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Russell Kingd111e8f2006-09-27 15:27:33 +01001/*
2 * linux/arch/arm/mm/mmu.c
3 *
4 * Copyright (C) 1995-2005 Russell King
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 */
Russell Kingae8f1542006-09-27 15:38:34 +010010#include <linux/module.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010011#include <linux/kernel.h>
12#include <linux/errno.h>
13#include <linux/init.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010014#include <linux/mman.h>
15#include <linux/nodemask.h>
Russell King2778f622010-07-09 16:27:52 +010016#include <linux/memblock.h>
Catalin Marinasd9073872010-09-13 16:01:24 +010017#include <linux/fs.h>
Nicolas Pitre0536bdf2011-08-25 00:35:59 -040018#include <linux/vmalloc.h>
Alessandro Rubini158e8bf2012-06-24 12:46:26 +010019#include <linux/sizes.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010020
Russell King15d07dc2012-03-28 18:30:01 +010021#include <asm/cp15.h>
Russell King0ba8b9b2008-08-10 18:08:10 +010022#include <asm/cputype.h>
Russell King37efe642008-12-01 11:53:07 +000023#include <asm/sections.h>
Nicolas Pitre3f973e22008-11-04 00:48:42 -050024#include <asm/cachetype.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010025#include <asm/setup.h>
Russell Kinge616c592009-09-27 20:55:43 +010026#include <asm/smp_plat.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010027#include <asm/tlb.h>
Nicolas Pitred73cd422008-09-15 16:44:55 -040028#include <asm/highmem.h>
David Howells9f97da72012-03-28 18:30:01 +010029#include <asm/system_info.h>
Catalin Marinas247055a2010-09-13 16:03:21 +010030#include <asm/traps.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010031
32#include <asm/mach/arch.h>
33#include <asm/mach/map.h>
Rob Herringc2794432012-02-29 18:10:58 -060034#include <asm/mach/pci.h>
Russell Kingd111e8f2006-09-27 15:27:33 +010035
36#include "mm.h"
37
Russell Kingd111e8f2006-09-27 15:27:33 +010038/*
39 * empty_zero_page is a special page that is used for
40 * zero-initialized data and COW.
41 */
42struct page *empty_zero_page;
Aneesh Kumar K.V3653f3a2008-04-29 08:11:12 -040043EXPORT_SYMBOL(empty_zero_page);
Russell Kingd111e8f2006-09-27 15:27:33 +010044
45/*
46 * The pmd table for the upper-most set of pages.
47 */
48pmd_t *top_pmd;
49
Russell Kingae8f1542006-09-27 15:38:34 +010050#define CPOLICY_UNCACHED 0
51#define CPOLICY_BUFFERED 1
52#define CPOLICY_WRITETHROUGH 2
53#define CPOLICY_WRITEBACK 3
54#define CPOLICY_WRITEALLOC 4
55
56static unsigned int cachepolicy __initdata = CPOLICY_WRITEBACK;
57static unsigned int ecc_mask __initdata = 0;
Imre_Deak44b18692007-02-11 13:45:13 +010058pgprot_t pgprot_user;
Russell Kingae8f1542006-09-27 15:38:34 +010059pgprot_t pgprot_kernel;
Christoffer Dallcc577c22013-01-20 18:28:04 -050060pgprot_t pgprot_hyp_device;
61pgprot_t pgprot_s2;
62pgprot_t pgprot_s2_device;
Russell Kingae8f1542006-09-27 15:38:34 +010063
Imre_Deak44b18692007-02-11 13:45:13 +010064EXPORT_SYMBOL(pgprot_user);
Russell Kingae8f1542006-09-27 15:38:34 +010065EXPORT_SYMBOL(pgprot_kernel);
66
67struct cachepolicy {
68 const char policy[16];
69 unsigned int cr_mask;
Catalin Marinas442e70c2011-09-05 17:51:56 +010070 pmdval_t pmd;
Russell Kingf6e33542010-11-16 00:22:09 +000071 pteval_t pte;
Christoffer Dallcc577c22013-01-20 18:28:04 -050072 pteval_t pte_s2;
Russell Kingae8f1542006-09-27 15:38:34 +010073};
74
Christoffer Dallcc577c22013-01-20 18:28:04 -050075#ifdef CONFIG_ARM_LPAE
76#define s2_policy(policy) policy
77#else
78#define s2_policy(policy) 0
79#endif
80
Russell Kingae8f1542006-09-27 15:38:34 +010081static struct cachepolicy cache_policies[] __initdata = {
82 {
83 .policy = "uncached",
84 .cr_mask = CR_W|CR_C,
85 .pmd = PMD_SECT_UNCACHED,
Russell Kingbb30f362008-09-06 20:04:59 +010086 .pte = L_PTE_MT_UNCACHED,
Christoffer Dallcc577c22013-01-20 18:28:04 -050087 .pte_s2 = s2_policy(L_PTE_S2_MT_UNCACHED),
Russell Kingae8f1542006-09-27 15:38:34 +010088 }, {
89 .policy = "buffered",
90 .cr_mask = CR_C,
91 .pmd = PMD_SECT_BUFFERED,
Russell Kingbb30f362008-09-06 20:04:59 +010092 .pte = L_PTE_MT_BUFFERABLE,
Christoffer Dallcc577c22013-01-20 18:28:04 -050093 .pte_s2 = s2_policy(L_PTE_S2_MT_UNCACHED),
Russell Kingae8f1542006-09-27 15:38:34 +010094 }, {
95 .policy = "writethrough",
96 .cr_mask = 0,
97 .pmd = PMD_SECT_WT,
Russell Kingbb30f362008-09-06 20:04:59 +010098 .pte = L_PTE_MT_WRITETHROUGH,
Christoffer Dallcc577c22013-01-20 18:28:04 -050099 .pte_s2 = s2_policy(L_PTE_S2_MT_WRITETHROUGH),
Russell Kingae8f1542006-09-27 15:38:34 +0100100 }, {
101 .policy = "writeback",
102 .cr_mask = 0,
103 .pmd = PMD_SECT_WB,
Russell Kingbb30f362008-09-06 20:04:59 +0100104 .pte = L_PTE_MT_WRITEBACK,
Christoffer Dallcc577c22013-01-20 18:28:04 -0500105 .pte_s2 = s2_policy(L_PTE_S2_MT_WRITEBACK),
Russell Kingae8f1542006-09-27 15:38:34 +0100106 }, {
107 .policy = "writealloc",
108 .cr_mask = 0,
109 .pmd = PMD_SECT_WBWA,
Russell Kingbb30f362008-09-06 20:04:59 +0100110 .pte = L_PTE_MT_WRITEALLOC,
Christoffer Dallcc577c22013-01-20 18:28:04 -0500111 .pte_s2 = s2_policy(L_PTE_S2_MT_WRITEBACK),
Russell Kingae8f1542006-09-27 15:38:34 +0100112 }
113};
114
115/*
Simon Arlott6cbdc8c2007-05-11 20:40:30 +0100116 * These are useful for identifying cache coherency
Russell Kingae8f1542006-09-27 15:38:34 +0100117 * problems by allowing the cache or the cache and
118 * writebuffer to be turned off. (Note: the write
119 * buffer should not be on and the cache off).
120 */
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100121static int __init early_cachepolicy(char *p)
Russell Kingae8f1542006-09-27 15:38:34 +0100122{
123 int i;
124
125 for (i = 0; i < ARRAY_SIZE(cache_policies); i++) {
126 int len = strlen(cache_policies[i].policy);
127
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100128 if (memcmp(p, cache_policies[i].policy, len) == 0) {
Russell Kingae8f1542006-09-27 15:38:34 +0100129 cachepolicy = i;
130 cr_alignment &= ~cache_policies[i].cr_mask;
131 cr_no_alignment &= ~cache_policies[i].cr_mask;
Russell Kingae8f1542006-09-27 15:38:34 +0100132 break;
133 }
134 }
135 if (i == ARRAY_SIZE(cache_policies))
136 printk(KERN_ERR "ERROR: unknown or unsupported cache policy\n");
Russell King4b46d642009-11-01 17:44:24 +0000137 /*
138 * This restriction is partly to do with the way we boot; it is
139 * unpredictable to have memory mapped using two different sets of
140 * memory attributes (shared, type, and cache attribs). We can not
141 * change these attributes once the initial assembly has setup the
142 * page tables.
