Derive project device phases from category
This commit is contained in:
@@ -1,6 +1,7 @@
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import type { CircuitGroupCategory } from "../../shared/constants/circuit-group.js";
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export interface ProjectDevicePlacementSource {
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category?: string | null;
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phaseType: "single_phase" | "three_phase";
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category: CircuitGroupCategory;
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}
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export interface ProjectDevicePlacementSection {
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@@ -14,11 +15,13 @@ export type DefaultCircuitSectionKey = "lighting" | "single_phase" | "three_phas
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export function inferProjectDeviceSectionKey(
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device: ProjectDevicePlacementSource
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): DefaultCircuitSectionKey {
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const category = (device.category ?? "").trim().toLowerCase();
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if (category.includes("light") || category.includes("beleuchtung")) {
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return "lighting";
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}
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return device.phaseType;
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return device.category;
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}
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export function resolveProjectDevicePhaseType(
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category: CircuitGroupCategory
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): "single_phase" | "three_phase" {
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return category === "three_phase" ? "three_phase" : "single_phase";
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}
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export function isProjectDevicePlacementValid(
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@@ -3258,7 +3258,6 @@ export function CircuitTreeEditor(props: { projectId: string; circuitListId: str
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>
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<strong>{device.displayName || device.name}</strong>
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<span>Name: {device.name}</span>
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<span>Phasenart: {formatPhaseTypeLabel(device.phaseType)}</span>
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<span>Anzahl: {formatValue(device.quantity, "quantity")}</span>
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<span>
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Leistung/Gerät: {formatValue(device.powerPerUnit, "powerPerUnit")} kW
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@@ -3271,7 +3270,7 @@ export function CircuitTreeEditor(props: { projectId: string; circuitListId: str
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Gesamtleistung: {formatValue(device.totalPower, "rowTotalPower")} kW
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</span>
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<span>Kostengruppe: {device.costGroup || "-"}</span>
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<span>Kategorie: {device.category || "-"}</span>
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<span>Kategorie: {circuitGroupCategoryLabels[device.category]}</span>
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</button>
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))}
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{searchableProjectDevices.length === 0 ? <p className="notice muted">Keine passenden Projektgeräte gefunden.</p> : null}
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@@ -7,6 +7,11 @@ import type {
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ProjectDeviceDto,
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} from "../types";
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import { FormModal } from "./form-modal";
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import {
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circuitGroupCategories,
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circuitGroupCategoryLabels,
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type CircuitGroupCategory,
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} from "../../shared/constants/circuit-group";
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interface ProjectDeviceModalProps {
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globalDevices: GlobalDeviceDto[];
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@@ -37,14 +42,12 @@ export function ProjectDeviceModal({
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await onSave({
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name: values.name.trim(),
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displayName: values.displayName.trim() || values.name.trim(),
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phaseType:
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values.phaseType === "three_phase" ? "three_phase" : "single_phase",
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connectionKind: optionalString(values.connectionKind),
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costGroup: optionalString(values.costGroup),
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category: optionalString(values.category),
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quantity: Number(values.quantity),
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powerPerUnit: Number(values.powerPerUnit),
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simultaneityFactor: Number(values.simultaneityFactor),
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category: values.category as CircuitGroupCategory,
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quantity: parseDecimal(values.quantity),
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powerPerUnit: parseDecimal(values.powerPerUnit),
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simultaneityFactor: parseDecimal(values.simultaneityFactor),
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cosPhi: optionalNumber(values.cosPhi),
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remark: optionalString(values.remark),
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});
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@@ -52,10 +55,10 @@ export function ProjectDeviceModal({
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const isValid =
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values.name.trim().length > 0 &&
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Number(values.quantity) >= 0 &&
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Number(values.powerPerUnit) >= 0 &&
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Number(values.simultaneityFactor) >= 0 &&
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Number(values.simultaneityFactor) <= 1;
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isNumberInRange(values.quantity, 0) &&
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isNumberInRange(values.powerPerUnit, 0) &&
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isNumberInRange(values.simultaneityFactor, 0, 1) &&
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(!values.cosPhi.trim() || isNumberInRange(values.cosPhi, 0, 1));
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return (
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<FormModal
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@@ -116,12 +119,25 @@ export function ProjectDeviceModal({
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onChange={(value) => update("displayName", value)}
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value={values.displayName}
