ACPI, APEI, EINJ, Refine the fix of resource conflict
[deliverable/linux.git] / arch / x86 / kernel / e820.c
CommitLineData
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1/*
2 * Handle the memory map.
3 * The functions here do the job until bootmem takes over.
4 *
5 * Getting sanitize_e820_map() in sync with i386 version by applying change:
6 * - Provisions for empty E820 memory regions (reported by certain BIOSes).
7 * Alex Achenbach <xela@slit.de>, December 2002.
8 * Venkatesh Pallipadi <venkatesh.pallipadi@intel.com>
9 *
10 */
11#include <linux/kernel.h>
12#include <linux/types.h>
13#include <linux/init.h>
93a72052 14#include <linux/crash_dump.h>
69c60c88 15#include <linux/export.h>
b79cd8f1 16#include <linux/bootmem.h>
b79cd8f1 17#include <linux/pfn.h>
bf62f398 18#include <linux/suspend.h>
976513db 19#include <linux/acpi.h>
5dfcf14d 20#include <linux/firmware-map.h>
72d7c3b3 21#include <linux/memblock.h>
b79cd8f1 22
b79cd8f1 23#include <asm/e820.h>
a4c81cf6 24#include <asm/proto.h>
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25#include <asm/setup.h>
26
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27/*
28 * The e820 map is the map that gets modified e.g. with command line parameters
29 * and that is also registered with modifications in the kernel resource tree
30 * with the iomem_resource as parent.
31 *
32 * The e820_saved is directly saved after the BIOS-provided memory map is
33 * copied. It doesn't get modified afterwards. It's registered for the
34 * /sys/firmware/memmap interface.
35 *
36 * That memory map is not modified and is used as base for kexec. The kexec'd
37 * kernel should get the same memory map as the firmware provides. Then the
38 * user can e.g. boot the original kernel with mem=1G while still booting the
39 * next kernel with full memory.
40 */
b79cd8f1 41struct e820map e820;
5dfcf14d 42struct e820map e820_saved;
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43
44/* For PCI or other memory-mapped resources */
45unsigned long pci_mem_start = 0xaeedbabe;
46#ifdef CONFIG_PCI
47EXPORT_SYMBOL(pci_mem_start);
48#endif
49
50/*
51 * This function checks if any part of the range <start,end> is mapped
52 * with type.
53 */
54int
55e820_any_mapped(u64 start, u64 end, unsigned type)
56{
57 int i;
58
59 for (i = 0; i < e820.nr_map; i++) {
60 struct e820entry *ei = &e820.map[i];
61
62 if (type && ei->type != type)
63 continue;
64 if (ei->addr >= end || ei->addr + ei->size <= start)
65 continue;
66 return 1;
67 }
68 return 0;
69}
70EXPORT_SYMBOL_GPL(e820_any_mapped);
71
72/*
73 * This function checks if the entire range <start,end> is mapped with type.
74 *
75 * Note: this function only works correct if the e820 table is sorted and
76 * not-overlapping, which is the case
77 */
78int __init e820_all_mapped(u64 start, u64 end, unsigned type)
79{
80 int i;
81
82 for (i = 0; i < e820.nr_map; i++) {
83 struct e820entry *ei = &e820.map[i];
84
85 if (type && ei->type != type)
86 continue;
87 /* is the region (part) in overlap with the current region ?*/
88 if (ei->addr >= end || ei->addr + ei->size <= start)
89 continue;
90
91 /* if the region is at the beginning of <start,end> we move
92 * start to the end of the region since it's ok until there
93 */
94 if (ei->addr <= start)
95 start = ei->addr + ei->size;
96 /*
97 * if start is now at or beyond end, we're done, full
98 * coverage
99 */
100 if (start >= end)
101 return 1;
102 }
103 return 0;
104}
105
106/*
107 * Add a memory region to the kernel e820 map.
108 */
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109static void __init __e820_add_region(struct e820map *e820x, u64 start, u64 size,
110 int type)
b79cd8f1 111{
773e673d 112 int x = e820x->nr_map;
b79cd8f1 113
5051fd69 114 if (x >= ARRAY_SIZE(e820x->map)) {
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115 printk(KERN_ERR "Ooops! Too many entries in the memory map!\n");
116 return;
117 }
118
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119 e820x->map[x].addr = start;
120 e820x->map[x].size = size;
121 e820x->map[x].type = type;
122 e820x->nr_map++;
123}
124
125void __init e820_add_region(u64 start, u64 size, int type)
126{
127 __e820_add_region(&e820, start, size, type);
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128}
129
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130static void __init e820_print_type(u32 type)
131{
132 switch (type) {
133 case E820_RAM:
134 case E820_RESERVED_KERN:
135 printk(KERN_CONT "(usable)");
136 break;
137 case E820_RESERVED:
138 printk(KERN_CONT "(reserved)");
139 break;
140 case E820_ACPI:
141 printk(KERN_CONT "(ACPI data)");
142 break;
143 case E820_NVS:
144 printk(KERN_CONT "(ACPI NVS)");
145 break;
146 case E820_UNUSABLE:
147 printk(KERN_CONT "(unusable)");
148 break;
149 default:
150 printk(KERN_CONT "type %u", type);
151 break;
152 }
153}
154
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155void __init e820_print_map(char *who)
156{
157 int i;
158
159 for (i = 0; i < e820.nr_map; i++) {
160 printk(KERN_INFO " %s: %016Lx - %016Lx ", who,
161 (unsigned long long) e820.map[i].addr,
162 (unsigned long long)
163 (e820.map[i].addr + e820.map[i].size));
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164 e820_print_type(e820.map[i].type);
165 printk(KERN_CONT "\n");
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166 }
167}
168
169/*
170 * Sanitize the BIOS e820 map.
