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fix(ingest): recover textual-conflict gate failures; fix query-history adapter (#255)
* fix(ingest): recover textual-conflict gate failures; fix query-history adapter Two latent gaps in the isolated-diff local-ingest pipeline that can abort an otherwise-successful ingest: - Metabase: when a work-unit patch hit both a textual conflict and a post-merge dangling sl_ref, the after-textual-resolution branch returned a hard semantic_conflict and rolled back the whole job. It now runs the same repairGateFailure recovery the clean-apply branch already uses (re-validate, then commit the union of resolved + repaired paths), reaching parity. - Query history: the historic-sql adapter was registered only when ktx.yaml had context.queryHistory.enabled=true, so `--query-history` threw "Adapter not available for local ingest". Registration now resolves the dialect from driver capability, since the explicit --query-history request is itself the opt-in; the config-gated helper is unchanged for status/setup/probes. Adds the previously-missing tests for both paths. * chore: sync uv.lock to 0.8.0 (regenerated with pinned uv 0.11.11) * fix(ingest): drop ktx's own scan probes and dedup tables in query history Query history (historic-sql) mined two kinds of noise back into context: - ktx's own warehouse scan emits relationship- and column-profiling probes (the relationship_profile_values aggregation and the child_values/parent_values FK-overlap CTEs) into pg_stat_statements. shouldDropBySql now filters these ktx-owned, dialect-stable signatures so ktx introspection is not ingested as usage history. - The same physical table appears both bare (accounts, via search_path) and schema-qualified (orbit_raw.accounts), producing duplicate per-table work units. canonicalizeTableIdentifiers collapses a bare name into its unique qualified form before work-unit keying; ambiguous names are left untouched. On the orbit demo this removes ~35% of sampled query templates (ktx self-probes) and ~45 duplicate per-table work units. * docs(agents): add Design Reasoning Defaults section
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59
AGENTS.md
59
AGENTS.md
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@ -159,6 +159,65 @@ and naming asymmetries are bugs in waiting — see
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[`docs/code-design.md`](docs/code-design.md). Treat the `MUST` / `MUST NOT`
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rules there with the same weight as the ones in this file.
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## Design Reasoning Defaults
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When proposing a design, an approach, or any non-trivial change, apply these
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defaults and run the self-check before presenting it. They encode the
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corrections users most often have to make; reaching these conclusions
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autonomously — without being asked the leading question — is the bar.
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- **MUST**: Optimize for the best outcome, not for an unstated constraint. Do not
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silently adopt "smallest change", "least effort", "cheapest", or "least user
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intervention" as the goal unless the user said so. Default to the most correct,
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durable solution, and present cost / effort / scope as information for the user
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to weigh — not as a ceiling you impose on their behalf.
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- **MUST**: Separate one-time cost from recurring cost before discarding an
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option. A fixed cost paid once (a setup-time computation, an extra LLM call
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during setup, a contract change) to make every later run cheaper or more
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correct is usually worth it. Do not reject it with recurring-cost reasoning;
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quantify both sides. (Example smell: "don't add an LLM call to a cost-cutting
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feature" — wrong when the call is one-time and the savings recur.)
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- **MUST**: Treat a user's example as a representative of a class, not as the
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spec. Design for the general population the example stands for, then stress-test
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against deliberately different instances — another warehouse, dialect, stack
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layout, or input shape — before committing. If a design only works because of an
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incidental property of the example (e.g. "the noise happened to be in a separate
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schema *on this demo*"), it is curve-fitting; generalize it or state the
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assumption explicitly.
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- **MUST**: Prefer deriving from the system's own state over enumerating cases.
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Favor an allowlist computed from declared/observed state (config, scanned
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catalog, query log, the user's own inputs) over a denylist of known-bad
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specifics (particular tables, schemas, tools, or vendors). A hardcoded or
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hand-maintained list of external specifics is a smell: it rots and fails on the
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next stack. The only acceptable static patterns are genuinely universal
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invariants (e.g. DB-engine system catalogs) and ktx's own self-emitted
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signatures.
