xref: /linux/mm/memblock.c (revision a571d4eb55d83ff538d98870fa8a8497b24d39bc)
195f72d1eSYinghai Lu /*
295f72d1eSYinghai Lu  * Procedures for maintaining information about logical memory blocks.
395f72d1eSYinghai Lu  *
495f72d1eSYinghai Lu  * Peter Bergner, IBM Corp.	June 2001.
595f72d1eSYinghai Lu  * Copyright (C) 2001 Peter Bergner.
695f72d1eSYinghai Lu  *
795f72d1eSYinghai Lu  *      This program is free software; you can redistribute it and/or
895f72d1eSYinghai Lu  *      modify it under the terms of the GNU General Public License
995f72d1eSYinghai Lu  *      as published by the Free Software Foundation; either version
1095f72d1eSYinghai Lu  *      2 of the License, or (at your option) any later version.
1195f72d1eSYinghai Lu  */
1295f72d1eSYinghai Lu 
1395f72d1eSYinghai Lu #include <linux/kernel.h>
14142b45a7SBenjamin Herrenschmidt #include <linux/slab.h>
1595f72d1eSYinghai Lu #include <linux/init.h>
1695f72d1eSYinghai Lu #include <linux/bitops.h>
17449e8df3SBenjamin Herrenschmidt #include <linux/poison.h>
18c196f76fSBenjamin Herrenschmidt #include <linux/pfn.h>
196d03b885SBenjamin Herrenschmidt #include <linux/debugfs.h>
206d03b885SBenjamin Herrenschmidt #include <linux/seq_file.h>
2195f72d1eSYinghai Lu #include <linux/memblock.h>
2295f72d1eSYinghai Lu 
23c4c5ad6bSChristoph Hellwig #include <asm/sections.h>
2426f09e9bSSantosh Shilimkar #include <linux/io.h>
2526f09e9bSSantosh Shilimkar 
2626f09e9bSSantosh Shilimkar #include "internal.h"
2779442ed1STang Chen 
28fe091c20STejun Heo static struct memblock_region memblock_memory_init_regions[INIT_MEMBLOCK_REGIONS] __initdata_memblock;
29fe091c20STejun Heo static struct memblock_region memblock_reserved_init_regions[INIT_MEMBLOCK_REGIONS] __initdata_memblock;
3070210ed9SPhilipp Hachtmann #ifdef CONFIG_HAVE_MEMBLOCK_PHYS_MAP
3170210ed9SPhilipp Hachtmann static struct memblock_region memblock_physmem_init_regions[INIT_PHYSMEM_REGIONS] __initdata_memblock;
3270210ed9SPhilipp Hachtmann #endif
33fe091c20STejun Heo 
34fe091c20STejun Heo struct memblock memblock __initdata_memblock = {
35fe091c20STejun Heo 	.memory.regions		= memblock_memory_init_regions,
36fe091c20STejun Heo 	.memory.cnt		= 1,	/* empty dummy entry */
37fe091c20STejun Heo 	.memory.max		= INIT_MEMBLOCK_REGIONS,
38fe091c20STejun Heo 
39fe091c20STejun Heo 	.reserved.regions	= memblock_reserved_init_regions,
40fe091c20STejun Heo 	.reserved.cnt		= 1,	/* empty dummy entry */
41fe091c20STejun Heo 	.reserved.max		= INIT_MEMBLOCK_REGIONS,
42fe091c20STejun Heo 
4370210ed9SPhilipp Hachtmann #ifdef CONFIG_HAVE_MEMBLOCK_PHYS_MAP
4470210ed9SPhilipp Hachtmann 	.physmem.regions	= memblock_physmem_init_regions,
4570210ed9SPhilipp Hachtmann 	.physmem.cnt		= 1,	/* empty dummy entry */
4670210ed9SPhilipp Hachtmann 	.physmem.max		= INIT_PHYSMEM_REGIONS,
4770210ed9SPhilipp Hachtmann #endif
4870210ed9SPhilipp Hachtmann 
4979442ed1STang Chen 	.bottom_up		= false,
50fe091c20STejun Heo 	.current_limit		= MEMBLOCK_ALLOC_ANYWHERE,
51fe091c20STejun Heo };
5295f72d1eSYinghai Lu 
5310d06439SYinghai Lu int memblock_debug __initdata_memblock;
5455ac590cSTang Chen #ifdef CONFIG_MOVABLE_NODE
5555ac590cSTang Chen bool movable_node_enabled __initdata_memblock = false;
5655ac590cSTang Chen #endif
57a3f5bafcSTony Luck static bool system_has_some_mirror __initdata_memblock = false;
581aadc056STejun Heo static int memblock_can_resize __initdata_memblock;
59181eb394SGavin Shan static int memblock_memory_in_slab __initdata_memblock = 0;
60181eb394SGavin Shan static int memblock_reserved_in_slab __initdata_memblock = 0;
6195f72d1eSYinghai Lu 
62a3f5bafcSTony Luck ulong __init_memblock choose_memblock_flags(void)
63a3f5bafcSTony Luck {
64a3f5bafcSTony Luck 	return system_has_some_mirror ? MEMBLOCK_MIRROR : MEMBLOCK_NONE;
65a3f5bafcSTony Luck }
66a3f5bafcSTony Luck 
67142b45a7SBenjamin Herrenschmidt /* inline so we don't get a warning when pr_debug is compiled out */
68c2233116SRaghavendra D Prabhu static __init_memblock const char *
69c2233116SRaghavendra D Prabhu memblock_type_name(struct memblock_type *type)
70142b45a7SBenjamin Herrenschmidt {
71142b45a7SBenjamin Herrenschmidt 	if (type == &memblock.memory)
72142b45a7SBenjamin Herrenschmidt 		return "memory";
73142b45a7SBenjamin Herrenschmidt 	else if (type == &memblock.reserved)
74142b45a7SBenjamin Herrenschmidt 		return "reserved";
75142b45a7SBenjamin Herrenschmidt 	else
76142b45a7SBenjamin Herrenschmidt 		return "unknown";
77142b45a7SBenjamin Herrenschmidt }
78142b45a7SBenjamin Herrenschmidt 
79eb18f1b5STejun Heo /* adjust *@size so that (@base + *@size) doesn't overflow, return new size */
80eb18f1b5STejun Heo static inline phys_addr_t memblock_cap_size(phys_addr_t base, phys_addr_t *size)
81eb18f1b5STejun Heo {
82eb18f1b5STejun Heo 	return *size = min(*size, (phys_addr_t)ULLONG_MAX - base);
83eb18f1b5STejun Heo }
84eb18f1b5STejun Heo 
856ed311b2SBenjamin Herrenschmidt /*
866ed311b2SBenjamin Herrenschmidt  * Address comparison utilities
876ed311b2SBenjamin Herrenschmidt  */
8810d06439SYinghai Lu static unsigned long __init_memblock memblock_addrs_overlap(phys_addr_t base1, phys_addr_t size1,
892898cc4cSBenjamin Herrenschmidt 				       phys_addr_t base2, phys_addr_t size2)
9095f72d1eSYinghai Lu {
9195f72d1eSYinghai Lu 	return ((base1 < (base2 + size2)) && (base2 < (base1 + size1)));
9295f72d1eSYinghai Lu }
9395f72d1eSYinghai Lu 
9495cf82ecSTang Chen bool __init_memblock memblock_overlaps_region(struct memblock_type *type,
952d7d3eb2SH Hartley Sweeten 					phys_addr_t base, phys_addr_t size)
966ed311b2SBenjamin Herrenschmidt {
976ed311b2SBenjamin Herrenschmidt 	unsigned long i;
986ed311b2SBenjamin Herrenschmidt 
99f14516fbSAlexander Kuleshov 	for (i = 0; i < type->cnt; i++)
100f14516fbSAlexander Kuleshov 		if (memblock_addrs_overlap(base, size, type->regions[i].base,
101f14516fbSAlexander Kuleshov 					   type->regions[i].size))
1026ed311b2SBenjamin Herrenschmidt 			break;
103c5c5c9d1STang Chen 	return i < type->cnt;
1046ed311b2SBenjamin Herrenschmidt }
1056ed311b2SBenjamin Herrenschmidt 
10679442ed1STang Chen /*
10779442ed1STang Chen  * __memblock_find_range_bottom_up - find free area utility in bottom-up
10879442ed1STang Chen  * @start: start of candidate range
10979442ed1STang Chen  * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
11079442ed1STang Chen  * @size: size of free area to find
11179442ed1STang Chen  * @align: alignment of free area to find
112b1154233SGrygorii Strashko  * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
113fc6daaf9STony Luck  * @flags: pick from blocks based on memory attributes
11479442ed1STang Chen  *
11579442ed1STang Chen  * Utility called from memblock_find_in_range_node(), find free area bottom-up.
11679442ed1STang Chen  *
11779442ed1STang Chen  * RETURNS:
11879442ed1STang Chen  * Found address on success, 0 on failure.
11979442ed1STang Chen  */
12079442ed1STang Chen static phys_addr_t __init_memblock
12179442ed1STang Chen __memblock_find_range_bottom_up(phys_addr_t start, phys_addr_t end,
122fc6daaf9STony Luck 				phys_addr_t size, phys_addr_t align, int nid,
123fc6daaf9STony Luck 				ulong flags)
12479442ed1STang Chen {
12579442ed1STang Chen 	phys_addr_t this_start, this_end, cand;
12679442ed1STang Chen 	u64 i;
12779442ed1STang Chen 
128fc6daaf9STony Luck 	for_each_free_mem_range(i, nid, flags, &this_start, &this_end, NULL) {
12979442ed1STang Chen 		this_start = clamp(this_start, start, end);
13079442ed1STang Chen 		this_end = clamp(this_end, start, end);
13179442ed1STang Chen 
13279442ed1STang Chen 		cand = round_up(this_start, align);
13379442ed1STang Chen 		if (cand < this_end && this_end - cand >= size)
13479442ed1STang Chen 			return cand;
13579442ed1STang Chen 	}
13679442ed1STang Chen 
13779442ed1STang Chen 	return 0;
13879442ed1STang Chen }
13979442ed1STang Chen 
1407bd0b0f0STejun Heo /**
1411402899eSTang Chen  * __memblock_find_range_top_down - find free area utility, in top-down
1421402899eSTang Chen  * @start: start of candidate range
1431402899eSTang Chen  * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
1441402899eSTang Chen  * @size: size of free area to find
1451402899eSTang Chen  * @align: alignment of free area to find
146b1154233SGrygorii Strashko  * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
147fc6daaf9STony Luck  * @flags: pick from blocks based on memory attributes
1481402899eSTang Chen  *
1491402899eSTang Chen  * Utility called from memblock_find_in_range_node(), find free area top-down.
1501402899eSTang Chen  *
1511402899eSTang Chen  * RETURNS:
15279442ed1STang Chen  * Found address on success, 0 on failure.
1531402899eSTang Chen  */
1541402899eSTang Chen static phys_addr_t __init_memblock
1551402899eSTang Chen __memblock_find_range_top_down(phys_addr_t start, phys_addr_t end,
156fc6daaf9STony Luck 			       phys_addr_t size, phys_addr_t align, int nid,
157fc6daaf9STony Luck 			       ulong flags)
1581402899eSTang Chen {
1591402899eSTang Chen 	phys_addr_t this_start, this_end, cand;
1601402899eSTang Chen 	u64 i;
1611402899eSTang Chen 
162fc6daaf9STony Luck 	for_each_free_mem_range_reverse(i, nid, flags, &this_start, &this_end,
163fc6daaf9STony Luck 					NULL) {
1641402899eSTang Chen 		this_start = clamp(this_start, start, end);
1651402899eSTang Chen 		this_end = clamp(this_end, start, end);
1661402899eSTang Chen 
1671402899eSTang Chen 		if (this_end < size)
1681402899eSTang Chen 			continue;
1691402899eSTang Chen 
1701402899eSTang Chen 		cand = round_down(this_end - size, align);
1711402899eSTang Chen 		if (cand >= this_start)
1721402899eSTang Chen 			return cand;
1731402899eSTang Chen 	}
1741402899eSTang Chen 
1751402899eSTang Chen 	return 0;
1761402899eSTang Chen }
1771402899eSTang Chen 
1781402899eSTang Chen /**
1797bd0b0f0STejun Heo  * memblock_find_in_range_node - find free area in given range and node
1807bd0b0f0STejun Heo  * @size: size of free area to find
1817bd0b0f0STejun Heo  * @align: alignment of free area to find
18287029ee9SGrygorii Strashko  * @start: start of candidate range
18387029ee9SGrygorii Strashko  * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
184b1154233SGrygorii Strashko  * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
185fc6daaf9STony Luck  * @flags: pick from blocks based on memory attributes
1867bd0b0f0STejun Heo  *
1877bd0b0f0STejun Heo  * Find @size free area aligned to @align in the specified range and node.
1887bd0b0f0STejun Heo  *
18979442ed1STang Chen  * When allocation direction is bottom-up, the @start should be greater
19079442ed1STang Chen  * than the end of the kernel image. Otherwise, it will be trimmed. The
19179442ed1STang Chen  * reason is that we want the bottom-up allocation just near the kernel
19279442ed1STang Chen  * image so it is highly likely that the allocated memory and the kernel
19379442ed1STang Chen  * will reside in the same node.
19479442ed1STang Chen  *
19579442ed1STang Chen  * If bottom-up allocation failed, will try to allocate memory top-down.
19679442ed1STang Chen  *
1977bd0b0f0STejun Heo  * RETURNS:
19879442ed1STang Chen  * Found address on success, 0 on failure.
1996ed311b2SBenjamin Herrenschmidt  */
20087029ee9SGrygorii Strashko phys_addr_t __init_memblock memblock_find_in_range_node(phys_addr_t size,
20187029ee9SGrygorii Strashko 					phys_addr_t align, phys_addr_t start,
202fc6daaf9STony Luck 					phys_addr_t end, int nid, ulong flags)
203f7210e6cSTang Chen {
2040cfb8f0cSTang Chen 	phys_addr_t kernel_end, ret;
20579442ed1STang Chen 
206f7210e6cSTang Chen 	/* pump up @end */
207f7210e6cSTang Chen 	if (end == MEMBLOCK_ALLOC_ACCESSIBLE)
208f7210e6cSTang Chen 		end = memblock.current_limit;
209f7210e6cSTang Chen 
210f7210e6cSTang Chen 	/* avoid allocating the first page */
211f7210e6cSTang Chen 	start = max_t(phys_addr_t, start, PAGE_SIZE);
212f7210e6cSTang Chen 	end = max(start, end);
21379442ed1STang Chen 	kernel_end = __pa_symbol(_end);
21479442ed1STang Chen 
21579442ed1STang Chen 	/*
21679442ed1STang Chen 	 * try bottom-up allocation only when bottom-up mode
21779442ed1STang Chen 	 * is set and @end is above the kernel image.
21879442ed1STang Chen 	 */
21979442ed1STang Chen 	if (memblock_bottom_up() && end > kernel_end) {
22079442ed1STang Chen 		phys_addr_t bottom_up_start;
22179442ed1STang Chen 
22279442ed1STang Chen 		/* make sure we will allocate above the kernel */
22379442ed1STang Chen 		bottom_up_start = max(start, kernel_end);
22479442ed1STang Chen 
22579442ed1STang Chen 		/* ok, try bottom-up allocation first */
22679442ed1STang Chen 		ret = __memblock_find_range_bottom_up(bottom_up_start, end,
227fc6daaf9STony Luck 						      size, align, nid, flags);
22879442ed1STang Chen 		if (ret)
22979442ed1STang Chen 			return ret;
23079442ed1STang Chen 
23179442ed1STang Chen 		/*
23279442ed1STang Chen 		 * we always limit bottom-up allocation above the kernel,
23379442ed1STang Chen 		 * but top-down allocation doesn't have the limit, so
23479442ed1STang Chen 		 * retrying top-down allocation may succeed when bottom-up
23579442ed1STang Chen 		 * allocation failed.
