLink", b =>
{
b.HasOne("MeterVault.Core.Domain.Meter", "FromMeter")
.WithMany()
.HasForeignKey("FromMeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_meter_link_meter_from_meter_id");
b.HasOne("MeterVault.Core.Domain.Meter", "ToMeter")
.WithMany()
.HasForeignKey("ToMeterId")
.OnDelete(DeleteBehavior.Cascade)
.IsRequired()
.HasConstraintName("fk_meter_link_meter_to_meter_id");
b.Navigation("FromMeter");
b.Navigation("ToMeter");
});
modelBuilder.Entity("MeterVault.Core.Domain.MeterSource", b =>
{
b.HasOne("MeterVault.Core.Domain.IngestionEndpoint", "Endpoint")
@@ -0,0 +1,79 @@
using MeterVault.Core.Domain;
using MeterVault.Core.Normalization;
using static MeterVault.Core.Tests.TestData;
namespace MeterVault.Core.Tests;
/// <summary>
/// instant_rate: the reading value is an instantaneous rate (e.g. kW) integrated over time into
/// consumption (kWh). Uses the trapezoidal rule between consecutive samples, attributed to the
/// interval's end reading — the first reading only seeds the integral.
/// </summary>
public sealed class InstantRateNormalizerTests
{
private readonly INormalizationEngine _engine = NormalizationEngine.CreateDefault();
private static DateTimeOffset At(int hour) => new(new DateTime(2024, 6, 1, 0, 0, 0, DateTimeKind.Utc).AddHours(hour));
[Fact]
public void Constant_rate_integrates_to_rate_times_hours()
{
// 2 kW held steady for 3 hours → 6 kWh, booked at the end of the interval.
var ctx = new NormalizationContext
{
Meter = new MeterConfig { MeterId = 1, Mode = MeterMode.InstantRate, Unit = "kWh" },
Readings = [Reading(1, At(0), 2), Reading(1, At(3), 2)],
};
var result = _engine.Normalize(ctx);
var row = Assert.Single(result);
Assert.Equal(6d, row.Amount, 6);
Assert.Equal(At(3), row.Time);
Assert.Equal(ConsumptionKind.Consumption, row.Kind);
}
[Fact]
public void Linear_ramp_integrates_trapezoidally_per_interval()
{
// 0 kW → 2 kW → 4 kW at 1-hour steps. Intervals: (0+2)/2·1 = 1, (2+4)/2·1 = 3.
var ctx = new NormalizationContext
{
Meter = new MeterConfig { MeterId = 1, Mode = MeterMode.InstantRate, Unit = "kWh" },
Readings = [Reading(1, At(0), 0), Reading(1, At(1), 2), Reading(1, At(2), 4)],
};
var result = _engine.Normalize(ctx);
// First reading only seeds the integral: N readings → N1 rows.
Assert.Equal([1d, 3d], result.Select(c => c.Amount));
Assert.Equal([At(1), At(2)], result.Select(c => c.Time));
}
[Fact]
public void Negative_rate_is_preserved_as_export()
{
// A bidirectional power sensor reading 4 kW for an hour → 4 kWh (net export), not clamped.
