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async_hooks: don't reuse resource in HttpAgent
As discussed in nodejs/diagnostics#248, #21313 and https://docs.google.com/document/d/1g8OrG5lMIUhRn1zbkutgY83MiTSMx-0NHDs8Bf-nXxM/preview reusing the resource object is a blocker for landing a resource based async hooks API and get rid of the promise destroy hook. This PR ensures that HttpAgent uses the a new resource object in case the socket handle gets reused. PR-URL: #27581 Reviewed-By: Matteo Collina <matteo.collina@gmail.com> Reviewed-By: Rich Trott <rtrott@gmail.com>
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Original file line number | Diff line number | Diff line change |
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'use strict'; | ||
// Flags: --expose-internals | ||
const common = require('../common'); | ||
const initHooks = require('./init-hooks'); | ||
const { checkInvocations } = require('./hook-checks'); | ||
const assert = require('assert'); | ||
const { async_id_symbol } = require('internal/async_hooks').symbols; | ||
const http = require('http'); | ||
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// Checks that the async resource used in init in case of a resused handle | ||
// is not reused. Test is based on parallel\test-async-hooks-http-agent.js. | ||
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const hooks = initHooks(); | ||
hooks.enable(); | ||
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let asyncIdAtFirstReq; | ||
let asyncIdAtSecondReq; | ||
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// Make sure a single socket is transparently reused for 2 requests. | ||
const agent = new http.Agent({ | ||
keepAlive: true, | ||
keepAliveMsecs: Infinity, | ||
maxSockets: 1 | ||
}); | ||
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const server = http.createServer(common.mustCall((req, res) => { | ||
req.once('data', common.mustCallAtLeast(() => { | ||
res.writeHead(200, { 'Content-Type': 'text/plain' }); | ||
res.write('foo'); | ||
})); | ||
req.on('end', common.mustCall(() => { | ||
res.end('bar'); | ||
})); | ||
}, 2)).listen(0, common.mustCall(() => { | ||
const port = server.address().port; | ||
const payload = 'hello world'; | ||
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// First request. This is useless except for adding a socket to the | ||
// agent’s pool for reuse. | ||
const r1 = http.request({ | ||
agent, port, method: 'POST' | ||
}, common.mustCall((res) => { | ||
// Remember which socket we used. | ||
const socket = res.socket; | ||
asyncIdAtFirstReq = socket[async_id_symbol]; | ||
assert.ok(asyncIdAtFirstReq > 0, `${asyncIdAtFirstReq} > 0`); | ||
// Check that request and response share their socket. | ||
assert.strictEqual(r1.socket, socket); | ||
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res.on('data', common.mustCallAtLeast(() => {})); | ||
res.on('end', common.mustCall(() => { | ||
// setImmediate() to give the agent time to register the freed socket. | ||
setImmediate(common.mustCall(() => { | ||
// The socket is free for reuse now. | ||
assert.strictEqual(socket[async_id_symbol], -1); | ||
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// Second request. To re-create the exact conditions from the | ||
// referenced issue, we use a POST request without chunked encoding | ||
// (hence the Content-Length header) and call .end() after the | ||
// response header has already been received. | ||
const r2 = http.request({ | ||
agent, port, method: 'POST', headers: { | ||
'Content-Length': payload.length | ||
} | ||
}, common.mustCall((res) => { | ||
asyncIdAtSecondReq = res.socket[async_id_symbol]; | ||
assert.ok(asyncIdAtSecondReq > 0, `${asyncIdAtSecondReq} > 0`); | ||
assert.strictEqual(r2.socket, socket); | ||
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// Empty payload, to hit the “right” code path. | ||
r2.end(''); | ||
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res.on('data', common.mustCallAtLeast(() => {})); | ||
res.on('end', common.mustCall(() => { | ||
// Clean up to let the event loop stop. | ||
server.close(); | ||
agent.destroy(); | ||
})); | ||
})); | ||
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// Schedule a payload to be written immediately, but do not end the | ||
// request just yet. | ||
r2.write(payload); | ||
})); | ||
})); | ||
})); | ||
r1.end(payload); | ||
})); | ||
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process.on('exit', onExit); | ||
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function onExit() { | ||
hooks.disable(); | ||
hooks.sanityCheck(); | ||
const activities = hooks.activities; | ||
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// Verify both invocations | ||
const first = activities.filter((x) => x.uid === asyncIdAtFirstReq)[0]; | ||
checkInvocations(first, { init: 1, destroy: 1 }, 'when process exits'); | ||
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const second = activities.filter((x) => x.uid === asyncIdAtSecondReq)[0]; | ||
checkInvocations(second, { init: 1, destroy: 1 }, 'when process exits'); | ||
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// Verify reuse handle has been wrapped | ||
assert.strictEqual(first.type, second.type); | ||
assert.ok(first.handle !== second.handle, 'Resource reused'); | ||
assert.ok(first.handle === second.handle.handle, | ||
'Resource not wrapped correctly'); | ||
} |