* Returns zero if CPU booted OK, else error code from wakeup_secondary_cpu.
*/
{
- unsigned long boot_error;
+ unsigned long boot_error = 0;
int timeout;
unsigned long start_eip;
unsigned short nmi_high = 0, nmi_low = 0;
};
INIT_WORK(&c_idle.work, do_fork_idle);
- /*
- * Save current MTRR state in case it was changed since early boot
- * (e.g. by the ACPI SMI) to initialize new CPUs with MTRRs in sync:
- */
- mtrr_save_state();
+ alternatives_smp_switch(1);
c_idle.idle = get_idle_for_cpu(cpu);
/* start_eip had better be page-aligned! */
start_eip = setup_trampoline();
- alternatives_smp_switch(1);
-
/* So we see what's up */
printk("Booting processor %d/%d ip %lx\n", cpu, apicid, start_eip);
/* Stack for startup_32 can be just as for start_secondary onwards */
store_NMI_vector(&nmi_high, &nmi_low);
smpboot_setup_warm_reset_vector(start_eip);
+ /*
+ * Be paranoid about clearing APIC errors.
+ */
+ apic_write(APIC_ESR, 0);
+ apic_read(APIC_ESR);
+
/*
* Starting actual IPI sequence...
return -EINVAL;
}
+ /*
+ * Save current MTRR state in case it was changed since early boot
+ * (e.g. by the ACPI SMI) to initialize new CPUs with MTRRs in sync:
+ */
+ mtrr_save_state();
+
per_cpu(cpu_state, cpu) = CPU_UP_PREPARE;
__smp_prepare_cpu(cpu);
*/
static int __cpuinit do_boot_cpu(int cpu, int apicid)
{
- unsigned long boot_error;
+ unsigned long boot_error = 0;
int timeout;
unsigned long start_rip;
struct create_idle c_idle = {
apic_write(APIC_ESR, 0);
apic_read(APIC_ESR);
- /*
- * Status is now clean
- */
- boot_error = 0;
-
/*
* Starting actual IPI sequence...
*/
print_cpu_info(&cpu_data(cpu));
} else {
boot_error = 1;
- if (*((volatile unsigned char *)phys_to_virt(SMP_TRAMPOLINE_BASE))
+ if (*((volatile unsigned char *)trampoline_base)
== 0xA5)
/* trampoline started but...? */
printk("Stuck ??\n");
cpu_clear(cpu, cpu_present_map);
cpu_clear(cpu, cpu_possible_map);
per_cpu(x86_cpu_to_apicid, cpu) = BAD_APICID;
- return -EIO;
}
- return 0;
+ /* mark "stuck" area as not stuck */
+ *((volatile unsigned long *)trampoline_base) = 0;
+
+ return boot_error;
}
cycles_t cacheflush_time;