171 *
172 * Some e820 responses include overlapping entries. The following
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173 * replaces the original e820 map with a new one, removing overlaps,
174 * and resolving conflicting memory types in favor of highest
175 * numbered type.
b79cd8f1 176 *
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177 * The input parameter biosmap points to an array of 'struct
178 * e820entry' which on entry has elements in the range [0, *pnr_map)
179 * valid, and which has space for up to max_nr_map entries.
180 * On return, the resulting sanitized e820 map entries will be in
181 * overwritten in the same location, starting at biosmap.
182 *
183 * The integer pointed to by pnr_map must be valid on entry (the
184 * current number of valid entries located at biosmap) and will
185 * be updated on return, with the new number of valid entries
186 * (something no more than max_nr_map.)
187 *
188 * The return value from sanitize_e820_map() is zero if it
189 * successfully 'sanitized' the map entries passed in, and is -1
190 * if it did nothing, which can happen if either of (1) it was
191 * only passed one map entry, or (2) any of the input map entries
192 * were invalid (start + size < start, meaning that the size was
193 * so big the described memory range wrapped around through zero.)
194 *
195 * Visually we're performing the following
196 * (1,2,3,4 = memory types)...
197 *
198 * Sample memory map (w/overlaps):
199 * ____22__________________
200 * ______________________4_
201 * ____1111________________
202 * _44_____________________
203 * 11111111________________
204 * ____________________33__
205 * ___________44___________
206 * __________33333_________
207 * ______________22________
208 * ___________________2222_
209 * _________111111111______
210 * _____________________11_
211 * _________________4______
212 *
213 * Sanitized equivalent (no overlap):
214 * 1_______________________
215 * _44_____________________
216 * ___1____________________
217 * ____22__________________
218 * ______11________________
219 * _________1______________
220 * __________3_____________
221 * ___________44___________
222 * _____________33_________
223 * _______________2________
224 * ________________1_______
225 * _________________4______
226 * ___________________2____
227 * ____________________33__
228 * ______________________4_
b79cd8f1 229 */
5b7eb2e9 230
c3965bd1 231int __init sanitize_e820_map(struct e820entry *biosmap, int max_nr_map,
ba639039 232 u32 *pnr_map)
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233{
234 struct change_member {
235 struct e820entry *pbios; /* pointer to original bios entry */
236 unsigned long long addr; /* address for this change point */
237 };
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238 static struct change_member change_point_list[2*E820_X_MAX] __initdata;
239 static struct change_member *change_point[2*E820_X_MAX] __initdata;
240 static struct e820entry *overlap_list[E820_X_MAX] __initdata;
241 static struct e820entry new_bios[E820_X_MAX] __initdata;
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242 struct change_member *change_tmp;
243 unsigned long current_type, last_type;
244 unsigned long long last_addr;
245 int chgidx, still_changing;
246 int overlap_entries;
247 int new_bios_entry;
248 int old_nr, new_nr, chg_nr;
249 int i;
250
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251 /* if there's only one memory region, don't bother */
252 if (*pnr_map < 2)
253 return -1;
254
255 old_nr = *pnr_map;
6e9bcc79 256 BUG_ON(old_nr > max_nr_map);
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257
258 /* bail out if we find any unreasonable addresses in bios map */
259 for (i = 0; i < old_nr; i++)
260 if (biosmap[i].addr + biosmap[i].size < biosmap[i].addr)
261 return -1;
262
263 /* create pointers for initial change-point information (for sorting) */
264 for (i = 0; i < 2 * old_nr; i++)
265 change_point[i] = &change_point_list[i];
266
267 /* record all known change-points (starting and ending addresses),
268 omitting those that are for empty memory regions */
269 chgidx = 0;
270 for (i = 0; i < old_nr; i++) {
271 if (biosmap[i].size != 0) {
272 change_point[chgidx]->addr = biosmap[i].addr;
