Files
OmniRoute/src/lib/db/cleanup.ts
Nick Sullivan b6d2b4a41c Compression telemetry retention has never deleted a row (same unit bug as #9625) (#10559)
* fix(db): align compression_run_telemetry cleanup cutoff with millisecond column

cleanupCompressionRunTelemetry() computed its cutoff in epoch seconds while
insertCompressionRunTelemetryRow() stamps the timestamp column with Date.now()
(epoch milliseconds). A millisecond timestamp is ~1000x larger than a seconds
cutoff, so DELETE WHERE timestamp < cutoff never matched an old row and the
retention sweep added by #6848 to bound storage.sqlite growth was inert.

This is the same defect as domain_cost_history (#9625), whose fix corrected
cleanupDomainCostHistory() ~90 lines earlier in this file and missed this
sibling call site. The stale docstring asserting a unix-epoch column is
corrected too.

The repro test seeds through the real writer to establish the stored unit, so
it also fails if the producer format diverges from the consumer again.

* docs(changelog): add fragment for the telemetry retention unit fix
2026-08-17 08:10:13 -03:00

763 lines
25 KiB
TypeScript

/**
* Database cleanup functions for removing old data based on retention policies.
*
* @module lib/db/cleanup
*/
import { getDbInstance } from "./core";
import { getUserDatabaseSettings } from "./databaseSettings";
import { rollupUsageHistoryBeforeDate } from "@/lib/usage/aggregateHistory";
import { purgeCallLogArtifactDirectory } from "@/lib/usage/callLogArtifacts";
import {
collectCallLogArtifactsBefore,
deleteAllFromTable,
deleteCallLogArtifacts,
deleteFromTableBefore,
type DeleteByPeriodTarget,
} from "./cleanup/usagePurge";
interface CleanupResult {
deleted: number;
deletedArtifacts?: number;
errors: number;
}
function getRetentionSettings() {
return getUserDatabaseSettings().retention;
}
/**
* Clean up old quota_snapshots based on retention settings.
*/
export async function cleanupQuotaSnapshots(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.quotaSnapshots;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM quota_snapshots WHERE created_at < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} quota_snapshots older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning quota_snapshots:", err);
result.errors++;
}
return result;
}
/**
* Clean up old call_logs based on retention settings.
*/
export async function cleanupCallLogs(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.callLogs;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM call_logs WHERE timestamp < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(`[Cleanup] Deleted ${result.deleted} call_logs older than ${retentionDays} days`);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning call_logs:", err);
result.errors++;
}
return result;
}
/**
* Clean up old usage_history based on retention settings.
*/
export async function cleanupUsageHistory(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.usageHistory;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const cutoffDateStr = cutoffISO.split("T")[0];
const result: CleanupResult = { deleted: 0, errors: 0 };
// Roll up rows that are about to be deleted into daily_usage_summary so that the
// analytics route can still surface historical data via the UNION query. The rollup
// uses the exact same day boundary as the DELETE below, so every deleted row
// is guaranteed to have been aggregated first.
//
// rollupUsageHistoryBeforeDate catches its own errors and reports them via the
// returned result, so we inspect that rather than relying on a thrown exception.
// If the rollup failed, abort the DELETE to avoid permanently losing raw usage data
// that was never aggregated.
const rollupResult = await rollupUsageHistoryBeforeDate(cutoffDateStr);
if (rollupResult.errors > 0) {
console.error(
"[Cleanup] Aborting usage_history deletion because the pre-delete rollup failed."
);
result.errors += rollupResult.errors;
return result;
}
try {
const stmt = db.prepare("DELETE FROM usage_history WHERE timestamp < ?");
const runResult = stmt.run(cutoffDateStr);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} usage_history older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning usage_history:", err);
result.errors++;
}
return result;
}
/**
* Clean up old compression_analytics based on retention settings.
*/
export async function cleanupCompressionAnalytics(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.compressionAnalytics;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM compression_analytics WHERE timestamp < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} compression_analytics older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning compression_analytics:", err);
result.errors++;
}
return result;
}
/**
* Clean up old mcp_tool_audit based on retention settings.
*/
export async function cleanupMcpAudit(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.mcpAudit;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM mcp_tool_audit WHERE created_at < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} mcp_tool_audit older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning mcp_tool_audit:", err);
result.errors++;
}
return result;
}
/**
* Clean up old a2a_task_events based on retention settings.