143 */
Catalin Marinas11179d82007-07-20 11:42:24 +0100144 if (cpu_architecture() >= CPU_ARCH_ARMv6) {
145 printk(KERN_WARNING "Only cachepolicy=writeback supported on ARMv6 and later\n");
146 cachepolicy = CPOLICY_WRITEBACK;
147 }
Russell Kingae8f1542006-09-27 15:38:34 +0100148 flush_cache_all();
149 set_cr(cr_alignment);
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100150 return 0;
Russell Kingae8f1542006-09-27 15:38:34 +0100151}
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100152early_param("cachepolicy", early_cachepolicy);
Russell Kingae8f1542006-09-27 15:38:34 +0100153
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100154static int __init early_nocache(char *__unused)
Russell Kingae8f1542006-09-27 15:38:34 +0100155{
156 char *p = "buffered";
157 printk(KERN_WARNING "nocache is deprecated; use cachepolicy=%s\n", p);
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100158 early_cachepolicy(p);
159 return 0;
Russell Kingae8f1542006-09-27 15:38:34 +0100160}
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100161early_param("nocache", early_nocache);
Russell Kingae8f1542006-09-27 15:38:34 +0100162
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100163static int __init early_nowrite(char *__unused)
Russell Kingae8f1542006-09-27 15:38:34 +0100164{
165 char *p = "uncached";
166 printk(KERN_WARNING "nowb is deprecated; use cachepolicy=%s\n", p);
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100167 early_cachepolicy(p);
168 return 0;
Russell Kingae8f1542006-09-27 15:38:34 +0100169}
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100170early_param("nowb", early_nowrite);
Russell Kingae8f1542006-09-27 15:38:34 +0100171
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000172#ifndef CONFIG_ARM_LPAE
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100173static int __init early_ecc(char *p)
Russell Kingae8f1542006-09-27 15:38:34 +0100174{
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100175 if (memcmp(p, "on", 2) == 0)
Russell Kingae8f1542006-09-27 15:38:34 +0100176 ecc_mask = PMD_PROTECTION;
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100177 else if (memcmp(p, "off", 3) == 0)
Russell Kingae8f1542006-09-27 15:38:34 +0100178 ecc_mask = 0;
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100179 return 0;
Russell Kingae8f1542006-09-27 15:38:34 +0100180}
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100181early_param("ecc", early_ecc);
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000182#endif
Russell Kingae8f1542006-09-27 15:38:34 +0100183
184static int __init noalign_setup(char *__unused)
185{
186 cr_alignment &= ~CR_A;
187 cr_no_alignment &= ~CR_A;
188 set_cr(cr_alignment);
189 return 1;
190}
191__setup("noalign", noalign_setup);
192
Russell King255d1f82006-12-18 00:12:47 +0000193#ifndef CONFIG_SMP
194void adjust_cr(unsigned long mask, unsigned long set)
195{
196 unsigned long flags;
197
198 mask &= ~CR_A;
199
200 set &= mask;
201
202 local_irq_save(flags);
203
204 cr_no_alignment = (cr_no_alignment & ~mask) | set;
205 cr_alignment = (cr_alignment & ~mask) | set;
206
207 set_cr((get_cr() & ~mask) | set);
208
209 local_irq_restore(flags);
210}
211#endif
212
Russell King36bb94b2010-11-16 08:40:36 +0000213#define PROT_PTE_DEVICE L_PTE_PRESENT|L_PTE_YOUNG|L_PTE_DIRTY|L_PTE_XN
Russell Kingb1cce6b2008-11-04 10:52:28 +0000214#define PROT_SECT_DEVICE PMD_TYPE_SECT|PMD_SECT_AP_WRITE
Russell King0af92be2007-05-05 20:28:16 +0100215
Russell Kingb29e9f52007-04-21 10:47:29 +0100216static struct mem_type mem_types[] = {
Russell King0af92be2007-05-05 20:28:16 +0100217 [MT_DEVICE] = { /* Strongly ordered / ARMv6 shared device */
Russell Kingbb30f362008-09-06 20:04:59 +0100218 .prot_pte = PROT_PTE_DEVICE | L_PTE_MT_DEV_SHARED |
219 L_PTE_SHARED,
Russell King0af92be2007-05-05 20:28:16 +0100220 .prot_l1 = PMD_TYPE_TABLE,
Russell Kingb1cce6b2008-11-04 10:52:28 +0000221 .prot_sect = PROT_SECT_DEVICE | PMD_SECT_S,
Russell King0af92be2007-05-05 20:28:16 +0100222 .domain = DOMAIN_IO,
223 },
224 [MT_DEVICE_NONSHARED] = { /* ARMv6 non-shared device */
Russell Kingbb30f362008-09-06 20:04:59 +0100225 .prot_pte = PROT_PTE_DEVICE | L_PTE_MT_DEV_NONSHARED,
Russell King0af92be2007-05-05 20:28:16 +0100226 .prot_l1 = PMD_TYPE_TABLE,
Russell Kingb1cce6b2008-11-04 10:52:28 +0000227 .prot_sect = PROT_SECT_DEVICE,
Russell King0af92be2007-05-05 20:28:16 +0100228 .domain = DOMAIN_IO,
229 },
230 [MT_DEVICE_CACHED] = { /* ioremap_cached */
Russell Kingbb30f362008-09-06 20:04:59 +0100231 .prot_pte = PROT_PTE_DEVICE | L_PTE_MT_DEV_CACHED,
Russell King0af92be2007-05-05 20:28:16 +0100232 .prot_l1 = PMD_TYPE_TABLE,
233 .prot_sect = PROT_SECT_DEVICE | PMD_SECT_WB,
234 .domain = DOMAIN_IO,
Rob Herringc2794432012-02-29 18:10:58 -0600235 },
Lennert Buytenhek1ad77a82008-09-05 13:17:11 +0100236 [MT_DEVICE_WC] = { /* ioremap_wc */
Russell Kingbb30f362008-09-06 20:04:59 +0100237 .prot_pte = PROT_PTE_DEVICE | L_PTE_MT_DEV_WC,
Russell King0af92be2007-05-05 20:28:16 +0100238 .prot_l1 = PMD_TYPE_TABLE,
Russell Kingb1cce6b2008-11-04 10:52:28 +0000239 .prot_sect = PROT_SECT_DEVICE,
Russell King0af92be2007-05-05 20:28:16 +0100240 .domain = DOMAIN_IO,
Russell Kingae8f1542006-09-27 15:38:34 +0100241 },
Russell Kingebb4c652008-11-09 11:18:36 +0000242 [MT_UNCACHED] = {
243 .prot_pte = PROT_PTE_DEVICE,
244 .prot_l1 = PMD_TYPE_TABLE,
245 .prot_sect = PMD_TYPE_SECT | PMD_SECT_XN,
246 .domain = DOMAIN_IO,
247 },
Russell Kingae8f1542006-09-27 15:38:34 +0100248 [MT_CACHECLEAN] = {
Russell King9ef79632007-05-05 20:03:35 +0100249 .prot_sect = PMD_TYPE_SECT | PMD_SECT_XN,
Russell Kingae8f1542006-09-27 15:38:34 +0100250 .domain = DOMAIN_KERNEL,
251 },
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000252#ifndef CONFIG_ARM_LPAE
Russell Kingae8f1542006-09-27 15:38:34 +0100253 [MT_MINICLEAN] = {
Russell King9ef79632007-05-05 20:03:35 +0100254 .prot_sect = PMD_TYPE_SECT | PMD_SECT_XN | PMD_SECT_MINICACHE,
Russell Kingae8f1542006-09-27 15:38:34 +0100255 .domain = DOMAIN_KERNEL,
256 },
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000257#endif
Russell Kingae8f1542006-09-27 15:38:34 +0100258 [MT_LOW_VECTORS] = {
259 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY |
Russell King36bb94b2010-11-16 08:40:36 +0000260 L_PTE_RDONLY,
Russell Kingae8f1542006-09-27 15:38:34 +0100261 .prot_l1 = PMD_TYPE_TABLE,
262 .domain = DOMAIN_USER,
263 },
264 [MT_HIGH_VECTORS] = {
265 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY |
Russell King36bb94b2010-11-16 08:40:36 +0000266 L_PTE_USER | L_PTE_RDONLY,
Russell Kingae8f1542006-09-27 15:38:34 +0100267 .prot_l1 = PMD_TYPE_TABLE,
268 .domain = DOMAIN_USER,
269 },
270 [MT_MEMORY] = {
Russell King36bb94b2010-11-16 08:40:36 +0000271 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY,
Santosh Shilimkarf1a24812010-09-24 07:18:22 +0100272 .prot_l1 = PMD_TYPE_TABLE,
Russell King9ef79632007-05-05 20:03:35 +0100273 .prot_sect = PMD_TYPE_SECT | PMD_SECT_AP_WRITE,
Russell Kingae8f1542006-09-27 15:38:34 +0100274 .domain = DOMAIN_KERNEL,
275 },
276 [MT_ROM] = {
Russell King9ef79632007-05-05 20:03:35 +0100277 .prot_sect = PMD_TYPE_SECT,
Russell Kingae8f1542006-09-27 15:38:34 +0100278 .domain = DOMAIN_KERNEL,
279 },
Paul Walmsleye4707dd2009-03-12 20:11:43 +0100280 [MT_MEMORY_NONCACHED] = {
Santosh Shilimkarf1a24812010-09-24 07:18:22 +0100281 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY |
Russell King36bb94b2010-11-16 08:40:36 +0000282 L_PTE_MT_BUFFERABLE,
Santosh Shilimkarf1a24812010-09-24 07:18:22 +0100283 .prot_l1 = PMD_TYPE_TABLE,
Paul Walmsleye4707dd2009-03-12 20:11:43 +0100284 .prot_sect = PMD_TYPE_SECT | PMD_SECT_AP_WRITE,
285 .domain = DOMAIN_KERNEL,
286 },
Linus Walleijcb9d7702010-07-12 21:50:59 +0100287 [MT_MEMORY_DTCM] = {
Linus Walleijf444fce2010-10-18 09:03:03 +0100288 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY |
Russell King36bb94b2010-11-16 08:40:36 +0000289 L_PTE_XN,
Linus Walleijf444fce2010-10-18 09:03:03 +0100290 .prot_l1 = PMD_TYPE_TABLE,
291 .prot_sect = PMD_TYPE_SECT | PMD_SECT_XN,
292 .domain = DOMAIN_KERNEL,
Linus Walleijcb9d7702010-07-12 21:50:59 +0100293 },
294 [MT_MEMORY_ITCM] = {
Russell King36bb94b2010-11-16 08:40:36 +0000295 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY,
Linus Walleijcb9d7702010-07-12 21:50:59 +0100296 .prot_l1 = PMD_TYPE_TABLE,
Linus Walleijf444fce2010-10-18 09:03:03 +0100297 .domain = DOMAIN_KERNEL,
Linus Walleijcb9d7702010-07-12 21:50:59 +0100298 },
Santosh Shilimkar8fb54282011-06-28 12:42:56 -0700299 [MT_MEMORY_SO] = {
300 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY |
Santosh Shilimkar93d5bf02013-01-17 07:18:04 +0100301 L_PTE_MT_UNCACHED | L_PTE_XN,
Santosh Shilimkar8fb54282011-06-28 12:42:56 -0700302 .prot_l1 = PMD_TYPE_TABLE,
303 .prot_sect = PMD_TYPE_SECT | PMD_SECT_AP_WRITE | PMD_SECT_S |
304 PMD_SECT_UNCACHED | PMD_SECT_XN,
305 .domain = DOMAIN_KERNEL,
306 },
Marek Szyprowskic7909502011-12-29 13:09:51 +0100307 [MT_MEMORY_DMA_READY] = {
308 .prot_pte = L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_DIRTY,
309 .prot_l1 = PMD_TYPE_TABLE,
310 .domain = DOMAIN_KERNEL,
311 },
Russell Kingae8f1542006-09-27 15:38:34 +0100312};
313
Russell Kingb29e9f52007-04-21 10:47:29 +0100314const struct mem_type *get_mem_type(unsigned int type)
315{
316 return type < ARRAY_SIZE(mem_types) ? &mem_types[type] : NULL;
317}
Hiroshi DOYU69d3a842009-01-28 21:32:08 +0200318EXPORT_SYMBOL(get_mem_type);
Russell Kingb29e9f52007-04-21 10:47:29 +0100319
Russell Kingae8f1542006-09-27 15:38:34 +0100320/*
321 * Adjust the PMD section entries according to the CPU in use.
