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728 lines
22 KiB
TypeScript
728 lines
22 KiB
TypeScript
import {
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ExecuteStatementCommand,
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type ExecuteStatementCommandOutput,
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type Field,
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RDSDataClient,
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type SqlParameter,
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} from '@aws-sdk/client-rds-data'
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import type { RdsConnectionConfig } from '@/tools/rds/types'
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export function createRdsClient(config: RdsConnectionConfig): RDSDataClient {
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return new RDSDataClient({
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region: config.region,
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credentials: {
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accessKeyId: config.accessKeyId,
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secretAccessKey: config.secretAccessKey,
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},
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})
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}
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export async function executeStatement(
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client: RDSDataClient,
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resourceArn: string,
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secretArn: string,
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database: string | undefined,
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sql: string,
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parameters?: SqlParameter[]
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): Promise<{ rows: Record<string, unknown>[]; rowCount: number }> {
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const command = new ExecuteStatementCommand({
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resourceArn,
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secretArn,
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...(database && { database }),
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sql,
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...(parameters && parameters.length > 0 && { parameters }),
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includeResultMetadata: true,
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})
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const response = await client.send(command)
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const rows = parseRdsResponse(response)
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return {
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rows,
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rowCount: response.numberOfRecordsUpdated ?? rows.length,
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}
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}
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function parseRdsResponse(response: ExecuteStatementCommandOutput): Record<string, unknown>[] {
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if (!response.records || !response.columnMetadata) {
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return []
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}
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const columnNames = response.columnMetadata.map((col) => col.name || col.label || 'unknown')
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return response.records.map((record) => {
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const row: Record<string, unknown> = {}
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record.forEach((field, index) => {
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const columnName = columnNames[index] || `column_${index}`
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row[columnName] = parseFieldValue(field)
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})
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return row
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})
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}
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function parseFieldValue(field: Field): unknown {
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if (field.isNull) return null
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if (field.stringValue !== undefined) return field.stringValue
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if (field.longValue !== undefined) return field.longValue
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if (field.doubleValue !== undefined) return field.doubleValue
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if (field.booleanValue !== undefined) return field.booleanValue
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if (field.blobValue !== undefined) return Buffer.from(field.blobValue).toString('base64')
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if (field.arrayValue !== undefined) {
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const arr = field.arrayValue
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if (arr.stringValues) return arr.stringValues
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if (arr.longValues) return arr.longValues
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if (arr.doubleValues) return arr.doubleValues
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if (arr.booleanValues) return arr.booleanValues
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if (arr.arrayValues) return arr.arrayValues.map((f) => parseFieldValue({ arrayValue: f }))
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return []
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}
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return null
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}
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export function validateQuery(query: string): { isValid: boolean; error?: string } {
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const trimmedQuery = query.trim().toLowerCase()
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const allowedStatements = /^(select|insert|update|delete|with|explain|show)\s+/i
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if (!allowedStatements.test(trimmedQuery)) {
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return {
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isValid: false,
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error: 'Only SELECT, INSERT, UPDATE, DELETE, WITH, EXPLAIN, and SHOW statements are allowed',
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}
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}
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return { isValid: true }
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}
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export function sanitizeIdentifier(identifier: string): string {
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if (identifier.includes('.')) {
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const parts = identifier.split('.')
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return parts.map((part) => sanitizeSingleIdentifier(part)).join('.')