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- **SHOULD**: Before inventing an abstraction or hand-rolling structural logic,
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search for what already exists and reuse it — the codebase's canonical
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representation (a structured ref/key type) instead of a parallel string scheme,
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and a mandated/available tool (e.g. `sqlglot` for SQL structure; see
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[SQL and Structured Parsing](#sql-and-structured-parsing)) instead of
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hand-parsing. Normalize ambiguous input to the canonical form at the boundary;
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do not carry the ambiguity downstream. This is the single-source-of-truth / DRY
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item from the Priority Hierarchy applied at design time.
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Before presenting a design, answer these explicitly:
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1. Am I optimizing for a goal the user actually stated, or one I assumed?
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2. Does this generalize beyond the example in front of me? Name a real case where
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it would break.
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3. Am I enumerating known-bad cases when I could derive scope from the system's
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own declared/observed state?
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4. Is there an existing canonical representation or mandated tool I should reuse
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instead of building or parsing my own?
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5. Am I discarding the better option on a weak or misapplied constraint
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(one-time vs recurring cost, "more surface area", "more work now")?
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A user question that nudges toward an alternative ("would X help?", "should I
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always do Y?", "will you hardcode Z?") is a signal that a better option exists.
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Investigate the implied direction and reason it through *before* defending the
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original proposal — and prefer to have asked yourself the question first.
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## TypeScript Standards
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- Use Node 22+ and pnpm workspace commands.
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@ -26,6 +26,21 @@ export function isQueryHistoryEnabled(connection: unknown): boolean {
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return queryHistoryRecord(connection)?.enabled === true;
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}
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/**
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* Resolves the query-history dialect from the connection's driver capability
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* alone, ignoring whether query history is enabled in ktx.yaml. Use this on the
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* adapter-registration path when query history has been explicitly requested
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* for the run (e.g. via `--query-history`, which is itself the opt-in): the
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* persisted `context.queryHistory.enabled` flag must not gate registration.
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* Returns null when the connection's driver has no query-history reader.
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*/
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export function historicSqlDialectForConnectionDriver(connection: unknown): HistoricSqlDialect | null {
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const conn = recordOrNull(connection);
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const driver = String(conn?.driver ?? '').toLowerCase();
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const registration = getDriverRegistration(driver);
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return registration?.hasHistoricSqlReader ? historicSqlDialectForDriver(registration.driver) : null;
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}
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/**
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* Resolves the query-history dialect for a connection. Returns null when
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* query history is disabled, or when the connection's driver has no
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@ -35,8 +50,5 @@ export function queryHistoryDialectForConnection(connection: unknown): HistoricS
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if (!isQueryHistoryEnabled(connection)) {
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return null;
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}
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const conn = recordOrNull(connection);
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const driver = String(conn?.driver ?? '').toLowerCase();
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const registration = getDriverRegistration(driver);
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return registration?.hasHistoricSqlReader ? historicSqlDialectForDriver(registration.driver) : null;
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return historicSqlDialectForConnectionDriver(connection);
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}
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@ -79,8 +79,21 @@ function matchesAny(value: string | null, patterns: RegExp[]): boolean {
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return !!value && patterns.some((pattern) => pattern.test(value));
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}
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// ktx's own warehouse scan emits relationship- and column-profiling probes that land in
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// pg_stat_statements (relationship-validation, relationship-composite-candidates, and each
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// dialect's relationship value aggregation). They are ktx introspection, not genuine query
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// usage, so they must not be mined back as query history. The markers are ktx-owned
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// identifiers, stable across dialects.
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function isKtxScanProbe(sql: string): boolean {
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if (/\brelationship_profile_values\b/i.test(sql)) {
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return true;
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}
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return /\bchild_values\b/i.test(sql) && /\bparent_values\b/i.test(sql);
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}
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function shouldDropBySql(sql: string, config: HistoricSqlUnifiedPullConfig): boolean {
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if (NOISE_PREFIX_RE.test(sql) || SYSTEM_TABLE_RE.test(sql)) return true;
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if (isKtxScanProbe(sql)) return true;
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if (config.filters.dropTrivialProbes !== false && TRIVIAL_SQL_RE.test(sql)) return true;
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return false;
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}
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@ -148,6 +161,53 @@ function isEnabledTable(table: string, filter: EnabledTableFilter | null): boole
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return filter.exact.has(normalized) || filter.uniqueUnqualified.has(unqualifiedTableIdentifier(normalized));
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}
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/**
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* pg_stat_statements records queries as written, so the same physical table can appear
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* both bare (`accounts`, resolved via search_path) and schema-qualified
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* (`orbit_raw.accounts`). Collapse a bare identifier into its schema-qualified form when
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* exactly one qualified form shares its unqualified name, so the two never become separate
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* work units. Ambiguous bare names (two qualified forms) are left untouched.
