ktx/packages/cli/test/context/ingest/adapters/metabase/fetch.test.ts

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import { mkdtemp, readdir, readFile, rm } from 'node:fs/promises';
import { tmpdir } from 'node:os';
import { join } from 'node:path';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
test: split cli tests from source tree (#216) * feat(cli): define full warehouse dialect contract * test(cli): keep dialect edge tests focused * fix(cli): stabilize dialect contract foundation * refactor(connectors): own read-only query preparation * refactor(connectors): resolve dialects through registry * refactor(connectors): keep concrete dialect classes internal * chore(workspace): enforce dialect import boundary * refactor(cli): resolve relationship dialect at scan boundary * refactor(cli): use dialect display parsing for entity details * refactor(cli): use dialect display parsing for warehouse catalog * refactor(cli): use dialect SQL in relationship workflows * test(cli): verify solid dialect scan workflow closure * test: split cli tests from source tree * refactor(cli): standardize BigQuery scope listing * feat(sqlite): implement connector scope listing * test(connectors): cover required table listing * feat(cli): add warehouse driver registry * refactor(setup): route scope discovery through driver registry * refactor(cli): route local query execution through driver registry * refactor(historic-sql): route dialect support through driver registry * refactor(cli): test warehouse connections through driver registry * fix(cli): close driver registry type export gaps * Improve setup daemon diagnostics * refactor(setup): centralize rail-prefixed diagnostics + query-history fallback Extract errorMessage, writePrefixedLines, and flushPrefixedBufferedCommandOutput into clack.ts so the setup wizard, managed daemons, and embedding/agent steps share one rail-formatted writer. setup-databases.ts also adds a "disable query history and retry" option when the schema-context build fails and query history is the likely culprit, surfaced via a new failed-query-history-unavailable status. * fix(cli): carry catalog through the picker so BigQuery/Snowflake/SQL Server scope filters match The setup picker's KtxTableListEntry was a 2-level { schema, name }, so qualifiedTableId always wrote db.name into enabled_tables. When BigQuery, Snowflake, or SQL Server later ran fast ingest, their introspect step filtered the scope set with scopedTableNames(scope, { catalog: projectId|database, db }) — catalog was non-null on the introspect side but null in the scope refs, so every entry was rejected, the live-database adapter staged zero table files, and detect() failed with 'Adapter "live-database" did not recognize fetched source output'. Align the picker boundary with the canonical 3-level KtxTableRef: - Add catalog: string | null to KtxTableListEntry. - BigQuery/Snowflake/SQL Server listTables populate catalog from the resolved projectId / database; Postgres/MySQL/ClickHouse/SQLite set null. - qualifiedTableId emits catalog.schema.name when catalog is non-null (resolveEnabledTables already accepts the 3-part shape) and schemasFromEnabledTables now goes through parseDottedTableEntry so it recovers the schema correctly from both 2-part and 3-part entries. - Export parseDottedTableEntry from enabled-tables.ts (@internal) for picker reuse. Update listTables expectations in all seven connector tests and the setup / picker test fixtures. Add a picker regression test that covers the catalog-bearing round-trip (save + refine). * fix(cli): allow debug telemetry under opt-out env
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import type { FetchContext } from '../../../../../src/context/ingest/types.js';
import { fetchMetabaseBundle } from '../../../../../src/context/ingest/adapters/metabase/fetch.js';
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const metabaseConnectionId = 'a1b2c3d4-e5f6-4789-9abc-def012345678';
