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* 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
102 lines
3.1 KiB
TypeScript
102 lines
3.1 KiB
TypeScript
import { describe, expect, it, vi } from 'vitest';
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import { repairWikiSlRefs } from '../../../src/context/ingest/wiki-sl-ref-repair.js';
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describe('repairWikiSlRefs', () => {
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it('removes missing measure refs while keeping source, measure, segment, and manifest-backed refs', async () => {
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type TestPage = { pageKey: string; frontmatter: Record<string, unknown>; content: string };
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const pages = new Map<string, TestPage>([
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[
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'GLOBAL:accounts-at-risk',
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{
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pageKey: 'accounts-at-risk',
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frontmatter: {
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summary: 'Accounts at risk',
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usage_mode: 'auto',
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sl_refs: [
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'mart_customer_health',
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'mart_customer_health.high_risk_account_count',
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'mart_customer_health.medium_risk_account_count',
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'mart_customer_health.high_risk',
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'int_procurement_qualifying_actions',
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],
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},
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content: 'Risk context.',
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},
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],
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]);
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const wikiService = {
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readPage: vi.fn(async (scope: string, _scopeId: string | null, key: string) => pages.get(`${scope}:${key}`)),
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writePage: vi.fn(
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async (
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scope: string,
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_scopeId: string | null,
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key: string,
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frontmatter: Record<string, unknown>,
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content: string,
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) => {
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pages.set(`${scope}:${key}`, { pageKey: key, frontmatter, content });
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},
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),
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};
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const configService = {
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listFiles: vi.fn(async () => ({
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files: ['global/accounts-at-risk.md', 'global/historic-sql/nested-old.md'],
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})),
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};
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const semanticLayerService = {
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loadAllSources: vi.fn(async () => ({
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sources: [
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{
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name: 'mart_customer_health',
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grain: [],
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columns: [],
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joins: [],
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measures: [{ name: 'high_risk_account_count', expr: 'count(*)' }],
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segments: [{ name: 'high_risk', expr: "risk_level = 'high'" }],
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},
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{
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name: 'int_procurement_qualifying_actions',
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grain: [],
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columns: [],
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joins: [],
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measures: [],
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},
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],
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loadErrors: [],
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})),
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};
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const result = await repairWikiSlRefs({
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wikiService: wikiService as never,
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semanticLayerService: semanticLayerService as never,
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configService: configService as never,
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connectionIds: ['warehouse'],
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});
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expect(result.repairs).toEqual([
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{
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pageKey: 'accounts-at-risk',
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scope: 'GLOBAL',
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scopeId: null,
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removedRefs: ['mart_customer_health.medium_risk_account_count'],
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},
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]);
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expect(wikiService.writePage).toHaveBeenCalledWith(
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'GLOBAL',
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null,
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'accounts-at-risk',
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expect.objectContaining({
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sl_refs: [
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'mart_customer_health',
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'mart_customer_health.high_risk_account_count',
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'mart_customer_health.high_risk',
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'int_procurement_qualifying_actions',
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],
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}),
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'Risk context.',
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'System User',
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'system@example.com',
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'Repair semantic-layer refs: accounts-at-risk',
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);
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});
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});
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