Our tailor-made hosting solutions are perfect for both ordinary users and businesses who are looking for reliability and high standards. Our main goal is to ensure that our services are available and fast. To achieve this goal, we work with the best data centres around the world, specifically Tier 2 & Tier 3. Our users can access dedicated servers in the United States and Canada, as well as the Netherlands, Poland and more than 17 other locations.
Our clients choose us for our flexible payment options, affordable pricing plans and quick technical support. All of our VPS nodes are virtualized with KVM and come with a 1 Gbps port. Several also have 10 Gbps ports. All of our data centres are carrier-neutral so we have multiple uplinks at each location.
We only offer modern servers from Dell, SuperMicro and HP. We use Juniper and Cisco for the network part. We are always expanding our reach, and we would love to be your long-term partner.
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Dragonfly serves as a seamless substitute for Redis, offering enhanced performance while reducing costs. It is specifically engineered to harness the capabilities of contemporary cloud infrastructure, catering to the data requirements of today’s applications, thereby liberating developers from the constraints posed by conventional in-memory data solutions. Legacy software cannot fully exploit the advantages of modern cloud technology. With its optimization for cloud environments, Dragonfly achieves an impressive 25 times more throughput and reduces snapshotting latency by 12 times compared to older in-memory data solutions like Redis, making it easier to provide the immediate responses that users demand. The traditional single-threaded architecture of Redis leads to high expenses when scaling workloads. In contrast, Dragonfly is significantly more efficient in both computation and memory usage, potentially reducing infrastructure expenses by up to 80%. Initially, Dragonfly scales vertically, only transitioning to clustering when absolutely necessary at a very high scale, which simplifies the operational framework and enhances system reliability. Consequently, developers can focus more on innovation rather than infrastructure management.
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Monkey Server
Monkey serves as a lightweight yet robust web server and development stack tailored for Linux and OSX systems. It is engineered for exceptional scalability while maintaining minimal memory and CPU usage, making it an ideal choice for embedded devices. Designed to operate on ARM, x86, and x64 architectures, Monkey not only excels in lightweight applications but also provides a scalable solution suitable for high-performance production servers. With a primary focus on embedded systems, its architecture ensures efficient resource management, promoting low consumption rates. The server employs a hybrid approach that combines a fixed number of threads, each capable of servicing thousands of clients through an event-driven model utilizing asynchronous sockets. Furthermore, the lock-free interaction between the scheduler and worker threads significantly enhances performance, reducing the likelihood of race conditions and establishing Monkey as a superior alternative among web server options. This unique design and capability make Monkey not just a practical solution for embedded devices but also a formidable contender for handling demanding server environments.
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quark
This project's primary aim is to excel in a singular task: effectively serving static web directories. Many existing solutions tend to be overly complicated with features like CGI support and reliance on third-party libraries, or they fall short by lacking essential functionalities such as TLS, virtual hosts, or support for partial content. Quark seeks to strike a balance by focusing solely on static content while still incorporating advanced features typically found in more cumbersome alternatives, all while prioritizing security through methods such as chroot, privilege dropping, and strict parsing without dynamic memory allocation. We maintain that the majority of the web can operate without dynamic components, arguing that the escalating complexity of server-side applications significantly contributes to the web's growing inefficiency. In contemporary practices, the trend leans towards handling everything server-side, from parsing requests to altering files and databases, and generating HTML, often using inappropriate languages like PHP or JavaScript, which leads to significant security vulnerabilities and inefficiencies. By simplifying these processes, we aim to create a more streamlined and secure web environment.
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