10000,
};
+static __u64 event_res[MAX_COUNTERS][3];
+static __u64 event_scaled[MAX_COUNTERS];
+
static void create_perfstat_counter(int counter)
{
struct perf_counter_hw_event hw_event;
}
/*
- * Print out the results of a single counter:
+ * Read out the results of a single counter:
*/
-static void print_counter(int counter)
+static void read_counter(int counter)
{
- __u64 count[3], single_count[3];
+ __u64 *count, single_count[3];
ssize_t res;
int cpu, nv;
int scaled;
+ count = event_res[counter];
+
count[0] = count[1] = count[2] = 0;
+
nv = scale ? 3 : 1;
for (cpu = 0; cpu < nr_cpus; cpu ++) {
res = read(fd[cpu][counter], single_count, nv * sizeof(__u64));
scaled = 0;
if (scale) {
if (count[2] == 0) {
- fprintf(stderr, " %14s %-20s\n",
- "<not counted>", event_name(counter));
+ event_scaled[counter] = -1;
+ count[0] = 0;
return;
}
+
if (count[2] < count[1]) {
- scaled = 1;
+ event_scaled[counter] = 1;
count[0] = (unsigned long long)
((double)count[0] * count[1] / count[2] + 0.5);
}
}
+}
+
+/*
+ * Print out the results of a single counter:
+ */
+static void print_counter(int counter)
+{
+ __u64 *count;
+ int scaled;
+
+ count = event_res[counter];
+ scaled = event_scaled[counter];
+
+ if (scaled == -1) {
+ fprintf(stderr, " %14s %-20s\n",
+ "<not counted>", event_name(counter));
+ return;
+ }
if (nsec_counter(counter)) {
double msecs = (double)count[0] / 1000000;
argv[0]);
fprintf(stderr, "\n");
+ for (counter = 0; counter < nr_counters; counter++)
+ read_counter(counter);
+
for (counter = 0; counter < nr_counters; counter++)
print_counter(counter);