322 */
323static void __init build_mem_type_table(void)
324{
325 struct cachepolicy *cp;
326 unsigned int cr = get_cr();
Catalin Marinas442e70c2011-09-05 17:51:56 +0100327 pteval_t user_pgprot, kern_pgprot, vecs_pgprot;
Christoffer Dallcc577c22013-01-20 18:28:04 -0500328 pteval_t hyp_device_pgprot, s2_pgprot, s2_device_pgprot;
Russell Kingae8f1542006-09-27 15:38:34 +0100329 int cpu_arch = cpu_architecture();
330 int i;
331
Catalin Marinas11179d82007-07-20 11:42:24 +0100332 if (cpu_arch < CPU_ARCH_ARMv6) {
Russell Kingae8f1542006-09-27 15:38:34 +0100333#if defined(CONFIG_CPU_DCACHE_DISABLE)
Catalin Marinas11179d82007-07-20 11:42:24 +0100334 if (cachepolicy > CPOLICY_BUFFERED)
335 cachepolicy = CPOLICY_BUFFERED;
Russell Kingae8f1542006-09-27 15:38:34 +0100336#elif defined(CONFIG_CPU_DCACHE_WRITETHROUGH)
Catalin Marinas11179d82007-07-20 11:42:24 +0100337 if (cachepolicy > CPOLICY_WRITETHROUGH)
338 cachepolicy = CPOLICY_WRITETHROUGH;
Russell Kingae8f1542006-09-27 15:38:34 +0100339#endif
Catalin Marinas11179d82007-07-20 11:42:24 +0100340 }
Russell Kingae8f1542006-09-27 15:38:34 +0100341 if (cpu_arch < CPU_ARCH_ARMv5) {
342 if (cachepolicy >= CPOLICY_WRITEALLOC)
343 cachepolicy = CPOLICY_WRITEBACK;
344 ecc_mask = 0;
345 }
Russell Kingf00ec482010-09-04 10:47:48 +0100346 if (is_smp())
347 cachepolicy = CPOLICY_WRITEALLOC;
Russell Kingae8f1542006-09-27 15:38:34 +0100348
349 /*
Russell Kingb1cce6b2008-11-04 10:52:28 +0000350 * Strip out features not present on earlier architectures.
351 * Pre-ARMv5 CPUs don't have TEX bits. Pre-ARMv6 CPUs or those
352 * without extended page tables don't have the 'Shared' bit.
Lennert Buytenhek1ad77a82008-09-05 13:17:11 +0100353 */
Russell Kingb1cce6b2008-11-04 10:52:28 +0000354 if (cpu_arch < CPU_ARCH_ARMv5)
355 for (i = 0; i < ARRAY_SIZE(mem_types); i++)
356 mem_types[i].prot_sect &= ~PMD_SECT_TEX(7);
357 if ((cpu_arch < CPU_ARCH_ARMv6 || !(cr & CR_XP)) && !cpu_is_xsc3())
358 for (i = 0; i < ARRAY_SIZE(mem_types); i++)
359 mem_types[i].prot_sect &= ~PMD_SECT_S;
Russell Kingae8f1542006-09-27 15:38:34 +0100360
361 /*
Russell Kingb1cce6b2008-11-04 10:52:28 +0000362 * ARMv5 and lower, bit 4 must be set for page tables (was: cache
363 * "update-able on write" bit on ARM610). However, Xscale and
364 * Xscale3 require this bit to be cleared.
Russell Kingae8f1542006-09-27 15:38:34 +0100365 */
Russell Kingb1cce6b2008-11-04 10:52:28 +0000366 if (cpu_is_xscale() || cpu_is_xsc3()) {
Russell King9ef79632007-05-05 20:03:35 +0100367 for (i = 0; i < ARRAY_SIZE(mem_types); i++) {
Russell Kingae8f1542006-09-27 15:38:34 +0100368 mem_types[i].prot_sect &= ~PMD_BIT4;
Russell King9ef79632007-05-05 20:03:35 +0100369 mem_types[i].prot_l1 &= ~PMD_BIT4;
370 }
371 } else if (cpu_arch < CPU_ARCH_ARMv6) {
372 for (i = 0; i < ARRAY_SIZE(mem_types); i++) {
Russell Kingae8f1542006-09-27 15:38:34 +0100373 if (mem_types[i].prot_l1)
374 mem_types[i].prot_l1 |= PMD_BIT4;
Russell King9ef79632007-05-05 20:03:35 +0100375 if (mem_types[i].prot_sect)
376 mem_types[i].prot_sect |= PMD_BIT4;
377 }
378 }
Russell Kingae8f1542006-09-27 15:38:34 +0100379
Russell Kingb1cce6b2008-11-04 10:52:28 +0000380 /*
381 * Mark the device areas according to the CPU/architecture.
382 */
383 if (cpu_is_xsc3() || (cpu_arch >= CPU_ARCH_ARMv6 && (cr & CR_XP))) {
384 if (!cpu_is_xsc3()) {
385 /*
386 * Mark device regions on ARMv6+ as execute-never
387 * to prevent speculative instruction fetches.
388 */
389 mem_types[MT_DEVICE].prot_sect |= PMD_SECT_XN;
390 mem_types[MT_DEVICE_NONSHARED].prot_sect |= PMD_SECT_XN;
391 mem_types[MT_DEVICE_CACHED].prot_sect |= PMD_SECT_XN;
392 mem_types[MT_DEVICE_WC].prot_sect |= PMD_SECT_XN;
393 }
394 if (cpu_arch >= CPU_ARCH_ARMv7 && (cr & CR_TRE)) {
395 /*
396 * For ARMv7 with TEX remapping,
397 * - shared device is SXCB=1100
398 * - nonshared device is SXCB=0100
399 * - write combine device mem is SXCB=0001
400 * (Uncached Normal memory)
401 */
402 mem_types[MT_DEVICE].prot_sect |= PMD_SECT_TEX(1);
403 mem_types[MT_DEVICE_NONSHARED].prot_sect |= PMD_SECT_TEX(1);
404 mem_types[MT_DEVICE_WC].prot_sect |= PMD_SECT_BUFFERABLE;
405 } else if (cpu_is_xsc3()) {
406 /*
407 * For Xscale3,
408 * - shared device is TEXCB=00101
409 * - nonshared device is TEXCB=01000
410 * - write combine device mem is TEXCB=00100
411 * (Inner/Outer Uncacheable in xsc3 parlance)
412 */
413 mem_types[MT_DEVICE].prot_sect |= PMD_SECT_TEX(1) | PMD_SECT_BUFFERED;
414 mem_types[MT_DEVICE_NONSHARED].prot_sect |= PMD_SECT_TEX(2);
415 mem_types[MT_DEVICE_WC].prot_sect |= PMD_SECT_TEX(1);
416 } else {
417 /*
418 * For ARMv6 and ARMv7 without TEX remapping,
419 * - shared device is TEXCB=00001
420 * - nonshared device is TEXCB=01000
421 * - write combine device mem is TEXCB=00100
422 * (Uncached Normal in ARMv6 parlance).
423 */
424 mem_types[MT_DEVICE].prot_sect |= PMD_SECT_BUFFERED;
425 mem_types[MT_DEVICE_NONSHARED].prot_sect |= PMD_SECT_TEX(2);
426 mem_types[MT_DEVICE_WC].prot_sect |= PMD_SECT_TEX(1);
427 }
428 } else {
429 /*
430 * On others, write combining is "Uncached/Buffered"
431 */
432 mem_types[MT_DEVICE_WC].prot_sect |= PMD_SECT_BUFFERABLE;
433 }
434
435 /*
436 * Now deal with the memory-type mappings
437 */
Russell Kingae8f1542006-09-27 15:38:34 +0100438 cp = &cache_policies[cachepolicy];
Russell Kingbb30f362008-09-06 20:04:59 +0100439 vecs_pgprot = kern_pgprot = user_pgprot = cp->pte;
Christoffer Dallcc577c22013-01-20 18:28:04 -0500440 s2_pgprot = cp->pte_s2;
441 hyp_device_pgprot = s2_device_pgprot = mem_types[MT_DEVICE].prot_pte;
Russell Kingbb30f362008-09-06 20:04:59 +0100442
Russell Kingbb30f362008-09-06 20:04:59 +0100443 /*
Russell Kingae8f1542006-09-27 15:38:34 +0100444 * ARMv6 and above have extended page tables.