*/
export async function cleanupA2aEvents(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.a2aEvents;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM a2a_task_events WHERE created_at < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(`[Cleanup] Deleted ${result.deleted} a2a_task_events older than ${retentionDays} days`);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning a2a_task_events:", err);
result.errors++;
}
return result;
}
/**
* Clean up old memory_entries based on retention settings.
*/
export async function cleanupMemoryEntries(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.memoryEntries;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM memories WHERE created_at < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} memory_entries older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning memory_entries:", err);
result.errors++;
}
return result;
}
/**
* Clean up old domain_cost_history based on retention settings. (#6848)
* The `timestamp` column stores epoch milliseconds (saveCostEntry default
* is Date.now()), so the cutoff must be in milliseconds to match. (#9625)
*/
export async function cleanupDomainCostHistory(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.domainCostHistory;
const cutoffEpoch = Date.now() - retentionDays * 86_400_000;
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM domain_cost_history WHERE timestamp < ?");
const runResult = stmt.run(cutoffEpoch);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} domain_cost_history older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning domain_cost_history:", err);
result.errors++;
}
return result;
}
/**
* Clean up old compression_cache_stats based on retention settings. (#6848)
* Uses `created_at` column (DATETIME string).
*/
export async function cleanupCompressionCacheStats(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.compressionCacheStats;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM compression_cache_stats WHERE created_at < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} compression_cache_stats older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning compression_cache_stats:", err);
result.errors++;
}
return result;
}
/**
* Clean up old xp_audit_log based on retention settings.
*/
export async function cleanupXpAuditLog(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.xpAuditLog;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM xp_audit_log WHERE created_at < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} xp_audit_log older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning xp_audit_log:", err);
result.errors++;
}
return result;
}
/**
* Clean up old compression_run_telemetry based on retention settings. (#6848)
* The `timestamp` column stores epoch milliseconds (recordCompressionRun stamps
* Date.now()), so the cutoff must be in milliseconds to match. Same unit bug as
* domain_cost_history (#9625), which this function was missed by.
*/
export async function cleanupCompressionRunTelemetry(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.compressionRunTelemetry;
const cutoffEpoch = Date.now() - retentionDays * 86_400_000;
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM compression_run_telemetry WHERE timestamp < ?");
const runResult = stmt.run(cutoffEpoch);
result.deleted = runResult.changes;
console.log(
`[Cleanup] Deleted ${result.deleted} compression_run_telemetry older than ${retentionDays} days`
);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning compression_run_telemetry:", err);
result.errors++;
}
return result;
}
/**
* Clean up expired CCR blocks (#9061).
*
* Unlike the tables above, these rows carry their own expiry: the engine writes
* `expires_at` from the block's TTL, so this needs no retention-days setting of its own.
* It is the same sweep the engine does opportunistically, run on the operator's schedule
* so the table cannot sit on rows nobody will read again.
*/
export async function cleanupCcrBlocks(): Promise<CleanupResult> {
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const { pruneExpiredCcrBlocks } = await import("./ccrBlocks");
result.deleted = pruneExpiredCcrBlocks(Date.now());
console.log(`[Cleanup] Deleted ${result.deleted} expired ccr_blocks`);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning ccr_blocks:", err);
result.errors++;
}
return result;
}
/**
* Run all cleanup functions if auto-cleanup is enabled.
