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GHSA-f5p9-j34q-pwcc
No affected components available
Summary
Multiple shared maps are accessed without consistent synchronization across goroutines. Under concurrent activity, Go runtime can trigger fatal error: concurrent map read and map write, causing C2 process crash (availability loss).
Vulnerable Component(with code examples)
Operator relay map had mixed access patterns (iteration and mutation without a single lock policy):
// vulnerable pattern (operator session map)
for sessionID, op := range OPERATORS { // iteration path
...
}
// concurrent mutation path elsewhere
OPERATORS[operatorSession] = &operator_t{...}
delete(OPERATORS, operatorSession)
Port-forwarding session map had read/write paths guarded inconsistently:
// vulnerable pattern (port forward map)
if sess, ok := PortFwds[id]; ok { // read path
...
}
PortFwds[id] = newSession // write path
delete(PortFwds, id) // delete path
FTP stream map similarly mixed concurrent iteration with mutation:
// vulnerable pattern (FTP stream map)
for token, stream := range FTPStreams { // iteration path
...
}
FTPStreams[token] = stream // write path
delete(FTPStreams, token) // delete path
Attack Vector
- Attacker (or stress traffic in authenticated flows) triggers high concurrency in normal control paths.
- Operator sessions connect/disconnect while message forwarding and file-transfer workflows are active.
- Concurrent read/write hits shared maps.
- Go runtime panics with concurrent map read/write error.
- C2 component exits, producing denial of service.
Proof of Concept
- Start C2 server with active operator session(s) in a lab environment.
- Generate rapid operator session churn (connect/disconnect loops).
- Simultaneously drive agent message tunnel traffic and/or file transfer activity.
- Observe crash signature in logs:
fatal error: concurrent map read and map write. - Optional: run with race detector in dev build to confirm race locations.
Impact
- C2 service interruption due to process panic/crash.
- Operational instability under load or deliberate churn.
- Repeated crash-restart cycles can degrade command reliability and incident response workflows.
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 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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