const targetConnectionId = 'b2c3d4e5-f6a7-4890-abcd-ef0123456789';
function makeMockClient() {
return {
getAllCards: vi.fn().mockResolvedValue([
{ id: 1, name: 'Orders', archived: false, database_id: 42, collection_id: 5 },
{ id: 2, name: 'Old orders (archived)', archived: true, database_id: 42, collection_id: 5 },
{ id: 3, name: 'Wrong DB', archived: false, database_id: 999, collection_id: 5 },
]),
getCard: vi.fn().mockImplementation((id: number) =>
Promise.resolve({
id,
name: `Card ${id}`,
description: null,
type: 'model',
database_id: 42,
collection_id: 5,
archived: false,
result_metadata: [{ name: 'id', base_type: 'type/Integer' }],
}),
),
getResolvedSql: vi.fn().mockImplementation((card: { id: number }) =>
Promise.resolve({
resolvedSql: `SELECT * FROM card_${card.id}`,
templateTags: [],
resolutionStatus: 'resolved',
}),
),
getCollectionTree: vi.fn().mockResolvedValue([{ id: 5, name: 'Orders Team', parent_id: null, children: [] }]),
getCollectionItems: vi.fn().mockResolvedValue([]),
getDatabase: vi.fn().mockResolvedValue({
id: 42,
name: 'Analytics',
engine: 'postgres',
details: { host: 'db.example.test', dbname: 'analytics' },
}),
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cleanup: vi.fn().mockResolvedValue(undefined),
};
}
describe('fetchMetabaseBundle', () => {
let stagedDir: string;
let clientFactory: ReturnType<typeof makeClientFactory>;
let sourceStateReader: ReturnType<typeof makeSourceStateReader>;
function makeClientFactory() {
const mockClient = makeMockClient();
return {
createClient: vi.fn().mockResolvedValue(mockClient),
__client: mockClient,
};
}
function makeFetchContext(connectionId = targetConnectionId): FetchContext {
return {
connectionId,
sourceKey: 'metabase',
};
}
function makeSourceStateReader() {
return {
getSourceState: vi.fn().mockResolvedValue({
syncMode: 'ALL',
selections: [],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId: targetConnectionId,
syncEnabled: true,
},
],
defaultTagNames: [],
}),
};
}
beforeEach(async () => {
stagedDir = await mkdtemp(join(tmpdir(), 'mb-fetch-'));
clientFactory = makeClientFactory();
sourceStateReader = makeSourceStateReader();
});
afterEach(async () => {
vi.restoreAllMocks();
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await rm(stagedDir, { recursive: true, force: true });
});
it('writes sync-config.json, one database file, one collection file, and only non-archived cards matching databaseId', async () => {
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
const cardFiles = await readdir(join(stagedDir, 'cards'));
expect(cardFiles.sort()).toEqual(['1.json']);
const collections = await readdir(join(stagedDir, 'collections'));
expect(collections).toEqual(['5.json']);
const databases = await readdir(join(stagedDir, 'databases'));
expect(databases).toEqual(['42.json']);
const syncConfig = JSON.parse(await readFile(join(stagedDir, 'sync-config.json'), 'utf-8'));
expect(syncConfig.metabaseDatabaseId).toBe(42);
expect(syncConfig.mapping.targetConnectionId).toBe(targetConnectionId);
const card = JSON.parse(await readFile(join(stagedDir, 'cards/1.json'), 'utf-8'));
expect(card.metabaseId).toBe(1);
expect(card.resolvedSql).toBe('SELECT * FROM card_1');
expect(card.resolutionStatus).toBe('resolved');
expect(card.collectionPath).toEqual(['Orders Team']);
expect(card.archived).toBe(false);
});
it('does not write Metabase fetch progress to console by default', async () => {
const log = vi.spyOn(console, 'log').mockImplementation(() => undefined);
const warn = vi.spyOn(console, 'warn').mockImplementation(() => undefined);
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
expect(log).not.toHaveBeenCalled();
expect(warn).not.toHaveBeenCalled();
