Make device row moves atomic

This commit is contained in:
2026-07-23 18:52:40 +02:00
parent a6837d7242
commit cf356bbedc
7 changed files with 440 additions and 247 deletions
@@ -330,6 +330,7 @@ Implemented foundation:
- distribution-board setup has real in-memory SQLite commit and rollback coverage using production migrations
- circuit-device-row creation/deletion and reserve-state changes use an explicitly injected transaction store
- a new circuit and all of its initial device rows use the same transaction store
- device-row moves, reserve-state updates and optional target creation share one transaction
- circuit-device-row transaction tests cover both successful commits and forced SQLite rollbacks
- circuit and device-row persistence value mapping is separated from the general repositories
@@ -1,9 +1,10 @@
import crypto from "node:crypto";
import { and, eq } from "drizzle-orm";
import { and, eq, inArray } from "drizzle-orm";
import type {
CircuitDeviceRowTransactionStore,
CreateCircuitDeviceRowTransactionInput,
CreateCircuitWithDeviceRowsTransactionInput,
MoveCircuitDeviceRowsTransactionInput,
} from "../../domain/ports/circuit-device-row-transaction.store.js";
import type { AppDatabase } from "../database-context.js";
import { circuitDeviceRows } from "../schema/circuit-device-rows.js";
@@ -128,4 +129,154 @@ export class CircuitDeviceRowTransactionRepository
.run();
});
}
moveRows(input: MoveCircuitDeviceRowsTransactionInput) {
if (input.rows.length === 0) {
throw new Error("Keine Gerätezeilen zum Verschieben angegeben.");
}
if (Boolean(input.targetCircuitId) === Boolean(input.createTargetCircuit)) {
throw new Error("Für die Mehrfachverschiebung muss genau ein Ziel angegeben werden.");
}
const rowIds = input.rows.map((row) => row.id);
if (new Set(rowIds).size !== rowIds.length) {
throw new Error("Gerätezeilen dürfen nicht mehrfach ausgewählt sein.");
}
const createdCircuitId = input.createTargetCircuit ? crypto.randomUUID() : undefined;
const targetCircuitId = input.targetCircuitId ?? createdCircuitId!;
this.database.transaction((tx) => {
const persistedRows = tx
.select({ id: circuitDeviceRows.id, circuitId: circuitDeviceRows.circuitId })
.from(circuitDeviceRows)
.where(inArray(circuitDeviceRows.id, rowIds))
.all();
if (persistedRows.length !== input.rows.length) {
throw new Error("Eine oder mehrere Gerätezeilen sind ungültig.");
}
const persistedRowsById = new Map(persistedRows.map((row) => [row.id, row]));
for (const expectedRow of input.rows) {
if (
persistedRowsById.get(expectedRow.id)?.circuitId !==
expectedRow.expectedCircuitId
) {
throw new Error(
"Eine Gerätezeile wurde vor Abschluss der Verschiebung verändert."
);
}
}
let targetCircuit: { id: string; circuitListId: string };
if (input.createTargetCircuit) {
tx
.insert(circuits)
.values({
id: targetCircuitId,
circuitListId: input.createTargetCircuit.circuitListId,
sectionId: input.createTargetCircuit.sectionId,
equipmentIdentifier: input.createTargetCircuit.equipmentIdentifier,
displayName: input.createTargetCircuit.displayName,
sortOrder: input.createTargetCircuit.sortOrder,
isReserve: 0,
})
.run();
targetCircuit = {
id: targetCircuitId,
circuitListId: input.createTargetCircuit.circuitListId,
};
} else {
const [persistedTargetCircuit] = tx
.select({ id: circuits.id, circuitListId: circuits.circuitListId })
.from(circuits)
.where(eq(circuits.id, targetCircuitId))
.limit(1)
.all();
if (!persistedTargetCircuit) {
throw new Error("Der Zielstromkreis ist ungültig.");
}
targetCircuit = persistedTargetCircuit;
}
const sourceCircuitIds = [
...new Set(input.rows.map((row) => row.expectedCircuitId)),
];
const sourceCircuits = tx
.select({ id: circuits.id, circuitListId: circuits.circuitListId })
.from(circuits)
.where(inArray(circuits.id, sourceCircuitIds))
.all();
if (sourceCircuits.length !== sourceCircuitIds.length) {
throw new Error("Einer oder mehrere Quellstromkreise sind ungültig.");
}
if (
sourceCircuits.some(
(circuit) => circuit.circuitListId !== targetCircuit.circuitListId
)
) {
throw new Error(
"Alle verschobenen Zeilen müssen zur Stromkreisliste des Ziels gehören."