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/>
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<TextField
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id="device-category"
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label="Kategorie"
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onChange={(value) => update("category", value)}
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value={values.category}
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/>
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<div className="col-12 col-md-6">
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<label className="form-label" htmlFor="device-category">
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Kategorie
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</label>
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<select
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className="form-select"
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id="device-category"
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onChange={(event) =>
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update("category", event.target.value as CircuitGroupCategory)
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}
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value={values.category}
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>
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{circuitGroupCategories.map((category) => (
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<option key={category} value={category}>
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{circuitGroupCategoryLabels[category]}
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</option>
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))}
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</select>
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</div>
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<TextField
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id="device-connection"
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label="Anschlussart"
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@@ -134,20 +150,6 @@ export function ProjectDeviceModal({
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onChange={(value) => update("costGroup", value)}
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value={values.costGroup}
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/>
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<div className="col-12 col-md-6">
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<label className="form-label" htmlFor="device-phase-type">
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Phasenart
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</label>
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<select
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className="form-select"
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id="device-phase-type"
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onChange={(event) => update("phaseType", event.target.value)}
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value={values.phaseType}
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>
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<option value="single_phase">1-phasig</option>
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<option value="three_phase">3-phasig</option>
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</select>
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</div>
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<NumberField
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id="device-quantity"
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label="Anzahl"
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@@ -244,7 +246,8 @@ function NumberField({
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min={min}
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onChange={(event) => onChange(event.target.value)}
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step={step}
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type="number"
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inputMode="decimal"
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type="text"
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value={value}
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/>
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</div>
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@@ -255,10 +258,9 @@ function toFormValues(device?: ProjectDeviceDto) {
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return {
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name: device?.name ?? "",
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displayName: device?.displayName ?? "",
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phaseType: device?.phaseType ?? "single_phase",
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connectionKind: device?.connectionKind ?? "",
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costGroup: device?.costGroup ?? "",
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category: device?.category ?? "",
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category: device?.category ?? "single_phase",
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quantity: String(device?.quantity ?? 1),
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powerPerUnit: String(device?.powerPerUnit ?? 0.1),
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simultaneityFactor: String(device?.simultaneityFactor ?? 1),
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@@ -272,5 +274,14 @@ function optionalString(value: string) {
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}
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function optionalNumber(value: string) {
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return value.trim() ? Number(value) : undefined;
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return value.trim() ? parseDecimal(value) : undefined;
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}
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function parseDecimal(value: string) {
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return Number(value.trim().replace(",", "."));
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}
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function isNumberInRange(value: string, min: number, max = Number.POSITIVE_INFINITY) {
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const parsed = parseDecimal(value);
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return Number.isFinite(parsed) && parsed >= min && parsed <= max;
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}
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@@ -173,7 +173,7 @@ export interface ProjectDeviceDto {
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phaseType: "single_phase" | "three_phase";
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connectionKind: string | null;
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costGroup: string | null;
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category: string | null;
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category: CircuitGroupCategory;
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quantity: number;
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powerPerUnit: number;
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simultaneityFactor: number;
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@@ -218,10 +218,9 @@ export interface CreateGlobalDeviceInput {
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export interface CreateProjectDeviceInput {
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name: string;
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displayName: string;
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phaseType: "single_phase" | "three_phase";
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connectionKind?: string;