445 */
446 if (cpu_arch >= CPU_ARCH_ARMv6 && (cr & CR_XP)) {
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000447#ifndef CONFIG_ARM_LPAE
Russell Kingae8f1542006-09-27 15:38:34 +0100448 /*
Russell Kingae8f1542006-09-27 15:38:34 +0100449 * Mark cache clean areas and XIP ROM read only
450 * from SVC mode and no access from userspace.
451 */
452 mem_types[MT_ROM].prot_sect |= PMD_SECT_APX|PMD_SECT_AP_WRITE;
453 mem_types[MT_MINICLEAN].prot_sect |= PMD_SECT_APX|PMD_SECT_AP_WRITE;
454 mem_types[MT_CACHECLEAN].prot_sect |= PMD_SECT_APX|PMD_SECT_AP_WRITE;
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000455#endif
Russell Kingae8f1542006-09-27 15:38:34 +0100456
Russell Kingf00ec482010-09-04 10:47:48 +0100457 if (is_smp()) {
458 /*
459 * Mark memory with the "shared" attribute
460 * for SMP systems
461 */
462 user_pgprot |= L_PTE_SHARED;
463 kern_pgprot |= L_PTE_SHARED;
464 vecs_pgprot |= L_PTE_SHARED;
Christoffer Dallcc577c22013-01-20 18:28:04 -0500465 s2_pgprot |= L_PTE_SHARED;
Russell Kingf00ec482010-09-04 10:47:48 +0100466 mem_types[MT_DEVICE_WC].prot_sect |= PMD_SECT_S;
467 mem_types[MT_DEVICE_WC].prot_pte |= L_PTE_SHARED;
468 mem_types[MT_DEVICE_CACHED].prot_sect |= PMD_SECT_S;
469 mem_types[MT_DEVICE_CACHED].prot_pte |= L_PTE_SHARED;
470 mem_types[MT_MEMORY].prot_sect |= PMD_SECT_S;
471 mem_types[MT_MEMORY].prot_pte |= L_PTE_SHARED;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100472 mem_types[MT_MEMORY_DMA_READY].prot_pte |= L_PTE_SHARED;
Russell Kingf00ec482010-09-04 10:47:48 +0100473 mem_types[MT_MEMORY_NONCACHED].prot_sect |= PMD_SECT_S;
474 mem_types[MT_MEMORY_NONCACHED].prot_pte |= L_PTE_SHARED;
475 }
Russell Kingae8f1542006-09-27 15:38:34 +0100476 }
477
Paul Walmsleye4707dd2009-03-12 20:11:43 +0100478 /*
479 * Non-cacheable Normal - intended for memory areas that must
480 * not cause dirty cache line writebacks when used
481 */
482 if (cpu_arch >= CPU_ARCH_ARMv6) {
483 if (cpu_arch >= CPU_ARCH_ARMv7 && (cr & CR_TRE)) {
484 /* Non-cacheable Normal is XCB = 001 */
485 mem_types[MT_MEMORY_NONCACHED].prot_sect |=
486 PMD_SECT_BUFFERED;
487 } else {
488 /* For both ARMv6 and non-TEX-remapping ARMv7 */
489 mem_types[MT_MEMORY_NONCACHED].prot_sect |=
490 PMD_SECT_TEX(1);
491 }
492 } else {
493 mem_types[MT_MEMORY_NONCACHED].prot_sect |= PMD_SECT_BUFFERABLE;
494 }
495
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000496#ifdef CONFIG_ARM_LPAE
497 /*
498 * Do not generate access flag faults for the kernel mappings.
499 */
500 for (i = 0; i < ARRAY_SIZE(mem_types); i++) {
501 mem_types[i].prot_pte |= PTE_EXT_AF;
Vitaly Andrianov1a3abcf2012-05-15 15:01:16 +0100502 if (mem_types[i].prot_sect)
503 mem_types[i].prot_sect |= PMD_SECT_AF;
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000504 }
505 kern_pgprot |= PTE_EXT_AF;
506 vecs_pgprot |= PTE_EXT_AF;
507#endif
508
Russell Kingae8f1542006-09-27 15:38:34 +0100509 for (i = 0; i < 16; i++) {
Will Deacon864aa042012-09-18 19:18:35 +0100510 pteval_t v = pgprot_val(protection_map[i]);
Russell Kingbb30f362008-09-06 20:04:59 +0100511 protection_map[i] = __pgprot(v | user_pgprot);
Russell Kingae8f1542006-09-27 15:38:34 +0100512 }
513
Russell Kingbb30f362008-09-06 20:04:59 +0100514 mem_types[MT_LOW_VECTORS].prot_pte |= vecs_pgprot;
515 mem_types[MT_HIGH_VECTORS].prot_pte |= vecs_pgprot;
Russell Kingae8f1542006-09-27 15:38:34 +0100516
Imre_Deak44b18692007-02-11 13:45:13 +0100517 pgprot_user = __pgprot(L_PTE_PRESENT | L_PTE_YOUNG | user_pgprot);
Russell Kingae8f1542006-09-27 15:38:34 +0100518 pgprot_kernel = __pgprot(L_PTE_PRESENT | L_PTE_YOUNG |
Russell King36bb94b2010-11-16 08:40:36 +0000519 L_PTE_DIRTY | kern_pgprot);
Christoffer Dallcc577c22013-01-20 18:28:04 -0500520 pgprot_s2 = __pgprot(L_PTE_PRESENT | L_PTE_YOUNG | s2_pgprot);
521 pgprot_s2_device = __pgprot(s2_device_pgprot);
522 pgprot_hyp_device = __pgprot(hyp_device_pgprot);
Russell Kingae8f1542006-09-27 15:38:34 +0100523
524 mem_types[MT_LOW_VECTORS].prot_l1 |= ecc_mask;
525 mem_types[MT_HIGH_VECTORS].prot_l1 |= ecc_mask;
526 mem_types[MT_MEMORY].prot_sect |= ecc_mask | cp->pmd;
Santosh Shilimkarf1a24812010-09-24 07:18:22 +0100527 mem_types[MT_MEMORY].prot_pte |= kern_pgprot;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100528 mem_types[MT_MEMORY_DMA_READY].prot_pte |= kern_pgprot;
Santosh Shilimkarf1a24812010-09-24 07:18:22 +0100529 mem_types[MT_MEMORY_NONCACHED].prot_sect |= ecc_mask;
Russell Kingae8f1542006-09-27 15:38:34 +0100530 mem_types[MT_ROM].prot_sect |= cp->pmd;
531
532 switch (cp->pmd) {
533 case PMD_SECT_WT:
534 mem_types[MT_CACHECLEAN].prot_sect |= PMD_SECT_WT;
535 break;
536 case PMD_SECT_WB:
537 case PMD_SECT_WBWA:
538 mem_types[MT_CACHECLEAN].prot_sect |= PMD_SECT_WB;
539 break;
540 }
541 printk("Memory policy: ECC %sabled, Data cache %s\n",
542 ecc_mask ? "en" : "dis", cp->policy);
Russell King2497f0a2007-04-21 09:59:44 +0100543
544 for (i = 0; i < ARRAY_SIZE(mem_types); i++) {
545 struct mem_type *t = &mem_types[i];
546 if (t->prot_l1)
547 t->prot_l1 |= PMD_DOMAIN(t->domain);
548 if (t->prot_sect)
549 t->prot_sect |= PMD_DOMAIN(t->domain);
550 }
Russell Kingae8f1542006-09-27 15:38:34 +0100551}
552
Catalin Marinasd9073872010-09-13 16:01:24 +0100553#ifdef CONFIG_ARM_DMA_MEM_BUFFERABLE
554pgprot_t phys_mem_access_prot(struct file *file, unsigned long pfn,
555 unsigned long size, pgprot_t vma_prot)
556{
557 if (!pfn_valid(pfn))
558 return pgprot_noncached(vma_prot);
559 else if (file->f_flags & O_SYNC)
560 return pgprot_writecombine(vma_prot);
561 return vma_prot;
562}
563EXPORT_SYMBOL(phys_mem_access_prot);
564#endif
565
Russell Kingae8f1542006-09-27 15:38:34 +0100566#define vectors_base() (vectors_high() ? 0xffff0000 : 0)
567
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400568static void __init *early_alloc_aligned(unsigned long sz, unsigned long align)
Russell King3abe9d32010-03-25 17:02:59 +0000569{
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400570 void *ptr = __va(memblock_alloc(sz, align));
Russell King2778f622010-07-09 16:27:52 +0100571 memset(ptr, 0, sz);
572 return ptr;
Russell King3abe9d32010-03-25 17:02:59 +0000573}
574
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400575static void __init *early_alloc(unsigned long sz)
576{
577 return early_alloc_aligned(sz, sz);
578}
579
Russell King4bb2e272010-07-01 18:33:29 +0100580static pte_t * __init early_pte_alloc(pmd_t *pmd, unsigned long addr, unsigned long prot)
581{
582 if (pmd_none(*pmd)) {
Catalin Marinas410f1482011-02-14 12:58:04 +0100583 pte_t *pte = early_alloc(PTE_HWTABLE_OFF + PTE_HWTABLE_SIZE);
Russell King97092e02010-11-16 00:16:01 +0000584 __pmd_populate(pmd, __pa(pte), prot);
Russell King4bb2e272010-07-01 18:33:29 +0100585 }
586 BUG_ON(pmd_bad(*pmd));
587 return pte_offset_kernel(pmd, addr);
588}
589
Russell King24e6c692007-04-21 10:21:28 +0100590static void __init alloc_init_pte(pmd_t *pmd, unsigned long addr,
591 unsigned long end, unsigned long pfn,
592 const struct mem_type *type)
Russell Kingae8f1542006-09-27 15:38:34 +0100593{
Russell King4bb2e272010-07-01 18:33:29 +0100594 pte_t *pte = early_pte_alloc(pmd, addr, type->prot_l1);
Russell King24e6c692007-04-21 10:21:28 +0100595 do {
Russell King40d192b2008-09-06 21:15:56 +0100596 set_pte_ext(pte, pfn_pte(pfn, __pgprot(type->prot_pte)), 0);
Russell King24e6c692007-04-21 10:21:28 +0100597 pfn++;
598 } while (pte++, addr += PAGE_SIZE, addr != end);
Russell Kingae8f1542006-09-27 15:38:34 +0100599}
600
Sricharan Re651eab2013-03-18 12:24:04 +0100601static void __init map_init_section(pmd_t *pmd, unsigned long addr,
602 unsigned long end, phys_addr_t phys,
603 const struct mem_type *type)
604{
605#ifndef CONFIG_ARM_LPAE
606 /*
607 * In classic MMU format, puds and pmds are folded in to
608 * the pgds. pmd_offset gives the PGD entry. PGDs refer to a
609 * group of L1 entries making up one logical pointer to
610 * an L2 table (2MB), where as PMDs refer to the individual
611 * L1 entries (1MB). Hence increment to get the correct
612 * offset for odd 1MB sections.