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*/
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function canonicalizeTableIdentifiers(parsedTemplates: ParsedTemplate[]): void {
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const all = new Set<string>();
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for (const parsed of parsedTemplates) {
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for (const table of parsed.includedTables) {
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all.add(table);
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}
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}
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const qualifiedByUnqualified = new Map<string, Set<string>>();
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for (const table of all) {
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if (!table.includes('.')) {
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continue;
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}
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const unqualified = unqualifiedTableIdentifier(table);
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if (unqualified.length === 0) {
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continue;
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}
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const forms = qualifiedByUnqualified.get(unqualified) ?? new Set<string>();
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forms.add(table);
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qualifiedByUnqualified.set(unqualified, forms);
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}
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const canonical = new Map<string, string>();
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for (const table of all) {
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if (table.includes('.')) {
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continue;
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}
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const forms = qualifiedByUnqualified.get(unqualifiedTableIdentifier(table));
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if (forms && forms.size === 1) {
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canonical.set(table, [...forms][0]);
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}
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}
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if (canonical.size === 0) {
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return;
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}
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const remap = (table: string): string => canonical.get(table) ?? table;
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for (const parsed of parsedTemplates) {
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parsed.includedTables = [...new Set(parsed.includedTables.map(remap))].sort();
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parsed.tablesTouched = [...new Set(parsed.tablesTouched.map(remap))].sort();
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}
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}
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function historicSqlWindowDays(config: HistoricSqlUnifiedPullConfig): number {
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return 'windowDays' in config ? config.windowDays : 90;
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}
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@ -323,6 +383,8 @@ export async function stageHistoricSqlAggregatedSnapshot(input: StageHistoricSql
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});
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}
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canonicalizeTableIdentifiers(parsedTemplates);
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const byTable = new Map<string, TableAccumulator>();
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for (const parsed of parsedTemplates) {
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for (const table of parsed.includedTables) {
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@ -155,18 +155,103 @@ export async function integrateWorkUnitPatch(input: IntegrateWorkUnitPatchInput)
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},
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);
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} catch (semanticError) {
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if (preApplyHead) {
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await input.integrationGit.resetHardTo(preApplyHead);
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}
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const reason = errorMessage(semanticError);
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await input.trace.event('error', 'integration', 'patch_semantic_conflict_after_textual_resolution', {
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unitKey: input.unitKey,
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patchPath: input.patchPath,
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touchedPaths: textualResolution.changedPaths,
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reason: errorMessage(semanticError),
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reason,
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});
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// A textual conflict and a semantic-gate failure can co-occur: the resolver
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// reconciles the text but can leave wiki sl_refs pointing at measures the
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// merged source no longer defines. Recover via the same gate repair the
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// clean-apply branch uses, instead of hard-failing the whole job.
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if (input.repairGateFailure) {
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const gateRepair = await input.repairGateFailure({
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unitKey: input.unitKey,
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patchPath: input.patchPath,
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touchedPaths: textualResolution.changedPaths,
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reason,
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});
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if (gateRepair.status !== 'failed') {
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// The resolver wrote its merge to the worktree (unstaged); the repair
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// edited a subset on top. Commit the union so neither is dropped.
