* Then we use the APG to say whether accesses are according to Page rules or
* "all Supervisor" rules (Access to all)
* Therefore, we define 2 APG groups. lsb is _PMD_USER
- * 0 => No user => 01 (all accesses performed according to page definition)
+ * 0 => Kernel => 01 (all accesses performed according to page definition)
* 1 => User => 00 (all accesses performed as supervisor iaw page definition)
- * We define all 16 groups so that all other bits of APG can take any value
+ * 2-16 => NA => 11 (all accesses performed as user iaw page definition)
*/
-#define MI_APG_INIT 0x44444444
+#define MI_APG_INIT 0x4fffffff
/* The effective page number register. When read, contains the information
* about the last instruction TLB miss. When MI_RPN is written, bits in
* Then we use the APG to say whether accesses are according to Page rules or
* "all Supervisor" rules (Access to all)
* Therefore, we define 2 APG groups. lsb is _PMD_USER
- * 0 => No user => 01 (all accesses performed according to page definition)
+ * 0 => Kernel => 01 (all accesses performed according to page definition)
* 1 => User => 00 (all accesses performed as supervisor iaw page definition)
- * We define all 16 groups so that all other bits of APG can take any value
+ * 2-16 => NA => 11 (all accesses performed as user iaw page definition)
*/
-#define MD_APG_INIT 0x44444444
+#define MD_APG_INIT 0x4fffffff
/* The effective page number register. When read, contains the information
* about the last instruction TLB miss. When MD_RPN is written, bits in