Files
OmniRoute/tests/unit/exclusive-connection-leases.test.ts
Markus Hartung 04dba0460e fix(responses-continuation): recover a real id/output for passthrough and translate-mode replies (#11434)
Retargetado para release/v3.8.51 (release/v3.8.50 está congelada — freeze issue #11439). Validado em lote combinado (batch-0824h2, junto de #11435/#11436/#11437) contra o tip de release/v3.8.51: typecheck:core limpo, gates estáticos OK, 127/127 testes focados passando.

Investigação sólida com repro real via container isolado, três causas independentes identificadas e corrigidas com testes de regressão dedicados para cada uma. Obrigado pela contribuição!
2026-08-24 19:57:12 -03:00

469 lines
15 KiB
TypeScript

import assert from "node:assert/strict";
import { spawn } from "node:child_process";
import fs from "node:fs";
import os from "node:os";
import path from "node:path";
import test from "node:test";
const TEST_DATA_DIR = fs.mkdtempSync(path.join(os.tmpdir(), "omniroute-hard-lease-v2-"));
process.env.DATA_DIR = TEST_DATA_DIR;
const core = await import("../../src/lib/db/core.ts");
const leases = await import("../../src/lib/db/exclusiveConnectionLeases.ts");
const OWNER_A = "vlo_AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA";
const OWNER_B = "vlo_BBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB";
function at(seconds: number): string {
return new Date(Date.UTC(2026, 7, 12, 19, 30, seconds)).toISOString();
}
test.after(() => {
core.resetDbInstance();
fs.rmSync(TEST_DATA_DIR, { recursive: true, force: true });
});
test("hashes canonical owners and never persists the raw owner", () => {
assert.match(leases.hashLeaseOwnerId(OWNER_A), /^[a-f0-9]{64}$/);
assert.throws(() => leases.hashLeaseOwnerId("routing-session"), /canonical/);
const acquired = leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_A,
apiKeyId: "key-a",
provider: "codex",
connectionId: "conn-a",
now: at(0),
ttlMs: 120_000,
});
assert.equal(acquired.kind, "ACQUIRED");
const db = core.getDbInstance();
const row = db.prepare("SELECT lease_owner_hash FROM exclusive_connection_leases").get() as {
lease_owner_hash: string;
};
assert.match(row.lease_owner_hash, /^[a-f0-9]{64}$/);
assert.notEqual(row.lease_owner_hash, OWNER_A);
const rawDb = fs.readFileSync(path.join(TEST_DATA_DIR, "storage.sqlite"));
assert.equal(rawDb.includes(Buffer.from(OWNER_A)), false);
});
test("uses the live next-free migration slot without runner compatibility special cases", () => {
const migration = fs.readFileSync(
new URL("../../src/lib/db/migrations/157_exclusive_connection_leases.sql", import.meta.url),
"utf8"
);
const runner = fs.readFileSync(
new URL("../../src/lib/db/migrationRunner.ts", import.meta.url),
"utf8"
);
assert.match(migration, /CREATE TABLE IF NOT EXISTS exclusive_connection_leases/);
assert.doesNotMatch(runner, /case "157"/);
});
test("enforces global active owner and connection uniqueness", () => {
// Establish the OWNER_A/conn-a lease this test reuses, rather than depending
// on a lease left behind by an earlier test in the file. The DB instance is
// shared across tests (reset only in test.after), so relying on prior state
// makes this test order-dependent: run in isolation the re-acquire below
// returns ACQUIRED instead of REUSED.
leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_A,
apiKeyId: "key-a",
provider: "codex",
connectionId: "conn-a",
now: at(0),
});
const ownerA = leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_A,
apiKeyId: "key-a",
provider: "codex",
connectionId: "conn-a",
now: at(1),
});
assert.equal(ownerA.kind, "REUSED");
const sameOwnerOtherKey = leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_A,
apiKeyId: "key-b",
provider: "openai",
connectionId: "conn-b",
now: at(2),
});
assert.equal(sameOwnerOtherKey.kind, "OWNER_ALREADY_ACTIVE");
const foreign = leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
apiKeyId: "key-b",
provider: "codex",
connectionId: "conn-a",
now: at(3),
});
assert.equal(foreign.kind, "CONNECTION_BUSY");
});
test("renews and releases only an exact generation and release is idempotent", () => {
const acquired = leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
apiKeyId: "key-b",
provider: "codex",
connectionId: "conn-b",
now: at(4),
});
assert.equal(acquired.kind, "ACQUIRED");
if (acquired.kind !== "ACQUIRED") return;
assert.equal(
leases.renewExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
generation: acquired.lease.generation + 1,
apiKeyId: "key-b",
now: at(5),
}).kind,
"STALE"
);
assert.equal(
leases.renewExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
generation: acquired.lease.generation,
apiKeyId: "key-b",
now: at(6),
}).kind,
"RENEWED"
);
assert.equal(
leases.releaseExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
generation: acquired.lease.generation - 1,
apiKeyId: "key-b",
now: at(7),
}).kind,
"STALE"
);
assert.equal(
leases.releaseExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
generation: acquired.lease.generation,
apiKeyId: "key-b",
now: at(8),
}).kind,
"RELEASED"
);
assert.equal(
leases.releaseExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
generation: acquired.lease.generation,
apiKeyId: "key-b",
now: at(9),
}).kind,
"RELEASED"
);
});
test("keeps generation on failover and fences stale requests", () => {
const first = leases.acquireExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
apiKeyId: "key-b",
provider: "codex",
connectionId: "conn-b",
now: at(10),
});
assert.equal(first.kind, "ACQUIRED");
if (first.kind !== "ACQUIRED") return;
const transitioned = leases.transitionExclusiveConnectionLease({
leaseOwnerId: OWNER_B,
generation: first.lease.generation,
apiKeyId: "key-b",
provider: "codex",
connectionId: "conn-c",
now: at(11),
reason: "CONNECTION_INELIGIBLE",
});
assert.equal(transitioned.kind, "TRANSITIONED");
if (transitioned.kind !== "TRANSITIONED") return;
assert.equal(transitioned.lease.generation, first.lease.generation);
assert.equal(
leases.assertExclusiveConnectionLeaseFence({
leaseOwnerId: OWNER_B,
generation: first.lease.generation,
apiKeyId: "key-b",
connectionId: "conn-b",
now: at(12),
}).kind,
"CONNECTION_MISMATCH"
);
assert.equal(
leases.assertExclusiveConnectionLeaseFence({
leaseOwnerId: OWNER_B,
generation: first.lease.generation,
apiKeyId: "key-b",
connectionId: "conn-c",
now: at(12),
}).kind,
"VALID"
);
assert.equal(
leases.assertExclusiveConnectionLeaseFence({
leaseOwnerId: OWNER_B,
generation: first.lease.generation,
apiKeyId: "key-foreign",
connectionId: "conn-c",
now: at(12),
}).kind,
"AUTHORIZATION_MISMATCH"
);
});
test("invalidates an unsafe binding only for the exact generation", () => {
const owner = "vlo_DDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD";
const acquired = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-d",
provider: "codex",
connectionId: "conn-invalid",
now: at(13),
});
assert.equal(acquired.kind, "ACQUIRED");
if (acquired.kind !== "ACQUIRED") return;
assert.equal(
leases.invalidateExclusiveConnectionLease({
leaseOwnerId: owner,
generation: acquired.lease.generation + 1,