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costGroup?: string;
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category?: string;
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category: CircuitGroupCategory;
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quantity: number;
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powerPerUnit: number;
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simultaneityFactor: number;
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@@ -23,6 +23,8 @@ import {
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import type { CreateProjectDeviceInput } from "../../shared/validation/project-device.schemas.js";
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import { respondWithProjectCommandError } from "./project-command.controller.js";
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import { resolveProjectVoltage } from "../../domain/services/project-voltage.service.js";
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import { resolveProjectDevicePhaseType } from "../../domain/services/project-device-placement.service.js";
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import type { CircuitGroupCategory } from "../../shared/constants/circuit-group.js";
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export async function listProjectDevicesByProject(req: Request, res: Response) {
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const { projectId } = req.params;
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@@ -156,8 +158,10 @@ export async function copyGlobalDeviceToProject(req: Request, res: Response) {
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const projectDevice = toProjectDeviceSnapshot(projectId, randomUUID(), {
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name: source.name,
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displayName: source.displayName,
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phaseType: source.phaseCount === 3 ? "three_phase" : "single_phase",
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category: source.category ?? undefined,
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category: inferImportedProjectDeviceCategory(
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source.category,
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source.phaseCount
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),
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quantity: source.quantity,
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powerPerUnit: source.installedPowerPerUnitKw,
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simultaneityFactor: source.demandFactor,
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@@ -205,22 +209,34 @@ function toProjectDeviceValues(
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threePhaseVoltageV: number;
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}
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) {
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const phaseType = resolveProjectDevicePhaseType(input.category);
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return {
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name: input.name,
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displayName: input.displayName,
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phaseType: input.phaseType,
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phaseType,
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connectionKind: input.connectionKind ?? null,
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costGroup: input.costGroup ?? null,
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category: input.category ?? null,
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category: input.category,
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quantity: input.quantity,
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powerPerUnit: input.powerPerUnit,
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simultaneityFactor: input.simultaneityFactor,
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cosPhi: input.cosPhi ?? null,
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remark: input.remark ?? null,
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voltageV: resolveProjectVoltage(input.phaseType, project),
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voltageV: resolveProjectVoltage(phaseType, project),
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};
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}
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function inferImportedProjectDeviceCategory(
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category: string | null,
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phaseCount: number | null
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): CircuitGroupCategory {
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const normalized = category?.trim().toLowerCase() ?? "";
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if (normalized.includes("light") || normalized.includes("beleuchtung")) {
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return "lighting";
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}
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return phaseCount === 3 ? "three_phase" : "single_phase";
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}
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export async function getProjectDeviceSyncPreview(req: Request, res: Response) {
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const { projectId, projectDeviceId } = req.params;
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if (typeof projectId !== "string" || typeof projectDeviceId !== "string") {
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@@ -1,14 +1,14 @@
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import { z } from "zod";
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import { projectDeviceSyncFields } from "../constants/project-device-sync-fields.js";
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import { expectedProjectRevisionSchema } from "./project-command.schemas.js";
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import { circuitGroupCategories } from "../constants/circuit-group.js";
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export const createProjectDeviceSchema = z.object({
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name: z.string().min(1),
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displayName: z.string().min(1),
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phaseType: z.enum(["single_phase", "three_phase"]),
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connectionKind: z.string().optional(),
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costGroup: z.string().optional(),
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category: z.string().optional(),
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category: z.enum(circuitGroupCategories),
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quantity: z.number().min(0),
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powerPerUnit: z.number().min(0),
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simultaneityFactor: z.number().min(0).max(1),
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@@ -3,36 +3,27 @@ import { describe, it } from "node:test";
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import {
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inferProjectDeviceSectionKey,
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isProjectDevicePlacementValid,
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resolveProjectDevicePhaseType,
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} from "../src/domain/services/project-device-placement.service.js";
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describe("project device placement", () => {
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it("routes lighting categories to the lighting section before phase classification", () => {
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assert.equal(
