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Many vendors will bring a network-first approach to solving a ‘secure, multi-cloud network’. These certainly include vendors like Aviatrix and F5. Following first principles, a network’s purpose is to convey data packets from a sender address to a recipient address. You cannot secure them, only isolate them. ‘Secure network’ is an oxymoron, and so we can only say ‘secure, multi-cloud network’ with a hint of sarcasm. It is short-sighted to suggest that the application and its data are secured because the network is secure. Distributed networks using the public internet expose the application server to network-borne attacks – e.g., leveraging a known vulnerability to intrude, denial of service by abusing the login mechanism, and the inevitable future zero-day exploits. This is part of the reason why cyber-crime is a trillion-dollar drag on the global economy, and surveillance techniques known as scan-and-exploit have become the No. 1 attack vector for cybercriminals. It’s quite simply the easiest way to gain an intrusive foothold.
For this reason, many superclouds and applications state, ‘we don’t control secure networking – that’s our customer’s job’. Snowflake, for example, give this responsibility to their customers. The below illustrates the many layers of infrastructure that must align to deliver the Snowflake supercloud to the user. This is a picture of fragility, rigidity, and complexity in the name of security, but with many hidden costs, not the least of which is business velocity. Bolted-on solutions limit business velocity because they introduce handoffs, interfaces, and third parties. This is why the current shared-responsibility cybersecurity model doesn’t work, asymmetrically favors the cyber attacker, and ultimately offloads responsibility for securing the supercloud to the end-user.