Containerized service scheduling framework and elastic scheduling algorithm
A scheduling algorithm and container technology, applied in the direction of instruments, computing, multi-programming devices, etc., can solve problems such as poor flexibility, low service scalability, and low distribution efficiency
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[0052] refer to figure 1 , is the first embodiment of the present invention. This embodiment provides a containerized service scheduling framework and an elastic scheduling algorithm. The containerized service scheduling framework and the elastic scheduling algorithm include: figure 1 As shown, the overall architecture adopts a distributed master / slave architecture, and the master node acts as the control center of the entire cluster and is mainly responsible for resource allocation, scheduling, and recovery. All slave nodes are used as resource pools, as partition objects of the master node. All nodes use virtual machines, and multiple virtual machines ensure the availability of nodes and minimize the possibility of node failure. All nodes in the entire architecture run as containers through the Docker engine. The cluster storage uses the distributed database etcd to store metadata and the expected and current status of all resources in a highly available key-value storage ...
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