get_cycles
#define get_cycles get_cycles
#define random_get_entropy() (((unsigned long)get_cycles()) ?: random_get_entropy_fallback())
cycles_t start = get_cycles();
while ((get_cycles() - start) < cycles)
#define get_cycles get_cycles
choose_random_kstack_offset(get_cycles());
init_offset = get_cycles();
init_offset = -(get_cycles() - csr_read(LOONGARCH_CSR_CNTC));
*v = get_cycles() + vcpu->kvm->arch.time_offset;
vcpu->kvm->arch.time_offset = (signed long)(v - get_cycles());
u64 t0 = get_cycles();
while ((unsigned long)(get_cycles() - t0) < cycles)
#define get_cycles get_cycles
extern cycles_t get_cycles(void);
#define get_cycles get_cycles
#define random_get_entropy() (((unsigned long)get_cycles()) ?: random_get_entropy_fallback())
EXPORT_SYMBOL(get_cycles);
cycles_t start = get_cycles();
while ((get_cycles() - start) < cycles)
#define get_cycles get_cycles
#define get_cycles get_cycles
initcount = get_cycles();
*timer_value = get_cycles();
cycles_t start = get_cycles();
while ((get_cycles() - start) < cycles)
#define get_cycles get_cycles
cr16_seed = get_cycles();
return get_cycles();
return get_cycles();
#define get_cycles get_cycles
cycles_t resume_time = get_cycles();
csa->suspend_time = get_cycles();
#define get_cycles get_cycles
return get_cycles();
#define get_cycles get_cycles
return get_cycles();
lo = get_cycles();
*timer_val = get_cycles();
u64 t0 = get_cycles();
while ((unsigned long)(get_cycles() - t0) < cycles)
#define get_cycles get_cycles
#define get_cycles get_cycles
t1 = get_cycles();
t2 = get_cycles();
tsc = t1 = t2 = get_cycles();
t2 = get_cycles();
tsc = get_cycles();
*deltap = get_cycles() - prev_tsc;
start = get_cycles();
end = get_cycles();
start = get_cycles();
end = get_cycles();
start = get_cycles();
end = get_cycles();
start = get_cycles();
end = get_cycles();
start = get_cycles();
end = get_cycles();
start = get_cycles();
end = get_cycles();
cycles_t start_time = get_cycles();
(DMAR_OPERATION_TIMEOUT > (get_cycles() - start_time)))
cycles_t start_time = get_cycles(); \
if (DMAR_OPERATION_TIMEOUT < (get_cycles() - start_time))\
unsigned long start_time = get_cycles();
if (GRU_OPERATION_TIMEOUT < (get_cycles() - start_time)) {
start_time = get_cycles();
update_mcs_stats(opc, get_cycles() - start_time);
memset(buf1, get_cycles() & 255, sizeof(buf1));
#define gru_random() get_cycles()
_x = get_cycles(); \
_y = get_cycles(); \
x = (unsigned int)get_cycles(); \
cycles_t now = get_cycles();
txdata->idle += get_cycles() - txdata->last_idle;
txdata->idle += get_cycles() - txdata->last_idle;
txdata->last_idle = get_cycles();
txdata->last_idle = get_cycles();
txdata->idle += get_cycles() - txdata->last_idle;
cycle = get_cycles();
cycle = get_cycles();
start_cycles = get_cycles();
end_cycles = get_cycles();
start_cycles = get_cycles();
end_cycles = get_cycles();
unsigned long long period = get_cycles();
period = get_cycles() - period;
#ifndef get_cycles
#ifdef get_cycles
#define random_get_entropy() ((unsigned long)get_cycles())
per_cpu(kcsan_rand_state, cpu) = (u32)get_cycles();
cycles = get_cycles();
cycles = get_cycles() - cycles;
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
time1 = get_cycles();
time2 = get_cycles();
t->start = get_cycles();
t->stop = get_cycles();
per_cpu(prng_state, cpu) = (u32)get_cycles();
get_cycles() % 1024 > s->remote_node_defrag_ratio)
get_cycles() % 1024 > s->remote_node_defrag_ratio)
t->cycles = get_cycles();