blob: 8dacdb96899ec5a76749751d2675b5b827855141 [file] [log] [blame]
Tejun Heo5a0e3ad2010-03-24 17:04:11 +09001#include <linux/gfp.h>
Jaswinder Singh Rajput2c1b2842009-04-11 00:03:10 +05302#include <linux/initrd.h>
Pekka Enberg540aca02009-03-04 11:46:40 +02003#include <linux/ioport.h>
Pekka Enberge5b2bb52009-03-03 13:15:06 +02004#include <linux/swap.h>
Yinghai Lua9ce6bc2010-08-25 13:39:17 -07005#include <linux/memblock.h>
Andi Kleen377eeaa2018-06-13 15:48:28 -07006#include <linux/swapfile.h>
7#include <linux/swapops.h>
Qian Cai0d021132019-04-23 12:58:11 -04008#include <linux/kmemleak.h>
Pekka Enberg540aca02009-03-04 11:46:40 +02009
Laura Abbottd1163652017-05-08 15:58:11 -070010#include <asm/set_memory.h>
Ingo Molnar66441bd2017-01-27 10:27:10 +010011#include <asm/e820/api.h>
Pekka Enberg4fcb2082009-03-05 14:55:08 +020012#include <asm/init.h>
Pekka Enberge5b2bb52009-03-03 13:15:06 +020013#include <asm/page.h>
Pekka Enberg540aca02009-03-04 11:46:40 +020014#include <asm/page_types.h>
Pekka Enberge5b2bb52009-03-03 13:15:06 +020015#include <asm/sections.h>
Jan Beulich49834392009-05-06 13:06:47 +010016#include <asm/setup.h>
Pekka Enbergf7650902009-03-05 14:55:05 +020017#include <asm/tlbflush.h>
Pekka Enberg9518e0e2009-04-28 16:00:50 +030018#include <asm/tlb.h>
Jaswinder Singh Rajput76c06922009-07-01 19:54:23 +053019#include <asm/proto.h>
Pekka Enberg17623912011-11-01 15:58:22 +020020#include <asm/dma.h> /* for MAX_DMA_PFN */
Fenghua Yucd745be2012-12-20 23:44:31 -080021#include <asm/microcode.h>
Thomas Garnier0483e1f2016-06-21 17:47:02 -070022#include <asm/kaslr.h>
Juergen Grossc138d812017-07-28 12:23:12 +020023#include <asm/hypervisor.h>
Andy Lutomirskic7ad5ad2017-09-10 17:48:27 -070024#include <asm/cpufeature.h>
Thomas Gleixneraa8c6242017-12-04 15:07:36 +010025#include <asm/pti.h>
Pekka Enberg9518e0e2009-04-28 16:00:50 +030026
Dave Hansend17d8f92014-07-31 08:40:59 -070027/*
28 * We need to define the tracepoints somewhere, and tlb.c
29 * is only compied when SMP=y.
30 */
31#define CREATE_TRACE_POINTS
32#include <trace/events/tlb.h>
33
Yinghai Lu5c51bdb2012-11-16 19:39:01 -080034#include "mm_internal.h"
35
Juergen Gross281d4072014-11-03 14:01:47 +010036/*
37 * Tables translating between page_cache_type_t and pte encoding.
Ingo Molnarc709fed2015-03-05 08:58:44 +010038 *
Toshi Kanid5dc8612015-07-22 12:06:11 -060039 * The default values are defined statically as minimal supported mode;
40 * WC and WT fall back to UC-. pat_init() updates these values to support
41 * more cache modes, WC and WT, when it is safe to do so. See pat_init()
42 * for the details. Note, __early_ioremap() used during early boot-time
43 * takes pgprot_t (pte encoding) and does not use these tables.
Ingo Molnarc709fed2015-03-05 08:58:44 +010044 *
45 * Index into __cachemode2pte_tbl[] is the cachemode.
46 *
47 * Index into __pte2cachemode_tbl[] are the caching attribute bits of the pte
48 * (_PAGE_PWT, _PAGE_PCD, _PAGE_PAT) at index bit positions 0, 1, 2.
Juergen Gross281d4072014-11-03 14:01:47 +010049 */
50uint16_t __cachemode2pte_tbl[_PAGE_CACHE_MODE_NUM] = {
Ingo Molnarc709fed2015-03-05 08:58:44 +010051 [_PAGE_CACHE_MODE_WB ] = 0 | 0 ,
Borislav Petkov9cd25aa2015-06-04 18:55:10 +020052 [_PAGE_CACHE_MODE_WC ] = 0 | _PAGE_PCD,
Ingo Molnarc709fed2015-03-05 08:58:44 +010053 [_PAGE_CACHE_MODE_UC_MINUS] = 0 | _PAGE_PCD,
54 [_PAGE_CACHE_MODE_UC ] = _PAGE_PWT | _PAGE_PCD,
55 [_PAGE_CACHE_MODE_WT ] = 0 | _PAGE_PCD,
56 [_PAGE_CACHE_MODE_WP ] = 0 | _PAGE_PCD,
Juergen Gross281d4072014-11-03 14:01:47 +010057};
Juergen Gross31bb7722015-01-22 12:43:17 +010058EXPORT_SYMBOL(__cachemode2pte_tbl);
Ingo Molnarc709fed2015-03-05 08:58:44 +010059
Juergen Gross281d4072014-11-03 14:01:47 +010060uint8_t __pte2cachemode_tbl[8] = {
Ingo Molnarc709fed2015-03-05 08:58:44 +010061 [__pte2cm_idx( 0 | 0 | 0 )] = _PAGE_CACHE_MODE_WB,
Borislav Petkov9cd25aa2015-06-04 18:55:10 +020062 [__pte2cm_idx(_PAGE_PWT | 0 | 0 )] = _PAGE_CACHE_MODE_UC_MINUS,
Ingo Molnarc709fed2015-03-05 08:58:44 +010063 [__pte2cm_idx( 0 | _PAGE_PCD | 0 )] = _PAGE_CACHE_MODE_UC_MINUS,
64 [__pte2cm_idx(_PAGE_PWT | _PAGE_PCD | 0 )] = _PAGE_CACHE_MODE_UC,
65 [__pte2cm_idx( 0 | 0 | _PAGE_PAT)] = _PAGE_CACHE_MODE_WB,
Borislav Petkov9cd25aa2015-06-04 18:55:10 +020066 [__pte2cm_idx(_PAGE_PWT | 0 | _PAGE_PAT)] = _PAGE_CACHE_MODE_UC_MINUS,
Ingo Molnarc709fed2015-03-05 08:58:44 +010067 [__pte2cm_idx(0 | _PAGE_PCD | _PAGE_PAT)] = _PAGE_CACHE_MODE_UC_MINUS,
Juergen Gross281d4072014-11-03 14:01:47 +010068 [__pte2cm_idx(_PAGE_PWT | _PAGE_PCD | _PAGE_PAT)] = _PAGE_CACHE_MODE_UC,
69};
Juergen Gross31bb7722015-01-22 12:43:17 +010070EXPORT_SYMBOL(__pte2cachemode_tbl);
Juergen Gross281d4072014-11-03 14:01:47 +010071
Yinghai Lucf470652012-11-16 19:39:07 -080072static unsigned long __initdata pgt_buf_start;
73static unsigned long __initdata pgt_buf_end;
74static unsigned long __initdata pgt_buf_top;
Pekka Enbergf7650902009-03-05 14:55:05 +020075
Yinghai Lu9985b4c2012-11-16 19:39:02 -080076static unsigned long min_pfn_mapped;
77
Yinghai Luc9b32342013-01-24 12:19:42 -080078static bool __initdata can_use_brk_pgt = true;
79
Stefano Stabelliniddd35092012-11-16 19:39:05 -080080/*
81 * Pages returned are already directly mapped.
