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Heiko Carstensf4eb07c2006-12-08 15:56:07 +01001/*
Heiko Carstensf4eb07c2006-12-08 15:56:07 +01002 * Copyright IBM Corp. 2006
3 * Author(s): Heiko Carstens <heiko.carstens@de.ibm.com>
4 */
5
6#include <linux/bootmem.h>
7#include <linux/pfn.h>
8#include <linux/mm.h>
9#include <linux/module.h>
10#include <linux/list.h>
Gerald Schaefer53492b12008-04-30 13:38:46 +020011#include <linux/hugetlb.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090012#include <linux/slab.h>
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010013#include <asm/pgalloc.h>
14#include <asm/pgtable.h>
15#include <asm/setup.h>
16#include <asm/tlbflush.h>
Gerald Schaefer53492b12008-04-30 13:38:46 +020017#include <asm/sections.h>
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010018
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010019static DEFINE_MUTEX(vmem_mutex);
20
21struct memory_segment {
22 struct list_head list;
23 unsigned long start;
24 unsigned long size;
25};
26
27static LIST_HEAD(mem_segs);
28
Heiko Carstens67060d92008-05-30 10:03:27 +020029static void __ref *vmem_alloc_pages(unsigned int order)
30{
31 if (slab_is_available())
32 return (void *)__get_free_pages(GFP_KERNEL, order);
33 return alloc_bootmem_pages((1 << order) * PAGE_SIZE);
34}
35
36static inline pud_t *vmem_pud_alloc(void)
Martin Schwidefsky5a216a22008-02-09 18:24:36 +010037{
38 pud_t *pud = NULL;
39
40#ifdef CONFIG_64BIT
Heiko Carstens67060d92008-05-30 10:03:27 +020041 pud = vmem_alloc_pages(2);
Martin Schwidefsky5a216a22008-02-09 18:24:36 +010042 if (!pud)
43 return NULL;
Heiko Carstens8fc63652008-04-30 13:38:44 +020044 clear_table((unsigned long *) pud, _REGION3_ENTRY_EMPTY, PAGE_SIZE * 4);
Martin Schwidefsky5a216a22008-02-09 18:24:36 +010045#endif
46 return pud;
47}
Martin Schwidefsky190a1d72007-10-22 12:52:48 +020048
Heiko Carstens67060d92008-05-30 10:03:27 +020049static inline pmd_t *vmem_pmd_alloc(void)
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010050{
Martin Schwidefsky3610cce2007-10-22 12:52:47 +020051 pmd_t *pmd = NULL;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010052
Martin Schwidefsky3610cce2007-10-22 12:52:47 +020053#ifdef CONFIG_64BIT
Heiko Carstens67060d92008-05-30 10:03:27 +020054 pmd = vmem_alloc_pages(2);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010055 if (!pmd)
56 return NULL;
Heiko Carstens8fc63652008-04-30 13:38:44 +020057 clear_table((unsigned long *) pmd, _SEGMENT_ENTRY_EMPTY, PAGE_SIZE * 4);
Martin Schwidefsky3610cce2007-10-22 12:52:47 +020058#endif
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010059 return pmd;
60}
61
Martin Schwidefskye5992f22011-07-24 10:48:20 +020062static pte_t __ref *vmem_pte_alloc(unsigned long address)
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010063{
Martin Schwidefsky146e4b32008-02-09 18:24:35 +010064 pte_t *pte;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010065
Martin Schwidefsky146e4b32008-02-09 18:24:35 +010066 if (slab_is_available())
Martin Schwidefskye5992f22011-07-24 10:48:20 +020067 pte = (pte_t *) page_table_alloc(&init_mm, address);
Martin Schwidefsky146e4b32008-02-09 18:24:35 +010068 else
69 pte = alloc_bootmem(PTRS_PER_PTE * sizeof(pte_t));
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010070 if (!pte)
71 return NULL;
Christian Borntraeger6af7eea2010-04-09 13:43:01 +020072 clear_table((unsigned long *) pte, _PAGE_TYPE_EMPTY,
73 PTRS_PER_PTE * sizeof(pte_t));
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010074 return pte;
75}
76
77/*
78 * Add a physical memory range to the 1:1 mapping.