23679442ed1STang Chen 		 *
23779442ed1STang Chen 		 * bottom-up allocation is expected to be fail very rarely,
23879442ed1STang Chen 		 * so we use WARN_ONCE() here to see the stack trace if
23979442ed1STang Chen 		 * fail happens.
24079442ed1STang Chen 		 */
241756a025fSJoe Perches 		WARN_ONCE(1, "memblock: bottom-up allocation failed, memory hotunplug may be affected\n");
24279442ed1STang Chen 	}
243f7210e6cSTang Chen 
244fc6daaf9STony Luck 	return __memblock_find_range_top_down(start, end, size, align, nid,
245fc6daaf9STony Luck 					      flags);
246f7210e6cSTang Chen }
2476ed311b2SBenjamin Herrenschmidt 
2487bd0b0f0STejun Heo /**
2497bd0b0f0STejun Heo  * memblock_find_in_range - find free area in given range
2507bd0b0f0STejun Heo  * @start: start of candidate range
2517bd0b0f0STejun Heo  * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
2527bd0b0f0STejun Heo  * @size: size of free area to find
2537bd0b0f0STejun Heo  * @align: alignment of free area to find
2547bd0b0f0STejun Heo  *
2557bd0b0f0STejun Heo  * Find @size free area aligned to @align in the specified range.
2567bd0b0f0STejun Heo  *
2577bd0b0f0STejun Heo  * RETURNS:
25879442ed1STang Chen  * Found address on success, 0 on failure.
2597bd0b0f0STejun Heo  */
2607bd0b0f0STejun Heo phys_addr_t __init_memblock memblock_find_in_range(phys_addr_t start,
2617bd0b0f0STejun Heo 					phys_addr_t end, phys_addr_t size,
2627bd0b0f0STejun Heo 					phys_addr_t align)
2637bd0b0f0STejun Heo {
264a3f5bafcSTony Luck 	phys_addr_t ret;
265a3f5bafcSTony Luck 	ulong flags = choose_memblock_flags();
266a3f5bafcSTony Luck 
267a3f5bafcSTony Luck again:
268a3f5bafcSTony Luck 	ret = memblock_find_in_range_node(size, align, start, end,
269a3f5bafcSTony Luck 					    NUMA_NO_NODE, flags);
270a3f5bafcSTony Luck 
271a3f5bafcSTony Luck 	if (!ret && (flags & MEMBLOCK_MIRROR)) {
272a3f5bafcSTony Luck 		pr_warn("Could not allocate %pap bytes of mirrored memory\n",
273a3f5bafcSTony Luck 			&size);
274a3f5bafcSTony Luck 		flags &= ~MEMBLOCK_MIRROR;
275a3f5bafcSTony Luck 		goto again;
276a3f5bafcSTony Luck 	}
277a3f5bafcSTony Luck 
278a3f5bafcSTony Luck 	return ret;
2797bd0b0f0STejun Heo }
2807bd0b0f0STejun Heo 
28110d06439SYinghai Lu static void __init_memblock memblock_remove_region(struct memblock_type *type, unsigned long r)
28295f72d1eSYinghai Lu {
2831440c4e2STejun Heo 	type->total_size -= type->regions[r].size;
2847c0caeb8STejun Heo 	memmove(&type->regions[r], &type->regions[r + 1],
2857c0caeb8STejun Heo 		(type->cnt - (r + 1)) * sizeof(type->regions[r]));
286e3239ff9SBenjamin Herrenschmidt 	type->cnt--;
28795f72d1eSYinghai Lu 
2888f7a6605SBenjamin Herrenschmidt 	/* Special case for empty arrays */
2898f7a6605SBenjamin Herrenschmidt 	if (type->cnt == 0) {
2901440c4e2STejun Heo 		WARN_ON(type->total_size != 0);
2918f7a6605SBenjamin Herrenschmidt 		type->cnt = 1;
2928f7a6605SBenjamin Herrenschmidt 		type->regions[0].base = 0;
2938f7a6605SBenjamin Herrenschmidt 		type->regions[0].size = 0;
29466a20757STang Chen 		type->regions[0].flags = 0;
2957c0caeb8STejun Heo 		memblock_set_region_node(&type->regions[0], MAX_NUMNODES);
2968f7a6605SBenjamin Herrenschmidt 	}
29795f72d1eSYinghai Lu }
29895f72d1eSYinghai Lu 
299354f17e1SPhilipp Hachtmann #ifdef CONFIG_ARCH_DISCARD_MEMBLOCK
300354f17e1SPhilipp Hachtmann 
30129f67386SYinghai Lu phys_addr_t __init_memblock get_allocated_memblock_reserved_regions_info(
30229f67386SYinghai Lu 					phys_addr_t *addr)
30329f67386SYinghai Lu {
30429f67386SYinghai Lu 	if (memblock.reserved.regions == memblock_reserved_init_regions)
30529f67386SYinghai Lu 		return 0;
30629f67386SYinghai Lu 
30729f67386SYinghai Lu 	*addr = __pa(memblock.reserved.regions);
30829f67386SYinghai Lu 
30929f67386SYinghai Lu 	return PAGE_ALIGN(sizeof(struct memblock_region) *
31029f67386SYinghai Lu 			  memblock.reserved.max);
31129f67386SYinghai Lu }
31229f67386SYinghai Lu 
3135e270e25SPhilipp Hachtmann phys_addr_t __init_memblock get_allocated_memblock_memory_regions_info(
3145e270e25SPhilipp Hachtmann 					phys_addr_t *addr)
3155e270e25SPhilipp Hachtmann {
3165e270e25SPhilipp Hachtmann 	if (memblock.memory.regions == memblock_memory_init_regions)
3175e270e25SPhilipp Hachtmann 		return 0;
3185e270e25SPhilipp Hachtmann 
3195e270e25SPhilipp Hachtmann 	*addr = __pa(memblock.memory.regions);
3205e270e25SPhilipp Hachtmann 
3215e270e25SPhilipp Hachtmann 	return PAGE_ALIGN(sizeof(struct memblock_region) *
3225e270e25SPhilipp Hachtmann 			  memblock.memory.max);
3235e270e25SPhilipp Hachtmann }
3245e270e25SPhilipp Hachtmann 
3255e270e25SPhilipp Hachtmann #endif
3265e270e25SPhilipp Hachtmann 
32748c3b583SGreg Pearson /**
32848c3b583SGreg Pearson  * memblock_double_array - double the size of the memblock regions array
32948c3b583SGreg Pearson  * @type: memblock type of the regions array being doubled
33048c3b583SGreg Pearson  * @new_area_start: starting address of memory range to avoid overlap with
33148c3b583SGreg Pearson  * @new_area_size: size of memory range to avoid overlap with
33248c3b583SGreg Pearson  *
33348c3b583SGreg Pearson  * Double the size of the @type regions array. If memblock is being used to
33448c3b583SGreg Pearson  * allocate memory for a new reserved regions array and there is a previously
33548c3b583SGreg Pearson  * allocated memory range [@new_area_start,@new_area_start+@new_area_size]
33648c3b583SGreg Pearson  * waiting to be reserved, ensure the memory used by the new array does
33748c3b583SGreg Pearson  * not overlap.
33848c3b583SGreg Pearson  *
33948c3b583SGreg Pearson  * RETURNS:
34048c3b583SGreg Pearson  * 0 on success, -1 on failure.
34148c3b583SGreg Pearson  */
34248c3b583SGreg Pearson static int __init_memblock memblock_double_array(struct memblock_type *type,
34348c3b583SGreg Pearson 						phys_addr_t new_area_start,
34448c3b583SGreg Pearson 						phys_addr_t new_area_size)
345142b45a7SBenjamin Herrenschmidt {
346142b45a7SBenjamin Herrenschmidt 	struct memblock_region *new_array, *old_array;
34729f67386SYinghai Lu 	phys_addr_t old_alloc_size, new_alloc_size;
348142b45a7SBenjamin Herrenschmidt 	phys_addr_t old_size, new_size, addr;
349142b45a7SBenjamin Herrenschmidt 	int use_slab = slab_is_available();
350181eb394SGavin Shan 	int *in_slab;
351142b45a7SBenjamin Herrenschmidt 
352142b45a7SBenjamin Herrenschmidt 	/* We don't allow resizing until we know about the reserved regions
353142b45a7SBenjamin Herrenschmidt 	 * of memory that aren't suitable for allocation
354142b45a7SBenjamin Herrenschmidt 	 */
355142b45a7SBenjamin Herrenschmidt 	if (!memblock_can_resize)
356142b45a7SBenjamin Herrenschmidt 		return -1;
357142b45a7SBenjamin Herrenschmidt 
358142b45a7SBenjamin Herrenschmidt 	/* Calculate new doubled size */
359142b45a7SBenjamin Herrenschmidt 	old_size = type->max * sizeof(struct memblock_region);
360142b45a7SBenjamin Herrenschmidt 	new_size = old_size << 1;
36129f67386SYinghai Lu 	/*
36229f67386SYinghai Lu 	 * We need to allocated new one align to PAGE_SIZE,
36329f67386SYinghai Lu 	 *   so we can free them completely later.
36429f67386SYinghai Lu 	 */
36529f67386SYinghai Lu 	old_alloc_size = PAGE_ALIGN(old_size);
36629f67386SYinghai Lu 	new_alloc_size = PAGE_ALIGN(new_size);
367142b45a7SBenjamin Herrenschmidt 
368181eb394SGavin Shan 	/* Retrieve the slab flag */
369181eb394SGavin Shan 	if (type == &memblock.memory)
370181eb394SGavin Shan 		in_slab = &memblock_memory_in_slab;
371181eb394SGavin Shan 	else
372181eb394SGavin Shan 		in_slab = &memblock_reserved_in_slab;
373181eb394SGavin Shan 
374142b45a7SBenjamin Herrenschmidt 	/* Try to find some space for it.
375142b45a7SBenjamin Herrenschmidt 	 *
376142b45a7SBenjamin Herrenschmidt 	 * WARNING: We assume that either slab_is_available() and we use it or
377fd07383bSAndrew Morton 	 * we use MEMBLOCK for allocations. That means that this is unsafe to
378fd07383bSAndrew Morton 	 * use when bootmem is currently active (unless bootmem itself is
379fd07383bSAndrew Morton 	 * implemented on top of MEMBLOCK which isn't the case yet)
380142b45a7SBenjamin Herrenschmidt 	 *
381142b45a7SBenjamin Herrenschmidt 	 * This should however not be an issue for now, as we currently only
382fd07383bSAndrew Morton 	 * call into MEMBLOCK while it's still active, or much later when slab
383fd07383bSAndrew Morton 	 * is active for memory hotplug operations
384142b45a7SBenjamin Herrenschmidt 	 */
385142b45a7SBenjamin Herrenschmidt 	if (use_slab) {
386142b45a7SBenjamin Herrenschmidt 		new_array = kmalloc(new_size, GFP_KERNEL);
3871f5026a7STejun Heo 		addr = new_array ? __pa(new_array) : 0;
3884e2f0775SGavin Shan 	} else {
38948c3b583SGreg Pearson 		/* only exclude range when trying to double reserved.regions */
39048c3b583SGreg Pearson 		if (type != &memblock.reserved)
39148c3b583SGreg Pearson 			new_area_start = new_area_size = 0;
39248c3b583SGreg Pearson 
39348c3b583SGreg Pearson 		addr = memblock_find_in_range(new_area_start + new_area_size,
39448c3b583SGreg Pearson 						memblock.current_limit,
39529f67386SYinghai Lu 						new_alloc_size, PAGE_SIZE);
39648c3b583SGreg Pearson 		if (!addr && new_area_size)
39748c3b583SGreg Pearson 			addr = memblock_find_in_range(0,
39848c3b583SGreg Pearson 				min(new_area_start, memblock.current_limit),
39929f67386SYinghai Lu 				new_alloc_size, PAGE_SIZE);
40048c3b583SGreg Pearson 
40115674868SSachin Kamat 		new_array = addr ? __va(addr) : NULL;
4024e2f0775SGavin Shan 	}
4031f5026a7STejun Heo 	if (!addr) {
404142b45a7SBenjamin Herrenschmidt 		pr_err("memblock: Failed to double %s array from %ld to %ld entries !\n",
405142b45a7SBenjamin Herrenschmidt 		       memblock_type_name(type), type->max, type->max * 2);
406142b45a7SBenjamin Herrenschmidt 		return -1;
407142b45a7SBenjamin Herrenschmidt 	}
408142b45a7SBenjamin Herrenschmidt 
409fd07383bSAndrew Morton 	memblock_dbg("memblock: %s is doubled to %ld at [%#010llx-%#010llx]",
410fd07383bSAndrew Morton 			memblock_type_name(type), type->max * 2, (u64)addr,
411fd07383bSAndrew Morton 			(u64)addr + new_size - 1);
412ea9e4376SYinghai Lu 
413fd07383bSAndrew Morton 	/*
414fd07383bSAndrew Morton 	 * Found space, we now need to move the array over before we add the
415fd07383bSAndrew Morton 	 * reserved region since it may be our reserved array itself that is
416fd07383bSAndrew Morton 	 * full.
417142b45a7SBenjamin Herrenschmidt 	 */
418142b45a7SBenjamin Herrenschmidt 	memcpy(new_array, type->regions, old_size);
419142b45a7SBenjamin Herrenschmidt 	memset(new_array + type->max, 0, old_size);
420142b45a7SBenjamin Herrenschmidt 	old_array = type->regions;
421142b45a7SBenjamin Herrenschmidt 	type->regions = new_array;
422142b45a7SBenjamin Herrenschmidt 	type->max <<= 1;
423142b45a7SBenjamin Herrenschmidt 
424fd07383bSAndrew Morton 	/* Free old array. We needn't free it if the array is the static one */
425181eb394SGavin Shan 	if (*in_slab)
426181eb394SGavin Shan 		kfree(old_array);
427181eb394SGavin Shan 	else if (old_array != memblock_memory_init_regions &&
428142b45a7SBenjamin Herrenschmidt 		 old_array != memblock_reserved_init_regions)
42929f67386SYinghai Lu 		memblock_free(__pa(old_array), old_alloc_size);
430142b45a7SBenjamin Herrenschmidt 
431fd07383bSAndrew Morton 	/*
432fd07383bSAndrew Morton 	 * Reserve the new array if that comes from the memblock.  Otherwise, we
433fd07383bSAndrew Morton 	 * needn't do it
434181eb394SGavin Shan 	 */
435181eb394SGavin Shan 	if (!use_slab)
43629f67386SYinghai Lu 		BUG_ON(memblock_reserve(addr, new_alloc_size));
437181eb394SGavin Shan 
438181eb394SGavin Shan 	/* Update slab flag */
439181eb394SGavin Shan 	*in_slab = use_slab;
440181eb394SGavin Shan 
441142b45a7SBenjamin Herrenschmidt 	return 0;
442142b45a7SBenjamin Herrenschmidt }
443142b45a7SBenjamin Herrenschmidt 
444784656f9STejun Heo /**
445784656f9STejun Heo  * memblock_merge_regions - merge neighboring compatible regions
446784656f9STejun Heo  * @type: memblock type to scan
447784656f9STejun Heo  *
448784656f9STejun Heo  * Scan @type and merge neighboring compatible regions.