273 change_point[chgidx++]->pbios = &biosmap[i];
274 change_point[chgidx]->addr = biosmap[i].addr +
275 biosmap[i].size;
276 change_point[chgidx++]->pbios = &biosmap[i];
277 }
278 }
279 chg_nr = chgidx;
280
281 /* sort change-point list by memory addresses (low -> high) */
282 still_changing = 1;
283 while (still_changing) {
284 still_changing = 0;
285 for (i = 1; i < chg_nr; i++) {
286 unsigned long long curaddr, lastaddr;
287 unsigned long long curpbaddr, lastpbaddr;
288
289 curaddr = change_point[i]->addr;
290 lastaddr = change_point[i - 1]->addr;
291 curpbaddr = change_point[i]->pbios->addr;
292 lastpbaddr = change_point[i - 1]->pbios->addr;
293
294 /*
295 * swap entries, when:
296 *
297 * curaddr > lastaddr or
298 * curaddr == lastaddr and curaddr == curpbaddr and
299 * lastaddr != lastpbaddr
300 */
301 if (curaddr < lastaddr ||
302 (curaddr == lastaddr && curaddr == curpbaddr &&
303 lastaddr != lastpbaddr)) {
304 change_tmp = change_point[i];
305 change_point[i] = change_point[i-1];
306 change_point[i-1] = change_tmp;
307 still_changing = 1;
308 }
309 }
310 }
311
312 /* create a new bios memory map, removing overlaps */
313 overlap_entries = 0; /* number of entries in the overlap table */
314 new_bios_entry = 0; /* index for creating new bios map entries */
315 last_type = 0; /* start with undefined memory type */
316 last_addr = 0; /* start with 0 as last starting address */
317
318 /* loop through change-points, determining affect on the new bios map */
319 for (chgidx = 0; chgidx < chg_nr; chgidx++) {
320 /* keep track of all overlapping bios entries */
321 if (change_point[chgidx]->addr ==
322 change_point[chgidx]->pbios->addr) {
323 /*
324 * add map entry to overlap list (> 1 entry
325 * implies an overlap)
326 */
327 overlap_list[overlap_entries++] =
328 change_point[chgidx]->pbios;
329 } else {
330 /*
331 * remove entry from list (order independent,
332 * so swap with last)
333 */
334 for (i = 0; i < overlap_entries; i++) {
335 if (overlap_list[i] ==
336 change_point[chgidx]->pbios)
337 overlap_list[i] =
338 overlap_list[overlap_entries-1];
339 }
340 overlap_entries--;
341 }
342 /*
343 * if there are overlapping entries, decide which
344 * "type" to use (larger value takes precedence --
345 * 1=usable, 2,3,4,4+=unusable)
346 */
347 current_type = 0;
348 for (i = 0; i < overlap_entries; i++)
349 if (overlap_list[i]->type > current_type)
350 current_type = overlap_list[i]->type;
351 /*
352 * continue building up new bios map based on this
353 * information
354 */
355 if (current_type != last_type) {
356 if (last_type != 0) {
357 new_bios[new_bios_entry].size =
358 change_point[chgidx]->addr - last_addr;
359 /*
360 * move forward only if the new size
361 * was non-zero
362 */
363 if (new_bios[new_bios_entry].size != 0)
364 /*
365 * no more space left for new
366 * bios entries ?
367 */
c3965bd1 368 if (++new_bios_entry >= max_nr_map)
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369 break;
370 }
371 if (current_type != 0) {
372 new_bios[new_bios_entry].addr =
373 change_point[chgidx]->addr;
374 new_bios[new_bios_entry].type = current_type;
375 last_addr = change_point[chgidx]->addr;
376 }
377 last_type = current_type;
378 }
379 }
380 /* retain count for new bios entries */
381 new_nr = new_bios_entry;
382
383 /* copy new bios mapping into original location */
384 memcpy(biosmap, new_bios, new_nr * sizeof(struct e820entry));
385 *pnr_map = new_nr;
386
387 return 0;
388}
389
dc8e8120 390static int __init __append_e820_map(struct e820entry *biosmap, int nr_map)
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391{
392 while (nr_map) {
393 u64 start = biosmap->addr;
394 u64 size = biosmap->size;
395 u64 end = start + size;
396 u32 type = biosmap->type;
397
398 /* Overflow in 64 bits? Ignore the memory map. */
399 if (start > end)
400 return -1;
401
402 e820_add_region(start, size, type);
403
404 biosmap++;
405 nr_map--;
406 }
407 return 0;
408}
409
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410/*
411 * Copy the BIOS e820 map into a safe place.
412 *
413 * Sanity-check it while we're at it..
414 *
415 * If we're lucky and live on a modern system, the setup code
416 * will have given us a memory map that we can use to properly
417 * set up memory. If we aren't, we'll fake a memory map.