);
}
const movedRowIdSet = new Set(rowIds);
const retainedTargetRows = tx
.select({ id: circuitDeviceRows.id, sortOrder: circuitDeviceRows.sortOrder })
.from(circuitDeviceRows)
.where(eq(circuitDeviceRows.circuitId, targetCircuitId))
.all()
.filter((row) => !movedRowIdSet.has(row.id));
const lastTargetSortOrder = retainedTargetRows.reduce(
(highest, row) => Math.max(highest, row.sortOrder),
0
);
for (let index = 0; index < input.rows.length; index += 1) {
const row = input.rows[index];
const result = tx
.update(circuitDeviceRows)
.set({
circuitId: targetCircuitId,
sortOrder: lastTargetSortOrder + (index + 1) * 10,
})
.where(
and(
eq(circuitDeviceRows.id, row.id),
eq(circuitDeviceRows.circuitId, row.expectedCircuitId)
)
)
.run();
if (result.changes !== 1) {
throw new Error(
"Eine Gerätezeile wurde vor Abschluss der Verschiebung verändert."
);
}
}
for (const sourceCircuitId of sourceCircuitIds) {
const remainingRows = tx
.select({ id: circuitDeviceRows.id })
.from(circuitDeviceRows)
.where(eq(circuitDeviceRows.circuitId, sourceCircuitId))
.all();
tx
.update(circuits)
.set({ isReserve: remainingRows.length === 0 ? 1 : 0 })
.where(eq(circuits.id, sourceCircuitId))
.run();
}
tx
.update(circuits)
.set({ isReserve: 0 })
.where(eq(circuits.id, targetCircuitId))
.run();
});
return {
movedRowIds: rowIds,
targetCircuitId,
createdCircuitId,
};
}
}
@@ -20,18 +20,6 @@ export type {
} from "./circuit-device-row.persistence.js";
export { toCircuitDeviceRowCreateValues } from "./circuit-device-row.persistence.js";
export interface CircuitDeviceRowsBulkMoveInput {
rows: Array<{ id: string; expectedCircuitId: string }>;
targetCircuitId?: string;
createTargetCircuit?: {
circuitListId: string;
sectionId: string;
equipmentIdentifier: string;
displayName: string;
sortOrder: number;
};
}
export class CircuitDeviceRowRepository {
async findById(rowId: string) {
const [row] = await db.select().from(circuitDeviceRows).where(eq(circuitDeviceRows.id, rowId)).limit(1);
@@ -209,137 +197,4 @@ export class CircuitDeviceRowRepository {
.where(eq(circuitDeviceRows.id, rowId));
}
moveRowsTransactional(input: CircuitDeviceRowsBulkMoveInput) {
if (input.rows.length === 0) {
throw new Error("Keine Gerätezeilen zum Verschieben angegeben.");
}
if (Boolean(input.targetCircuitId) === Boolean(input.createTargetCircuit)) {
throw new Error("Für die Mehrfachverschiebung muss genau ein Ziel angegeben werden.");
}
const rowIds = input.rows.map((row) => row.id);
if (new Set(rowIds).size !== rowIds.length) {
throw new Error("Gerätezeilen dürfen nicht mehrfach ausgewählt sein.");
}
const createdCircuitId = input.createTargetCircuit ? crypto.randomUUID() : undefined;
const targetCircuitId = input.targetCircuitId ?? createdCircuitId!;
// better-sqlite3 transactions must remain synchronous. Every row assignment,
// reserve-state update and optional target creation is committed or rolled back
// as one operation.