var ctx = new NormalizationContext
{
Meter = new MeterConfig { MeterId = 1, Mode = MeterMode.InstantRate, Unit = "kWh" },
Readings = [Reading(1, At(0), -4), Reading(1, At(1), -4)],
};
var result = _engine.Normalize(ctx);
Assert.Equal(-4d, Assert.Single(result).Amount, 6);
}
[Fact]
public void Single_reading_produces_no_consumption()
{
var ctx = new NormalizationContext
{
Meter = new MeterConfig { MeterId = 1, Mode = MeterMode.InstantRate, Unit = "kWh" },
Readings = [Reading(1, At(0), 5)],
};
Assert.Empty(_engine.Normalize(ctx));
}
}
+61
View File
@@ -0,0 +1,61 @@
using MeterVault.Core.Domain;
namespace MeterVault.Core.Tests;
public sealed class MeterMetaTests
{
[Fact]
public void Role_reads_configured_role()
{
Assert.Equal(MeterRoles.GridImport, MeterMeta.Role("{\"role\":\"grid_import\"}"));
}
[Theory]
[InlineData("")]
[InlineData(" ")]
[InlineData("{}")]
[InlineData("not json")]
[InlineData("{\"role\":123}")]
[InlineData("[1,2,3]")]
public void Role_is_null_when_absent_or_malformed(string meta)
{
Assert.Null(MeterMeta.Role(meta));
}
[Fact]
public void WithRole_sets_role_and_preserves_other_keys()
{
var updated = MeterMeta.WithRole("{\"expression\":\"a-b\"}", MeterRoles.TotalLoad);
Assert.Equal(MeterRoles.TotalLoad, MeterMeta.Role(updated));
Assert.Equal("a-b", MeterMeta.ReadString(updated, "expression"));
}
[Fact]
public void WithRole_overwrites_existing_role()
{
var updated = MeterMeta.WithRole("{\"role\":\"grid_import\"}", MeterRoles.GridExport);
Assert.Equal(MeterRoles.GridExport, MeterMeta.Role(updated));
}
[Fact]
public void WithRole_handles_empty_meta()
{
var updated = MeterMeta.WithRole("", MeterRoles.GridImport);
Assert.Equal(MeterRoles.GridImport, MeterMeta.Role(updated));
}
[Theory]
[InlineData(null)]
[InlineData("")]
[InlineData(" ")]
public void SetRole_removes_role_when_blank_and_keeps_other_keys(string? role)
{
var updated = MeterMeta.SetRole("{\"role\":\"grid_import\",\"expression\":\"a-b\"}", role);
Assert.Null(MeterMeta.Role(updated));
Assert.Equal("a-b", MeterMeta.ReadString(updated, "expression"));
}
}
@@ -1,4 +1,5 @@
using MeterVault.Infrastructure.Costing;
using MeterVault.Infrastructure.Dashboard;
using MeterVault.Infrastructure.Import;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
@@ -43,6 +44,44 @@ public sealed class DashboardRenderTests(TimescaleFixture fx)
Assert.Equal(70d, rollup.Sum(r => r.Cost), 1);
}
// Panel read models compute real figures from the reference data (SDD §8.4–§8.6).
int hausId;
short electricityTypeId;
using (var scope = factory.Services.CreateScope())
{
var services = scope.ServiceProvider;
var wide = new DateOnly(1997, 1, 1);
var toEnd = new DateOnly(2027, 1, 1);
var solar = await services.GetRequiredService<SolarService>().GetSummaryAsync(wide, toEnd);
Assert.True(solar.HasGeneration);
Assert.True(solar.Generation > 0);
// Haus (total_load) + Netz (grid_import) are role-tagged, so self-consumption/savings resolve.
Assert.True(solar.HasLoadContext);
Assert.NotNull(solar.SelfConsumption);
Assert.NotNull(solar.Savings);
var consumables = await services.GetRequiredService<ConsumableService>().GetConsumablesAsync(wide, toEnd);
var oil = Assert.Single(consumables);
Assert.True(oil.CurrentLevel is > 0);
Assert.NotEmpty(oil.Deliveries);
Assert.True(oil.ConsumptionInRange > 0);
await using var db = fx.CreateContext();
hausId = await db.Meters.Where(m => m.Name == "Zähler Haus").Select(m => m.Id).FirstAsync();
var detail = await services.GetRequiredService<MeterDetailService>().GetAsync(hausId);
Assert.NotNull(detail);
Assert.True(detail!.ReadingCount > 0);
Assert.True(detail.TotalConsumption > 0);
// Flow graph: the demo Haus → Auto chain yields a link + an "Other (Haus)" remainder.
