if (!arm_feature(&cpu->env, ARM_FEATURE_M_MAIN)) {
goto bad_offset;
}
+ if (!attrs.secure &&
+ !(s->cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK)) {
+ return 0;
+ }
return cpu->env.v7m.bfar;
case 0xd3c: /* Aux Fault Status. */
/* TODO: Implement fault status registers. */
if (!arm_feature(&cpu->env, ARM_FEATURE_M_MAIN)) {
goto bad_offset;
}
+ if (!attrs.secure &&
+ !(s->cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK)) {
+ return;
+ }
cpu->env.v7m.bfar = value;
return;
case 0xd3c: /* Aux Fault Status. */
val = 0;
break;
};
- /* The BFSR bits [15:8] are shared between security states
- * and we store them in the NS copy
+ /*
+ * The BFSR bits [15:8] are shared between security states
+ * and we store them in the NS copy. They are RAZ/WI for
+ * NS code if AIRCR.BFHFNMINS is 0.
*/
val = s->cpu->env.v7m.cfsr[attrs.secure];
- val |= s->cpu->env.v7m.cfsr[M_REG_NS] & R_V7M_CFSR_BFSR_MASK;
+ if (!attrs.secure &&
+ !(s->cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK)) {
+ val &= ~R_V7M_CFSR_BFSR_MASK;
+ } else {
+ val |= s->cpu->env.v7m.cfsr[M_REG_NS] & R_V7M_CFSR_BFSR_MASK;
+ }
val = extract32(val, (offset - 0xd28) * 8, size * 8);
break;
case 0xfe0 ... 0xfff: /* ID. */
*/
value <<= ((offset - 0xd28) * 8);
+ if (!attrs.secure &&
+ !(s->cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK)) {
+ /* BFSR bits are RAZ/WI for NS if BFHFNMINS is set */
+ value &= ~R_V7M_CFSR_BFSR_MASK;
+ }
+
s->cpu->env.v7m.cfsr[attrs.secure] &= ~value;
if (attrs.secure) {
/* The BFSR bits [15:8] are shared between security states