db.transaction((tx) => {
const persistedRows = tx
.select({ id: circuitDeviceRows.id, circuitId: circuitDeviceRows.circuitId })
.from(circuitDeviceRows)
.where(inArray(circuitDeviceRows.id, rowIds))
.all();
if (persistedRows.length !== input.rows.length) {
throw new Error("Eine oder mehrere Gerätezeilen sind ungültig.");
}
const persistedRowsById = new Map(persistedRows.map((row) => [row.id, row]));
for (const expectedRow of input.rows) {
if (persistedRowsById.get(expectedRow.id)?.circuitId !== expectedRow.expectedCircuitId) {
throw new Error("Eine Gerätezeile wurde vor Abschluss der Verschiebung verändert.");
}
}
let targetCircuit: { id: string; circuitListId: string };
if (input.createTargetCircuit) {
tx
.insert(circuits)
.values({
id: targetCircuitId,
circuitListId: input.createTargetCircuit.circuitListId,
sectionId: input.createTargetCircuit.sectionId,
equipmentIdentifier: input.createTargetCircuit.equipmentIdentifier,
displayName: input.createTargetCircuit.displayName,
sortOrder: input.createTargetCircuit.sortOrder,
isReserve: 0,
})
.run();
targetCircuit = {
id: targetCircuitId,
circuitListId: input.createTargetCircuit.circuitListId,
};
} else {
const [persistedTargetCircuit] = tx
.select({ id: circuits.id, circuitListId: circuits.circuitListId })
.from(circuits)
.where(eq(circuits.id, targetCircuitId))
.limit(1)
.all();
if (!persistedTargetCircuit) {
throw new Error("Der Zielstromkreis ist ungültig.");
}
targetCircuit = persistedTargetCircuit;
}
const sourceCircuitIds = [...new Set(input.rows.map((row) => row.expectedCircuitId))];
const sourceCircuits = tx
.select({ id: circuits.id, circuitListId: circuits.circuitListId })
.from(circuits)
.where(inArray(circuits.id, sourceCircuitIds))
.all();
if (sourceCircuits.length !== sourceCircuitIds.length) {
throw new Error("Einer oder mehrere Quellstromkreise sind ungültig.");
}
if (sourceCircuits.some((circuit) => circuit.circuitListId !== targetCircuit.circuitListId)) {
throw new Error("Alle verschobenen Zeilen müssen zur Stromkreisliste des Ziels gehören.");
}
const movedRowIdSet = new Set(rowIds);
const retainedTargetRows = tx
.select({ id: circuitDeviceRows.id, sortOrder: circuitDeviceRows.sortOrder })
.from(circuitDeviceRows)
.where(eq(circuitDeviceRows.circuitId, targetCircuitId))
.all()
.filter((row) => !movedRowIdSet.has(row.id));
const lastTargetSortOrder = retainedTargetRows.reduce(
(highest, row) => Math.max(highest, row.sortOrder),
0
);
for (let index = 0; index < input.rows.length; index += 1) {
const row = input.rows[index];
const result = tx
.update(circuitDeviceRows)
.set({
circuitId: targetCircuitId,
sortOrder: lastTargetSortOrder + (index + 1) * 10,
})
.where(
and(
eq(circuitDeviceRows.id, row.id),
eq(circuitDeviceRows.circuitId, row.expectedCircuitId)
)
)
.run();
if (result.changes !== 1) {
throw new Error("Eine Gerätezeile wurde vor Abschluss der Verschiebung verändert.");
}
}
for (const sourceCircuitId of sourceCircuitIds) {
const remainingRows = tx
.select({ id: circuitDeviceRows.id })
.from(circuitDeviceRows)
.where(eq(circuitDeviceRows.circuitId, sourceCircuitId))
.all();
tx
.update(circuits)
.set({ isReserve: remainingRows.length === 0 ? 1 : 0 })
.where(eq(circuits.id, sourceCircuitId))
.run();
}
tx.update(circuits).set({ isReserve: 0 }).where(eq(circuits.id, targetCircuitId)).run();
});
return {
movedRowIds: rowIds,
targetCircuitId,
createdCircuitId,
};
}
}
@@ -45,10 +45,31 @@ export interface CreateCircuitWithDeviceRowsTransactionInput {
deviceRows: Array<Omit<CreateCircuitDeviceRowTransactionInput, "circuitId">>;
}
export interface MoveCircuitDeviceRowsTransactionInput {
rows: Array<{ id: string; expectedCircuitId: string }>;
targetCircuitId?: string;
createTargetCircuit?: {
circuitListId: string;
sectionId: string;
equipmentIdentifier: string;
displayName: string;
sortOrder: number;
};
}
export interface MoveCircuitDeviceRowsTransactionResult {
movedRowIds: string[];