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const resolvedAndRepairedPaths = [
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...new Set([...textualResolution.changedPaths, ...gateRepair.changedPaths]),
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].sort();
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try {
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await traceTimed(
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input.trace,
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'integration',
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'semantic_gate_after_gate_repair',
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{ unitKey: input.unitKey, touchedPaths: gateRepair.changedPaths },
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async () => {
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await input.validateAppliedTree(gateRepair.changedPaths);
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},
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);
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const commit = await input.integrationGit.commitFiles(
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resolvedAndRepairedPaths,
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`ingest: resolve WorkUnit ${input.unitKey} conflict`,
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input.author.name,
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input.author.email,
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);
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if (commit.created) {
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await input.trace.event('debug', 'integration', 'patch_accepted_after_textual_resolution', {
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unitKey: input.unitKey,
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commitSha: commit.commitHash,
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touchedPaths: resolvedAndRepairedPaths,
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attempts: textualResolution.attempts,
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gateRepairAttempts: gateRepair.attempts,
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});
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return {
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status: 'accepted',
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commitSha: commit.commitHash,
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touchedPaths: resolvedAndRepairedPaths,
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textualResolution,
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gateRepair,
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};
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}
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} catch (repairValidationError) {
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if (preApplyHead) {
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await input.integrationGit.resetHardTo(preApplyHead);
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}
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await input.trace.event('error', 'integration', 'patch_semantic_conflict_after_textual_resolution', {
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unitKey: input.unitKey,
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patchPath: input.patchPath,
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touchedPaths: gateRepair.changedPaths,
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reason: errorMessage(repairValidationError),
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});
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return {
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status: 'semantic_conflict',
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reason: errorMessage(repairValidationError),
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touchedPaths: gateRepair.changedPaths,
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textualResolution,
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gateRepair,
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};
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}
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}
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if (preApplyHead) {
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await input.integrationGit.resetHardTo(preApplyHead);
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}
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return {
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status: 'semantic_conflict',
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reason: gateRepair.status === 'failed' ? gateRepair.reason : reason,
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touchedPaths: textualResolution.changedPaths,
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textualResolution,
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gateRepair,
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};
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}
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if (preApplyHead) {
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await input.integrationGit.resetHardTo(preApplyHead);
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}
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return {
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status: 'semantic_conflict',
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reason: errorMessage(semanticError),
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reason,
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touchedPaths: textualResolution.changedPaths,
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textualResolution,
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};
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@ -12,7 +12,7 @@ import { isKtxSqliteConnectionConfig } from './connectors/sqlite/connector.js';
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import { createSqlServerLiveDatabaseIntrospection } from './connectors/sqlserver/live-database-introspection.js';
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import { isKtxSqlServerConnectionConfig } from './connectors/sqlserver/connector.js';
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import { BigQueryHistoricSqlQueryHistoryReader } from './context/ingest/adapters/historic-sql/bigquery-query-history-reader.js';
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import { queryHistoryDialectForConnection } from './context/ingest/adapters/historic-sql/connection-dialect.js';
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import { historicSqlDialectForConnectionDriver } from './context/ingest/adapters/historic-sql/connection-dialect.js';
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import { createDaemonLiveDatabaseIntrospection } from './context/ingest/adapters/live-database/daemon-introspection.js';
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import { createDefaultLocalIngestAdapters, type DefaultLocalIngestAdaptersOptions } from './context/ingest/local-adapters.js';
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import type { HistoricSqlReader } from './context/ingest/adapters/historic-sql/types.js';
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@ -268,7 +268,12 @@ function historicSqlOptionsForLocalRun(project: KtxLocalProject, options: KtxCli
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return undefined;
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}
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const connection = project.config.connections[connectionId];
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const dialect = queryHistoryDialectForConnection(connection);
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// historicSqlConnectionId is only set when query history was explicitly
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// requested for this run (e.g. `--query-history`), so resolve the dialect from
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// driver capability rather than the persisted context.queryHistory.enabled
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// flag — otherwise the adapter is missing and findAdapter('historic-sql')
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// throws even though the run asked for it.