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inferProjectDeviceSectionKey({ category: "Lighting", phaseType: "three_phase" }),
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"lighting"
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);
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assert.equal(
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inferProjectDeviceSectionKey({ category: "Beleuchtung", phaseType: "single_phase" }),
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"lighting"
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);
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});
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it("routes non-lighting devices by phase type", () => {
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assert.equal(
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inferProjectDeviceSectionKey({ category: "Socket", phaseType: "single_phase" }),
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"single_phase"
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);
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assert.equal(
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inferProjectDeviceSectionKey({ category: "Motor", phaseType: "three_phase" }),
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"three_phase"
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);
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it("routes project devices by their required category", () => {
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assert.equal(inferProjectDeviceSectionKey({ category: "lighting" }), "lighting");
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assert.equal(inferProjectDeviceSectionKey({ category: "single_phase" }), "single_phase");
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assert.equal(inferProjectDeviceSectionKey({ category: "three_phase" }), "three_phase");
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});
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it("accepts only the inferred default section", () => {
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const device = { category: "Motor", phaseType: "three_phase" as const };
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const device = { category: "three_phase" as const };
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assert.equal(isProjectDevicePlacementValid(device, { key: "three_phase" }), true);
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assert.equal(isProjectDevicePlacementValid(device, { key: "single_phase" }), false);
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assert.equal(isProjectDevicePlacementValid(device, { key: "unassigned" }), false);
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});
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it("derives the electrical phase type from the category", () => {
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assert.equal(resolveProjectDevicePhaseType("lighting"), "single_phase");
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assert.equal(resolveProjectDevicePhaseType("single_phase"), "single_phase");
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assert.equal(resolveProjectDevicePhaseType("three_phase"), "three_phase");
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});
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});
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@@ -14,10 +14,9 @@ describe("project device circuit-first schema", () => {
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const result = createProjectDeviceSchema.safeParse({
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name: "E-Line Pro",
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displayName: "Office lighting",
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phaseType: "single_phase",
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connectionKind: "fixed",
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costGroup: "440",
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category: "Lighting",
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category: "lighting",
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quantity: 6,
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powerPerUnit: 0.04,
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simultaneityFactor: 0.8,
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@@ -28,7 +27,7 @@ describe("project device circuit-first schema", () => {
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assert.equal(result.success, true);
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});
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it("requires the circuit-first power and phase fields", () => {
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it("requires the circuit-first power and category fields", () => {
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const result = createProjectDeviceSchema.safeParse({
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name: "Test device",
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displayName: "Test device",
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@@ -45,7 +44,7 @@ describe("project device circuit-first schema", () => {
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const result = createProjectDeviceSchema.safeParse({
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name: "Pumpe",
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displayName: "Pumpe",
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phaseType: "three_phase",
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category: "three_phase",
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quantity: 1,
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powerPerUnit: 2,
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simultaneityFactor: 1,
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@@ -59,7 +58,7 @@ describe("project device circuit-first schema", () => {
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const device = {
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name: "E-Line Pro",
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displayName: "Bürobeleuchtung",
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phaseType: "single_phase" as const,
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category: "lighting" as const,
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quantity: 6,
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powerPerUnit: 0.04,
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simultaneityFactor: 0.8,
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@@ -283,7 +283,6 @@ describe("project device modal presentation", () => {
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"Kategorie",
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"Anschlussart",
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"Kostengruppe",
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"Phasenart",
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"Anzahl",
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"Leistung je Stück [kW]",
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"Gleichzeitigkeitsfaktor",
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@@ -292,6 +291,10 @@ describe("project device modal presentation", () => {
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assert.match(markup, new RegExp(label.replace("[", "\\[").replace("]", "\\]")));
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}
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assert.doesNotMatch(markup, /Spannung \[V\]/);
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assert.doesNotMatch(markup, /Phasenart/);
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assert.match(markup, /Beleuchtung/);
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assert.match(markup, /1-phasig/);
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assert.match(markup, /3-phasig/);
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});
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});
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