CPU_READY
} else if ((c.cpu_flags & (CPU_READY | CPU_OFFLINE)) != CPU_READY) {
((cpu_flags & (CPU_READY | CPU_OFFLINE)) != CPU_READY));
((cpu_flags & (CPU_READY | CPU_OFFLINE)) == CPU_READY));
else if ((flags & (CPU_READY | CPU_OFFLINE)) != CPU_READY)
if ((cp->cpu_flags & (CPU_QUIESCED | CPU_READY)) != CPU_READY) {
else if ((cp->cpu_flags & CPU_READY) == 0)
cp->cpu_flags &= ~CPU_READY;
cp->cpu_flags |= CPU_READY;
printf("#define\tCPU_READY 0x%x\n", CPU_READY);
is_ready = (cp->cpu_flags & CPU_READY) && cpupm_cstate_ready(cp);
is_ready = (cp->cpu_flags & CPU_READY) && cpupm_throttle_ready(cp);
CPU->cpu_flags = CPU_READY | CPU_RUNNING | CPU_EXISTS | CPU_ENABLE;
ASSERT((cp->cpu_flags & CPU_READY) == 0);
cp->cpu_flags |= CPU_RUNNING | CPU_READY | CPU_EXISTS;
ASSERT((cpup->cpu_flags & CPU_READY) == 0);
ASSERT((cpup->cpu_flags & CPU_READY) == 0);
if (BT_TEST(set, CPU->cpu_id) && (CPU->cpu_flags & CPU_READY) &&
if (cpup == NULL || !(cpup->cpu_flags & CPU_READY))
if (cpup == NULL || !(cpup->cpu_flags & CPU_READY))
if (cpup == NULL || !(cpup->cpu_flags & CPU_READY) ||
if (cpu[c] == NULL || !(cpu[c]->cpu_flags & CPU_READY))
if (!(cpu[CPU->cpu_id]->cpu_flags & CPU_READY))
~(CPU_RUNNING | CPU_READY | CPU_EXISTS | CPU_ENABLE);
cp->cpu_flags |= CPU_EXISTS | CPU_READY | CPU_RUNNING;
!(cpu->cpu_flags & CPU_READY)) {
if ((cp->cpu_flags & (CPU_READY | CPU_OFFLINE)) != CPU_READY) {
printf("#define\tCPU_READY %d\n", CPU_READY);
cp->cpu_flags |= CPU_READY; /* ready */
cp->cpu_flags |= CPU_RUNNING | CPU_READY | CPU_EXISTS
cp->cpu_flags &= ~CPU_READY;
CPU->cpu_flags |= (CPU_READY | CPU_ENABLE | CPU_EXISTS);
cpu[i]->cpu_flags &= ~CPU_READY;
cpu[i]->cpu_flags &= ~CPU_READY;
cpu[i]->cpu_flags &= ~CPU_READY;