79 */
Heiko Carstens17f34582008-04-30 13:38:47 +020080static int vmem_add_mem(unsigned long start, unsigned long size, int ro)
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010081{
Heiko Carstens378b1e72012-10-01 12:58:34 +020082 unsigned long end = start + size;
83 unsigned long address = start;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010084 pgd_t *pg_dir;
Martin Schwidefsky190a1d72007-10-22 12:52:48 +020085 pud_t *pu_dir;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010086 pmd_t *pm_dir;
87 pte_t *pt_dir;
88 pte_t pte;
89 int ret = -ENOMEM;
90
Heiko Carstens378b1e72012-10-01 12:58:34 +020091 while (address < end) {
Heiko Carstensf4eb07c2006-12-08 15:56:07 +010092 pg_dir = pgd_offset_k(address);
93 if (pgd_none(*pg_dir)) {
Martin Schwidefsky190a1d72007-10-22 12:52:48 +020094 pu_dir = vmem_pud_alloc();
95 if (!pu_dir)
96 goto out;
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +020097 pgd_populate(&init_mm, pg_dir, pu_dir);
Martin Schwidefsky190a1d72007-10-22 12:52:48 +020098 }
99
100 pu_dir = pud_offset(pg_dir, address);
101 if (pud_none(*pu_dir)) {
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100102 pm_dir = vmem_pmd_alloc();
103 if (!pm_dir)
104 goto out;
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +0200105 pud_populate(&init_mm, pu_dir, pm_dir);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100106 }
107
Gerald Schaefer53492b12008-04-30 13:38:46 +0200108 pte = mk_pte_phys(address, __pgprot(ro ? _PAGE_RO : 0));
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200109 pm_dir = pmd_offset(pu_dir, address);
Gerald Schaefer53492b12008-04-30 13:38:46 +0200110
Gerald Schaefer648609e2012-08-21 12:36:34 +0200111#if defined(CONFIG_64BIT) && !defined(CONFIG_DEBUG_PAGEALLOC)
Heiko Carstensfc7e48aa2012-10-08 07:54:32 +0200112 if (MACHINE_HAS_EDAT1 && pmd_none(*pm_dir) && address &&
113 !(address & ~PMD_MASK) && (address + PMD_SIZE <= end)) {
Christian Borntraeger6af7eea2010-04-09 13:43:01 +0200114 pte_val(pte) |= _SEGMENT_ENTRY_LARGE;
Gerald Schaefer53492b12008-04-30 13:38:46 +0200115 pmd_val(*pm_dir) = pte_val(pte);
Heiko Carstens378b1e72012-10-01 12:58:34 +0200116 address += PMD_SIZE;
Gerald Schaefer53492b12008-04-30 13:38:46 +0200117 continue;
118 }
119#endif
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100120 if (pmd_none(*pm_dir)) {
Martin Schwidefskye5992f22011-07-24 10:48:20 +0200121 pt_dir = vmem_pte_alloc(address);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100122 if (!pt_dir)
123 goto out;
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +0200124 pmd_populate(&init_mm, pm_dir, pt_dir);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100125 }
126
127 pt_dir = pte_offset_kernel(pm_dir, address);
Gerald Schaeferc1821c22007-02-05 21:18:17 +0100128 *pt_dir = pte;
Heiko Carstens378b1e72012-10-01 12:58:34 +0200129 address += PAGE_SIZE;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100130 }
131 ret = 0;
132out:
Heiko Carstens378b1e72012-10-01 12:58:34 +0200133 flush_tlb_kernel_range(start, end);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100134 return ret;
135}
136
137/*
138 * Remove a physical memory range from the 1:1 mapping.
139 * Currently only invalidates page table entries.
140 */
141static void vmem_remove_range(unsigned long start, unsigned long size)
142{
Heiko Carstens378b1e72012-10-01 12:58:34 +0200143 unsigned long end = start + size;
144 unsigned long address = start;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100145 pgd_t *pg_dir;
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200146 pud_t *pu_dir;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100147 pmd_t *pm_dir;
148 pte_t *pt_dir;
149 pte_t pte;
150
151 pte_val(pte) = _PAGE_TYPE_EMPTY;
Heiko Carstens378b1e72012-10-01 12:58:34 +0200152 while (address < end) {
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100153 pg_dir = pgd_offset_k(address);
Heiko Carstensfc7e48aa2012-10-08 07:54:32 +0200154 if (pgd_none(*pg_dir)) {
155 address += PGDIR_SIZE;
156 continue;
157 }
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200158 pu_dir = pud_offset(pg_dir, address);
Heiko Carstensfc7e48aa2012-10-08 07:54:32 +0200159 if (pud_none(*pu_dir)) {
160 address += PUD_SIZE;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100161 continue;
Heiko Carstensfc7e48aa2012-10-08 07:54:32 +0200162 }
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200163 pm_dir = pmd_offset(pu_dir, address);
Heiko Carstensfc7e48aa2012-10-08 07:54:32 +0200164 if (pmd_none(*pm_dir)) {
165 address += PMD_SIZE;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100166 continue;
Heiko Carstensfc7e48aa2012-10-08 07:54:32 +0200167 }
Heiko Carstens378b1e72012-10-01 12:58:34 +0200168 if (pmd_large(*pm_dir)) {
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +0200169 pmd_clear(pm_dir);
Heiko Carstens378b1e72012-10-01 12:58:34 +0200170 address += PMD_SIZE;
Gerald Schaefer53492b12008-04-30 13:38:46 +0200171 continue;
172 }
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100173 pt_dir = pte_offset_kernel(pm_dir, address);
Gerald Schaeferc1821c22007-02-05 21:18:17 +0100174 *pt_dir = pte;
Heiko Carstens378b1e72012-10-01 12:58:34 +0200175 address += PAGE_SIZE;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100176 }
Heiko Carstens378b1e72012-10-01 12:58:34 +0200177 flush_tlb_kernel_range(start, end);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100178}
179
180/*
181 * Add a backed mem_map array to the virtual mem_map array.