418 */
dc8e8120 419static int __init append_e820_map(struct e820entry *biosmap, int nr_map)
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420{
421 /* Only one memory region (or negative)? Ignore it */
422 if (nr_map < 2)
423 return -1;
424
dc8e8120 425 return __append_e820_map(biosmap, nr_map);
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426}
427
773e673d 428static u64 __init __e820_update_range(struct e820map *e820x, u64 start,
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429 u64 size, unsigned old_type,
430 unsigned new_type)
b79cd8f1 431{
78a8b35b 432 u64 end;
773e673d 433 unsigned int i;
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434 u64 real_updated_size = 0;
435
436 BUG_ON(old_type == new_type);
437
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438 if (size > (ULLONG_MAX - start))
439 size = ULLONG_MAX - start;
440
78a8b35b 441 end = start + size;
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442 printk(KERN_DEBUG "e820 update range: %016Lx - %016Lx ",
443 (unsigned long long) start,
444 (unsigned long long) end);
445 e820_print_type(old_type);
446 printk(KERN_CONT " ==> ");
447 e820_print_type(new_type);
448 printk(KERN_CONT "\n");
449
5c0e6f03 450 for (i = 0; i < e820x->nr_map; i++) {
fc9036ea 451 struct e820entry *ei = &e820x->map[i];
b79cd8f1 452 u64 final_start, final_end;
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453 u64 ei_end;
454
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455 if (ei->type != old_type)
456 continue;
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457
458 ei_end = ei->addr + ei->size;
459 /* totally covered by new range? */
460 if (ei->addr >= start && ei_end <= end) {
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461 ei->type = new_type;
462 real_updated_size += ei->size;
463 continue;
464 }
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465
466 /* new range is totally covered? */
467 if (ei->addr < start && ei_end > end) {
468 __e820_add_region(e820x, start, size, new_type);
469 __e820_add_region(e820x, end, ei_end - end, ei->type);
470 ei->size = start - ei->addr;
471 real_updated_size += size;
472 continue;
473 }
474
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475 /* partially covered */
476 final_start = max(start, ei->addr);
78a8b35b 477 final_end = min(end, ei_end);
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478 if (final_start >= final_end)
479 continue;
5c0e6f03 480
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481 __e820_add_region(e820x, final_start, final_end - final_start,
482 new_type);
5c0e6f03 483
b79cd8f1 484 real_updated_size += final_end - final_start;
976dd4dc 485
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486 /*
487 * left range could be head or tail, so need to update
488 * size at first.
489 */
490 ei->size -= final_end - final_start;
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491 if (ei->addr < final_start)
492 continue;
493 ei->addr = final_end;
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494 }
495 return real_updated_size;
496}
497
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498u64 __init e820_update_range(u64 start, u64 size, unsigned old_type,
499 unsigned new_type)
500{
773e673d 501 return __e820_update_range(&e820, start, size, old_type, new_type);
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502}
503
504static u64 __init e820_update_range_saved(u64 start, u64 size,
505 unsigned old_type, unsigned new_type)
506{
773e673d 507 return __e820_update_range(&e820_saved, start, size, old_type,
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508 new_type);
509}
510
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511/* make e820 not cover the range */
512u64 __init e820_remove_range(u64 start, u64 size, unsigned old_type,
513 int checktype)
514{
515 int i;
1b5576e6 516 u64 end;
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517 u64 real_removed_size = 0;
518
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519 if (size > (ULLONG_MAX - start))
520 size = ULLONG_MAX - start;
521
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522 end = start + size;
523 printk(KERN_DEBUG "e820 remove range: %016Lx - %016Lx ",
524 (unsigned long long) start,
525 (unsigned long long) end);
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526 if (checktype)
527 e820_print_type(old_type);
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528 printk(KERN_CONT "\n");
529
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530 for (i = 0; i < e820.nr_map; i++) {
531 struct e820entry *ei = &e820.map[i];
532 u64 final_start, final_end;
9f3a5f52 533 u64 ei_end;
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534
535 if (checktype && ei->type != old_type)
536 continue;
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537
538 ei_end = ei->addr + ei->size;
7a1fd986 539 /* totally covered? */
9f3a5f52 540 if (ei->addr >= start && ei_end <= end) {
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541 real_removed_size += ei->size;
542 memset(ei, 0, sizeof(struct e820entry));
543 continue;
544 }
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545
546 /* new range is totally covered? */
547 if (ei->addr < start && ei_end > end) {
548 e820_add_region(end, ei_end - end, ei->type);
549 ei->size = start - ei->addr;
550 real_removed_size += size;
551 continue;
552 }
553
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554 /* partially covered */
555 final_start = max(start, ei->addr);
9f3a5f52 556 final_end = min(end, ei_end);
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557 if (final_start >= final_end)
558 continue;
559 real_removed_size += final_end - final_start;
560
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561 /*
562 * left range could be head or tail, so need to update
563 * size at first.
564 */
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565 ei->size -= final_end - final_start;
566 if (ei->addr < final_start)
567 continue;
568 ei->addr = final_end;
569 }
570 return real_removed_size;
571}
572
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573void __init update_e820(void)
574{
ba639039 575 u32 nr_map;
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576
577 nr_map = e820.nr_map;
c3965bd1 578 if (sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &nr_map))
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579 return;
580 e820.nr_map = nr_map;
581 printk(KERN_INFO "modified physical RAM map:\n");
582 e820_print_map("modified");
583}
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584static void __init update_e820_saved(void)
585{
ba639039 586 u32 nr_map;
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587
588 nr_map = e820_saved.nr_map;
589 if (sanitize_e820_map(e820_saved.map, ARRAY_SIZE(e820_saved.map), &nr_map))
590 return;
591 e820_saved.nr_map = nr_map;
592}
fd6493e1 593#define MAX_GAP_END 0x100000000ull
b79cd8f1 594/*
fd6493e1 595 * Search for a gap in the e820 memory space from start_addr to end_addr.