electricityTypeId = await db.EnergyTypes.Where(t => t.Key == "electricity").Select(t => t.Id).FirstAsync();
var flow = await services.GetRequiredService<FlowService>()
.GetFlowAsync(electricityTypeId, new DateOnly(1997, 1, 1), new DateOnly(2027, 1, 1));
Assert.True(flow.HasChain);
Assert.Contains(flow.Nodes, n => n.IsOther);
}
using var client = factory.CreateClient();
var overview = await client.GetAsync(new Uri("/", UriKind.Relative));
@@ -55,7 +94,13 @@ public sealed class DashboardRenderTests(TimescaleFixture fx)
Assert.Contains("This year", html, StringComparison.Ordinal);
Assert.Contains("Latest month with data", html, StringComparison.Ordinal);
foreach (var path in new[] { "/meters", "/trends", "/import", "/admin/tariffs", "/admin/energy-types" })
foreach (var path in new[]
{
"/meters", "/trends", "/solar", "/consumables", "/import",
"/admin/tariffs", "/admin/energy-types", "/admin/categories",
"/admin/connectors", "/admin/settings", $"/meters/{hausId}",
$"/energy/{electricityTypeId}",
})
{
var response = await client.GetAsync(new Uri(path, UriKind.Relative));
response.EnsureSuccessStatusCode();
@@ -70,6 +115,7 @@ public sealed class DashboardRenderTests(TimescaleFixture fx)
private static async Task ClearDataAsync(MeterVaultDbContext db)
{
await db.MeterLinks.ExecuteDeleteAsync();
await db.Consumption.ExecuteDeleteAsync();
await db.Readings.ExecuteDeleteAsync();
await db.MeterEvents.ExecuteDeleteAsync();
+182
View File
@@ -0,0 +1,182 @@
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Dashboard;
using MeterVault.Infrastructure.Persistence;
using Microsoft.EntityFrameworkCore;
namespace MeterVault.Integration.Tests;
/// <summary>
/// The per-energy-type flow graph (Sankey): a single-parent chain attributes the child's full
/// consumption to its parent and shows the remainder as "Other"; a two-parent merge splits the
/// child's consumption proportionally to the parents' own consumption.
/// </summary>
[Collection("Timescale")]
public sealed class FlowServiceTests(TimescaleFixture fx)
{
[Fact]
public async Task Single_parent_chain_makes_other_remainder()
{
await using var db = fx.CreateContext();
try
{
var type = await SeedTypeAsync(db, "flow_elec_a");
var main = await AddMeterAsync(db, "Main", type);
var car = await AddMeterAsync(db, "Car", type);
db.MeterLinks.Add(new MeterLink { FromMeterId = main.Id, ToMeterId = car.Id });
await db.SaveChangesAsync();
await AddConsumptionAsync(db, main.Id, 100);
await AddConsumptionAsync(db, car.Id, 30);
var graph = await new FlowService(fx).GetFlowAsync(type, new DateOnly(2024, 1, 1), new DateOnly(2024, 12, 31));
Assert.Equal(100, graph.Total, 1);
var link = Assert.Single(graph.Links, l => l.To == $"m{car.Id}");
Assert.Equal(30, link.Value, 1); // full child consumption flows from its single parent
var other = Assert.Single(graph.Nodes, n => n.IsOther);
Assert.Equal(70, other.Value, 1); // 100 30
}
finally
{
await ClearAsync(db);
}
}
[Fact]
public async Task Two_parents_split_child_proportionally()
{
await using var db = fx.CreateContext();
try
{
var type = await SeedTypeAsync(db, "flow_elec_b");
var grid = await AddMeterAsync(db, "Grid", type);
var solar = await AddMeterAsync(db, "Solar draw", type);
var house = await AddMeterAsync(db, "House", type);
db.MeterLinks.Add(new MeterLink { FromMeterId = grid.Id, ToMeterId = house.Id });
db.MeterLinks.Add(new MeterLink { FromMeterId = solar.Id, ToMeterId = house.Id });
await db.SaveChangesAsync();
await AddConsumptionAsync(db, grid.Id, 75);
await AddConsumptionAsync(db, solar.Id, 25);
await AddConsumptionAsync(db, house.Id, 40);
var graph = await new FlowService(fx).GetFlowAsync(type, new DateOnly(2024, 1, 1), new DateOnly(2024, 12, 31));
// House (40) splits 75:25 → 30 from grid, 10 from solar.
