Comparison Overview
Grant Thornton (US)

Grant Thornton (US)
171 N. Clark Street, Suite 200, Chicago, IL, US, 60601
Last Update: 05/09/2026
In the US, Grant Thornton LLP and Grant Thornton Advisors LLC (and their respective subsidiary entities) practice as an alternative practice structure in accordance with the AICPA Code of Professional Conduct and applicable law, regulations and professional standards. G...

Arcadis
Gustav Mahlerplein 97-103, Amsterdam, Nederland, NL, 1082 MS
Last Update: 30/03/2026
Arcadis is a leading global partner, delivering transformative projects with businesses, cities and industries. With 36,000 people active in more than 30 countries, we bring together the best minds from around the world to deliver intelligent products and solutions that...
Compliance Ranges Comparison

Grant Thornton (US)







Arcadis






Benchmark & Cyber Underwriting Signals
Incidents vs Professional Services Industry Avg (This Year)
No incidents recorded for Grant Thornton (US) in 2026.
Incidents vs Professional Services Industry Avg (This Year)
No incidents recorded for Arcadis in 2026.
Incident History - Grant Thornton (US) (X = Date, Y = Severity)
Grant Thornton (US) cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Arcadis (X = Date, Y = Severity)
Arcadis cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Grant Thornton (US)

Arcadis
FAQ
Latest Global CVEs
OpenStack Ironic through 38.0.0 may send a username and password to an unexpected remote host when Image Service is configured for HTTP(S) Basic Authentication.
An issue was discovered in OpenStack Keystone before 29.0.3. Tokens obtained via delegated authentication methods (EC2 credentials, application credentials, OAuth1 access tokens, and trusts) are not blocked from creating, modifying, or deleting credentials via the /v3/credentials API. EC2-derived tokens can additionally read credential blobs, exposing TOTP MFA seeds and other secrets. Also, PATCH /v3/credentials does not validate the requested post-update project_id, allowing any delegated token to move a credential to an unauthorized project. All Keystone deployments using delegated authentication are affected.
The administrative password is hashed using a comparatively weak, fast algorithm for the credential store backing one authentication path, and the file containing that hash is written with permissions allowing it to be read by any local user. This is inconsistent with a separate, stronger hashing algorithm used for the same password on another authentication path. A party able to read this file, including a local user or a party with access to a configuration backup, could feasibly recover the underlying password through offline computation, compromising the administrative credential across every path that accepts it.
An example environment-configuration file for a bundled inventory-management component ships with a fixed, publicly-known administrative password. A deployment that copies this example file into active configuration without running the setup routine that regenerates credentials will expose that component's administrative interface to anyone aware of the default value.
A prior update that raised a bundled HTTP client library to a version remediating known vulnerabilities was later reverted, reintroducing the earlier, vulnerable version into a log-processing component. The only code path in that component using the library issues a request to a single fixed, trusted vendor URL at initialization and does not process attacker-controlled input through the library, limiting practical exploitability of the reintroduced version in this context.