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Insights
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Introducing Workflow-Aligned Modules in the HiddenLayer AI Security Platform

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Inside HiddenLayer’s Research Team: The Experts Securing the Future of AI

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Why Traditional Cybersecurity Won’t “Fix” AI

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Explore our glossary to get clear, practical definitions of the terms shaping AI security, governance, and risk management.

Research

Research
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Agentic ShadowLogic

Research
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MCP and the Shift to AI Systems

Research
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The Lethal Trifecta and How to Defend Against It

Research
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EchoGram: The Hidden Vulnerability Undermining AI Guardrails

Videos

Report and Guides

Report and Guide
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Securing AI: The Technology Playbook

Report and Guide
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Securing AI: The Financial Services Playbook

Report and Guide
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AI Threat Landscape Report 2025

HiddenLayer AI Security Research Advisory

CVE-2025-62354
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Allowlist Bypass in Run Terminal Tool Allows Arbitrary Code Execution During Autorun Mode

When in autorun mode with the secure ‘Follow Allowlist’ setting, Cursor checks commands sent to run in the terminal by the agent to see if a command has been specifically allowed. The function that checks the command has a bypass to its logic, allowing an attacker to craft a command that will execute non-whitelisted commands.

SAI-ADV-2025-012
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Data Exfiltration from Tool-Assisted Setup

Windsurf’s automated tools can execute instructions contained within project files without asking for user permission. This means an attacker can hide instructions within a project file to read and extract sensitive data from project files (such as a .env file) and insert it into web requests for the purposes of exfiltration.

CVE-2025-62353
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Path Traversal in File Tools Allowing Arbitrary Filesystem Access

A path traversal vulnerability exists within Windsurf’s codebase_search and write_to_file tools. These tools do not properly validate input paths, enabling access to files outside the intended project directory, which can provide attackers a way to read from and write to arbitrary locations on the target user’s filesystem.

CVE-2025-62356
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Symlink Bypass in File System MCP Server Leading to Arbitrary Filesystem Read

A symlink bypass vulnerability exists inside of the built-in File System MCP server, allowing any file on the filesystem to be read by the model. The code that validates allowed paths can be found in the file: ai/codium/mcp/ideTools/FileSystem.java, but this validation can be bypassed if a symbolic link exists within the project.

In the News

News
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HiddenLayer Selected as Awardee on $151B Missile Defense Agency SHIELD IDIQ Supporting the Golden Dome Initiative

Underpinning HiddenLayer’s unique solution for the DoD and USIC is HiddenLayer’s Airgapped AI Security Platform, the first solution designed to protect AI models and development processes in fully classified, disconnected environments. Deployed locally within customer-controlled environments, the platform supports strict US Federal security requirements while delivering enterprise-ready detection, scanning, and response capabilities essential for national security missions.

News
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HiddenLayer Announces AWS GenAI Integrations, AI Attack Simulation Launch, and Platform Enhancements to Secure Bedrock and AgentCore Deployments

As organizations rapidly adopt generative AI, they face increasing risks of prompt injection, data leakage, and model misuse. HiddenLayer’s security technology, built on AWS, helps enterprises address these risks while maintaining speed and innovation.

News
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HiddenLayer Joins Databricks’ Data Intelligence Platform for Cybersecurity

On September 30, Databricks officially launched its <a href="https://www.databricks.com/blog/transforming-cybersecurity-data-intelligence?utm_source=linkedin&amp;utm_medium=organic-social">Data Intelligence Platform for Cybersecurity</a>, marking a significant step in unifying data, AI, and security under one roof. At HiddenLayer, we’re proud to be part of this new data intelligence platform, as it represents a significant milestone in the industry's direction.

Insights
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Securing Your AI: A Guide for CISOs PT4

As AI continues to evolve at a fast pace, implementing comprehensive security measures is vital for trust and accountability. The integration of AI into essential business operations and society underscores the necessity for proactive security strategies. While challenges and concerns exist, there is significant potential for leaders to make strategic, informed decisions. By pursuing clear, actionable guidance and staying well-informed, organizational leaders can effectively navigate the complexities of security for AI. This proactive stance will help reduce risks, ensure the safe and responsible use of AI technologies, and ultimately promote trust and innovation.

Insights
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Securing Your AI with Optiv and HiddenLayer

In today’s rapidly evolving artificial intelligence (AI) landscape, securing AI systems has become paramount. As organizations increasingly rely on AI and machine learning (ML) models, ensuring the integrity and security of these models is critical. To address this growing need, HiddenLayer, a pioneer security for AI company, has a scanning solution that enables companies to secure their AI digital supply chain, mitigating the risk of introducing adversarial code into their environment.