Assert.Equal(30, graph.Links.Single(l => l.From == $"m{grid.Id}" && l.To == $"m{house.Id}").Value, 1);
Assert.Equal(10, graph.Links.Single(l => l.From == $"m{solar.Id}" && l.To == $"m{house.Id}").Value, 1);
}
finally
{
await ClearAsync(db);
}
}
[Fact]
public async Task Generation_meter_counts_as_source()
{
await using var db = fx.CreateContext();
try
{
var type = await SeedTypeAsync(db, "flow_elec_c");
var grid = await AddMeterAsync(db, "Grid", type);
var solar = await AddMeterAsync(db, "Solar", type);
var house = await AddMeterAsync(db, "House", type);
db.MeterLinks.Add(new MeterLink { FromMeterId = grid.Id, ToMeterId = house.Id });
db.MeterLinks.Add(new MeterLink { FromMeterId = solar.Id, ToMeterId = house.Id });
await db.SaveChangesAsync();
await AddConsumptionAsync(db, grid.Id, 75); // grid import
await AddConsumptionAsync(db, solar.Id, 30, ConsumptionKind.Generation); // solar generation
await AddConsumptionAsync(db, house.Id, 40); // house load
var graph = await new FlowService(fx).GetFlowAsync(type, new DateOnly(2024, 1, 1), new DateOnly(2024, 12, 31));
// Solar's generation makes it a real source: House (40) splits 75:30 across grid+solar.
Assert.Equal(40.0 * 75 / 105, graph.Links.Single(l => l.From == $"m{grid.Id}" && l.To == $"m{house.Id}").Value, 1);
Assert.Equal(40.0 * 30 / 105, graph.Links.Single(l => l.From == $"m{solar.Id}" && l.To == $"m{house.Id}").Value, 1);
// Remainder across grid+solar = (75+30) 40 = 65 (export + battery/inverter losses).
Assert.Equal(65, graph.Nodes.Where(n => n.IsOther).Sum(n => n.Value), 1);
}
finally
{
await ClearAsync(db);
}
}
[Fact]
public async Task Virtual_sum_meter_aggregates_its_upstreams()
{
await using var db = fx.CreateContext();
try
{
var type = await SeedTypeAsync(db, "flow_elec_d");
var solar1 = await AddMeterAsync(db, "Solar 1", type);
var solar2 = await AddMeterAsync(db, "Solar 2", type);
var sumSolar = await AddMeterAsync(db, "Sum Solar", type, MeterMode.Virtual);
var grid = await AddMeterAsync(db, "Grid", type);
var house = await AddMeterAsync(db, "House", type);
// Solar1 + Solar2 → Sum Solar ; Grid + Sum Solar → House.
db.MeterLinks.Add(new MeterLink { FromMeterId = solar1.Id, ToMeterId = sumSolar.Id });
db.MeterLinks.Add(new MeterLink { FromMeterId = solar2.Id, ToMeterId = sumSolar.Id });
db.MeterLinks.Add(new MeterLink { FromMeterId = grid.Id, ToMeterId = house.Id });
db.MeterLinks.Add(new MeterLink { FromMeterId = sumSolar.Id, ToMeterId = house.Id });
await db.SaveChangesAsync();
await AddConsumptionAsync(db, solar1.Id, 15, ConsumptionKind.Generation);
await AddConsumptionAsync(db, solar2.Id, 15, ConsumptionKind.Generation);
await AddConsumptionAsync(db, grid.Id, 75);
await AddConsumptionAsync(db, house.Id, 40);
var graph = await new FlowService(fx).GetFlowAsync(type, new DateOnly(2024, 1, 1), new DateOnly(2024, 12, 31));
// Sum Solar has no readings but equals Solar 1 + Solar 2 = 30.
Assert.Equal(30, graph.Nodes.Single(n => n.MeterId == sumSolar.Id).Value, 1);
// House (40) splits across Grid (75) and Sum Solar (30) → 40*30/105 from solar.
