D-LINK DWL-6610 FW_v_4.3.0.8B003C was discovered to contain a command injection vulnerability in the function config_upload_handler. This vulnerability allows attackers to execute arbitrary commands via the configRestore parameter.
D-LINK DWL-6610 FW_v_4.3.0.8B003C was discovered to contain a command injection vulnerability in the function config_upload_handler. This vulnerability allows attackers to execute arbitrary commands via the configRestore parameter.
D-LINK DWL-6610 FW_v_4.3.0.8B003C was discovered to contain a command injection vulnerability in the function web_cert_download_handler. This vulnerability allows attackers to execute arbitrary commands via the certDownload parameter.
D-LINK DWL-6610 FW_v_4.3.0.8B003C was discovered to contain a command injection vulnerability in the function sub_2EF50. This vulnerability allows attackers to execute arbitrary commands via the manual-time-string parameter.
D-LINK DWL-6610 FW_v_4.3.0.8B003C was discovered to contain a stack overflow vulnerability in the function update_users.
D-LINK DWL-6610 FW_v_4.3.0.8B003C was discovered to contain a command injection vulnerability in the function pcap_download_handler. This vulnerability allows attackers to execute arbitrary commands via the update.device.packet-capture.tftp-file-name parameter.
D-Link device DI-7200GV2.E1 v21.04.09E1 was discovered to contain a stack overflow via the hi_up parameter in the qos_ext.asp function.
D-Link device DI-7200GV2.E1 v21.04.09E1 was discovered to contain a stack overflow via the id parameter in the yyxz.data function.
D-Link device DI-7200GV2.E1 v21.04.09E1 was discovered to contain a stack overflow via the prev parameter in the H5/login.cgi function.
D-Link device DI-7200GV2.E1 v21.04.09E1 was discovered to contain a stack overflow via the popupId parameter in the H5/hi_block.asp function.
D-Link device DI-7200GV2.E1 v21.04.09E1 was discovered to contain a stack overflow via the fn parameter in the tgfile.asp function.
D-Link DI-7200GV2.E1 v21.04.09E1 was discovered to contain a stack overflow via the zn_jb parameter in the arp_sys.asp function.
An arbitrary code execution flaw was found in Foreman. This flaw allows an admin user to bypass safe mode in templates and execute arbitrary code on the underlying operating system.
paraparser in ReportLab before 3.5.31 allows remote code execution because start_unichar in paraparser.py evaluates untrusted user input in a unichar element in a crafted XML document with '<unichar code="' followed by arbitrary Python code, a similar issue to CVE-2019-17626.
Incorrect verifier pruning in BPF in Linux Kernel >=5.4 leads to unsafe code paths being incorrectly marked as safe, resulting in arbitrary read/write in kernel memory, lateral privilege escalation, and container escape.
Incorrect Default Permissions vulnerability in Mitsubishi Electric Corporation multiple FA engineering software products allows a malicious local attacker to execute a malicious code, resulting in information disclosure, tampering with and deletion, or a denial-of-service (DoS) condition, if the product is installed in a folder other than the default installation folder.
Cross Site Scripting vulnerability in Dolibarr ERP CRM v.17.0.1 and before allows a remote attacker to obtain sensitive information and execute arbitrary code via the REST API module, related to analyseVarsForSqlAndScriptsInjection and testSqlAndScriptInject.
In JetBrains TeamCity before 2023.05.4 authentication bypass leading to RCE on TeamCity Server was possible
A vulnerability in the 3rd party AV uninstaller module contained in Trend Micro Apex One (on-prem and SaaS), Worry-Free Business Security and Worry-Free Business Security Services could allow an attacker to manipulate the module to execute arbitrary commands on an affected installation. Note that an attacker must first obtain administrative console access on the target system in order to exploit this vulnerability.
Devices ekorCCP and ekorRCI are vulnerable due to access to the FTP service using default credentials. Exploitation of this vulnerability can allow an attacker to modify critical files that could allow the creation of new users, delete or modify existing users, modify configuration files, install rootkits or backdoors.
Operating system command injection in ekorCCP and ekorRCI, which could allow an authenticated attacker to execute commands, create new users with elevated privileges or set up a backdoor.