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const dialect = historicSqlDialectForConnectionDriver(connection);
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if (!dialect) {
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return undefined;
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}
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@ -1,5 +1,8 @@
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import { describe, expect, it } from 'vitest';
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import { queryHistoryDialectForConnection } from '../../../../../src/context/ingest/adapters/historic-sql/connection-dialect.js';
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import {
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historicSqlDialectForConnectionDriver,
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queryHistoryDialectForConnection,
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} from '../../../../../src/context/ingest/adapters/historic-sql/connection-dialect.js';
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describe('queryHistoryDialectForConnection', () => {
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it.each([
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@ -21,3 +24,19 @@ describe('queryHistoryDialectForConnection', () => {
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expect(queryHistoryDialectForConnection({ driver: 'postgres', context: { queryHistory: { enabled: false } } })).toBeNull();
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});
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});
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describe('historicSqlDialectForConnectionDriver', () => {
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it('resolves the dialect from driver capability even when query history is disabled', () => {
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expect(
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historicSqlDialectForConnectionDriver({ driver: 'postgres', context: { queryHistory: { enabled: false } } }),
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).toBe('postgres');
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});
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it('resolves the dialect when no query-history context is present', () => {
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expect(historicSqlDialectForConnectionDriver({ driver: 'bigquery' })).toBe('bigquery');
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});
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it('returns null for drivers without a historic-SQL reader', () => {
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expect(historicSqlDialectForConnectionDriver({ driver: 'mysql', context: { queryHistory: { enabled: true } } })).toBeNull();
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});
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});
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|
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@ -433,4 +433,88 @@ describe('stageHistoricSqlAggregatedSnapshot', () => {
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const manifest = await readJson<Record<string, any>>(stagedDir, 'manifest.json');
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expect(manifest.warnings).toEqual([]);
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});
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it("drops ktx's own scan/relationship probes from query history", async () => {
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const stagedDir = await tempDir();
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const fkOverlapProbe =
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'select * from (WITH child_values AS ( SELECT DISTINCT "account_id" AS value FROM "account_owners" WHERE "account_id" IS NOT NULL LIMIT $1 ), parent_values AS ( SELECT DISTINCT "account_id" AS value FROM "accounts" WHERE "account_id" IS NOT NULL ) SELECT (SELECT COUNT(*) FROM child_values) AS child_distinct, (SELECT COUNT(*) FROM parent_values) AS parent_distinct) probe';
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const profileProbe =
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'select * from (SELECT $1 AS column_name, (SELECT COUNT(*) FROM "orbit_raw"."accounts") AS total, (SELECT STRING_AGG(CAST(value AS TEXT), CHR(31)) FROM (SELECT DISTINCT "id" AS value FROM "orbit_raw"."accounts" LIMIT $2) AS relationship_profile_values) AS samples) profile';
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const reader: HistoricSqlReader = {
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async probe() {
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return { warnings: [], info: [] };
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},
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async *fetchAggregated() {
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yield aggregate({
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templateId: 'analytic',
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canonicalSql: 'select status, count(*) from public.orders group by status',
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});
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yield aggregate({ templateId: 'ktx-fk-overlap', canonicalSql: fkOverlapProbe });
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yield aggregate({ templateId: 'ktx-profile', canonicalSql: profileProbe });
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},
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};
|
||||
const sqlAnalysis: SqlAnalysisPort = {
|
||||
analyzeForFingerprint: vi.fn(),
|
||||
analyzeBatch: vi.fn(async () => new Map([
|
||||
['analytic', { tablesTouched: ['public.orders'], columnsByClause: { select: ['status'], where: [], join: [], groupBy: ['status'] } }],
|
||||
])),
|
||||
validateReadOnly: vi.fn(async () => ({ ok: true })),
|
||||
};
|
||||
|
||||
await stageHistoricSqlAggregatedSnapshot({
|
||||
stagedDir,
|
||||
connectionId: 'warehouse',
|
||||
queryClient: {},
|
||||
reader,
|
||||
sqlAnalysis,
|
||||
pullConfig: { dialect: 'postgres' },
|
||||
now: new Date('2026-05-11T12:00:00.000Z'),
|
||||
});
|
||||
|
||||
// ktx scan probes are filtered before SQL analysis, so only the analytic query is parsed.