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}
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return sanitizeSingleIdentifier(identifier)
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}
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function sanitizeSingleIdentifier(identifier: string): string {
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const cleaned = identifier.replace(/`/g, '').replace(/"/g, '')
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if (!/^[a-zA-Z_][a-zA-Z0-9_]*$/.test(cleaned)) {
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throw new Error(
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`Invalid identifier: ${identifier}. Identifiers must start with a letter or underscore and contain only letters, numbers, and underscores.`
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)
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}
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return cleaned
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}
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/**
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* Convert a JS value to an RDS Data API SqlParameter value
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*/
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function toSqlParameterValue(value: unknown): SqlParameter['value'] {
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if (value === null || value === undefined) {
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return { isNull: true }
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}
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if (typeof value === 'boolean') {
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return { booleanValue: value }
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}
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if (typeof value === 'number') {
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if (Number.isInteger(value)) {
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return { longValue: value }
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}
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return { doubleValue: value }
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}
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if (typeof value === 'string') {
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return { stringValue: value }
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}
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if (value instanceof Uint8Array || Buffer.isBuffer(value)) {
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return { blobValue: value }
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}
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// Objects/arrays as JSON strings
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return { stringValue: JSON.stringify(value) }
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}
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/**
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* Build parameterized INSERT query
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*/
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export async function executeInsert(
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client: RDSDataClient,
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resourceArn: string,
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secretArn: string,
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database: string | undefined,
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table: string,
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data: Record<string, unknown>
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): Promise<{ rows: Record<string, unknown>[]; rowCount: number }> {
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const sanitizedTable = sanitizeIdentifier(table)
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const columns = Object.keys(data)
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const sanitizedColumns = columns.map((col) => sanitizeIdentifier(col))
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const placeholders = columns.map((col) => `:${col}`)
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const parameters: SqlParameter[] = columns.map((col) => ({
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name: col,
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value: toSqlParameterValue(data[col]),
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}))
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const sql = `INSERT INTO ${sanitizedTable} (${sanitizedColumns.join(', ')}) VALUES (${placeholders.join(', ')})`
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return executeStatement(client, resourceArn, secretArn, database, sql, parameters)
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}
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/**
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* Build parameterized UPDATE query with conditions
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*/
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export async function executeUpdate(
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client: RDSDataClient,
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resourceArn: string,
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secretArn: string,
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database: string | undefined,
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table: string,
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data: Record<string, unknown>,
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conditions: Record<string, unknown>
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): Promise<{ rows: Record<string, unknown>[]; rowCount: number }> {
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const sanitizedTable = sanitizeIdentifier(table)
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// Build SET clause with parameters
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const dataColumns = Object.keys(data)
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const setClause = dataColumns.map((col) => `${sanitizeIdentifier(col)} = :set_${col}`).join(', ')
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// Build WHERE clause with parameters
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const conditionColumns = Object.keys(conditions)
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if (conditionColumns.length === 0) {
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throw new Error('At least one condition is required for UPDATE operations')
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}
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const whereClause = conditionColumns
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.map((col) => `${sanitizeIdentifier(col)} = :where_${col}`)
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.join(' AND ')
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// Build parameters array (prefixed to avoid name collisions)
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const parameters: SqlParameter[] = [
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...dataColumns.map((col) => ({
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name: `set_${col}`,
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value: toSqlParameterValue(data[col]),
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})),
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...conditionColumns.map((col) => ({
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name: `where_${col}`,
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value: toSqlParameterValue(conditions[col]),
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})),
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]
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const sql = `UPDATE ${sanitizedTable} SET ${setClause} WHERE ${whereClause}`
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return executeStatement(client, resourceArn, secretArn, database, sql, parameters)
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}
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/**
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* Build parameterized DELETE query with conditions
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*/
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export async function executeDelete(
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client: RDSDataClient,
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resourceArn: string,
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secretArn: string,
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database: string | undefined,
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table: string,
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conditions: Record<string, unknown>
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): Promise<{ rows: Record<string, unknown>[]; rowCount: number }> {
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const sanitizedTable = sanitizeIdentifier(table)
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// Build WHERE clause with parameters
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const conditionColumns = Object.keys(conditions)
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if (conditionColumns.length === 0) {
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throw new Error('At least one condition is required for DELETE operations')
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}
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const whereClause = conditionColumns
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.map((col) => `${sanitizeIdentifier(col)} = :${col}`)
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.join(' AND ')
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const parameters: SqlParameter[] = conditionColumns.map((col) => ({
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name: col,
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value: toSqlParameterValue(conditions[col]),
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}))
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const sql = `DELETE FROM ${sanitizedTable} WHERE ${whereClause}`
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return executeStatement(client, resourceArn, secretArn, database, sql, parameters)
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}
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export type RdsEngine = 'aurora-postgresql' | 'aurora-mysql'
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export interface RdsIntrospectionResult {
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engine: RdsEngine
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tables: Array<{
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name: string
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schema: string
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columns: Array<{
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name: string
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type: string
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nullable: boolean
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default: string | null
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isPrimaryKey: boolean
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isForeignKey: boolean
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references?: {
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table: string
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column: string
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}
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}>
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primaryKey: string[]
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foreignKeys: Array<{
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column: string
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referencesTable: string
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referencesColumn: string
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}>
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indexes: Array<{
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name: string
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columns: string[]
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unique: boolean
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}>
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}>
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schemas: string[]
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}
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/**
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* Detects the database engine by querying SELECT VERSION()
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*/
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async function detectEngine(
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client: RDSDataClient,
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resourceArn: string,
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secretArn: string,
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database: string | undefined
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): Promise<RdsEngine> {
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const result = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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'SELECT VERSION()'
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)
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if (result.rows.length > 0) {
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const versionRow = result.rows[0] as Record<string, unknown>
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const versionValue = Object.values(versionRow)[0]
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const versionString = String(versionValue).toLowerCase()
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if (versionString.includes('postgresql') || versionString.includes('postgres')) {
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return 'aurora-postgresql'
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}
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if (versionString.includes('mysql') || versionString.includes('mariadb')) {
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return 'aurora-mysql'
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}
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}
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throw new Error('Unable to detect database engine. Please specify the engine parameter.')
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}
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/**
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* Introspects PostgreSQL schema using INFORMATION_SCHEMA
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*/
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async function introspectPostgresql(
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client: RDSDataClient,
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resourceArn: string,
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secretArn: string,
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database: string | undefined,
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schemaName: string
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): Promise<RdsIntrospectionResult> {
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const schemasResult = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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`SELECT schema_name FROM information_schema.schemata
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WHERE schema_name NOT IN ('pg_catalog', 'information_schema', 'pg_toast')
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ORDER BY schema_name`
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)
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const schemas = schemasResult.rows.map((row) => (row as { schema_name: string }).schema_name)
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const tablesResult = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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`SELECT table_name, table_schema
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FROM information_schema.tables
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WHERE table_schema = :schemaName
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AND table_type = 'BASE TABLE'
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ORDER BY table_name`,
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[{ name: 'schemaName', value: { stringValue: schemaName } }]
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)
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const tables = []
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for (const tableRow of tablesResult.rows) {
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const row = tableRow as { table_name: string; table_schema: string }
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const tableName = row.table_name
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const tableSchema = row.table_schema
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const columnsResult = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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`SELECT
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c.column_name,
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c.data_type,
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c.is_nullable,
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c.column_default,
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c.udt_name
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FROM information_schema.columns c
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WHERE c.table_schema = :tableSchema
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AND c.table_name = :tableName
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ORDER BY c.ordinal_position`,
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[
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{ name: 'tableSchema', value: { stringValue: tableSchema } },
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{ name: 'tableName', value: { stringValue: tableName } },
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]
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)
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const pkResult = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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`SELECT kcu.column_name
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FROM information_schema.table_constraints tc
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JOIN information_schema.key_column_usage kcu
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ON tc.constraint_name = kcu.constraint_name
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AND tc.table_schema = kcu.table_schema
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WHERE tc.constraint_type = 'PRIMARY KEY'
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AND tc.table_schema = :tableSchema
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AND tc.table_name = :tableName`,
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[
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{ name: 'tableSchema', value: { stringValue: tableSchema } },
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{ name: 'tableName', value: { stringValue: tableName } },
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]
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)
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const primaryKeyColumns = pkResult.rows.map((r) => (r as { column_name: string }).column_name)
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const fkResult = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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`SELECT
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kcu.column_name,
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ccu.table_name AS foreign_table_name,
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ccu.column_name AS foreign_column_name
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FROM information_schema.table_constraints tc
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JOIN information_schema.key_column_usage kcu
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ON tc.constraint_name = kcu.constraint_name
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AND tc.table_schema = kcu.table_schema
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JOIN information_schema.constraint_column_usage ccu
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ON ccu.constraint_name = tc.constraint_name
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AND ccu.table_schema = tc.table_schema
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WHERE tc.constraint_type = 'FOREIGN KEY'
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AND tc.table_schema = :tableSchema
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AND tc.table_name = :tableName`,
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[
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{ name: 'tableSchema', value: { stringValue: tableSchema } },
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{ name: 'tableName', value: { stringValue: tableName } },
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]
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)
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const foreignKeys = fkResult.rows.map((r) => {
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const fkRow = r as {
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column_name: string
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foreign_table_name: string
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foreign_column_name: string
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}
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return {
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column: fkRow.column_name,
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referencesTable: fkRow.foreign_table_name,
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referencesColumn: fkRow.foreign_column_name,
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}
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})
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const fkColumnSet = new Set(foreignKeys.map((fk) => fk.column))
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const indexesResult = await executeStatement(
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client,
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resourceArn,
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secretArn,
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database,
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`SELECT
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i.relname AS index_name,
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a.attname AS column_name,
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ix.indisunique AS is_unique
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FROM pg_class t
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JOIN pg_index ix ON t.oid = ix.indrelid
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JOIN pg_class i ON i.oid = ix.indexrelid
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JOIN pg_attribute a ON a.attrelid = t.oid AND a.attnum = ANY(ix.indkey)
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JOIN pg_namespace n ON n.oid = t.relnamespace
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WHERE t.relkind = 'r'
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AND n.nspname = :tableSchema
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AND t.relname = :tableName
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AND NOT ix.indisprimary
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ORDER BY i.relname, a.attnum`,
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[
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{ name: 'tableSchema', value: { stringValue: tableSchema } },
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{ name: 'tableName', value: { stringValue: tableName } },
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]
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)
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const indexMap = new Map<string, { name: string; columns: string[]; unique: boolean }>()
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for (const idxRow of indexesResult.rows) {
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const idx = idxRow as { index_name: string; column_name: string; is_unique: boolean }
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const indexName = idx.index_name
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if (!indexMap.has(indexName)) {
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indexMap.set(indexName, {
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name: indexName,
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columns: [],
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unique: idx.is_unique,
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})
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}
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indexMap.get(indexName)!.columns.push(idx.column_name)
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}
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const indexes = Array.from(indexMap.values())
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|
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const columns = columnsResult.rows.map((colRow) => {
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const col = colRow as {
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column_name: string
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data_type: string
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is_nullable: string
|
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column_default: string | null
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udt_name: string
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}
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const columnName = col.column_name
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const fk = foreignKeys.find((f) => f.column === columnName)
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return {
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name: columnName,
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type: col.data_type === 'USER-DEFINED' ? col.udt_name : col.data_type,
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nullable: col.is_nullable === 'YES',
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default: col.column_default,
