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http,https: align server option of https with http
Fixes: #38954 PR-URL: #38992 Refs: #30570 Reviewed-By: Anna Henningsen <anna@addaleax.net> Reviewed-By: Michaël Zasso <targos@protonmail.com>
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Original file line number | Diff line number | Diff line change |
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'use strict'; | ||
const common = require('../common'); | ||
if (!common.hasCrypto) { | ||
common.skip('missing crypto'); | ||
} | ||
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const fixtures = require('../common/fixtures'); | ||
const assert = require('assert'); | ||
const https = require('https'); | ||
const MakeDuplexPair = require('../common/duplexpair'); | ||
const tls = require('tls'); | ||
const { finished } = require('stream'); | ||
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const certFixture = { | ||
key: fixtures.readKey('agent1-key.pem'), | ||
cert: fixtures.readKey('agent1-cert.pem'), | ||
ca: fixtures.readKey('ca1-cert.pem'), | ||
}; | ||
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// Test that setting the `insecureHTTPParse` option works on a per-stream-basis. | ||
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// Test 1: The server sends an invalid header. | ||
{ | ||
const { clientSide, serverSide } = MakeDuplexPair(); | ||
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const req = https.request({ | ||
rejectUnauthorized: false, | ||
createConnection: common.mustCall(() => clientSide), | ||
insecureHTTPParser: true | ||
}, common.mustCall((res) => { | ||
assert.strictEqual(res.headers.hello, 'foo\x08foo'); | ||
res.resume(); // We don’t actually care about contents. | ||
res.on('end', common.mustCall()); | ||
})); | ||
req.end(); | ||
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serverSide.resume(); // Dump the request | ||
serverSide.end('HTTP/1.1 200 OK\r\n' + | ||
'Hello: foo\x08foo\r\n' + | ||
'Content-Length: 0\r\n' + | ||
'\r\n\r\n'); | ||
} | ||
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// Test 2: The same as Test 1 except without the option, to make sure it fails. | ||
{ | ||
const { clientSide, serverSide } = MakeDuplexPair(); | ||
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const req = https.request({ | ||
rejectUnauthorized: false, | ||
createConnection: common.mustCall(() => clientSide) | ||
}, common.mustNotCall()); | ||
req.end(); | ||
req.on('error', common.mustCall()); | ||
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serverSide.resume(); // Dump the request | ||
serverSide.end('HTTP/1.1 200 OK\r\n' + | ||
'Hello: foo\x08foo\r\n' + | ||
'Content-Length: 0\r\n' + | ||
'\r\n\r\n'); | ||
} | ||
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// Test 3: The client sends an invalid header. | ||
{ | ||
const testData = 'Hello, World!\n'; | ||
const server = https.createServer( | ||
{ insecureHTTPParser: true, | ||
...certFixture }, | ||
common.mustCall((req, res) => { | ||
res.statusCode = 200; | ||
res.setHeader('Content-Type', 'text/plain'); | ||
res.end(testData); | ||
})); | ||
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server.on('clientError', common.mustNotCall()); | ||
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server.listen(0, common.mustCall(() => { | ||
const client = tls.connect({ | ||
port: server.address().port, | ||
rejectUnauthorized: false | ||
}); | ||
client.write( | ||
'GET / HTTP/1.1\r\n' + | ||
'Hello: foo\x08foo\r\n' + | ||
'\r\n\r\n'); | ||
client.end(); | ||
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client.on('data', () => {}); | ||
finished(client, common.mustCall(() => { | ||
server.close(); | ||
})); | ||
})); | ||
} | ||
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// Test 4: The same as Test 3 except without the option, to make sure it fails. | ||
{ | ||
const server = https.createServer( | ||
{ ...certFixture }, | ||
common.mustNotCall()); | ||
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server.on('clientError', common.mustCall()); | ||
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server.listen(0, common.mustCall(() => { | ||
const client = tls.connect({ | ||
port: server.address().port, | ||
rejectUnauthorized: false | ||
}); | ||
client.write( | ||
'GET / HTTP/1.1\r\n' + | ||
'Hello: foo\x08foo\r\n' + | ||
'\r\n\r\n'); | ||
client.end(); | ||
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client.on('data', () => {}); | ||
finished(client, common.mustCall(() => { | ||
server.close(); | ||
})); | ||
})); | ||
} | ||
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// Test 5: Invalid argument type | ||
{ | ||
assert.throws( | ||
() => https.request({ insecureHTTPParser: 0 }, common.mustNotCall()), | ||
common.expectsError({ | ||
code: 'ERR_INVALID_ARG_TYPE', | ||