Assert.Equal(40.0 * 30 / 105, graph.Links.Single(l => l.From == $"m{sumSolar.Id}" && l.To == $"m{house.Id}").Value, 1);
// No spurious remainder under Solar 1/2 (their whole output flows into Sum Solar).
Assert.DoesNotContain(graph.Nodes, n => n.IsOther && n.Id == $"other{solar1.Id}");
}
finally
{
await ClearAsync(db);
}
}
private static async Task<short> SeedTypeAsync(MeterVaultDbContext db, string key)
{
var type = new EnergyType { Key = key, DisplayName = key, BaseUnit = "kWh", DefaultMode = MeterMode.CumulativeCounter };
db.EnergyTypes.Add(type);
await db.SaveChangesAsync();
return type.Id;
}
private static async Task<Meter> AddMeterAsync(MeterVaultDbContext db, string name, short type, MeterMode mode = MeterMode.DirectDelta)
{
var meter = new Meter { Name = name, EnergyTypeId = type, Mode = mode, Unit = "kWh" };
db.Meters.Add(meter);
await db.SaveChangesAsync();
return meter;
}
private static async Task AddConsumptionAsync(MeterVaultDbContext db, int meterId, double amount, ConsumptionKind kind = ConsumptionKind.Consumption)
{
db.Consumption.Add(new Consumption
{
MeterId = meterId,
Time = new DateTimeOffset(2024, 6, 15, 0, 0, 0, TimeSpan.Zero),
Amount = amount,
Kind = kind,
Quality = ReadingQuality.Manual,
});
await db.SaveChangesAsync();
}
private static async Task ClearAsync(MeterVaultDbContext db)
{
await db.MeterLinks.ExecuteDeleteAsync();
await db.Consumption.ExecuteDeleteAsync();
await db.Meters.ExecuteDeleteAsync();
await db.EnergyTypes.Where(t => t.Key.StartsWith("flow_elec_")).ExecuteDeleteAsync();
}
}
@@ -0,0 +1,49 @@
using MeterVault.Infrastructure.Ingestion;
using Microsoft.Extensions.Logging.Abstractions;
namespace MeterVault.Integration.Tests.Ingestion;
/// <summary>
/// The HA connection tester must fail closed on missing config <em>before</em> any network call —
/// so a misconfigured connector gives a clear message, never an exception. The stub factory throws
/// if the tester ever tries to create an HttpClient, proving these branches never reach the network.
/// </summary>
public sealed class HaConnectionTesterTests
{
[Fact]
public async Task Missing_base_url_fails_without_network()
{
var result = await NewTester().TestAsync(baseUrl: "", tokenEnv: "SOME_TOKEN", entityId: null);
Assert.False(result.Ok);
Assert.Contains("Base URL", result.Message, StringComparison.OrdinalIgnoreCase);
}
[Fact]
public async Task Missing_token_env_fails_without_network()
{
var result = await NewTester().TestAsync(baseUrl: "http://ha.local:8123", tokenEnv: "", entityId: null);
Assert.False(result.Ok);
Assert.Contains("env-var", result.Message, StringComparison.OrdinalIgnoreCase);
}
[Fact]
public async Task Unset_token_env_var_fails_without_network()
{
var result = await NewTester().TestAsync(
baseUrl: "http://ha.local:8123", tokenEnv: "METERVAULT_DEFINITELY_UNSET_TOKEN_VAR", entityId: null);
Assert.False(result.Ok);
Assert.Contains("is not set", result.Message, StringComparison.OrdinalIgnoreCase);
}
private static HaConnectionTester NewTester() =>
new(new ThrowingHttpClientFactory(), NullLogger<HaConnectionTester>.Instance);
private sealed class ThrowingHttpClientFactory : IHttpClientFactory
{
public HttpClient CreateClient(string name) =>
throw new InvalidOperationException("Network must not be touched for a config-guard failure.");
}
}
@@ -0,0 +1,119 @@
using System.Text.Json;
using MeterVault.Infrastructure.Ingestion;
namespace MeterVault.Integration.Tests.Ingestion;
/// <summary>
/// The pure Home Assistant WebSocket protocol helpers: URL derivation, the auth/subscribe frames,
/// and reading the entity id + numeric value out of a <c>state_changed</c> event (the transport is
/// exercised separately). No network — these are the parts that must be provably correct.