Insights
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Securing Your AI: A Step-by-Step Guide for CISOs PT3

With AI advancing rapidly, it's essential to implement thorough security measures. The need for proactive security strategies grows as AI becomes more integrated into critical business functions and society. Despite the challenges and concerns, there is considerable potential for leaders to make strategic, informed decisions. Organizational leaders can navigate the complexities of AI security by seeking clear, actionable guidance and staying well-informed. This proactive approach will help mitigate risks, ensure AI technologies' safe and responsible deployment, and ultimately foster trust and innovation.

Insights
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Securing Your AI: A Step-by-Step Guide for CISOs PT2

As AI advances at a rapid pace, implementing comprehensive security measures becomes increasingly crucial. The integration of AI into critical business operations and society is growing, highlighting the importance of proactive security strategies. While there are concerns and challenges surrounding AI, there is also significant potential for leaders to make informed, strategic decisions. Organizational leaders can effectively navigate the complexities of security for AI by seeking clear, actionable guidance and staying informed amidst abundant information. This proactive approach will help mitigate risks and ensure AI technologies' safe and responsible deployment, ultimately fostering trust and innovation.

Insights
xx
min read

Securing Your AI: A Step-by-Step Guide for CISOs

As AI advances at a rapid pace, implementing comprehensive security measures becomes increasingly crucial. The integration of AI into critical business operations and society is growing, highlighting the importance of proactive security strategies. While there are concerns and challenges surrounding AI, there is also significant potential for leaders to make informed, strategic decisions. Organizational leaders can effectively navigate the complexities of AI security by seeking clear, actionable guidance and staying informed amidst the abundance of information. This proactive approach will help mitigate risks and ensure AI technologies' safe and responsible deployment, ultimately fostering trust and innovation.

Insights
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A Guide to AI Red Teaming

For decades, the concept of red teaming has been adapted from its military roots to simulate how a threat actor could bypass defenses put in place to secure an organization. For many organizations, employing or contracting with ethical hackers to simulate attacks against their computer systems before adversaries attack is a vital strategy to understand where their weaknesses are. As Artificial Intelligence becomes integrated into everyday life, red-teaming AI systems to find and remediate security vulnerabilities specific to this technology is becoming increasingly important.

Insights
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Advancements in Security for AI

To help understand the evolving cybersecurity environment, we developed HiddenLayer’s 2024 AI Threat Landscape Report as a practical guide to understanding the security risks that can affect every industry and to provide actionable steps to implement security measures at your organization.

Insights
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AI Model Scanner Accelerates Adoption

OpenAI revolutionized the world by launching ChatGPT, marking a pivotal moment in technology history. The AI arms race, where companies speed to integrate AI amidst the dual pressures of rapid innovation and cybersecurity challenges, highlights the inherent risks in AI models. HiddenLayer’s Model Scanner is crucial for identifying and mitigating these vulnerabilities. From the surge of third-party models on platforms like Hugging Face to the Wild West-like rush for AI dominance, this article offers insights into securing AI’s future while enabling businesses to harness its transformative power safely.

Insights
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Introducing the Security for AI Council

It’s been just a few short weeks since RSAC 2024, an event that left a lasting impression on all who attended. This year, the theme “The Art of the Possible” resonated deeply, showcasing the industry’s commitment to exploring new horizons and embracing innovative ideas. It was inspiring to witness the collective enthusiasm for Possibility Thinking, a cognitive perspective that focuses on exploring potential opportunities and imagining various scenarios without being constrained by current realities or limitations. It involves a mindset open to new ideas, creative solutions, and innovative thinking. The theme and general ambiance set the stage perfectly for us to launch something big, the Security for AI Council.

Insights
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From National Security to Building Trust: The Current State of Securing AI

Consider this sobering statistic: 77% of organizations have been breached through their AI systems in the past year. With organizations deploying thousands of AI models, the critical role of these systems is undeniable. Yet, the security of these models is often an afterthought, brought into the limelight only in the aftermath of a breach, with the security team shouldering the blame.

Insights
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Understanding the Threat Landscape for AI-Based Systems

To help understand the evolving cybersecurity environment, we developed HiddenLayer’s 2024 AI Threat Landscape Report as a practical guide to understanding the security risks that can affect every industry and to provide actionable steps to implement security measures at your organization.

