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GHSA-rgwj-5xj2-c3m3
Vulnerability Details
File: lib/compressed_protocol.js
Line: 43 (zlib.inflate(body, (err, data) => { ... }) inside handleCompressedPacket)
Root Cause
When a connection is created with compress: true (and the server advertises CLIENT_COMPRESS), every incoming packet is unwrapped by handleCompressedPacket() in lib/compressed_protocol.js, which calls:
zlib.inflate(body, (err, data) => { ... });
No options object (in particular, no maxOutputLength) is passed. Node's zlib convenience methods default maxOutputLength to buffer.kMaxLength, which on this platform is Number.MAX_SAFE_INTEGER — i.e. effectively unbounded until the process runs out of memory. The 3-byte "length of payload before compression" field in the compressed-packet header is read (packet.readInt24()) but is only used to branch on !== 0; it is never used to cap or validate the actual inflate output size, and the real decompressed size is determined purely by the attacker-supplied deflate stream.
Because DEFLATE can reach compression ratios over 1000:1 for crafted repetitive input, an attacker who controls (or MITMs, on a non-TLS connection) the MySQL server endpoint can send a single small compressed packet that expands to gigabytes in the client's memory — a classic decompression-bomb / "zip bomb" applied to MySQL's client-compression protocol.
Attack Scenario
- Application connects with
mysql2/mysql2/promiseusingcompress: true(a documented option for reducing bandwidth, commonly used for cloud/WAN DB connections). - The connection target is attacker-controlled or attacker-compromised, or an attacker MITMs a non-TLS connection.
- Right after authentication succeeds, the malicious endpoint sends one crafted compressed packet whose deflate stream is small on the wire (hundreds of KB) but decompresses to several GB.
zlib.inflate()starts allocating memory for the full decompressed output with no ceiling.- The Node.js process's RSS grows uncontrolled until OOM-kill or crash — no query needs to be issued by the client; the malicious packet alone is enough.
Impact
Denial of Service of the client application (process crash / OOM) — not the database itself. No authentication bypass or data exposure. Requires compress: true plus a malicious/compromised server or MITM position.
Vulnerable Code
function handleCompressedPacket(packet) {
const connection = this;
const deflatedLength = packet.readInt24();
const body = packet.readBuffer();
if (deflatedLength !== 0) {
connection.inflateQueue.push((task) => {
zlib.inflate(body, (err, data) => {
if (err) {
connection._handleNetworkError(err);
return;
}
connection._bumpCompressedSequenceId(packet.numPackets);
connection._inflatedPacketsParser.execute(data);
task.done();
});
});
} else {
...
}
}
Recommended Fix
const MAX_INFLATED_PACKET_SIZE = 1 * 1024 * 1024 * 1024; // e.g. 1 GiB, ideally configurable
zlib.inflate(body, { maxOutputLength: MAX_INFLATED_PACKET_SIZE }, (err, data) => {
if (err) {
connection._handleNetworkError(err);
return;
}
...
});
maxOutputLength makes zlib.inflate abort with ERR_BUFFER_TOO_LARGE as soon as the decompressed size would exceed the cap, routing into the exact same (already-existing) err → connection._handleNetworkError(err) path, so no new error-handling logic is required.
Verification
Dynamically confirmed on v3.23.0 (HEAD) using a minimal rogue "MySQL server" built on node-mysql2's own server-mode helpers (mysql.createServer, Packets.Handshake, connection.writeOk()). The rogue server completes a real handshake advertising CLIENT_COMPRESS, then writes one raw compressed frame (509,604 bytes on the wire — a zlib deflate of 500 MB of zero bytes, ratio 1028.8:1) directly to the socket. A normal mysql.createConnection({ ..., compress: true }) victim client — which never issues any query — had its RSS grow from 74.3 MB to 1115.0 MB after receiving that single packet, before erroring out with PROTOCOL_UNEXPECTED_PACKET once the client tried to parse the inflated zero-filled buffer as MySQL packets. The memory allocation happens unconditionally before any content validation.
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The vulnerability can be exploited over the network without needing physical access. It is difficult for an attacker to exploit this vulnerability and may require special conditions. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a high impact on the availability of the system.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
Probability that this vulnerability will be exploited in the wild within the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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