b79cd8f1 596 */
3381959d 597__init int e820_search_gap(unsigned long *gapstart, unsigned long *gapsize,
fd6493e1 598 unsigned long start_addr, unsigned long long end_addr)
b79cd8f1 599{
fd6493e1 600 unsigned long long last;
3381959d 601 int i = e820.nr_map;
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602 int found = 0;
603
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604 last = (end_addr && end_addr < MAX_GAP_END) ? end_addr : MAX_GAP_END;
605
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606 while (--i >= 0) {
607 unsigned long long start = e820.map[i].addr;
608 unsigned long long end = start + e820.map[i].size;
609
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610 if (end < start_addr)
611 continue;
612
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613 /*
614 * Since "last" is at most 4GB, we know we'll
615 * fit in 32 bits if this condition is true
616 */
617 if (last > end) {
618 unsigned long gap = last - end;
619
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620 if (gap >= *gapsize) {
621 *gapsize = gap;
622 *gapstart = end;
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623 found = 1;
624 }
625 }
626 if (start < last)
627 last = start;
628 }
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629 return found;
630}
631
632/*
633 * Search for the biggest gap in the low 32 bits of the e820
634 * memory space. We pass this space to PCI to assign MMIO resources
635 * for hotplug or unconfigured devices in.
636 * Hopefully the BIOS let enough space left.
637 */
638__init void e820_setup_gap(void)
639{
5d423ccd 640 unsigned long gapstart, gapsize;
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641 int found;
642
643 gapstart = 0x10000000;
644 gapsize = 0x400000;
fd6493e1 645 found = e820_search_gap(&gapstart, &gapsize, 0, MAX_GAP_END);
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646
647#ifdef CONFIG_X86_64
648 if (!found) {
c987d12f 649 gapstart = (max_pfn << PAGE_SHIFT) + 1024*1024;
ad361c98
JP
650 printk(KERN_ERR
651 "PCI: Warning: Cannot find a gap in the 32bit address range\n"
652 "PCI: Unassigned devices with 32bit resource registers may break!\n");
b79cd8f1
YL
653 }
654#endif
655
656 /*
5d423ccd 657 * e820_reserve_resources_late protect stolen RAM already
b79cd8f1 658 */
5d423ccd 659 pci_mem_start = gapstart;
b79cd8f1
YL
660
661 printk(KERN_INFO
662 "Allocating PCI resources starting at %lx (gap: %lx:%lx)\n",
663 pci_mem_start, gapstart, gapsize);
664}
665
8c5beb50
HY
666/**
667 * Because of the size limitation of struct boot_params, only first
668 * 128 E820 memory entries are passed to kernel via
669 * boot_params.e820_map, others are passed via SETUP_E820_EXT node of
670 * linked list of struct setup_data, which is parsed here.
671 */
f1c2b357 672void __init parse_e820_ext(struct setup_data *sdata)
8c5beb50 673{
8c5beb50
HY
674 int entries;
675 struct e820entry *extmap;
676
677 entries = sdata->len / sizeof(struct e820entry);
8c5beb50 678 extmap = (struct e820entry *)(sdata->data);
dc8e8120 679 __append_e820_map(extmap, entries);
8c5beb50 680 sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map);
8c5beb50
HY
681 printk(KERN_INFO "extended physical RAM map:\n");
682 e820_print_map("extended");
683}
684
bf62f398
YL
685#if defined(CONFIG_X86_64) || \
686 (defined(CONFIG_X86_32) && defined(CONFIG_HIBERNATION))
687/**
688 * Find the ranges of physical addresses that do not correspond to
689 * e820 RAM areas and mark the corresponding pages as nosave for
690 * hibernation (32 bit) or software suspend and suspend to RAM (64 bit).
691 *
692 * This function requires the e820 map to be sorted and without any
693 * overlapping entries and assumes the first e820 area to be RAM.
694 */
695void __init e820_mark_nosave_regions(unsigned long limit_pfn)
696{
697 int i;
698 unsigned long pfn;
699
700 pfn = PFN_DOWN(e820.map[0].addr + e820.map[0].size);
701 for (i = 1; i < e820.nr_map; i++) {
702 struct e820entry *ei = &e820.map[i];
703
704 if (pfn < PFN_UP(ei->addr))
705 register_nosave_region(pfn, PFN_UP(ei->addr));
706
707 pfn = PFN_DOWN(ei->addr + ei->size);
28bb2237 708 if (ei->type != E820_RAM && ei->type != E820_RESERVED_KERN)
bf62f398
YL
709 register_nosave_region(PFN_UP(ei->addr), pfn);
710
711 if (pfn >= limit_pfn)
712 break;
713 }
714}
715#endif
a4c81cf6 716
b69edc76
RW
717#ifdef CONFIG_HIBERNATION
718/**
719 * Mark ACPI NVS memory region, so that we can save/restore it during
720 * hibernation and the subsequent resume.
