Comparison Overview
AlwaysOn WiFi

AlwaysOn WiFi
51 Sloane Street, Johannesburg, Gauteng, 2021, ZA
Last Update: 02/02/2026
AlwaysOn is South Africa’s biggest WiFi network provider, with thousands of hotspots to prove it. We’ve been enabling Internet addicts everywhere since 2004. Our goal is to free South Africans from the tyranny of slow line speeds and high data costs. Internet Solutions ...

Akamai Technologies
8 Cambridge Center, Cambridge, MA, US, 02142
Last Update: 28/04/2026
At Akamai, we make life better for billions of people, billions of times a day. Every day, billions of people around the world connect with their favorite brands to shop online, play the latest video games, log into mobile banking apps, learn remotely, share videos wi...
Compliance Ranges Comparison

AlwaysOn WiFi







Akamai Technologies






Benchmark & Cyber Underwriting Signals
Incidents vs Technology, Information and Internet Industry Avg (This Year)
No incidents recorded for AlwaysOn WiFi in 2026.
Incidents vs Technology, Information and Internet Industry Avg (This Year)
Akamai Technologies has 94.17% more incidents than the average of all companies with at least one recorded incident.
Incident History - AlwaysOn WiFi (X = Date, Y = Severity)
AlwaysOn WiFi cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Akamai Technologies (X = Date, Y = Severity)
Akamai Technologies cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

AlwaysOn WiFi

Akamai Technologies
FAQ
Latest Global CVEs
A vulnerability has been found in Dromara lamp-cloud up to 5.10.0. This affects an unknown part of the file DefGenProjectController.java of the component Code Generator. Such manipulation of the argument outputDir/parent/projectPrefix leads to path traversal. It is possible to launch the attack remotely. The exploit has been disclosed to the public and may be used. The project was informed of the problem early through an issue report but has not responded yet.
A vulnerability was detected in Model Context Protocol mcp-rdf-explorer 1.0.0. Affected is the function explore_url of the file src/mcp-rdf-explorer/server.py of the component MCP Server. Performing a manipulation of the argument url results in server-side request forgery. The attack may be initiated remotely. The exploit is now public and may be used. The vendor was contacted early about this disclosure but did not respond in any way.
OpenChoreo is a complete, open-source developer platform for Kubernetes. Prior to 1.0.2 and 1.1.2, internal/cluster-gateway/server.go served caller-facing management APIs on the externally reachable agent listener without authentication, allowing network-reachable attackers to invoke /api/proxy/ and /api/exec/ operations, proxy the data-plane Kubernetes API, and execute commands in workload pods in multi-cluster deployments. This issue is fixed in versions 1.0.2 and 1.1.2.
- https://github.com/openchoreo/openchoreo/commit/047d80ddc63b4b4b9dd67044d5cffcdbd77685ce
- https://github.com/openchoreo/openchoreo/commit/0aa0ffe1623bd8eb4235cb2a5854336695953c3a
- https://github.com/openchoreo/openchoreo/commit/b42eeb0f5dce95195a9781d7c5a1fe9e38f5da8f
- https://github.com/openchoreo/openchoreo/pull/4122
- https://github.com/openchoreo/openchoreo/releases/tag/v1.0.2
- https://github.com/openchoreo/openchoreo/releases/tag/v1.1.2
- https://github.com/openchoreo/openchoreo/security/advisories/GHSA-qh9r-j7rp-4x2m
OpenChoreo is a complete, open-source developer platform for Kubernetes. Prior to 1.0.3, 1.1.3, and 1.2.0-rc.2, internal/cluster-gateway/server.go exposed /api/proxy/, /api/exec/, and /api/wirelogs/ on an internal listener without requiring a client certificate or token, allowing any network-reachable caller to read tenant Kubernetes Secrets, mutate workloads, and execute commands across connected data planes. This issue is fixed in versions 1.0.3, 1.1.3, and 1.2.0-rc.2.
- https://github.com/openchoreo/openchoreo/commit/50fcae3f1753fd0ac3ae655a3fc080a761c49c04
- https://github.com/openchoreo/openchoreo/commit/93e6f10953cfc249af2222ddb6730d4b0a729129
- https://github.com/openchoreo/openchoreo/commit/e3da3c63dcf0895c693cb17ce142ef95e959b62a
- https://github.com/openchoreo/openchoreo/pull/4256
- https://github.com/openchoreo/openchoreo/pull/4258
- https://github.com/openchoreo/openchoreo/pull/4259
- https://github.com/openchoreo/openchoreo/releases/tag/v1.0.3
- https://github.com/openchoreo/openchoreo/releases/tag/v1.1.3
- https://github.com/openchoreo/openchoreo/releases/tag/v1.2.0-rc.2
- https://github.com/openchoreo/openchoreo/security/advisories/GHSA-rh53-xvx2-j327
OpenChoreo is a complete, open-source developer platform for Kubernetes. From 1.2.0-rc.1 until 1.2.0, internal/openchoreo-api/api/handlers/exec.go and internal/openchoreo-api/api/handlers/wirelogs.go authorize component:exec and wirelogs:view using the caller-supplied project query parameter instead of comp.Spec.Owner.ProjectName, allowing a user with a project-scoped grant to execute commands in and read wirelogs from components owned by other projects in the same namespace. This vulnerability is fixed in 1.2.0.