portb_changed(s, temp);
return;
case SH7750_MMUCR_A7:
- s->cpu->mmucr = mem_value;
- return;
+ if (mem_value & MMUCR_TI) {
+ cpu_sh4_invalidate_tlb(s->cpu);
+ }
+ s->cpu->mmucr = mem_value & ~MMUCR_TI;
+ return;
case SH7750_PTEH_A7:
/* If asid changes, clear all registered tlb entries. */
if ((s->cpu->pteh & 0xff) != (mem_value & 0xff))
void do_interrupt(CPUSH4State * env);
void sh4_cpu_list(FILE *f, int (*cpu_fprintf)(FILE *f, const char *fmt, ...));
+void cpu_sh4_invalidate_tlb(CPUSH4State *s);
void cpu_sh4_write_mmaped_utlb_addr(CPUSH4State *s, target_phys_addr_t addr,
uint32_t mem_value);
/* MMU control register */
#define MMUCR 0x1F000010
#define MMUCR_AT (1<<0)
+#define MMUCR_TI (1<<2)
#define MMUCR_SV (1<<8)
#define MMUCR_URC_BITS (6)
#define MMUCR_URC_OFFSET (10)
entry->tc = (uint8_t)cpu_ptea_tc(env->ptea);
}
+ void cpu_sh4_invalidate_tlb(CPUSH4State *s)
+{
+ int i;
+
+ /* UTLB */
+ for (i = 0; i < UTLB_SIZE; i++) {
+ tlb_t * entry = &s->utlb[i];
+ entry->v = 0;
+ }
+ /* ITLB */
+ for (i = 0; i < UTLB_SIZE; i++) {
+ tlb_t * entry = &s->utlb[i];
+ entry->v = 0;
+ }
+
+ tlb_flush(s, 1);
+}
+
void cpu_sh4_write_mmaped_utlb_addr(CPUSH4State *s, target_phys_addr_t addr,
uint32_t mem_value)
{