topology(1)
topology - machine topology information
As shipped in IRIX 6.5. First release of IRIX 6.5.
NAME topology - machine topology information SYNOPSIS topology DESCRIPTION Machine topology information is extracted from the hardware graph. EXAMPLE When executed on a 16 processor Origin2000 named olympic, the topology command yields: Machine olympic has 16 cpu's, 8 memory nodes, and 4 routers. The cpus are: cpu 0 is /hw/module/1/slot/n1/node/cpu/a cpu 1 is /hw/module/1/slot/n1/node/cpu/b cpu 2 is /hw/module/1/slot/n2/node/cpu/a cpu 3 is /hw/module/1/slot/n2/node/cpu/b cpu 4 is /hw/module/1/slot/n3/node/cpu/a cpu 5 is /hw/module/1/slot/n3/node/cpu/b cpu 6 is /hw/module/1/slot/n4/node/cpu/a cpu 7 is /hw/module/1/slot/n4/node/cpu/b cpu 8 is /hw/module/2/slot/n1/node/cpu/a cpu 9 is /hw/module/2/slot/n1/node/cpu/b cpu 10 is /hw/module/2/slot/n2/node/cpu/a cpu 11 is /hw/module/2/slot/n2/node/cpu/b cpu 12 is /hw/module/2/slot/n3/node/cpu/a cpu 13 is /hw/module/2/slot/n3/node/cpu/b cpu 14 is /hw/module/2/slot/n4/node/cpu/a cpu 15 is /hw/module/2/slot/n4/node/cpu/b The nodes are: /hw/module/1/slot/n1/node /hw/module/1/slot/n2/node /hw/module/1/slot/n3/node /hw/module/1/slot/n4/node /hw/module/2/slot/n1/node /hw/module/2/slot/n2/node /hw/module/2/slot/n3/node /hw/module/2/slot/n4/node The routers are: /hw/module/1/slot/r1/router /hw/module/1/slot/r2/router /hw/module/2/slot/r1/router /hw/module/2/slot/r2/router The topology is defined by: /hw/module/1/slot/n1/node/link -> /hw/module/1/slot/r1/router /hw/module/1/slot/n2/node/link -> /hw/module/1/slot/r1/router /hw/module/1/slot/n3/node/link -> /hw/module/1/slot/r2/router /hw/module/1/slot/n4/node/link -> /hw/module/1/slot/r2/router /hw/module/2/slot/n1/node/link -> /hw/module/2/slot/r1/router /hw/module/2/slot/n2/node/link -> /hw/module/2/slot/r1/router /hw/module/2/slot/n3/node/link -> /hw/module/2/slot/r2/router /hw/module/2/slot/n4/node/link -> /hw/module/2/slot/r2/router /hw/module/1/slot/r1/router/1 -> /hw/module/2/slot/r1/router /hw/module/1/slot/r1/router/4 -> /hw/module/1/slot/n2/node /hw/module/1/slot/r1/router/5 -> /hw/module/1/slot/n1/node /hw/module/1/slot/r1/router/6 -> /hw/module/1/slot/r2/router /hw/module/1/slot/r2/router/1 -> /hw/module/2/slot/r2/router /hw/module/1/slot/r2/router/4 -> /hw/module/1/slot/n4/node /hw/module/1/slot/r2/router/5 -> /hw/module/1/slot/n3/node /hw/module/1/slot/r2/router/6 -> /hw/module/1/slot/r1/router /hw/module/2/slot/r1/router/1 -> /hw/module/1/slot/r1/router /hw/module/2/slot/r1/router/4 -> /hw/module/2/slot/n2/node /hw/module/2/slot/r1/router/5 -> /hw/module/2/slot/n1/node /hw/module/2/slot/r1/router/6 -> /hw/module/2/slot/r2/router /hw/module/2/slot/r2/router/1 -> /hw/module/1/slot/r2/router /hw/module/2/slot/r2/router/4 -> /hw/module/2/slot/n4/node /hw/module/2/slot/r2/router/5 -> /hw/module/2/slot/n3/node /hw/module/2/slot/r2/router/6 -> /hw/module/2/slot/r1/router SEE ALSO hinv(1), hwgraph(4)