Security Vulnerabilities
- CVEs Published In June 2020
An issue was discovered in DigDash 2018R2 before p20200528, 2019R1 before p20200421, and 2019R2 before p20200430. It allows a user to provide data that will be used to generate the JNLP file used by a client to obtain the right Java application. By providing an attacker-controlled URL, the client will obtain a rogue JNLP file specifying the installation of malicious JAR archives and executed with full privileges on the client computer.
An issue was discovered in DigDash 2018R2 before p20200528, 2019R1 before p20200528, 2019R2 before p20200430, and 2020R1 before p20200507. A cross-site scripting (XSS) vulnerability exists in the login menu.
By using an Automate API in ConnectWise Automate before 2020.5.178, a remote authenticated user could execute commands and/or modifications within an individual Automate instance by triggering an SQL injection vulnerability in /LabTech/agent.aspx. This affects versions before 2019.12.337, 2020 before 2020.1.53, 2020.2 before 2020.2.85, 2020.3 before 2020.3.114, 2020.4 before 2020.4.143, and 2020.5 before 2020.5.178.
An issue was discovered in DigDash 2018R2 before p20200210 and 2019R1 before p20200210. The login page is vulnerable to Server-Side Request Forgery (SSRF) that allows use of the application as a proxy. Sent to an external server, a forged request discloses application credentials. For a request to an internal component, the request is blind, but through the error message it's possible to determine whether the request targeted a open service.
The Server-Server protocol implementation in ngIRCd before 26~rc2 allows an out-of-bounds access, as demonstrated by the IRC_NJOIN() function.
In uftpd before 2.12, handle_CWD in ftpcmd.c mishandled the path provided by the user, causing a NULL pointer dereference and denial of service, as demonstrated by a CWD /.. command.
user_channel/passwd_mgr.cpp in OpenBMC phosphor-host-ipmid before 2020-04-03 does not ensure that /etc/ipmi-pass has strong file permissions.
An integer overflow in the getnum function in lua_struct.c in Redis before 6.0.3 allows context-dependent attackers with permission to run Lua code in a Redis session to cause a denial of service (memory corruption and application crash) or possibly bypass intended sandbox restrictions via a large number, which triggers a stack-based buffer overflow. NOTE: this issue exists because of a CVE-2015-8080 regression.
An issue was discovered in janus-gateway (aka Janus WebRTC Server) through 0.10.0. janus_streaming_rtsp_parse_sdp in plugins/janus_streaming.c has a Buffer Overflow via a crafted RTSP server.
An issue was discovered in janus-gateway (aka Janus WebRTC Server) through 0.10.0. janus_get_codec_from_pt in utils.c has a Buffer Overflow via long value in an SDP Offer packet.