82 *
83 * Changing that is likely to break Xen, see commit:
84 *
85 * 279b706 x86,xen: introduce x86_init.mapping.pagetable_reserve
86 *
87 * for detailed information.
88 */
Yinghai Lu22c8ca22012-11-16 19:39:04 -080089__ref void *alloc_low_pages(unsigned int num)
Yinghai Lu5c51bdb2012-11-16 19:39:01 -080090{
91 unsigned long pfn;
Yinghai Lu22c8ca22012-11-16 19:39:04 -080092 int i;
Yinghai Lu5c51bdb2012-11-16 19:39:01 -080093
Yinghai Lu5c51bdb2012-11-16 19:39:01 -080094 if (after_bootmem) {
Yinghai Lu22c8ca22012-11-16 19:39:04 -080095 unsigned int order;
Yinghai Lu5c51bdb2012-11-16 19:39:01 -080096
Yinghai Lu22c8ca22012-11-16 19:39:04 -080097 order = get_order((unsigned long)num << PAGE_SHIFT);
Levin, Alexander (Sasha Levin)75f296d2017-11-15 17:35:54 -080098 return (void *)__get_free_pages(GFP_ATOMIC | __GFP_ZERO, order);
Yinghai Lu5c51bdb2012-11-16 19:39:01 -080099 }
Yinghai Lu5c51bdb2012-11-16 19:39:01 -0800100
Yinghai Luc9b32342013-01-24 12:19:42 -0800101 if ((pgt_buf_end + num) > pgt_buf_top || !can_use_brk_pgt) {
Juergen Gross75f2d3a2018-08-20 17:24:20 +0200102 unsigned long ret = 0;
103
104 if (min_pfn_mapped < max_pfn_mapped) {
105 ret = memblock_find_in_range(
106 min_pfn_mapped << PAGE_SHIFT,
Yinghai Lu5c51bdb2012-11-16 19:39:01 -0800107 max_pfn_mapped << PAGE_SHIFT,
Yinghai Lu22c8ca22012-11-16 19:39:04 -0800108 PAGE_SIZE * num , PAGE_SIZE);
Juergen Gross75f2d3a2018-08-20 17:24:20 +0200109 }
110 if (ret)
111 memblock_reserve(ret, PAGE_SIZE * num);
112 else if (can_use_brk_pgt)
113 ret = __pa(extend_brk(PAGE_SIZE * num, PAGE_SIZE));
114
Yinghai Lu5c51bdb2012-11-16 19:39:01 -0800115 if (!ret)
Zhi Yong Wud4dd1002013-11-12 15:08:28 -0800116 panic("alloc_low_pages: can not alloc memory");
Juergen Gross75f2d3a2018-08-20 17:24:20 +0200117
Yinghai Lu5c51bdb2012-11-16 19:39:01 -0800118 pfn = ret >> PAGE_SHIFT;
Yinghai Lu22c8ca22012-11-16 19:39:04 -0800119 } else {
120 pfn = pgt_buf_end;
121 pgt_buf_end += num;
Yinghai Luc9b32342013-01-24 12:19:42 -0800122 printk(KERN_DEBUG "BRK [%#010lx, %#010lx] PGTABLE\n",
123 pfn << PAGE_SHIFT, (pgt_buf_end << PAGE_SHIFT) - 1);
Yinghai Lu22c8ca22012-11-16 19:39:04 -0800124 }
Yinghai Lu5c51bdb2012-11-16 19:39:01 -0800125
Yinghai Lu22c8ca22012-11-16 19:39:04 -0800126 for (i = 0; i < num; i++) {
127 void *adr;
128
129 adr = __va((pfn + i) << PAGE_SHIFT);
130 clear_page(adr);
131 }
132
133 return __va(pfn << PAGE_SHIFT);
Yinghai Lu5c51bdb2012-11-16 19:39:01 -0800134}
135
Thomas Garnierfb754f92016-08-09 10:11:05 -0700136/*
137 * By default need 3 4k for initial PMD_SIZE, 3 4k for 0-ISA_END_ADDRESS.
138 * With KASLR memory randomization, depending on the machine e820 memory
139 * and the PUD alignment. We may need twice more pages when KASLR memory
140 * randomization is enabled.
141 */
142#ifndef CONFIG_RANDOMIZE_MEMORY
143#define INIT_PGD_PAGE_COUNT 6
144#else
145#define INIT_PGD_PAGE_COUNT 12
146#endif
147#define INIT_PGT_BUF_SIZE (INIT_PGD_PAGE_COUNT * PAGE_SIZE)
Yinghai Lu8d574702012-11-16 19:38:58 -0800148RESERVE_BRK(early_pgt_alloc, INIT_PGT_BUF_SIZE);
149void __init early_alloc_pgt_buf(void)
150{
151 unsigned long tables = INIT_PGT_BUF_SIZE;
152 phys_addr_t base;
153
154 base = __pa(extend_brk(tables, PAGE_SIZE));
155
156 pgt_buf_start = base >> PAGE_SHIFT;
157 pgt_buf_end = pgt_buf_start;
158 pgt_buf_top = pgt_buf_start + (tables >> PAGE_SHIFT);
159}
160
Pekka Enbergf7650902009-03-05 14:55:05 +0200161int after_bootmem;
162
Ingo Molnar10971ab2015-03-05 08:18:23 +0100163early_param_on_off("gbpages", "nogbpages", direct_gbpages, CONFIG_X86_DIRECT_GBPAGES);
Yinghai Lu148b2092012-11-16 19:39:08 -0800164
Jacob Shin844ab6f2012-10-24 14:24:44 -0500165struct map_range {
166 unsigned long start;
167 unsigned long end;
168 unsigned page_size_mask;
169};
170
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800171static int page_size_mask;
Pekka Enbergf7650902009-03-05 14:55:05 +0200172
Yinghai Lu22ddfca2012-11-16 19:38:41 -0800173static void __init probe_page_size_mask(void)
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800174{
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800175 /*
Levin, Alexander (Sasha Levin)4675ff02017-11-15 17:36:02 -0800176 * For pagealloc debugging, identity mapping will use small pages.
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800177 * This will simplify cpa(), which otherwise needs to support splitting
178 * large pages into small in interrupt context, etc.