449784656f9STejun Heo  */
450784656f9STejun Heo static void __init_memblock memblock_merge_regions(struct memblock_type *type)
451784656f9STejun Heo {
452784656f9STejun Heo 	int i = 0;
453784656f9STejun Heo 
454784656f9STejun Heo 	/* cnt never goes below 1 */
455784656f9STejun Heo 	while (i < type->cnt - 1) {
456784656f9STejun Heo 		struct memblock_region *this = &type->regions[i];
457784656f9STejun Heo 		struct memblock_region *next = &type->regions[i + 1];
458784656f9STejun Heo 
4597c0caeb8STejun Heo 		if (this->base + this->size != next->base ||
4607c0caeb8STejun Heo 		    memblock_get_region_node(this) !=
46166a20757STang Chen 		    memblock_get_region_node(next) ||
46266a20757STang Chen 		    this->flags != next->flags) {
463784656f9STejun Heo 			BUG_ON(this->base + this->size > next->base);
464784656f9STejun Heo 			i++;
465784656f9STejun Heo 			continue;
466784656f9STejun Heo 		}
467784656f9STejun Heo 
468784656f9STejun Heo 		this->size += next->size;
469c0232ae8SLin Feng 		/* move forward from next + 1, index of which is i + 2 */
470c0232ae8SLin Feng 		memmove(next, next + 1, (type->cnt - (i + 2)) * sizeof(*next));
471784656f9STejun Heo 		type->cnt--;
472784656f9STejun Heo 	}
473784656f9STejun Heo }
474784656f9STejun Heo 
475784656f9STejun Heo /**
476784656f9STejun Heo  * memblock_insert_region - insert new memblock region
477784656f9STejun Heo  * @type:	memblock type to insert into
478784656f9STejun Heo  * @idx:	index for the insertion point
479784656f9STejun Heo  * @base:	base address of the new region
480784656f9STejun Heo  * @size:	size of the new region
481209ff86dSTang Chen  * @nid:	node id of the new region
48266a20757STang Chen  * @flags:	flags of the new region
483784656f9STejun Heo  *
484784656f9STejun Heo  * Insert new memblock region [@base,@base+@size) into @type at @idx.
485784656f9STejun Heo  * @type must already have extra room to accomodate the new region.
486784656f9STejun Heo  */
487784656f9STejun Heo static void __init_memblock memblock_insert_region(struct memblock_type *type,
488784656f9STejun Heo 						   int idx, phys_addr_t base,
48966a20757STang Chen 						   phys_addr_t size,
49066a20757STang Chen 						   int nid, unsigned long flags)
491784656f9STejun Heo {
492784656f9STejun Heo 	struct memblock_region *rgn = &type->regions[idx];
493784656f9STejun Heo 
494784656f9STejun Heo 	BUG_ON(type->cnt >= type->max);
495784656f9STejun Heo 	memmove(rgn + 1, rgn, (type->cnt - idx) * sizeof(*rgn));
496784656f9STejun Heo 	rgn->base = base;
497784656f9STejun Heo 	rgn->size = size;
49866a20757STang Chen 	rgn->flags = flags;
4997c0caeb8STejun Heo 	memblock_set_region_node(rgn, nid);
500784656f9STejun Heo 	type->cnt++;
5011440c4e2STejun Heo 	type->total_size += size;
502784656f9STejun Heo }
503784656f9STejun Heo 
504784656f9STejun Heo /**
505f1af9d3aSPhilipp Hachtmann  * memblock_add_range - add new memblock region
506784656f9STejun Heo  * @type: memblock type to add new region into
507784656f9STejun Heo  * @base: base address of the new region
508784656f9STejun Heo  * @size: size of the new region
5097fb0bc3fSTejun Heo  * @nid: nid of the new region
51066a20757STang Chen  * @flags: flags of the new region
511784656f9STejun Heo  *
512784656f9STejun Heo  * Add new memblock region [@base,@base+@size) into @type.  The new region
513784656f9STejun Heo  * is allowed to overlap with existing ones - overlaps don't affect already
514784656f9STejun Heo  * existing regions.  @type is guaranteed to be minimal (all neighbouring
515784656f9STejun Heo  * compatible regions are merged) after the addition.
516784656f9STejun Heo  *
517784656f9STejun Heo  * RETURNS:
518784656f9STejun Heo  * 0 on success, -errno on failure.
519784656f9STejun Heo  */
520f1af9d3aSPhilipp Hachtmann int __init_memblock memblock_add_range(struct memblock_type *type,
52166a20757STang Chen 				phys_addr_t base, phys_addr_t size,
52266a20757STang Chen 				int nid, unsigned long flags)
52395f72d1eSYinghai Lu {
524784656f9STejun Heo 	bool insert = false;
525eb18f1b5STejun Heo 	phys_addr_t obase = base;
526eb18f1b5STejun Heo 	phys_addr_t end = base + memblock_cap_size(base, &size);
5278c9c1701SAlexander Kuleshov 	int idx, nr_new;
5288c9c1701SAlexander Kuleshov 	struct memblock_region *rgn;
52995f72d1eSYinghai Lu 
530b3dc627cSTejun Heo 	if (!size)
531b3dc627cSTejun Heo 		return 0;
532b3dc627cSTejun Heo 
533784656f9STejun Heo 	/* special case for empty array */
534784656f9STejun Heo 	if (type->regions[0].size == 0) {
5351440c4e2STejun Heo 		WARN_ON(type->cnt != 1 || type->total_size);
536784656f9STejun Heo 		type->regions[0].base = base;
537784656f9STejun Heo 		type->regions[0].size = size;
53866a20757STang Chen 		type->regions[0].flags = flags;
5397fb0bc3fSTejun Heo 		memblock_set_region_node(&type->regions[0], nid);
5401440c4e2STejun Heo 		type->total_size = size;
541784656f9STejun Heo 		return 0;
542784656f9STejun Heo 	}
543784656f9STejun Heo repeat:
544784656f9STejun Heo 	/*
545784656f9STejun Heo 	 * The following is executed twice.  Once with %false @insert and
546784656f9STejun Heo 	 * then with %true.  The first counts the number of regions needed
547784656f9STejun Heo 	 * to accomodate the new area.  The second actually inserts them.
548784656f9STejun Heo 	 */
549784656f9STejun Heo 	base = obase;
550784656f9STejun Heo 	nr_new = 0;
551784656f9STejun Heo 
5528c9c1701SAlexander Kuleshov 	for_each_memblock_type(type, rgn) {
553784656f9STejun Heo 		phys_addr_t rbase = rgn->base;
554784656f9STejun Heo 		phys_addr_t rend = rbase + rgn->size;
5558f7a6605SBenjamin Herrenschmidt 
556784656f9STejun Heo 		if (rbase >= end)
5578f7a6605SBenjamin Herrenschmidt 			break;
558784656f9STejun Heo 		if (rend <= base)
559784656f9STejun Heo 			continue;
560784656f9STejun Heo 		/*
561784656f9STejun Heo 		 * @rgn overlaps.  If it separates the lower part of new
562784656f9STejun Heo 		 * area, insert that portion.
5638f7a6605SBenjamin Herrenschmidt 		 */
564784656f9STejun Heo 		if (rbase > base) {
565c0a29498SWei Yang #ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
566c0a29498SWei Yang 			WARN_ON(nid != memblock_get_region_node(rgn));
567c0a29498SWei Yang #endif
5684fcab5f4SWei Yang 			WARN_ON(flags != rgn->flags);
569784656f9STejun Heo 			nr_new++;
570784656f9STejun Heo 			if (insert)
5718c9c1701SAlexander Kuleshov 				memblock_insert_region(type, idx++, base,
57266a20757STang Chen 						       rbase - base, nid,
57366a20757STang Chen 						       flags);
574784656f9STejun Heo 		}
575784656f9STejun Heo 		/* area below @rend is dealt with, forget about it */
576784656f9STejun Heo 		base = min(rend, end);
5778f7a6605SBenjamin Herrenschmidt 	}
5788f7a6605SBenjamin Herrenschmidt 
579784656f9STejun Heo 	/* insert the remaining portion */
580784656f9STejun Heo 	if (base < end) {
581784656f9STejun Heo 		nr_new++;
582784656f9STejun Heo 		if (insert)
5838c9c1701SAlexander Kuleshov 			memblock_insert_region(type, idx, base, end - base,
58466a20757STang Chen 					       nid, flags);
5858f7a6605SBenjamin Herrenschmidt 	}
5868f7a6605SBenjamin Herrenschmidt 
587ef3cc4dbSnimisolo 	if (!nr_new)
588ef3cc4dbSnimisolo 		return 0;
589ef3cc4dbSnimisolo 
590784656f9STejun Heo 	/*
591784656f9STejun Heo 	 * If this was the first round, resize array and repeat for actual
592784656f9STejun Heo 	 * insertions; otherwise, merge and return.
5938f7a6605SBenjamin Herrenschmidt 	 */
594784656f9STejun Heo 	if (!insert) {
595784656f9STejun Heo 		while (type->cnt + nr_new > type->max)
59648c3b583SGreg Pearson 			if (memblock_double_array(type, obase, size) < 0)
597784656f9STejun Heo 				return -ENOMEM;
598784656f9STejun Heo 		insert = true;
599784656f9STejun Heo 		goto repeat;
60095f72d1eSYinghai Lu 	} else {
601784656f9STejun Heo 		memblock_merge_regions(type);
60295f72d1eSYinghai Lu 		return 0;
60395f72d1eSYinghai Lu 	}
604784656f9STejun Heo }
60595f72d1eSYinghai Lu 
6067fb0bc3fSTejun Heo int __init_memblock memblock_add_node(phys_addr_t base, phys_addr_t size,
6077fb0bc3fSTejun Heo 				       int nid)
6087fb0bc3fSTejun Heo {
609f1af9d3aSPhilipp Hachtmann 	return memblock_add_range(&memblock.memory, base, size, nid, 0);
6107fb0bc3fSTejun Heo }
6117fb0bc3fSTejun Heo 
612f705ac4bSAlexander Kuleshov int __init_memblock memblock_add(phys_addr_t base, phys_addr_t size)
6136a4055bcSAlexander Kuleshov {
6146a4055bcSAlexander Kuleshov 	memblock_dbg("memblock_add: [%#016llx-%#016llx] flags %#02lx %pF\n",
6156a4055bcSAlexander Kuleshov 		     (unsigned long long)base,
6166a4055bcSAlexander Kuleshov 		     (unsigned long long)base + size - 1,
617f705ac4bSAlexander Kuleshov 		     0UL, (void *)_RET_IP_);
6186a4055bcSAlexander Kuleshov 
619f705ac4bSAlexander Kuleshov 	return memblock_add_range(&memblock.memory, base, size, MAX_NUMNODES, 0);
62095f72d1eSYinghai Lu }
62195f72d1eSYinghai Lu 
6226a9ceb31STejun Heo /**
6236a9ceb31STejun Heo  * memblock_isolate_range - isolate given range into disjoint memblocks
6246a9ceb31STejun Heo  * @type: memblock type to isolate range for
6256a9ceb31STejun Heo  * @base: base of range to isolate
6266a9ceb31STejun Heo  * @size: size of range to isolate
6276a9ceb31STejun Heo  * @start_rgn: out parameter for the start of isolated region
6286a9ceb31STejun Heo  * @end_rgn: out parameter for the end of isolated region
6296a9ceb31STejun Heo  *
6306a9ceb31STejun Heo  * Walk @type and ensure that regions don't cross the boundaries defined by
6316a9ceb31STejun Heo  * [@base,@base+@size).  Crossing regions are split at the boundaries,
6326a9ceb31STejun Heo  * which may create at most two more regions.  The index of the first
6336a9ceb31STejun Heo  * region inside the range is returned in *@start_rgn and end in *@end_rgn.
6346a9ceb31STejun Heo  *
6356a9ceb31STejun Heo  * RETURNS:
6366a9ceb31STejun Heo  * 0 on success, -errno on failure.
6376a9ceb31STejun Heo  */
6386a9ceb31STejun Heo static int __init_memblock memblock_isolate_range(struct memblock_type *type,
6396a9ceb31STejun Heo 					phys_addr_t base, phys_addr_t size,
6406a9ceb31STejun Heo 					int *start_rgn, int *end_rgn)
6416a9ceb31STejun Heo {
642eb18f1b5STejun Heo 	phys_addr_t end = base + memblock_cap_size(base, &size);
6438c9c1701SAlexander Kuleshov 	int idx;
6448c9c1701SAlexander Kuleshov 	struct memblock_region *rgn;
6456a9ceb31STejun Heo 
6466a9ceb31STejun Heo 	*start_rgn = *end_rgn = 0;
6476a9ceb31STejun Heo 
648b3dc627cSTejun Heo 	if (!size)
649b3dc627cSTejun Heo 		return 0;
650b3dc627cSTejun Heo 
6516a9ceb31STejun Heo 	/* we'll create at most two more regions */
6526a9ceb31STejun Heo 	while (type->cnt + 2 > type->max)
65348c3b583SGreg Pearson 		if (memblock_double_array(type, base, size) < 0)
6546a9ceb31STejun Heo 			return -ENOMEM;
6556a9ceb31STejun Heo 
6568c9c1701SAlexander Kuleshov 	for_each_memblock_type(type, rgn) {
6576a9ceb31STejun Heo 		phys_addr_t rbase = rgn->base;
6586a9ceb31STejun Heo 		phys_addr_t rend = rbase + rgn->size;
6596a9ceb31STejun Heo 
6606a9ceb31STejun Heo 		if (rbase >= end)
6616a9ceb31STejun Heo 			break;
6626a9ceb31STejun Heo 		if (rend <= base)
6636a9ceb31STejun Heo 			continue;
6646a9ceb31STejun Heo 
6656a9ceb31STejun Heo 		if (rbase < base) {
6666a9ceb31STejun Heo 			/*
6676a9ceb31STejun Heo 			 * @rgn intersects from below.  Split and continue
6686a9ceb31STejun Heo 			 * to process the next region - the new top half.
6696a9ceb31STejun Heo 			 */
6706a9ceb31STejun Heo 			rgn->base = base;
6711440c4e2STejun Heo 			rgn->size -= base - rbase;
6721440c4e2STejun Heo 			type->total_size -= base - rbase;
6738c9c1701SAlexander Kuleshov 			memblock_insert_region(type, idx, rbase, base - rbase,
67466a20757STang Chen 					       memblock_get_region_node(rgn),
67566a20757STang Chen 					       rgn->flags);
6766a9ceb31STejun Heo 		} else if (rend > end) {
6776a9ceb31STejun Heo 			/*
6786a9ceb31STejun Heo 			 * @rgn intersects from above.  Split and redo the
6796a9ceb31STejun Heo 			 * current region - the new bottom half.