/// </summary>
public sealed class HaWebSocketProtocolTests
{
[Theory]
[InlineData("http://ha.local:8123", "ws", "ha.local", 8123)]
[InlineData("http://ha.local:8123/", "ws", "ha.local", 8123)]
[InlineData("https://ha.example.com", "wss", "ha.example.com", 443)]
public void WebSocketUri_maps_scheme_and_appends_api_path(string baseUrl, string scheme, string host, int port)
{
var uri = HaWebSocketProtocol.WebSocketUri(baseUrl);
Assert.Equal(scheme, uri.Scheme);
Assert.Equal(host, uri.Host);
Assert.Equal(port, uri.Port);
Assert.Equal("/api/websocket", uri.AbsolutePath);
}
[Fact]
public void AuthMessage_carries_type_and_token()
{
using var doc = JsonDocument.Parse(HaWebSocketProtocol.AuthMessage("secret-token"));
Assert.Equal("auth", doc.RootElement.GetProperty("type").GetString());
Assert.Equal("secret-token", doc.RootElement.GetProperty("access_token").GetString());
}
[Fact]
public void SubscribeStateChanged_requests_state_changed_events()
{
using var doc = JsonDocument.Parse(HaWebSocketProtocol.SubscribeStateChanged(7));
Assert.Equal(7, doc.RootElement.GetProperty("id").GetInt32());
Assert.Equal("subscribe_events", doc.RootElement.GetProperty("type").GetString());
Assert.Equal("state_changed", doc.RootElement.GetProperty("event_type").GetString());
}
[Theory]
[InlineData("{\"type\":\"auth_required\",\"ha_version\":\"2024.6\"}", true, false, false)]
[InlineData("{\"type\":\"auth_ok\"}", false, true, false)]
[InlineData("{\"type\":\"auth_invalid\",\"message\":\"bad token\"}", false, false, true)]
public void Auth_message_types_are_recognized(string json, bool required, bool ok, bool invalid)
{
using var doc = JsonDocument.Parse(json);
var root = doc.RootElement;
Assert.Equal(required, HaWebSocketProtocol.IsAuthRequired(root));
Assert.Equal(ok, HaWebSocketProtocol.IsAuthOk(root));
Assert.Equal(invalid, HaWebSocketProtocol.IsAuthInvalid(root));
}
[Fact]
public void TryReadStateChanged_extracts_entity_and_numeric_state()
{
using var doc = JsonDocument.Parse(StateChangedEvent(state: "1234.5"));
Assert.True(HaWebSocketProtocol.TryReadStateChanged(doc.RootElement, out var entityId, out var newState));
Assert.Equal("sensor.house_power", entityId);
var parsed = HaStateClient.ParseStateElement(newState, attribute: null);
Assert.NotNull(parsed);
Assert.Equal(1234.5, parsed!.Value.Value, 3);
Assert.Equal(new DateTimeOffset(2024, 6, 15, 10, 0, 0, TimeSpan.Zero), parsed.Value.Time);
}
[Fact]
public void TryReadStateChanged_reads_a_named_attribute()
{
using var doc = JsonDocument.Parse(StateChangedEvent(state: "on"));
Assert.True(HaWebSocketProtocol.TryReadStateChanged(doc.RootElement, out _, out var newState));
// state "on" is non-numeric, but the 'current' attribute is a number.
