2 * Low-level SLB routines
4 * Copyright (C) 2004 David Gibson <dwg@au.ibm.com>, IBM
6 * Based on earlier C version:
7 * Dave Engebretsen and Mike Corrigan {engebret|mikejc}@us.ibm.com
8 * Copyright (c) 2001 Dave Engebretsen
9 * Copyright (C) 2002 Anton Blanchard <anton@au.ibm.com>, IBM
11 * This program is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License
13 * as published by the Free Software Foundation; either version
14 * 2 of the License, or (at your option) any later version.
17 #include <asm/processor.h>
18 #include <asm/ppc_asm.h>
19 #include <asm/asm-offsets.h>
20 #include <asm/cputable.h>
23 #include <asm/pgtable.h>
25 /* void slb_allocate_realmode(unsigned long ea);
27 * Create an SLB entry for the given EA (user or kernel).
28 * r3 = faulting address, r13 = PACA
29 * r9, r10, r11 are clobbered by this function
30 * No other registers are examined or changed.
32 _GLOBAL(slb_allocate_realmode)
33 /* r3 = faulting address */
35 srdi r9,r3,60 /* get region */
36 srdi r10,r3,28 /* get esid */
37 cmpldi cr7,r9,0xc /* cmp PAGE_OFFSET for later use */
39 /* r3 = address, r10 = esid, cr7 = <> PAGE_OFFSET */
40 blt cr7,0f /* user or kernel? */
42 /* kernel address: proto-VSID = ESID */
43 /* WARNING - MAGIC: we don't use the VSID 0xfffffffff, but
44 * this code will generate the protoVSID 0xfffffffff for the
45 * top segment. That's ok, the scramble below will translate
46 * it to VSID 0, which is reserved as a bad VSID - one which
47 * will never have any pages in it. */
49 /* Check if hitting the linear mapping of the vmalloc/ioremap
54 /* Linear mapping encoding bits, the "li" instruction below will
55 * be patched by the kernel at boot
57 _GLOBAL(slb_miss_kernel_load_linear)
61 1: /* vmalloc/ioremap mapping encoding bits, the "li" instructions below
62 * will be patched by the kernel at boot
65 /* check whether this is in vmalloc or ioremap space */
67 cmpldi r11,(VMALLOC_SIZE >> 28) - 1
69 lhz r11,PACAVMALLOCSLLP(r13)
72 END_FTR_SECTION_IFCLR(CPU_FTR_CI_LARGE_PAGE)
73 _GLOBAL(slb_miss_kernel_load_io)
78 0: /* user address: proto-VSID = context << 15 | ESID. First check
79 * if the address is within the boundaries of the user region
81 srdi. r9,r10,USER_ESID_BITS
82 bne- 8f /* invalid ea bits set */
84 /* Figure out if the segment contains huge pages */
85 #ifdef CONFIG_HUGETLB_PAGE
88 END_FTR_SECTION_IFCLR(CPU_FTR_16M_PAGE)
91 lhz r9,PACALOWHTLBAREAS(r13)
95 lhz r9,PACAHIGHHTLBAREAS(r13)
96 srdi r11,r10,(HTLB_AREA_SHIFT-SID_SHIFT)
101 _GLOBAL(slb_miss_user_load_huge)
105 #endif /* CONFIG_HUGETLB_PAGE */
107 lhz r11,PACACONTEXTSLLP(r13)
109 ld r9,PACACONTEXTID(r13)
110 rldimi r10,r9,USER_ESID_BITS,0
114 li r10,0 /* BAD_VSID */
115 li r11,SLB_VSID_USER /* flags don't much matter */
120 /* void slb_allocate_user(unsigned long ea);
122 * Create an SLB entry for the given EA (user or kernel).
123 * r3 = faulting address, r13 = PACA
124 * r9, r10, r11 are clobbered by this function
125 * No other registers are examined or changed.
127 * It is called with translation enabled in order to be able to walk the
128 * page tables. This is not currently used.
130 _GLOBAL(slb_allocate_user)
131 /* r3 = faulting address */
132 srdi r10,r3,28 /* get esid */
134 crset 4*cr7+lt /* set "user" flag for later */
136 /* check if we fit in the range covered by the pagetables*/
137 srdi. r9,r3,PGTABLE_EADDR_SIZE
138 crnot 4*cr0+eq,4*cr0+eq
141 /* now we need to get to the page tables in order to get the page
142 * size encoding from the PMD. In the future, we'll be able to deal
143 * with 1T segments too by getting the encoding from the PGD instead
148 rlwinm r11,r10,8,25,28
149 ldx r9,r9,r11 /* get pgd_t */
152 rlwinm r11,r10,3,17,28
153 ldx r9,r9,r11 /* get pmd_t */
157 /* build vsid flags */
158 andi. r11,r9,SLB_VSID_LLP
159 ori r11,r11,SLB_VSID_USER
161 /* get context to calculate proto-VSID */
162 ld r9,PACACONTEXTID(r13)
163 rldimi r10,r9,USER_ESID_BITS,0
165 /* fall through slb_finish_load */
167 #endif /* __DISABLED__ */
171 * Finish loading of an SLB entry and return
173 * r3 = EA, r10 = proto-VSID, r11 = flags, clobbers r9, cr7 = <> PAGE_OFFSET
176 ASM_VSID_SCRAMBLE(r10,r9)
177 rldimi r11,r10,SLB_VSID_SHIFT,16 /* combine VSID and flags */
179 /* r3 = EA, r11 = VSID data */
181 * Find a slot, round robin. Previously we tried to find a
182 * free slot first but that took too long. Unfortunately we
183 * dont have any LRU information to help us choose a slot.
185 #ifdef CONFIG_PPC_ISERIES
187 * On iSeries, the "bolted" stack segment can be cast out on
188 * shared processor switch so we need to check for a miss on
189 * it and restore it to the right slot.
194 li r10,SLB_NUM_BOLTED-1 /* Stack goes in last bolted slot */
197 #endif /* CONFIG_PPC_ISERIES */
199 ld r10,PACASTABRR(r13)
201 /* use a cpu feature mask if we ever change our slb size */
202 cmpldi r10,SLB_NUM_ENTRIES
205 li r10,SLB_NUM_BOLTED
208 std r10,PACASTABRR(r13)
211 rldimi r3,r10,0,36 /* r3= EA[0:35] | entry */
212 oris r10,r3,SLB_ESID_V@h /* r3 |= SLB_ESID_V */
214 /* r3 = ESID data, r11 = VSID data */
217 * No need for an isync before or after this slbmte. The exception
218 * we enter with and the rfid we exit with are context synchronizing.
222 /* we're done for kernel addresses */
223 crclr 4*cr0+eq /* set result to "success" */
226 /* Update the slb cache */
227 lhz r3,PACASLBCACHEPTR(r13) /* offset = paca->slb_cache_ptr */
228 cmpldi r3,SLB_CACHE_ENTRIES
231 /* still room in the slb cache */
232 sldi r11,r3,1 /* r11 = offset * sizeof(u16) */
233 rldicl r10,r10,36,28 /* get low 16 bits of the ESID */
234 add r11,r11,r13 /* r11 = (u16 *)paca + offset */
235 sth r10,PACASLBCACHE(r11) /* paca->slb_cache[offset] = esid */
236 addi r3,r3,1 /* offset++ */
238 1: /* offset >= SLB_CACHE_ENTRIES */
239 li r3,SLB_CACHE_ENTRIES+1
241 sth r3,PACASLBCACHEPTR(r13) /* paca->slb_cache_ptr = offset */
242 crclr 4*cr0+eq /* set result to "success" */