|
||||
expect(sqlAnalysis.analyzeBatch).toHaveBeenCalledWith(
|
||||
[{ id: 'analytic', sql: 'select status, count(*) from public.orders group by status' }],
|
||||
'postgres',
|
||||
);
|
||||
expect(await readdir(join(stagedDir, 'tables'))).toEqual(['public.orders.json']);
|
||||
});
|
||||
|
||||
it('merges bare and schema-qualified references to the same table into one work unit', async () => {
|
||||
const stagedDir = await tempDir();
|
||||
const reader: HistoricSqlReader = {
|
||||
async probe() {
|
||||
return { warnings: [], info: [] };
|
||||
},
|
||||
async *fetchAggregated() {
|
||||
yield aggregate({ templateId: 'qualified', canonicalSql: 'select count(*) from orbit_raw.accounts' });
|
||||
yield aggregate({ templateId: 'bare', canonicalSql: 'select id from accounts where active' });
|
||||
},
|
||||
};
|
||||
const sqlAnalysis: SqlAnalysisPort = {
|
||||
analyzeForFingerprint: vi.fn(),
|
||||
analyzeBatch: vi.fn(async () => new Map([
|
||||
['qualified', { tablesTouched: ['orbit_raw.accounts'], columnsByClause: { select: [], where: [], join: [], groupBy: [] } }],
|
||||
['bare', { tablesTouched: ['accounts'], columnsByClause: { select: ['id'], where: ['active'], join: [], groupBy: [] } }],
|
||||
])),
|
||||
validateReadOnly: vi.fn(async () => ({ ok: true })),
|
||||
};
|
||||
|
||||
await stageHistoricSqlAggregatedSnapshot({
|
||||
stagedDir,
|
||||
connectionId: 'warehouse',
|
||||
queryClient: {},
|
||||
reader,
|
||||
sqlAnalysis,
|
||||
pullConfig: { dialect: 'postgres' },
|
||||
now: new Date('2026-05-11T12:00:00.000Z'),
|
||||
});
|
||||
|
||||
// The bare `accounts` reference resolves to the unique qualified `orbit_raw.accounts`,
|
||||
// so the two templates collapse into a single work unit instead of two.
|
||||
expect(await readdir(join(stagedDir, 'tables'))).toEqual(['orbit_raw.accounts.json']);
|
||||
const merged = await readJson<Record<string, any>>(stagedDir, 'tables/orbit_raw.accounts.json');
|
||||
expect(merged.topTemplates.map((t: any) => t.id).sort()).toEqual(['bare', 'qualified']);
|
||||
const manifest = await readJson<Record<string, any>>(stagedDir, 'manifest.json');
|
||||
expect(manifest.touchedTableCount).toBe(1);
|
||||
});
|
||||
});
|
||||
|
|
|
|||
|
|
@ -401,4 +401,72 @@ describe('integrateWorkUnitPatch', () => {
|
|||
});
|
||||
await expect(readFile(join(configDir, 'wiki/global/a.md'), 'utf-8')).resolves.toBe('old\n');
|
||||
});
|
||||
|
||||
it('repairs a semantic gate failure after a textual conflict is resolved', async () => {
|
||||
const { homeDir, configDir, git } = await makeRepo();
|
||||
await mkdir(join(configDir, 'wiki/global'), { recursive: true });
|
||||
await writeFile(join(configDir, 'wiki/global/a.md'), 'base\n', 'utf-8');
|
||||
await git.commitFiles(['wiki/global/a.md'], 'base page', 'System User', 'system@example.com');
|
||||
const conflictBase = await git.revParseHead();
|
||||
|
||||
await writeFile(join(configDir, 'wiki/global/a.md'), 'accepted\n', 'utf-8');
|
||||
await git.commitFiles(['wiki/global/a.md'], 'accepted edit', 'System User', 'system@example.com');
|
||||
|
||||
const childDir = join(homeDir, 'child-conflict-repair');
|
||||
await git.addWorktree(childDir, 'child-conflict-repair', conflictBase);
|
||||
const childGit = git.forWorktree(childDir);
|
||||
await writeFile(join(childDir, 'wiki/global/a.md'), 'proposal\n', 'utf-8');
|
||||
await childGit.commitFiles(['wiki/global/a.md'], 'proposal edit', 'System User', 'system@example.com');
|
||||
const patchPath = join(homeDir, 'proposal-repair.patch');
|
||||
await childGit.writeBinaryNoRenamePatch(conflictBase, 'HEAD', patchPath);
|
||||
|
||||
const trace = new FileIngestTraceWriter({
|
||||
tracePath: join(homeDir, '.ktx/ingest-traces/job-resolver-repair/trace.jsonl'),
|
||||
jobId: 'job-resolver-repair',
|
||||
connectionId: 'warehouse',
|
||||
sourceKey: 'metabase',
|
||||
level: 'trace',
|
||||
});
|
||||
|
||||
// Gate fails on the resolver's merged tree, then passes after the repair edit.
