forked from Minki/linux
powerpc: Book 3S MMU little endian support
Signed-off-by: Anton Blanchard <anton@samba.org> Signed-off-by: Benjamin Herrenschmidt <benh@kernel.crashing.org>
This commit is contained in:
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32ee1e188e
commit
12f04f2be8
@ -135,8 +135,8 @@ extern char initial_stab[];
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#ifndef __ASSEMBLY__
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struct hash_pte {
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unsigned long v;
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unsigned long r;
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__be64 v;
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__be64 r;
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};
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extern struct hash_pte *htab_address;
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@ -35,7 +35,11 @@
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#define DBG_LOW(fmt...)
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#endif
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#ifdef __BIG_ENDIAN__
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#define HPTE_LOCK_BIT 3
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#else
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#define HPTE_LOCK_BIT (56+3)
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#endif
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DEFINE_RAW_SPINLOCK(native_tlbie_lock);
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@ -172,7 +176,7 @@ static inline void tlbie(unsigned long vpn, int psize, int apsize,
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static inline void native_lock_hpte(struct hash_pte *hptep)
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{
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unsigned long *word = &hptep->v;
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unsigned long *word = (unsigned long *)&hptep->v;
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while (1) {
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if (!test_and_set_bit_lock(HPTE_LOCK_BIT, word))
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@ -184,7 +188,7 @@ static inline void native_lock_hpte(struct hash_pte *hptep)
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static inline void native_unlock_hpte(struct hash_pte *hptep)
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{
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unsigned long *word = &hptep->v;
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unsigned long *word = (unsigned long *)&hptep->v;
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clear_bit_unlock(HPTE_LOCK_BIT, word);
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}
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@ -204,10 +208,10 @@ static long native_hpte_insert(unsigned long hpte_group, unsigned long vpn,
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}
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for (i = 0; i < HPTES_PER_GROUP; i++) {
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if (! (hptep->v & HPTE_V_VALID)) {
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if (! (be64_to_cpu(hptep->v) & HPTE_V_VALID)) {
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/* retry with lock held */
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native_lock_hpte(hptep);
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if (! (hptep->v & HPTE_V_VALID))
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if (! (be64_to_cpu(hptep->v) & HPTE_V_VALID))
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break;
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native_unlock_hpte(hptep);
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}
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@ -226,14 +230,14 @@ static long native_hpte_insert(unsigned long hpte_group, unsigned long vpn,
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i, hpte_v, hpte_r);
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}
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hptep->r = hpte_r;
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hptep->r = cpu_to_be64(hpte_r);
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/* Guarantee the second dword is visible before the valid bit */
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eieio();
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/*
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* Now set the first dword including the valid bit
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* NOTE: this also unlocks the hpte
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*/
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hptep->v = hpte_v;
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hptep->v = cpu_to_be64(hpte_v);
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__asm__ __volatile__ ("ptesync" : : : "memory");
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@ -254,12 +258,12 @@ static long native_hpte_remove(unsigned long hpte_group)
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for (i = 0; i < HPTES_PER_GROUP; i++) {
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hptep = htab_address + hpte_group + slot_offset;
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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if ((hpte_v & HPTE_V_VALID) && !(hpte_v & HPTE_V_BOLTED)) {
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/* retry with lock held */
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native_lock_hpte(hptep);
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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if ((hpte_v & HPTE_V_VALID)
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&& !(hpte_v & HPTE_V_BOLTED))
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break;
