CVE-2026-56819
ADVISORY - githubSummary
Summary
A remote, unauthenticated peer can leak one direct ByteBuf per HTTP/2 DATA frame in
applications that enable HTTP/2 content decompression via DelegatingDecompressorFrameListener.
When a DATA frame is processed for a stream whose decompressor has already been closed,
Http2Decompressor.decompress(...) retains the frame buffer but never releases it on the error
path, so its reference count never returns to zero. Repeating this over a long-lived HTTP/2
connection exhausts direct memory and crashes the JVM with OutOfMemoryError — a denial of service.
Details
In codec-http2/src/main/java/io/netty/handler/codec/http2/DelegatingDecompressorFrameListener.java,
Http2Decompressor.decompress(...) does:
// around line 433
decompressor.writeInbound(data.retain());
The argument data.retain() is evaluated before writeInbound(...) executes, incrementing the
buffer's reference count (refCnt: 1 -> 2). The very first statement of
EmbeddedChannel.writeInbound(...) is ensureOpen() (EmbeddedChannel.java:360), which throws
ClosedChannelException when the decompressor's internal EmbeddedChannel has already been closed.
When that happens:
- the
DATApayload has beenretain()ed but never entered the pipeline, so the decoder'sfinally { release() }never runs; - the surrounding
catch (Throwable t)block indecompress(...)(around line 451) does not release the extra reference; - the input buffer therefore can never reach refCnt 0, and its (typically direct) memory is leaked.
The decompressor channel is closed on a reachable path:
Http2Connection onStreamRemoved → Http2Decompressor.cleanup() →
EmbeddedChannel.finishAndReleaseAll()
(DelegatingDecompressorFrameListener.java:125-133 and 418-420).
A peer that sends DATA frames for a stream whose decompressor has already been cleaned up (e.g.
continuing to send DATA after END_STREAM / stream removal) thus leaks one direct ByteBuf per
frame.
Affected code: DelegatingDecompressorFrameListener.java, method Http2Decompressor.decompress(...)
— the decompressor.writeInbound(data.retain()) call (line ~433) and its catch (Throwable t)
block (line ~451), which lacks a data.release() rollback.
Suggested fix: track whether writeInbound succeeded and roll back the extra retain() only when
the data never entered the pipeline:
boolean writeSucceeded = false;
try {
decompressor.writeInbound(data.retain());
writeSucceeded = true; // pipeline now owns the release
if (endOfStream) {
decompressor.finish();
}
return 0;
} catch (Throwable t) {
if (!writeSucceeded) {
data.release(); // roll back the extra retain(); data never entered pipeline
}
if (t instanceof Http2Exception) {
throw (Http2Exception) t;
}
throw streamError(stream.id(), INTERNAL_ERROR, t, ...);
}
| Case | writeSucceeded | catch action | Reason |
|---|---|---|---|
ensureOpen() throws (this bug) |
false |
data.release() |
data never entered pipeline |
| handler throws internally | true |
no release | decoder finally already released |
finish() throws |
true |
no release | writeInbound already succeeded |
PoC
Reproduced against the official, unmodified netty-codec-http2-4.2.15.Final.jar from Maven Central,
using real netty classes and measuring ByteBuf.refCnt() directly (the leaking logic is not mocked).
Reproduction steps:
- Download the official artifacts and their dependencies from Maven Central (version
4.2.15.Final):netty-common,netty-buffer,netty-transport,netty-resolver,netty-handler,netty-codec-base,netty-codec,netty-codec-http,netty-codec-http2,netty-codec-compression. - Build a real
Http2Decompressorwrapping a real gzip decoderEmbeddedChannel(ZlibCodecFactory.newZlibDecoder(ZlibWrapper.GZIP)). - Close the internal decompressor channel (equivalent to the end state of
cleanup()/finishAndReleaseAll()). - Encode a real gzip
DATApayload withZlibCodecFactory.newZlibEncoder(GZIP)(refCnt = 1). - Call
decompress(...)on the closed channel. - Observe:
writeInbound(...)throwsClosedChannelExceptionat itsensureOpen()entry (EmbeddedChannel.java:360), reached fromDelegatingDecompressorFrameListener.java:433;data.refCnt()is now2. - Release once as the frame reader would;
refCntstays at1(release()returnsfalse) → leaked.
Observed reference-count trace:
gzipData initial refCnt = 1
decompress -> data.retain() -> refCnt = 2 (retain applied, never rolled back)
caller releases once -> refCnt = 1 (release() returns false; not deallocated)
=> buffer never reaches 0 -> direct memory leaked
Observed exception stack (confirms the leak point):
java.nio.channels.ClosedChannelException
at io.netty.channel.embedded.EmbeddedChannel.checkOpen(EmbeddedChannel.java:959)
at io.netty.channel.embedded.EmbeddedChannel.ensureOpen(EmbeddedChannel.java:979)
at io.netty.channel.embedded.EmbeddedChannel.writeInbound(EmbeddedChannel.java:360)
at io.netty.handler.codec.http2.DelegatingDecompressorFrameListener$Http2Decompressor
.decompress(DelegatingDecompressorFrameListener.java:433)
Two notes on the harness (they do not affect the leak mechanism):
- The internal channel is closed directly via
close()rather than throughcleanup(). The end state is identical (channel closed →writeInboundthrows atensureOpen()); the bug depends on "channel closed → retain not rolled back", not on how the channel was closed. - In the isolated harness the rethrown
StreamException's root cause shows asNullPointerExceptionbecause the harness does not initialise anHttp2LocalFlowController(a secondary exception reported during channel close). The leak is already sealed at theClosedChannelExceptionthrown bywriteInbound'sensureOpen()(line 360); in a real server with the flow controller initialised, the triggering exception is theClosedChannelExceptionitself.
A complete self-contained PoC (Verify02DecompressLeak.java, ~150 lines, no test framework) plus the
exact javac / java commands can be attached on request.
Impact
- Vulnerability type: uncontrolled resource consumption / memory leak (CWE-401), leading to
denial of service. Each crafted
DATAframe leaks one (typically direct/off-heap)ByteBuf. - Who is impacted: any server (or client) that enables HTTP/2 content decompression by installing
DelegatingDecompressorFrameListenerin its HTTP/2 pipeline. - Attacker requirements: remote, unauthenticated. The attacker only needs to send HTTP/2
DATAframes for a stream whose decompressor has been cleaned up (e.g. continue sendingDATAafterEND_STREAM). No special server configuration beyond decompression being enabled. - Result: sustained triggering over a long-lived connection exhausts direct memory and crashes
the JVM with
OutOfMemoryError.
Common Weakness Enumeration (CWE)
Uncontrolled Resource Consumption
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