179 */
Levin, Alexander (Sasha Levin)4675ff02017-11-15 17:36:02 -0800180 if (boot_cpu_has(X86_FEATURE_PSE) && !debug_pagealloc_enabled())
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800181 page_size_mask |= 1 << PG_LEVEL_2M;
Vlastimil Babkad9ee35a2017-06-12 09:21:30 +0200182 else
183 direct_gbpages = 0;
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800184
185 /* Enable PSE if available */
Borislav Petkov16bf9222016-03-29 17:42:03 +0200186 if (boot_cpu_has(X86_FEATURE_PSE))
Andy Lutomirski375074c2014-10-24 15:58:07 -0700187 cr4_set_bits_and_update_boot(X86_CR4_PSE);
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800188
189 /* Enable PGE if available */
Dave Hansenc313ec62017-12-04 15:07:34 +0100190 __supported_pte_mask &= ~_PAGE_GLOBAL;
Borislav Petkovc109bf92016-03-29 17:42:02 +0200191 if (boot_cpu_has(X86_FEATURE_PGE)) {
Andy Lutomirski375074c2014-10-24 15:58:07 -0700192 cr4_set_bits_and_update_boot(X86_CR4_PGE);
Dave Hansen39114b72018-04-06 13:55:17 -0700193 __supported_pte_mask |= _PAGE_GLOBAL;
Dave Hansenc313ec62017-12-04 15:07:34 +0100194 }
Ingo Molnare61980a2015-03-05 08:25:01 +0100195
Dave Hansen8a57f482018-04-06 13:55:06 -0700196 /* By the default is everything supported: */
197 __default_kernel_pte_mask = __supported_pte_mask;
198 /* Except when with PTI where the kernel is mostly non-Global: */
199 if (cpu_feature_enabled(X86_FEATURE_PTI))
200 __default_kernel_pte_mask &= ~_PAGE_GLOBAL;
201
Ingo Molnare61980a2015-03-05 08:25:01 +0100202 /* Enable 1 GB linear kernel mappings if available: */
Borislav Petkovb8291adc2016-03-29 17:41:58 +0200203 if (direct_gbpages && boot_cpu_has(X86_FEATURE_GBPAGES)) {
Ingo Molnare61980a2015-03-05 08:25:01 +0100204 printk(KERN_INFO "Using GB pages for direct mapping\n");
205 page_size_mask |= 1 << PG_LEVEL_1G;
206 } else {
207 direct_gbpages = 0;
208 }
Yinghai Lufa62aaf2012-11-16 19:38:38 -0800209}
Stefano Stabellini279b7062011-04-14 15:49:41 +0100210
Andy Lutomirskic7ad5ad2017-09-10 17:48:27 -0700211static void setup_pcid(void)
212{
Dave Hansen6cff64b2017-12-04 15:08:01 +0100213 if (!IS_ENABLED(CONFIG_X86_64))
214 return;
215
216 if (!boot_cpu_has(X86_FEATURE_PCID))
217 return;
218
219 if (boot_cpu_has(X86_FEATURE_PGE)) {
220 /*
221 * This can't be cr4_set_bits_and_update_boot() -- the
222 * trampoline code can't handle CR4.PCIDE and it wouldn't
223 * do any good anyway. Despite the name,
224 * cr4_set_bits_and_update_boot() doesn't actually cause
225 * the bits in question to remain set all the way through
226 * the secondary boot asm.
227 *
228 * Instead, we brute-force it and set CR4.PCIDE manually in
229 * start_secondary().
230 */
231 cr4_set_bits(X86_CR4_PCIDE);
232
233 /*
234 * INVPCID's single-context modes (2/3) only work if we set
235 * X86_CR4_PCIDE, *and* we INVPCID support. It's unusable
236 * on systems that have X86_CR4_PCIDE clear, or that have
237 * no INVPCID support at all.
238 */
239 if (boot_cpu_has(X86_FEATURE_INVPCID))
240 setup_force_cpu_cap(X86_FEATURE_INVPCID_SINGLE);
241 } else {
242 /*
243 * flush_tlb_all(), as currently implemented, won't work if
244 * PCID is on but PGE is not. Since that combination
245 * doesn't exist on real hardware, there's no reason to try
246 * to fully support it, but it's polite to avoid corrupting
247 * data if we're on an improperly configured VM.
248 */
249 setup_clear_cpu_cap(X86_FEATURE_PCID);
Andy Lutomirskic7ad5ad2017-09-10 17:48:27 -0700250 }
Andy Lutomirskic7ad5ad2017-09-10 17:48:27 -0700251}
252
Pekka Enbergf7650902009-03-05 14:55:05 +0200253#ifdef CONFIG_X86_32
254#define NR_RANGE_MR 3
255#else /* CONFIG_X86_64 */
256#define NR_RANGE_MR 5
257#endif
258
Jan Beulichdc9dd5c2009-03-12 12:40:06 +0000259static int __meminit save_mr(struct map_range *mr, int nr_range,
260 unsigned long start_pfn, unsigned long end_pfn,
261 unsigned long page_size_mask)
Pekka Enbergf7650902009-03-05 14:55:05 +0200262{
263 if (start_pfn < end_pfn) {
264 if (nr_range >= NR_RANGE_MR)
265 panic("run out of range for init_memory_mapping\n");
266 mr[nr_range].start = start_pfn<<PAGE_SHIFT;
267 mr[nr_range].end = end_pfn<<PAGE_SHIFT;
268 mr[nr_range].page_size_mask = page_size_mask;
269 nr_range++;
270 }
271
272 return nr_range;
273}
274
Yinghai Luaeebe842012-11-16 19:38:55 -0800275/*
276 * adjust the page_size_mask for small range to go with
277 * big page size instead small one if nearby are ram too.
278 */
Fabian Frederickbd721ea2016-08-02 14:03:33 -0700279static void __ref adjust_range_page_size_mask(struct map_range *mr,
Yinghai Luaeebe842012-11-16 19:38:55 -0800280 int nr_range)
281{
282 int i;
283
284 for (i = 0; i < nr_range; i++) {
285 if ((page_size_mask & (1<<PG_LEVEL_2M)) &&
286 !(mr[i].page_size_mask & (1<<PG_LEVEL_2M))) {
287 unsigned long start = round_down(mr[i].start, PMD_SIZE);
288 unsigned long end = round_up(mr[i].end, PMD_SIZE);
289
290#ifdef CONFIG_X86_32
291 if ((end >> PAGE_SHIFT) > max_low_pfn)
292 continue;
293#endif
294
295 if (memblock_is_region_memory(start, end - start))
296 mr[i].page_size_mask |= 1<<PG_LEVEL_2M;
297 }
298 if ((page_size_mask & (1<<PG_LEVEL_1G)) &&
299 !(mr[i].page_size_mask & (1<<PG_LEVEL_1G))) {
300 unsigned long start = round_down(mr[i].start, PUD_SIZE);
301 unsigned long end = round_up(mr[i].end, PUD_SIZE);
302
303 if (memblock_is_region_memory(start, end - start))
304 mr[i].page_size_mask |= 1<<PG_LEVEL_1G;
305 }
306 }
307}
308
Dave Hansenf15e0512015-02-10 13:20:30 -0800309static const char *page_size_string(struct map_range *mr)
310{
311 static const char str_1g[] = "1G";
312 static const char str_2m[] = "2M";
313 static const char str_4m[] = "4M";
314 static const char str_4k[] = "4k";
315
316 if (mr->page_size_mask & (1<<PG_LEVEL_1G))
317 return str_1g;
318 /*
319 * 32-bit without PAE has a 4M large page size.
320 * PG_LEVEL_2M is misnamed, but we can at least
321 * print out the right size in the string.
