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Stop defaulting to Kubernetes. We analyze the trade-offs between K8s, Swarm, and Nomad for Nordic infrastructure, focusing on overhead, latency, and the critical role of underlying hardware.
Move your LLM applications from fragile local scripts to robust production environments. We analyze the specific infrastructure requirements for LangChain, focusing on reducing RAG latency, handling PII scrubbing under GDPR, and optimizing Nginx for Server-Sent Events.
Most CI/CD bottlenecks aren't code issues; they're infrastructure failures. Learn how to cut build times by 60% using NVMe-backed runners, proper Docker layer caching, and local Norwegian infrastructure.
Garbage collection pauses are the silent killer of p99 latency. Learn how to deploy asynchronous Rust services on KVM-based VPS infrastructure to handle 10k+ requests per second with deterministic performance.
Forget the cloud hype. Real serverless architecture requires robust compute, Schrems II compliance, and zero-latency storage. Here is how to build a private FaaS platform on Oslo-based silicon.
Serverless doesn't have to mean vendor lock-in or GDPR nightmares. Learn how to deploy scalable FaaS patterns using OpenFaaS and K3s on high-performance infrastructure, keeping your data strictly within Norwegian borders.
Serverless doesn't have to mean AWS Lambda. Discover how to build high-performance, GDPR-compliant event-driven architectures on bare-metal VDS using OpenFaaS and KVM, right here in Norway.
Monoliths are safe, but microservices are inevitable at scale. Here is a no-nonsense guide to the architecture patterns that actually work in production, specifically tailored for the Norwegian infrastructure landscape of late 2019.
It is late 2019. The orchestration wars are settling, but the infrastructure battle is just beginning. We benchmark K8s complexity against Swarm simplicity on Norwegian NVMe VPS infrastructure.
Manual deployments are a ticking time bomb. Learn how to implement a 'Git-Driven' workflow using Docker, Jenkins, and KVM virtualization to automate your Nordic infrastructure.
Manual SSH deployments are creating snowflake servers and security risks. Here is how to implement a Git-centric workflow using Jenkins 2.0, Ansible, and Docker to enforce immutable infrastructure on your Norwegian VPS.
Stop praying during 'service restart'. Learn how to implement robust Blue-Green deployments using Nginx and KVM to ensure zero downtime for your Norwegian infrastructure.
Still dragging files via FileZilla? It's time to professionalize your workflow. Learn how to set up Git post-receive hooks for instant, atomic deployments on a Norwegian VPS.
Forget the cloud API trap. Learn how to deploy GDPR-compliant BERT pipelines on high-performance local infrastructure using PyTorch and efficient CPU inference strategies.
Serverless doesn't have to mean yielding control to US tech giants. Learn how to deploy a GDPR-compliant, self-hosted FaaS architecture using OpenFaaS and Docker Swarm on high-performance Norwegian infrastructure.
A battle-hardened comparison of container orchestrators for Norwegian infrastructure. We cut through the hype to analyze latency, complexity, and why your underlying VPS hardware dictates your cluster's survival.
Stop over-engineering. We benchmark Docker Swarm, K3s, and K8s on Norwegian infrastructure to find the balance between complexity and performance. A battle-hardened guide to avoiding orchestration hell.
Stop SSH-ing into production. This guide details battle-tested GitOps workflows using ArgoCD and Kustomize, specifically tailored for strict data compliance (GDPR/Schrems II) and high-performance NVMe infrastructure in Norway.
Physics is the enemy of real-time applications. Learn how to deploy practical Edge Computing architectures using Nginx, WireGuard, and MQTT on local Norwegian infrastructure to slash latency.
Latency isn't just a metric; it's a liability. We explore real-world edge computing use cases in Norway, from IoT data aggregation to GDPR-compliant caching, and why deploying closer to the Norwegian Internet Exchange (NIX) is the smart architectural move.
Don't deploy a service mesh just because it's trendy. We break down the architectural reality of Istio, strict mTLS for GDPR compliance, and why raw infrastructure performance determines whether your mesh heals or kills your latency.
Why round-trip times to Frankfurt are killing your application's responsiveness, and how deploying edge nodes in Oslo solves both latency physics and GDPR headaches.
Microservices were supposed to simplify development, but they complicated operations. Here is a pragmatic, no-nonsense guide to deploying Istio 1.6 without destroying your latency budgets, focusing on the specific infrastructure needs of the Nordic market.
Stop bleeding money on egress fees. Learn how to deploy a production-ready, S3-compatible object storage layer using MinIO on Kubernetes, optimized for local NVMe performance and Norwegian data sovereignty.
Is your Jenkins build queue stalling your release cycle? We analyze the impact of disk I/O on Docker builds, the transition to Jenkins 2.0 pipelines, and why data residency in Norway is critical following the new EU-US Privacy Shield agreement.
Stop over-engineering your infrastructure. We benchmark Kubernetes, K3s, and Docker Swarm on high-performance NVMe VPS to find the pragmatic choice for 2024.
Serverless doesn't mean no servers—it usually means unpredictable bills and cold starts. Discover how to architect a private Serverless platform using K3s and OpenFaaS on high-performance NVMe infrastructure in Norway.
Escape the hyperscaler cost trap and GDPR headaches. Learn how to deploy a private, high-performance serverless architecture using K3s and OpenFaaS on CoolVDS NVMe instances in Oslo.
Stop over-engineering your stack. A battle-hardened comparison of container orchestrators for Norwegian infrastructure, focusing on latency, storage IOPS, and operational reality.
Discover how to conquer the geographic challenges of Norway using edge computing strategies. We dive into kernel tuning, Nginx caching, and why local NVMe storage is non-negotiable for low-latency applications.