apiKeyId: "key-d",
reason: "QUOTA_UNAVAILABLE",
now: at(14),
}).kind,
"STALE"
);
const invalidated = leases.invalidateExclusiveConnectionLease({
leaseOwnerId: owner,
generation: acquired.lease.generation,
apiKeyId: "key-d",
reason: "QUOTA_UNAVAILABLE",
now: at(15),
});
assert.equal(invalidated.kind, "INVALIDATED");
assert.equal(leases.getActiveExclusiveConnectionLease(owner, at(16)), null);
});
test("expires lazily, reconciles at restart, and increments generation", () => {
const owner = "vlo_CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCC";
const first = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-c",
provider: "codex",
connectionId: "conn-expire",
now: at(13),
ttlMs: 1_000,
});
assert.equal(first.kind, "ACQUIRED");
if (first.kind !== "ACQUIRED") return;
assert.equal(leases.reconcileExpiredExclusiveConnectionLeases(at(15)), 1);
const second = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-c",
provider: "codex",
connectionId: "conn-expire",
now: at(16),
});
assert.equal(second.kind, "ACQUIRED");
if (second.kind !== "ACQUIRED") return;
assert.equal(second.lease.generation, first.lease.generation + 1);
});
test("zero-request heartbeat holds through idle and restart until bounded TTL recovery", () => {
const owner = "vlo_GGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGG";
const contender = "vlo_HHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHHH";
const acquired = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-g",
provider: "codex",
connectionId: "conn-idle-heartbeat",
now: "2026-08-12T19:32:00.000Z",
ttlMs: 1_000,
});
assert.equal(acquired.kind, "ACQUIRED");
if (acquired.kind !== "ACQUIRED") return;
const renewed = leases.renewExclusiveConnectionLease({
leaseOwnerId: owner,
generation: acquired.lease.generation,
apiKeyId: "key-g",
now: "2026-08-12T19:32:00.500Z",
ttlMs: 1_000,
});
assert.equal(renewed.kind, "RENEWED");
assert.equal(
leases.acquireExclusiveConnectionLease({
leaseOwnerId: contender,
apiKeyId: "key-h",
provider: "codex",
connectionId: "conn-idle-heartbeat",
now: "2026-08-12T19:32:01.000Z",
}).kind,
"CONNECTION_BUSY"
);
core.resetDbInstance();
assert.equal(
leases.getActiveExclusiveConnectionLease(owner, "2026-08-12T19:32:01.250Z")?.generation,
acquired.lease.generation
);
assert.equal(leases.reconcileExpiredExclusiveConnectionLeases("2026-08-12T19:32:01.500Z"), 1);
assert.equal(
leases.acquireExclusiveConnectionLease({
leaseOwnerId: contender,
apiKeyId: "key-h",
provider: "codex",
connectionId: "conn-idle-heartbeat",
now: "2026-08-12T19:32:01.501Z",
}).kind,
"ACQUIRED"
);
});
test("generation remains monotonic after release and invalidation", () => {
const owner = "vlo_IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII";
const first = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-i",
provider: "codex",
connectionId: "conn-generation-a",
now: "2026-08-12T19:33:00.000Z",
});
assert.equal(first.kind, "ACQUIRED");
if (first.kind !== "ACQUIRED") return;
assert.equal(
leases.releaseExclusiveConnectionLease({
leaseOwnerId: owner,
generation: first.lease.generation,
apiKeyId: "key-i",
now: "2026-08-12T19:33:01.000Z",
}).kind,
"RELEASED"
);
const second = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-i",
provider: "codex",
connectionId: "conn-generation-b",
now: "2026-08-12T19:33:02.000Z",
});
assert.equal(second.kind, "ACQUIRED");
if (second.kind !== "ACQUIRED") return;
assert.equal(second.lease.generation, first.lease.generation + 1);
assert.equal(
leases.invalidateExclusiveConnectionLease({
leaseOwnerId: owner,
generation: second.lease.generation,
apiKeyId: "key-i",
reason: "CONNECTION_INELIGIBLE",
now: "2026-08-12T19:33:03.000Z",
}).kind,
"INVALIDATED"
);
const third = leases.acquireExclusiveConnectionLease({