322 */
323 if (IS_ENABLED(CONFIG_X86_32) &&
324 !IS_ENABLED(CONFIG_X86_PAE) &&
325 mr->page_size_mask & (1<<PG_LEVEL_2M))
326 return str_4m;
327
328 if (mr->page_size_mask & (1<<PG_LEVEL_2M))
329 return str_2m;
330
331 return str_4k;
332}
333
Yinghai Lu4e33e062012-11-16 19:38:39 -0800334static int __meminit split_mem_range(struct map_range *mr, int nr_range,
335 unsigned long start,
336 unsigned long end)
Pekka Enbergf7650902009-03-05 14:55:05 +0200337{
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800338 unsigned long start_pfn, end_pfn, limit_pfn;
Yinghai Lu1829ae92012-11-16 19:39:14 -0800339 unsigned long pfn;
Yinghai Lu4e33e062012-11-16 19:38:39 -0800340 int i;
Pekka Enbergf7650902009-03-05 14:55:05 +0200341
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800342 limit_pfn = PFN_DOWN(end);
343
Pekka Enbergf7650902009-03-05 14:55:05 +0200344 /* head if not big page alignment ? */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800345 pfn = start_pfn = PFN_DOWN(start);
Pekka Enbergf7650902009-03-05 14:55:05 +0200346#ifdef CONFIG_X86_32
347 /*
348 * Don't use a large page for the first 2/4MB of memory
349 * because there are often fixed size MTRRs in there
350 * and overlapping MTRRs into large pages can cause
351 * slowdowns.
352 */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800353 if (pfn == 0)
Yinghai Lu84d77002012-11-16 19:39:13 -0800354 end_pfn = PFN_DOWN(PMD_SIZE);
Pekka Enbergf7650902009-03-05 14:55:05 +0200355 else
Yinghai Lu1829ae92012-11-16 19:39:14 -0800356 end_pfn = round_up(pfn, PFN_DOWN(PMD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200357#else /* CONFIG_X86_64 */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800358 end_pfn = round_up(pfn, PFN_DOWN(PMD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200359#endif
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800360 if (end_pfn > limit_pfn)
361 end_pfn = limit_pfn;
Pekka Enbergf7650902009-03-05 14:55:05 +0200362 if (start_pfn < end_pfn) {
363 nr_range = save_mr(mr, nr_range, start_pfn, end_pfn, 0);
Yinghai Lu1829ae92012-11-16 19:39:14 -0800364 pfn = end_pfn;
Pekka Enbergf7650902009-03-05 14:55:05 +0200365 }
366
367 /* big page (2M) range */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800368 start_pfn = round_up(pfn, PFN_DOWN(PMD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200369#ifdef CONFIG_X86_32
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800370 end_pfn = round_down(limit_pfn, PFN_DOWN(PMD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200371#else /* CONFIG_X86_64 */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800372 end_pfn = round_up(pfn, PFN_DOWN(PUD_SIZE));
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800373 if (end_pfn > round_down(limit_pfn, PFN_DOWN(PMD_SIZE)))
374 end_pfn = round_down(limit_pfn, PFN_DOWN(PMD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200375#endif
376
377 if (start_pfn < end_pfn) {
378 nr_range = save_mr(mr, nr_range, start_pfn, end_pfn,
379 page_size_mask & (1<<PG_LEVEL_2M));
Yinghai Lu1829ae92012-11-16 19:39:14 -0800380 pfn = end_pfn;
Pekka Enbergf7650902009-03-05 14:55:05 +0200381 }
382
383#ifdef CONFIG_X86_64
384 /* big page (1G) range */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800385 start_pfn = round_up(pfn, PFN_DOWN(PUD_SIZE));
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800386 end_pfn = round_down(limit_pfn, PFN_DOWN(PUD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200387 if (start_pfn < end_pfn) {
388 nr_range = save_mr(mr, nr_range, start_pfn, end_pfn,
389 page_size_mask &
390 ((1<<PG_LEVEL_2M)|(1<<PG_LEVEL_1G)));
Yinghai Lu1829ae92012-11-16 19:39:14 -0800391 pfn = end_pfn;
Pekka Enbergf7650902009-03-05 14:55:05 +0200392 }
393
394 /* tail is not big page (1G) alignment */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800395 start_pfn = round_up(pfn, PFN_DOWN(PMD_SIZE));
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800396 end_pfn = round_down(limit_pfn, PFN_DOWN(PMD_SIZE));
Pekka Enbergf7650902009-03-05 14:55:05 +0200397 if (start_pfn < end_pfn) {
398 nr_range = save_mr(mr, nr_range, start_pfn, end_pfn,
399 page_size_mask & (1<<PG_LEVEL_2M));
Yinghai Lu1829ae92012-11-16 19:39:14 -0800400 pfn = end_pfn;
Pekka Enbergf7650902009-03-05 14:55:05 +0200401 }
402#endif
403
404 /* tail is not big page (2M) alignment */
Yinghai Lu1829ae92012-11-16 19:39:14 -0800405 start_pfn = pfn;
Yinghai Lu2e8059e2012-11-16 19:39:15 -0800406 end_pfn = limit_pfn;
Pekka Enbergf7650902009-03-05 14:55:05 +0200407 nr_range = save_mr(mr, nr_range, start_pfn, end_pfn, 0);
408
Yinghai Lu7de3d662013-05-31 08:53:07 -0700409 if (!after_bootmem)
410 adjust_range_page_size_mask(mr, nr_range);
411
Pekka Enbergf7650902009-03-05 14:55:05 +0200412 /* try to merge same page size and continuous */
413 for (i = 0; nr_range > 1 && i < nr_range - 1; i++) {
414 unsigned long old_start;
415 if (mr[i].end != mr[i+1].start ||
416 mr[i].page_size_mask != mr[i+1].page_size_mask)
417 continue;
418 /* move it */
419 old_start = mr[i].start;
420 memmove(&mr[i], &mr[i+1],
421 (nr_range - 1 - i) * sizeof(struct map_range));
422 mr[i--].start = old_start;
423 nr_range--;
424 }
425
426 for (i = 0; i < nr_range; i++)
Dan Williamsc9cdaeb2015-09-17 16:27:57 -0400427 pr_debug(" [mem %#010lx-%#010lx] page %s\n",
Bjorn Helgaas365811d2012-05-29 15:06:29 -0700428 mr[i].start, mr[i].end - 1,
Dave Hansenf15e0512015-02-10 13:20:30 -0800429 page_size_string(&mr[i]));
Pekka Enbergf7650902009-03-05 14:55:05 +0200430
Yinghai Lu4e33e062012-11-16 19:38:39 -0800431 return nr_range;
432}
433
Ingo Molnar08b46d52017-01-28 17:29:08 +0100434struct range pfn_mapped[E820_MAX_ENTRIES];
Yinghai Lu0e691cf2013-01-24 12:20:05 -0800435int nr_pfn_mapped;
Jacob Shin66520eb2012-11-16 19:38:52 -0800436
437static void add_pfn_range_mapped(unsigned long start_pfn, unsigned long end_pfn)
438{
Ingo Molnar08b46d52017-01-28 17:29:08 +0100439 nr_pfn_mapped = add_range_with_merge(pfn_mapped, E820_MAX_ENTRIES,
Jacob Shin66520eb2012-11-16 19:38:52 -0800440 nr_pfn_mapped, start_pfn, end_pfn);
Ingo Molnar08b46d52017-01-28 17:29:08 +0100441 nr_pfn_mapped = clean_sort_range(pfn_mapped, E820_MAX_ENTRIES);
Jacob Shin66520eb2012-11-16 19:38:52 -0800442
443 max_pfn_mapped = max(max_pfn_mapped, end_pfn);
444
445 if (start_pfn < (1UL<<(32-PAGE_SHIFT)))
446 max_low_pfn_mapped = max(max_low_pfn_mapped,
447 min(end_pfn, 1UL<<(32-PAGE_SHIFT)));
448}
449
450bool pfn_range_is_mapped(unsigned long start_pfn, unsigned long end_pfn)
451{
452 int i;
453
454 for (i = 0; i < nr_pfn_mapped; i++)
455 if ((start_pfn >= pfn_mapped[i].start) &&
456 (end_pfn <= pfn_mapped[i].end))
457 return true;
458
459 return false;
460}
461
Yinghai Lu2086fe12012-11-16 19:38:40 -0800462/*
Yinghai Lu4e33e062012-11-16 19:38:39 -0800463 * Setup the direct mapping of the physical memory at PAGE_OFFSET.