182 */
Heiko Carstens17f34582008-04-30 13:38:47 +0200183int __meminit vmemmap_populate(struct page *start, unsigned long nr, int node)
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100184{
185 unsigned long address, start_addr, end_addr;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100186 pgd_t *pg_dir;
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200187 pud_t *pu_dir;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100188 pmd_t *pm_dir;
189 pte_t *pt_dir;
190 pte_t pte;
191 int ret = -ENOMEM;
192
Heiko Carstens17f34582008-04-30 13:38:47 +0200193 start_addr = (unsigned long) start;
194 end_addr = (unsigned long) (start + nr);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100195
196 for (address = start_addr; address < end_addr; address += PAGE_SIZE) {
197 pg_dir = pgd_offset_k(address);
198 if (pgd_none(*pg_dir)) {
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200199 pu_dir = vmem_pud_alloc();
200 if (!pu_dir)
201 goto out;
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +0200202 pgd_populate(&init_mm, pg_dir, pu_dir);
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200203 }
204
205 pu_dir = pud_offset(pg_dir, address);
206 if (pud_none(*pu_dir)) {
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100207 pm_dir = vmem_pmd_alloc();
208 if (!pm_dir)
209 goto out;
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +0200210 pud_populate(&init_mm, pu_dir, pm_dir);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100211 }
212
Martin Schwidefsky190a1d72007-10-22 12:52:48 +0200213 pm_dir = pmd_offset(pu_dir, address);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100214 if (pmd_none(*pm_dir)) {
Martin Schwidefskye5992f22011-07-24 10:48:20 +0200215 pt_dir = vmem_pte_alloc(address);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100216 if (!pt_dir)
217 goto out;
Martin Schwidefskyb2fa47e2011-05-23 10:24:40 +0200218 pmd_populate(&init_mm, pm_dir, pt_dir);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100219 }
220
221 pt_dir = pte_offset_kernel(pm_dir, address);
222 if (pte_none(*pt_dir)) {
223 unsigned long new_page;
224
Heiko Carstens67060d92008-05-30 10:03:27 +0200225 new_page =__pa(vmem_alloc_pages(0));
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100226 if (!new_page)
227 goto out;
228 pte = pfn_pte(new_page >> PAGE_SHIFT, PAGE_KERNEL);
Gerald Schaeferc1821c22007-02-05 21:18:17 +0100229 *pt_dir = pte;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100230 }
231 }
Heiko Carstens67060d92008-05-30 10:03:27 +0200232 memset(start, 0, nr * sizeof(struct page));
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100233 ret = 0;
234out:
235 flush_tlb_kernel_range(start_addr, end_addr);
236 return ret;
237}
238
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100239/*
240 * Add memory segment to the segment list if it doesn't overlap with
241 * an already present segment.
242 */
243static int insert_memory_segment(struct memory_segment *seg)
244{
245 struct memory_segment *tmp;
246
Heiko Carstensee0ddad2008-06-10 10:03:20 +0200247 if (seg->start + seg->size > VMEM_MAX_PHYS ||
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100248 seg->start + seg->size < seg->start)
249 return -ERANGE;
250
251 list_for_each_entry(tmp, &mem_segs, list) {
252 if (seg->start >= tmp->start + tmp->size)
253 continue;
254 if (seg->start + seg->size <= tmp->start)
255 continue;
256 return -ENOSPC;
257 }
258 list_add(&seg->list, &mem_segs);
259 return 0;
260}
261
262/*
263 * Remove memory segment from the segment list.