613 * (See arch/arm/include/asm/pgtable-2level.h)
614 */
615 if (addr & SECTION_SIZE)
616 pmd++;
617#endif
618 do {
619 *pmd = __pmd(phys | type->prot_sect);
620 phys += SECTION_SIZE;
621 } while (pmd++, addr += SECTION_SIZE, addr != end);
622
623 flush_pmd_entry(pmd);
624}
625
626static void __init alloc_init_pmd(pud_t *pud, unsigned long addr,
Russell King97092e02010-11-16 00:16:01 +0000627 unsigned long end, phys_addr_t phys,
Russell King24e6c692007-04-21 10:21:28 +0100628 const struct mem_type *type)
Russell Kingae8f1542006-09-27 15:38:34 +0100629{
Russell King516295e2010-11-21 16:27:49 +0000630 pmd_t *pmd = pmd_offset(pud, addr);
Sricharan Re651eab2013-03-18 12:24:04 +0100631 unsigned long next;
Russell Kingae8f1542006-09-27 15:38:34 +0100632
Sricharan Re651eab2013-03-18 12:24:04 +0100633 do {
Russell King24e6c692007-04-21 10:21:28 +0100634 /*
Sricharan Re651eab2013-03-18 12:24:04 +0100635 * With LPAE, we must loop over to map
636 * all the pmds for the given range.
Russell King24e6c692007-04-21 10:21:28 +0100637 */
Sricharan Re651eab2013-03-18 12:24:04 +0100638 next = pmd_addr_end(addr, end);
639
640 /*
641 * Try a section mapping - addr, next and phys must all be
642 * aligned to a section boundary.
643 */
644 if (type->prot_sect &&
645 ((addr | next | phys) & ~SECTION_MASK) == 0) {
646 map_init_section(pmd, addr, next, phys, type);
647 } else {
648 alloc_init_pte(pmd, addr, next,
649 __phys_to_pfn(phys), type);
650 }
651
652 phys += next - addr;
653
654 } while (pmd++, addr = next, addr != end);
Russell Kingae8f1542006-09-27 15:38:34 +0100655}
656
Stephen Boyd14904922012-04-27 01:40:10 +0100657static void __init alloc_init_pud(pgd_t *pgd, unsigned long addr,
658 unsigned long end, unsigned long phys, const struct mem_type *type)
Russell King516295e2010-11-21 16:27:49 +0000659{
660 pud_t *pud = pud_offset(pgd, addr);
661 unsigned long next;
662
663 do {
664 next = pud_addr_end(addr, end);
Sricharan Re651eab2013-03-18 12:24:04 +0100665 alloc_init_pmd(pud, addr, next, phys, type);
Russell King516295e2010-11-21 16:27:49 +0000666 phys += next - addr;
667 } while (pud++, addr = next, addr != end);
668}
669
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000670#ifndef CONFIG_ARM_LPAE
Russell King4a56c1e2007-04-21 10:16:48 +0100671static void __init create_36bit_mapping(struct map_desc *md,
672 const struct mem_type *type)
673{
Russell King97092e02010-11-16 00:16:01 +0000674 unsigned long addr, length, end;
675 phys_addr_t phys;
Russell King4a56c1e2007-04-21 10:16:48 +0100676 pgd_t *pgd;
677
678 addr = md->virtual;
Will Deaconcae62922011-02-15 12:42:57 +0100679 phys = __pfn_to_phys(md->pfn);
Russell King4a56c1e2007-04-21 10:16:48 +0100680 length = PAGE_ALIGN(md->length);
681
682 if (!(cpu_architecture() >= CPU_ARCH_ARMv6 || cpu_is_xsc3())) {
683 printk(KERN_ERR "MM: CPU does not support supersection "
684 "mapping for 0x%08llx at 0x%08lx\n",
Will Deacon29a38192011-02-15 14:31:37 +0100685 (long long)__pfn_to_phys((u64)md->pfn), addr);
Russell King4a56c1e2007-04-21 10:16:48 +0100686 return;
687 }
688
689 /* N.B. ARMv6 supersections are only defined to work with domain 0.
690 * Since domain assignments can in fact be arbitrary, the
691 * 'domain == 0' check below is required to insure that ARMv6
692 * supersections are only allocated for domain 0 regardless
693 * of the actual domain assignments in use.
694 */
695 if (type->domain) {
696 printk(KERN_ERR "MM: invalid domain in supersection "
697 "mapping for 0x%08llx at 0x%08lx\n",
Will Deacon29a38192011-02-15 14:31:37 +0100698 (long long)__pfn_to_phys((u64)md->pfn), addr);
Russell King4a56c1e2007-04-21 10:16:48 +0100699 return;
700 }
701
702 if ((addr | length | __pfn_to_phys(md->pfn)) & ~SUPERSECTION_MASK) {
Will Deacon29a38192011-02-15 14:31:37 +0100703 printk(KERN_ERR "MM: cannot create mapping for 0x%08llx"
704 " at 0x%08lx invalid alignment\n",
705 (long long)__pfn_to_phys((u64)md->pfn), addr);
Russell King4a56c1e2007-04-21 10:16:48 +0100706 return;
707 }
708
709 /*
710 * Shift bits [35:32] of address into bits [23:20] of PMD
711 * (See ARMv6 spec).
712 */
713 phys |= (((md->pfn >> (32 - PAGE_SHIFT)) & 0xF) << 20);
714
715 pgd = pgd_offset_k(addr);
716 end = addr + length;
717 do {
Russell King516295e2010-11-21 16:27:49 +0000718 pud_t *pud = pud_offset(pgd, addr);
719 pmd_t *pmd = pmd_offset(pud, addr);
Russell King4a56c1e2007-04-21 10:16:48 +0100720 int i;
721
722 for (i = 0; i < 16; i++)
723 *pmd++ = __pmd(phys | type->prot_sect | PMD_SECT_SUPER);
724
725 addr += SUPERSECTION_SIZE;
726 phys += SUPERSECTION_SIZE;
727 pgd += SUPERSECTION_SIZE >> PGDIR_SHIFT;
728 } while (addr != end);
729}
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000730#endif /* !CONFIG_ARM_LPAE */
Russell King4a56c1e2007-04-21 10:16:48 +0100731
Russell Kingae8f1542006-09-27 15:38:34 +0100732/*
733 * Create the page directory entries and any necessary
734 * page tables for the mapping specified by `md'. We
735 * are able to cope here with varying sizes and address
736 * offsets, and we take full advantage of sections and
737 * supersections.