721 */
722static int __init e820_mark_nvs_memory(void)
723{
724 int i;
725
726 for (i = 0; i < e820.nr_map; i++) {
727 struct e820entry *ei = &e820.map[i];
728
729 if (ei->type == E820_NVS)
dd4c4f17 730 suspend_nvs_register(ei->addr, ei->size);
b69edc76
RW
731 }
732
733 return 0;
734}
735core_initcall(e820_mark_nvs_memory);
736#endif
737
2944e16b 738/*
72d7c3b3 739 * pre allocated 4k and reserved it in memblock and e820_saved
2944e16b
YL
740 */
741u64 __init early_reserve_e820(u64 startt, u64 sizet, u64 align)
742{
743 u64 size = 0;
744 u64 addr;
745 u64 start;
746
61438766 747 for (start = startt; ; start += size) {
72d7c3b3
YL
748 start = memblock_x86_find_in_range_size(start, &size, align);
749 if (start == MEMBLOCK_ERROR)
61438766
JB
750 return 0;
751 if (size >= sizet)
752 break;
753 }
2944e16b 754
5c0e6f03
JB
755#ifdef CONFIG_X86_32
756 if (start >= MAXMEM)
757 return 0;
758 if (start + size > MAXMEM)
759 size = MAXMEM - start;
760#endif
761
2944e16b 762 addr = round_down(start + size - sizet, align);
5c0e6f03
JB
763 if (addr < start)
764 return 0;
72d7c3b3 765 memblock_x86_reserve_range(addr, addr + sizet, "new next");
fc9036ea 766 e820_update_range_saved(addr, sizet, E820_RAM, E820_RESERVED);
72d7c3b3 767 printk(KERN_INFO "update e820_saved for early_reserve_e820\n");
fc9036ea 768 update_e820_saved();
2944e16b
YL
769
770 return addr;
771}
772
ee0c80fa
YL
773#ifdef CONFIG_X86_32
774# ifdef CONFIG_X86_PAE
775# define MAX_ARCH_PFN (1ULL<<(36-PAGE_SHIFT))
776# else
777# define MAX_ARCH_PFN (1ULL<<(32-PAGE_SHIFT))
778# endif
779#else /* CONFIG_X86_32 */
bd70e522 780# define MAX_ARCH_PFN MAXMEM>>PAGE_SHIFT
ee0c80fa
YL
781#endif
782
ee0c80fa
YL
783/*
784 * Find the highest page frame number we have available
785 */
e1ad783b 786static unsigned long __init e820_end_pfn(unsigned long limit_pfn, unsigned type)
ee0c80fa 787{
2dc807b3
YL
788 int i;
789 unsigned long last_pfn = 0;
ee0c80fa
YL
790 unsigned long max_arch_pfn = MAX_ARCH_PFN;
791
2dc807b3
YL
792 for (i = 0; i < e820.nr_map; i++) {
793 struct e820entry *ei = &e820.map[i];
f361a450 794 unsigned long start_pfn;
2dc807b3
YL
795 unsigned long end_pfn;
796
f361a450 797 if (ei->type != type)
c22d4c18 798 continue;
c22d4c18 799
f361a450 800 start_pfn = ei->addr >> PAGE_SHIFT;
2dc807b3 801 end_pfn = (ei->addr + ei->size) >> PAGE_SHIFT;
f361a450
YL
802
803 if (start_pfn >= limit_pfn)
804 continue;
805 if (end_pfn > limit_pfn) {
806 last_pfn = limit_pfn;
807 break;
808 }
2dc807b3
YL
809 if (end_pfn > last_pfn)
810 last_pfn = end_pfn;
811 }
ee0c80fa
YL
812
813 if (last_pfn > max_arch_pfn)
814 last_pfn = max_arch_pfn;
ee0c80fa 815
5dab8ec1 816 printk(KERN_INFO "last_pfn = %#lx max_arch_pfn = %#lx\n",
ee0c80fa
YL
817 last_pfn, max_arch_pfn);
818 return last_pfn;
819}
f361a450
YL
820unsigned long __init e820_end_of_ram_pfn(void)
821{
822 return e820_end_pfn(MAX_ARCH_PFN, E820_RAM);
823}
ee0c80fa 824
f361a450
YL
825unsigned long __init e820_end_of_low_ram_pfn(void)
826{
827 return e820_end_pfn(1UL<<(32 - PAGE_SHIFT), E820_RAM);
828}
ee0c80fa 829
ab4a465e
YL
830static void early_panic(char *msg)
831{
832 early_printk(msg);
833 panic(msg);
834}
835
69a7704d
YL
836static int userdef __initdata;
837
ab4a465e
YL
838/* "mem=nopentium" disables the 4MB page tables. */
839static int __init parse_memopt(char *p)
840{
841 u64 mem_size;
842
843 if (!p)
844 return -EINVAL;
845
ab4a465e 846 if (!strcmp(p, "nopentium")) {
9a6d44b9 847#ifdef CONFIG_X86_32
ab4a465e
YL
848 setup_clear_cpu_cap(X86_FEATURE_PSE);
849 return 0;
9a6d44b9
KM
850#else
851 printk(KERN_WARNING "mem=nopentium ignored! (only supported on x86_32)\n");
852 return -EINVAL;
ab4a465e 853#endif
9a6d44b9 854 }
ab4a465e 855
69a7704d 856 userdef = 1;
ab4a465e 857 mem_size = memparse(p, &p);
77eed821
KM
858 /* don't remove all of memory when handling "mem={invalid}" param */
859 if (mem_size == 0)
860 return -EINVAL;
69a7704d 861 e820_remove_range(mem_size, ULLONG_MAX - mem_size, E820_RAM, 1);
611dfd78 862
ab4a465e
YL
863 return 0;
864}
865early_param("mem", parse_memopt);
866
ab4a465e
YL
867static int __init parse_memmap_opt(char *p)
868{
869 char *oldp;
870 u64 start_at, mem_size;
871
a737abd1
CG
872 if (!p)
873 return -EINVAL;
874
d6be118a 875 if (!strncmp(p, "exactmap", 8)) {
ab4a465e
YL
876#ifdef CONFIG_CRASH_DUMP
877 /*
878 * If we are doing a crash dump, we still need to know
879 * the real mem size before original memory map is
880 * reset.