Assert.Null(HaStateClient.ParseStateElement(newState, attribute: null));
var byAttribute = HaStateClient.ParseStateElement(newState, attribute: "current");
Assert.Equal(42, byAttribute!.Value.Value, 3);
}
[Fact]
public void TryReadStateChanged_ignores_removed_entities_and_other_events()
{
using var removed = JsonDocument.Parse(
"{\"type\":\"event\",\"event\":{\"event_type\":\"state_changed\",\"data\":{\"entity_id\":\"sensor.x\",\"new_state\":null}}}");
Assert.False(HaWebSocketProtocol.TryReadStateChanged(removed.RootElement, out _, out _));
using var other = JsonDocument.Parse(
"{\"type\":\"event\",\"event\":{\"event_type\":\"call_service\",\"data\":{}}}");
Assert.False(HaWebSocketProtocol.TryReadStateChanged(other.RootElement, out _, out _));
using var result = JsonDocument.Parse("{\"id\":1,\"type\":\"result\",\"success\":true}");
Assert.False(HaWebSocketProtocol.TryReadStateChanged(result.RootElement, out _, out _));
}
private static string StateChangedEvent(string state) => $$"""
{
"id": 1,
"type": "event",
"event": {
"event_type": "state_changed",
"data": {
"entity_id": "sensor.house_power",
"new_state": {
"entity_id": "sensor.house_power",
"state": "{{state}}",
"attributes": { "unit_of_measurement": "W", "current": 42 },
"last_updated": "2024-06-15T10:00:00+00:00"
}
}
}
}
""";
}
@@ -0,0 +1,182 @@
using System.Net.WebSockets;
using System.Text;
using System.Text.Json;
using MeterVault.Core.Domain;
using MeterVault.Infrastructure.Ingestion;
using MeterVault.Infrastructure.Persistence;
using Microsoft.AspNetCore.Builder;
using Microsoft.AspNetCore.Hosting;
using Microsoft.AspNetCore.Hosting.Server;
using Microsoft.AspNetCore.Hosting.Server.Features;
using Microsoft.AspNetCore.Http;
using Microsoft.EntityFrameworkCore;
using Microsoft.Extensions.DependencyInjection;
using Microsoft.Extensions.Logging;
using Microsoft.Extensions.Logging.Abstractions;
namespace MeterVault.Integration.Tests.Ingestion;
/// <summary>
/// End-to-end proof of the HA WebSocket push path against an in-process fake Home Assistant server:
/// the worker performs the auth handshake, subscribes to <c>state_changed</c>, and a pushed change
/// for a configured entity lands as a <c>reading</c>. This exercises the real ClientWebSocket
/// transport and handshake sequencing that the pure-protocol unit tests can't.
/// </summary>
[Collection("Timescale")]
public sealed class HomeAssistantWebSocketWorkerTests(TimescaleFixture fx)
{
private const string TokenEnvVar = "MV_TEST_HA_WS_TOKEN";
[Fact]
public async Task Pushed_state_change_becomes_a_reading()
{
await using var db = fx.CreateContext();
Environment.SetEnvironmentVariable(TokenEnvVar, "test-token");
await using var fake = await FakeHaServer.StartAsync(entityId: "sensor.house_power", state: "4711");
try
{
var type = new EnergyType { Key = "ha_ws_test", DisplayName = "HA WS", BaseUnit = "kWh", DefaultMode = MeterMode.CumulativeCounter };
db.EnergyTypes.Add(type);
await db.SaveChangesAsync();
var meter = new Meter { Name = "HA WS Meter", EnergyTypeId = type.Id, Mode = MeterMode.CumulativeCounter, Unit = "kWh" };
db.Meters.Add(meter);
await db.SaveChangesAsync();
var endpoint = new IngestionEndpoint
{
Type = EndpointType.HomeAssistant,
Name = "Fake HA",
IsEnabled = true,
Config = new HaEndpointConfig { BaseUrl = fake.BaseUrl, TokenEnv = TokenEnvVar, UseWebSocket = true }.ToJson(),
};
db.IngestionEndpoints.Add(endpoint);
await db.SaveChangesAsync();
db.MeterSources.Add(new MeterSource
{
MeterId = meter.Id,
SourceType = SourceType.HomeAssistant,
EndpointId = endpoint.Id,
IsEnabled = true,
Config = JsonSerializer.Serialize(new { entityId = "sensor.house_power" }),