message: 'The "options.insecureHTTPParser" property must be of' + | ||
' type boolean. Received type number (0)' | ||
}) | ||
); | ||
} |
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Original file line number | Diff line number | Diff line change |
---|---|---|
@@ -0,0 +1,119 @@ | ||
'use strict'; | ||
const common = require('../common'); | ||
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if (!common.hasCrypto) { | ||
common.skip('missing crypto'); | ||
} | ||
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const fixtures = require('../common/fixtures'); | ||
const assert = require('assert'); | ||
const https = require('https'); | ||
const http = require('http'); | ||
const tls = require('tls'); | ||
const MakeDuplexPair = require('../common/duplexpair'); | ||
const { finished } = require('stream'); | ||
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const certFixture = { | ||
key: fixtures.readKey('agent1-key.pem'), | ||
cert: fixtures.readKey('agent1-cert.pem'), | ||
ca: fixtures.readKey('ca1-cert.pem'), | ||
}; | ||
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// Test that setting the `maxHeaderSize` option works on a per-stream-basis. | ||
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// Test 1: The server sends larger headers than what would otherwise be allowed. | ||
{ | ||
const { clientSide, serverSide } = MakeDuplexPair(); | ||
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const req = https.request({ | ||
createConnection: common.mustCall(() => clientSide), | ||
maxHeaderSize: http.maxHeaderSize * 4 | ||
}, common.mustCall((res) => { | ||
assert.strictEqual(res.headers.hello, 'A'.repeat(http.maxHeaderSize * 3)); | ||
res.resume(); // We don’t actually care about contents. | ||
res.on('end', common.mustCall()); | ||
})); | ||
req.end(); | ||
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serverSide.resume(); // Dump the request | ||
serverSide.end('HTTP/1.1 200 OK\r\n' + | ||
'Hello: ' + 'A'.repeat(http.maxHeaderSize * 3) + '\r\n' + | ||
'Content-Length: 0\r\n' + | ||
'\r\n\r\n'); | ||
} | ||
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// Test 2: The same as Test 1 except without the option, to make sure it fails. | ||
{ | ||
const { clientSide, serverSide } = MakeDuplexPair(); | ||
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const req = https.request({ | ||
createConnection: common.mustCall(() => clientSide) | ||
}, common.mustNotCall()); | ||
req.end(); | ||
req.on('error', common.mustCall()); | ||
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serverSide.resume(); // Dump the request | ||
serverSide.end('HTTP/1.1 200 OK\r\n' + | ||
'Hello: ' + 'A'.repeat(http.maxHeaderSize * 3) + '\r\n' + | ||
'Content-Length: 0\r\n' + | ||
'\r\n\r\n'); | ||
} | ||
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// Test 3: The client sends larger headers than what would otherwise be allowed. | ||
{ | ||
const testData = 'Hello, World!\n'; | ||
const server = https.createServer( | ||
{ maxHeaderSize: http.maxHeaderSize * 4, | ||
...certFixture }, | ||
common.mustCall((req, res) => { | ||
res.statusCode = 200; | ||
res.setHeader('Content-Type', 'text/plain'); | ||
res.end(testData); | ||
})); | ||
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server.on('clientError', common.mustNotCall()); | ||
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server.listen(0, common.mustCall(() => { | ||
const client = tls.connect({ | ||
port: server.address().port, | ||
rejectUnauthorized: false | ||
}); | ||
client.write( | ||
'GET / HTTP/1.1\r\n' + | ||
'Hello: ' + 'A'.repeat(http.maxHeaderSize * 3) + '\r\n' + | ||
'\r\n\r\n'); | ||
client.end(); | ||
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client.on('data', () => {}); | ||
finished(client, common.mustCall(() => { | ||
server.close(); | ||
})); | ||
})); | ||
} | ||
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// Test 4: The same as Test 3 except without the option, to make sure it fails. | ||
{ | ||
const server = https.createServer({ ...certFixture }, common.mustNotCall()); | ||
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// clientError may be emitted multiple times when header is larger than | ||
// maxHeaderSize. | ||
server.on('clientError', common.mustCallAtLeast(() => {}, 1)); | ||
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server.listen(0, common.mustCall(() => { | ||
const client = tls.connect({ | ||
port: server.address().port, | ||
rejectUnauthorized: false | ||
}); | ||
client.write( | ||
'GET / HTTP/1.1\r\n' + | ||
'Hello: ' + 'A'.repeat(http.maxHeaderSize * 3) + '\r\n' + | ||
'\r\n\r\n'); | ||
client.end(); | ||
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client.on('data', () => {}); | ||
finished(client, common.mustCall(() => { | ||
server.close(); | ||
})); | ||
})); | ||
} |