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GHSA-h6w7-qmcm-q6xr
Summary
When property-file/Map-based ConnectionFactory setup fails while parsing the uri key, the library wraps the underlying exception with the raw connection string — including the plaintext username and password — baked verbatim into the new exception's message.
Details
ConnectionFactoryConfigurator.load(ConnectionFactory, Map<String,String>, String) (src/main/java/com/rabbitmq/client/ConnectionFactoryConfigurator.java, lines 142-155):
String uri = properties.get(prefix + "uri");
if (uri != null) {
try {
cf.setUri(uri);
} catch (URISyntaxException e) {
throw new IllegalArgumentException("Error while setting AMQP URI: " + uri, e);
} catch (NoSuchAlgorithmException e) {
throw new IllegalArgumentException("Error while setting AMQP URI: " + uri, e);
} catch (KeyManagementException e) {
throw new IllegalArgumentException("Error while setting AMQP URI: " + uri, e);
}
}
uri is the full AMQP URI — amqp(s)://username:password@host:port/vhost — concatenated verbatim into the exception message on any of the three catch branches. No masking/redaction exists anywhere in this class or in ConnectionFactory.setUri(). This is the library's documented Spring-Boot/ops-config entry point (ConnectionFactory.load(...), available since 4.4.0), not obscure internal code.
RabbitMQ's own AMQP URI spec (rabbitmq.com/docs/uri-spec) explicitly warns the password "should avoid leaking... the full URI should not appear in exception messages or log records." A sibling method twenty lines away (ConnectionFactory.setUri(URI)) already avoids this exact mistake for a different malformed-URI case — this path wasn't caught by that same care.
Note: KeyManagementException is declared in the throws clause but not actually reachable via the current setUri(String) → setUri(URI) call chain — the two real, reachable leak surfaces are the URISyntaxException branch (trivial, deterministic, scheme-independent) and the NoSuchAlgorithmException branch (real but narrower — amqps:// only, requires a restricted/FIPS-style default TLS provider).
PoC
Map<String, String> props = new HashMap<>();
props.put("uri", "amqp://svc-account:P@ssW0rd With Space!@broker.internal:5672/prod");
ConnectionFactory cf = new ConnectionFactory();
ConnectionFactoryConfigurator.load(cf, props, "");
Throws:
java.lang.IllegalArgumentException: Error while setting AMQP URI: amqp://svc-account:P@ssW0rd With Space!@broker.internal:5672/prod
A password containing a space is entirely ordinary under common corporate password policies, and java.net.URI rejects such input outright — this isn't a contrived edge case.
Impact
Default Spring Boot startup-failure logging, an APM/error tracker, a CI job log, or an engineer pasting a stack trace into an internal or public ticket now holds the plaintext broker password, in a system typically far less access-controlled than wherever the credential is normally stored. Note the underlying URISyntaxException also carries the same string in its own message, chained as the cause of RabbitMQ's IllegalArgumentException — so removing RabbitMQ's own + uri concatenation alone would not fully close this; the raw secret-bearing string also shouldn't be handed to new URI() for error-reporting purposes at all.
Suggested fix: don't include the raw uri string in the wrapped exception's message — redact the userinfo component (or omit the URI entirely) before including it in any exception text.
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The vulnerability requires local access to the device to be exploited. It is easy for an attacker to exploit this vulnerability. An attacker needs basic access or low-level privileges. No user interaction is needed for the attacker to exploit this vulnerability.
Limited exploitation activity has been observed. Close monitoring and planned remediation are recommended.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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