targetCircuitId: string;
createdCircuitId?: string;
}
export interface CircuitDeviceRowTransactionStore {
createInCircuit(input: CreateCircuitDeviceRowTransactionInput): string;
createCircuitWithDeviceRows(
input: CreateCircuitWithDeviceRowsTransactionInput
): { circuitId: string; rowIds: string[] };
deleteFromCircuit(rowId: string, expectedCircuitId: string): void;
moveRows(
input: MoveCircuitDeviceRowsTransactionInput
): MoveCircuitDeviceRowsTransactionResult;
}
+2 -2
View File
@@ -334,7 +334,7 @@ export class CircuitWriteService {
return this.deviceRowRepository.findById(rowId);
}
this.deviceRowRepository.moveRowsTransactional({
this.getDeviceRowTransactionStore().moveRows({
rows: [{ id: row.id, expectedCircuitId: row.circuitId }],
targetCircuitId: targetCircuit?.id,
createTargetCircuit,
@@ -415,7 +415,7 @@ export class CircuitWriteService {
}
}
return this.deviceRowRepository.moveRowsTransactional({
return this.getDeviceRowTransactionStore().moveRows({
rows: rows.map((row) => ({ id: row.id, expectedCircuitId: row.circuitId })),
targetCircuitId: targetCircuit?.id,
createTargetCircuit,
@@ -47,15 +47,49 @@ function createTestDatabase(): DatabaseContext {
return context;
}
function insertDeviceRow(context: DatabaseContext) {
function insertCircuit(
context: DatabaseContext,
input: {
id: string;
equipmentIdentifier: string;
sortOrder: number;
isReserve?: number;
}
) {
const [seedCircuit] = context.db.select().from(circuits).limit(1).all();
context.db
.insert(circuits)
.values({
id: input.id,
circuitListId: seedCircuit.circuitListId,
sectionId: seedCircuit.sectionId,
equipmentIdentifier: input.equipmentIdentifier,
displayName: input.equipmentIdentifier,
sortOrder: input.sortOrder,
isReserve: input.isReserve ?? 1,
})
.run();
}
function insertDeviceRow(
context: DatabaseContext,
input: {
id?: string;
circuitId?: string;
sortOrder?: number;
displayName?: string;
} = {}
) {
const rowId = input.id ?? "row-1";
const circuitId = input.circuitId ?? "circuit-1";
context.db
.insert(circuitDeviceRows)
.values({
id: "row-1",
circuitId: "circuit-1",
sortOrder: 10,
id: rowId,
circuitId,
sortOrder: input.sortOrder ?? 10,
name: "Leuchte",
displayName: "Leuchte",
displayName: input.displayName ?? "Leuchte",
quantity: 1,
powerPerUnit: 0.1,
simultaneityFactor: 1,
@@ -64,7 +98,7 @@ function insertDeviceRow(context: DatabaseContext) {
context.db
.update(circuits)
.set({ isReserve: 0 })
.where(eq(circuits.id, "circuit-1"))
.where(eq(circuits.id, circuitId))
.run();
}
@@ -283,4 +317,213 @@ describe("circuit device-row transaction repository", () => {
context.close();
}
});
it("moves rows to an existing circuit and updates both reserve states together", () => {
const context = createTestDatabase();
try {
insertCircuit(context, {
id: "circuit-2",
equipmentIdentifier: "-1F2",
sortOrder: 20,
});
insertCircuit(context, {
id: "circuit-3",
equipmentIdentifier: "-1F3",
sortOrder: 30,
});
insertDeviceRow(context);
insertDeviceRow(context, {
id: "row-2",
circuitId: "circuit-2",
sortOrder: 10,
displayName: "Zweite Quellzeile",
});
insertDeviceRow(context, {
id: "target-row",
circuitId: "circuit-3",
sortOrder: 10,
displayName: "Bestehende Zielzeile",
});
const repository = new CircuitDeviceRowTransactionRepository(context.db);
const result = repository.moveRows({
rows: [
{ id: "row-1", expectedCircuitId: "circuit-1" },
{ id: "row-2", expectedCircuitId: "circuit-2" },
],
targetCircuitId: "circuit-3",
});
const movedRows = context.db
.select()
.from(circuitDeviceRows)
.all()
.filter((row) => row.id === "row-1" || row.id === "row-2")
.sort((left, right) => left.sortOrder - right.sortOrder);
const persistedCircuits = context.db.select().from(circuits).all();
const targetCircuit = persistedCircuits.find(
(circuit) => circuit.id === "circuit-3"
);
assert.deepEqual(result, {
movedRowIds: ["row-1", "row-2"],
targetCircuitId: "circuit-3",
createdCircuitId: undefined,
});
assert.deepEqual(