6806a9ceb31STejun Heo 			 */
6816a9ceb31STejun Heo 			rgn->base = end;
6821440c4e2STejun Heo 			rgn->size -= end - rbase;
6831440c4e2STejun Heo 			type->total_size -= end - rbase;
6848c9c1701SAlexander Kuleshov 			memblock_insert_region(type, idx--, rbase, end - rbase,
68566a20757STang Chen 					       memblock_get_region_node(rgn),
68666a20757STang Chen 					       rgn->flags);
6876a9ceb31STejun Heo 		} else {
6886a9ceb31STejun Heo 			/* @rgn is fully contained, record it */
6896a9ceb31STejun Heo 			if (!*end_rgn)
6908c9c1701SAlexander Kuleshov 				*start_rgn = idx;
6918c9c1701SAlexander Kuleshov 			*end_rgn = idx + 1;
6926a9ceb31STejun Heo 		}
6936a9ceb31STejun Heo 	}
6946a9ceb31STejun Heo 
6956a9ceb31STejun Heo 	return 0;
6966a9ceb31STejun Heo }
6976a9ceb31STejun Heo 
69835bd16a2SAlexander Kuleshov static int __init_memblock memblock_remove_range(struct memblock_type *type,
6998f7a6605SBenjamin Herrenschmidt 					  phys_addr_t base, phys_addr_t size)
70095f72d1eSYinghai Lu {
70171936180STejun Heo 	int start_rgn, end_rgn;
70271936180STejun Heo 	int i, ret;
70395f72d1eSYinghai Lu 
70471936180STejun Heo 	ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
70571936180STejun Heo 	if (ret)
70671936180STejun Heo 		return ret;
70795f72d1eSYinghai Lu 
70871936180STejun Heo 	for (i = end_rgn - 1; i >= start_rgn; i--)
70971936180STejun Heo 		memblock_remove_region(type, i);
71095f72d1eSYinghai Lu 	return 0;
71195f72d1eSYinghai Lu }
71295f72d1eSYinghai Lu 
713581adcbeSTejun Heo int __init_memblock memblock_remove(phys_addr_t base, phys_addr_t size)
71495f72d1eSYinghai Lu {
715f1af9d3aSPhilipp Hachtmann 	return memblock_remove_range(&memblock.memory, base, size);
71695f72d1eSYinghai Lu }
71795f72d1eSYinghai Lu 
718f1af9d3aSPhilipp Hachtmann 
719581adcbeSTejun Heo int __init_memblock memblock_free(phys_addr_t base, phys_addr_t size)
72095f72d1eSYinghai Lu {
72124aa0788STejun Heo 	memblock_dbg("   memblock_free: [%#016llx-%#016llx] %pF\n",
722a150439cSH. Peter Anvin 		     (unsigned long long)base,
723931d13f5SGrygorii Strashko 		     (unsigned long long)base + size - 1,
724a150439cSH. Peter Anvin 		     (void *)_RET_IP_);
72524aa0788STejun Heo 
726aedf95eaSCatalin Marinas 	kmemleak_free_part(__va(base), size);
727f1af9d3aSPhilipp Hachtmann 	return memblock_remove_range(&memblock.reserved, base, size);
72895f72d1eSYinghai Lu }
72995f72d1eSYinghai Lu 
730f705ac4bSAlexander Kuleshov int __init_memblock memblock_reserve(phys_addr_t base, phys_addr_t size)
73195f72d1eSYinghai Lu {
73266a20757STang Chen 	memblock_dbg("memblock_reserve: [%#016llx-%#016llx] flags %#02lx %pF\n",
733a150439cSH. Peter Anvin 		     (unsigned long long)base,
734931d13f5SGrygorii Strashko 		     (unsigned long long)base + size - 1,
735f705ac4bSAlexander Kuleshov 		     0UL, (void *)_RET_IP_);
73695f72d1eSYinghai Lu 
737f705ac4bSAlexander Kuleshov 	return memblock_add_range(&memblock.reserved, base, size, MAX_NUMNODES, 0);
73895f72d1eSYinghai Lu }
73995f72d1eSYinghai Lu 
74035fd0808STejun Heo /**
74166b16edfSTang Chen  *
7424308ce17STony Luck  * This function isolates region [@base, @base + @size), and sets/clears flag
74366b16edfSTang Chen  *
744c1153931SAlexander Kuleshov  * Return 0 on success, -errno on failure.
74566b16edfSTang Chen  */
7464308ce17STony Luck static int __init_memblock memblock_setclr_flag(phys_addr_t base,
7474308ce17STony Luck 				phys_addr_t size, int set, int flag)
74866b16edfSTang Chen {
74966b16edfSTang Chen 	struct memblock_type *type = &memblock.memory;
75066b16edfSTang Chen 	int i, ret, start_rgn, end_rgn;
75166b16edfSTang Chen 
75266b16edfSTang Chen 	ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
75366b16edfSTang Chen 	if (ret)
75466b16edfSTang Chen 		return ret;
75566b16edfSTang Chen 
75666b16edfSTang Chen 	for (i = start_rgn; i < end_rgn; i++)
7574308ce17STony Luck 		if (set)
7584308ce17STony Luck 			memblock_set_region_flags(&type->regions[i], flag);
7594308ce17STony Luck 		else
7604308ce17STony Luck 			memblock_clear_region_flags(&type->regions[i], flag);
76166b16edfSTang Chen 
76266b16edfSTang Chen 	memblock_merge_regions(type);
76366b16edfSTang Chen 	return 0;
76466b16edfSTang Chen }
76566b16edfSTang Chen 
76666b16edfSTang Chen /**
7674308ce17STony Luck  * memblock_mark_hotplug - Mark hotpluggable memory with flag MEMBLOCK_HOTPLUG.
7684308ce17STony Luck  * @base: the base phys addr of the region
7694308ce17STony Luck  * @size: the size of the region
7704308ce17STony Luck  *
771c1153931SAlexander Kuleshov  * Return 0 on success, -errno on failure.
7724308ce17STony Luck  */
7734308ce17STony Luck int __init_memblock memblock_mark_hotplug(phys_addr_t base, phys_addr_t size)
7744308ce17STony Luck {
7754308ce17STony Luck 	return memblock_setclr_flag(base, size, 1, MEMBLOCK_HOTPLUG);
7764308ce17STony Luck }
7774308ce17STony Luck 
7784308ce17STony Luck /**
77966b16edfSTang Chen  * memblock_clear_hotplug - Clear flag MEMBLOCK_HOTPLUG for a specified region.
78066b16edfSTang Chen  * @base: the base phys addr of the region
78166b16edfSTang Chen  * @size: the size of the region
78266b16edfSTang Chen  *
783c1153931SAlexander Kuleshov  * Return 0 on success, -errno on failure.
78466b16edfSTang Chen  */
78566b16edfSTang Chen int __init_memblock memblock_clear_hotplug(phys_addr_t base, phys_addr_t size)
78666b16edfSTang Chen {
7874308ce17STony Luck 	return memblock_setclr_flag(base, size, 0, MEMBLOCK_HOTPLUG);
78866b16edfSTang Chen }
78966b16edfSTang Chen 
79066b16edfSTang Chen /**
791a3f5bafcSTony Luck  * memblock_mark_mirror - Mark mirrored memory with flag MEMBLOCK_MIRROR.
792a3f5bafcSTony Luck  * @base: the base phys addr of the region
793a3f5bafcSTony Luck  * @size: the size of the region
794a3f5bafcSTony Luck  *
795c1153931SAlexander Kuleshov  * Return 0 on success, -errno on failure.
796a3f5bafcSTony Luck  */
797a3f5bafcSTony Luck int __init_memblock memblock_mark_mirror(phys_addr_t base, phys_addr_t size)
798a3f5bafcSTony Luck {
799a3f5bafcSTony Luck 	system_has_some_mirror = true;
800a3f5bafcSTony Luck 
801a3f5bafcSTony Luck 	return memblock_setclr_flag(base, size, 1, MEMBLOCK_MIRROR);
802a3f5bafcSTony Luck }
803a3f5bafcSTony Luck 
804bf3d3cc5SArd Biesheuvel /**
805bf3d3cc5SArd Biesheuvel  * memblock_mark_nomap - Mark a memory region with flag MEMBLOCK_NOMAP.
806bf3d3cc5SArd Biesheuvel  * @base: the base phys addr of the region
807bf3d3cc5SArd Biesheuvel  * @size: the size of the region
808bf3d3cc5SArd Biesheuvel  *
809bf3d3cc5SArd Biesheuvel  * Return 0 on success, -errno on failure.
810bf3d3cc5SArd Biesheuvel  */
811bf3d3cc5SArd Biesheuvel int __init_memblock memblock_mark_nomap(phys_addr_t base, phys_addr_t size)
812bf3d3cc5SArd Biesheuvel {
813bf3d3cc5SArd Biesheuvel 	return memblock_setclr_flag(base, size, 1, MEMBLOCK_NOMAP);
814bf3d3cc5SArd Biesheuvel }
815a3f5bafcSTony Luck 
816a3f5bafcSTony Luck /**
8178e7a7f86SRobin Holt  * __next_reserved_mem_region - next function for for_each_reserved_region()
8188e7a7f86SRobin Holt  * @idx: pointer to u64 loop variable
8198e7a7f86SRobin Holt  * @out_start: ptr to phys_addr_t for start address of the region, can be %NULL
8208e7a7f86SRobin Holt  * @out_end: ptr to phys_addr_t for end address of the region, can be %NULL
8218e7a7f86SRobin Holt  *
8228e7a7f86SRobin Holt  * Iterate over all reserved memory regions.
8238e7a7f86SRobin Holt  */
8248e7a7f86SRobin Holt void __init_memblock __next_reserved_mem_region(u64 *idx,
8258e7a7f86SRobin Holt 					   phys_addr_t *out_start,
8268e7a7f86SRobin Holt 					   phys_addr_t *out_end)
8278e7a7f86SRobin Holt {
828567d117bSAlexander Kuleshov 	struct memblock_type *type = &memblock.reserved;
8298e7a7f86SRobin Holt 
830cd33a76bSRichard Leitner 	if (*idx < type->cnt) {
831567d117bSAlexander Kuleshov 		struct memblock_region *r = &type->regions[*idx];
8328e7a7f86SRobin Holt 		phys_addr_t base = r->base;
8338e7a7f86SRobin Holt 		phys_addr_t size = r->size;
8348e7a7f86SRobin Holt 
8358e7a7f86SRobin Holt 		if (out_start)
8368e7a7f86SRobin Holt 			*out_start = base;
8378e7a7f86SRobin Holt 		if (out_end)
8388e7a7f86SRobin Holt 			*out_end = base + size - 1;
8398e7a7f86SRobin Holt 
8408e7a7f86SRobin Holt 		*idx += 1;
8418e7a7f86SRobin Holt 		return;
8428e7a7f86SRobin Holt 	}
8438e7a7f86SRobin Holt 
8448e7a7f86SRobin Holt 	/* signal end of iteration */
8458e7a7f86SRobin Holt 	*idx = ULLONG_MAX;
8468e7a7f86SRobin Holt }
8478e7a7f86SRobin Holt 
8488e7a7f86SRobin Holt /**
849f1af9d3aSPhilipp Hachtmann  * __next__mem_range - next function for for_each_free_mem_range() etc.
85035fd0808STejun Heo  * @idx: pointer to u64 loop variable
851b1154233SGrygorii Strashko  * @nid: node selector, %NUMA_NO_NODE for all nodes
852fc6daaf9STony Luck  * @flags: pick from blocks based on memory attributes
853f1af9d3aSPhilipp Hachtmann  * @type_a: pointer to memblock_type from where the range is taken
854f1af9d3aSPhilipp Hachtmann  * @type_b: pointer to memblock_type which excludes memory from being taken
855dad7557eSWanpeng Li  * @out_start: ptr to phys_addr_t for start address of the range, can be %NULL
856dad7557eSWanpeng Li  * @out_end: ptr to phys_addr_t for end address of the range, can be %NULL
857dad7557eSWanpeng Li  * @out_nid: ptr to int for nid of the range, can be %NULL
85835fd0808STejun Heo  *
859f1af9d3aSPhilipp Hachtmann  * Find the first area from *@idx which matches @nid, fill the out
86035fd0808STejun Heo  * parameters, and update *@idx for the next iteration.  The lower 32bit of
861f1af9d3aSPhilipp Hachtmann  * *@idx contains index into type_a and the upper 32bit indexes the
862f1af9d3aSPhilipp Hachtmann  * areas before each region in type_b.	For example, if type_b regions
86335fd0808STejun Heo  * look like the following,
86435fd0808STejun Heo  *
86535fd0808STejun Heo  *	0:[0-16), 1:[32-48), 2:[128-130)
86635fd0808STejun Heo  *
86735fd0808STejun Heo  * The upper 32bit indexes the following regions.
86835fd0808STejun Heo  *
86935fd0808STejun Heo  *	0:[0-0), 1:[16-32), 2:[48-128), 3:[130-MAX)
87035fd0808STejun Heo  *
87135fd0808STejun Heo  * As both region arrays are sorted, the function advances the two indices
87235fd0808STejun Heo  * in lockstep and returns each intersection.
87335fd0808STejun Heo  */
874fc6daaf9STony Luck void __init_memblock __next_mem_range(u64 *idx, int nid, ulong flags,
875f1af9d3aSPhilipp Hachtmann 				      struct memblock_type *type_a,
876f1af9d3aSPhilipp Hachtmann 				      struct memblock_type *type_b,
87735fd0808STejun Heo 				      phys_addr_t *out_start,
87835fd0808STejun Heo 				      phys_addr_t *out_end, int *out_nid)
87935fd0808STejun Heo {
880f1af9d3aSPhilipp Hachtmann 	int idx_a = *idx & 0xffffffff;
881f1af9d3aSPhilipp Hachtmann 	int idx_b = *idx >> 32;
882b1154233SGrygorii Strashko 
883f1af9d3aSPhilipp Hachtmann 	if (WARN_ONCE(nid == MAX_NUMNODES,
884f1af9d3aSPhilipp Hachtmann 	"Usage of MAX_NUMNODES is deprecated. Use NUMA_NO_NODE instead\n"))
885560dca27SGrygorii Strashko 		nid = NUMA_NO_NODE;
88635fd0808STejun Heo 
887f1af9d3aSPhilipp Hachtmann 	for (; idx_a < type_a->cnt; idx_a++) {
888f1af9d3aSPhilipp Hachtmann 		struct memblock_region *m = &type_a->regions[idx_a];
889f1af9d3aSPhilipp Hachtmann 
89035fd0808STejun Heo 		phys_addr_t m_start = m->base;
89135fd0808STejun Heo 		phys_addr_t m_end = m->base + m->size;
892f1af9d3aSPhilipp Hachtmann 		int	    m_nid = memblock_get_region_node(m);
89335fd0808STejun Heo 
89435fd0808STejun Heo 		/* only memory regions are associated with nodes, check it */
895f1af9d3aSPhilipp Hachtmann 		if (nid != NUMA_NO_NODE && nid != m_nid)
89635fd0808STejun Heo 			continue;
89735fd0808STejun Heo 
8980a313a99SXishi Qiu 		/* skip hotpluggable memory regions if needed */
8990a313a99SXishi Qiu 		if (movable_node_is_enabled() && memblock_is_hotpluggable(m))
9000a313a99SXishi Qiu 			continue;
9010a313a99SXishi Qiu 
902a3f5bafcSTony Luck 		/* if we want mirror memory skip non-mirror memory regions */
903a3f5bafcSTony Luck 		if ((flags & MEMBLOCK_MIRROR) && !memblock_is_mirror(m))
904a3f5bafcSTony Luck 			continue;
905a3f5bafcSTony Luck 
906bf3d3cc5SArd Biesheuvel 		/* skip nomap memory unless we were asked for it explicitly */
907bf3d3cc5SArd Biesheuvel 		if (!(flags & MEMBLOCK_NOMAP) && memblock_is_nomap(m))
908bf3d3cc5SArd Biesheuvel 			continue;
909bf3d3cc5SArd Biesheuvel 
910f1af9d3aSPhilipp Hachtmann 		if (!type_b) {
911f1af9d3aSPhilipp Hachtmann 			if (out_start)
912f1af9d3aSPhilipp Hachtmann 				*out_start = m_start;
913f1af9d3aSPhilipp Hachtmann 			if (out_end)
914f1af9d3aSPhilipp Hachtmann 				*out_end = m_end;
915f1af9d3aSPhilipp Hachtmann 			if (out_nid)
916f1af9d3aSPhilipp Hachtmann 				*out_nid = m_nid;
917f1af9d3aSPhilipp Hachtmann 			idx_a++;
918f1af9d3aSPhilipp Hachtmann 			*idx = (u32)idx_a | (u64)idx_b << 32;
919f1af9d3aSPhilipp Hachtmann 			return;
920f1af9d3aSPhilipp Hachtmann 		}
92135fd0808STejun Heo 
922f1af9d3aSPhilipp Hachtmann 		/* scan areas before each reservation */
923f1af9d3aSPhilipp Hachtmann 		for (; idx_b < type_b->cnt + 1; idx_b++) {
924f1af9d3aSPhilipp Hachtmann 			struct memblock_region *r;
925f1af9d3aSPhilipp Hachtmann 			phys_addr_t r_start;
926f1af9d3aSPhilipp Hachtmann 			phys_addr_t r_end;
927f1af9d3aSPhilipp Hachtmann 
928f1af9d3aSPhilipp Hachtmann 			r = &type_b->regions[idx_b];
929f1af9d3aSPhilipp Hachtmann 			r_start = idx_b ? r[-1].base + r[-1].size : 0;
930f1af9d3aSPhilipp Hachtmann 			r_end = idx_b < type_b->cnt ?
