Abstract:
A management node of a server maintains a database of configuration parameters that stores the individual configuration parameters for each compute node. In response to a boot request at a compute node, a configuration parameter control module at the node intercepts locally targeted requests to load configuration parameters. The configuration parameter module sends the requests to the management node and in response the management node sends configuration parameters responsive to the requests. The configuration parameter module provides the configuration parameters to the compute node, thereby emulating a local boot memory for the compute node.
Abstract:
A management node of a server maintains a database of configuration parameters that stores the individual configuration parameters for each compute node. In response to a boot request at a compute node, a configuration parameter control module at the node intercepts locally targeted requests to load configuration parameters. The configuration parameter module sends the requests to the management node and in response the management node sends configuration parameters responsive to the requests. The configuration parameter module provides the configuration parameters to the compute node, thereby emulating a local boot memory for the compute node.
Abstract:
A cluster computer server is configured after a system reset or other configuration event. Each node of a fabric of the cluster compute server is employed, for purposes of configuration, as a cell in a cellular automaton, thereby obviating the need for a special configuration network to communicate configuration information from a central management unit. Instead, the nodes communicate configuration information using the same fabric interconnect that is used to communicate messages during normal execution of software services at the nodes.
Abstract:
A cluster computer server is configured after a system reset or other configuration event. Each node of a fabric of the cluster compute server is employed, for purposes of configuration, as a cell in a cellular automaton, thereby obviating the need for a special configuration network to communicate configuration information from a central management unit. Instead, the nodes communicate configuration information using the same fabric interconnect that is used to communicate messages during normal execution of software services at the nodes.
Abstract:
Each compute node of a cluster compute server generates and maintains route information for routing messages to other nodes of the server. Each compute node identifies the other nodes connected to a fabric interconnect and generates, based on a set of routing constraints, routes to each of the other nodes. Each compute node communicates messages to other nodes of the server via the generated routes. Because the routes are generated at each compute node the processing load to generate the routes is distributed among the compute nodes.
Abstract:
Each compute node of a cluster compute server generates and maintains route information for routing messages to other nodes of the server. Each compute node identifies the other nodes connected to a fabric interconnect and generates, based on a set of routing constraints, routes to each of the other nodes. Each compute node communicates messages to other nodes of the server via the generated routes. Because the routes are generated at each compute node the processing load to generate the routes is distributed among the compute nodes.