});
await db.SaveChangesAsync();
await using var provider = BuildProvider(fx.ConnectionString);
var worker = new HomeAssistantWebSocketWorker(
provider.GetRequiredService<IServiceScopeFactory>(), NullLogger<HomeAssistantWebSocketWorker>.Instance);
await worker.StartAsync(CancellationToken.None);
try
{
Reading? reading = null;
for (var i = 0; i < 60 && reading is null; i++)
{
await Task.Delay(200);
reading = await db.Readings.AsNoTracking().FirstOrDefaultAsync(r => r.MeterId == meter.Id);
}
Assert.NotNull(reading);
Assert.Equal(4711, reading!.Value, 3);
Assert.Equal(ReadingQuality.Measured, reading.Quality);
}
finally
{
await worker.StopAsync(CancellationToken.None);
}
}
finally
{
Environment.SetEnvironmentVariable(TokenEnvVar, null);
await db.Readings.ExecuteDeleteAsync();
await db.MeterSources.ExecuteDeleteAsync();
await db.IngestionEndpoints.ExecuteDeleteAsync();
await db.Meters.ExecuteDeleteAsync();
await db.EnergyTypes.Where(t => t.Key == "ha_ws_test").ExecuteDeleteAsync();
}
}
private static ServiceProvider BuildProvider(string connectionString)
{
var services = new ServiceCollection();
services.AddLogging();
services.AddDbContextFactory<MeterVaultDbContext>(o => o
.UseNpgsql(connectionString, n => n.MigrationsAssembly(typeof(MeterVaultDbContext).Assembly.FullName))
.UseSnakeCaseNamingConvention());
services.AddScoped<MeterVaultDbContext>(sp => sp.GetRequiredService<IDbContextFactory<MeterVaultDbContext>>().CreateDbContext());
services.AddScoped<IngestionService>();
return services.BuildServiceProvider();
}
/// <summary>A minimal Home Assistant WebSocket server: handshake, then push one state_changed event.</summary>
private sealed class FakeHaServer : IAsyncDisposable
{
private readonly WebApplication _app;
private FakeHaServer(WebApplication app, string baseUrl)
{
_app = app;
BaseUrl = baseUrl;
}
public string BaseUrl { get; }
public static async Task<FakeHaServer> StartAsync(string entityId, string state)
{
var builder = WebApplication.CreateBuilder();
builder.Logging.ClearProviders();
builder.WebHost.UseUrls("http://127.0.0.1:0");
var app = builder.Build();
app.UseWebSockets();
var eventJson =
"{\"id\":1,\"type\":\"event\",\"event\":{\"event_type\":\"state_changed\",\"data\":{\"entity_id\":\""
+ entityId + "\",\"new_state\":{\"entity_id\":\"" + entityId + "\",\"state\":\"" + state
+ "\",\"attributes\":{},\"last_updated\":\"2024-06-15T10:00:00+00:00\"}}}}";
app.Map("/api/websocket", async context =>
{
if (!context.WebSockets.IsWebSocketRequest)
{
context.Response.StatusCode = 400;
return;
}
using var ws = await context.WebSockets.AcceptWebSocketAsync();
await SendAsync(ws, """{"type":"auth_required","ha_version":"2024.6"}""");
await ReceiveAsync(ws); // client "auth"
await SendAsync(ws, """{"type":"auth_ok"}""");
await ReceiveAsync(ws); // client "subscribe_events"
await SendAsync(ws, """{"id":1,"type":"result","success":true}""");
await SendAsync(ws, eventJson);
try
{
await Task.Delay(Timeout.Infinite, context.RequestAborted);
}
catch (OperationCanceledException)
{
// client/test closed — expected.
}
});
await app.StartAsync();
var address = app.Services.GetRequiredService<IServer>().Features
.Get<IServerAddressesFeature>()!.Addresses.First();
return new FakeHaServer(app, address);
}
public async ValueTask DisposeAsync() => await _app.DisposeAsync();
private static Task SendAsync(WebSocket ws, string json) =>
ws.SendAsync(Encoding.UTF8.GetBytes(json), WebSocketMessageType.Text, endOfMessage: true, CancellationToken.None);
private static async Task ReceiveAsync(WebSocket ws)
{
var buffer = new byte[8192];
await ws.ReceiveAsync(buffer, CancellationToken.None);
}
}
}