931f1af9d3aSPhilipp Hachtmann 				r->base : ULLONG_MAX;
932f1af9d3aSPhilipp Hachtmann 
933f1af9d3aSPhilipp Hachtmann 			/*
934f1af9d3aSPhilipp Hachtmann 			 * if idx_b advanced past idx_a,
935f1af9d3aSPhilipp Hachtmann 			 * break out to advance idx_a
936f1af9d3aSPhilipp Hachtmann 			 */
93735fd0808STejun Heo 			if (r_start >= m_end)
93835fd0808STejun Heo 				break;
93935fd0808STejun Heo 			/* if the two regions intersect, we're done */
94035fd0808STejun Heo 			if (m_start < r_end) {
94135fd0808STejun Heo 				if (out_start)
942f1af9d3aSPhilipp Hachtmann 					*out_start =
943f1af9d3aSPhilipp Hachtmann 						max(m_start, r_start);
94435fd0808STejun Heo 				if (out_end)
94535fd0808STejun Heo 					*out_end = min(m_end, r_end);
94635fd0808STejun Heo 				if (out_nid)
947f1af9d3aSPhilipp Hachtmann 					*out_nid = m_nid;
94835fd0808STejun Heo 				/*
949f1af9d3aSPhilipp Hachtmann 				 * The region which ends first is
950f1af9d3aSPhilipp Hachtmann 				 * advanced for the next iteration.
95135fd0808STejun Heo 				 */
95235fd0808STejun Heo 				if (m_end <= r_end)
953f1af9d3aSPhilipp Hachtmann 					idx_a++;
95435fd0808STejun Heo 				else
955f1af9d3aSPhilipp Hachtmann 					idx_b++;
956f1af9d3aSPhilipp Hachtmann 				*idx = (u32)idx_a | (u64)idx_b << 32;
95735fd0808STejun Heo 				return;
95835fd0808STejun Heo 			}
95935fd0808STejun Heo 		}
96035fd0808STejun Heo 	}
96135fd0808STejun Heo 
96235fd0808STejun Heo 	/* signal end of iteration */
96335fd0808STejun Heo 	*idx = ULLONG_MAX;
96435fd0808STejun Heo }
96535fd0808STejun Heo 
9667bd0b0f0STejun Heo /**
967f1af9d3aSPhilipp Hachtmann  * __next_mem_range_rev - generic next function for for_each_*_range_rev()
968f1af9d3aSPhilipp Hachtmann  *
969f1af9d3aSPhilipp Hachtmann  * Finds the next range from type_a which is not marked as unsuitable
970f1af9d3aSPhilipp Hachtmann  * in type_b.
971f1af9d3aSPhilipp Hachtmann  *
9727bd0b0f0STejun Heo  * @idx: pointer to u64 loop variable
973ad5ea8cdSAlexander Kuleshov  * @nid: node selector, %NUMA_NO_NODE for all nodes
974fc6daaf9STony Luck  * @flags: pick from blocks based on memory attributes
975f1af9d3aSPhilipp Hachtmann  * @type_a: pointer to memblock_type from where the range is taken
976f1af9d3aSPhilipp Hachtmann  * @type_b: pointer to memblock_type which excludes memory from being taken
977dad7557eSWanpeng Li  * @out_start: ptr to phys_addr_t for start address of the range, can be %NULL
978dad7557eSWanpeng Li  * @out_end: ptr to phys_addr_t for end address of the range, can be %NULL
979dad7557eSWanpeng Li  * @out_nid: ptr to int for nid of the range, can be %NULL
9807bd0b0f0STejun Heo  *
981f1af9d3aSPhilipp Hachtmann  * Reverse of __next_mem_range().
9827bd0b0f0STejun Heo  */
983fc6daaf9STony Luck void __init_memblock __next_mem_range_rev(u64 *idx, int nid, ulong flags,
984f1af9d3aSPhilipp Hachtmann 					  struct memblock_type *type_a,
985f1af9d3aSPhilipp Hachtmann 					  struct memblock_type *type_b,
9867bd0b0f0STejun Heo 					  phys_addr_t *out_start,
9877bd0b0f0STejun Heo 					  phys_addr_t *out_end, int *out_nid)
9887bd0b0f0STejun Heo {
989f1af9d3aSPhilipp Hachtmann 	int idx_a = *idx & 0xffffffff;
990f1af9d3aSPhilipp Hachtmann 	int idx_b = *idx >> 32;
991b1154233SGrygorii Strashko 
992560dca27SGrygorii Strashko 	if (WARN_ONCE(nid == MAX_NUMNODES, "Usage of MAX_NUMNODES is deprecated. Use NUMA_NO_NODE instead\n"))
993560dca27SGrygorii Strashko 		nid = NUMA_NO_NODE;
9947bd0b0f0STejun Heo 
9957bd0b0f0STejun Heo 	if (*idx == (u64)ULLONG_MAX) {
996f1af9d3aSPhilipp Hachtmann 		idx_a = type_a->cnt - 1;
997f1af9d3aSPhilipp Hachtmann 		idx_b = type_b->cnt;
9987bd0b0f0STejun Heo 	}
9997bd0b0f0STejun Heo 
1000f1af9d3aSPhilipp Hachtmann 	for (; idx_a >= 0; idx_a--) {
1001f1af9d3aSPhilipp Hachtmann 		struct memblock_region *m = &type_a->regions[idx_a];
1002f1af9d3aSPhilipp Hachtmann 
10037bd0b0f0STejun Heo 		phys_addr_t m_start = m->base;
10047bd0b0f0STejun Heo 		phys_addr_t m_end = m->base + m->size;
1005f1af9d3aSPhilipp Hachtmann 		int m_nid = memblock_get_region_node(m);
10067bd0b0f0STejun Heo 
10077bd0b0f0STejun Heo 		/* only memory regions are associated with nodes, check it */
1008f1af9d3aSPhilipp Hachtmann 		if (nid != NUMA_NO_NODE && nid != m_nid)
10097bd0b0f0STejun Heo 			continue;
10107bd0b0f0STejun Heo 
101155ac590cSTang Chen 		/* skip hotpluggable memory regions if needed */
101255ac590cSTang Chen 		if (movable_node_is_enabled() && memblock_is_hotpluggable(m))
101355ac590cSTang Chen 			continue;
101455ac590cSTang Chen 
1015a3f5bafcSTony Luck 		/* if we want mirror memory skip non-mirror memory regions */
1016a3f5bafcSTony Luck 		if ((flags & MEMBLOCK_MIRROR) && !memblock_is_mirror(m))
1017a3f5bafcSTony Luck 			continue;
1018a3f5bafcSTony Luck 
1019bf3d3cc5SArd Biesheuvel 		/* skip nomap memory unless we were asked for it explicitly */
1020bf3d3cc5SArd Biesheuvel 		if (!(flags & MEMBLOCK_NOMAP) && memblock_is_nomap(m))
1021bf3d3cc5SArd Biesheuvel 			continue;
1022bf3d3cc5SArd Biesheuvel 
1023f1af9d3aSPhilipp Hachtmann 		if (!type_b) {
1024f1af9d3aSPhilipp Hachtmann 			if (out_start)
1025f1af9d3aSPhilipp Hachtmann 				*out_start = m_start;
1026f1af9d3aSPhilipp Hachtmann 			if (out_end)
1027f1af9d3aSPhilipp Hachtmann 				*out_end = m_end;
1028f1af9d3aSPhilipp Hachtmann 			if (out_nid)
1029f1af9d3aSPhilipp Hachtmann 				*out_nid = m_nid;
1030f1af9d3aSPhilipp Hachtmann 			idx_a++;
1031f1af9d3aSPhilipp Hachtmann 			*idx = (u32)idx_a | (u64)idx_b << 32;
1032f1af9d3aSPhilipp Hachtmann 			return;
1033f1af9d3aSPhilipp Hachtmann 		}
10347bd0b0f0STejun Heo 
1035f1af9d3aSPhilipp Hachtmann 		/* scan areas before each reservation */
1036f1af9d3aSPhilipp Hachtmann 		for (; idx_b >= 0; idx_b--) {
1037f1af9d3aSPhilipp Hachtmann 			struct memblock_region *r;
1038f1af9d3aSPhilipp Hachtmann 			phys_addr_t r_start;
1039f1af9d3aSPhilipp Hachtmann 			phys_addr_t r_end;
1040f1af9d3aSPhilipp Hachtmann 
1041f1af9d3aSPhilipp Hachtmann 			r = &type_b->regions[idx_b];
1042f1af9d3aSPhilipp Hachtmann 			r_start = idx_b ? r[-1].base + r[-1].size : 0;
1043f1af9d3aSPhilipp Hachtmann 			r_end = idx_b < type_b->cnt ?
1044f1af9d3aSPhilipp Hachtmann 				r->base : ULLONG_MAX;
1045f1af9d3aSPhilipp Hachtmann 			/*
1046f1af9d3aSPhilipp Hachtmann 			 * if idx_b advanced past idx_a,
1047f1af9d3aSPhilipp Hachtmann 			 * break out to advance idx_a
1048f1af9d3aSPhilipp Hachtmann 			 */
1049f1af9d3aSPhilipp Hachtmann 
10507bd0b0f0STejun Heo 			if (r_end <= m_start)
10517bd0b0f0STejun Heo 				break;
10527bd0b0f0STejun Heo 			/* if the two regions intersect, we're done */
10537bd0b0f0STejun Heo 			if (m_end > r_start) {
10547bd0b0f0STejun Heo 				if (out_start)
10557bd0b0f0STejun Heo 					*out_start = max(m_start, r_start);
10567bd0b0f0STejun Heo 				if (out_end)
10577bd0b0f0STejun Heo 					*out_end = min(m_end, r_end);
10587bd0b0f0STejun Heo 				if (out_nid)
1059f1af9d3aSPhilipp Hachtmann 					*out_nid = m_nid;
10607bd0b0f0STejun Heo 				if (m_start >= r_start)
1061f1af9d3aSPhilipp Hachtmann 					idx_a--;
10627bd0b0f0STejun Heo 				else
1063f1af9d3aSPhilipp Hachtmann 					idx_b--;
1064f1af9d3aSPhilipp Hachtmann 				*idx = (u32)idx_a | (u64)idx_b << 32;
10657bd0b0f0STejun Heo 				return;
10667bd0b0f0STejun Heo 			}
10677bd0b0f0STejun Heo 		}
10687bd0b0f0STejun Heo 	}
1069f1af9d3aSPhilipp Hachtmann 	/* signal end of iteration */
10707bd0b0f0STejun Heo 	*idx = ULLONG_MAX;
10717bd0b0f0STejun Heo }
10727bd0b0f0STejun Heo 
10737c0caeb8STejun Heo #ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
10747c0caeb8STejun Heo /*
10757c0caeb8STejun Heo  * Common iterator interface used to define for_each_mem_range().
10767c0caeb8STejun Heo  */
10777c0caeb8STejun Heo void __init_memblock __next_mem_pfn_range(int *idx, int nid,
10787c0caeb8STejun Heo 				unsigned long *out_start_pfn,
10797c0caeb8STejun Heo 				unsigned long *out_end_pfn, int *out_nid)
10807c0caeb8STejun Heo {
10817c0caeb8STejun Heo 	struct memblock_type *type = &memblock.memory;
10827c0caeb8STejun Heo 	struct memblock_region *r;
10837c0caeb8STejun Heo 
10847c0caeb8STejun Heo 	while (++*idx < type->cnt) {
10857c0caeb8STejun Heo 		r = &type->regions[*idx];
10867c0caeb8STejun Heo 
10877c0caeb8STejun Heo 		if (PFN_UP(r->base) >= PFN_DOWN(r->base + r->size))
10887c0caeb8STejun Heo 			continue;
10897c0caeb8STejun Heo 		if (nid == MAX_NUMNODES || nid == r->nid)
10907c0caeb8STejun Heo 			break;
10917c0caeb8STejun Heo 	}
10927c0caeb8STejun Heo 	if (*idx >= type->cnt) {
10937c0caeb8STejun Heo 		*idx = -1;
10947c0caeb8STejun Heo 		return;
10957c0caeb8STejun Heo 	}
10967c0caeb8STejun Heo 
10977c0caeb8STejun Heo 	if (out_start_pfn)
10987c0caeb8STejun Heo 		*out_start_pfn = PFN_UP(r->base);
10997c0caeb8STejun Heo 	if (out_end_pfn)
11007c0caeb8STejun Heo 		*out_end_pfn = PFN_DOWN(r->base + r->size);
11017c0caeb8STejun Heo 	if (out_nid)
11027c0caeb8STejun Heo 		*out_nid = r->nid;
11037c0caeb8STejun Heo }
11047c0caeb8STejun Heo 
11057c0caeb8STejun Heo /**
11067c0caeb8STejun Heo  * memblock_set_node - set node ID on memblock regions
11077c0caeb8STejun Heo  * @base: base of area to set node ID for
11087c0caeb8STejun Heo  * @size: size of area to set node ID for
1109e7e8de59STang Chen  * @type: memblock type to set node ID for
11107c0caeb8STejun Heo  * @nid: node ID to set
11117c0caeb8STejun Heo  *
1112e7e8de59STang Chen  * Set the nid of memblock @type regions in [@base,@base+@size) to @nid.
11137c0caeb8STejun Heo  * Regions which cross the area boundaries are split as necessary.
11147c0caeb8STejun Heo  *
11157c0caeb8STejun Heo  * RETURNS:
11167c0caeb8STejun Heo  * 0 on success, -errno on failure.
11177c0caeb8STejun Heo  */
11187c0caeb8STejun Heo int __init_memblock memblock_set_node(phys_addr_t base, phys_addr_t size,
1119e7e8de59STang Chen 				      struct memblock_type *type, int nid)
11207c0caeb8STejun Heo {
11216a9ceb31STejun Heo 	int start_rgn, end_rgn;
11226a9ceb31STejun Heo 	int i, ret;
11237c0caeb8STejun Heo 
11246a9ceb31STejun Heo 	ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
11256a9ceb31STejun Heo 	if (ret)
11266a9ceb31STejun Heo 		return ret;
11277c0caeb8STejun Heo 
11286a9ceb31STejun Heo 	for (i = start_rgn; i < end_rgn; i++)
1129e9d24ad3SWanpeng Li 		memblock_set_region_node(&type->regions[i], nid);
11307c0caeb8STejun Heo 
11317c0caeb8STejun Heo 	memblock_merge_regions(type);
11327c0caeb8STejun Heo 	return 0;
11337c0caeb8STejun Heo }
11347c0caeb8STejun Heo #endif /* CONFIG_HAVE_MEMBLOCK_NODE_MAP */
11357c0caeb8STejun Heo 
11362bfc2862SAkinobu Mita static phys_addr_t __init memblock_alloc_range_nid(phys_addr_t size,
11372bfc2862SAkinobu Mita 					phys_addr_t align, phys_addr_t start,
1138fc6daaf9STony Luck 					phys_addr_t end, int nid, ulong flags)
113995f72d1eSYinghai Lu {
11406ed311b2SBenjamin Herrenschmidt 	phys_addr_t found;
114195f72d1eSYinghai Lu 
114279f40fabSGrygorii Strashko 	if (!align)
114379f40fabSGrygorii Strashko 		align = SMP_CACHE_BYTES;
114494f3d3afSVineet Gupta 
1145fc6daaf9STony Luck 	found = memblock_find_in_range_node(size, align, start, end, nid,
1146fc6daaf9STony Luck 					    flags);
1147aedf95eaSCatalin Marinas 	if (found && !memblock_reserve(found, size)) {
1148aedf95eaSCatalin Marinas 		/*
1149aedf95eaSCatalin Marinas 		 * The min_count is set to 0 so that memblock allocations are
1150aedf95eaSCatalin Marinas 		 * never reported as leaks.