Insights
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Risks Related to the Use of AI

To help understand the evolving cybersecurity environment, we developed HiddenLayer’s 2024 AI Threat Landscape Report as a practical guide to understanding the security risks that can affect every industry and to provide actionable steps to implement security measures at your organization.

research
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Agentic ShadowLogic

research
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MCP and the Shift to AI Systems

research
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The Lethal Trifecta and How to Defend Against It

research
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EchoGram: The Hidden Vulnerability Undermining AI Guardrails

research
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Same Model, Different Hat

research
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The Expanding AI Cyber Risk Landscape

research
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The First AI-Powered Cyber Attack

research
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Prompts Gone Viral: Practical Code Assistant AI Viruses

research
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Persistent Backdoors

research
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Visual Input based Steering for Output Redirection (VISOR)

research
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How Hidden Prompt Injections Can Hijack AI Code Assistants Like Cursor

research
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Introducing a Taxonomy of Adversarial Prompt Engineering

Report and Guide
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Securing AI: The Technology Playbook

Report and Guide
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Securing AI: The Financial Services Playbook

Report and Guide
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AI Threat Landscape Report 2025

Report and Guide
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HiddenLayer Named a Cool Vendor in AI Security

Report and Guide
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A Step-By-Step Guide for CISOS

Report and Guide
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AI Threat landscape Report 2024

Report and Guide
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HiddenLayer and Intel eBook

Report and Guide
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Forrester Opportunity Snapshot

news
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HiddenLayer Selected as Awardee on $151B Missile Defense Agency SHIELD IDIQ Supporting the Golden Dome Initiative

news
xx
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HiddenLayer Announces AWS GenAI Integrations, AI Attack Simulation Launch, and Platform Enhancements to Secure Bedrock and AgentCore Deployments

news
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HiddenLayer Joins Databricks’ Data Intelligence Platform for Cybersecurity

news
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HiddenLayer Appoints Chelsea Strong as Chief Revenue Officer to Accelerate Global Growth and Customer Expansion

news
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HiddenLayer Listed in AWS “ICMP” for the US Federal Government

news
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New TokenBreak Attack Bypasses AI Moderation with Single-Character Text Changes

news
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Beating the AI Game, Ripple, Numerology, Darcula, Special Guests from Hidden Layer… – Malcolm Harkins, Kasimir Schulz – SWN #471

news
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All Major Gen-AI Models Vulnerable to ‘Policy Puppetry’ Prompt Injection Attack

news
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One Prompt Can Bypass Every Major LLM’s Safeguards

news
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Cyera and HiddenLayer Announce Strategic Partnership to Deliver End-to-End AI Security

news
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HiddenLayer Unveils AISec Platform 2.0 to Deliver Unmatched Context, Visibility, and Observability for Enterprise AI Security

news
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HiddenLayer AI Threat Landscape Report Reveals AI Breaches on the Rise;

SAI Security Advisory

keras.models.load_model when scanning .h5 files leads to arbitrary code execution

A vulnerability exists inside the unsafe_check_h5 function within the watchtower/src/utils/model_inspector_util.py file. This function runs keras.models.load_model on the .h5 file the user wants to scan for malicious payloads. A maliciously crafted .h5 file will execute its payload when run with keras.models.load_model, allowing for a user’s device to be compromised when scanning a downloaded file.

SAI Security Advisory

Unsafe extraction of NeMo archive leading to arbitrary file write

The _unpack_nemo_file function used by the SaveRestoreConnector class for model loading uses tarfile.extractall() in an unsafe way which can lead to an arbitrary file write when a model is loaded.

SAI Security Advisory

Eval on XML parameters allows arbitrary code execution when loading RAIL file

An arbitrary code execution vulnerability exists inside the parse_token function of the guardrails/guardrails/validatorsattr.py Python file. The vulnerability requires the victim to load a malicious XML guardrails file, allowing an attacker to run arbitrary Python code on the program’s machine when the file is loaded. The vulnerability exists because of the use of an unprotected eval function.

SAI Security Advisory

Web UI renders javascript code in ML Engine name leading to XSS

An attacker authenticated to a MindsDB instance can create an ML Engine, database, project, or upload a dataset within the UI and give it a name (or value in the dataset) containing malicious arbitrary javascript code. Whenever another user enumerates the items within the UI, the malicious arbitrary javascript code will run.