738 */
Russell Kinga2227122010-03-25 18:56:05 +0000739static void __init create_mapping(struct map_desc *md)
Russell Kingae8f1542006-09-27 15:38:34 +0100740{
Will Deaconcae62922011-02-15 12:42:57 +0100741 unsigned long addr, length, end;
742 phys_addr_t phys;
Russell Kingd5c98172007-04-21 10:05:32 +0100743 const struct mem_type *type;
Russell King24e6c692007-04-21 10:21:28 +0100744 pgd_t *pgd;
Russell Kingae8f1542006-09-27 15:38:34 +0100745
746 if (md->virtual != vectors_base() && md->virtual < TASK_SIZE) {
Will Deacon29a38192011-02-15 14:31:37 +0100747 printk(KERN_WARNING "BUG: not creating mapping for 0x%08llx"
748 " at 0x%08lx in user region\n",
749 (long long)__pfn_to_phys((u64)md->pfn), md->virtual);
Russell Kingae8f1542006-09-27 15:38:34 +0100750 return;
751 }
752
753 if ((md->type == MT_DEVICE || md->type == MT_ROM) &&
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400754 md->virtual >= PAGE_OFFSET &&
755 (md->virtual < VMALLOC_START || md->virtual >= VMALLOC_END)) {
Will Deacon29a38192011-02-15 14:31:37 +0100756 printk(KERN_WARNING "BUG: mapping for 0x%08llx"
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400757 " at 0x%08lx out of vmalloc space\n",
Will Deacon29a38192011-02-15 14:31:37 +0100758 (long long)__pfn_to_phys((u64)md->pfn), md->virtual);
Russell Kingae8f1542006-09-27 15:38:34 +0100759 }
760
Russell Kingd5c98172007-04-21 10:05:32 +0100761 type = &mem_types[md->type];
Russell Kingae8f1542006-09-27 15:38:34 +0100762
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000763#ifndef CONFIG_ARM_LPAE
Russell Kingae8f1542006-09-27 15:38:34 +0100764 /*
765 * Catch 36-bit addresses
766 */
Russell King4a56c1e2007-04-21 10:16:48 +0100767 if (md->pfn >= 0x100000) {
768 create_36bit_mapping(md, type);
769 return;
Russell Kingae8f1542006-09-27 15:38:34 +0100770 }
Catalin Marinas1b6ba462011-11-22 17:30:29 +0000771#endif
Russell Kingae8f1542006-09-27 15:38:34 +0100772
Russell King7b9c7b42007-07-04 21:16:33 +0100773 addr = md->virtual & PAGE_MASK;
Will Deaconcae62922011-02-15 12:42:57 +0100774 phys = __pfn_to_phys(md->pfn);
Russell King7b9c7b42007-07-04 21:16:33 +0100775 length = PAGE_ALIGN(md->length + (md->virtual & ~PAGE_MASK));
Russell Kingae8f1542006-09-27 15:38:34 +0100776
Russell King24e6c692007-04-21 10:21:28 +0100777 if (type->prot_l1 == 0 && ((addr | phys | length) & ~SECTION_MASK)) {
Will Deacon29a38192011-02-15 14:31:37 +0100778 printk(KERN_WARNING "BUG: map for 0x%08llx at 0x%08lx can not "
Russell Kingae8f1542006-09-27 15:38:34 +0100779 "be mapped using pages, ignoring.\n",
Will Deacon29a38192011-02-15 14:31:37 +0100780 (long long)__pfn_to_phys(md->pfn), addr);
Russell Kingae8f1542006-09-27 15:38:34 +0100781 return;
782 }
783
Russell King24e6c692007-04-21 10:21:28 +0100784 pgd = pgd_offset_k(addr);
785 end = addr + length;
786 do {
787 unsigned long next = pgd_addr_end(addr, end);
Russell Kingae8f1542006-09-27 15:38:34 +0100788
Russell King516295e2010-11-21 16:27:49 +0000789 alloc_init_pud(pgd, addr, next, phys, type);
Russell Kingae8f1542006-09-27 15:38:34 +0100790
Russell King24e6c692007-04-21 10:21:28 +0100791 phys += next - addr;
792 addr = next;
793 } while (pgd++, addr != end);
Russell Kingae8f1542006-09-27 15:38:34 +0100794}
795
796/*
797 * Create the architecture specific mappings
798 */
799void __init iotable_init(struct map_desc *io_desc, int nr)
800{
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400801 struct map_desc *md;
802 struct vm_struct *vm;
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100803 struct static_vm *svm;
Russell Kingae8f1542006-09-27 15:38:34 +0100804
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400805 if (!nr)
806 return;
807
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100808 svm = early_alloc_aligned(sizeof(*svm) * nr, __alignof__(*svm));
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400809
810 for (md = io_desc; nr; md++, nr--) {
811 create_mapping(md);
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100812
813 vm = &svm->vm;
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400814 vm->addr = (void *)(md->virtual & PAGE_MASK);
815 vm->size = PAGE_ALIGN(md->length + (md->virtual & ~PAGE_MASK));
Rob Herringc2794432012-02-29 18:10:58 -0600816 vm->phys_addr = __pfn_to_phys(md->pfn);
817 vm->flags = VM_IOREMAP | VM_ARM_STATIC_MAPPING;
Nicolas Pitre576d2f22011-09-16 01:14:23 -0400818 vm->flags |= VM_ARM_MTYPE(md->type);
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400819 vm->caller = iotable_init;
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100820 add_static_vm_early(svm++);
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400821 }
Russell Kingae8f1542006-09-27 15:38:34 +0100822}
823
Rob Herringc2794432012-02-29 18:10:58 -0600824void __init vm_reserve_area_early(unsigned long addr, unsigned long size,
825 void *caller)
826{
827 struct vm_struct *vm;
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100828 struct static_vm *svm;
Rob Herringc2794432012-02-29 18:10:58 -0600829
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100830 svm = early_alloc_aligned(sizeof(*svm), __alignof__(*svm));
831
832 vm = &svm->vm;
Rob Herringc2794432012-02-29 18:10:58 -0600833 vm->addr = (void *)addr;
834 vm->size = size;
Arnd Bergmann863e99a2012-09-04 15:01:37 +0200835 vm->flags = VM_IOREMAP | VM_ARM_EMPTY_MAPPING;
Rob Herringc2794432012-02-29 18:10:58 -0600836 vm->caller = caller;
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100837 add_static_vm_early(svm);
Rob Herringc2794432012-02-29 18:10:58 -0600838}
839
Nicolas Pitre19b52ab2012-06-27 17:28:57 +0100840#ifndef CONFIG_ARM_LPAE
841
842/*
843 * The Linux PMD is made of two consecutive section entries covering 2MB
844 * (see definition in include/asm/pgtable-2level.h). However a call to
845 * create_mapping() may optimize static mappings by using individual
846 * 1MB section mappings. This leaves the actual PMD potentially half
847 * initialized if the top or bottom section entry isn't used, leaving it
848 * open to problems if a subsequent ioremap() or vmalloc() tries to use
849 * the virtual space left free by that unused section entry.
850 *
851 * Let's avoid the issue by inserting dummy vm entries covering the unused
852 * PMD halves once the static mappings are in place.
853 */
854
855static void __init pmd_empty_section_gap(unsigned long addr)
856{
Rob Herringc2794432012-02-29 18:10:58 -0600857 vm_reserve_area_early(addr, SECTION_SIZE, pmd_empty_section_gap);
Nicolas Pitre19b52ab2012-06-27 17:28:57 +0100858}
859
860static void __init fill_pmd_gaps(void)
861{
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100862 struct static_vm *svm;
Nicolas Pitre19b52ab2012-06-27 17:28:57 +0100863 struct vm_struct *vm;
864 unsigned long addr, next = 0;
865 pmd_t *pmd;
866
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100867 list_for_each_entry(svm, &static_vmlist, list) {
868 vm = &svm->vm;
Nicolas Pitre19b52ab2012-06-27 17:28:57 +0100869 addr = (unsigned long)vm->addr;
870 if (addr < next)
871 continue;
872
873 /*
874 * Check if this vm starts on an odd section boundary.
875 * If so and the first section entry for this PMD is free
876 * then we block the corresponding virtual address.
877 */
878 if ((addr & ~PMD_MASK) == SECTION_SIZE) {
879 pmd = pmd_off_k(addr);
880 if (pmd_none(*pmd))
881 pmd_empty_section_gap(addr & PMD_MASK);
882 }
883
884 /*
885 * Then check if this vm ends on an odd section boundary.
886 * If so and the second section entry for this PMD is empty
887 * then we block the corresponding virtual address.
888 */
889 addr += vm->size;
890 if ((addr & ~PMD_MASK) == SECTION_SIZE) {
891 pmd = pmd_off_k(addr) + 1;
892 if (pmd_none(*pmd))
893 pmd_empty_section_gap(addr);
894 }
895
896 /* no need to look at any vm entry until we hit the next PMD */
897 next = (addr + PMD_SIZE - 1) & PMD_MASK;
898 }
899}
900
901#else
902#define fill_pmd_gaps() do { } while (0)
903#endif
904
Rob Herringc2794432012-02-29 18:10:58 -0600905#if defined(CONFIG_PCI) && !defined(CONFIG_NEED_MACH_IO_H)
906static void __init pci_reserve_io(void)
907{
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100908 struct static_vm *svm;
Rob Herringc2794432012-02-29 18:10:58 -0600909
Joonsoo Kim101eeda2013-02-09 06:28:06 +0100910 svm = find_static_vm_vaddr((void *)PCI_IO_VIRT_BASE);
911 if (svm)
912 return;
Rob Herringc2794432012-02-29 18:10:58 -0600913
Rob Herringc2794432012-02-29 18:10:58 -0600914 vm_reserve_area_early(PCI_IO_VIRT_BASE, SZ_2M, pci_reserve_io);
915}
916#else
917#define pci_reserve_io() do { } while (0)
918#endif
919
Rob Herringe5c5f2a2012-10-22 11:42:54 -0600920#ifdef CONFIG_DEBUG_LL
921void __init debug_ll_io_init(void)
922{
923 struct map_desc map;
924
925 debug_ll_addr(&map.pfn, &map.virtual);
926 if (!map.pfn || !map.virtual)
927 return;
928 map.pfn = __phys_to_pfn(map.pfn);
929 map.virtual &= PAGE_MASK;
930 map.length = PAGE_SIZE;
931 map.type = MT_DEVICE;
932 create_mapping(&map);
933}
934#endif
935
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400936static void * __initdata vmalloc_min =
937 (void *)(VMALLOC_END - (240 << 20) - VMALLOC_OFFSET);
Russell King6c5da7a2008-09-30 19:31:44 +0100938
939/*
940 * vmalloc=size forces the vmalloc area to be exactly 'size'
941 * bytes. This can be used to increase (or decrease) the vmalloc
Nicolas Pitre0536bdf2011-08-25 00:35:59 -0400942 * area - the default is 240m.
Russell King6c5da7a2008-09-30 19:31:44 +0100943 */
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100944static int __init early_vmalloc(char *arg)
Russell King6c5da7a2008-09-30 19:31:44 +0100945{
Russell King79612392010-05-22 16:20:14 +0100946 unsigned long vmalloc_reserve = memparse(arg, NULL);
Russell King6c5da7a2008-09-30 19:31:44 +0100947
948 if (vmalloc_reserve < SZ_16M) {
949 vmalloc_reserve = SZ_16M;
950 printk(KERN_WARNING
951 "vmalloc area too small, limiting to %luMB\n",
952 vmalloc_reserve >> 20);
953 }
Nicolas Pitre92108072008-09-19 10:43:06 -0400954
955 if (vmalloc_reserve > VMALLOC_END - (PAGE_OFFSET + SZ_32M)) {
956 vmalloc_reserve = VMALLOC_END - (PAGE_OFFSET + SZ_32M);
957 printk(KERN_WARNING
958 "vmalloc area is too big, limiting to %luMB\n",
959 vmalloc_reserve >> 20);
960 }
Russell King79612392010-05-22 16:20:14 +0100961
962 vmalloc_min = (void *)(VMALLOC_END - vmalloc_reserve);
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100963 return 0;
Russell King6c5da7a2008-09-30 19:31:44 +0100964}
Jeremy Kerr2b0d8c22010-01-11 23:17:34 +0100965early_param("vmalloc", early_vmalloc);
Russell King6c5da7a2008-09-30 19:31:44 +0100966
Marek Szyprowskic7909502011-12-29 13:09:51 +0100967phys_addr_t arm_lowmem_limit __initdata = 0;
Russell King8df65162010-10-27 19:57:38 +0100968
Russell King0371d3f2011-07-05 19:58:29 +0100969void __init sanity_check_meminfo(void)
Lennert Buytenhek60296c72008-08-05 01:56:13 +0200970{
Russell Kingdde58282009-08-15 12:36:00 +0100971 int i, j, highmem = 0;
Lennert Buytenhek60296c72008-08-05 01:56:13 +0200972
Nicolas Pitre4b5f32c2008-10-06 13:24:40 -0400973 for (i = 0, j = 0; i < meminfo.nr_banks; i++) {
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -0400974 struct membank *bank = &meminfo.bank[j];
975 *bank = meminfo.bank[i];
976
Will Deacon77f73a22011-11-22 17:30:32 +0000977 if (bank->start > ULONG_MAX)
978 highmem = 1;
979
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -0400980#ifdef CONFIG_HIGHMEM
Will Deacon40f7bfe2011-05-19 13:22:48 +0100981 if (__va(bank->start) >= vmalloc_min ||
Russell Kingdde58282009-08-15 12:36:00 +0100982 __va(bank->start) < (void *)PAGE_OFFSET)
983 highmem = 1;
984
985 bank->highmem = highmem;
986
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -0400987 /*
988 * Split those memory banks which are partially overlapping
989 * the vmalloc area greatly simplifying things later.
990 */
Will Deacon77f73a22011-11-22 17:30:32 +0000991 if (!highmem && __va(bank->start) < vmalloc_min &&
Russell King79612392010-05-22 16:20:14 +0100992 bank->size > vmalloc_min - __va(bank->start)) {
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -0400993 if (meminfo.nr_banks >= NR_BANKS) {
994 printk(KERN_CRIT "NR_BANKS too low, "
995 "ignoring high memory\n");
996 } else {
997 memmove(bank + 1, bank,
998 (meminfo.nr_banks - i) * sizeof(*bank));
999 meminfo.nr_banks++;
1000 i++;
Russell King79612392010-05-22 16:20:14 +01001001 bank[1].size -= vmalloc_min - __va(bank->start);
1002 bank[1].start = __pa(vmalloc_min - 1) + 1;
Russell Kingdde58282009-08-15 12:36:00 +01001003 bank[1].highmem = highmem = 1;
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001004 j++;
1005 }
Russell King79612392010-05-22 16:20:14 +01001006 bank->size = vmalloc_min - __va(bank->start);
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001007 }
1008#else
Russell King041d7852009-09-27 17:40:42 +01001009 bank->highmem = highmem;
1010
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001011 /*
Will Deacon77f73a22011-11-22 17:30:32 +00001012 * Highmem banks not allowed with !CONFIG_HIGHMEM.
1013 */
1014 if (highmem) {
1015 printk(KERN_NOTICE "Ignoring RAM at %.8llx-%.8llx "
1016 "(!CONFIG_HIGHMEM).\n",
1017 (unsigned long long)bank->start,
1018 (unsigned long long)bank->start + bank->size - 1);
1019 continue;
1020 }
1021
1022 /*
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001023 * Check whether this memory bank would entirely overlap
1024 * the vmalloc area.
1025 */
Russell King79612392010-05-22 16:20:14 +01001026 if (__va(bank->start) >= vmalloc_min ||
Mikael Petterssonf0bba9f92009-03-28 19:18:05 +01001027 __va(bank->start) < (void *)PAGE_OFFSET) {
Russell Kinge33b9d02011-02-20 11:47:41 +00001028 printk(KERN_NOTICE "Ignoring RAM at %.8llx-%.8llx "
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001029 "(vmalloc region overlap).\n",
Russell Kinge33b9d02011-02-20 11:47:41 +00001030 (unsigned long long)bank->start,
1031 (unsigned long long)bank->start + bank->size - 1);
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001032 continue;
1033 }
1034
1035 /*
1036 * Check whether this memory bank would partially overlap
1037 * the vmalloc area.
1038 */
Jonathan Austin36418c52012-08-23 14:02:59 +01001039 if (__va(bank->start + bank->size - 1) >= vmalloc_min ||
1040 __va(bank->start + bank->size - 1) <= __va(bank->start)) {
Russell King79612392010-05-22 16:20:14 +01001041 unsigned long newsize = vmalloc_min - __va(bank->start);
Russell Kinge33b9d02011-02-20 11:47:41 +00001042 printk(KERN_NOTICE "Truncating RAM at %.8llx-%.8llx "
1043 "to -%.8llx (vmalloc region overlap).\n",
1044 (unsigned long long)bank->start,
1045 (unsigned long long)bank->start + bank->size - 1,
1046 (unsigned long long)bank->start + newsize - 1);
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001047 bank->size = newsize;
1048 }
1049#endif
Marek Szyprowskic7909502011-12-29 13:09:51 +01001050 if (!bank->highmem && bank->start + bank->size > arm_lowmem_limit)
1051 arm_lowmem_limit = bank->start + bank->size;
Will Deacon40f7bfe2011-05-19 13:22:48 +01001052
Nicolas Pitrea1bbaec2008-09-02 11:44:21 -04001053 j++;
Lennert Buytenhek60296c72008-08-05 01:56:13 +02001054 }
Russell Kinge616c592009-09-27 20:55:43 +01001055#ifdef CONFIG_HIGHMEM
1056 if (highmem) {
1057 const char *reason = NULL;
1058
1059 if (cache_is_vipt_aliasing()) {
1060 /*
1061 * Interactions between kmap and other mappings
1062 * make highmem support with aliasing VIPT caches
1063 * rather difficult.
1064 */
1065 reason = "with VIPT aliasing cache";
Russell Kinge616c592009-09-27 20:55:43 +01001066 }
1067 if (reason) {
1068 printk(KERN_CRIT "HIGHMEM is not supported %s, ignoring high memory\n",
1069 reason);
1070 while (j > 0 && meminfo.bank[j - 1].highmem)
1071 j--;
1072 }
1073 }
1074#endif
Nicolas Pitre4b5f32c2008-10-06 13:24:40 -04001075 meminfo.nr_banks = j;
Marek Szyprowskic7909502011-12-29 13:09:51 +01001076 high_memory = __va(arm_lowmem_limit - 1) + 1;
1077 memblock_set_current_limit(arm_lowmem_limit);
Lennert Buytenhek60296c72008-08-05 01:56:13 +02001078}
1079
Nicolas Pitre4b5f32c2008-10-06 13:24:40 -04001080static inline void prepare_page_table(void)
Russell Kingd111e8f2006-09-27 15:27:33 +01001081{
1082 unsigned long addr;
Russell King8df65162010-10-27 19:57:38 +01001083 phys_addr_t end;
Russell Kingd111e8f2006-09-27 15:27:33 +01001084
1085 /*
1086 * Clear out all the mappings below the kernel image.
1087 */
Catalin Marinase73fc882011-08-23 14:07:23 +01001088 for (addr = 0; addr < MODULES_VADDR; addr += PMD_SIZE)
Russell Kingd111e8f2006-09-27 15:27:33 +01001089 pmd_clear(pmd_off_k(addr));
1090
1091#ifdef CONFIG_XIP_KERNEL
1092 /* The XIP kernel is mapped in the module area -- skip over it */
Catalin Marinase73fc882011-08-23 14:07:23 +01001093 addr = ((unsigned long)_etext + PMD_SIZE - 1) & PMD_MASK;
Russell Kingd111e8f2006-09-27 15:27:33 +01001094#endif
Catalin Marinase73fc882011-08-23 14:07:23 +01001095 for ( ; addr < PAGE_OFFSET; addr += PMD_SIZE)
Russell Kingd111e8f2006-09-27 15:27:33 +01001096 pmd_clear(pmd_off_k(addr));
1097
1098 /*
Russell King8df65162010-10-27 19:57:38 +01001099 * Find the end of the first block of lowmem.
1100 */
1101 end = memblock.memory.regions[0].base + memblock.memory.regions[0].size;
Marek Szyprowskic7909502011-12-29 13:09:51 +01001102 if (end >= arm_lowmem_limit)
1103 end = arm_lowmem_limit;
Russell King8df65162010-10-27 19:57:38 +01001104
1105 /*
Russell Kingd111e8f2006-09-27 15:27:33 +01001106 * Clear out all the kernel space mappings, except for the first
Nicolas Pitre0536bdf2011-08-25 00:35:59 -04001107 * memory bank, up to the vmalloc region.
Russell Kingd111e8f2006-09-27 15:27:33 +01001108 */
Russell King8df65162010-10-27 19:57:38 +01001109 for (addr = __phys_to_virt(end);
Nicolas Pitre0536bdf2011-08-25 00:35:59 -04001110 addr < VMALLOC_START; addr += PMD_SIZE)
Russell Kingd111e8f2006-09-27 15:27:33 +01001111 pmd_clear(pmd_off_k(addr));
1112}
1113
Catalin Marinas1b6ba462011-11-22 17:30:29 +00001114#ifdef CONFIG_ARM_LPAE
1115/* the first page is reserved for pgd */
1116#define SWAPPER_PG_DIR_SIZE (PAGE_SIZE + \
1117 PTRS_PER_PGD * PTRS_PER_PMD * sizeof(pmd_t))
1118#else
Catalin Marinase73fc882011-08-23 14:07:23 +01001119#define SWAPPER_PG_DIR_SIZE (PTRS_PER_PGD * sizeof(pgd_t))
Catalin Marinas1b6ba462011-11-22 17:30:29 +00001120#endif
Catalin Marinase73fc882011-08-23 14:07:23 +01001121
Russell Kingd111e8f2006-09-27 15:27:33 +01001122/*
Russell King2778f622010-07-09 16:27:52 +01001123 * Reserve the special regions of memory
Russell Kingd111e8f2006-09-27 15:27:33 +01001124 */
Russell King2778f622010-07-09 16:27:52 +01001125void __init arm_mm_memblock_reserve(void)
Russell Kingd111e8f2006-09-27 15:27:33 +01001126{
Russell Kingd111e8f2006-09-27 15:27:33 +01001127 /*
Russell Kingd111e8f2006-09-27 15:27:33 +01001128 * Reserve the page tables. These are already in use,
1129 * and can only be in node 0.
1130 */
Catalin Marinase73fc882011-08-23 14:07:23 +01001131 memblock_reserve(__pa(swapper_pg_dir), SWAPPER_PG_DIR_SIZE);
Russell Kingd111e8f2006-09-27 15:27:33 +01001132
Russell Kingd111e8f2006-09-27 15:27:33 +01001133#ifdef CONFIG_SA1111
1134 /*
1135 * Because of the SA1111 DMA bug, we want to preserve our
1136 * precious DMA-able memory...
1137 */
Russell King2778f622010-07-09 16:27:52 +01001138 memblock_reserve(PHYS_OFFSET, __pa(swapper_pg_dir) - PHYS_OFFSET);
Russell Kingd111e8f2006-09-27 15:27:33 +01001139#endif
Russell Kingd111e8f2006-09-27 15:27:33 +01001140}
1141
1142/*
Nicolas Pitre0536bdf2011-08-25 00:35:59 -04001143 * Set up the device mappings. Since we clear out the page tables for all
1144 * mappings above VMALLOC_START, we will remove any debug device mappings.
Russell Kingd111e8f2006-09-27 15:27:33 +01001145 * This means you have to be careful how you debug this function, or any
1146 * called function. This means you can't use any function or debugging
1147 * method which may touch any device, otherwise the kernel _will_ crash.
1148 */
1149static void __init devicemaps_init(struct machine_desc *mdesc)
1150{
1151 struct map_desc map;
1152 unsigned long addr;
Russell King94e5a852012-01-18 15:32:49 +00001153 void *vectors;
Russell Kingd111e8f2006-09-27 15:27:33 +01001154
1155 /*
1156 * Allocate the vector page early.
1157 */
Russell King94e5a852012-01-18 15:32:49 +00001158 vectors = early_alloc(PAGE_SIZE);
1159
1160 early_trap_init(vectors);
Russell Kingd111e8f2006-09-27 15:27:33 +01001161
Nicolas Pitre0536bdf2011-08-25 00:35:59 -04001162 for (addr = VMALLOC_START; addr; addr += PMD_SIZE)
Russell Kingd111e8f2006-09-27 15:27:33 +01001163 pmd_clear(pmd_off_k(addr));
1164
1165 /*
1166 * Map the kernel if it is XIP.
1167 * It is always first in the modulearea.
1168 */
1169#ifdef CONFIG_XIP_KERNEL
1170 map.pfn = __phys_to_pfn(CONFIG_XIP_PHYS_ADDR & SECTION_MASK);
Russell Kingab4f2ee2008-11-06 17:11:07 +00001171 map.virtual = MODULES_VADDR;
Russell King37efe642008-12-01 11:53:07 +00001172 map.length = ((unsigned long)_etext - map.virtual + ~SECTION_MASK) & SECTION_MASK;
Russell Kingd111e8f2006-09-27 15:27:33 +01001173 map.type = MT_ROM;
1174 create_mapping(&map);
1175#endif
1176
1177 /*
1178 * Map the cache flushing regions.
1179 */
1180#ifdef FLUSH_BASE
1181 map.pfn = __phys_to_pfn(FLUSH_BASE_PHYS);
1182 map.virtual = FLUSH_BASE;
1183 map.length = SZ_1M;
1184 map.type = MT_CACHECLEAN;
1185 create_mapping(&map);
1186#endif
1187#ifdef FLUSH_BASE_MINICACHE
1188 map.pfn = __phys_to_pfn(FLUSH_BASE_PHYS + SZ_1M);
1189 map.virtual = FLUSH_BASE_MINICACHE;
1190 map.length = SZ_1M;
1191 map.type = MT_MINICLEAN;
1192 create_mapping(&map);
1193#endif
1194
1195 /*
1196 * Create a mapping for the machine vectors at the high-vectors
1197 * location (0xffff0000). If we aren't using high-vectors, also
1198 * create a mapping at the low-vectors virtual address.
1199 */
Russell King94e5a852012-01-18 15:32:49 +00001200 map.pfn = __phys_to_pfn(virt_to_phys(vectors));
Russell Kingd111e8f2006-09-27 15:27:33 +01001201 map.virtual = 0xffff0000;
1202 map.length = PAGE_SIZE;
1203 map.type = MT_HIGH_VECTORS;
1204 create_mapping(&map);
1205
1206 if (!vectors_high()) {
1207 map.virtual = 0;
1208 map.type = MT_LOW_VECTORS;
1209 create_mapping(&map);
1210 }
1211
1212 /*
1213 * Ask the machine support to map in the statically mapped devices.
1214 */
1215 if (mdesc->map_io)
1216 mdesc->map_io();
Nicolas Pitre19b52ab2012-06-27 17:28:57 +01001217 fill_pmd_gaps();
Russell Kingd111e8f2006-09-27 15:27:33 +01001218
Rob Herringc2794432012-02-29 18:10:58 -06001219 /* Reserve fixed i/o space in VMALLOC region */
1220 pci_reserve_io();
1221
Russell Kingd111e8f2006-09-27 15:27:33 +01001222 /*
1223 * Finally flush the caches and tlb to ensure that we're in a
1224 * consistent state wrt the writebuffer. This also ensures that
1225 * any write-allocated cache lines in the vector page are written
1226 * back. After this point, we can start to touch devices again.
1227 */
1228 local_flush_tlb_all();
1229 flush_cache_all();
1230}
1231
Nicolas Pitred73cd422008-09-15 16:44:55 -04001232static void __init kmap_init(void)
1233{
1234#ifdef CONFIG_HIGHMEM
Russell King4bb2e272010-07-01 18:33:29 +01001235 pkmap_page_table = early_pte_alloc(pmd_off_k(PKMAP_BASE),
1236 PKMAP_BASE, _PAGE_KERNEL_TABLE);
Nicolas Pitred73cd422008-09-15 16:44:55 -04001237#endif
1238}
1239
Russell Kinga2227122010-03-25 18:56:05 +00001240static void __init map_lowmem(void)
1241{
Russell King8df65162010-10-27 19:57:38 +01001242 struct memblock_region *reg;
Russell Kinga2227122010-03-25 18:56:05 +00001243
1244 /* Map all the lowmem memory banks. */
Russell King8df65162010-10-27 19:57:38 +01001245 for_each_memblock(memory, reg) {
1246 phys_addr_t start = reg->base;
1247 phys_addr_t end = start + reg->size;
1248 struct map_desc map;
Russell Kinga2227122010-03-25 18:56:05 +00001249
Marek Szyprowskic7909502011-12-29 13:09:51 +01001250 if (end > arm_lowmem_limit)
1251 end = arm_lowmem_limit;
Russell King8df65162010-10-27 19:57:38 +01001252 if (start >= end)
1253 break;
1254
1255 map.pfn = __phys_to_pfn(start);
1256 map.virtual = __phys_to_virt(start);
1257 map.length = end - start;
1258 map.type = MT_MEMORY;
1259
1260 create_mapping(&map);
Russell Kinga2227122010-03-25 18:56:05 +00001261 }
1262}
1263
Russell Kingd111e8f2006-09-27 15:27:33 +01001264/*
1265 * paging_init() sets up the page tables, initialises the zone memory
1266 * maps, and sets up the zero page, bad page and bad page tables.
1267 */
Nicolas Pitre4b5f32c2008-10-06 13:24:40 -04001268void __init paging_init(struct machine_desc *mdesc)
Russell Kingd111e8f2006-09-27 15:27:33 +01001269{
1270 void *zero_page;
1271
Marek Szyprowskic7909502011-12-29 13:09:51 +01001272 memblock_set_current_limit(arm_lowmem_limit);
Russell King0371d3f2011-07-05 19:58:29 +01001273
Russell Kingd111e8f2006-09-27 15:27:33 +01001274 build_mem_type_table();
Nicolas Pitre4b5f32c2008-10-06 13:24:40 -04001275 prepare_page_table();
Russell Kinga2227122010-03-25 18:56:05 +00001276 map_lowmem();
Marek Szyprowskic7909502011-12-29 13:09:51 +01001277 dma_contiguous_remap();
Russell Kingd111e8f2006-09-27 15:27:33 +01001278 devicemaps_init(mdesc);
Nicolas Pitred73cd422008-09-15 16:44:55 -04001279 kmap_init();
Russell Kingd111e8f2006-09-27 15:27:33 +01001280
1281 top_pmd = pmd_off_k(0xffff0000);
1282
Russell King3abe9d32010-03-25 17:02:59 +00001283 /* allocate the zero page. */
1284 zero_page = early_alloc(PAGE_SIZE);
Russell King2778f622010-07-09 16:27:52 +01001285
Russell King8d717a52010-05-22 19:47:18 +01001286 bootmem_init();
Russell King2778f622010-07-09 16:27:52 +01001287
Russell Kingd111e8f2006-09-27 15:27:33 +01001288 empty_zero_page = virt_to_page(zero_page);
Russell King421fe932009-10-25 10:23:04 +00001289 __flush_dcache_page(NULL, empty_zero_page);
Russell Kingd111e8f2006-09-27 15:27:33 +01001290}