1151aedf95eaSCatalin Marinas 		 */
1152aedf95eaSCatalin Marinas 		kmemleak_alloc(__va(found), size, 0, 0);
11536ed311b2SBenjamin Herrenschmidt 		return found;
1154aedf95eaSCatalin Marinas 	}
11556ed311b2SBenjamin Herrenschmidt 	return 0;
115695f72d1eSYinghai Lu }
115795f72d1eSYinghai Lu 
11582bfc2862SAkinobu Mita phys_addr_t __init memblock_alloc_range(phys_addr_t size, phys_addr_t align,
1159fc6daaf9STony Luck 					phys_addr_t start, phys_addr_t end,
1160fc6daaf9STony Luck 					ulong flags)
11612bfc2862SAkinobu Mita {
1162fc6daaf9STony Luck 	return memblock_alloc_range_nid(size, align, start, end, NUMA_NO_NODE,
1163fc6daaf9STony Luck 					flags);
11642bfc2862SAkinobu Mita }
11652bfc2862SAkinobu Mita 
11662bfc2862SAkinobu Mita static phys_addr_t __init memblock_alloc_base_nid(phys_addr_t size,
11672bfc2862SAkinobu Mita 					phys_addr_t align, phys_addr_t max_addr,
1168fc6daaf9STony Luck 					int nid, ulong flags)
11692bfc2862SAkinobu Mita {
1170fc6daaf9STony Luck 	return memblock_alloc_range_nid(size, align, 0, max_addr, nid, flags);
11712bfc2862SAkinobu Mita }
11722bfc2862SAkinobu Mita 
11737bd0b0f0STejun Heo phys_addr_t __init memblock_alloc_nid(phys_addr_t size, phys_addr_t align, int nid)
11747bd0b0f0STejun Heo {
1175a3f5bafcSTony Luck 	ulong flags = choose_memblock_flags();
1176a3f5bafcSTony Luck 	phys_addr_t ret;
1177a3f5bafcSTony Luck 
1178a3f5bafcSTony Luck again:
1179a3f5bafcSTony Luck 	ret = memblock_alloc_base_nid(size, align, MEMBLOCK_ALLOC_ACCESSIBLE,
1180a3f5bafcSTony Luck 				      nid, flags);
1181a3f5bafcSTony Luck 
1182a3f5bafcSTony Luck 	if (!ret && (flags & MEMBLOCK_MIRROR)) {
1183a3f5bafcSTony Luck 		flags &= ~MEMBLOCK_MIRROR;
1184a3f5bafcSTony Luck 		goto again;
1185a3f5bafcSTony Luck 	}
1186a3f5bafcSTony Luck 	return ret;
11877bd0b0f0STejun Heo }
11887bd0b0f0STejun Heo 
11897bd0b0f0STejun Heo phys_addr_t __init __memblock_alloc_base(phys_addr_t size, phys_addr_t align, phys_addr_t max_addr)
11907bd0b0f0STejun Heo {
1191fc6daaf9STony Luck 	return memblock_alloc_base_nid(size, align, max_addr, NUMA_NO_NODE,
1192fc6daaf9STony Luck 				       MEMBLOCK_NONE);
11937bd0b0f0STejun Heo }
11947bd0b0f0STejun Heo 
11956ed311b2SBenjamin Herrenschmidt phys_addr_t __init memblock_alloc_base(phys_addr_t size, phys_addr_t align, phys_addr_t max_addr)
119695f72d1eSYinghai Lu {
11976ed311b2SBenjamin Herrenschmidt 	phys_addr_t alloc;
11986ed311b2SBenjamin Herrenschmidt 
11996ed311b2SBenjamin Herrenschmidt 	alloc = __memblock_alloc_base(size, align, max_addr);
12006ed311b2SBenjamin Herrenschmidt 
12016ed311b2SBenjamin Herrenschmidt 	if (alloc == 0)
12026ed311b2SBenjamin Herrenschmidt 		panic("ERROR: Failed to allocate 0x%llx bytes below 0x%llx.\n",
12036ed311b2SBenjamin Herrenschmidt 		      (unsigned long long) size, (unsigned long long) max_addr);
12046ed311b2SBenjamin Herrenschmidt 
12056ed311b2SBenjamin Herrenschmidt 	return alloc;
120695f72d1eSYinghai Lu }
120795f72d1eSYinghai Lu 
12086ed311b2SBenjamin Herrenschmidt phys_addr_t __init memblock_alloc(phys_addr_t size, phys_addr_t align)
120995f72d1eSYinghai Lu {
12106ed311b2SBenjamin Herrenschmidt 	return memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
121195f72d1eSYinghai Lu }
121295f72d1eSYinghai Lu 
12139d1e2492SBenjamin Herrenschmidt phys_addr_t __init memblock_alloc_try_nid(phys_addr_t size, phys_addr_t align, int nid)
12149d1e2492SBenjamin Herrenschmidt {
12159d1e2492SBenjamin Herrenschmidt 	phys_addr_t res = memblock_alloc_nid(size, align, nid);
12169d1e2492SBenjamin Herrenschmidt 
12179d1e2492SBenjamin Herrenschmidt 	if (res)
12189d1e2492SBenjamin Herrenschmidt 		return res;
121915fb0972STejun Heo 	return memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
122095f72d1eSYinghai Lu }
122195f72d1eSYinghai Lu 
122226f09e9bSSantosh Shilimkar /**
122326f09e9bSSantosh Shilimkar  * memblock_virt_alloc_internal - allocate boot memory block
122426f09e9bSSantosh Shilimkar  * @size: size of memory block to be allocated in bytes
122526f09e9bSSantosh Shilimkar  * @align: alignment of the region and block's size
122626f09e9bSSantosh Shilimkar  * @min_addr: the lower bound of the memory region to allocate (phys address)
122726f09e9bSSantosh Shilimkar  * @max_addr: the upper bound of the memory region to allocate (phys address)
122826f09e9bSSantosh Shilimkar  * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
122926f09e9bSSantosh Shilimkar  *
123026f09e9bSSantosh Shilimkar  * The @min_addr limit is dropped if it can not be satisfied and the allocation
123126f09e9bSSantosh Shilimkar  * will fall back to memory below @min_addr. Also, allocation may fall back
123226f09e9bSSantosh Shilimkar  * to any node in the system if the specified node can not
123326f09e9bSSantosh Shilimkar  * hold the requested memory.
123426f09e9bSSantosh Shilimkar  *
123526f09e9bSSantosh Shilimkar  * The allocation is performed from memory region limited by
123626f09e9bSSantosh Shilimkar  * memblock.current_limit if @max_addr == %BOOTMEM_ALLOC_ACCESSIBLE.
123726f09e9bSSantosh Shilimkar  *
123826f09e9bSSantosh Shilimkar  * The memory block is aligned on SMP_CACHE_BYTES if @align == 0.
123926f09e9bSSantosh Shilimkar  *
124026f09e9bSSantosh Shilimkar  * The phys address of allocated boot memory block is converted to virtual and
124126f09e9bSSantosh Shilimkar  * allocated memory is reset to 0.
124226f09e9bSSantosh Shilimkar  *
124326f09e9bSSantosh Shilimkar  * In addition, function sets the min_count to 0 using kmemleak_alloc for
124426f09e9bSSantosh Shilimkar  * allocated boot memory block, so that it is never reported as leaks.
124526f09e9bSSantosh Shilimkar  *
124626f09e9bSSantosh Shilimkar  * RETURNS:
124726f09e9bSSantosh Shilimkar  * Virtual address of allocated memory block on success, NULL on failure.
124826f09e9bSSantosh Shilimkar  */
124926f09e9bSSantosh Shilimkar static void * __init memblock_virt_alloc_internal(
125026f09e9bSSantosh Shilimkar 				phys_addr_t size, phys_addr_t align,
125126f09e9bSSantosh Shilimkar 				phys_addr_t min_addr, phys_addr_t max_addr,
125226f09e9bSSantosh Shilimkar 				int nid)
125326f09e9bSSantosh Shilimkar {
125426f09e9bSSantosh Shilimkar 	phys_addr_t alloc;
125526f09e9bSSantosh Shilimkar 	void *ptr;
1256a3f5bafcSTony Luck 	ulong flags = choose_memblock_flags();
125726f09e9bSSantosh Shilimkar 
1258560dca27SGrygorii Strashko 	if (WARN_ONCE(nid == MAX_NUMNODES, "Usage of MAX_NUMNODES is deprecated. Use NUMA_NO_NODE instead\n"))
1259560dca27SGrygorii Strashko 		nid = NUMA_NO_NODE;
126026f09e9bSSantosh Shilimkar 
126126f09e9bSSantosh Shilimkar 	/*
126226f09e9bSSantosh Shilimkar 	 * Detect any accidental use of these APIs after slab is ready, as at
126326f09e9bSSantosh Shilimkar 	 * this moment memblock may be deinitialized already and its
126426f09e9bSSantosh Shilimkar 	 * internal data may be destroyed (after execution of free_all_bootmem)
126526f09e9bSSantosh Shilimkar 	 */
126626f09e9bSSantosh Shilimkar 	if (WARN_ON_ONCE(slab_is_available()))
126726f09e9bSSantosh Shilimkar 		return kzalloc_node(size, GFP_NOWAIT, nid);
126826f09e9bSSantosh Shilimkar 
126926f09e9bSSantosh Shilimkar 	if (!align)
127026f09e9bSSantosh Shilimkar 		align = SMP_CACHE_BYTES;
127126f09e9bSSantosh Shilimkar 
1272f544e14fSYinghai Lu 	if (max_addr > memblock.current_limit)
1273f544e14fSYinghai Lu 		max_addr = memblock.current_limit;
1274f544e14fSYinghai Lu 
127526f09e9bSSantosh Shilimkar again:
127626f09e9bSSantosh Shilimkar 	alloc = memblock_find_in_range_node(size, align, min_addr, max_addr,
1277a3f5bafcSTony Luck 					    nid, flags);
127826f09e9bSSantosh Shilimkar 	if (alloc)
127926f09e9bSSantosh Shilimkar 		goto done;
128026f09e9bSSantosh Shilimkar 
128126f09e9bSSantosh Shilimkar 	if (nid != NUMA_NO_NODE) {
128226f09e9bSSantosh Shilimkar 		alloc = memblock_find_in_range_node(size, align, min_addr,
1283fc6daaf9STony Luck 						    max_addr, NUMA_NO_NODE,
1284a3f5bafcSTony Luck 						    flags);
128526f09e9bSSantosh Shilimkar 		if (alloc)
128626f09e9bSSantosh Shilimkar 			goto done;
128726f09e9bSSantosh Shilimkar 	}
128826f09e9bSSantosh Shilimkar 
128926f09e9bSSantosh Shilimkar 	if (min_addr) {
129026f09e9bSSantosh Shilimkar 		min_addr = 0;
129126f09e9bSSantosh Shilimkar 		goto again;
129226f09e9bSSantosh Shilimkar 	}
129326f09e9bSSantosh Shilimkar 
1294a3f5bafcSTony Luck 	if (flags & MEMBLOCK_MIRROR) {
1295a3f5bafcSTony Luck 		flags &= ~MEMBLOCK_MIRROR;
1296a3f5bafcSTony Luck 		pr_warn("Could not allocate %pap bytes of mirrored memory\n",
1297a3f5bafcSTony Luck 			&size);
1298a3f5bafcSTony Luck 		goto again;
1299a3f5bafcSTony Luck 	}
1300a3f5bafcSTony Luck 
1301a3f5bafcSTony Luck 	return NULL;
130226f09e9bSSantosh Shilimkar done:
130326f09e9bSSantosh Shilimkar 	memblock_reserve(alloc, size);
130426f09e9bSSantosh Shilimkar 	ptr = phys_to_virt(alloc);
130526f09e9bSSantosh Shilimkar 	memset(ptr, 0, size);
130626f09e9bSSantosh Shilimkar 
130726f09e9bSSantosh Shilimkar 	/*
130826f09e9bSSantosh Shilimkar 	 * The min_count is set to 0 so that bootmem allocated blocks
130926f09e9bSSantosh Shilimkar 	 * are never reported as leaks. This is because many of these blocks
131026f09e9bSSantosh Shilimkar 	 * are only referred via the physical address which is not
131126f09e9bSSantosh Shilimkar 	 * looked up by kmemleak.
131226f09e9bSSantosh Shilimkar 	 */
131326f09e9bSSantosh Shilimkar 	kmemleak_alloc(ptr, size, 0, 0);
131426f09e9bSSantosh Shilimkar 
131526f09e9bSSantosh Shilimkar 	return ptr;
131626f09e9bSSantosh Shilimkar }
131726f09e9bSSantosh Shilimkar 
131826f09e9bSSantosh Shilimkar /**
131926f09e9bSSantosh Shilimkar  * memblock_virt_alloc_try_nid_nopanic - allocate boot memory block
132026f09e9bSSantosh Shilimkar  * @size: size of memory block to be allocated in bytes
132126f09e9bSSantosh Shilimkar  * @align: alignment of the region and block's size
132226f09e9bSSantosh Shilimkar  * @min_addr: the lower bound of the memory region from where the allocation
132326f09e9bSSantosh Shilimkar  *	  is preferred (phys address)
132426f09e9bSSantosh Shilimkar  * @max_addr: the upper bound of the memory region from where the allocation
132526f09e9bSSantosh Shilimkar  *	      is preferred (phys address), or %BOOTMEM_ALLOC_ACCESSIBLE to
132626f09e9bSSantosh Shilimkar  *	      allocate only from memory limited by memblock.current_limit value
132726f09e9bSSantosh Shilimkar  * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
132826f09e9bSSantosh Shilimkar  *
132926f09e9bSSantosh Shilimkar  * Public version of _memblock_virt_alloc_try_nid_nopanic() which provides
133026f09e9bSSantosh Shilimkar  * additional debug information (including caller info), if enabled.
133126f09e9bSSantosh Shilimkar  *
133226f09e9bSSantosh Shilimkar  * RETURNS:
133326f09e9bSSantosh Shilimkar  * Virtual address of allocated memory block on success, NULL on failure.
133426f09e9bSSantosh Shilimkar  */
133526f09e9bSSantosh Shilimkar void * __init memblock_virt_alloc_try_nid_nopanic(
133626f09e9bSSantosh Shilimkar 				phys_addr_t size, phys_addr_t align,
133726f09e9bSSantosh Shilimkar 				phys_addr_t min_addr, phys_addr_t max_addr,
133826f09e9bSSantosh Shilimkar 				int nid)
133926f09e9bSSantosh Shilimkar {
134026f09e9bSSantosh Shilimkar 	memblock_dbg("%s: %llu bytes align=0x%llx nid=%d from=0x%llx max_addr=0x%llx %pF\n",
134126f09e9bSSantosh Shilimkar 		     __func__, (u64)size, (u64)align, nid, (u64)min_addr,
134226f09e9bSSantosh Shilimkar 		     (u64)max_addr, (void *)_RET_IP_);
134326f09e9bSSantosh Shilimkar 	return memblock_virt_alloc_internal(size, align, min_addr,
134426f09e9bSSantosh Shilimkar 					     max_addr, nid);
134526f09e9bSSantosh Shilimkar }
134626f09e9bSSantosh Shilimkar 
134726f09e9bSSantosh Shilimkar /**
134826f09e9bSSantosh Shilimkar  * memblock_virt_alloc_try_nid - allocate boot memory block with panicking
134926f09e9bSSantosh Shilimkar  * @size: size of memory block to be allocated in bytes
135026f09e9bSSantosh Shilimkar  * @align: alignment of the region and block's size
135126f09e9bSSantosh Shilimkar  * @min_addr: the lower bound of the memory region from where the allocation
135226f09e9bSSantosh Shilimkar  *	  is preferred (phys address)
135326f09e9bSSantosh Shilimkar  * @max_addr: the upper bound of the memory region from where the allocation
135426f09e9bSSantosh Shilimkar  *	      is preferred (phys address), or %BOOTMEM_ALLOC_ACCESSIBLE to
135526f09e9bSSantosh Shilimkar  *	      allocate only from memory limited by memblock.current_limit value
135626f09e9bSSantosh Shilimkar  * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
135726f09e9bSSantosh Shilimkar  *
135826f09e9bSSantosh Shilimkar  * Public panicking version of _memblock_virt_alloc_try_nid_nopanic()
135926f09e9bSSantosh Shilimkar  * which provides debug information (including caller info), if enabled,
136026f09e9bSSantosh Shilimkar  * and panics if the request can not be satisfied.