leaseOwnerId: owner,
apiKeyId: "key-i",
provider: "codex",
connectionId: "conn-generation-c",
now: "2026-08-12T19:33:04.000Z",
});
assert.equal(third.kind, "ACQUIRED");
if (third.kind !== "ACQUIRED") return;
assert.equal(third.lease.generation, second.lease.generation + 1);
});
test("migration exposes exactly global ACTIVE uniqueness indexes", () => {
const db = core.getDbInstance();
const ownerIndex = db
.prepare("SELECT sql FROM sqlite_master WHERE name = 'idx_exclusive_lease_active_owner'")
.get() as { sql: string };
const connectionIndex = db
.prepare("SELECT sql FROM sqlite_master WHERE name = 'idx_exclusive_lease_active_connection'")
.get() as { sql: string };
assert.match(ownerIndex.sql, /UNIQUE INDEX[\s\S]*\(lease_owner_hash\)[\s\S]*state = 'ACTIVE'/i);
assert.doesNotMatch(ownerIndex.sql, /api_key_id|provider/i);
assert.match(connectionIndex.sql, /UNIQUE INDEX[\s\S]*\(connection_id\)[\s\S]*state = 'ACTIVE'/i);
assert.doesNotMatch(connectionIndex.sql, /api_key_id|provider/i);
});
test("cross-process contenders never both acquire the same connection", async () => {
const raceDir = fs.mkdtempSync(path.join(os.tmpdir(), "omniroute-hard-lease-race-"));
const barrier = path.join(raceDir, "go");
const coreUrl = new URL("../../src/lib/db/core.ts", import.meta.url).href;
const moduleUrl = new URL("../../src/lib/db/exclusiveConnectionLeases.ts", import.meta.url).href;
const worker = [
`import fs from "node:fs";`,
`process.env.DATA_DIR = process.env.LEASE_RACE_DIR;`,
`const leases = await import(${JSON.stringify(moduleUrl)});`,
`while (!fs.existsSync(process.env.LEASE_RACE_BARRIER)) { await new Promise((r) => setTimeout(r, 2)); }`,
`const result = leases.acquireExclusiveConnectionLease({`,
` leaseOwnerId: process.env.LEASE_RACE_OWNER,`,
` apiKeyId: process.env.LEASE_RACE_KEY,`,
` provider: "codex",`,
` connectionId: "conn-process-race",`,
` now: "2026-08-12T19:31:00.000Z",`,
`});`,
`process.stdout.write(JSON.stringify({ kind: result.kind, generation: result.lease?.generation }));`,
].join("\n");
function runChild(script: string, env: Record<string, string>): Promise<string> {
return new Promise((resolve, reject) => {
const child = spawn(
process.execPath,
["--import", "tsx/esm", "--input-type=module", "-e", script],
{
cwd: process.cwd(),
env: { ...process.env, ...env },
stdio: ["ignore", "pipe", "pipe"],
}
);
let stdout = "";
let stderr = "";
child.stdout.setEncoding("utf8").on("data", (chunk) => (stdout += chunk));
child.stderr.setEncoding("utf8").on("data", (chunk) => (stderr += chunk));
child.once("error", reject);
child.once("exit", (code) => {
if (code !== 0) return reject(new Error(`race worker failed (${code}): ${stderr}`));
resolve(stdout);
});
});
}
function contender(owner: string, key: string): Promise<{ kind: string; generation?: number }> {
return runChild(worker, {
LEASE_RACE_DIR: raceDir,
LEASE_RACE_BARRIER: barrier,
LEASE_RACE_OWNER: owner,
LEASE_RACE_KEY: key,
}).then((stdout) => {
const start = stdout.lastIndexOf("{");
return JSON.parse(stdout.slice(start)) as { kind: string; generation?: number };
});
}
try {
await runChild(
`process.env.DATA_DIR = process.env.LEASE_RACE_DIR; const core = await import(${JSON.stringify(coreUrl)}); core.getDbInstance();`,
{ LEASE_RACE_DIR: raceDir }
);
const contenders = [
contender("vlo_EEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEEE", "key-e"),
contender("vlo_FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", "key-f"),
];
fs.writeFileSync(barrier, "go", { flag: "wx" });
const results = await Promise.all(contenders);
assert.equal(results.filter((result) => result.kind === "ACQUIRED").length, 1);
assert.equal(results.filter((result) => result.kind === "CONNECTION_BUSY").length, 1);
} finally {
fs.rmSync(raceDir, { recursive: true, force: true });
}
});