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isPrimaryKey: primaryKeyColumns.includes(columnName),
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isForeignKey: fkColumnSet.has(columnName),
|
|
...(fk && {
|
|
references: {
|
|
table: fk.referencesTable,
|
|
column: fk.referencesColumn,
|
|
},
|
|
}),
|
|
}
|
|
})
|
|
|
|
tables.push({
|
|
name: tableName,
|
|
schema: tableSchema,
|
|
columns,
|
|
primaryKey: primaryKeyColumns,
|
|
foreignKeys,
|
|
indexes,
|
|
})
|
|
}
|
|
|
|
return { engine: 'aurora-postgresql', tables, schemas }
|
|
}
|
|
|
|
/**
|
|
* Introspects MySQL schema using INFORMATION_SCHEMA
|
|
*/
|
|
async function introspectMysql(
|
|
client: RDSDataClient,
|
|
resourceArn: string,
|
|
secretArn: string,
|
|
database: string | undefined,
|
|
schemaName: string
|
|
): Promise<RdsIntrospectionResult> {
|
|
const schemasResult = await executeStatement(
|
|
client,
|
|
resourceArn,
|
|
secretArn,
|
|
database,
|
|
`SELECT SCHEMA_NAME as schema_name FROM information_schema.SCHEMATA
|
|
WHERE SCHEMA_NAME NOT IN ('mysql', 'information_schema', 'performance_schema', 'sys')
|
|
ORDER BY SCHEMA_NAME`
|
|
)
|
|
const schemas = schemasResult.rows.map((row) => (row as { schema_name: string }).schema_name)
|
|
|
|
const tablesResult = await executeStatement(
|
|
client,
|
|
resourceArn,
|
|
secretArn,
|
|
database,
|
|
`SELECT TABLE_NAME as table_name, TABLE_SCHEMA as table_schema
|
|
FROM information_schema.TABLES
|
|
WHERE TABLE_SCHEMA = :schemaName
|
|
AND TABLE_TYPE = 'BASE TABLE'
|
|
ORDER BY TABLE_NAME`,
|
|
[{ name: 'schemaName', value: { stringValue: schemaName } }]
|
|
)
|
|
|
|
const tables = []
|
|
|
|
for (const tableRow of tablesResult.rows) {
|
|
const row = tableRow as { table_name: string; table_schema: string }
|
|
const tableName = row.table_name
|
|
const tableSchema = row.table_schema
|
|
|
|
const columnsResult = await executeStatement(
|
|
client,
|
|
resourceArn,
|
|
secretArn,
|
|
database,
|
|
`SELECT
|
|
COLUMN_NAME as column_name,
|
|
DATA_TYPE as data_type,
|
|
IS_NULLABLE as is_nullable,
|
|
COLUMN_DEFAULT as column_default,
|
|
COLUMN_TYPE as column_type,
|
|
COLUMN_KEY as column_key
|
|
FROM information_schema.COLUMNS
|
|
WHERE TABLE_SCHEMA = :tableSchema
|
|
AND TABLE_NAME = :tableName
|
|
ORDER BY ORDINAL_POSITION`,
|
|
[
|
|
{ name: 'tableSchema', value: { stringValue: tableSchema } },
|
|
{ name: 'tableName', value: { stringValue: tableName } },
|
|
]
|
|
)
|
|
|
|
const pkResult = await executeStatement(
|
|
client,
|
|
resourceArn,
|
|
secretArn,
|
|
database,
|
|
`SELECT COLUMN_NAME as column_name
|
|
FROM information_schema.KEY_COLUMN_USAGE
|
|
WHERE TABLE_SCHEMA = :tableSchema
|
|
AND TABLE_NAME = :tableName
|
|
AND CONSTRAINT_NAME = 'PRIMARY'
|
|
ORDER BY ORDINAL_POSITION`,
|
|
[
|
|
{ name: 'tableSchema', value: { stringValue: tableSchema } },
|
|
{ name: 'tableName', value: { stringValue: tableName } },
|
|
]
|
|
)
|
|
const primaryKeyColumns = pkResult.rows.map((r) => (r as { column_name: string }).column_name)
|
|
|
|
const fkResult = await executeStatement(
|
|
client,
|
|
resourceArn,
|
|
secretArn,
|
|
database,
|
|
`SELECT
|
|
kcu.COLUMN_NAME as column_name,
|
|
kcu.REFERENCED_TABLE_NAME as foreign_table_name,
|
|
kcu.REFERENCED_COLUMN_NAME as foreign_column_name
|
|
FROM information_schema.KEY_COLUMN_USAGE kcu
|
|
WHERE kcu.TABLE_SCHEMA = :tableSchema
|
|
AND kcu.TABLE_NAME = :tableName
|
|
AND kcu.REFERENCED_TABLE_NAME IS NOT NULL`,
|
|
[
|
|
{ name: 'tableSchema', value: { stringValue: tableSchema } },
|
|
{ name: 'tableName', value: { stringValue: tableName } },
|
|
]
|
|
)
|
|
|
|
const foreignKeys = fkResult.rows.map((r) => {
|
|
const fkRow = r as {
|
|
column_name: string
|
|
foreign_table_name: string
|
|
foreign_column_name: string
|
|
}
|
|
return {
|
|
column: fkRow.column_name,
|
|
referencesTable: fkRow.foreign_table_name,
|
|
referencesColumn: fkRow.foreign_column_name,
|
|
}
|
|
})
|
|
|
|
const fkColumnSet = new Set(foreignKeys.map((fk) => fk.column))
|
|
|
|
const indexesResult = await executeStatement(
|
|
client,
|
|
resourceArn,
|
|
secretArn,
|
|
database,
|
|
`SELECT
|
|
INDEX_NAME as index_name,
|
|
COLUMN_NAME as column_name,
|
|
NON_UNIQUE as non_unique
|
|
FROM information_schema.STATISTICS
|
|
WHERE TABLE_SCHEMA = :tableSchema
|
|
AND TABLE_NAME = :tableName
|
|
AND INDEX_NAME != 'PRIMARY'
|
|
ORDER BY INDEX_NAME, SEQ_IN_INDEX`,
|
|
[
|
|
{ name: 'tableSchema', value: { stringValue: tableSchema } },
|
|
{ name: 'tableName', value: { stringValue: tableName } },
|
|
]
|
|
)
|
|
|
|
const indexMap = new Map<string, { name: string; columns: string[]; unique: boolean }>()
|
|
for (const idxRow of indexesResult.rows) {
|
|
const idx = idxRow as { index_name: string; column_name: string; non_unique: number }
|
|
const indexName = idx.index_name
|
|
if (!indexMap.has(indexName)) {
|
|
indexMap.set(indexName, {
|
|
name: indexName,
|
|
columns: [],
|
|
unique: idx.non_unique === 0,
|
|
})
|
|
}
|
|
indexMap.get(indexName)!.columns.push(idx.column_name)
|
|
}
|
|
const indexes = Array.from(indexMap.values())
|
|
|
|
const columns = columnsResult.rows.map((colRow) => {
|
|
const col = colRow as {
|
|
column_name: string
|
|
data_type: string
|
|
is_nullable: string
|
|
column_default: string | null
|
|
column_type: string
|
|
column_key: string
|
|
}
|
|
const columnName = col.column_name
|
|
const fk = foreignKeys.find((f) => f.column === columnName)
|
|
|
|
return {
|
|
name: columnName,
|
|
type: col.column_type || col.data_type,
|
|
nullable: col.is_nullable === 'YES',
|
|
default: col.column_default,
|
|
isPrimaryKey: col.column_key === 'PRI',
|
|
isForeignKey: fkColumnSet.has(columnName),
|
|
...(fk && {
|
|
references: {
|
|
table: fk.referencesTable,
|
|
column: fk.referencesColumn,
|
|
},
|
|
}),
|
|
}
|
|
})
|
|
|
|
tables.push({
|
|
name: tableName,
|
|
schema: tableSchema,
|
|
columns,
|
|
primaryKey: primaryKeyColumns,
|
|
foreignKeys,
|
|
indexes,
|
|
})
|
|
}
|
|
|
|
return { engine: 'aurora-mysql', tables, schemas }
|
|
}
|
|
|
|
/**
|
|
* Introspects RDS Aurora database schema with auto-detection of engine type
|
|
*/
|
|
export async function executeIntrospect(
|
|
client: RDSDataClient,
|
|
resourceArn: string,
|
|
secretArn: string,
|
|
database: string | undefined,
|
|
schemaName?: string,
|
|
engine?: RdsEngine
|
|
): Promise<RdsIntrospectionResult> {
|
|
const detectedEngine = engine || (await detectEngine(client, resourceArn, secretArn, database))
|
|
|
|
if (detectedEngine === 'aurora-postgresql') {
|
|
const schema = schemaName || 'public'
|
|
return introspectPostgresql(client, resourceArn, secretArn, database, schema)
|
|
}
|
|
const schema = schemaName || database || ''
|
|
if (!schema) {
|
|
throw new Error('Schema or database name is required for MySQL introspection')
|
|
}
|
|
return introspectMysql(client, resourceArn, secretArn, database, schema)
|
|
}
|