136126f09e9bSSantosh Shilimkar  *
136226f09e9bSSantosh Shilimkar  * RETURNS:
136326f09e9bSSantosh Shilimkar  * Virtual address of allocated memory block on success, NULL on failure.
136426f09e9bSSantosh Shilimkar  */
136526f09e9bSSantosh Shilimkar void * __init memblock_virt_alloc_try_nid(
136626f09e9bSSantosh Shilimkar 			phys_addr_t size, phys_addr_t align,
136726f09e9bSSantosh Shilimkar 			phys_addr_t min_addr, phys_addr_t max_addr,
136826f09e9bSSantosh Shilimkar 			int nid)
136926f09e9bSSantosh Shilimkar {
137026f09e9bSSantosh Shilimkar 	void *ptr;
137126f09e9bSSantosh Shilimkar 
137226f09e9bSSantosh Shilimkar 	memblock_dbg("%s: %llu bytes align=0x%llx nid=%d from=0x%llx max_addr=0x%llx %pF\n",
137326f09e9bSSantosh Shilimkar 		     __func__, (u64)size, (u64)align, nid, (u64)min_addr,
137426f09e9bSSantosh Shilimkar 		     (u64)max_addr, (void *)_RET_IP_);
137526f09e9bSSantosh Shilimkar 	ptr = memblock_virt_alloc_internal(size, align,
137626f09e9bSSantosh Shilimkar 					   min_addr, max_addr, nid);
137726f09e9bSSantosh Shilimkar 	if (ptr)
137826f09e9bSSantosh Shilimkar 		return ptr;
137926f09e9bSSantosh Shilimkar 
138026f09e9bSSantosh Shilimkar 	panic("%s: Failed to allocate %llu bytes align=0x%llx nid=%d from=0x%llx max_addr=0x%llx\n",
138126f09e9bSSantosh Shilimkar 	      __func__, (u64)size, (u64)align, nid, (u64)min_addr,
138226f09e9bSSantosh Shilimkar 	      (u64)max_addr);
138326f09e9bSSantosh Shilimkar 	return NULL;
138426f09e9bSSantosh Shilimkar }
138526f09e9bSSantosh Shilimkar 
138626f09e9bSSantosh Shilimkar /**
138726f09e9bSSantosh Shilimkar  * __memblock_free_early - free boot memory block
138826f09e9bSSantosh Shilimkar  * @base: phys starting address of the  boot memory block
138926f09e9bSSantosh Shilimkar  * @size: size of the boot memory block in bytes
139026f09e9bSSantosh Shilimkar  *
139126f09e9bSSantosh Shilimkar  * Free boot memory block previously allocated by memblock_virt_alloc_xx() API.
139226f09e9bSSantosh Shilimkar  * The freeing memory will not be released to the buddy allocator.
139326f09e9bSSantosh Shilimkar  */
139426f09e9bSSantosh Shilimkar void __init __memblock_free_early(phys_addr_t base, phys_addr_t size)
139526f09e9bSSantosh Shilimkar {
139626f09e9bSSantosh Shilimkar 	memblock_dbg("%s: [%#016llx-%#016llx] %pF\n",
139726f09e9bSSantosh Shilimkar 		     __func__, (u64)base, (u64)base + size - 1,
139826f09e9bSSantosh Shilimkar 		     (void *)_RET_IP_);
139926f09e9bSSantosh Shilimkar 	kmemleak_free_part(__va(base), size);
1400f1af9d3aSPhilipp Hachtmann 	memblock_remove_range(&memblock.reserved, base, size);
140126f09e9bSSantosh Shilimkar }
140226f09e9bSSantosh Shilimkar 
140326f09e9bSSantosh Shilimkar /*
140426f09e9bSSantosh Shilimkar  * __memblock_free_late - free bootmem block pages directly to buddy allocator
140526f09e9bSSantosh Shilimkar  * @addr: phys starting address of the  boot memory block
140626f09e9bSSantosh Shilimkar  * @size: size of the boot memory block in bytes
140726f09e9bSSantosh Shilimkar  *
140826f09e9bSSantosh Shilimkar  * This is only useful when the bootmem allocator has already been torn
140926f09e9bSSantosh Shilimkar  * down, but we are still initializing the system.  Pages are released directly
141026f09e9bSSantosh Shilimkar  * to the buddy allocator, no bootmem metadata is updated because it is gone.
141126f09e9bSSantosh Shilimkar  */
141226f09e9bSSantosh Shilimkar void __init __memblock_free_late(phys_addr_t base, phys_addr_t size)
141326f09e9bSSantosh Shilimkar {
141426f09e9bSSantosh Shilimkar 	u64 cursor, end;
141526f09e9bSSantosh Shilimkar 
141626f09e9bSSantosh Shilimkar 	memblock_dbg("%s: [%#016llx-%#016llx] %pF\n",
141726f09e9bSSantosh Shilimkar 		     __func__, (u64)base, (u64)base + size - 1,
141826f09e9bSSantosh Shilimkar 		     (void *)_RET_IP_);
141926f09e9bSSantosh Shilimkar 	kmemleak_free_part(__va(base), size);
142026f09e9bSSantosh Shilimkar 	cursor = PFN_UP(base);
142126f09e9bSSantosh Shilimkar 	end = PFN_DOWN(base + size);
142226f09e9bSSantosh Shilimkar 
142326f09e9bSSantosh Shilimkar 	for (; cursor < end; cursor++) {
1424d70ddd7aSMel Gorman 		__free_pages_bootmem(pfn_to_page(cursor), cursor, 0);
142526f09e9bSSantosh Shilimkar 		totalram_pages++;
142626f09e9bSSantosh Shilimkar 	}
142726f09e9bSSantosh Shilimkar }
14289d1e2492SBenjamin Herrenschmidt 
14299d1e2492SBenjamin Herrenschmidt /*
14309d1e2492SBenjamin Herrenschmidt  * Remaining API functions
14319d1e2492SBenjamin Herrenschmidt  */
14329d1e2492SBenjamin Herrenschmidt 
14331f1ffb8aSDavid Gibson phys_addr_t __init_memblock memblock_phys_mem_size(void)
143495f72d1eSYinghai Lu {
14351440c4e2STejun Heo 	return memblock.memory.total_size;
143695f72d1eSYinghai Lu }
143795f72d1eSYinghai Lu 
1438595ad9afSYinghai Lu phys_addr_t __init memblock_mem_size(unsigned long limit_pfn)
1439595ad9afSYinghai Lu {
1440595ad9afSYinghai Lu 	unsigned long pages = 0;
1441595ad9afSYinghai Lu 	struct memblock_region *r;
1442595ad9afSYinghai Lu 	unsigned long start_pfn, end_pfn;
1443595ad9afSYinghai Lu 
1444595ad9afSYinghai Lu 	for_each_memblock(memory, r) {
1445595ad9afSYinghai Lu 		start_pfn = memblock_region_memory_base_pfn(r);
1446595ad9afSYinghai Lu 		end_pfn = memblock_region_memory_end_pfn(r);
1447595ad9afSYinghai Lu 		start_pfn = min_t(unsigned long, start_pfn, limit_pfn);
1448595ad9afSYinghai Lu 		end_pfn = min_t(unsigned long, end_pfn, limit_pfn);
1449595ad9afSYinghai Lu 		pages += end_pfn - start_pfn;
1450595ad9afSYinghai Lu 	}
1451595ad9afSYinghai Lu 
145216763230SFabian Frederick 	return PFN_PHYS(pages);
1453595ad9afSYinghai Lu }
1454595ad9afSYinghai Lu 
14550a93ebefSSam Ravnborg /* lowest address */
14560a93ebefSSam Ravnborg phys_addr_t __init_memblock memblock_start_of_DRAM(void)
14570a93ebefSSam Ravnborg {
14580a93ebefSSam Ravnborg 	return memblock.memory.regions[0].base;
14590a93ebefSSam Ravnborg }
14600a93ebefSSam Ravnborg 
146110d06439SYinghai Lu phys_addr_t __init_memblock memblock_end_of_DRAM(void)
146295f72d1eSYinghai Lu {
146395f72d1eSYinghai Lu 	int idx = memblock.memory.cnt - 1;
146495f72d1eSYinghai Lu 
1465e3239ff9SBenjamin Herrenschmidt 	return (memblock.memory.regions[idx].base + memblock.memory.regions[idx].size);
146695f72d1eSYinghai Lu }
146795f72d1eSYinghai Lu 
1468*a571d4ebSDennis Chen static phys_addr_t __init_memblock __find_max_addr(phys_addr_t limit)
146995f72d1eSYinghai Lu {
1470c0ce8fefSTejun Heo 	phys_addr_t max_addr = (phys_addr_t)ULLONG_MAX;
1471136199f0SEmil Medve 	struct memblock_region *r;
147295f72d1eSYinghai Lu 
1473*a571d4ebSDennis Chen 	/*
1474*a571d4ebSDennis Chen 	 * translate the memory @limit size into the max address within one of
1475*a571d4ebSDennis Chen 	 * the memory memblock regions, if the @limit exceeds the total size
1476*a571d4ebSDennis Chen 	 * of those regions, max_addr will keep original value ULLONG_MAX
1477*a571d4ebSDennis Chen 	 */
1478136199f0SEmil Medve 	for_each_memblock(memory, r) {
1479c0ce8fefSTejun Heo 		if (limit <= r->size) {
1480c0ce8fefSTejun Heo 			max_addr = r->base + limit;
148195f72d1eSYinghai Lu 			break;
148295f72d1eSYinghai Lu 		}
1483c0ce8fefSTejun Heo 		limit -= r->size;
148495f72d1eSYinghai Lu 	}
1485c0ce8fefSTejun Heo 
1486*a571d4ebSDennis Chen 	return max_addr;
1487*a571d4ebSDennis Chen }
1488*a571d4ebSDennis Chen 
1489*a571d4ebSDennis Chen void __init memblock_enforce_memory_limit(phys_addr_t limit)
1490*a571d4ebSDennis Chen {
1491*a571d4ebSDennis Chen 	phys_addr_t max_addr = (phys_addr_t)ULLONG_MAX;
1492*a571d4ebSDennis Chen 
1493*a571d4ebSDennis Chen 	if (!limit)
1494*a571d4ebSDennis Chen 		return;
1495*a571d4ebSDennis Chen 
1496*a571d4ebSDennis Chen 	max_addr = __find_max_addr(limit);
1497*a571d4ebSDennis Chen 
1498*a571d4ebSDennis Chen 	/* @limit exceeds the total size of the memory, do nothing */
1499*a571d4ebSDennis Chen 	if (max_addr == (phys_addr_t)ULLONG_MAX)
1500*a571d4ebSDennis Chen 		return;
1501*a571d4ebSDennis Chen 
1502c0ce8fefSTejun Heo 	/* truncate both memory and reserved regions */
1503f1af9d3aSPhilipp Hachtmann 	memblock_remove_range(&memblock.memory, max_addr,
1504f1af9d3aSPhilipp Hachtmann 			      (phys_addr_t)ULLONG_MAX);
1505f1af9d3aSPhilipp Hachtmann 	memblock_remove_range(&memblock.reserved, max_addr,
1506f1af9d3aSPhilipp Hachtmann 			      (phys_addr_t)ULLONG_MAX);
150795f72d1eSYinghai Lu }
150895f72d1eSYinghai Lu 
1509*a571d4ebSDennis Chen void __init memblock_mem_limit_remove_map(phys_addr_t limit)
1510*a571d4ebSDennis Chen {
1511*a571d4ebSDennis Chen 	struct memblock_type *type = &memblock.memory;
1512*a571d4ebSDennis Chen 	phys_addr_t max_addr;
1513*a571d4ebSDennis Chen 	int i, ret, start_rgn, end_rgn;
1514*a571d4ebSDennis Chen 
1515*a571d4ebSDennis Chen 	if (!limit)
1516*a571d4ebSDennis Chen 		return;
1517*a571d4ebSDennis Chen 
1518*a571d4ebSDennis Chen 	max_addr = __find_max_addr(limit);
1519*a571d4ebSDennis Chen 
1520*a571d4ebSDennis Chen 	/* @limit exceeds the total size of the memory, do nothing */
1521*a571d4ebSDennis Chen 	if (max_addr == (phys_addr_t)ULLONG_MAX)
1522*a571d4ebSDennis Chen 		return;
1523*a571d4ebSDennis Chen 
1524*a571d4ebSDennis Chen 	ret = memblock_isolate_range(type, max_addr, (phys_addr_t)ULLONG_MAX,
1525*a571d4ebSDennis Chen 				&start_rgn, &end_rgn);
1526*a571d4ebSDennis Chen 	if (ret)
1527*a571d4ebSDennis Chen 		return;
1528*a571d4ebSDennis Chen 
1529*a571d4ebSDennis Chen 	/* remove all the MAP regions above the limit */
1530*a571d4ebSDennis Chen 	for (i = end_rgn - 1; i >= start_rgn; i--) {
1531*a571d4ebSDennis Chen 		if (!memblock_is_nomap(&type->regions[i]))
1532*a571d4ebSDennis Chen 			memblock_remove_region(type, i);
1533*a571d4ebSDennis Chen 	}
1534*a571d4ebSDennis Chen 	/* truncate the reserved regions */
1535*a571d4ebSDennis Chen 	memblock_remove_range(&memblock.reserved, max_addr,
1536*a571d4ebSDennis Chen 			      (phys_addr_t)ULLONG_MAX);
1537*a571d4ebSDennis Chen }
1538*a571d4ebSDennis Chen 
1539cd79481dSYinghai Lu static int __init_memblock memblock_search(struct memblock_type *type, phys_addr_t addr)
154072d4b0b4SBenjamin Herrenschmidt {
154172d4b0b4SBenjamin Herrenschmidt 	unsigned int left = 0, right = type->cnt;
154272d4b0b4SBenjamin Herrenschmidt 
154372d4b0b4SBenjamin Herrenschmidt 	do {
154472d4b0b4SBenjamin Herrenschmidt 		unsigned int mid = (right + left) / 2;
154572d4b0b4SBenjamin Herrenschmidt 
154672d4b0b4SBenjamin Herrenschmidt 		if (addr < type->regions[mid].base)
154772d4b0b4SBenjamin Herrenschmidt 			right = mid;
154872d4b0b4SBenjamin Herrenschmidt 		else if (addr >= (type->regions[mid].base +
154972d4b0b4SBenjamin Herrenschmidt 				  type->regions[mid].size))
155072d4b0b4SBenjamin Herrenschmidt 			left = mid + 1;
155172d4b0b4SBenjamin Herrenschmidt 		else
155272d4b0b4SBenjamin Herrenschmidt 			return mid;
155372d4b0b4SBenjamin Herrenschmidt 	} while (left < right);
155472d4b0b4SBenjamin Herrenschmidt 	return -1;
155572d4b0b4SBenjamin Herrenschmidt }
155672d4b0b4SBenjamin Herrenschmidt 
1557b4ad0c7eSYaowei Bai bool __init memblock_is_reserved(phys_addr_t addr)
155895f72d1eSYinghai Lu {
155972d4b0b4SBenjamin Herrenschmidt 	return memblock_search(&memblock.reserved, addr) != -1;
156095f72d1eSYinghai Lu }
156172d4b0b4SBenjamin Herrenschmidt 
1562b4ad0c7eSYaowei Bai bool __init_memblock memblock_is_memory(phys_addr_t addr)
156372d4b0b4SBenjamin Herrenschmidt {
156472d4b0b4SBenjamin Herrenschmidt 	return memblock_search(&memblock.memory, addr) != -1;
156572d4b0b4SBenjamin Herrenschmidt }
156672d4b0b4SBenjamin Herrenschmidt 
1567bf3d3cc5SArd Biesheuvel int __init_memblock memblock_is_map_memory(phys_addr_t addr)
1568bf3d3cc5SArd Biesheuvel {
1569bf3d3cc5SArd Biesheuvel 	int i = memblock_search(&memblock.memory, addr);
1570bf3d3cc5SArd Biesheuvel 
1571bf3d3cc5SArd Biesheuvel 	if (i == -1)
1572bf3d3cc5SArd Biesheuvel 		return false;
1573bf3d3cc5SArd Biesheuvel 	return !memblock_is_nomap(&memblock.memory.regions[i]);
1574bf3d3cc5SArd Biesheuvel }
1575bf3d3cc5SArd Biesheuvel 
1576e76b63f8SYinghai Lu #ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
1577e76b63f8SYinghai Lu int __init_memblock memblock_search_pfn_nid(unsigned long pfn,
1578e76b63f8SYinghai Lu 			 unsigned long *start_pfn, unsigned long *end_pfn)
1579e76b63f8SYinghai Lu {
1580e76b63f8SYinghai Lu 	struct memblock_type *type = &memblock.memory;
158116763230SFabian Frederick 	int mid = memblock_search(type, PFN_PHYS(pfn));
1582e76b63f8SYinghai Lu 
1583e76b63f8SYinghai Lu 	if (mid == -1)
1584e76b63f8SYinghai Lu 		return -1;
1585e76b63f8SYinghai Lu 
1586f7e2f7e8SFabian Frederick 	*start_pfn = PFN_DOWN(type->regions[mid].base);
1587f7e2f7e8SFabian Frederick 	*end_pfn = PFN_DOWN(type->regions[mid].base + type->regions[mid].size);
1588e76b63f8SYinghai Lu 
1589e76b63f8SYinghai Lu 	return type->regions[mid].nid;
1590e76b63f8SYinghai Lu }
1591e76b63f8SYinghai Lu #endif
1592e76b63f8SYinghai Lu 
1593eab30949SStephen Boyd /**
1594eab30949SStephen Boyd  * memblock_is_region_memory - check if a region is a subset of memory
1595eab30949SStephen Boyd  * @base: base of region to check
1596eab30949SStephen Boyd  * @size: size of region to check
1597eab30949SStephen Boyd  *
1598eab30949SStephen Boyd  * Check if the region [@base, @base+@size) is a subset of a memory block.
