struct compute_stats {
struct stats lcl_hitm;
struct stats rmt_hitm;
+ struct stats lcl_peer;
+ struct stats rmt_peer;
struct stats load;
};
init_stats(&c2c_he->cstats.lcl_hitm);
init_stats(&c2c_he->cstats.rmt_hitm);
+ init_stats(&c2c_he->cstats.lcl_peer);
+ init_stats(&c2c_he->cstats.rmt_peer);
init_stats(&c2c_he->cstats.load);
return &c2c_he->he;
update_stats(&cstats->rmt_hitm, weight);
else if (stats->lcl_hitm)
update_stats(&cstats->lcl_hitm, weight);
+ else if (stats->rmt_peer)
+ update_stats(&cstats->rmt_peer, weight);
+ else if (stats->lcl_peer)
+ update_stats(&cstats->lcl_peer, weight);
else if (stats->load)
update_stats(&cstats->load, weight);
}
MEAN_ENTRY(mean_rmt_entry, rmt_hitm);
MEAN_ENTRY(mean_lcl_entry, lcl_hitm);
MEAN_ENTRY(mean_load_entry, load);
+MEAN_ENTRY(mean_rmt_peer_entry, rmt_peer);
+MEAN_ENTRY(mean_lcl_peer_entry, lcl_peer);
static int
cpucnt_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
.width = 8,
};
+static struct c2c_dimension dim_mean_rmt_peer = {
+ .header = HEADER_SPAN("---------- cycles ----------", "rmt peer", 2),
+ .name = "mean_rmt_peer",
+ .cmp = empty_cmp,
+ .entry = mean_rmt_peer_entry,
+ .width = 8,
+};
+
+static struct c2c_dimension dim_mean_lcl_peer = {
+ .header = HEADER_SPAN_LOW("lcl peer"),
+ .name = "mean_lcl_peer",
+ .cmp = empty_cmp,
+ .entry = mean_lcl_peer_entry,
+ .width = 8,
+};
+
static struct c2c_dimension dim_cpucnt = {
.header = HEADER_BOTH("cpu", "cnt"),
.name = "cpucnt",
&dim_node,
&dim_mean_rmt,
&dim_mean_lcl,
+ &dim_mean_rmt_peer,
+ &dim_mean_lcl_peer,
&dim_mean_load,
&dim_cpucnt,
&dim_srcline,