|
||||
const validateAppliedTree = vi
|
||||
.fn()
|
||||
.mockRejectedValueOnce(
|
||||
new Error('final artifact gates failed:\narr-definition: unknown sl_refs entity mart_arr_daily.arr_dollars'),
|
||||
)
|
||||
.mockResolvedValueOnce(undefined);
|
||||
|
||||
const repairGateFailure = vi.fn(async (context: { unitKey: string; touchedPaths: string[] }) => {
|
||||
expect(context).toMatchObject({ unitKey: 'wu-conflict-repair', touchedPaths: ['wiki/global/a.md'] });
|
||||
await writeFile(join(configDir, 'wiki/global/a.md'), 'accepted\nproposal repaired\n', 'utf-8');
|
||||
return { status: 'repaired' as const, attempts: 1, changedPaths: ['wiki/global/a.md'] };
|
||||
});
|
||||
|
||||
const result = await integrateWorkUnitPatch({
|
||||
unitKey: 'wu-conflict-repair',
|
||||
patchPath,
|
||||
integrationGit: git,
|
||||
trace,
|
||||
author: { name: 'System User', email: 'system@example.com' },
|
||||
slDisallowed: false,
|
||||
allowedTargetConnectionIds: new Set(['warehouse']),
|
||||
validateAppliedTree,
|
||||
resolveTextualConflict: vi.fn(async () => {
|
||||
await writeFile(join(configDir, 'wiki/global/a.md'), 'accepted\nproposal\n', 'utf-8');
|
||||
return { status: 'repaired' as const, attempts: 1, changedPaths: ['wiki/global/a.md'] };
|
||||
}),
|
||||
repairGateFailure,
|
||||
});
|
||||
|
||||
expect(result).toMatchObject({
|
||||
status: 'accepted',
|
||||
touchedPaths: ['wiki/global/a.md'],
|
||||
textualResolution: { status: 'repaired' },
|
||||
gateRepair: { status: 'repaired', attempts: 1, changedPaths: ['wiki/global/a.md'] },
|
||||
});
|
||||
expect(validateAppliedTree).toHaveBeenCalledTimes(2);
|
||||
expect(repairGateFailure).toHaveBeenCalledOnce();
|
||||
await expect(readFile(join(configDir, 'wiki/global/a.md'), 'utf-8')).resolves.toBe('accepted\nproposal repaired\n');
|
||||
await expect(readFile(trace.tracePath, 'utf-8')).resolves.toContain('patch_accepted_after_textual_resolution');
|
||||
});
|
||||
});
|
||||
|
|
|
|||
|
|
@ -70,6 +70,37 @@ describe('CLI local ingest adapters', () => {
|
|||
]);
|
||||
});
|
||||
|
||||
it('registers historic SQL when explicitly requested even if connection query history is disabled', async () => {
|
||||
await writeProject(
|
||||
tempDir,
|
||||
[
|
||||
'connections:',
|
||||
' warehouse:',
|
||||
' driver: postgres',
|
||||
' url: env:WAREHOUSE_DATABASE_URL',
|
||||
' readonly: true',
|
||||
' context:',
|
||||
' queryHistory:',
|
||||
' enabled: false',
|
||||
'ingest:',
|
||||
' adapters:',
|
||||
' - historic-sql',
|
||||
'',
|
||||
].join('\n'),
|
||||
);
|
||||
const project = await loadKtxProject({ projectDir: tempDir });
|
||||
|
||||
// `--query-history` sets historicSqlConnectionId for the run; that explicit
|
||||
// request is the opt-in, so the persisted context.queryHistory.enabled flag
|
||||
// must not gate adapter registration.
|
||||
const adapters = createKtxCliLocalIngestAdapters(project, {
|
||||
historicSqlConnectionId: 'warehouse',
|
||||
sqlAnalysis: sqlAnalysisStub(),
|
||||
});
|
||||
|
||||
expect(adapters.some((adapter) => adapter.source === 'historic-sql')).toBe(true);
|
||||
});
|
||||
|
||||
it('registers BigQuery historic SQL from the requested connection', async () => {
|
||||
await writeProject(
|
||||
tempDir,
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue