feat: add the shared IndexedDB connection and transaction kernel

네 어댑터가 각자 구현한 open/blocked/upgrade/트랜잭션 메커니즘을 커널로
모은다. 사본은 아직 이행하지 않았으므로 런타임 동작은 그대로다.

실패 분류는 커널에 넣지 않고 translate 콜백으로 주입한다. RT/MT/OP의
mapIndexedDbException과 CP의 mapBrowserDataException이 같은 에러에 다른
답을 내며, 그 차이를 통일하는 것은 별건이기 때문이다.

IndexedDbFailureCause는 translate의 입력과 호출자가 주는 admit FAIL에만
나오고 공개 반환 타입에는 나오지 않는다. 기존 커널 abortable-operation.ts는
AbortTerminalReason 3멤버를 반환 타입에 박아서 5종이 필요한 http v3가 아예
쓰지 못했는데, 그 함정을 피하기 위한 설계다. 사양 3.4의 네 호출부를 실제
코드로 써서 tsc --strict로 컴파일해 수용을 확인했다.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
This commit is contained in:
DongHyeonka
2026-09-16 19:11:35 +09:00
co-authored by Claude Opus 5
parent 0f157494cd
commit cb62bfb9a9
5 changed files with 2799 additions and 63 deletions
+886
View File
@@ -0,0 +1,886 @@
import { describe, expect, it, vi } from "vitest";
import {
createIndexedDbConnection,
deleteIndexedDbDatabase,
openIndexedDbDatabase,
type IndexedDbFailureCause,
type IndexedDbTranslate,
} from "../../src/adapters/platform/indexeddb-connection.ts";
import { MemoryIndexedDbFactory } from "../helpers/memory-indexeddb.ts";
/**
* IDB-X-01 golden tests. The kernel owns connection mechanics only: it must
* never name an operation label, a failure code or a schema. Every assertion
* below reads the cause the kernel reported, not a taxonomy it chose.
*/
type TestFailure = Readonly<{ cause: IndexedDbFailureCause["kind"]; detail?: unknown }>;
/**
* A `translate` written as a total switch over the union. This is the extension
* point `abortable-operation.ts:11` lacked: adding a cause member breaks every
* translate at compile time instead of silently changing behavior, and the
* union never appears in a return type.
*/
function recordingTranslate(
seen: IndexedDbFailureCause["kind"][],
): IndexedDbTranslate<TestFailure> {
return (cause) => {
seen.push(cause.kind);
switch (cause.kind) {
case "NATIVE_EXCEPTION":
return { cause: cause.kind, detail: cause.error };
case "BLOCKED":
return {
cause: cause.kind,
detail: { oldVersion: cause.oldVersion, newVersion: cause.newVersion },
};
case "BLOCKED_DEADLINE":
case "CALLER_ABORT":
case "CLOSED":
case "NO_VALUE_PRODUCED":
case "UNSUPPORTED":
return { cause: cause.kind };
case "UPGRADE_REJECTED":
return { cause: cause.kind, detail: cause.detail };
case "ADMISSION_REJECTED":
return { cause: cause.kind, detail: cause.detail };
default: {
const exhaustive: never = cause;
return exhaustive;
}
}
};
}
function manualTimers(): Readonly<{
snapshot: Readonly<{
setTimer: (callback: () => void, delayMs: number) => unknown;
clearTimer: (handle: unknown) => void;
}>;
pending: Array<Readonly<{ callback: () => void; delayMs: number }>>;
cleared: unknown[];
}> {
const pending: Array<Readonly<{ callback: () => void; delayMs: number }>> = [];
const cleared: unknown[] = [];
return {
pending,
cleared,
snapshot: {
setTimer: (callback, delayMs) => {
pending.push({ callback, delayMs });
return pending.length;
},
clearTimer: (handle) => {
cleared.push(handle);
},
},
};
}
async function flush(): Promise<void> {
for (let attempt = 0; attempt < 30; attempt += 1) {
await new Promise<void>((resolve) => {
globalThis.setTimeout(resolve, 0);
});
}
}
type StubOpenRequest = {
result: IDBDatabase;
error: DOMException | null;
transaction: IDBTransaction | null;
onsuccess: ((event: Event) => unknown) | null;
onerror: ((event: Event) => unknown) | null;
onblocked: ((event: IDBVersionChangeEvent) => unknown) | null;
onupgradeneeded: ((event: IDBVersionChangeEvent) => unknown) | null;
};
type StubFactory = Readonly<{
factory: IDBFactory;
opened: StubOpenRequest[];
deleted: StubOpenRequest[];
}>;
/**
* The memory fake models a real database. These stubs model only the request
* object, so paths the fake cannot reach — a null `newVersion`, a cancellable
* upgrade transaction, `deleteDatabase` — are still exercised.
