Public-source research
Vendor evidence
Review what vendors say publicly, the exact quoted source text, the security requirement each statement may support, and what still needs verification.
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Evidence records1280
Source checked863
Needs verification0
Source captured0
No supporting claim found411
Excluded from evidence6
Zenity claims continuous discovery, inventory, ownership, configuration, permission, dependency, behavior, policy, posture, graph, incident, and audit governance across software as a service (SaaS)-managed, home-grown, and device-based AI agents.
Security teams gain clear visibility into agent ownership, configurations, permissions, dependencies, and runtime behavior.
Related framework references (5)
Zenity platform materials reviewed did not provide a public customer-facing product claim for automated adversarial testing, repeatable attack suites, model or agent red teaming, or release-gate evaluation.
No quoted source text is recorded for this claim.
Related framework references (5)
Zenity claims pre-session evaluation of Claude configurations, Model Context Protocol (MCP) servers, skills, plugins, and agent extensions plus dependency and attack-path mapping across agents, tools, knowledge, automations, triggers, and actions.
Zenity evaluates Claude configuration, MCP servers, skills, plugins, and other agent extensions before sessions begin.
Related framework references (5)
Zenity claims real-time inline protection and policy enforcement over agent execution, application programming interface (API) calls, tools, prompts, memory, sensitive data, credentials, commands, and multi-step behavior across software as a service (SaaS), cloud, and endpoints.
Run-time security capabilities provide real-time, inline protection against runtime threats.
Related framework references (5)
Zenity claims ownership, identity relationship, permission, tool-access, and execution-path mapping with policy enforcement against over-privileged agents, unauthorized application programming interface (API) calls, restricted-data access, and privilege escalation.
Know which agents exist, who owns them, what they can access, and how they behave across your environment.
Related framework references (5)
Zenity claims lifecycle visibility, posture evaluation, and runtime enforcement for Claude Code and device-based coding agents across code changes, commits, pull requests, configurations, Model Context Protocol (MCP) servers, skills, plugins, commands, credentials, files, tools, and memory.
Zenity's agent security platform deliver[s] full-lifecycle visibility, posture management, and runtime enforcement across Claude Code, Cowork, and Chat.
Related framework references (5)
Zenity platform materials reviewed did not provide a public product claim for AI usage-cost attribution, token or spend metrics, budgets, chargeback, or cost-aware model routing.
No quoted source text is recorded for this claim.
Related framework references (5)
Zenity claims full inventory and attribution of AI agents across platforms, including creators, tools, accessed systems, roles, permissions, runtime activity, and shadow AI.
Zenity provides full inventory and attribution of AI agents across platforms including who created them, what tools they use, and what systems they access. You can drill into user roles, permissions, and runtime activity to track usage and uncover shadow AI.
Related framework references (5)
Zenity claims coverage spans software as a service (SaaS), home-grown agentic platforms, and end-user devices.
Security and governance across all environments - SaaS, home-grown agentic platforms (Cloud), and end-user devices (Endpoint) - with unified visibility, policy control, and threat prevention.
Related framework references (5)
Zenity claims full-stack observability for approved and shadow AI, including inventory, owners, prompts, actions, and runtime activity.
Know which agents exist, who owns them, what they can access, and how they behave across your environment.
Related framework references (5)
Zenity claims intent-based detection examines execution paths, including tool calls, memory access, data usage, and control flow, to identify malicious or unintended outcomes.
By examining the full execution path - including tool calls, memory access, data usage, and control flow - Zenity identifies malicious or unintended outcomes even when inputs look harmless. This intent-focused approach exposes attacks that prompt-based firewalls miss.
Related framework references (5)
Zenity claims it identifies when AI agents access or expose sensitive data and lets teams flag, redact, or block unsafe behavior.
Zenity identifies when AI agents access or expose PHI, PII, PCI, or hardcoded secrets
Related framework references (5)
Zenity claims it monitors step-level agent execution and enforces inline controls to stop unsafe actions.
Monitor step-level agent execution, correlate behavior with context, and enforce inline controls to stop unsafe actions before they impact the business
Related framework references (5)
Zenity claims Model Context Protocol (MCP) server and tool-call governance with runtime visibility, policy enforcement, and protection against risky agent activity.
See and Stop Agent Risk at Runtime
Related framework references (5)
Zenity claims visibility into AI-agent ownership, permissions, integrations, access paths, and least-privilege posture.
ownership, permissions, integrations, and runtime behavior
Related framework references (5)
Zenity claims AI security coverage across user devices, software as a service (SaaS)-managed copilots, and enterprise AI environments.
Security and governance across all environments - SaaS, home-grown agentic platforms (Cloud), and end-user devices (Endpoint) - with unified visibility, policy control, and threat prevention.
Related framework references (5)
Zenity claims it monitors step-level agent execution, correlates behavior with context, and enforces inline controls to stop unsafe actions.
Monitor step-level agent execution, correlate behavior with context, and enforce inline controls to stop unsafe actions
Related framework references (5)
No public claim found for this capability.
No quoted source text is recorded for this claim.
Related framework references (2)
No public claim found for this capability.
No quoted source text is recorded for this claim.
Related framework references (5)