* skip non-present cpus
*/
+#define PER_THREAD_PARAMS struct thread_data *t, struct core_data *c, struct pkg_data *p
+
int for_all_cpus(int (func) (struct thread_data *, struct core_data *, struct pkg_data *),
struct thread_data *thread_base, struct core_data *core_base, struct pkg_data *pkg_base)
{
return retval;
}
-int is_cpu_first_thread_in_core(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int is_cpu_first_thread_in_core(PER_THREAD_PARAMS)
{
UNUSED(p);
return ((int)t->cpu_id == c->base_cpu || c->base_cpu < 0);
}
-int is_cpu_first_core_in_package(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int is_cpu_first_core_in_package(PER_THREAD_PARAMS)
{
UNUSED(c);
return ((int)t->cpu_id == p->base_cpu || p->base_cpu < 0);
}
-int is_cpu_first_thread_in_package(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int is_cpu_first_thread_in_package(PER_THREAD_PARAMS)
{
return is_cpu_first_thread_in_core(t, c, p) && is_cpu_first_core_in_package(t, c, p);
}
outp += sprintf(outp, "\n");
}
-int dump_counters(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int dump_counters(PER_THREAD_PARAMS)
{
int i;
struct msr_counter *mp;
/*
* column formatting convention & formats
*/
-int format_counters(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int format_counters(PER_THREAD_PARAMS)
{
static int count;
outp = output_buffer;
}
-void format_all_counters(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+void format_all_counters(PER_THREAD_PARAMS)
{
static int count;
c->unit = RAPL_UNIT_INVALID;
}
-void clear_counters(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+void clear_counters(PER_THREAD_PARAMS)
{
int i;
struct msr_counter *mp;
dst->raw_value += src->raw_value;
}
-int sum_counters(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int sum_counters(PER_THREAD_PARAMS)
{
int i;
struct msr_counter *mp;
* sum the counters for all cpus in the system
* compute the weighted average
*/
-void compute_average(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+void compute_average(PER_THREAD_PARAMS)
{
int i;
struct msr_counter *mp;
return NULL;
}
-int get_cstate_counters(unsigned int cpu, struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int get_cstate_counters(unsigned int cpu, PER_THREAD_PARAMS)
{
/*
* Overcommit memory a little bit here,
* migrate to cpu
* acquire and record local counters for that cpu
*/
-int get_counters(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int get_counters(PER_THREAD_PARAMS)
{
int cpu = t->cpu_id;
unsigned long long msr;
timer_t timerid;
/* Timer callback, update the sum of MSRs periodically. */
-static int update_msr_sum(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+static int update_msr_sum(PER_THREAD_PARAMS)
{
int i, ret;
int cpu = t->cpu_id;
* print_epb()
* Decode the ENERGY_PERF_BIAS MSR
*/
-int print_epb(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int print_epb(PER_THREAD_PARAMS)
{
char *epb_string;
int cpu, epb;
* print_hwp()
* Decode the MSR_HWP_CAPABILITIES
*/
-int print_hwp(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int print_hwp(PER_THREAD_PARAMS)
{
unsigned long long msr;
int cpu;
/*
* print_perf_limit()
*/
-int print_perf_limit(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int print_perf_limit(PER_THREAD_PARAMS)
{
unsigned long long msr;
int cpu;
return 0;
}
-int print_rapl(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int print_rapl(PER_THREAD_PARAMS)
{
unsigned long long msr;
const char *msr_name;
* below this value, including the Digital Thermal Sensor (DTS),
* Package Thermal Management Sensor (PTM), and thermal event thresholds.
*/
-int set_temperature_target(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int set_temperature_target(PER_THREAD_PARAMS)
{
unsigned long long msr;
unsigned int tcc_default, tcc_offset;
return 0;
}
-int print_thermal(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int print_thermal(PER_THREAD_PARAMS)
{
unsigned long long msr;
unsigned int dts, dts2;
for_all_cpus(print_thermal, ODD_COUNTERS);
}
-int get_cpu_type(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int get_cpu_type(PER_THREAD_PARAMS)
{
unsigned int eax, ebx, ecx, edx;
err(-1, "calloc %d NMI", topo.max_cpu_num + 1);
}
-int update_topo(struct thread_data *t, struct core_data *c, struct pkg_data *p)
+int update_topo(PER_THREAD_PARAMS)
{
topo.allowed_cpus++;
if ((int)t->cpu_id == c->base_cpu)