464 * This runs before bootmem is initialized and gets pages directly from
465 * the physical memory. To access them they are temporarily mapped.
466 */
Fabian Frederickbd721ea2016-08-02 14:03:33 -0700467unsigned long __ref init_memory_mapping(unsigned long start,
Yinghai Lu4e33e062012-11-16 19:38:39 -0800468 unsigned long end)
469{
470 struct map_range mr[NR_RANGE_MR];
471 unsigned long ret = 0;
472 int nr_range, i;
473
Dan Williamsc9cdaeb2015-09-17 16:27:57 -0400474 pr_debug("init_memory_mapping: [mem %#010lx-%#010lx]\n",
Yinghai Lu4e33e062012-11-16 19:38:39 -0800475 start, end - 1);
476
477 memset(mr, 0, sizeof(mr));
478 nr_range = split_mem_range(mr, 0, start, end);
479
Pekka Enbergf7650902009-03-05 14:55:05 +0200480 for (i = 0; i < nr_range; i++)
481 ret = kernel_physical_mapping_init(mr[i].start, mr[i].end,
482 mr[i].page_size_mask);
Pekka Enbergf7650902009-03-05 14:55:05 +0200483
Jacob Shin66520eb2012-11-16 19:38:52 -0800484 add_pfn_range_mapped(start >> PAGE_SHIFT, ret >> PAGE_SHIFT);
485
Yinghai Luc14fa0b2012-11-16 19:38:44 -0800486 return ret >> PAGE_SHIFT;
487}
488
Jacob Shin66520eb2012-11-16 19:38:52 -0800489/*
Zhang Yanfeicf8b1662013-05-09 23:57:42 +0800490 * We need to iterate through the E820 memory map and create direct mappings
Ingo Molnar09821ff2017-01-28 17:09:33 +0100491 * for only E820_TYPE_RAM and E820_KERN_RESERVED regions. We cannot simply
Zhang Yanfeicf8b1662013-05-09 23:57:42 +0800492 * create direct mappings for all pfns from [0 to max_low_pfn) and
493 * [4GB to max_pfn) because of possible memory holes in high addresses
494 * that cannot be marked as UC by fixed/variable range MTRRs.
495 * Depending on the alignment of E820 ranges, this may possibly result
496 * in using smaller size (i.e. 4K instead of 2M or 1G) page tables.
497 *
498 * init_mem_mapping() calls init_range_memory_mapping() with big range.
499 * That range would have hole in the middle or ends, and only ram parts
500 * will be mapped in init_range_memory_mapping().
Jacob Shin66520eb2012-11-16 19:38:52 -0800501 */
Yinghai Lu8d574702012-11-16 19:38:58 -0800502static unsigned long __init init_range_memory_mapping(
Yinghai Lub8fd39c2012-11-16 19:39:18 -0800503 unsigned long r_start,
504 unsigned long r_end)
Jacob Shin66520eb2012-11-16 19:38:52 -0800505{
506 unsigned long start_pfn, end_pfn;
Yinghai Lu8d574702012-11-16 19:38:58 -0800507 unsigned long mapped_ram_size = 0;
Jacob Shin66520eb2012-11-16 19:38:52 -0800508 int i;
509
Jacob Shin66520eb2012-11-16 19:38:52 -0800510 for_each_mem_pfn_range(i, MAX_NUMNODES, &start_pfn, &end_pfn, NULL) {
Yinghai Lub8fd39c2012-11-16 19:39:18 -0800511 u64 start = clamp_val(PFN_PHYS(start_pfn), r_start, r_end);
512 u64 end = clamp_val(PFN_PHYS(end_pfn), r_start, r_end);
513 if (start >= end)
Jacob Shin66520eb2012-11-16 19:38:52 -0800514 continue;
515
Yinghai Luc9b32342013-01-24 12:19:42 -0800516 /*
517 * if it is overlapping with brk pgt, we need to
518 * alloc pgt buf from memblock instead.
519 */
520 can_use_brk_pgt = max(start, (u64)pgt_buf_end<<PAGE_SHIFT) >=
521 min(end, (u64)pgt_buf_top<<PAGE_SHIFT);
Jacob Shin66520eb2012-11-16 19:38:52 -0800522 init_memory_mapping(start, end);
Yinghai Lu8d574702012-11-16 19:38:58 -0800523 mapped_ram_size += end - start;
Yinghai Luc9b32342013-01-24 12:19:42 -0800524 can_use_brk_pgt = true;
Jacob Shin66520eb2012-11-16 19:38:52 -0800525 }
Yinghai Lu8d574702012-11-16 19:38:58 -0800526
527 return mapped_ram_size;
Jacob Shin66520eb2012-11-16 19:38:52 -0800528}
529
Yinghai Lu69792872013-09-06 19:07:09 -0700530static unsigned long __init get_new_step_size(unsigned long step_size)
531{
532 /*
Jan Beulich132978b2014-12-19 16:10:54 +0000533 * Initial mapped size is PMD_SIZE (2M).
Yinghai Lu69792872013-09-06 19:07:09 -0700534 * We can not set step_size to be PUD_SIZE (1G) yet.
535 * In worse case, when we cross the 1G boundary, and
536 * PG_LEVEL_2M is not set, we will need 1+1+512 pages (2M + 8k)
Jan Beulich132978b2014-12-19 16:10:54 +0000537 * to map 1G range with PTE. Hence we use one less than the
538 * difference of page table level shifts.
Yinghai Lu69792872013-09-06 19:07:09 -0700539 *
Jan Beulich132978b2014-12-19 16:10:54 +0000540 * Don't need to worry about overflow in the top-down case, on 32bit,
541 * when step_size is 0, round_down() returns 0 for start, and that
542 * turns it into 0x100000000ULL.
543 * In the bottom-up case, round_up(x, 0) returns 0 though too, which
544 * needs to be taken into consideration by the code below.
Yinghai Lu69792872013-09-06 19:07:09 -0700545 */
Jan Beulich132978b2014-12-19 16:10:54 +0000546 return step_size << (PMD_SHIFT - PAGE_SHIFT - 1);
Yinghai Lu69792872013-09-06 19:07:09 -0700547}
548
Tang Chen0167d7d2013-11-12 15:08:02 -0800549/**
550 * memory_map_top_down - Map [map_start, map_end) top down
551 * @map_start: start address of the target memory range
552 * @map_end: end address of the target memory range
553 *
554 * This function will setup direct mapping for memory range
555 * [map_start, map_end) in top-down. That said, the page tables
556 * will be allocated at the end of the memory, and we map the
557 * memory in top-down.
