leistungsbilanz-ts/src/db/repositories/circuit-device-row.repository.ts

183 lines
6.3 KiB
TypeScript

import crypto from "node:crypto";
import { and, asc, eq, inArray } from "drizzle-orm";
import { db } from "../client.js";
import { circuitDeviceRows } from "../schema/circuit-device-rows.js";
import { circuitLists } from "../schema/circuit-lists.js";
import { circuits } from "../schema/circuits.js";
import { distributionBoards } from "../schema/distribution-boards.js";
export class CircuitDeviceRowRepository {
async findById(rowId: string) {
const [row] = await db.select().from(circuitDeviceRows).where(eq(circuitDeviceRows.id, rowId)).limit(1);
return row ?? null;
}
async countByCircuit(circuitId: string) {
const rows = await db.select({ id: circuitDeviceRows.id }).from(circuitDeviceRows).where(eq(circuitDeviceRows.circuitId, circuitId));
return rows.length;
}
async listByCircuitList(circuitIds: string[]) {
if (!circuitIds.length) {
return [];
}
return db
.select()
.from(circuitDeviceRows)
.where(inArray(circuitDeviceRows.circuitId, circuitIds))
.orderBy(asc(circuitDeviceRows.sortOrder));
}
async listLinkedByProjectDevice(projectId: string, projectDeviceId: string) {
return db
.select({
id: circuitDeviceRows.id,
circuitId: circuitDeviceRows.circuitId,
linkedProjectDeviceId: circuitDeviceRows.linkedProjectDeviceId,
legacyConsumerId: circuitDeviceRows.legacyConsumerId,
sortOrder: circuitDeviceRows.sortOrder,
name: circuitDeviceRows.name,
displayName: circuitDeviceRows.displayName,
phaseType: circuitDeviceRows.phaseType,
connectionKind: circuitDeviceRows.connectionKind,
costGroup: circuitDeviceRows.costGroup,
category: circuitDeviceRows.category,
level: circuitDeviceRows.level,
roomId: circuitDeviceRows.roomId,
roomNumberSnapshot: circuitDeviceRows.roomNumberSnapshot,
roomNameSnapshot: circuitDeviceRows.roomNameSnapshot,
quantity: circuitDeviceRows.quantity,
powerPerUnit: circuitDeviceRows.powerPerUnit,
simultaneityFactor: circuitDeviceRows.simultaneityFactor,
cosPhi: circuitDeviceRows.cosPhi,
remark: circuitDeviceRows.remark,
overriddenFields: circuitDeviceRows.overriddenFields,
equipmentIdentifier: circuits.equipmentIdentifier,
circuitDisplayName: circuits.displayName,
circuitListId: circuitLists.id,
circuitListName: circuitLists.name,
distributionBoardId: distributionBoards.id,
distributionBoardName: distributionBoards.name,
})
.from(circuitDeviceRows)
.innerJoin(circuits, eq(circuitDeviceRows.circuitId, circuits.id))
.innerJoin(circuitLists, eq(circuits.circuitListId, circuitLists.id))
.innerJoin(distributionBoards, eq(circuitLists.distributionBoardId, distributionBoards.id))
.where(
and(
eq(circuitDeviceRows.linkedProjectDeviceId, projectDeviceId),
eq(circuitLists.projectId, projectId)
)
)
.orderBy(asc(distributionBoards.name), asc(circuits.equipmentIdentifier), asc(circuitDeviceRows.sortOrder));
}
async create(input: {
circuitId: string;
linkedProjectDeviceId?: string;
legacyConsumerId?: string;
sortOrder: number;
name: string;
displayName: string;
phaseType?: string;
connectionKind?: string;
costGroup?: string;
category?: string;
level?: string;
roomId?: string;
roomNumberSnapshot?: string;
roomNameSnapshot?: string;
quantity: number;
powerPerUnit: number;
simultaneityFactor: number;
cosPhi?: number;
remark?: string;
overriddenFields?: string;
}) {
const id = crypto.randomUUID();
await db.insert(circuitDeviceRows).values({
id,
circuitId: input.circuitId,
linkedProjectDeviceId: input.linkedProjectDeviceId ?? null,
legacyConsumerId: input.legacyConsumerId ?? null,
sortOrder: input.sortOrder,
name: input.name,
displayName: input.displayName,
phaseType: input.phaseType ?? null,
connectionKind: input.connectionKind ?? null,
costGroup: input.costGroup ?? null,
category: input.category ?? null,
level: input.level ?? null,
roomId: input.roomId ?? null,
roomNumberSnapshot: input.roomNumberSnapshot ?? null,
roomNameSnapshot: input.roomNameSnapshot ?? null,
quantity: input.quantity,
powerPerUnit: input.powerPerUnit,
simultaneityFactor: input.simultaneityFactor,
cosPhi: input.cosPhi ?? null,
remark: input.remark ?? null,
overriddenFields: input.overriddenFields ?? null,
});
return id;
}
async update(
rowId: string,
input: {
linkedProjectDeviceId?: string;
name: string;
displayName: string;
phaseType?: string;
connectionKind?: string;
costGroup?: string;
category?: string;
level?: string;
roomId?: string;
roomNumberSnapshot?: string;
roomNameSnapshot?: string;
quantity: number;
powerPerUnit: number;
simultaneityFactor: number;
cosPhi?: number;
remark?: string;
overriddenFields?: string;
}
) {
await db
.update(circuitDeviceRows)
.set({
linkedProjectDeviceId: input.linkedProjectDeviceId ?? null,
name: input.name,
displayName: input.displayName,
phaseType: input.phaseType ?? null,
connectionKind: input.connectionKind ?? null,
costGroup: input.costGroup ?? null,
category: input.category ?? null,
level: input.level ?? null,
roomId: input.roomId ?? null,
roomNumberSnapshot: input.roomNumberSnapshot ?? null,
roomNameSnapshot: input.roomNameSnapshot ?? null,
quantity: input.quantity,
powerPerUnit: input.powerPerUnit,
simultaneityFactor: input.simultaneityFactor,
cosPhi: input.cosPhi ?? null,
remark: input.remark ?? null,
overriddenFields: input.overriddenFields ?? null,
})
.where(eq(circuitDeviceRows.id, rowId));
}
async delete(rowId: string) {
await db.delete(circuitDeviceRows).where(eq(circuitDeviceRows.id, rowId));
}
async moveToCircuit(rowId: string, targetCircuitId: string, sortOrder: number) {
await db
.update(circuitDeviceRows)
.set({
circuitId: targetCircuitId,
sortOrder,
})
.where(eq(circuitDeviceRows.id, rowId));
}
}