movedRows.map((row) => [row.id, row.circuitId, row.sortOrder]),
[
["row-1", "circuit-3", 20],
["row-2", "circuit-3", 30],
]
);
assert.equal(
persistedCircuits.find((circuit) => circuit.id === "circuit-1")?.isReserve,
1
);
assert.equal(
persistedCircuits.find((circuit) => circuit.id === "circuit-2")?.isReserve,
1
);
assert.equal(targetCircuit?.isReserve, 0);
} finally {
context.close();
}
});
it("rolls back an existing-target move when a reserve update fails", () => {
const context = createTestDatabase();
try {
insertCircuit(context, {
id: "circuit-2",
equipmentIdentifier: "-1F2",
sortOrder: 20,
});
insertDeviceRow(context);
context.sqlite.exec(`
CREATE TRIGGER fail_source_reserve_update
BEFORE UPDATE OF is_reserve ON circuits
WHEN NEW.id = 'circuit-1' AND NEW.is_reserve = 1
BEGIN
SELECT RAISE(ABORT, 'forced source reserve failure');
END;
`);
const repository = new CircuitDeviceRowTransactionRepository(context.db);
assert.throws(
() =>
repository.moveRows({
rows: [{ id: "row-1", expectedCircuitId: "circuit-1" }],
targetCircuitId: "circuit-2",
}),
/forced source reserve failure/
);
const [row] = context.db.select().from(circuitDeviceRows).all();
const persistedCircuits = context.db.select().from(circuits).all();
assert.equal(row.circuitId, "circuit-1");
assert.equal(
persistedCircuits.find((circuit) => circuit.id === "circuit-1")?.isReserve,
0
);
assert.equal(
persistedCircuits.find((circuit) => circuit.id === "circuit-2")?.isReserve,
1
);
} finally {
context.close();
}
});
it("creates a new target circuit and moves rows into it atomically", () => {
const context = createTestDatabase();
try {
insertDeviceRow(context);
const [sourceCircuit] = context.db
.select()
.from(circuits)
.where(eq(circuits.id, "circuit-1"))
.all();
const repository = new CircuitDeviceRowTransactionRepository(context.db);
const result = repository.moveRows({
rows: [{ id: "row-1", expectedCircuitId: "circuit-1" }],
createTargetCircuit: {
circuitListId: sourceCircuit.circuitListId,
sectionId: sourceCircuit.sectionId,
equipmentIdentifier: "-1F2",
displayName: "Neues Ziel",
sortOrder: 20,
},
});
const [movedRow] = context.db
.select()
.from(circuitDeviceRows)
.where(eq(circuitDeviceRows.id, "row-1"))
.all();
const [createdCircuit] = context.db
.select()
.from(circuits)
.where(eq(circuits.id, result.createdCircuitId!))
.all();
const [updatedSource] = context.db
.select()
.from(circuits)
.where(eq(circuits.id, "circuit-1"))
.all();
assert.equal(result.targetCircuitId, result.createdCircuitId);
assert.equal(createdCircuit.equipmentIdentifier, "-1F2");
assert.equal(createdCircuit.isReserve, 0);
assert.equal(movedRow.circuitId, createdCircuit.id);
assert.equal(updatedSource.isReserve, 1);
} finally {
context.close();
}
});
it("rolls back a newly created target circuit when the move fails", () => {
const context = createTestDatabase();
try {
insertDeviceRow(context);
const [sourceCircuit] = context.db
.select()
.from(circuits)
.where(eq(circuits.id, "circuit-1"))
.all();
context.sqlite.exec(`
CREATE TRIGGER fail_new_target_source_reserve
BEFORE UPDATE OF is_reserve ON circuits
WHEN NEW.id = 'circuit-1' AND NEW.is_reserve = 1
BEGIN
SELECT RAISE(ABORT, 'forced new-target move failure');
END;
`);
const repository = new CircuitDeviceRowTransactionRepository(context.db);
assert.throws(
() =>
repository.moveRows({
rows: [{ id: "row-1", expectedCircuitId: "circuit-1" }],
createTargetCircuit: {
circuitListId: sourceCircuit.circuitListId,
sectionId: sourceCircuit.sectionId,
equipmentIdentifier: "-1F2",
displayName: "Rollback-Ziel",
sortOrder: 20,
},
}),
/forced new-target move failure/
);
const [row] = context.db.select().from(circuitDeviceRows).all();
const persistedCircuits = context.db.select().from(circuits).all();
assert.equal(row.circuitId, "circuit-1");
assert.equal(persistedCircuits.length, 1);
assert.equal(persistedCircuits[0].isReserve, 0);
} finally {
context.close();
}
});
});
+15 -93
View File