1599eab30949SStephen Boyd  *
1600eab30949SStephen Boyd  * RETURNS:
1601eab30949SStephen Boyd  * 0 if false, non-zero if true
1602eab30949SStephen Boyd  */
16033661ca66SYinghai Lu int __init_memblock memblock_is_region_memory(phys_addr_t base, phys_addr_t size)
160472d4b0b4SBenjamin Herrenschmidt {
1605abb65272STomi Valkeinen 	int idx = memblock_search(&memblock.memory, base);
1606eb18f1b5STejun Heo 	phys_addr_t end = base + memblock_cap_size(base, &size);
160772d4b0b4SBenjamin Herrenschmidt 
160872d4b0b4SBenjamin Herrenschmidt 	if (idx == -1)
160995f72d1eSYinghai Lu 		return 0;
1610abb65272STomi Valkeinen 	return memblock.memory.regions[idx].base <= base &&
1611abb65272STomi Valkeinen 		(memblock.memory.regions[idx].base +
1612eb18f1b5STejun Heo 		 memblock.memory.regions[idx].size) >= end;
161395f72d1eSYinghai Lu }
161495f72d1eSYinghai Lu 
1615eab30949SStephen Boyd /**
1616eab30949SStephen Boyd  * memblock_is_region_reserved - check if a region intersects reserved memory
1617eab30949SStephen Boyd  * @base: base of region to check
1618eab30949SStephen Boyd  * @size: size of region to check
1619eab30949SStephen Boyd  *
1620eab30949SStephen Boyd  * Check if the region [@base, @base+@size) intersects a reserved memory block.
1621eab30949SStephen Boyd  *
1622eab30949SStephen Boyd  * RETURNS:
1623c5c5c9d1STang Chen  * True if they intersect, false if not.
1624eab30949SStephen Boyd  */
1625c5c5c9d1STang Chen bool __init_memblock memblock_is_region_reserved(phys_addr_t base, phys_addr_t size)
162695f72d1eSYinghai Lu {
1627eb18f1b5STejun Heo 	memblock_cap_size(base, &size);
1628c5c5c9d1STang Chen 	return memblock_overlaps_region(&memblock.reserved, base, size);
162995f72d1eSYinghai Lu }
163095f72d1eSYinghai Lu 
16316ede1fd3SYinghai Lu void __init_memblock memblock_trim_memory(phys_addr_t align)
16326ede1fd3SYinghai Lu {
16336ede1fd3SYinghai Lu 	phys_addr_t start, end, orig_start, orig_end;
1634136199f0SEmil Medve 	struct memblock_region *r;
16356ede1fd3SYinghai Lu 
1636136199f0SEmil Medve 	for_each_memblock(memory, r) {
1637136199f0SEmil Medve 		orig_start = r->base;
1638136199f0SEmil Medve 		orig_end = r->base + r->size;
16396ede1fd3SYinghai Lu 		start = round_up(orig_start, align);
16406ede1fd3SYinghai Lu 		end = round_down(orig_end, align);
16416ede1fd3SYinghai Lu 
16426ede1fd3SYinghai Lu 		if (start == orig_start && end == orig_end)
16436ede1fd3SYinghai Lu 			continue;
16446ede1fd3SYinghai Lu 
16456ede1fd3SYinghai Lu 		if (start < end) {
1646136199f0SEmil Medve 			r->base = start;
1647136199f0SEmil Medve 			r->size = end - start;
16486ede1fd3SYinghai Lu 		} else {
1649136199f0SEmil Medve 			memblock_remove_region(&memblock.memory,
1650136199f0SEmil Medve 					       r - memblock.memory.regions);
1651136199f0SEmil Medve 			r--;
16526ede1fd3SYinghai Lu 		}
16536ede1fd3SYinghai Lu 	}
16546ede1fd3SYinghai Lu }
1655e63075a3SBenjamin Herrenschmidt 
16563661ca66SYinghai Lu void __init_memblock memblock_set_current_limit(phys_addr_t limit)
1657e63075a3SBenjamin Herrenschmidt {
1658e63075a3SBenjamin Herrenschmidt 	memblock.current_limit = limit;
1659e63075a3SBenjamin Herrenschmidt }
1660e63075a3SBenjamin Herrenschmidt 
1661fec51014SLaura Abbott phys_addr_t __init_memblock memblock_get_current_limit(void)
1662fec51014SLaura Abbott {
1663fec51014SLaura Abbott 	return memblock.current_limit;
1664fec51014SLaura Abbott }
1665fec51014SLaura Abbott 
16667c0caeb8STejun Heo static void __init_memblock memblock_dump(struct memblock_type *type, char *name)
16676ed311b2SBenjamin Herrenschmidt {
16686ed311b2SBenjamin Herrenschmidt 	unsigned long long base, size;
166966a20757STang Chen 	unsigned long flags;
16708c9c1701SAlexander Kuleshov 	int idx;
16718c9c1701SAlexander Kuleshov 	struct memblock_region *rgn;
16726ed311b2SBenjamin Herrenschmidt 
16737c0caeb8STejun Heo 	pr_info(" %s.cnt  = 0x%lx\n", name, type->cnt);
16746ed311b2SBenjamin Herrenschmidt 
16758c9c1701SAlexander Kuleshov 	for_each_memblock_type(type, rgn) {
16767c0caeb8STejun Heo 		char nid_buf[32] = "";
16776ed311b2SBenjamin Herrenschmidt 
16787c0caeb8STejun Heo 		base = rgn->base;
16797c0caeb8STejun Heo 		size = rgn->size;
168066a20757STang Chen 		flags = rgn->flags;
16817c0caeb8STejun Heo #ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
16827c0caeb8STejun Heo 		if (memblock_get_region_node(rgn) != MAX_NUMNODES)
16837c0caeb8STejun Heo 			snprintf(nid_buf, sizeof(nid_buf), " on node %d",
16847c0caeb8STejun Heo 				 memblock_get_region_node(rgn));
16857c0caeb8STejun Heo #endif
168666a20757STang Chen 		pr_info(" %s[%#x]\t[%#016llx-%#016llx], %#llx bytes%s flags: %#lx\n",
16878c9c1701SAlexander Kuleshov 			name, idx, base, base + size - 1, size, nid_buf, flags);
16886ed311b2SBenjamin Herrenschmidt 	}
16896ed311b2SBenjamin Herrenschmidt }
16906ed311b2SBenjamin Herrenschmidt 
16914ff7b82fSTejun Heo void __init_memblock __memblock_dump_all(void)
16926ed311b2SBenjamin Herrenschmidt {
16936ed311b2SBenjamin Herrenschmidt 	pr_info("MEMBLOCK configuration:\n");
16941440c4e2STejun Heo 	pr_info(" memory size = %#llx reserved size = %#llx\n",
16951440c4e2STejun Heo 		(unsigned long long)memblock.memory.total_size,
16961440c4e2STejun Heo 		(unsigned long long)memblock.reserved.total_size);
16976ed311b2SBenjamin Herrenschmidt 
16986ed311b2SBenjamin Herrenschmidt 	memblock_dump(&memblock.memory, "memory");
16996ed311b2SBenjamin Herrenschmidt 	memblock_dump(&memblock.reserved, "reserved");
17006ed311b2SBenjamin Herrenschmidt }
17016ed311b2SBenjamin Herrenschmidt 
17021aadc056STejun Heo void __init memblock_allow_resize(void)
17036ed311b2SBenjamin Herrenschmidt {
1704142b45a7SBenjamin Herrenschmidt 	memblock_can_resize = 1;
17056ed311b2SBenjamin Herrenschmidt }
17066ed311b2SBenjamin Herrenschmidt 
17076ed311b2SBenjamin Herrenschmidt static int __init early_memblock(char *p)
17086ed311b2SBenjamin Herrenschmidt {
17096ed311b2SBenjamin Herrenschmidt 	if (p && strstr(p, "debug"))
17106ed311b2SBenjamin Herrenschmidt 		memblock_debug = 1;
17116ed311b2SBenjamin Herrenschmidt 	return 0;
17126ed311b2SBenjamin Herrenschmidt }
17136ed311b2SBenjamin Herrenschmidt early_param("memblock", early_memblock);
17146ed311b2SBenjamin Herrenschmidt 
1715c378ddd5STejun Heo #if defined(CONFIG_DEBUG_FS) && !defined(CONFIG_ARCH_DISCARD_MEMBLOCK)
17166d03b885SBenjamin Herrenschmidt 
17176d03b885SBenjamin Herrenschmidt static int memblock_debug_show(struct seq_file *m, void *private)
17186d03b885SBenjamin Herrenschmidt {
17196d03b885SBenjamin Herrenschmidt 	struct memblock_type *type = m->private;
17206d03b885SBenjamin Herrenschmidt 	struct memblock_region *reg;
17216d03b885SBenjamin Herrenschmidt 	int i;
17226d03b885SBenjamin Herrenschmidt 
17236d03b885SBenjamin Herrenschmidt 	for (i = 0; i < type->cnt; i++) {
17246d03b885SBenjamin Herrenschmidt 		reg = &type->regions[i];
17256d03b885SBenjamin Herrenschmidt 		seq_printf(m, "%4d: ", i);
17266d03b885SBenjamin Herrenschmidt 		if (sizeof(phys_addr_t) == 4)
17276d03b885SBenjamin Herrenschmidt 			seq_printf(m, "0x%08lx..0x%08lx\n",
17286d03b885SBenjamin Herrenschmidt 				   (unsigned long)reg->base,
17296d03b885SBenjamin Herrenschmidt 				   (unsigned long)(reg->base + reg->size - 1));
17306d03b885SBenjamin Herrenschmidt 		else
17316d03b885SBenjamin Herrenschmidt 			seq_printf(m, "0x%016llx..0x%016llx\n",
17326d03b885SBenjamin Herrenschmidt 				   (unsigned long long)reg->base,
17336d03b885SBenjamin Herrenschmidt 				   (unsigned long long)(reg->base + reg->size - 1));
17346d03b885SBenjamin Herrenschmidt 
17356d03b885SBenjamin Herrenschmidt 	}
17366d03b885SBenjamin Herrenschmidt 	return 0;
17376d03b885SBenjamin Herrenschmidt }
17386d03b885SBenjamin Herrenschmidt 
17396d03b885SBenjamin Herrenschmidt static int memblock_debug_open(struct inode *inode, struct file *file)
17406d03b885SBenjamin Herrenschmidt {
17416d03b885SBenjamin Herrenschmidt 	return single_open(file, memblock_debug_show, inode->i_private);
17426d03b885SBenjamin Herrenschmidt }
17436d03b885SBenjamin Herrenschmidt 
17446d03b885SBenjamin Herrenschmidt static const struct file_operations memblock_debug_fops = {
17456d03b885SBenjamin Herrenschmidt 	.open = memblock_debug_open,
17466d03b885SBenjamin Herrenschmidt 	.read = seq_read,
17476d03b885SBenjamin Herrenschmidt 	.llseek = seq_lseek,
17486d03b885SBenjamin Herrenschmidt 	.release = single_release,
17496d03b885SBenjamin Herrenschmidt };
17506d03b885SBenjamin Herrenschmidt 
17516d03b885SBenjamin Herrenschmidt static int __init memblock_init_debugfs(void)
17526d03b885SBenjamin Herrenschmidt {
17536d03b885SBenjamin Herrenschmidt 	struct dentry *root = debugfs_create_dir("memblock", NULL);
17546d03b885SBenjamin Herrenschmidt 	if (!root)
17556d03b885SBenjamin Herrenschmidt 		return -ENXIO;
17566d03b885SBenjamin Herrenschmidt 	debugfs_create_file("memory", S_IRUGO, root, &memblock.memory, &memblock_debug_fops);
17576d03b885SBenjamin Herrenschmidt 	debugfs_create_file("reserved", S_IRUGO, root, &memblock.reserved, &memblock_debug_fops);
175870210ed9SPhilipp Hachtmann #ifdef CONFIG_HAVE_MEMBLOCK_PHYS_MAP
175970210ed9SPhilipp Hachtmann 	debugfs_create_file("physmem", S_IRUGO, root, &memblock.physmem, &memblock_debug_fops);
176070210ed9SPhilipp Hachtmann #endif
17616d03b885SBenjamin Herrenschmidt 
17626d03b885SBenjamin Herrenschmidt 	return 0;
17636d03b885SBenjamin Herrenschmidt }
17646d03b885SBenjamin Herrenschmidt __initcall(memblock_init_debugfs);
17656d03b885SBenjamin Herrenschmidt 
17666d03b885SBenjamin Herrenschmidt #endif /* CONFIG_DEBUG_FS */
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