558 */
559static void __init memory_map_top_down(unsigned long map_start,
560 unsigned long map_end)
Yinghai Luc14fa0b2012-11-16 19:38:44 -0800561{
Tang Chen0167d7d2013-11-12 15:08:02 -0800562 unsigned long real_end, start, last_start;
Yinghai Lu8d574702012-11-16 19:38:58 -0800563 unsigned long step_size;
564 unsigned long addr;
565 unsigned long mapped_ram_size = 0;
Yinghai Luab951932012-11-16 19:38:45 -0800566
Yinghai Lu98e7a982013-03-06 20:18:21 -0800567 /* xen has big range in reserved near end of ram, skip it at first.*/
Tang Chen0167d7d2013-11-12 15:08:02 -0800568 addr = memblock_find_in_range(map_start, map_end, PMD_SIZE, PMD_SIZE);
Yinghai Lu8d574702012-11-16 19:38:58 -0800569 real_end = addr + PMD_SIZE;
570
571 /* step_size need to be small so pgt_buf from BRK could cover it */
572 step_size = PMD_SIZE;
573 max_pfn_mapped = 0; /* will get exact value next */
574 min_pfn_mapped = real_end >> PAGE_SHIFT;
575 last_start = start = real_end;
Zhang Yanfeicf8b1662013-05-09 23:57:42 +0800576
577 /*
578 * We start from the top (end of memory) and go to the bottom.
579 * The memblock_find_in_range() gets us a block of RAM from the
580 * end of RAM in [min_pfn_mapped, max_pfn_mapped) used as new pages
581 * for page table.
582 */
Tang Chen0167d7d2013-11-12 15:08:02 -0800583 while (last_start > map_start) {
Yinghai Lu8d574702012-11-16 19:38:58 -0800584 if (last_start > step_size) {
585 start = round_down(last_start - 1, step_size);
Tang Chen0167d7d2013-11-12 15:08:02 -0800586 if (start < map_start)
587 start = map_start;
Yinghai Lu8d574702012-11-16 19:38:58 -0800588 } else
Tang Chen0167d7d2013-11-12 15:08:02 -0800589 start = map_start;
Jan Beulich132978b2014-12-19 16:10:54 +0000590 mapped_ram_size += init_range_memory_mapping(start,
Yinghai Lu8d574702012-11-16 19:38:58 -0800591 last_start);
592 last_start = start;
593 min_pfn_mapped = last_start >> PAGE_SHIFT;
Jan Beulich132978b2014-12-19 16:10:54 +0000594 if (mapped_ram_size >= step_size)
Yinghai Lu69792872013-09-06 19:07:09 -0700595 step_size = get_new_step_size(step_size);
Yinghai Lu8d574702012-11-16 19:38:58 -0800596 }
597
Tang Chen0167d7d2013-11-12 15:08:02 -0800598 if (real_end < map_end)
599 init_range_memory_mapping(real_end, map_end);
600}
601
Tang Chenb959ed62013-11-12 15:08:05 -0800602/**
603 * memory_map_bottom_up - Map [map_start, map_end) bottom up
604 * @map_start: start address of the target memory range
605 * @map_end: end address of the target memory range
606 *
607 * This function will setup direct mapping for memory range
608 * [map_start, map_end) in bottom-up. Since we have limited the
609 * bottom-up allocation above the kernel, the page tables will
610 * be allocated just above the kernel and we map the memory
611 * in [map_start, map_end) in bottom-up.
612 */
613static void __init memory_map_bottom_up(unsigned long map_start,
614 unsigned long map_end)
615{
Jan Beulich132978b2014-12-19 16:10:54 +0000616 unsigned long next, start;
Tang Chenb959ed62013-11-12 15:08:05 -0800617 unsigned long mapped_ram_size = 0;
618 /* step_size need to be small so pgt_buf from BRK could cover it */
619 unsigned long step_size = PMD_SIZE;
620
621 start = map_start;
622 min_pfn_mapped = start >> PAGE_SHIFT;
623
624 /*
625 * We start from the bottom (@map_start) and go to the top (@map_end).
626 * The memblock_find_in_range() gets us a block of RAM from the
627 * end of RAM in [min_pfn_mapped, max_pfn_mapped) used as new pages
628 * for page table.
629 */
630 while (start < map_end) {
Jan Beulich132978b2014-12-19 16:10:54 +0000631 if (step_size && map_end - start > step_size) {
Tang Chenb959ed62013-11-12 15:08:05 -0800632 next = round_up(start + 1, step_size);
633 if (next > map_end)
634 next = map_end;
Jan Beulich132978b2014-12-19 16:10:54 +0000635 } else {
Tang Chenb959ed62013-11-12 15:08:05 -0800636 next = map_end;
Jan Beulich132978b2014-12-19 16:10:54 +0000637 }
Tang Chenb959ed62013-11-12 15:08:05 -0800638
Jan Beulich132978b2014-12-19 16:10:54 +0000639 mapped_ram_size += init_range_memory_mapping(start, next);
Tang Chenb959ed62013-11-12 15:08:05 -0800640 start = next;
641
Jan Beulich132978b2014-12-19 16:10:54 +0000642 if (mapped_ram_size >= step_size)
Tang Chenb959ed62013-11-12 15:08:05 -0800643 step_size = get_new_step_size(step_size);
Tang Chenb959ed62013-11-12 15:08:05 -0800644 }
645}
646
Tang Chen0167d7d2013-11-12 15:08:02 -0800647void __init init_mem_mapping(void)
648{
649 unsigned long end;
650
Thomas Gleixneraa8c6242017-12-04 15:07:36 +0100651 pti_check_boottime_disable();
Tang Chen0167d7d2013-11-12 15:08:02 -0800652 probe_page_size_mask();
Andy Lutomirskic7ad5ad2017-09-10 17:48:27 -0700653 setup_pcid();
Tang Chen0167d7d2013-11-12 15:08:02 -0800654
655#ifdef CONFIG_X86_64
656 end = max_pfn << PAGE_SHIFT;
657#else
658 end = max_low_pfn << PAGE_SHIFT;
659#endif
660
661 /* the ISA range is always mapped regardless of memory holes */
662 init_memory_mapping(0, ISA_END_ADDRESS);
663
Thomas Garnierb234e8a2016-06-21 17:47:01 -0700664 /* Init the trampoline, possibly with KASLR memory offset */
665 init_trampoline();
666
Tang Chenb959ed62013-11-12 15:08:05 -0800667 /*
668 * If the allocation is in bottom-up direction, we setup direct mapping
669 * in bottom-up, otherwise we setup direct mapping in top-down.
670 */
671 if (memblock_bottom_up()) {
672 unsigned long kernel_end = __pa_symbol(_end);
673
674 /*
675 * we need two separate calls here. This is because we want to
676 * allocate page tables above the kernel. So we first map
677 * [kernel_end, end) to make memory above the kernel be mapped
678 * as soon as possible. And then use page tables allocated above
679 * the kernel to map [ISA_END_ADDRESS, kernel_end).
