Comparison Overview
Freddie Mac

Freddie Mac
8200 Jones Branch Drive, McLean, 22102-3110, US
Last Update: 03/08/2026
Freddie Mac is serving America’s homebuyers, homeowners and renters by financing the creation and preservation of more affordable homeownership and rental opportunities, providing liquidity, stability and affordability to the housing market. We are Making Home Possible ...

Danske Bank
Bernstorffsgade 40, Copenhagen, Capital Region of Denmark, DK, 1577
Last Update: 06/09/2026
Danske Bank – A driver of growth and development For more than a 150 years, Danske Bank has strived to be a driver of growth and development in society. We have developed in tandem with the societies we are part of, and our advisory services, expertise and financial so...
Compliance Ranges Comparison

Freddie Mac







Danske Bank






Benchmark & Cyber Underwriting Signals
Incidents vs Financial Services Industry Avg (This Year)
No incidents recorded for Freddie Mac in 2026.
Incidents vs Financial Services Industry Avg (This Year)
No incidents recorded for Danske Bank in 2026.
Incident History - Freddie Mac (X = Date, Y = Severity)
Freddie Mac cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Danske Bank (X = Date, Y = Severity)
Danske Bank cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Freddie Mac

Danske Bank
FAQ
Latest Global CVEs
Netskope was notified about a potential gap in Netskope Endpoint DLP (EPDLP) running on Windows systems. Successful exploitation of the gap could potentially allow a privileged user to send a crafted message to the EPDLP process port to trigger an integer overflow, leading to memory corruption. Successful exploitation would require the EPDLP module to be enabled in the client configuration, and that Memory Integrity is disabled. A successful exploit could potentially result in a denial-of-service, arbitrary code execution, or privilege escalation on the local machine.
Netskope was notified of an out-of-bounds heap read affecting the Endpoint DLP (EPDLP) service of the Netskope Client. A local standard user could potentially send a specially crafted message that is not properly validated with a bounds check, likely crashing the kernel driver handler. Successful exploitation could potentially crash the EPDLP service, temporarily interrupting DLP enforcement. A successful exploit could potentially also reveal per-boot memory layout information to unauthorized users.
IBM Db2 11.5.0 through 11.5.9, and 12.1.0 through 12.1.5 is vulnerable to a denial of service where a specific functionality on a Db2 server can be disabled by a privileged user under certain conditions.
IBM Db2 11.5.0 through 11.5.9, and 12.1.0 through 12.1.5 could allow an attacker with the ability to control or impersonate a DRDA server endpoint to execute arbitrary commands on Db2 clients due to a stack-based buffer overflow that improperly copies user-controlled data into a fixed-size stack buffer without bounds checking.
IBM Db2 11.5.0 through 11.5.9, and 12.1.0 through 12.1.5 could allow an authenticated user to send a specially crafted request to write arbitrary files on the system.