The extended Q1 2026 assessment of threats affecting Africa’s financial infrastructure, telecommunications networks, government systems, and critical services.
Download publication ↗POWERED BY OLLANDI 5 PREVIEW · CONTROLLED CYBER DEFENSE
See the threat.
Understand its reach.
Contain it safely.
Powered by Ollandi 5 Preview, Glemad’s latest security reasoning model, Ollandi helps operators understand cross-domain infrastructure incidents, choose a controlled response, and preserve the evidence behind every decision.
THE OPERATING PROBLEM
Attackers cross domains.
Ollandi reasons across them.
Cloud, identity, endpoint, runtime, network, and private-infrastructure tools each see part of an attack. Ollandi connects their security state into one live threat picture.
It determines likely intent and reach, proposes the smallest effective containment action, checks policy and blast radius, and verifies the result.
Continuous visibility across infrastructure domains.
DIPs monitor live domain state and preserve source, time, ownership, change, and dependency context. Ollandi connects those observations into one developing incident.
Explore DIPs ↗Threat hypotheses, not another alert queue.
Ollandi tests legitimate change, operational drift, and malicious activity as competing explanations. It shows supporting evidence, conflicting evidence, confidence, affected assets, and likely consequence.
Explore threat reasoning ↗Containment checked before it reaches infrastructure.
Every proposed action is checked against authority, confidence, policy, blast radius, service dependency, and reversibility. Low-impact actions can be permitted; high-impact actions stay with people.
Explore controlled response ↗The incident closes with evidence, not assumption.
Ollandi verifies whether the action changed the threat and service state, supports rollback when required, and preserves observations, reasoning, constraints, approvals, actions, and outcomes.
Explore continuous evidence ↗Recognizable security capabilities. Connected by one defense loop.
Start with the monitoring and security domains your environment requires. Each DIP states exactly what it monitors, detects, explains, and enables.
Cloud DIP
Monitor cloud control planes, identities, resources, posture, and exposure as one changing security state.
↗02Identity securityIdentity DIP
Monitor human and machine identity, sessions, credentials, privilege, and access behavior across infrastructure.
↗03Workload and runtime securityRuntime DIP
Monitor live workload execution and connect process behavior to images, deployments, identities, network paths, and services.
↗04Network securityNetwork DIP
Monitor communication paths, segmentation, service reach, and movement across cloud, campus, data center, and hybrid networks.
↗05Endpoint securityEndpoint DIP
Monitor endpoint processes, users, files, software changes, connections, and device health in wider infrastructure context.
↗06On-premises infrastructure securityOn-premises DIP
Monitor private infrastructure, directories, virtualization, storage, databases, configuration, and hybrid dependencies.
↗07ATM estate monitoringATM DIP
Monitor ATM availability, dispensing, cash, hardware, communications, security events, vendors, and service obligations.
↗Intelligence and research for the people responsible for what happens next.
A production architecture for security-native, policy-bounded autonomous defense intelligence across hybrid infrastructure.
Download publication ↗A guide for Nigerian financial institutions navigating data residency, continuous monitoring, infrastructure security, and the CBN regulatory framework.
Download publication ↗Foundational research in continuous threat interpretation, constrained authority, and evidence-preserving defense that informed the Ollandi model class.
Download publication ↗Foundational work on coordinating specialized defense capabilities across infrastructure domains, now incorporated and advanced within the Ollandi model class.
Download publication ↗Long-form analysis connecting security research, operating reality, regional context, and the design of defensible cyber systems.
Download publication ↗