680 */
681 memory_map_bottom_up(kernel_end, end);
682 memory_map_bottom_up(ISA_END_ADDRESS, kernel_end);
683 } else {
684 memory_map_top_down(ISA_END_ADDRESS, end);
685 }
Yinghai Lu8d574702012-11-16 19:38:58 -0800686
Yinghai Luf763ad12012-11-16 19:38:57 -0800687#ifdef CONFIG_X86_64
688 if (max_pfn > max_low_pfn) {
689 /* can we preseve max_low_pfn ?*/
690 max_low_pfn = max_pfn;
691 }
Yinghai Lu719272c2012-11-16 19:39:06 -0800692#else
693 early_ioremap_page_table_range_init();
H. Peter Anvin8170e6b2013-01-24 12:19:52 -0800694#endif
695
Yinghai Lu719272c2012-11-16 19:39:06 -0800696 load_cr3(swapper_pg_dir);
697 __flush_tlb_all();
Yinghai Lu719272c2012-11-16 19:39:06 -0800698
Juergen Grossf72e38e2017-11-09 14:27:35 +0100699 x86_init.hyper.init_mem_mapping();
Juergen Grossc138d812017-07-28 12:23:12 +0200700
Yinghai Luc14fa0b2012-11-16 19:38:44 -0800701 early_memtest(0, max_pfn_mapped << PAGE_SHIFT);
Yinghai Lu22ddfca2012-11-16 19:38:41 -0800702}
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200703
Pekka Enberg540aca02009-03-04 11:46:40 +0200704/*
705 * devmem_is_allowed() checks to see if /dev/mem access to a certain address
706 * is valid. The argument is a physical page number.
707 *
Kees Cooka4866aa2017-04-05 09:39:08 -0700708 * On x86, access has to be given to the first megabyte of RAM because that
709 * area traditionally contains BIOS code and data regions used by X, dosemu,
710 * and similar apps. Since they map the entire memory range, the whole range
711 * must be allowed (for mapping), but any areas that would otherwise be
712 * disallowed are flagged as being "zero filled" instead of rejected.
713 * Access has to be given to non-kernel-ram areas as well, these contain the
714 * PCI mmio resources as well as potential bios/acpi data regions.
Pekka Enberg540aca02009-03-04 11:46:40 +0200715 */
716int devmem_is_allowed(unsigned long pagenr)
717{
Dan Williams2bdce742018-06-14 15:26:24 -0700718 if (region_intersects(PFN_PHYS(pagenr), PAGE_SIZE,
719 IORESOURCE_SYSTEM_RAM, IORES_DESC_NONE)
720 != REGION_DISJOINT) {
Kees Cooka4866aa2017-04-05 09:39:08 -0700721 /*
722 * For disallowed memory regions in the low 1MB range,
723 * request that the page be shown as all zeros.
724 */
725 if (pagenr < 256)
726 return 2;
727
Pekka Enberg540aca02009-03-04 11:46:40 +0200728 return 0;
Kees Cooka4866aa2017-04-05 09:39:08 -0700729 }
730
731 /*
732 * This must follow RAM test, since System RAM is considered a
733 * restricted resource under CONFIG_STRICT_IOMEM.
734 */
735 if (iomem_is_exclusive(pagenr << PAGE_SHIFT)) {
736 /* Low 1MB bypasses iomem restrictions. */
737 if (pagenr < 256)
738 return 1;
739
740 return 0;
741 }
742
743 return 1;
Pekka Enberg540aca02009-03-04 11:46:40 +0200744}
745
Alexey Dobriyane5cb1132018-12-28 00:36:03 -0800746void free_init_pages(const char *what, unsigned long begin, unsigned long end)
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200747{
Yinghai Luc967da62010-03-28 19:42:55 -0700748 unsigned long begin_aligned, end_aligned;
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200749
Yinghai Luc967da62010-03-28 19:42:55 -0700750 /* Make sure boundaries are page aligned */
751 begin_aligned = PAGE_ALIGN(begin);
752 end_aligned = end & PAGE_MASK;
753
754 if (WARN_ON(begin_aligned != begin || end_aligned != end)) {
755 begin = begin_aligned;
756 end = end_aligned;
757 }
758
759 if (begin >= end)
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200760 return;
761
762 /*
763 * If debugging page accesses then do not free this memory but
764 * mark them not present - any buggy init-section access will
765 * create a kernel page fault:
766 */
Christian Borntraegera75e1f62016-03-15 14:57:39 -0700767 if (debug_pagealloc_enabled()) {
768 pr_info("debug: unmapping init [mem %#010lx-%#010lx]\n",
769 begin, end - 1);
Qian Cai0d021132019-04-23 12:58:11 -0400770 /*
771 * Inform kmemleak about the hole in the memory since the
772 * corresponding pages will be unmapped.
773 */
774 kmemleak_free_part((void *)begin, end - begin);
Christian Borntraegera75e1f62016-03-15 14:57:39 -0700775 set_memory_np(begin, (end - begin) >> PAGE_SHIFT);
776 } else {
777 /*
778 * We just marked the kernel text read only above, now that
779 * we are going to free part of that, we need to make that
780 * writeable and non-executable first.
781 */
782 set_memory_nx(begin, (end - begin) >> PAGE_SHIFT);
783 set_memory_rw(begin, (end - begin) >> PAGE_SHIFT);
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200784
Christian Borntraegera75e1f62016-03-15 14:57:39 -0700785 free_reserved_area((void *)begin, (void *)end,
786 POISON_FREE_INITMEM, what);
787 }
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200788}
789
Dave Hansen6ea27382018-08-02 15:58:29 -0700790/*
791 * begin/end can be in the direct map or the "high kernel mapping"
792 * used for the kernel image only. free_init_pages() will do the
793 * right thing for either kind of address.
794 */
795void free_kernel_image_pages(void *begin, void *end)
796{
Dave Hansenc40a56a2018-08-02 15:58:31 -0700797 unsigned long begin_ul = (unsigned long)begin;
798 unsigned long end_ul = (unsigned long)end;
799 unsigned long len_pages = (end_ul - begin_ul) >> PAGE_SHIFT;
800
801
802 free_init_pages("unused kernel image", begin_ul, end_ul);
803
804 /*
805 * PTI maps some of the kernel into userspace. For performance,
806 * this includes some kernel areas that do not contain secrets.
807 * Those areas might be adjacent to the parts of the kernel image
808 * being freed, which may contain secrets. Remove the "high kernel
809 * image mapping" for these freed areas, ensuring they are not even
810 * potentially vulnerable to Meltdown regardless of the specific
811 * optimizations PTI is currently using.
812 *
813 * The "noalias" prevents unmapping the direct map alias which is
814 * needed to access the freed pages.
815 *
816 * This is only valid for 64bit kernels. 32bit has only one mapping
817 * which can't be treated in this way for obvious reasons.