feat(ingest): default local ingest to isolated diffs (#128) * docs: add isolated-diff ingestion design * Refine isolated-diff ingestion design after adversarial review iteration 1 * Refine isolated-diff ingestion design after adversarial review iteration 2 * Refine isolated-diff ingestion design after adversarial review iteration 3 * feat: persist ingest trace events * feat: add isolated ingest patch helpers * feat: validate wiki body semantic references * feat: add final ingest artifact gates * feat: execute ingest work units in child worktrees * feat: integrate isolated work unit patches * feat: route selected ingest sources through isolated diffs * test: cover isolated diff ingestion regressions * feat: add isolated diff ingestion v1 core * docs: document ingest trace inspection * docs: add isolated diff ingestion v1 core plan * fix(ingest): tighten final artifact gates * fix(ingest): gate isolated final integration tree * fix(ingest): persist postmortem failure traces * fix(ingest): trace policy conflicts and cleanup child worktrees * test(ingest): verify isolated diff postmortem coverage * docs: add isolated diff ingestion gates and trace closure plan * fix(ingest): gate provenance before isolated diff squash * docs: add isolated diff ingestion provenance gate closure plan * fix(ingest): gate final wiki references * fix(ingest): enforce SL target connection scope * fix(ingest): trace isolated SL target policy gates * test(ingest): cover isolated diff reference and target gates * chore(ingest): verify isolated diff gate closure * docs: add isolated diff ingestion reference and target gate closure plan * fix(ingest): gate global wiki references * docs: add isolated diff ingestion global wiki reference gate closure plan * fix(ingest): validate scan sources and wiki refs * test(ingest): cover isolated diff textual conflict resolver * test(ingest): cover isolated diff resolver integration * feat(ingest): repair isolated diff textual conflicts * feat(ingest): report isolated diff resolver outcomes * test(ingest): verify isolated diff textual conflict repair * test(ingest): align textual conflict failure coverage * docs: add isolated diff textual conflict resolver plan * test(ingest): cover isolated diff gate repair * feat(ingest): add isolated diff gate repair agent * feat(ingest): repair isolated diff semantic gate failures * feat(ingest): wire isolated diff gate repair * test(ingest): verify isolated diff final gate repair * chore(ingest): verify isolated diff gate repair * docs: add isolated diff gate repair plan * Improve ingest progress updates * feat(ingest): route direct-write connectors through isolated diffs * test(ingest): cover non-metabase isolated diff routing * feat(ingest): project metricflow semantic models before work units * test(ingest): verify metricflow isolated projection path * chore(ingest): verify isolated diff connector migration * docs: add isolated diff connector migration plan * feat(ingest): make isolated diff routing the private default * feat(ingest): promote isolated diff to default runner path * feat(ingest): default local ingest to isolated diffs * chore(ingest): remove isolated diff allowlist references * fix(ingest): preserve transient evidence for isolated work units * docs: add isolated diff default promotion plan * refactor(ingest): remove shared worktree WorkUnit path * docs(ingest): align WorkUnit prompts with isolated diffs * test(ingest): drop unused runner import * docs: add isolated diff shared worktree removal plan * docs: add isolated diff gate repair classification plan * fix: restrict claude-code mcp servers * docs: align ingest trace guidance with public CLI --------- Co-authored-by: Andrey Avtomonov <7889985+andreybavt@users.noreply.github.com>
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});
it('emits memory-flow progress while fetching Metabase cards', async () => {
const events: unknown[] = [];
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: {
...makeFetchContext(),
memoryFlow: {
emit: (event) => events.push(event),
update: vi.fn(),
