Comparison Overview
Riyad Bank

Riyad Bank
Riyad Bank, 13241, SA
Last Update: 27/03/2026
Riyad Bank is one of the largest financial institutions in the Kingdom of Saudi Arabia and the Middle East. Established in 1957, with a paid-up capital of SAR 30 billion. Our professional and dedicated staff base has mainly driven our success throughout the years. With ...

Industrial and Commercial Bank of China
No.55 FuXingMenNei Street, Xicheng District, Beijing, P.R.C, Beijing, 100140, CN
Last Update: 30/03/2026
Industrial and Commercial Bank of China Ltd. (ICBC) (simplified Chinese: 中国工商银行; traditional Chinese: 中國工商銀行; pinyin: Zhōngguó Gōngshāng Yínháng, more commonly just 工行 Gōngháng) is China's largest bank and the largest bank in the world. It is one of China's "Big Four" s...
Compliance Ranges Comparison

Riyad Bank







Industrial and Commercial Bank of China






Benchmark & Cyber Underwriting Signals
Incidents vs Banking Industry Avg (This Year)
No incidents recorded for Riyad Bank in 2026.
Incidents vs Banking Industry Avg (This Year)
No incidents recorded for Industrial and Commercial Bank of China in 2026.
Incident History - Riyad Bank (X = Date, Y = Severity)
Riyad Bank cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Industrial and Commercial Bank of China (X = Date, Y = Severity)
Industrial and Commercial Bank of China cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Riyad Bank

Industrial and Commercial Bank of China
FAQ
Latest Global CVEs
A flaw has been found in sigoden aichat up to 0.30.4. This affects an unknown function of the file src/serve.rs of the component API Endpoint. This manipulation causes uncontrolled memory allocation. The attack can be initiated remotely. The exploit has been published and may be used. The vendor was contacted early about this disclosure but did not respond in any way.
A vulnerability was detected in rowboatlabs rowboat up to 0.9.1. The impacted element is the function request.text/req.json of the file apps/rowboat/app/api/composio/webhook/route.ts of the component Composio Webhook Endpoint. The manipulation results in denial of service. It is possible to launch the attack remotely. The exploit is now public and may be used. Upgrading to version 0.9.2 is sufficient to resolve this issue. Upgrading the affected component is recommended. The legacy Next.js app was deleted at 0.9.2 rather than patched, leaving no security control behind.
A security vulnerability has been detected in Reader Tools PDF Reader App 98.8 on Android. The affected element is the function ActSplashNew.handleDeeplink of the component File Handler. The manipulation of the argument _display_name leads to path traversal. An attack has to be approached locally. The exploit has been disclosed publicly and may be used. The vendor was contacted early about this disclosure but did not respond in any way.
Windows ML CLI is a command line tool for building portable, performant, and high-quality AI models for Windows ML. Prior to 0.4.0, the src/winml/modelkit/serve/cli_api.py component exposes WinML CLI commands through a localhost HTTP API without authentication and configures the allow_origins setting as a wildcard in both src/winml/modelkit/serve/cli_api.py and src/winml/modelkit/serve/app.py. A malicious website loaded by a user can send cross-origin requests to /v1/cli/build or /v1/cli/config and set the trust_remote_code parameter to true, which is converted to the --trust-remote-code command-line flag without validation. This reaches AutoConfig.from_pretrained with trust_remote_code=True in src/winml/modelkit/loader/_autoconfig.py and imports Python code from an attacker-controlled model repository, resulting in arbitrary code execution as the server user. This issue is fixed in version 0.4.0.
fast-uri serializes the port component of a URI without validating it. When recomposing the authority, the userinfo and host components are escaped but the port is concatenated verbatim, so a port value that is not a sequence of digits can inject authority delimiters, demoting the intended host to userinfo and pointing the authority at an attacker-controlled host. Both fast-uri and Node's URL read the result back as the attacker's host with no error, so re-validating the built URI does not catch it. This affects applications that build URIs from parts and assign untrusted data to the port component through the serialize, normalize, or equal functions in their object forms. The issue affects fast-uri versions before 2.4.6, from 3.0.0 before 3.1.7, and from 4.0.0 before 4.1.4. It is fixed in 2.4.6, 3.1.7, and 4.1.4, where recomposeAuthority rejects any port that is not a digit sequence per RFC 3986.