SAI Security Advisory

Pickle Load on inhouse BYOM model finetune leads to arbitrary code execution

A vulnerability exists within the finetune method of the ModelWrapperUnsafe class in the mindsdb/integrations/handlers/byom_handler/byom_handler.py file, which will perform pickle.loads on a custom model built via the Build Your Own Model process. An attacker authenticated to a MindsDB instance can inject a malicious pickle object containing arbitrary code into the BYOM model build process using the ‘Upload Custom Model’ feature. This object will be deserialized when the model is loaded via the ‘finetune’ method; executing the arbitrary code on the server. Note this can only occur if the BYOM engine is changed in the config from the default ‘venv’ to ‘inhouse’.

SAI Security Advisory

Pickle Load on inhouse BYOM model describe query leads to arbitrary code execution

A vulnerability exists within the describe method of the ModelWrapperUnsafe class in the mindsdb/integrations/handlers/byom_handler/byom_handler.py file, which will perform pickle.loads on a custom model built via the Build Your Own Model process. An attacker authenticated to a MindsDB instance can inject a malicious pickle object containing arbitrary code into the BYOM model build process using the ‘Upload Custom Model’ feature. This object will be deserialized when the model is loaded via the ‘describe’ method; executing the arbitrary code on the server. Note this can only occur if the BYOM engine is changed in the config from the default ‘venv’ to ‘inhouse’.

SAI Security Advisory

Pickle Load on inhouse BYOM model prediction leads to arbitrary code execution

A vulnerability exists within the predict method of the ModelWrapperUnsafe class in the mindsdb/integrations/handlers/byom_handler/byom_handler.py file, which will perform pickle.loads on a custom model built via the Build Your Own Model process. An attacker authenticated to a MindsDB instance can inject a malicious pickle object containing arbitrary code into the BYOM model build process using the ‘Upload Custom Model’ feature. This object will be deserialized when the model is loaded via the ‘predict’ method; executing the arbitrary code on the server. Note this can only occur if the BYOM engine is changed in the config from the default ‘venv’ to ‘inhouse’.

SAI Security Advisory

Pickle Load on BYOM model load leads to arbitrary code execution

A vulnerability exists within the decode function of the mindsdb/integrations/handlers/byom_handler/proc_wrapper.py file, which will perform a pickle.loads on a custom model built via the Build Your Own Model process. An attacker authenticated to a MindsDB instance can inject a malicious pickle object containing arbitrary code into the BYOM model build process using the ‘Upload Custom Model’ feature. This object will be deserialized when the model is loaded via a ‘predict’ or ‘describe’ query; executing the arbitrary code on the server.

SAI Security Advisory

Eval on query parameters allows arbitrary code execution in SharePoint integration list item creation

An arbitrary code execution vulnerability exists inside the create_an_item function of the mindsdb/integrations/handlers/sharepoint_handler/sharepoint_api.py file in the Microsoft SharePoint integration. The vulnerability requires the attacker to be authorized on the MindsDB instance and allows them to run arbitrary Python code on the machine the instance is running on. The vulnerability exists because of the use of an unprotected eval function.

SAI Security Advisory

Eval on query parameters allows arbitrary code execution in SharePoint integration site column creation

An arbitrary code execution vulnerability exists inside the create_a_site_column function of the mindsdb/integrations/handlers/sharepoint_handler/sharepoint_api.py file in the Microsoft SharePoint integration. The vulnerability requires the attacker to be authorized on the MindsDB instance and allows them to run arbitrary Python code on the machine the instance is running on. The vulnerability exists because of the use of an unprotected eval function.

SAI Security Advisory

Eval on query parameters allows arbitrary code execution in SharePoint integration list creation

An arbitrary code execution vulnerability exists inside the create_a_list function of the mindsdb/integrations/handlers/sharepoint_handler/sharepoint_api.py file in the Microsoft SharePoint integration. The vulnerability requires the attacker to be authorized on the MindsDB instance and allows them to run arbitrary Python code on the machine the instance is running on. The vulnerability exists because of the use of an unprotected eval function.

SAI Security Advisory

Eval on query parameters allows arbitrary code execution in ChromaDB integration

An arbitrary code execution vulnerability exists inside the insert function of the mindsdb/integrations/handlers/chromadb_handler/chromadb_handler.py file in the ChromaDB integration. The vulnerability requires the attacker to be authorized on the MindsDB instance, and allows them to run arbitrary Python code on the machine the instance is running on. The vulnerability exists because of the use of an unprotected eval function.

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