* (unsigned long)idle->thread_info the gp
* assumes a 1:1 mapping of TC => VPE
*/
-void prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
struct thread_info *gp = task_thread_info(idle);
dvpe();
evpe(EVPE_ENABLE);
}
-void prom_init_secondary(void)
+void __cpuinit prom_init_secondary(void)
{
/* Enable per-cpu interrupts */
(STATUSF_IP0 | STATUSF_IP1 | STATUSF_IP6 | STATUSF_IP7));
}
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
write_c0_compare(read_c0_count() + (8* mips_hpt_frequency/HZ));
* Platform "CPU" startup hook
*/
-void prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
smtc_boot_secondary(cpu, idle);
}
* Post-config but pre-boot cleanup entry point
*/
-void prom_init_secondary(void)
+void __cpuinit prom_init_secondary(void)
{
void smtc_init_secondary(void);
int myvpe;
* SMP initialization finalization entry point
*/
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
smtc_smp_finish();
}
* Platform "CPU" startup hook
*/
-void prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
#ifdef CONFIG_MIPS_MT_SMTC
smtc_boot_secondary(cpu, idle);
* Post-config but pre-boot cleanup entry point
*/
-void prom_init_secondary(void)
+void __cpuinit prom_init_secondary(void)
{
#ifdef CONFIG_MIPS_MT_SMTC
void smtc_init_secondary(void);
* SMP initialization finalization entry point
*/
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
#ifdef CONFIG_MIPS_MT_SMTC
smtc_smp_finish();
* stack so the first thing we do is throw away that stuff and load useful
* values into the registers ...
*/
-void __init prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
unsigned long gp = (unsigned long) task_thread_info(idle);
unsigned long sp = __KSTK_TOS(idle);
* After we've done initial boot, this function is called to allow the
* board code to clean up state, if needed
*/
-void prom_init_secondary(void)
+void __cpuinit prom_init_secondary(void)
{
set_c0_status(ST0_CO | ST0_IE | ST0_IM);
}
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
}
* After we've done initial boot, this function is called to allow the
* board code to clean up state, if needed
*/
-void prom_init_secondary(void)
+void __cpuinit prom_init_secondary(void)
{
}
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
}
/*
* Firmware CPU startup hook
*/
-void prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
}
* set sp to the kernel stack of the newly created idle process, gp to the proc
* struct so that current_thread_info() will work.
*/
-void __init prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
unsigned long gp = (unsigned long)task_thread_info(idle);
unsigned long sp = __KSTK_TOS(idle);
{
}
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
}
* Setup the PC, SP, and GP of a secondary processor and start it
* running!
*/
-void prom_boot_secondary(int cpu, struct task_struct *idle)
+void __cpuinit prom_boot_secondary(int cpu, struct task_struct *idle)
{
int retval;
/*
* Code to run on secondary just after probing the CPU
*/
-void prom_init_secondary(void)
+void __cpuinit prom_init_secondary(void)
{
#if defined(CONFIG_SIBYTE_BCM1x55) || defined(CONFIG_SIBYTE_BCM1x80)
extern void bcm1480_smp_init(void);
* Do any tidying up before marking online and running the idle
* loop
*/
-void prom_smp_finish(void)
+void __cpuinit prom_smp_finish(void)
{
#if defined(CONFIG_SIBYTE_BCM1x55) || defined(CONFIG_SIBYTE_BCM1x80)
extern void bcm1480_smp_finish(void);