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@ -294,7 +298,7 @@ static long native_hpte_updatepp(unsigned long slot, unsigned long newpp,
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native_lock_hpte(hptep);
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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/*
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* We need to invalidate the TLB always because hpte_remove doesn't do
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* a tlb invalidate. If a hash bucket gets full, we "evict" a more/less
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@ -308,8 +312,8 @@ static long native_hpte_updatepp(unsigned long slot, unsigned long newpp,
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} else {
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DBG_LOW(" -> hit\n");
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/* Update the HPTE */
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hptep->r = (hptep->r & ~(HPTE_R_PP | HPTE_R_N)) |
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(newpp & (HPTE_R_PP | HPTE_R_N | HPTE_R_C));
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hptep->r = cpu_to_be64((be64_to_cpu(hptep->r) & ~(HPTE_R_PP | HPTE_R_N)) |
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(newpp & (HPTE_R_PP | HPTE_R_N | HPTE_R_C)));
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}
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native_unlock_hpte(hptep);
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@ -334,7 +338,7 @@ static long native_hpte_find(unsigned long vpn, int psize, int ssize)
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slot = (hash & htab_hash_mask) * HPTES_PER_GROUP;
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for (i = 0; i < HPTES_PER_GROUP; i++) {
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hptep = htab_address + slot;
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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if (HPTE_V_COMPARE(hpte_v, want_v) && (hpte_v & HPTE_V_VALID))
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/* HPTE matches */
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@ -369,8 +373,9 @@ static void native_hpte_updateboltedpp(unsigned long newpp, unsigned long ea,
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hptep = htab_address + slot;
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/* Update the HPTE */
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hptep->r = (hptep->r & ~(HPTE_R_PP | HPTE_R_N)) |
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(newpp & (HPTE_R_PP | HPTE_R_N));
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hptep->r = cpu_to_be64((be64_to_cpu(hptep->r) &
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~(HPTE_R_PP | HPTE_R_N)) |
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(newpp & (HPTE_R_PP | HPTE_R_N)));
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/*
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* Ensure it is out of the tlb too. Bolted entries base and
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* actual page size will be same.
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@ -392,7 +397,7 @@ static void native_hpte_invalidate(unsigned long slot, unsigned long vpn,
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want_v = hpte_encode_avpn(vpn, bpsize, ssize);
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native_lock_hpte(hptep);
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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/*
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* We need to invalidate the TLB always because hpte_remove doesn't do
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@ -458,7 +463,7 @@ static void native_hugepage_invalidate(struct mm_struct *mm,
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hptep = htab_address + slot;
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want_v = hpte_encode_avpn(vpn, psize, ssize);
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native_lock_hpte(hptep);
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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/* Even if we miss, we need to invalidate the TLB */
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if (!HPTE_V_COMPARE(hpte_v, want_v) || !(hpte_v & HPTE_V_VALID))
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@ -519,11 +524,12 @@ static void hpte_decode(struct hash_pte *hpte, unsigned long slot,
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int *psize, int *apsize, int *ssize, unsigned long *vpn)
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{
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unsigned long avpn, pteg, vpi;
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unsigned long hpte_v = hpte->v;
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unsigned long hpte_v = be64_to_cpu(hpte->v);
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unsigned long hpte_r = be64_to_cpu(hpte->r);
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unsigned long vsid, seg_off;
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int size, a_size, shift;
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/* Look at the 8 bit LP value */
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unsigned int lp = (hpte->r >> LP_SHIFT) & ((1 << LP_BITS) - 1);
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unsigned int lp = (hpte_r >> LP_SHIFT) & ((1 << LP_BITS) - 1);
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if (!(hpte_v & HPTE_V_LARGE)) {
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size = MMU_PAGE_4K;
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@ -612,7 +618,7 @@ static void native_hpte_clear(void)
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* running, right? and for crash dump, we probably
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* don't want to wait for a maybe bad cpu.
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*/
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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/*
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* Call __tlbie() here rather than tlbie() since we
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@ -664,7 +670,7 @@ static void native_flush_hash_range(unsigned long number, int local)
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hptep = htab_address + slot;
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want_v = hpte_encode_avpn(vpn, psize, ssize);
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native_lock_hpte(hptep);
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hpte_v = hptep->v;
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hpte_v = be64_to_cpu(hptep->v);
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if (!HPTE_V_COMPARE(hpte_v, want_v) ||
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!(hpte_v & HPTE_V_VALID))
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native_unlock_hpte(hptep);
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@ -251,19 +251,18 @@ static int __init htab_dt_scan_seg_sizes(unsigned long node,
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void *data)
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{
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char *type = of_get_flat_dt_prop(node, "device_type", NULL);
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u32 *prop;
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__be32 *prop;
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unsigned long size = 0;
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/* We are scanning "cpu" nodes only */
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if (type == NULL || strcmp(type, "cpu") != 0)
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return 0;
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prop = (u32 *)of_get_flat_dt_prop(node, "ibm,processor-segment-sizes",
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&size);
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prop = of_get_flat_dt_prop(node, "ibm,processor-segment-sizes", &size);
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if (prop == NULL)
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return 0;
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for (; size >= 4; size -= 4, ++prop) {
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if (prop[0] == 40) {
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if (be32_to_cpu(prop[0]) == 40) {
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DBG("1T segment support detected\n");
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cur_cpu_spec->mmu_features |= MMU_FTR_1T_SEGMENT;
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return 1;
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@ -307,23 +306,22 @@ static int __init htab_dt_scan_page_sizes(unsigned long node,
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void *data)
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{
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char *type = of_get_flat_dt_prop(node, "device_type", NULL);
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u32 *prop;
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__be32 *prop;
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unsigned long size = 0;
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/* We are scanning "cpu" nodes only */
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if (type == NULL || strcmp(type, "cpu") != 0)
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return 0;
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prop = (u32 *)of_get_flat_dt_prop(node,
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"ibm,segment-page-sizes", &size);
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prop = of_get_flat_dt_prop(node, "ibm,segment-page-sizes", &size);
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if (prop != NULL) {
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pr_info("Page sizes from device-tree:\n");
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size /= 4;
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cur_cpu_spec->mmu_features &= ~(MMU_FTR_16M_PAGE);
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while(size > 0) {
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unsigned int base_shift = prop[0];
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unsigned int slbenc = prop[1];
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unsigned int lpnum = prop[2];
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unsigned int base_shift = be32_to_cpu(prop[0]);
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unsigned int slbenc = be32_to_cpu(prop[1]);
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unsigned int lpnum = be32_to_cpu(prop[2]);
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struct mmu_psize_def *def;
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int idx, base_idx;
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@ -356,8 +354,8 @@ static int __init htab_dt_scan_page_sizes(unsigned long node,
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def->tlbiel = 0;
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while (size > 0 && lpnum) {
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unsigned int shift = prop[0];
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int penc = prop[1];
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unsigned int shift = be32_to_cpu(prop[0]);
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int penc = be32_to_cpu(prop[1]);
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prop += 2; size -= 2;
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lpnum--;
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@ -390,8 +388,8 @@ static int __init htab_dt_scan_hugepage_blocks(unsigned long node,
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const char *uname, int depth,
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void *data) {
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char *type = of_get_flat_dt_prop(node, "device_type", NULL);
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unsigned long *addr_prop;
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u32 *page_count_prop;
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__be64 *addr_prop;
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__be32 *page_count_prop;
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unsigned int expected_pages;
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long unsigned int phys_addr;
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long unsigned int block_size;
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@ -405,12 +403,12 @@ static int __init htab_dt_scan_hugepage_blocks(unsigned long node,
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page_count_prop = of_get_flat_dt_prop(node, "ibm,expected#pages", NULL);
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if (page_count_prop == NULL)
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return 0;
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expected_pages = (1 << page_count_prop[0]);
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expected_pages = (1 << be32_to_cpu(page_count_prop[0]));
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addr_prop = of_get_flat_dt_prop(node, "reg", NULL);
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if (addr_prop == NULL)
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return 0;
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phys_addr = addr_prop[0];
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block_size = addr_prop[1];
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phys_addr = be64_to_cpu(addr_prop[0]);
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block_size = be64_to_cpu(addr_prop[1]);
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if (block_size != (16 * GB))
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return 0;
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printk(KERN_INFO "Huge page(16GB) memory: "
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@ -534,16 +532,16 @@ static int __init htab_dt_scan_pftsize(unsigned long node,
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void *data)
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{
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char *type = of_get_flat_dt_prop(node, "device_type", NULL);
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u32 *prop;
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__be32 *prop;
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/* We are scanning "cpu" nodes only */
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if (type == NULL || strcmp(type, "cpu") != 0)
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return 0;
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prop = (u32 *)of_get_flat_dt_prop(node, "ibm,pft-size", NULL);
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prop = of_get_flat_dt_prop(node, "ibm,pft-size", NULL);
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if (prop != NULL) {
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/* pft_size[0] is the NUMA CEC cookie */
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ppc64_pft_size = prop[1];
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ppc64_pft_size = be32_to_cpu(prop[1]);
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return 1;
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}
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return 0;
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