finish: vi.fn(),
snapshot: vi.fn(),
},
},
clientFactory,
sourceStateReader,
});
expect(events).toEqual(
expect.arrayContaining([
expect.objectContaining({
type: 'stage_progress',
stage: 'source',
message: 'Fetching Metabase database 42 metadata',
}),
expect.objectContaining({
type: 'stage_progress',
stage: 'source',
message: 'Fetching 1 Metabase card for database 42',
}),
expect.objectContaining({
type: 'stage_progress',
stage: 'source',
message: 'Checked 1/1 Metabase cards for database 42; wrote 1',
transient: true,
}),
expect.objectContaining({
type: 'stage_progress',
stage: 'source',
message: 'Fetched Metabase database 42: 1 cards, 0 unresolved',
}),
]),
);
});
it('routes Metabase fetch warnings through the injected logger', async () => {
const logger = {
log: vi.fn(),
warn: vi.fn(),
};
clientFactory.__client.getCard.mockRejectedValueOnce(new Error('card read failed'));
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
logger,
});
expect(logger.warn).toHaveBeenCalledWith('failed to load card 1: card read failed');
});
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it('passes the Metabase source pull config and target fetch context to the client factory', async () => {
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
expect(clientFactory.createClient).toHaveBeenCalledTimes(1);
expect(clientFactory.createClient).toHaveBeenCalledWith(
{ metabaseConnectionId, metabaseDatabaseId: 42 },
{ connectionId: targetConnectionId, sourceKey: 'metabase' },
);
});
it('reads source state by the Metabase source connection id, not the target fetch context connection id', async () => {
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
expect(sourceStateReader.getSourceState).toHaveBeenCalledTimes(1);
expect(sourceStateReader.getSourceState).toHaveBeenCalledWith(metabaseConnectionId);
expect(sourceStateReader.getSourceState).not.toHaveBeenCalledWith(targetConnectionId);
});
it('cleans up the client after a successful fetch', async () => {
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
expect(clientFactory.__client.cleanup).toHaveBeenCalledTimes(1);
});
it('cleans up the client when fetch fails after client creation', async () => {
clientFactory.__client.getCollectionTree.mockRejectedValueOnce(new Error('collection tree unavailable'));
await expect(
fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
}),
).rejects.toThrow('collection tree unavailable');
expect(clientFactory.__client.cleanup).toHaveBeenCalledTimes(1);
});
it('throws BadRequestException when the requested metabaseDatabaseId has no matching sync-enabled mapping', async () => {
sourceStateReader.getSourceState.mockResolvedValue({
syncMode: 'ALL',
selections: [],
mappings: [],
defaultTagNames: [],
});
await expect(
fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
}),
).rejects.toThrow(/no sync-enabled mapping for database 42/);
});
it('throws BadRequestException when the mapping points to a different target connection than the job', async () => {
sourceStateReader.getSourceState.mockResolvedValue({
syncMode: 'ALL',
selections: [],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId: 'c3d4e5f6-a7b8-4901-bcde-f01234567890',
syncEnabled: true,
},
],
defaultTagNames: [],
});
await expect(
fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
}),
).rejects.toThrow(/mapping.*does not point to connection/);
});
it('hydrates missing mapping metadata from Metabase instead of requiring a prior refresh', async () => {
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sourceStateReader.getSourceState.mockResolvedValue({
syncMode: 'ALL',
selections: [],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: null,
metabaseEngine: 'postgres',
targetConnectionId,
syncEnabled: true,
},
],
defaultTagNames: [],
});
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
expect(clientFactory.__client.getDatabase).toHaveBeenCalledWith(42);
const databaseFile = JSON.parse(await readFile(join(stagedDir, 'databases/42.json'), 'utf-8'));