@@ -414,7 +414,9 @@ describe("circuit write service rules", () => {
async findById() {
return { id: "r1", circuitId: "c1" } as never;
},
moveRowsTransactional(input: typeof transactionalMove) {
} as never,
deviceRowTransactionStore: {
moveRows(input: typeof transactionalMove) {
transactionalMove = input;
return {
movedRowIds: input!.rows.map((row) => row.id),
@@ -469,7 +471,9 @@ describe("circuit write service rules", () => {
async findById() {
return { id: "r1", circuitId: "c1" } as never;
},
moveRowsTransactional(input: { rows: Array<{ id: string }>; createTargetCircuit?: typeof preparedTarget }) {
} as never,
deviceRowTransactionStore: {
moveRows(input: { rows: Array<{ id: string }>; createTargetCircuit?: typeof preparedTarget }) {
preparedTarget = input.createTargetCircuit;
return {
movedRowIds: input.rows.map((row) => row.id),
@@ -525,7 +529,9 @@ describe("circuit write service rules", () => {
async findById() {
return { id: "r1", circuitId: "c1" } as never;
},
moveRowsTransactional() {
} as never,
deviceRowTransactionStore: {
moveRows() {
transactionalMoveCount += 1;
throw new Error("same-circuit move must not write");
},
@@ -565,7 +571,9 @@ describe("circuit write service rules", () => {
}
return { id: "r2", circuitId: "c2" } as never;
},
moveRowsTransactional(input: typeof transactionalMove) {
} as never,
deviceRowTransactionStore: {
moveRows(input: typeof transactionalMove) {
transactionalMove = input;
return {
movedRowIds: input!.rows.map((row) => row.id),
@@ -617,7 +625,9 @@ describe("circuit write service rules", () => {
async findById(rowId: string) {
return { id: rowId, circuitId: rowId === "r1" ? "c1" : "c2" } as never;
},
moveRowsTransactional(input: { rows: Array<{ id: string }>; createTargetCircuit?: typeof preparedTarget }) {
} as never,
deviceRowTransactionStore: {
moveRows(input: { rows: Array<{ id: string }>; createTargetCircuit?: typeof preparedTarget }) {
transactionCount += 1;
preparedTarget = input.createTargetCircuit;
return {
@@ -839,94 +849,6 @@ describe("circuit write service rules", () => {
}
});
it("bulk device row move uses one synchronous transaction callback", () => {
const repository = new CircuitDeviceRowRepository();
const originalTransaction = (db as unknown as { transaction: unknown }).transaction;
let callbackReturnedPromise = false;
let selectCall = 0;
let rowUpdateCount = 0;
const selectedRows = [
[
{ id: "r1", circuitId: "c1" },
{ id: "r2", circuitId: "c2" },
],
[{ id: "c3", circuitListId: "l1" }],
[
{ id: "c1", circuitListId: "l1" },
{ id: "c2", circuitListId: "l1" },
],
[{ id: "existing-target-row", sortOrder: 10 }],
[],
[],
];
(db as unknown as { transaction: (cb: (tx: unknown) => unknown) => void }).transaction = (cb) => {
const fakeTx = {
select() {
const rows = selectedRows[selectCall++] ?? [];
const query = {
from() {
return query;
},
where() {
return query;
},
limit() {
return query;
},
all() {
return rows;
},
};
return query;
},
update() {
return {
set() {
return {
where() {
return {
run() {
rowUpdateCount += 1;
return { changes: 1 };
},
};
},
};
},
};
},
};
const callbackResult = cb(fakeTx);
callbackReturnedPromise = Boolean(
callbackResult && typeof (callbackResult as Promise<unknown>).then === "function"
);
if (callbackReturnedPromise) {
throw new Error("Transaction function cannot return a promise");
}
};
try {
const result = repository.moveRowsTransactional({
rows: [
{ id: "r1", expectedCircuitId: "c1" },
{ id: "r2", expectedCircuitId: "c2" },
],
targetCircuitId: "c3",
});
assert.equal(callbackReturnedPromise, false);
assert.equal(rowUpdateCount, 5);
assert.deepEqual(result, {
movedRowIds: ["r1", "r2"],
targetCircuitId: "c3",
createdCircuitId: undefined,
});
} finally {
(db as unknown as { transaction: unknown }).transaction = originalTransaction;
}
});
it("tracks local edits on linked device rows as overridden fields", async () => {
let updatePayload: Record<string, unknown> = {};
const current = {