Comparison Overview
T-Systems Hungary Ltd.

T-Systems Hungary Ltd.
Könyves Kálmán körút 36, Budapest, 1097, HU
Last Update: 09/03/2026
T-Systems Hungary is the largest Hungarian service provider that can cover the entire range of ICT technologies. The company in the 100 percent ownership of Magyar Telekom has a clientele comprising large corporations and public sector institutions, to whom they supply ...

DXC Technology
20408 Bashan Dr, Ashburn, 20147, US
Last Update: 05/04/2026
DXC Technology helps global companies run their mission-critical systems and operations while modernizing IT, optimizing data architectures, and ensuring security and scalability across public, private and hybrid clouds. The world's largest companies and public sector o...
Compliance Ranges Comparison

T-Systems Hungary Ltd.







DXC Technology






Benchmark & Cyber Underwriting Signals
Incidents vs IT Services and IT Consulting Industry Avg (This Year)
No incidents recorded for T-Systems Hungary Ltd. in 2026.
Incidents vs IT Services and IT Consulting Industry Avg (This Year)
No incidents recorded for DXC Technology in 2026.
Incident History - T-Systems Hungary Ltd. (X = Date, Y = Severity)
T-Systems Hungary Ltd. cyber incidents detection timeline including parent company and subsidiaries.
Incident History - DXC Technology (X = Date, Y = Severity)
DXC Technology cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

T-Systems Hungary Ltd.

DXC Technology
FAQ
Latest Global CVEs
VaahCMS versions 2.0.0 through 2.3.4 contain a malicious obfuscated JavaScript payload embedded in the Blade template responsible for rendering security OTP emails, allowing remote attackers to execute unauthorized code in any browser that renders the affected email template with JavaScript enabled. The payload establishes a WebSocket connection to a hardcoded command-and-control endpoint, installs a password-field keylogger using MutationObserver to capture dynamically added inputs, scrapes WhatsApp Web DOM content, and accepts remote commands to redirect or overwrite the rendered page.
undici does not validate the type property of a duck-typed blob-like request body before using it as the Content-Type header on the HTTP/1.1 dispatcher. In undici before 6.28.0, from 7.0.0 up to before 7.29.0, and from 8.0.0 up to before 8.9.0, an application that passes a hand-rolled blob-like body (via request, stream, pipeline, or dispatch) whose type is derived from untrusted input allows an attacker to inject CRLF sequences and append arbitrary HTTP headers, potentially smuggling a second request past the upstream. Native Blob objects are safe because their constructor strips CRLF from the type, and fetch is unaffected because it validates headers, but ecosystem libraries that build duck-typed blob shapes from user input can reach the vulnerable path. This is the same defect class as CVE-2022-35948 and CVE-2026-1527, on a header sink that the earlier fixes did not cover. The issue is fixed in undici 6.28.0, 7.29.0, and 8.9.0.
undici's cache interceptor mishandles optional whitespace placed around the equals sign of a qualified no-cache or private Cache-Control directive. In undici from 7.0.0 up to before 7.29.0 and from 8.0.0 up to before 8.9.0, the parser either drops the directive or stores a field name with literal quote characters, so the cache decision fails to recognize the qualification and the response is stored. In shared-cache mode, this lets a response containing one user's authenticated data be served from cache to a later caller, including an unauthenticated one, when both requests resolve to the same cache key. It affects applications that enable the cache interceptor in shared mode, forward Authorization headers upstream, and receive cacheable responses with qualified directives padded with whitespace around the equals sign. This is the whitespace-around-equals variant that the fix for CVE-2026-9678 did not normalize, and it is fixed in undici 7.29.0 and 8.9.0.
kishan0725 Hospital Management System 4.0 is vulnerable to SQL Injection in check_availability.php via the parameters emailid and email.
- https://github.com/um-dsp/TaintRadar/blob/main/sql_injection_cves/hospitalmanagementsystemproject/20250811-hospital-management-system-check_availability.php-email-sqli/20250811-hospital-management-system-check_availability.php-email-sqli.md
- https://github.com/um-dsp/TaintRadar/blob/main/sql_injection_cves/hospitalmanagementsystemproject/20250811-hospital-management-system-check_availability.php-emailid-sqli/20250811-hospital-management-system-check_availability.php-emailid-sqli.md
kishan0725 Hospital Management System 4.0 is vulnerable to SQL Injection in /doctor/edit-patient.php?editid=1.