264 */
265static void remove_memory_segment(struct memory_segment *seg)
266{
267 list_del(&seg->list);
268}
269
270static void __remove_shared_memory(struct memory_segment *seg)
271{
272 remove_memory_segment(seg);
273 vmem_remove_range(seg->start, seg->size);
274}
275
Heiko Carstens17f34582008-04-30 13:38:47 +0200276int vmem_remove_mapping(unsigned long start, unsigned long size)
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100277{
278 struct memory_segment *seg;
279 int ret;
280
281 mutex_lock(&vmem_mutex);
282
283 ret = -ENOENT;
284 list_for_each_entry(seg, &mem_segs, list) {
285 if (seg->start == start && seg->size == size)
286 break;
287 }
288
289 if (seg->start != start || seg->size != size)
290 goto out;
291
292 ret = 0;
293 __remove_shared_memory(seg);
294 kfree(seg);
295out:
296 mutex_unlock(&vmem_mutex);
297 return ret;
298}
299
Heiko Carstens17f34582008-04-30 13:38:47 +0200300int vmem_add_mapping(unsigned long start, unsigned long size)
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100301{
302 struct memory_segment *seg;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100303 int ret;
304
305 mutex_lock(&vmem_mutex);
306 ret = -ENOMEM;
307 seg = kzalloc(sizeof(*seg), GFP_KERNEL);
308 if (!seg)
309 goto out;
310 seg->start = start;
311 seg->size = size;
312
313 ret = insert_memory_segment(seg);
314 if (ret)
315 goto out_free;
316
Gerald Schaefer53492b12008-04-30 13:38:46 +0200317 ret = vmem_add_mem(start, size, 0);
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100318 if (ret)
319 goto out_remove;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100320 goto out;
321
322out_remove:
323 __remove_shared_memory(seg);
324out_free:
325 kfree(seg);
326out:
327 mutex_unlock(&vmem_mutex);
328 return ret;
329}
330
331/*
332 * map whole physical memory to virtual memory (identity mapping)
Christian Borntraeger5fd9c6e2008-01-26 14:11:00 +0100333 * we reserve enough space in the vmalloc area for vmemmap to hotplug
334 * additional memory segments.
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100335 */
336void __init vmem_map_init(void)
337{
Gerald Schaefer53492b12008-04-30 13:38:46 +0200338 unsigned long ro_start, ro_end;
339 unsigned long start, end;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100340 int i;
341
Heiko Carstens8fe234d2012-10-04 17:02:02 +0200342 ro_start = PFN_ALIGN((unsigned long)&_stext);
343 ro_end = (unsigned long)&_eshared & PAGE_MASK;
Gerald Schaefer53492b12008-04-30 13:38:46 +0200344 for (i = 0; i < MEMORY_CHUNKS && memory_chunk[i].size > 0; i++) {
Michael Holzheu60a0c682011-10-30 15:16:40 +0100345 if (memory_chunk[i].type == CHUNK_CRASHK ||
346 memory_chunk[i].type == CHUNK_OLDMEM)
347 continue;
Gerald Schaefer53492b12008-04-30 13:38:46 +0200348 start = memory_chunk[i].addr;
349 end = memory_chunk[i].addr + memory_chunk[i].size;
350 if (start >= ro_end || end <= ro_start)
351 vmem_add_mem(start, end - start, 0);
352 else if (start >= ro_start && end <= ro_end)
353 vmem_add_mem(start, end - start, 1);
354 else if (start >= ro_start) {
355 vmem_add_mem(start, ro_end - start, 1);
356 vmem_add_mem(ro_end, end - ro_end, 0);
357 } else if (end < ro_end) {
358 vmem_add_mem(start, ro_start - start, 0);
359 vmem_add_mem(ro_start, end - ro_start, 1);
360 } else {
361 vmem_add_mem(start, ro_start - start, 0);
362 vmem_add_mem(ro_start, ro_end - ro_start, 1);
363 vmem_add_mem(ro_end, end - ro_end, 0);
364 }
365 }
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100366}
367
368/*
369 * Convert memory chunk array to a memory segment list so there is a single
370 * list that contains both r/w memory and shared memory segments.
371 */
372static int __init vmem_convert_memory_chunk(void)
373{
374 struct memory_segment *seg;
375 int i;
376
377 mutex_lock(&vmem_mutex);
Heiko Carstens9f4b0ba2008-01-26 14:11:02 +0100378 for (i = 0; i < MEMORY_CHUNKS; i++) {
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100379 if (!memory_chunk[i].size)
380 continue;
Michael Holzheu60a0c682011-10-30 15:16:40 +0100381 if (memory_chunk[i].type == CHUNK_CRASHK ||
382 memory_chunk[i].type == CHUNK_OLDMEM)
383 continue;
Heiko Carstensf4eb07c2006-12-08 15:56:07 +0100384 seg = kzalloc(sizeof(*seg), GFP_KERNEL);
385 if (!seg)
386 panic("Out of memory...\n");
387 seg->start = memory_chunk[i].addr;
388 seg->size = memory_chunk[i].size;
389 insert_memory_segment(seg);
390 }
391 mutex_unlock(&vmem_mutex);
392 return 0;
393}
394
395core_initcall(vmem_convert_memory_chunk);