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160 lines
5.7 KiB
160 lines
5.7 KiB
// Covers TCPWRAP and related TCPCONNECTWRAP
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'use strict';
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const common = require('../common');
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if (!common.hasIPv6)
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common.skip('IPv6 support required');
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const assert = require('assert');
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const tick = require('./tick');
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const initHooks = require('./init-hooks');
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const { checkInvocations } = require('./hook-checks');
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const net = require('net');
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let tcp1, tcp2, tcp3;
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let tcpconnect;
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const hooks = initHooks();
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hooks.enable();
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const server = net
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.createServer(common.mustCall(onconnection))
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.on('listening', common.mustCall(onlistening));
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// Calling server.listen creates a TCPWRAP synchronously
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{
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server.listen(common.PORT);
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const tcps = hooks.activitiesOfTypes('TCPWRAP');
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const tcpconnects = hooks.activitiesOfTypes('TCPCONNECTWRAP');
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assert.strictEqual(tcps.length, 1);
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assert.strictEqual(tcpconnects.length, 0);
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tcp1 = tcps[0];
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assert.strictEqual(tcp1.type, 'TCPWRAP');
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assert.strictEqual(typeof tcp1.uid, 'number');
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assert.strictEqual(typeof tcp1.triggerAsyncId, 'number');
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checkInvocations(tcp1, { init: 1 }, 'when calling server.listen');
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}
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// Calling net.connect creates another TCPWRAP synchronously
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{
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net.connect(
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{ port: server.address().port, host: '::1' },
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common.mustCall(onconnected));
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const tcps = hooks.activitiesOfTypes('TCPWRAP');
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assert.strictEqual(tcps.length, 2);
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process.nextTick(() => {
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const tcpconnects = hooks.activitiesOfTypes('TCPCONNECTWRAP');
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assert.strictEqual(tcpconnects.length, 1);
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});
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tcp2 = tcps[1];
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assert.strictEqual(tcps.length, 2);
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assert.strictEqual(tcp2.type, 'TCPWRAP');
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assert.strictEqual(typeof tcp2.uid, 'number');
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assert.strictEqual(typeof tcp2.triggerAsyncId, 'number');
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checkInvocations(tcp1, { init: 1 }, 'tcp1 when client is connecting');
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checkInvocations(tcp2, { init: 1 }, 'tcp2 when client is connecting');
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}
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function onlistening() {
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assert.strictEqual(hooks.activitiesOfTypes('TCPWRAP').length, 2);
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}
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// Depending on timing we see client: onconnected or server: onconnection first
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// Therefore we can't depend on any ordering, but when we see a connection for
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// the first time we assign the tcpconnectwrap.
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function ontcpConnection(serverConnection) {
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if (tcpconnect != null) {
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// When client receives connection first ('onconnected') and the server
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// second then we see an 'after' here, otherwise not
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const expected = serverConnection ?
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{ init: 1, before: 1, after: 1 } :
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{ init: 1, before: 1 };
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checkInvocations(
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tcpconnect, expected,
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'tcpconnect: when both client and server received connection');
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return;
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}
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// only focusing on TCPCONNECTWRAP here
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const tcpconnects = hooks.activitiesOfTypes('TCPCONNECTWRAP');
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assert.strictEqual(tcpconnects.length, 1);
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tcpconnect = tcpconnects[0];
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assert.strictEqual(tcpconnect.type, 'TCPCONNECTWRAP');
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assert.strictEqual(typeof tcpconnect.uid, 'number');
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assert.strictEqual(typeof tcpconnect.triggerAsyncId, 'number');
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// When client receives connection first ('onconnected'), we 'before' has
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// been invoked at this point already, otherwise it only was 'init'ed
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const expected = serverConnection ? { init: 1 } : { init: 1, before: 1 };
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checkInvocations(tcpconnect, expected,
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'tcpconnect: when tcp connection is established');
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}
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let serverConnected = false;
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function onconnected() {
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ontcpConnection(false);
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// In the case that the client connects before the server TCPWRAP 'before'
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// and 'after' weren't invoked yet. Also @see ontcpConnection.
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const expected = serverConnected ?
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{ init: 1, before: 1, after: 1 } :
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{ init: 1 };
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checkInvocations(tcp1, expected, 'tcp1 when client connects');
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checkInvocations(tcp2, { init: 1 }, 'tcp2 when client connects');
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}
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function onconnection(c) {
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serverConnected = true;
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ontcpConnection(true);
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const tcps = hooks.activitiesOfTypes([ 'TCPWRAP' ]);
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const tcpconnects = hooks.activitiesOfTypes('TCPCONNECTWRAP');
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assert.strictEqual(tcps.length, 3);
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assert.strictEqual(tcpconnects.length, 1);
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tcp3 = tcps[2];
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assert.strictEqual(tcp3.type, 'TCPWRAP');
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assert.strictEqual(typeof tcp3.uid, 'number');
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assert.strictEqual(typeof tcp3.triggerAsyncId, 'number');
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checkInvocations(tcp1, { init: 1, before: 1 },
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'tcp1 when server receives connection');
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checkInvocations(tcp2, { init: 1 }, 'tcp2 when server receives connection');
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checkInvocations(tcp3, { init: 1 }, 'tcp3 when server receives connection');
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c.end();
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this.close(common.mustCall(onserverClosed));
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}
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function onserverClosed() {
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checkInvocations(tcp1, { init: 1, before: 1, after: 1, destroy: 1 },
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'tcp1 when server is closed');
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checkInvocations(tcp2, { init: 1, before: 2, after: 2, destroy: 1 },
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'tcp2 when server is closed');
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checkInvocations(tcp3, { init: 1, before: 1, after: 1 },
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'tcp3 synchronously when server is closed');
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tick(2, () => {
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checkInvocations(tcp3, { init: 1, before: 2, after: 2, destroy: 1 },
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'tcp3 when server is closed');
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checkInvocations(tcpconnect, { init: 1, before: 1, after: 1, destroy: 1 },
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'tcpconnect when server is closed');
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});
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}
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process.on('exit', onexit);
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function onexit() {
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hooks.disable();
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hooks.sanityCheck([ 'TCPWRAP', 'TCPCONNECTWRAP' ]);
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checkInvocations(tcp1, { init: 1, before: 1, after: 1, destroy: 1 },
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'tcp1 when process exits');
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checkInvocations(
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tcp2, { init: 1, before: 2, after: 2, destroy: 1 },
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'tcp2 when process exits');
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checkInvocations(
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tcp3, { init: 1, before: 2, after: 2, destroy: 1 },
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'tcp3 when process exits');
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checkInvocations(
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tcpconnect, { init: 1, before: 1, after: 1, destroy: 1 },
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'tcpconnect when process exits');
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}
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