return cpu_list;
}
+/*
+ * Private utility function for define_one_arm_cp_reg_with_opaque():
+ * add a single reginfo struct to the hash table.
+ */
static void add_cpreg_to_hashtable(ARMCPU *cpu, const ARMCPRegInfo *r,
void *opaque, CPState state,
CPSecureState secstate,
int crm, int opc1, int opc2,
const char *name)
{
- /* Private utility function for define_one_arm_cp_reg_with_opaque():
- * add a single reginfo struct to the hash table.
- */
uint32_t key;
ARMCPRegInfo *r2;
bool is64 = r->type & ARM_CP_64BIT;
isbanked = r->bank_fieldoffsets[0] && r->bank_fieldoffsets[1];
if (isbanked) {
- /* Register is banked (using both entries in array).
+ /*
+ * Register is banked (using both entries in array).
* Overwriting fieldoffset as the array is only used to define
* banked registers but later only fieldoffset is used.
*/
if (state == ARM_CP_STATE_AA32) {
if (isbanked) {
- /* If the register is banked then we don't need to migrate or
+ /*
+ * If the register is banked then we don't need to migrate or
* reset the 32-bit instance in certain cases:
*
* 1) If the register has both 32-bit and 64-bit instances then we
r2->type |= ARM_CP_ALIAS;
}
} else if ((secstate != r->secure) && !ns) {
- /* The register is not banked so we only want to allow migration of
- * the non-secure instance.
+ /*
+ * The register is not banked so we only want to allow migration
+ * of the non-secure instance.
*/
r2->type |= ARM_CP_ALIAS;
}
}
}
- /* By convention, for wildcarded registers only the first
+ /*
+ * By convention, for wildcarded registers only the first
* entry is used for migration; the others are marked as
* ALIAS so we don't try to transfer the register
* multiple times. Special registers (ie NOP/WFI) are
r2->type |= ARM_CP_ALIAS | ARM_CP_NO_GDB;
}
- /* Check that raw accesses are either forbidden or handled. Note that
+ /*
+ * Check that raw accesses are either forbidden or handled. Note that
* we can't assert this earlier because the setup of fieldoffset for
* banked registers has to be done first.
*/