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-rw-r--r--include/linux/memblock.h126
1 files changed, 71 insertions, 55 deletions
diff --git a/include/linux/memblock.h b/include/linux/memblock.h
index 50ad19662a32..221118b5a16e 100644
--- a/include/linux/memblock.h
+++ b/include/linux/memblock.h
@@ -40,6 +40,17 @@ extern unsigned long long max_possible_pfn;
* via a driver, and never indicated in the firmware-provided memory map as
* system RAM. This corresponds to IORESOURCE_SYSRAM_DRIVER_MANAGED in the
* kernel resource tree.
+ * @MEMBLOCK_RSRV_NOINIT: reserved memory region for which struct pages are not
+ * fully initialized. Users of this flag are responsible to properly initialize
+ * struct pages of this region
+ * @MEMBLOCK_RSRV_KERN: memory region that is reserved for kernel use,
+ * either explictitly with memblock_reserve_kern() or via memblock
+ * allocation APIs. All memblock allocations set this flag.
+ * @MEMBLOCK_KHO_SCRATCH: memory region that kexec can pass to the next
+ * kernel in handover mode. During early boot, we do not know about all
+ * memory reservations yet, so we get scratch memory from the previous
+ * kernel that we know is good to use. It is the only memory that
+ * allocations may happen from in this phase.
*/
enum memblock_flags {
MEMBLOCK_NONE = 0x0, /* No special request */
@@ -47,6 +58,9 @@ enum memblock_flags {
MEMBLOCK_MIRROR = 0x2, /* mirrored region */
MEMBLOCK_NOMAP = 0x4, /* don't add to kernel direct mapping */
MEMBLOCK_DRIVER_MANAGED = 0x8, /* always detected via a driver */
+ MEMBLOCK_RSRV_NOINIT = 0x10, /* don't initialize struct pages */
+ MEMBLOCK_RSRV_KERN = 0x20, /* memory reserved for kernel use */
+ MEMBLOCK_KHO_SCRATCH = 0x40, /* scratch memory for kexec handover */
};
/**
@@ -113,22 +127,38 @@ int memblock_add_node(phys_addr_t base, phys_addr_t size, int nid,
int memblock_add(phys_addr_t base, phys_addr_t size);
int memblock_remove(phys_addr_t base, phys_addr_t size);
int memblock_phys_free(phys_addr_t base, phys_addr_t size);
-int memblock_reserve(phys_addr_t base, phys_addr_t size);
+int __memblock_reserve(phys_addr_t base, phys_addr_t size, int nid,
+ enum memblock_flags flags);
+
+static __always_inline int memblock_reserve(phys_addr_t base, phys_addr_t size)
+{
+ return __memblock_reserve(base, size, NUMA_NO_NODE, 0);
+}
+
+static __always_inline int memblock_reserve_kern(phys_addr_t base, phys_addr_t size)
+{
+ return __memblock_reserve(base, size, NUMA_NO_NODE, MEMBLOCK_RSRV_KERN);
+}
+
#ifdef CONFIG_HAVE_MEMBLOCK_PHYS_MAP
int memblock_physmem_add(phys_addr_t base, phys_addr_t size);
#endif
void memblock_trim_memory(phys_addr_t align);
+unsigned long memblock_addrs_overlap(phys_addr_t base1, phys_addr_t size1,
+ phys_addr_t base2, phys_addr_t size2);
bool memblock_overlaps_region(struct memblock_type *type,
phys_addr_t base, phys_addr_t size);
+bool memblock_validate_numa_coverage(unsigned long threshold_bytes);
int memblock_mark_hotplug(phys_addr_t base, phys_addr_t size);
int memblock_clear_hotplug(phys_addr_t base, phys_addr_t size);
int memblock_mark_mirror(phys_addr_t base, phys_addr_t size);
int memblock_mark_nomap(phys_addr_t base, phys_addr_t size);
int memblock_clear_nomap(phys_addr_t base, phys_addr_t size);
+int memblock_reserved_mark_noinit(phys_addr_t base, phys_addr_t size);
+int memblock_mark_kho_scratch(phys_addr_t base, phys_addr_t size);