*/
export async function runAutoCleanup(): Promise<{
totalDeleted: number;
totalErrors: number;
results: Record<string, CleanupResult>;
}> {
const retention = getRetentionSettings();
const autoCleanupEnabled = retention.autoCleanupEnabled;
if (!autoCleanupEnabled) {
console.log("[Cleanup] Auto-cleanup is disabled");
return { totalDeleted: 0, totalErrors: 0, results: {} };
}
console.log("[Cleanup] Starting auto-cleanup...");
const results: Record<string, CleanupResult> = {
quotaSnapshots: await cleanupQuotaSnapshots(),
callLogs: await cleanupCallLogs(),
usageHistory: await cleanupUsageHistory(),
compressionAnalytics: await cleanupCompressionAnalytics(),
mcpAudit: await cleanupMcpAudit(),
a2aEvents: await cleanupA2aEvents(),
memoryEntries: await cleanupMemoryEntries(),
domainCostHistory: await cleanupDomainCostHistory(),
compressionCacheStats: await cleanupCompressionCacheStats(),
xpAuditLog: await cleanupXpAuditLog(),
compressionRunTelemetry: await cleanupCompressionRunTelemetry(),
proxyLogs: await cleanupProxyLogs(),
ccrBlocks: await cleanupCcrBlocks(),
};
const totalDeleted = Object.values(results).reduce((sum, r) => sum + r.deleted, 0);
const totalErrors = Object.values(results).reduce((sum, r) => sum + r.errors, 0);
console.log(`[Cleanup] Auto-cleanup complete: ${totalDeleted} deleted, ${totalErrors} errors`);
return { totalDeleted, totalErrors, results };
}
/**
* Purge ALL quota_snapshots immediately (no retention check).
*/
export async function purgeQuotaSnapshots(): Promise<CleanupResult> {
const db = getDbInstance();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM quota_snapshots");
const runResult = stmt.run();
result.deleted = runResult.changes;
console.log(`[Cleanup] Purged ${result.deleted} quota_snapshots`);
} catch (err: unknown) {
console.error("[Cleanup] Error purging quota_snapshots:", err);
result.errors++;
}
return result;
}
/**
* Purge ALL call_logs immediately (no retention check).
*/
export async function purgeCallLogs(): Promise<CleanupResult> {
const db = getDbInstance();
const result: CleanupResult = { deleted: 0, deletedArtifacts: 0, errors: 0 };
try {
const runResult = db.prepare("DELETE FROM call_logs").run();
result.deleted = runResult.changes;
console.log(`[Cleanup] Purged ${result.deleted} call_logs`);
} catch (err: unknown) {
console.error("[Cleanup] Error purging call_logs:", err);
result.errors++;
}
const artifactResult = purgeCallLogArtifactDirectory();
result.deletedArtifacts = artifactResult.deletedArtifacts;
result.errors += artifactResult.errors;
if (artifactResult.errors === 0) {
console.log(`[Cleanup] Purged ${result.deletedArtifacts} call log artifact(s)`);
}
return result;
}
/**
* Purge ALL request_detail_logs immediately (no retention check).
*/
export async function purgeDetailedLogs(): Promise<CleanupResult> {
const db = getDbInstance();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM request_detail_logs");
const runResult = stmt.run();
result.deleted = runResult.changes;
console.log(`[Cleanup] Purged ${result.deleted} request_detail_logs`);
} catch (err: unknown) {
console.error("[Cleanup] Error purging request_detail_logs:", err);
result.errors++;
}
return result;
}
/**
* Whitelist of periods accepted by {@link resetUsageHistory}. `"all"` wipes
* every row; any other value deletes rows strictly older than `now - period`.
*/
export const RESET_USAGE_HISTORY_PERIODS = [
"5m",
"1h",
"3h",
"6h",
"12h",
"1d",
"7d",
"30d",
"all",
] as const;
export type ResetUsageHistoryPeriod = (typeof RESET_USAGE_HISTORY_PERIODS)[number];
type TimedResetUsageHistoryPeriod = Exclude<ResetUsageHistoryPeriod, "all">;
const RESET_USAGE_HISTORY_PERIOD_MS: Record<TimedResetUsageHistoryPeriod, number> = {
"5m": 5 * 60 * 1000,
"1h": 60 * 60 * 1000,
"3h": 3 * 60 * 60 * 1000,
"6h": 6 * 60 * 60 * 1000,
"12h": 12 * 60 * 60 * 1000,
"1d": 24 * 60 * 60 * 1000,
"7d": 7 * 24 * 60 * 60 * 1000,
"30d": 30 * 24 * 60 * 60 * 1000,
};
export interface ResetUsageHistoryResult extends CleanupResult {
deletedUsageHistory: number;
deletedDailySummary: number;
deletedHourlySummary: number;
deletedCallLogs: number;
deletedCallLogArtifacts: number;
deletedRequestDetailLogs: number;
deletedProxyLogs: number;
deletedRelayLogs: number;
deletedCompressionAnalytics: number;
deletedCompressionRunTelemetry: number;
deletedRoutingDecisions: number;
deletedQuotaConsumption: number;
deletedTokenLedger: number;
}
function isResetUsageHistoryPeriod(period: string): period is ResetUsageHistoryPeriod {
return (RESET_USAGE_HISTORY_PERIODS as readonly string[]).includes(period);
}
/**
* On-demand, period-scoped reset of usage analytics data (`usage_history`,
* `daily_usage_summary`, `hourly_usage_summary`).
*
* Unlike {@link cleanupUsageHistory} (retention-based background cleanup,
* which rolls up rows into `daily_usage_summary` before deleting them), this
* is a destructive user-triggered reset — it intentionally does NOT roll up
* first, since the whole point is to wipe the data the user selected.
*
* @param period - One of {@link RESET_USAGE_HISTORY_PERIODS}. `"all"` wipes
* every row in all three tables; any other value deletes rows strictly
* older than `now - period`. Throws on an invalid period.
*/
const RESET_TARGETS: Array<DeleteByPeriodTarget & { resultKey: keyof ResetUsageHistoryResult }> = [
{ table: "usage_history", column: "timestamp", cutoff: "iso", resultKey: "deletedUsageHistory" },
{ table: "daily_usage_summary", column: "date", cutoff: "date", resultKey: "deletedDailySummary" },
{ table: "hourly_usage_summary", column: "date_hour", cutoff: "dateHour", resultKey: "deletedHourlySummary" },
{ table: "call_logs", column: "timestamp", cutoff: "iso", resultKey: "deletedCallLogs" },
{ table: "request_detail_logs", column: "timestamp", cutoff: "iso", resultKey: "deletedRequestDetailLogs" },
{ table: "proxy_logs", column: "timestamp", cutoff: "iso", resultKey: "deletedProxyLogs" },
{ table: "relay_logs", column: "created_at", cutoff: "epochSeconds", resultKey: "deletedRelayLogs" },
{ table: "compression_analytics", column: "timestamp", cutoff: "iso", resultKey: "deletedCompressionAnalytics" },
{ table: "compression_run_telemetry", column: "timestamp", cutoff: "epochMs", resultKey: "deletedCompressionRunTelemetry" },
{ table: "routing_decisions", column: "created_at", cutoff: "iso", resultKey: "deletedRoutingDecisions" },
{ table: "quota_consumption", column: "updated_at", cutoff: "epochMs", resultKey: "deletedQuotaConsumption" },
{ table: "token_ledger", column: "created_at", cutoff: "iso", resultKey: "deletedTokenLedger" },
];
export async function resetUsageHistory(period: string): Promise<ResetUsageHistoryResult> {
if (!isResetUsageHistoryPeriod(period)) {
throw new Error(`Invalid reset period: ${period}`);
}
const db = getDbInstance();
const result: ResetUsageHistoryResult = {
deleted: 0,
deletedUsageHistory: 0,
deletedDailySummary: 0,
deletedHourlySummary: 0,
deletedCallLogs: 0,
deletedCallLogArtifacts: 0,
deletedRequestDetailLogs: 0,
deletedProxyLogs: 0,
deletedRelayLogs: 0,
deletedCompressionAnalytics: 0,
deletedCompressionRunTelemetry: 0,
deletedRoutingDecisions: 0,
deletedQuotaConsumption: 0,
deletedTokenLedger: 0,
deletedArtifacts: 0,
errors: 0,
};
try {
let artifactsToDelete: string[] = [];
const runReset = db.transaction(() => {
if (period === "all") {
for (const target of RESET_TARGETS) {
(result[target.resultKey] as number) = deleteAllFromTable(target.table);
}
return;
}
const cutoffIso = new Date(Date.now() - RESET_USAGE_HISTORY_PERIOD_MS[period]).toISOString();
artifactsToDelete = collectCallLogArtifactsBefore(cutoffIso);
for (const target of RESET_TARGETS) {
(result[target.resultKey] as number) = deleteFromTableBefore(target, cutoffIso);
}
});
runReset();
let artifactResult: { deletedArtifacts: number; errors: number };
if (period === "all") {
artifactResult = purgeCallLogArtifactDirectory();
} else {
artifactResult = deleteCallLogArtifacts(artifactsToDelete);
}
result.deletedCallLogArtifacts = artifactResult.deletedArtifacts;
result.deletedArtifacts = artifactResult.deletedArtifacts;
result.errors += artifactResult.errors;
result.deleted = RESET_TARGETS.reduce((sum, t) => sum + (result[t.resultKey] as number), 0);
console.log(
`[Cleanup] Reset usage/log data (period=${period}): ${result.deleted} row(s), ` +
`${result.deletedCallLogArtifacts} call log artifact(s)`
);
} catch (err: unknown) {
console.error("[Cleanup] Error resetting usage history:", err);
result.errors++;
}
return result;
}
/**
* Clean up old proxy_logs based on retention settings.
* Uses the same retention period as call_logs (30 days default).
*/
export async function cleanupProxyLogs(): Promise<CleanupResult> {
const db = getDbInstance();
const retention = getRetentionSettings();
const retentionDays = retention.callLogs;
const cutoffDate = new Date();
cutoffDate.setDate(cutoffDate.getDate() - retentionDays);
const cutoffISO = cutoffDate.toISOString();
const result: CleanupResult = { deleted: 0, errors: 0 };
try {
const stmt = db.prepare("DELETE FROM proxy_logs WHERE timestamp < ?");
const runResult = stmt.run(cutoffISO);
result.deleted = runResult.changes;
console.log(`[Cleanup] Deleted ${result.deleted} proxy_logs older than ${retentionDays} days`);
} catch (err: unknown) {
console.error("[Cleanup] Error cleaning proxy_logs:", err);
result.errors++;
}
return result;
}
// ──────────────── Background Cleanup Scheduler ────────────────
const CLEANUP_INTERVAL_MS = 6 * 60 * 60 * 1000; // 6 hours
let _cleanupSchedulerTimer: ReturnType<typeof setInterval> | null = null;
/**
* Start the background cleanup scheduler. Runs cleanup on startup
* and then every 6 hours. Runs VACUUM after deletes to reclaim disk space.
*
* Without this, tables grow unboundedly (compression_analytics 600K+ rows,
* usage_history 250K+ rows) causing 1.4GB+ SQLite files and 3-8GB RSS
* from better-sqlite3 memory mapping.
*/
export function startCleanupScheduler(): void {
if (_cleanupSchedulerTimer) return;
// Run cleanup 30s after startup (let the server initialize first).
setTimeout(async () => {
try {
const result = await runAutoCleanup();
const proxyResult = await cleanupProxyLogs();
const totalDeleted = result.totalDeleted + proxyResult.deleted;
if (totalDeleted > 0) {
console.log(`[Cleanup] Startup cleanup freed ${totalDeleted} rows. Running VACUUM...`);
try {
const db = getDbInstance();
db.exec("VACUUM");
console.log("[Cleanup] VACUUM completed after startup cleanup.");
} catch (vacErr) {
console.error("[Cleanup] VACUUM after cleanup failed:", vacErr);
}
}
} catch (err) {
console.error("[Cleanup] Startup cleanup failed:", err);
}
}, 30_000);
// Schedule periodic cleanup every 6 hours.
_cleanupSchedulerTimer = setInterval(async () => {
try {
const result = await runAutoCleanup();
const proxyResult = await cleanupProxyLogs();
const totalDeleted = result.totalDeleted + proxyResult.deleted;
if (totalDeleted > 0) {
console.log(`[Cleanup] Periodic cleanup freed ${totalDeleted} rows. Running VACUUM...`);
try {
const db = getDbInstance();
db.exec("VACUUM");
console.log("[Cleanup] VACUUM completed after periodic cleanup.");
} catch (vacErr) {
console.error("[Cleanup] VACUUM after cleanup failed:", vacErr);
}
}
} catch (err) {
console.error("[Cleanup] Periodic cleanup failed:", err);
}
}, CLEANUP_INTERVAL_MS);
// Don't keep the process alive solely for cleanup.
if (_cleanupSchedulerTimer && typeof _cleanupSchedulerTimer.unref === "function") {
_cleanupSchedulerTimer.unref();
}
console.log("[Cleanup] Background cleanup scheduler started (every 6 hours).");
}
/**
* Stop the background cleanup scheduler (for tests).
*/
export function stopCleanupScheduler(): void {
if (_cleanupSchedulerTimer) {
clearInterval(_cleanupSchedulerTimer);
_cleanupSchedulerTimer = null;
}
}