*/
function stubFactory(): StubFactory {
const opened: StubOpenRequest[] = [];
const deleted: StubOpenRequest[] = [];
const request = (): StubOpenRequest => ({
result: { close: vi.fn() } as unknown as IDBDatabase,
error: null,
transaction: null,
onsuccess: null,
onerror: null,
onblocked: null,
onupgradeneeded: null,
});
return {
opened,
deleted,
factory: {
open: () => {
const next = request();
opened.push(next);
return next as unknown as IDBOpenDBRequest;
},
deleteDatabase: () => {
const next = request();
deleted.push(next);
return next as unknown as IDBOpenDBRequest;
},
} as unknown as IDBFactory,
};
}
function versionChangeEvent(
oldVersion: number,
newVersion: number | null,
): IDBVersionChangeEvent {
return { oldVersion, newVersion } as IDBVersionChangeEvent;
}
describe("shared IndexedDB connection mechanics", () => {
it("opens a database and hands the caller the live connection", async () => {
const memory = new MemoryIndexedDbFactory();
const seen: IndexedDbFailureCause["kind"][] = [];
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate(seen),
upgrade: ({ database }) => {
database.createObjectStore("rows", { keyPath: "id" });
return { kind: "APPLIED" };
},
});
expect(result.ok).toBe(true);
if (!result.ok) return;
expect(result.value.version).toBe(1);
expect(memory.hasStore("rows")).toBe(true);
expect(seen).toEqual([]);
});
it("reports a native throw from the factory as NATIVE_EXCEPTION", async () => {
const boom = new Error("no factory");
const result = await openIndexedDbDatabase<TestFailure>({
factory: {
open: () => {
throw boom;
},
} as unknown as IDBFactory,
databaseName: "kernel",
translate: recordingTranslate([]),
});
expect(result).toEqual({
ok: false,
error: { cause: "NATIVE_EXCEPTION", detail: boom },
});
});
it("routes a request-level error through translate", async () => {
const memory = new MemoryIndexedDbFactory();
await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 2,
translate: recordingTranslate([]),
upgrade: () => ({ kind: "APPLIED" }),
});
// Opening an older version makes the fake fill `request.error` and fire
// `onerror`; the kernel must report that error rather than a generic cause.
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: () => ({ kind: "APPLIED" }),
});
expect(result.ok).toBe(false);
if (result.ok) return;
expect(result.error.cause).toBe("NATIVE_EXCEPTION");
expect((result.error.detail as DOMException).name).toBe("VersionError");
});
it("settles with BLOCKED when onblocked fires and no deadline is configured", async () => {
const memory = new MemoryIndexedDbFactory();
const observed: Array<Readonly<{ oldVersion: number; newVersion: number | null }>> = [];
memory.blockNextOpen();
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 3,
translate: recordingTranslate([]),
onBlocked: (event) => {
observed.push(event);
throw new Error("an observer cannot change the outcome");
},
});
expect(observed).toEqual([{ oldVersion: 0, newVersion: 3 }]);
expect(result).toEqual({
ok: false,
error: {
cause: "BLOCKED",
detail: { oldVersion: 0, newVersion: 3 },
},
});
});
it("waits the configured deadline before settling with BLOCKED_DEADLINE", async () => {
const memory = new MemoryIndexedDbFactory();
const timers = manualTimers();
memory.blockNextOpen();
let settled = false;
const pending = openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 3,
translate: recordingTranslate([]),
blockedTimeoutMs: 10_000,
timers: timers.snapshot,
});
void pending.then(() => {
settled = true;
});
await flush();
expect(settled).toBe(false);
expect(timers.pending).toHaveLength(1);
expect(timers.pending[0]?.delayMs).toBe(10_000);
timers.pending[0]?.callback();
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "BLOCKED_DEADLINE" },
});
});
it("rejects a positive blocked deadline that has no timer snapshot", () => {
const memory = new MemoryIndexedDbFactory();
expect(() =>
openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
blockedTimeoutMs: 10_000,
}),
).toThrow(TypeError);
});
it("aborts the versionchange transaction when upgrade rejects, so no schema commits", async () => {
const memory = new MemoryIndexedDbFactory();
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: ({ database }) => {
database.createObjectStore("rows", { keyPath: "id" });
return { kind: "REJECTED", detail: "POLICY" };
},
});
expect(result).toEqual({
ok: false,
error: { cause: "UPGRADE_REJECTED", detail: "POLICY" },
});
// The store the rejected upgrade created must not be visible afterwards.
expect(memory.hasStore("rows")).toBe(false);
const oldVersions: number[] = [];
await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: ({ oldVersion }) => {
oldVersions.push(oldVersion);
return { kind: "APPLIED" };
},
});
expect(oldVersions).toEqual([0]);
});
it("treats a throw from upgrade as a rejection and carries the thrown value", async () => {
const memory = new MemoryIndexedDbFactory();
const boom = new Error("migration defect");
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: () => {
throw boom;
},
});
expect(result).toEqual({
ok: false,
error: { cause: "UPGRADE_REJECTED", detail: boom },
});
expect(memory.hasStore("rows")).toBe(false);
});
it("treats any upgrade as unexpected when no upgrade callback is given", async () => {
const memory = new MemoryIndexedDbFactory();
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
});
expect(result.ok).toBe(false);
if (result.ok) return;
expect(result.error.cause).toBe("UPGRADE_REJECTED");
});
it("reports UPGRADE_REJECTED before running upgrade when newVersion is null", async () => {
const stub = stubFactory();
const upgrade = vi.fn(() => ({ kind: "APPLIED" as const }));
const pending = openIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
upgrade,
});
const request = stub.opened[0];
expect(request).toBeDefined();
if (!request) return;
const abort = vi.fn();
request.transaction = { abort } as unknown as IDBTransaction;
request.onupgradeneeded?.(versionChangeEvent(4, null));
request.error = new DOMException("aborted", "AbortError");
request.onerror?.(new Event("error"));
expect(upgrade).not.toHaveBeenCalled();
expect(abort).toHaveBeenCalledTimes(1);
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "UPGRADE_REJECTED", detail: undefined },
});
});
it("admits a successful open and lets an async admission run", async () => {
const memory = new MemoryIndexedDbFactory();
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: () => ({ kind: "APPLIED" }),
admit: async (database) => {
await Promise.resolve();
return database.objectStoreNames.contains("rows")
? { kind: "ADMIT" }
: { kind: "REJECT", detail: "STORE" };
},
});
expect(result.ok).toBe(false);
if (result.ok) return;
expect(result.error).toEqual({ cause: "ADMISSION_REJECTED", detail: "STORE" });
// A rejected admission must close the connection the caller never saw.
expect(memory.isConnectionClosed()).toBe(true);
});
it("closes the connection when admission fails with an explicit cause", async () => {
const memory = new MemoryIndexedDbFactory();
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: () => ({ kind: "APPLIED" }),
admit: () => ({ kind: "FAIL", cause: { kind: "CALLER_ABORT" } }),
});
expect(result).toEqual({ ok: false, error: { cause: "CALLER_ABORT" } });
expect(memory.isConnectionClosed()).toBe(true);
});
it("admits every successful open when no admit callback is given", async () => {
const memory = new MemoryIndexedDbFactory();
const result = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: () => ({ kind: "APPLIED" }),
});
expect(result.ok).toBe(true);
expect(memory.isConnectionClosed()).toBe(false);
});
it("returns CALLER_ABORT without touching the factory for an already aborted signal", async () => {
const stub = stubFactory();
const controller = new AbortController();
controller.abort();
const result = await openIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
signal: controller.signal,
});
expect(result).toEqual({ ok: false, error: { cause: "CALLER_ABORT" } });
expect(stub.opened).toHaveLength(0);
});
it("aborts a pending upgrade transaction when the caller signal fires", async () => {
const stub = stubFactory();
const controller = new AbortController();
const pending = openIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
signal: controller.signal,
});
const request = stub.opened[0];
expect(request).toBeDefined();
if (!request) return;
const abort = vi.fn();
request.transaction = { abort } as unknown as IDBTransaction;
controller.abort();
expect(abort).toHaveBeenCalledTimes(1);
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "CALLER_ABORT" },
});
});
it("closes a connection that arrives after the caller gave up", async () => {
const memory = new MemoryIndexedDbFactory();
const controller = new AbortController();
let release: ((admission: { kind: "ADMIT" }) => void) | undefined;
const pending = openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
signal: controller.signal,
upgrade: () => ({ kind: "APPLIED" }),
admit: () =>
new Promise<{ kind: "ADMIT" }>((resolve) => {
release = resolve;
}),
});
await flush();
controller.abort();
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "CALLER_ABORT" },
});
release?.({ kind: "ADMIT" });
await flush();
expect(memory.isConnectionClosed()).toBe(true);
});
it("calls translate for every cause the kernel can report", async () => {
const seen: IndexedDbFailureCause["kind"][] = [];
const translate = recordingTranslate(seen);
// NATIVE_EXCEPTION
await openIndexedDbDatabase<TestFailure>({
factory: {
open: () => {
throw new Error("boom");
},
} as unknown as IDBFactory,
databaseName: "kernel",
translate,
});
// UPGRADE_REJECTED
const rejecting = new MemoryIndexedDbFactory();
await openIndexedDbDatabase<TestFailure>({
factory: rejecting.factory,
databaseName: "kernel",
version: 1,
translate,
});
// BLOCKED
const blocking = new MemoryIndexedDbFactory();
blocking.blockNextOpen();
await openIndexedDbDatabase<TestFailure>({
factory: blocking.factory,
databaseName: "kernel",
version: 1,
translate,
});
// BLOCKED_DEADLINE
const deadline = new MemoryIndexedDbFactory();
const timers = manualTimers();
deadline.blockNextOpen();
const deadlinePending = openIndexedDbDatabase<TestFailure>({
factory: deadline.factory,
databaseName: "kernel",
version: 1,
translate,
blockedTimeoutMs: 5,
timers: timers.snapshot,
});
await flush();
timers.pending[0]?.callback();
await deadlinePending;
// ADMISSION_REJECTED
const admitting = new MemoryIndexedDbFactory();
await openIndexedDbDatabase<TestFailure>({
factory: admitting.factory,
databaseName: "kernel",
version: 1,
translate,
upgrade: () => ({ kind: "APPLIED" }),
admit: () => ({ kind: "REJECT", detail: "POLICY" }),
});
// CALLER_ABORT
const aborted = new AbortController();
aborted.abort();
await openIndexedDbDatabase<TestFailure>({
factory: new MemoryIndexedDbFactory().factory,
databaseName: "kernel",
translate,
signal: aborted.signal,
});
// CLOSED
const handle = createIndexedDbConnection<TestFailure>({
open: () => new Promise(() => undefined),
translate,
});
const closing = handle.acquire();
handle.close();
await closing;
expect(new Set(seen)).toEqual(
new Set([
"NATIVE_EXCEPTION",
"UPGRADE_REJECTED",
"BLOCKED",
"BLOCKED_DEADLINE",
"ADMISSION_REJECTED",
"CALLER_ABORT",
"CLOSED",
]),
);
});
});
describe("single-flight IndexedDB connection handle", () => {
function handleFor(
memory: MemoryIndexedDbFactory,
overrides: Partial<Parameters<typeof createIndexedDbConnection<TestFailure>>[0]> = {},
) {
const opens = vi.fn((signal: AbortSignal | undefined) =>
openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
signal,
upgrade: ({ database }) => {
if (!database.objectStoreNames.contains("rows")) {
database.createObjectStore("rows", { keyPath: "id" });
}
return { kind: "APPLIED" };
},
}),
);
return {
opens,
handle: createIndexedDbConnection<TestFailure>({
open: opens,
translate: recordingTranslate([]),
...overrides,
}),
};
}
it("shares one in-flight open and then reuses the cached connection", async () => {
const memory = new MemoryIndexedDbFactory();
const { handle, opens } = handleFor(memory);
const [first, second] = await Promise.all([
handle.acquire(),
handle.acquire(),
]);
const third = await handle.acquire();
expect(opens).toHaveBeenCalledTimes(1);
expect(first.ok && second.ok && third.ok).toBe(true);
expect(handle.current()).not.toBeNull();
});
it("drops and closes the cached connection on versionchange, then reopens", async () => {
const memory = new MemoryIndexedDbFactory();
const events: string[] = [];
const { handle, opens } = handleFor(memory, {
onVersionChange: () => {
events.push("VERSION_CHANGE");
throw new Error("a notification defect cannot keep the connection");
},
});
await handle.acquire();
memory.triggerVersionChange(2);
expect(events).toEqual(["VERSION_CHANGE"]);
expect(handle.current()).toBeNull();
expect(memory.isConnectionClosed()).toBe(true);
await handle.acquire();
expect(opens).toHaveBeenCalledTimes(2);
});
it("drops the cached connection when the browser forces it closed", async () => {
const memory = new MemoryIndexedDbFactory();
const events: string[] = [];
const { handle } = handleFor(memory, {
onForcedClose: () => events.push("FORCED"),
});
await handle.acquire();
memory.triggerForcedClose();
expect(events).toEqual(["FORCED"]);
expect(handle.current()).toBeNull();
expect(handle.isClosed()).toBe(false);
});
it("settles an in-flight open with CLOSED rather than CALLER_ABORT", async () => {
const seen: IndexedDbFailureCause["kind"][] = [];
let openSignal: AbortSignal | undefined;
const handle = createIndexedDbConnection<TestFailure>({
open: (signal) => {
openSignal = signal;
return new Promise(() => undefined);
},
translate: recordingTranslate(seen),
});
const pending = handle.acquire();
handle.close();
handle.close();
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "CLOSED" },
});
expect(seen).toEqual(["CLOSED"]);
expect(handle.isClosed()).toBe(true);
// The in-flight native request is still cancelled, so a pending upgrade
// transaction does not outlive the handle.
expect(openSignal?.aborted).toBe(true);
await expect(handle.acquire()).resolves.toEqual({
ok: false,
error: { cause: "CLOSED" },
});
});
it("closes a connection that arrives after the handle was closed", async () => {
const memory = new MemoryIndexedDbFactory();
let release: ((result: { ok: true; value: IDBDatabase }) => void) | undefined;
const handle = createIndexedDbConnection<TestFailure>({
open: () =>
new Promise((resolve) => {
release = resolve as typeof release;
}),
translate: recordingTranslate([]),
});
const pending = handle.acquire();
handle.close();
await pending;
const opened = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate([]),
upgrade: () => ({ kind: "APPLIED" }),
});
expect(opened.ok).toBe(true);
if (!opened.ok) return;
release?.({ ok: true, value: opened.value });
await flush();
expect(memory.isConnectionClosed()).toBe(true);
expect(handle.current()).toBeNull();
});
it("aborts one caller without cancelling the shared open", async () => {
const memory = new MemoryIndexedDbFactory();
const { handle, opens } = handleFor(memory);
const controller = new AbortController();
const abandoned = handle.acquire(controller.signal);
const kept = handle.acquire();
controller.abort();
await expect(abandoned).resolves.toEqual({
ok: false,
error: { cause: "CALLER_ABORT" },
});
const survivor = await kept;
expect(survivor.ok).toBe(true);
expect(opens).toHaveBeenCalledTimes(1);
expect(handle.current()).not.toBeNull();
});
it("reports CALLER_ABORT for an already aborted acquire without opening", async () => {
const memory = new MemoryIndexedDbFactory();
const { handle, opens } = handleFor(memory);
const controller = new AbortController();
controller.abort();
await expect(handle.acquire(controller.signal)).resolves.toEqual({
ok: false,
error: { cause: "CALLER_ABORT" },
});
expect(opens).not.toHaveBeenCalled();
});
it("closes the cached connection and reports it through current()", async () => {
const memory = new MemoryIndexedDbFactory();
const { handle } = handleFor(memory);
await handle.acquire();
expect(handle.current()).not.toBeNull();
handle.close();
expect(handle.current()).toBeNull();
expect(memory.isConnectionClosed()).toBe(true);
});
it("retries after a failed open instead of caching the failure", async () => {
const attempts: number[] = [];
const handle = createIndexedDbConnection<TestFailure>({
open: () => {
attempts.push(attempts.length);
return Promise.resolve({
ok: false as const,
error: { cause: "NATIVE_EXCEPTION" as const },
});
},
translate: recordingTranslate([]),
});
await handle.acquire();
await handle.acquire();
expect(attempts).toHaveLength(2);
});
});
describe("IndexedDB database deletion", () => {
it("reports DELETED and settles the caller's registration exactly once", async () => {
const stub = stubFactory();
const settled = vi.fn();
const pending = deleteIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
onSettled: settled,
});
const request = stub.deleted[0];
expect(request).toBeDefined();
request?.onsuccess?.(new Event("success"));
request?.onsuccess?.(new Event("success"));
await expect(pending).resolves.toEqual({ ok: true, value: { kind: "DELETED" } });
expect(settled).toHaveBeenCalledTimes(1);
});
it("routes a delete error through translate and still settles the registration", async () => {
const stub = stubFactory();
const settled = vi.fn();
const pending = deleteIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
onSettled: settled,
});
const request = stub.deleted[0];
if (!request) throw new Error("no delete request");
request.error = new DOMException("nope", "UnknownError");
request.onerror?.(new Event("error"));
const result = await pending;
expect(result.ok).toBe(false);
if (result.ok) return;
expect(result.error.cause).toBe("NATIVE_EXCEPTION");
expect(settled).toHaveBeenCalledTimes(1);
});
it("reports BLOCKED_DEADLINE without settling, then settles when the request lands", async () => {
const stub = stubFactory();
const timers = manualTimers();
const settled = vi.fn();
const pending = deleteIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
blockedTimeoutMs: 5_000,
timers: timers.snapshot,
onSettled: settled,
});
const request = stub.deleted[0];
if (!request) throw new Error("no delete request");
request.onblocked?.(versionChangeEvent(1, null));
expect(timers.pending).toHaveLength(1);
timers.pending[0]?.callback();
await expect(pending).resolves.toEqual({
ok: true,
value: { kind: "BLOCKED_DEADLINE" },
});
// A dispatched deleteDatabase cannot be cancelled, so the deadline is not
// the end of the request: the registration is released only when it lands.
expect(settled).not.toHaveBeenCalled();
request.onsuccess?.(new Event("success"));
expect(settled).toHaveBeenCalledTimes(1);
});
it("settles with BLOCKED when no deadline is configured", async () => {
const stub = stubFactory();
const pending = deleteIndexedDbDatabase<TestFailure>({
factory: stub.factory,
databaseName: "kernel",
translate: recordingTranslate([]),
});
stub.deleted[0]?.onblocked?.(versionChangeEvent(2, null));
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "BLOCKED", detail: { oldVersion: 2, newVersion: null } },
});
});
});
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import { describe, expect, it, vi } from "vitest";
import type {
IndexedDbFailureCause,
IndexedDbTranslate,
} from "../../src/adapters/platform/indexeddb-connection.ts";
import { openIndexedDbDatabase } from "../../src/adapters/platform/indexeddb-connection.ts";
import {
onIndexedDbRequest,
openIndexedDbTransaction,
runIndexedDbTransaction,
walkIndexedDbCursor,
type IndexedDbCursorStep,
type IndexedDbRequestSink,
type IndexedDbWalkSummary,
} from "../../src/adapters/platform/indexeddb-transaction.ts";
import { MemoryIndexedDbFactory } from "../helpers/memory-indexeddb.ts";
/**
* IDB-X-02 golden tests. Four hand-written copies of this state machine already
* disagree about request errors, value-less completions and durability. Every
* one of those choices has to remain expressible at the call site, so the tests
* assert the mechanics and never a taxonomy.
*/
type TestFailure = Readonly<{ cause: IndexedDbFailureCause["kind"]; detail?: unknown }>;
function recordingTranslate(
seen: IndexedDbFailureCause["kind"][] = [],
): IndexedDbTranslate<TestFailure> {
return (cause) => {
seen.push(cause.kind);
switch (cause.kind) {
case "NATIVE_EXCEPTION":
return { cause: cause.kind, detail: cause.error };
case "BLOCKED":
return { cause: cause.kind };
case "BLOCKED_DEADLINE":
case "CALLER_ABORT":
case "CLOSED":
case "NO_VALUE_PRODUCED":
case "UNSUPPORTED":
return { cause: cause.kind };
case "UPGRADE_REJECTED":
case "ADMISSION_REJECTED":
return { cause: cause.kind, detail: cause.detail };
default: {
const exhaustive: never = cause;
return exhaustive;
}
}
};
}
type Row = Readonly<{ id: string; rank: number }>;
const ROWS: readonly Row[] = Object.freeze([
Object.freeze({ id: "a", rank: 1 }),
Object.freeze({ id: "b", rank: 2 }),
Object.freeze({ id: "c", rank: 3 }),
Object.freeze({ id: "d", rank: 4 }),
]);
async function seededDatabase(
rows: readonly Row[] = ROWS,
): Promise<Readonly<{ memory: MemoryIndexedDbFactory; database: IDBDatabase }>> {
const memory = new MemoryIndexedDbFactory();
const opened = await openIndexedDbDatabase<TestFailure>({
factory: memory.factory,
databaseName: "kernel",
version: 1,
translate: recordingTranslate(),
upgrade: ({ database }) => {
database.createObjectStore("rows", { keyPath: "id" });
return { kind: "APPLIED" };
},
});
if (!opened.ok) throw new Error("fixture database did not open");
for (const row of rows) memory.seed("rows", row);
return { memory, database: opened.value };
}
type StubTransaction = {
error: DOMException | null;
abort: () => void;
oncomplete: ((event: Event) => unknown) | null;
onerror: ((event: Event) => unknown) | null;
onabort: ((event: Event) => unknown) | null;
objectStore: (name: string) => IDBObjectStore;
};
/**
* A transaction the test drives by hand. The memory fake aborts on every
* request error, so "recorded but not aborted" and "abort() itself throws" —
* the two behaviors the four copies disagree about — are only observable here.
*/
function stubDatabase(
options: Readonly<{ abortThrows?: boolean; rejectOptionsBag?: boolean }> = {},
): Readonly<{
database: IDBDatabase;
transactions: StubTransaction[];
calls: unknown[][];
}> {
const transactions: StubTransaction[] = [];
const calls: unknown[][] = [];
const database = {
transaction: (...args: unknown[]) => {
calls.push(args);
if (options.rejectOptionsBag === true && args.length > 2) {
throw new TypeError("This engine has no durability option.");
}
const transaction: StubTransaction = {
error: null,
abort: vi.fn(() => {
if (options.abortThrows === true) {
throw new DOMException("already finished", "InvalidStateError");
}
}),
oncomplete: null,
onerror: null,
onabort: null,
objectStore: () => ({}) as IDBObjectStore,
};
transactions.push(transaction);
return transaction as unknown as IDBTransaction;
},
} as unknown as IDBDatabase;
return { database, transactions, calls };
}
function stubSink(): Readonly<{
sink: IndexedDbRequestSink<TestFailure>;
failures: TestFailure[];
requestErrors: unknown[];
}> {
const failures: TestFailure[] = [];
const requestErrors: unknown[] = [];
return {
failures,
requestErrors,
sink: {
fail: (failure) => failures.push(failure),
requestFailed: (error) => requestErrors.push(error),
},
};
}
describe("shared IndexedDB transaction mechanics", () => {
it("returns the value the queue produced once the transaction commits", async () => {
const { database, memory } = await seededDatabase();
const result = await runIndexedDbTransaction<string, TestFailure>({
database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (transaction, context) => {
const store = transaction.objectStore("rows");
onIndexedDbRequest(store.put({ id: "e", rank: 5 }), context, () => {
context.succeed("written");
});
},
});
expect(result).toEqual({ ok: true, value: "written" });
expect(memory.readRaw("rows", "e")).toEqual({ id: "e", rank: 5 });
});
it("reports NO_VALUE_PRODUCED when a transaction completes without succeed", async () => {
const { database } = await seededDatabase();
const seen: IndexedDbFailureCause["kind"][] = [];
const result = await runIndexedDbTransaction<string, TestFailure>({
database,
stores: ["rows"],
mode: "readonly",
translate: recordingTranslate(seen),
queue: (transaction, context) => {
onIndexedDbRequest(
transaction.objectStore("rows").get("a"),
context,
() => undefined,
);
},
});
expect(result).toEqual({
ok: false,
error: { cause: "NO_VALUE_PRODUCED" },
});
expect(seen).toEqual(["NO_VALUE_PRODUCED"]);
});
it("aborts on fail() and reports the recorded failure", async () => {
const { database, memory } = await seededDatabase();
const result = await runIndexedDbTransaction<string, TestFailure>({
database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (transaction, context) => {
const store = transaction.objectStore("rows");
onIndexedDbRequest(store.put({ id: "e", rank: 5 }), context, () => {
context.fail({ cause: "ADMISSION_REJECTED", detail: "policy" });
});
},
});
expect(result).toEqual({
ok: false,
error: { cause: "ADMISSION_REJECTED", detail: "policy" },
});
// The aborted transaction must not have committed the write.
expect(memory.readRaw("rows", "e")).toBeUndefined();
});
it("routes a request-level error into the sink", async () => {
const { database } = await seededDatabase();
const result = await runIndexedDbTransaction<string, TestFailure>({
database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (transaction, context) => {
const store = transaction.objectStore("rows");
// `add` on an existing key is a request-level ConstraintError, the
// exact case `indexeddb-opfs-journal.ts` never wires today.
onIndexedDbRequest(store.add({ id: "a", rank: 9 }), context, () => {
context.succeed("unreachable");
});
},
});
expect(result.ok).toBe(false);
if (result.ok) return;
expect(result.error.cause).toBe("NATIVE_EXCEPTION");
expect((result.error.detail as DOMException).name).toBe("ConstraintError");
});
it("records a request error without aborting, while fail() aborts", () => {
const stub = stubDatabase();
void runIndexedDbTransaction<string, TestFailure>({
database: stub.database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (_transaction, context) => {
context.requestFailed(new Error("recorded only"));
},
});
const transaction = stub.transactions[0];
expect(transaction).toBeDefined();
expect(transaction?.abort).not.toHaveBeenCalled();
});
it("never claims a caller abort when transaction.abort() throws", async () => {
// CP-4. A transaction can be durably committed while its completion event
// is still queued. Reporting ABORTED for it would call a committed write a
// failure, so the transaction's own events decide the outcome.
const stub = stubDatabase({ abortThrows: true });
const controller = new AbortController();
const pending = runIndexedDbTransaction<string, TestFailure>({
database: stub.database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
signal: controller.signal,
queue: (_transaction, context) => {
context.succeed("committed");
},
});
controller.abort();
stub.transactions[0]?.oncomplete?.(new Event("complete"));
await expect(pending).resolves.toEqual({ ok: true, value: "committed" });
});
it("reports CALLER_ABORT when the signal aborts the transaction", async () => {
const stub = stubDatabase();
const controller = new AbortController();
const pending = runIndexedDbTransaction<string, TestFailure>({
database: stub.database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
signal: controller.signal,
queue: () => undefined,
});
controller.abort();
expect(stub.transactions[0]?.abort).toHaveBeenCalledTimes(1);
stub.transactions[0]?.onabort?.(new Event("abort"));
await expect(pending).resolves.toEqual({
ok: false,
error: { cause: "CALLER_ABORT" },
});
});
it("returns CALLER_ABORT without opening a transaction for an aborted signal", async () => {
const stub = stubDatabase();
const controller = new AbortController();
controller.abort();
await expect(
runIndexedDbTransaction<string, TestFailure>({
database: stub.database,
stores: ["rows"],
mode: "readonly",
translate: recordingTranslate(),
signal: controller.signal,
queue: () => undefined,
}),
).resolves.toEqual({ ok: false, error: { cause: "CALLER_ABORT" } });
expect(stub.calls).toHaveLength(0);
});
it("maps a throw from transaction creation", async () => {
const boom = new DOMException("closed", "InvalidStateError");
const database = {
transaction: () => {
throw boom;
},
} as unknown as IDBDatabase;
await expect(
runIndexedDbTransaction<string, TestFailure>({
database,
stores: ["rows"],
mode: "readonly",
translate: recordingTranslate(),
queue: () => undefined,
}),
).resolves.toEqual({
ok: false,
error: { cause: "NATIVE_EXCEPTION", detail: boom },
});
});
it("maps a throw from the queue callback and aborts", async () => {
const { database, memory } = await seededDatabase();
const boom = new Error("queue defect");
const result = await runIndexedDbTransaction<string, TestFailure>({
database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (transaction) => {
transaction.objectStore("rows").put({ id: "e", rank: 5 });
throw boom;
},
});
expect(result).toEqual({
ok: false,
error: { cause: "NATIVE_EXCEPTION", detail: boom },
});
expect(memory.readRaw("rows", "e")).toBeUndefined();
});
it("an abort after succeed reports a failure rather than the value", async () => {
const stub = stubDatabase();
const pending = runIndexedDbTransaction<string, TestFailure>({
database: stub.database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (_transaction, context) => {
context.succeed("value");
context.fail({ cause: "CLOSED" });
},
});
const transaction = stub.transactions[0];
if (!transaction) throw new Error("no transaction");
transaction.error = new DOMException("aborted", "AbortError");
transaction.onabort?.(new Event("abort"));
const result = await pending;
expect(result.ok).toBe(false);
if (result.ok) return;
// The first candidate wins, so the later `fail` never becomes the value;
// an aborted transaction still cannot report the success it never kept.
expect(result.error.cause).toBe("NATIVE_EXCEPTION");
});
});
describe("IndexedDB transaction factory", () => {
it("omits the options bag entirely for an undefined durability", () => {
const stub = stubDatabase();
openIndexedDbTransaction(stub.database, ["rows"], "readonly");
expect(stub.calls).toEqual([[["rows"], "readonly"]]);
});
it("passes a named durability as an options bag", () => {
const stub = stubDatabase();
openIndexedDbTransaction(stub.database, ["rows"], "readwrite", "strict");
expect(stub.calls).toEqual([
[["rows"], "readwrite", { durability: "strict" }],
]);
});
it("falls back to the no-options form when the engine rejects the bag", () => {
const stub = stubDatabase({ rejectOptionsBag: true });
openIndexedDbTransaction(stub.database, ["rows"], "readwrite", "relaxed");
expect(stub.calls).toEqual([
[["rows"], "readwrite", { durability: "relaxed" }],
[["rows"], "readwrite"],
]);
});
it("rethrows a non-TypeError from transaction creation", () => {
const boom = new DOMException("closed", "InvalidStateError");
const database = {
transaction: () => {
throw boom;
},
} as unknown as IDBDatabase;
expect(() =>
openIndexedDbTransaction(database, ["rows"], "readonly", "strict"),
).toThrow(boom);
});
});
describe("IndexedDB cursor pump", () => {
async function walk(
input: Readonly<{
visit: (
visit: Readonly<{
cursor: IDBCursorWithValue;
scannedRows: number;
resume: (step: IndexedDbCursorStep) => void;
}>,
) => IndexedDbCursorStep;
budget?: Parameters<typeof walkIndexedDbCursor<TestFailure>>[0]["budget"];
signal?: AbortSignal;
store?: IDBObjectStore | undefined;
}>,
): Promise<
Readonly<{
result: Awaited<ReturnType<typeof runIndexedDbTransaction<IndexedDbWalkSummary, TestFailure>>>;
}>
> {
const { database } = await seededDatabase();
const result = await runIndexedDbTransaction<
IndexedDbWalkSummary,
TestFailure
>({
database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (transaction, context) => {
const store = transaction.objectStore("rows");
walkIndexedDbCursor<TestFailure>({
request: store.openCursor(),
sink: context,
translate: recordingTranslate(),
...(input.budget ? { budget: input.budget } : {}),
...(input.signal ? { signal: input.signal } : {}),
visit: input.visit,
done: (summary) => context.succeed(summary),
});
},
});
return { result };
}
it("visits every row and reports EXHAUSTED", async () => {
const visited: string[] = [];
const { result } = await walk({
visit: ({ cursor }) => {
visited.push((cursor.value as Row).id);
return { kind: "CONTINUE" };
},
});
expect(visited).toEqual(["a", "b", "c", "d"]);
expect(result).toEqual({
ok: true,
value: { reason: "EXHAUSTED", scannedRows: 4 },
});
});
it("ends the walk where the visitor stops it", async () => {
const { result } = await walk({
visit: ({ scannedRows }) =>
scannedRows === 2 ? { kind: "STOP" } : { kind: "CONTINUE" },
});
expect(result).toEqual({
ok: true,
value: { reason: "STOPPED", scannedRows: 2 },
});
});
it("resumes a row after the visitor's own nested request chain", async () => {
// Without SUSPEND the pump is unusable by runtime and maintenance: every
// walk there issues nested requests before advancing.
const order: string[] = [];
const { database } = await seededDatabase();
const result = await runIndexedDbTransaction<
IndexedDbWalkSummary,
TestFailure
>({
database,
stores: ["rows"],
mode: "readwrite",
translate: recordingTranslate(),
queue: (transaction, context) => {
const store = transaction.objectStore("rows");
walkIndexedDbCursor<TestFailure>({
request: store.openCursor(),
sink: context,
translate: recordingTranslate(),
visit: ({ cursor, resume }) => {
const id = (cursor.value as Row).id;
order.push(`visit:${id}`);
onIndexedDbRequest(store.get(id), context, (value) => {
order.push(`nested:${(value as Row).id}`);
resume({ kind: "CONTINUE" });
// Idempotent: a second resume cannot advance the cursor twice.
resume({ kind: "CONTINUE" });
});
return { kind: "SUSPEND" };
},
done: (summary) => context.succeed(summary),
});
},
});
expect(result).toEqual({
ok: true,
value: { reason: "EXHAUSTED", scannedRows: 4 },
});
expect(order).toEqual([
"visit:a",
"nested:a",
"visit:b",
"nested:b",
"visit:c",
"nested:c",
"visit:d",
"nested:d",
]);
});
it("supports both keyed resume forms", async () => {
const skipped: string[] = [];
const { result } = await walk({
visit: ({ cursor, scannedRows }) => {
skipped.push((cursor.value as Row).id);
if (scannedRows === 1) return { kind: "CONTINUE_FROM", key: "c" };
if (scannedRows === 2) {
return { kind: "CONTINUE_PRIMARY", key: "d", primaryKey: "d" };
}
return { kind: "CONTINUE" };
},
});
expect(skipped).toEqual(["a", "c", "d"]);
expect(result).toEqual({
ok: true,
value: { reason: "EXHAUSTED", scannedRows: 3 },
});
});
it("stops on a row budget and on a time budget with distinct reasons", async () => {
const rowBudget = await walk({
budget: {
admit: (scannedRows) =>
scannedRows >= 2
? { ok: true, value: "ROW_BUDGET" }
: { ok: true, value: "CONTINUE" },
},
visit: () => ({ kind: "CONTINUE" }),
});
expect(rowBudget.result).toEqual({
ok: true,
value: { reason: "ROW_BUDGET", scannedRows: 2 },
});
const timeBudget = await walk({
budget: {
admit: (scannedRows) =>
scannedRows >= 1
? { ok: true, value: "TIME_BUDGET" }
: { ok: true, value: "CONTINUE" },
},
visit: () => ({ kind: "CONTINUE" }),
});
expect(timeBudget.result).toEqual({
ok: true,
value: { reason: "TIME_BUDGET", scannedRows: 1 },
});
});
it("routes an unreadable budget clock into the sink instead of continuing", async () => {
const { result } = await walk({
budget: {
admit: () => ({ ok: false, error: { cause: "UNSUPPORTED" } }),
},
visit: () => ({ kind: "CONTINUE" }),
});
expect(result).toEqual({ ok: false, error: { cause: "UNSUPPORTED" } });
});
it("aborts the transaction and ends the walk when the caller signal fired", async () => {
const controller = new AbortController();
const { result } = await walk({
signal: controller.signal,
visit: ({ cursor }) => {
if ((cursor.value as Row).id === "a") controller.abort();
return { kind: "CONTINUE" };
},
});
expect(result).toEqual({ ok: false, error: { cause: "CALLER_ABORT" } });
});
it("routes a native advance failure through the sink", async () => {
const { result } = await walk({
visit: ({ cursor }) => {
// Advancing twice is an InvalidStateError in the engine; the pump must
// report it rather than let it escape the event handler.
cursor.continue();
return { kind: "CONTINUE" };
},
});
expect(result.ok).toBe(false);
if (result.ok) return;
expect(result.error.cause).toBe("NATIVE_EXCEPTION");
});
it("reports a cursor request error through requestFailed and stops", () => {
const stub = stubSink();
const request = {
result: null,
error: new DOMException("gone", "UnknownError"),
onsuccess: null as ((event: Event) => unknown) | null,
onerror: null as ((event: Event) => unknown) | null,
};
const done = vi.fn();
walkIndexedDbCursor<TestFailure>({
request: request as unknown as IDBRequest<IDBCursorWithValue | null>,
sink: stub.sink,
translate: recordingTranslate(),
visit: () => ({ kind: "CONTINUE" }),
done,
});
request.onerror?.(new Event("error"));
expect(stub.requestErrors).toEqual([request.error]);
// The transaction's own outcome decides the result; the walk has no value.
expect(done).not.toHaveBeenCalled();
});
it("routes a throw from the visitor into the sink", () => {
const stub = stubSink();
const boom = new Error("visitor defect");
const request = {
result: { value: { id: "a" }, continue: vi.fn() },
error: null,
onsuccess: null as ((event: Event) => unknown) | null,
onerror: null as ((event: Event) => unknown) | null,
};
walkIndexedDbCursor<TestFailure>({
request: request as unknown as IDBRequest<IDBCursorWithValue | null>,
sink: stub.sink,
translate: recordingTranslate(),
visit: () => {
throw boom;
},
done: vi.fn(),
});
request.onsuccess?.(new Event("success"));
// A defective visitor must abort rather than let a partial write commit.
expect(stub.failures).toEqual([
{ cause: "NATIVE_EXCEPTION", detail: boom },
]);
});
it("ignores resume when the visitor did not suspend", () => {
const stub = stubSink();
const advance = vi.fn();
const request = {
result: { value: { id: "a" }, continue: advance },
error: null,
onsuccess: null as ((event: Event) => unknown) | null,
onerror: null as ((event: Event) => unknown) | null,
};
walkIndexedDbCursor<TestFailure>({
request: request as unknown as IDBRequest<IDBCursorWithValue | null>,
sink: stub.sink,
translate: recordingTranslate(),
visit: ({ resume }) => {
resume({ kind: "CONTINUE" });
return { kind: "STOP" };
},
done: vi.fn(),
});
request.onsuccess?.(new Event("success"));
expect(advance).not.toHaveBeenCalled();
});
});