expect(databaseFile).toMatchObject({
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId,
});
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});
it('skips cards whose getResolvedSql returns null and records them in unresolved-cards.json', async () => {
clientFactory.__client.getResolvedSql.mockResolvedValue(null);
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
const cardFiles = await readdir(join(stagedDir, 'cards')).catch(() => []);
expect(cardFiles).toEqual([]);
const unresolved = JSON.parse(await readFile(join(stagedDir, 'unresolved-cards.json'), 'utf-8'));
expect(unresolved).toEqual([expect.objectContaining({ cardId: 1, name: 'Card 1', reason: 'api_500' })]);
});
it('records referenced cards via `{{#N}}` in resolvedSql', async () => {
clientFactory.__client.getResolvedSql.mockImplementation((card: { id: number }) =>
Promise.resolve({
resolvedSql: card.id === 1 ? 'SELECT * FROM {{#999}}' : `SELECT * FROM card_${card.id}`,
templateTags: card.id === 1 ? [{ name: 'r', type: 'card', cardReference: 999 }] : [],
resolutionStatus: 'resolved',
}),
);
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId, metabaseDatabaseId: 42 },
stagedDir,
ctx: makeFetchContext(),
clientFactory,
sourceStateReader,
});
const card = JSON.parse(await readFile(join(stagedDir, 'cards/1.json'), 'utf-8'));
expect(card.referencedCardIds).toEqual([999]);
});
});
/* eslint-disable @typescript-eslint/require-await -- mock fixtures return constants */
describe('fetchMetabaseBundle — scoped fetch', () => {
it('ONLY scope fetches exactly the selected card ids (no reference closure)', async () => {
const staged = await mkdtemp(join(tmpdir(), 'mb-fetch-only-'));
try {
const catalog = [1, 2, 3, 4, 5, 6, 7, 8, 9, 10].map((id) => ({
id,
name: `Card ${id}`,
type: 'model',
database_id: 42,
collection_id: 5,
archived: false,
result_metadata: [],
}));
const getCardCalls: number[] = [];
const client: any = {
getAllCards: async () =>
catalog.map((c) => ({
id: c.id,
database_id: c.database_id,
archived: false,
collection_id: c.collection_id,
})),
getCard: async (id: number) => {
getCardCalls.push(id);
const c = catalog.find((x) => x.id === id);
if (!c) {
throw new Error(`no such card ${id}`);
}
return c;
},
getResolvedSql: async () => ({ resolvedSql: 'SELECT 1', templateTags: [], resolutionStatus: 'resolved' }),
getCollectionTree: async () => [{ id: 5, name: 'Col5', parent_id: null }],
getCollectionItems: async () => [],
cleanup: async () => {},
};
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId: 'a1b2c3d4-e5f6-4789-9abc-def012345678', metabaseDatabaseId: 42 },
stagedDir: staged,
ctx: { connectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789', sourceKey: 'metabase' },
clientFactory: { createClient: () => client },
sourceStateReader: {
getSourceState: async () => ({
syncMode: 'ONLY',
selections: [
{ selectionType: 'item', metabaseObjectId: 2 },
{ selectionType: 'item', metabaseObjectId: 5 },
{ selectionType: 'item', metabaseObjectId: 8 },
],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789',
syncEnabled: true,
},
],
defaultTagNames: [],
}),
} as any,
});
expect([...getCardCalls].sort((a, b) => a - b)).toEqual([2, 5, 8]);
} finally {
await rm(staged, { recursive: true, force: true });
}
});
it('ONLY scope walks collections via getCollectionItems', async () => {
const staged = await mkdtemp(join(tmpdir(), 'mb-fetch-col-'));
try {
const getCardCalls: number[] = [];
const collectionItems = [
{ id: 100, model: 'card' },
{ id: 101, model: 'card' },
];
const client: any = {
getAllCards: async () => [],
getCard: async (id: number) => {
getCardCalls.push(id);
return {
id,
name: `Card ${id}`,
type: 'model',
database_id: 42,
collection_id: 7,
archived: false,
result_metadata: [],
};
},
getResolvedSql: async () => ({ resolvedSql: 'SELECT 1', templateTags: [], resolutionStatus: 'resolved' }),
