CyberRota Analysis
AI-GeneratedThe vulnerability affects the iCalendar library for Python, specifically versions 7.1.0 to 7.1.3, where the Component equality method can lead to exponential computational complexity due to nested subcomponents. This flaw allows an attacker to craft a malicious .ics file that can cause a denial of service by overwhelming the CPU during comparison operations, potentially impacting calendar synchronization and invite processing. Organizations using affected versions of the iCalendar library should prioritize upgrading to version 7.1.3 to mitigate this risk.
Public Exploit Signal
A public exploit, PoC, GitHub repository or Metasploit reference was detected for this CVE.
Note: these links are listed for security research and verification purposes only.
Original NVD Description
icalendar is an RFC 5545 compatible parser and generator of iCalendar files for Python. From 7.1.0 until 7.1.3, the Component equality method in src/icalendar/cal/component.py compares nested subcomponents with two membership loops, and each membership test invokes the same method on child components, causing O(2^n) work relative to nesting depth. Component.from_ical accepts arbitrarily nested BEGIN:VEVENT blocks without a depth limit, so an attacker can submit a sub-kilobyte .ics file containing equal nested subtrees and trigger the cost when an application performs equality, inequality, membership, deduplication, test-assertion, round-trip, or normalization comparisons. Parsing alone does not trigger the issue, and comparisons that differ early short-circuit, but a few hundred bytes can pin a CPU core for minutes or indefinitely, causing denial of service in calendar sync or import endpoints, invite processing, and other comparison paths. This issue is fixed in version 7.1.3.