818 */
819 if (IS_ENABLED(CONFIG_X86_64) && cpu_feature_enabled(X86_FEATURE_PTI))
820 set_memory_np_noalias(begin_ul, len_pages);
Dave Hansen6ea27382018-08-02 15:58:29 -0700821}
822
Brijesh Singhb3f09072018-09-14 08:45:58 -0500823void __weak mem_encrypt_free_decrypted_mem(void) { }
824
Denys Vlasenko18278222016-09-18 20:21:25 +0200825void __ref free_initmem(void)
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200826{
Ingo Molnar0c6fc112017-01-28 22:52:16 +0100827 e820__reallocate_tables();
Denys Vlasenko47533962016-09-17 23:39:26 +0200828
Brijesh Singhb3f09072018-09-14 08:45:58 -0500829 mem_encrypt_free_decrypted_mem();
830
Dave Hansen6ea27382018-08-02 15:58:29 -0700831 free_kernel_image_pages(&__init_begin, &__init_end);
Pekka Enberge5b2bb52009-03-03 13:15:06 +0200832}
Pekka Enberg731ddea2009-03-04 11:13:40 +0200833
834#ifdef CONFIG_BLK_DEV_INITRD
Jan Beulich0d26d1d2012-06-18 11:30:20 +0100835void __init free_initrd_mem(unsigned long start, unsigned long end)
Pekka Enberg731ddea2009-03-04 11:13:40 +0200836{
Fenghua Yucd745be2012-12-20 23:44:31 -0800837 /*
Yinghai Luc967da62010-03-28 19:42:55 -0700838 * end could be not aligned, and We can not align that,
839 * decompresser could be confused by aligned initrd_end
840 * We already reserve the end partial page before in
841 * - i386_start_kernel()
842 * - x86_64_start_kernel()
843 * - relocate_initrd()
844 * So here We can do PAGE_ALIGN() safely to get partial page to be freed
845 */
Jiang Liuc88442e2013-07-03 15:02:58 -0700846 free_init_pages("initrd", start, PAGE_ALIGN(end));
Pekka Enberg731ddea2009-03-04 11:13:40 +0200847}
848#endif
Pekka Enberg17623912011-11-01 15:58:22 +0200849
Ingo Molnar4270fd82017-01-28 12:45:40 +0100850/*
851 * Calculate the precise size of the DMA zone (first 16 MB of RAM),
852 * and pass it to the MM layer - to help it set zone watermarks more
853 * accurately.
854 *
855 * Done on 64-bit systems only for the time being, although 32-bit systems
856 * might benefit from this as well.
857 */
858void __init memblock_find_dma_reserve(void)
859{
860#ifdef CONFIG_X86_64
861 u64 nr_pages = 0, nr_free_pages = 0;
862 unsigned long start_pfn, end_pfn;
863 phys_addr_t start_addr, end_addr;
864 int i;
865 u64 u;
866
867 /*
868 * Iterate over all memory ranges (free and reserved ones alike),
869 * to calculate the total number of pages in the first 16 MB of RAM:
870 */
871 nr_pages = 0;
872 for_each_mem_pfn_range(i, MAX_NUMNODES, &start_pfn, &end_pfn, NULL) {
873 start_pfn = min(start_pfn, MAX_DMA_PFN);
874 end_pfn = min(end_pfn, MAX_DMA_PFN);
875
876 nr_pages += end_pfn - start_pfn;
877 }
878
879 /*
880 * Iterate over free memory ranges to calculate the number of free
881 * pages in the DMA zone, while not counting potential partial
882 * pages at the beginning or the end of the range:
883 */
884 nr_free_pages = 0;
885 for_each_free_mem_range(u, NUMA_NO_NODE, MEMBLOCK_NONE, &start_addr, &end_addr, NULL) {
886 start_pfn = min_t(unsigned long, PFN_UP(start_addr), MAX_DMA_PFN);
887 end_pfn = min_t(unsigned long, PFN_DOWN(end_addr), MAX_DMA_PFN);
888
889 if (start_pfn < end_pfn)
890 nr_free_pages += end_pfn - start_pfn;
891 }
892
893 set_dma_reserve(nr_pages - nr_free_pages);
894#endif
895}
896
Pekka Enberg17623912011-11-01 15:58:22 +0200897void __init zone_sizes_init(void)
898{
899 unsigned long max_zone_pfns[MAX_NR_ZONES];
900
901 memset(max_zone_pfns, 0, sizeof(max_zone_pfns));
902
903#ifdef CONFIG_ZONE_DMA
Xishi Qiuc072b902014-12-10 10:09:01 +0800904 max_zone_pfns[ZONE_DMA] = min(MAX_DMA_PFN, max_low_pfn);
Pekka Enberg17623912011-11-01 15:58:22 +0200905#endif
906#ifdef CONFIG_ZONE_DMA32
Xishi Qiuc072b902014-12-10 10:09:01 +0800907 max_zone_pfns[ZONE_DMA32] = min(MAX_DMA32_PFN, max_low_pfn);
Pekka Enberg17623912011-11-01 15:58:22 +0200908#endif
909 max_zone_pfns[ZONE_NORMAL] = max_low_pfn;
910#ifdef CONFIG_HIGHMEM
911 max_zone_pfns[ZONE_HIGHMEM] = max_pfn;
912#endif
913
914 free_area_init_nodes(max_zone_pfns);
915}
916
Peter Zijlstra6fd166a2017-12-04 15:07:59 +0100917__visible DEFINE_PER_CPU_SHARED_ALIGNED(struct tlb_state, cpu_tlbstate) = {
Andy Lutomirski3d28ebc2017-05-28 10:00:15 -0700918 .loaded_mm = &init_mm,
Andy Lutomirski10af6232017-07-24 21:41:38 -0700919 .next_asid = 1,
Andy Lutomirski1e02ce42014-10-24 15:58:08 -0700920 .cr4 = ~0UL, /* fail hard if we screw up cr4 shadow initialization */
921};
Thomas Gleixner1e547682018-01-04 22:19:04 +0100922EXPORT_PER_CPU_SYMBOL(cpu_tlbstate);
Andy Lutomirski1e02ce42014-10-24 15:58:08 -0700923
Juergen Grossbd809af2014-11-03 14:02:03 +0100924void update_cache_mode_entry(unsigned entry, enum page_cache_mode cache)
925{
926 /* entry 0 MUST be WB (hardwired to speed up translations) */
927 BUG_ON(!entry && cache != _PAGE_CACHE_MODE_WB);
928
929 __cachemode2pte_tbl[cache] = __cm_idx2pte(entry);
930 __pte2cachemode_tbl[entry] = cache;
931}
Andi Kleen377eeaa2018-06-13 15:48:28 -0700932
Vlastimil Babka792adb92018-08-14 20:50:47 +0200933#ifdef CONFIG_SWAP
Andi Kleen377eeaa2018-06-13 15:48:28 -0700934unsigned long max_swapfile_size(void)
935{
936 unsigned long pages;
937
938 pages = generic_max_swapfile_size();
939
Michal Hocko5b5e4d62018-11-13 19:49:10 +0100940 if (boot_cpu_has_bug(X86_BUG_L1TF) && l1tf_mitigation != L1TF_MITIGATION_OFF) {
Andi Kleen377eeaa2018-06-13 15:48:28 -0700941 /* Limit the swap file size to MAX_PA/2 for L1TF workaround */
Vlastimil Babkab0a182f2018-08-23 15:44:18 +0200942 unsigned long long l1tf_limit = l1tf_pfn_limit();
Vlastimil Babka1a7ed1b2018-06-21 12:36:29 +0200943 /*
944 * We encode swap offsets also with 3 bits below those for pfn
945 * which makes the usable limit higher.
946 */
Vlastimil Babka0d0f6242018-06-22 17:39:33 +0200947#if CONFIG_PGTABLE_LEVELS > 2
Vlastimil Babka1a7ed1b2018-06-21 12:36:29 +0200948 l1tf_limit <<= PAGE_SHIFT - SWP_OFFSET_FIRST_BIT;
949#endif
Vlastimil Babka9df95162018-08-20 11:58:35 +0200950 pages = min_t(unsigned long long, l1tf_limit, pages);
Andi Kleen377eeaa2018-06-13 15:48:28 -0700951 }
952 return pages;
953}
Vlastimil Babka792adb92018-08-14 20:50:47 +0200954#endif