180 lines
6.4 KiB
Python
180 lines
6.4 KiB
Python
import asyncio
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import base64
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import json
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import os
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import threading
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import time
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import warnings
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from dataclasses import dataclass
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from typing import Optional
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from dotenv import load_dotenv
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import httpx
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# Oculta solo el aviso conocido del urllib3 generado por dependencias del OCI SDK.
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warnings.filterwarnings(
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"ignore",
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message=r"The 'strict' parameter is no longer needed on Python 3\+.*",
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category=FutureWarning,
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module=r"urllib3\.poolmanager",
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)
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import oci
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from mcp import ClientSession
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from mcp.client.streamable_http import streamable_http_client
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# Load variables from the .env file.
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load_dotenv()
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# === Environment-based configuration ===
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REGION = os.environ["ADB_REGION"] # e.g.: "sa-saopaulo-1"
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DB_OCID = os.environ["ADB_OCID"] # ADB OCID
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DB_USER = os.environ["ADB_USER"] # e.g.: "MCP_USER"
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SECRET_OCID = os.environ["ADB_SECRET_OCID"] # Vault secret OCID
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BASE_URL = f"https://dataaccess.adb.{REGION}.oraclecloudapps.com"
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TOKEN_URL = f"{BASE_URL}/adb/auth/v1/databases/{DB_OCID}/token"
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MCP_URL = f"{BASE_URL}/adb/mcp/v1/databases/{DB_OCID}"
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# ---------------------------------------------------------------------------
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# OCI Vault: password retrieval
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# ---------------------------------------------------------------------------
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def _build_secrets_client() -> oci.secrets.SecretsClient:
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"""
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Tries Instance Principal first (production on an OCI VM);
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falls back to API Key (~/.oci/config) when not running on an OCI instance.
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-- uncomment here for using instance principal instead of oci/config file
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try:
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signer = oci.auth.signers.InstancePrincipalsSecurityTokenSigner()
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return oci.secrets.SecretsClient(config={}, signer=signer)
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except Exception:
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"""
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config = oci.config.from_file() # reads ~/.oci/config, DEFAULT profile
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config["region"] = os.environ["ADB_REGION"]
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return oci.secrets.SecretsClient(config)
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def get_db_password() -> str:
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"""Reads the MCP_USER password from OCI Vault."""
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client = _build_secrets_client()
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bundle = client.get_secret_bundle(secret_id=SECRET_OCID).data # type: ignore
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encoded = bundle.secret_bundle_content.content # base64
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return base64.b64decode(encoded).decode("utf-8")
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# ---------------------------------------------------------------------------
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# Bearer token cache with automatic refresh
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# ---------------------------------------------------------------------------
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@dataclass
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class _CachedToken:
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value: str
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expires_at: float # epoch seconds
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class TokenManager:
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"""
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Caches the bearer token in memory and refreshes it before expiration.
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Thread-safe: multiple threads requesting a token at the same time trigger
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only one refresh.
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"""
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# Refresh when the token has less than this remaining lifetime.
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REFRESH_MARGIN_SECONDS = 5 * 60 # 5 minutes
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DEFAULT_TTL_SECONDS = 60 * 60 # fallback when the API does not return expires_in
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def __init__(self, db_user: str):
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self._db_user = db_user
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self._cached: Optional[_CachedToken] = None
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self._lock = threading.Lock()
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def get_token(self) -> str:
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# Fast path: token is still valid, no heavy lock needed.
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cached = self._cached
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if cached and cached.expires_at - time.time() > self.REFRESH_MARGIN_SECONDS:
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return cached.value
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# Slow path: refresh required.
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with self._lock:
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# Re-check inside the lock because another thread may have refreshed.
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cached = self._cached
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if cached and cached.expires_at - time.time() > self.REFRESH_MARGIN_SECONDS:
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return cached.value
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self._cached = self._fetch_new_token()
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return self._cached.value
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def _fetch_new_token(self) -> _CachedToken:
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password = get_db_password() # reads from Vault only when refreshing
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payload = {
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"grant_type": "password",
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"username": self._db_user,
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"password": password,
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}
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headers = {"Content-Type": "application/json", "Accept": "application/json"}
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resp = httpx.post(TOKEN_URL, json=payload, headers=headers, timeout=30.0)
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resp.raise_for_status()
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data = resp.json()
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token = data["access_token"]
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ttl = int(data.get("expires_in", self.DEFAULT_TTL_SECONDS))
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expires_at = time.time() + ttl
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print(f"[token] new token obtained, valid for ~{ttl}s")
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return _CachedToken(value=token, expires_at=expires_at)
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# ---------------------------------------------------------------------------
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# Test case MCP
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# ---------------------------------------------------------------------------
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async def run_test(token_manager: TokenManager):
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t0 = time.perf_counter()
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auth_headers = {"Authorization": f"Bearer {token_manager.get_token()}"}
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t1 = time.perf_counter()
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print(f"[timing] token obtained: {t1 - t0:.2f}s")
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async with httpx.AsyncClient(
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headers=auth_headers,
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timeout=httpx.Timeout(300.0, connect=30.0),
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) as http_client:
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async with streamable_http_client(MCP_URL, http_client=http_client) as (read, write, _):
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t2 = time.perf_counter()
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print(f"[timing] transport opened: {t2 - t1:.2f}s")
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async with ClientSession(read, write) as session:
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await session.initialize()
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t3 = time.perf_counter()
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print(f"[timing] session.initialize(): {t3 - t2:.2f}s")
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tools_result = await session.list_tools()
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t4 = time.perf_counter()
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print(f"[timing] list_tools(): {t4 - t3:.2f}s")
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query = "SELECT username FROM all_users WHERE oracle_maintained = 'N'"
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result = await session.call_tool(
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"RUNSQL",
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arguments={"SQL_TEXT": query, "OFFSET_ROWS": 0, "FETCH_ROWS": 10},
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)
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t5 = time.perf_counter()
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print(f"[timing] call_tool(): {t5 - t4:.2f}s")
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print(f"[timing] TOTAL: {t5 - t0:.2f}s")
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for block in result.content:
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if block.type == "text":
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rows = json.loads(block.text)
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print(f"\n[result: {len(rows)} row(s)]")
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for row in rows:
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print(f" {row}")
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if __name__ == "__main__":
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token_manager = TokenManager(db_user=DB_USER)
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asyncio.run(run_test(token_manager))
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