getCollectionTree: async () => [{ id: 7, name: 'Col7', parent_id: null }],
getCollectionItems: async (cid: number) => (cid === 7 ? collectionItems : []),
cleanup: async () => {},
};
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId: 'a1b2c3d4-e5f6-4789-9abc-def012345678', metabaseDatabaseId: 42 },
stagedDir: staged,
ctx: { connectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789', sourceKey: 'metabase' },
clientFactory: { createClient: () => client },
sourceStateReader: {
getSourceState: async () => ({
syncMode: 'ONLY',
selections: [{ selectionType: 'collection', metabaseObjectId: 7 }],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789',
syncEnabled: true,
},
],
defaultTagNames: [],
}),
} as any,
});
expect([...getCardCalls].sort((a, b) => a - b)).toEqual([100, 101]);
} finally {
await rm(staged, { recursive: true, force: true });
}
});
it('ONLY scope closes over {{#N}} references, bounded', async () => {
const staged = await mkdtemp(join(tmpdir(), 'mb-fetch-ref-'));
try {
const getCardCalls: number[] = [];
const refs: Record<number, number[]> = { 1: [2], 2: [3], 3: [] };
const client: any = {
getAllCards: async () => [],
getCard: async (id: number) => {
getCardCalls.push(id);
return {
id,
name: `Card ${id}`,
type: 'model',
database_id: 42,
collection_id: null,
archived: false,
result_metadata: [],
};
},
getResolvedSql: async (card: any) => ({
resolvedSql: `SELECT 1 ${(refs[card.id] ?? []).map((r) => `{{#${r}}}`).join(' ')}`,
templateTags: (refs[card.id] ?? []).map((r) => ({ name: `#${r}`, type: 'card', cardReference: r })),
resolutionStatus: 'resolved',
}),
getCollectionTree: async () => [],
getCollectionItems: async () => [],
cleanup: async () => {},
};
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId: 'a1b2c3d4-e5f6-4789-9abc-def012345678', metabaseDatabaseId: 42 },
stagedDir: staged,
ctx: { connectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789', sourceKey: 'metabase' },
clientFactory: { createClient: () => client },
sourceStateReader: {
getSourceState: async () => ({
syncMode: 'ONLY',
selections: [{ selectionType: 'item', metabaseObjectId: 1 }],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789',
syncEnabled: true,
},
],
defaultTagNames: [],
}),
} as any,
});
expect([...getCardCalls].sort((a, b) => a - b)).toEqual([1, 2, 3]);
} finally {
await rm(staged, { recursive: true, force: true });
}
});
it('ONLY with cyclical refs does not infinite-loop', async () => {
const staged = await mkdtemp(join(tmpdir(), 'mb-fetch-cycle-'));
try {
const getCardCalls: number[] = [];
const refs: Record<number, number[]> = { 1: [2], 2: [1] };
const client: any = {
getAllCards: async () => [],
getCard: async (id: number) => {
getCardCalls.push(id);
return {
id,
name: `Card ${id}`,
type: 'model',
database_id: 42,
collection_id: null,
archived: false,
result_metadata: [],
};
},
getResolvedSql: async (card: any) => ({
resolvedSql: `SELECT 1`,
templateTags: (refs[card.id] ?? []).map((r) => ({ name: `#${r}`, type: 'card', cardReference: r })),
resolutionStatus: 'resolved',
}),
getCollectionTree: async () => [],
getCollectionItems: async () => [],
cleanup: async () => {},
};
await fetchMetabaseBundle({
pullConfig: { metabaseConnectionId: 'a1b2c3d4-e5f6-4789-9abc-def012345678', metabaseDatabaseId: 42 },
stagedDir: staged,
ctx: { connectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789', sourceKey: 'metabase' },
clientFactory: { createClient: () => client },
sourceStateReader: {
getSourceState: async () => ({
syncMode: 'ONLY',
selections: [{ selectionType: 'item', metabaseObjectId: 1 }],
mappings: [
{
metabaseDatabaseId: 42,
metabaseDatabaseName: 'Analytics',
metabaseEngine: 'postgres',
targetConnectionId: 'b2c3d4e5-f6a7-4890-abcd-ef0123456789',
syncEnabled: true,
},
],
defaultTagNames: [],
}),
} as any,
});
expect([...getCardCalls].sort((a, b) => a - b)).toEqual([1, 2]);
} finally {
await rm(staged, { recursive: true, force: true });
}
});
});