return (get_kernel_vsid(ea) << SLB_VSID_SHIFT) | flags;
}
-static inline void slb_shadow_update(unsigned long esid, unsigned long vsid,
+static inline void slb_shadow_update(unsigned long ea,
+ unsigned long flags,
unsigned long entry)
{
/*
* updating it.
*/
get_slb_shadow()->save_area[entry].esid = 0;
- barrier();
- get_slb_shadow()->save_area[entry].vsid = vsid;
- barrier();
- get_slb_shadow()->save_area[entry].esid = esid;
-
+ smp_wmb();
+ get_slb_shadow()->save_area[entry].vsid = mk_vsid_data(ea, flags);
+ smp_wmb();
+ get_slb_shadow()->save_area[entry].esid = mk_esid_data(ea, entry);
+ smp_wmb();
}
static inline void create_shadowed_slbe(unsigned long ea, unsigned long flags,
* we don't get a stale entry here if we get preempted by PHYP
* between these two statements.
*/
- slb_shadow_update(mk_esid_data(ea, entry), mk_vsid_data(ea, flags),
- entry);
+ slb_shadow_update(ea, flags, entry);
asm volatile("slbmte %0,%1" :
: "r" (mk_vsid_data(ea, flags)),
ksp_esid_data &= ~SLB_ESID_V;
/* Only third entry (stack) may change here so only resave that */
- slb_shadow_update(ksp_esid_data,
- mk_vsid_data(ksp_esid_data, lflags), 2);
+ slb_shadow_update(get_paca()->kstack, lflags, 2);
/* We need to do this all in asm, so we're sure we don't touch
* the stack between the slbia and rebolting it. */
: "memory");
}
+void slb_vmalloc_update(void)
+{
+ unsigned long vflags;
+
+ vflags = SLB_VSID_KERNEL | mmu_psize_defs[mmu_vmalloc_psize].sllp;
+ slb_shadow_update(VMALLOC_START, vflags, 1);
+ slb_flush_and_rebolt();
+}
+
/* Flush all user entries from the segment table of the current processor. */
void switch_slb(struct task_struct *tsk, struct mm_struct *mm)
{