881 */
f361a450 882 saved_max_pfn = e820_end_of_ram_pfn();
ab4a465e
YL
883#endif
884 e820.nr_map = 0;
885 userdef = 1;
886 return 0;
887 }
888
889 oldp = p;
890 mem_size = memparse(p, &p);
891 if (p == oldp)
892 return -EINVAL;
893
894 userdef = 1;
895 if (*p == '@') {
896 start_at = memparse(p+1, &p);
d0be6bde 897 e820_add_region(start_at, mem_size, E820_RAM);
ab4a465e
YL
898 } else if (*p == '#') {
899 start_at = memparse(p+1, &p);
d0be6bde 900 e820_add_region(start_at, mem_size, E820_ACPI);
ab4a465e
YL
901 } else if (*p == '$') {
902 start_at = memparse(p+1, &p);
d0be6bde 903 e820_add_region(start_at, mem_size, E820_RESERVED);
7b479bec 904 } else
69a7704d 905 e820_remove_range(mem_size, ULLONG_MAX - mem_size, E820_RAM, 1);
7b479bec 906
ab4a465e
YL
907 return *p == '\0' ? 0 : -EINVAL;
908}
909early_param("memmap", parse_memmap_opt);
910
911void __init finish_e820_parsing(void)
912{
913 if (userdef) {
ba639039 914 u32 nr = e820.nr_map;
ab4a465e
YL
915
916 if (sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &nr) < 0)
917 early_panic("Invalid user supplied memory map");
918 e820.nr_map = nr;
919
920 printk(KERN_INFO "user-defined physical RAM map:\n");
921 e820_print_map("user");
922 }
923}
41c094fd 924
5dfcf14d
BW
925static inline const char *e820_type_to_string(int e820_type)
926{
927 switch (e820_type) {
928 case E820_RESERVED_KERN:
929 case E820_RAM: return "System RAM";
930 case E820_ACPI: return "ACPI Tables";
931 case E820_NVS: return "ACPI Non-volatile Storage";
671eef85 932 case E820_UNUSABLE: return "Unusable memory";
5dfcf14d
BW
933 default: return "reserved";
934 }
935}
936
41c094fd
YL
937/*
938 * Mark e820 reserved areas as busy for the resource manager.
939 */
a5444d15 940static struct resource __initdata *e820_res;
41c094fd
YL
941void __init e820_reserve_resources(void)
942{
943 int i;
58f7c988 944 struct resource *res;
a5444d15 945 u64 end;
41c094fd 946
3c1596ef 947 res = alloc_bootmem(sizeof(struct resource) * e820.nr_map);
58f7c988 948 e820_res = res;
41c094fd 949 for (i = 0; i < e820.nr_map; i++) {
b4df32f4 950 end = e820.map[i].addr + e820.map[i].size - 1;
8308c54d 951 if (end != (resource_size_t)end) {
41c094fd
YL
952 res++;
953 continue;
954 }
5dfcf14d 955 res->name = e820_type_to_string(e820.map[i].type);
b4df32f4
YL
956 res->start = e820.map[i].addr;
957 res->end = end;
958
1f987577 959 res->flags = IORESOURCE_MEM;
a5444d15
IM
960
961 /*
962 * don't register the region that could be conflicted with
963 * pci device BAR resource and insert them later in
964 * pcibios_resource_survey()
965 */
1f987577
LT
966 if (e820.map[i].type != E820_RESERVED || res->start < (1ULL<<20)) {
967 res->flags |= IORESOURCE_BUSY;
58f7c988 968 insert_resource(&iomem_resource, res);
1f987577 969 }
41c094fd
YL
970 res++;
971 }
5dfcf14d
BW
972
973 for (i = 0; i < e820_saved.nr_map; i++) {
974 struct e820entry *entry = &e820_saved.map[i];
975 firmware_map_add_early(entry->addr,
976 entry->addr + entry->size - 1,
977 e820_type_to_string(entry->type));
978 }
41c094fd
YL
979}
980
45fbe3ee
LT
981/* How much should we pad RAM ending depending on where it is? */
982static unsigned long ram_alignment(resource_size_t pos)
983{
984 unsigned long mb = pos >> 20;
985
986 /* To 64kB in the first megabyte */
987 if (!mb)
988 return 64*1024;
989
990 /* To 1MB in the first 16MB */
991 if (mb < 16)
992 return 1024*1024;
993
15b812f1
YL
994 /* To 64MB for anything above that */
995 return 64*1024*1024;
45fbe3ee
LT
996}
997
7c5371c4
YL
998#define MAX_RESOURCE_SIZE ((resource_size_t)-1)
999
58f7c988
YL
1000void __init e820_reserve_resources_late(void)
1001{
1002 int i;
1003 struct resource *res;
1004
1005 res = e820_res;
1006 for (i = 0; i < e820.nr_map; i++) {
a5444d15 1007 if (!res->parent && res->end)
1f987577 1008 insert_resource_expand_to_fit(&iomem_resource, res);
58f7c988
YL
1009 res++;
1010 }
45fbe3ee
LT
1011
1012 /*
1013 * Try to bump up RAM regions to reasonable boundaries to
1014 * avoid stolen RAM:
1015 */
1016 for (i = 0; i < e820.nr_map; i++) {
7c5371c4
YL
1017 struct e820entry *entry = &e820.map[i];
1018 u64 start, end;
45fbe3ee
LT
1019
1020 if (entry->type != E820_RAM)
1021 continue;
1022 start = entry->addr + entry->size;
7c5371c4
YL
1023 end = round_up(start, ram_alignment(start)) - 1;
1024 if (end > MAX_RESOURCE_SIZE)
1025 end = MAX_RESOURCE_SIZE;
1026 if (start >= end)
45fbe3ee 1027 continue;
79c60169
YL
1028 printk(KERN_DEBUG "reserve RAM buffer: %016llx - %016llx ",
1029 start, end);
7c5371c4
YL
1030 reserve_region_with_split(&iomem_resource, start, end,
1031 "RAM buffer");
45fbe3ee 1032 }
58f7c988
YL
1033}
1034
95a71a45 1035char *__init default_machine_specific_memory_setup(void)
064d25f1
YL
1036{
1037 char *who = "BIOS-e820";
ba639039 1038 u32 new_nr;
064d25f1
YL
1039 /*
1040 * Try to copy the BIOS-supplied E820-map.
1041 *
1042 * Otherwise fake a memory map; one section from 0k->640k,
1043 * the next section from 1mb->appropriate_mem_k
1044 */
1045 new_nr = boot_params.e820_entries;
1046 sanitize_e820_map(boot_params.e820_map,
1047 ARRAY_SIZE(boot_params.e820_map),
1048 &new_nr);
1049 boot_params.e820_entries = new_nr;
dc8e8120
YL
1050 if (append_e820_map(boot_params.e820_map, boot_params.e820_entries)
1051 < 0) {
95a71a45 1052 u64 mem_size;
064d25f1
YL
1053
1054 /* compare results from other methods and take the greater */
1055 if (boot_params.alt_mem_k
1056 < boot_params.screen_info.ext_mem_k) {
1057 mem_size = boot_params.screen_info.ext_mem_k;
1058 who = "BIOS-88";
1059 } else {
1060 mem_size = boot_params.alt_mem_k;
1061 who = "BIOS-e801";
1062 }
1063
1064 e820.nr_map = 0;
1065 e820_add_region(0, LOWMEMSIZE(), E820_RAM);
1066 e820_add_region(HIGH_MEMORY, mem_size << 10, E820_RAM);
064d25f1
YL
1067 }
1068
1069 /* In case someone cares... */
1070 return who;
1071}
1072
064d25f1
YL
1073void __init setup_memory_map(void)
1074{
0be15526
YL
1075 char *who;
1076
6b18ae3e 1077 who = x86_init.resources.memory_setup();
0be15526 1078 memcpy(&e820_saved, &e820, sizeof(struct e820map));
064d25f1 1079 printk(KERN_INFO "BIOS-provided physical RAM map:\n");
0be15526 1080 e820_print_map(who);
064d25f1 1081}
72d7c3b3
YL
1082
1083void __init memblock_x86_fill(void)
1084{
1085 int i;
1086 u64 end;
1087
1088 /*
1089 * EFI may have more than 128 entries
1090 * We are safe to enable resizing, beause memblock_x86_fill()
1091 * is rather later for x86
1092 */
1093 memblock_can_resize = 1;
1094
1095 for (i = 0; i < e820.nr_map; i++) {
1096 struct e820entry *ei = &e820.map[i];
1097
1098 end = ei->addr + ei->size;
1099 if (end != (resource_size_t)end)
1100 continue;
1101
1102 if (ei->type != E820_RAM && ei->type != E820_RESERVED_KERN)
1103 continue;
1104
1105 memblock_add(ei->addr, ei->size);
1106 }
1107
1108 memblock_analyze();
1109 memblock_dump_all();
1110}
6f2a7536
YL
1111
1112void __init memblock_find_dma_reserve(void)
1113{
1114#ifdef CONFIG_X86_64
1115 u64 free_size_pfn;
1116 u64 mem_size_pfn;
1117 /*
1118 * need to find out used area below MAX_DMA_PFN
1119 * need to use memblock to get free size in [0, MAX_DMA_PFN]
1120 * at first, and assume boot_mem will not take below MAX_DMA_PFN
1121 */
1122 mem_size_pfn = memblock_x86_memory_in_range(0, MAX_DMA_PFN << PAGE_SHIFT) >> PAGE_SHIFT;
1123 free_size_pfn = memblock_x86_free_memory_in_range(0, MAX_DMA_PFN << PAGE_SHIFT) >> PAGE_SHIFT;
1124 set_dma_reserve(mem_size_pfn - free_size_pfn);
1125#endif
1126}
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