+int memblock_clear_kho_scratch(phys_addr_t base, phys_addr_t size);
-void memblock_free_all(void);
void memblock_free(void *ptr, size_t size);
-void reset_node_managed_pages(pg_data_t *pgdat);
void reset_all_zones_managed_pages(void);
/* Low level functions */
@@ -260,11 +290,21 @@ static inline bool memblock_is_nomap(struct memblock_region *m)
return m->flags & MEMBLOCK_NOMAP;
}
+static inline bool memblock_is_reserved_noinit(struct memblock_region *m)
+{
+ return m->flags & MEMBLOCK_RSRV_NOINIT;
+}
+
static inline bool memblock_is_driver_managed(struct memblock_region *m)
{
return m->flags & MEMBLOCK_DRIVER_MANAGED;
}
+static inline bool memblock_is_kho_scratch(struct memblock_region *m)
+{
+ return m->flags & MEMBLOCK_KHO_SCRATCH;
+}
+
int memblock_search_pfn_nid(unsigned long pfn, unsigned long *start_pfn,
unsigned long *end_pfn);
void __next_mem_pfn_range(int *idx, int nid, unsigned long *out_start_pfn,
@@ -284,49 +324,6 @@ void __next_mem_pfn_range(int *idx, int nid, unsigned long *out_start_pfn,
for (i = -1, __next_mem_pfn_range(&i, nid, p_start, p_end, p_nid); \
i >= 0; __next_mem_pfn_range(&i, nid, p_start, p_end, p_nid))
-#ifdef CONFIG_DEFERRED_STRUCT_PAGE_INIT
-void __next_mem_pfn_range_in_zone(u64 *idx, struct zone *zone,
- unsigned long *out_spfn,
- unsigned long *out_epfn);
-/**
- * for_each_free_mem_pfn_range_in_zone - iterate through zone specific free
- * memblock areas
- * @i: u64 used as loop variable
- * @zone: zone in which all of the memory blocks reside
- * @p_start: ptr to phys_addr_t for start address of the range, can be %NULL
- * @p_end: ptr to phys_addr_t for end address of the range, can be %NULL
- *
- * Walks over free (memory && !reserved) areas of memblock in a specific
- * zone. Available once memblock and an empty zone is initialized. The main
- * assumption is that the zone start, end, and pgdat have been associated.
- * This way we can use the zone to determine NUMA node, and if a given part
- * of the memblock is valid for the zone.
- */
-#define for_each_free_mem_pfn_range_in_zone(i, zone, p_start, p_end) \
- for (i = 0, \
- __next_mem_pfn_range_in_zone(&i, zone, p_start, p_end); \
- i != U64_MAX; \
- __next_mem_pfn_range_in_zone(&i, zone, p_start, p_end))
-
-/**
- * for_each_free_mem_pfn_range_in_zone_from - iterate through zone specific
- * free memblock areas from a given point
- * @i: u64 used as loop variable
- * @zone: zone in which all of the memory blocks reside
- * @p_start: ptr to phys_addr_t for start address of the range, can be %NULL
- * @p_end: ptr to phys_addr_t for end address of the range, can be %NULL
- *
- * Walks over free (memory && !reserved) areas of memblock in a specific
- * zone, continuing from current position. Available as soon as memblock is
- * initialized.
- */
-#define for_each_free_mem_pfn_range_in_zone_from(i, zone, p_start, p_end) \
- for (; i != U64_MAX; \
- __next_mem_pfn_range_in_zone(&i, zone, p_start, p_end))
-
-int __init deferred_page_init_max_threads(const struct cpumask *node_cpumask);
-
-#endif /* CONFIG_DEFERRED_STRUCT_PAGE_INIT */
/**
* for_each_free_mem_range - iterate through free memblock areas
@@ -388,6 +385,10 @@ static inline int memblock_get_region_node(const struct memblock_region *r)
/* Flags for memblock allocation APIs */
#define MEMBLOCK_ALLOC_ANYWHERE (~(phys_addr_t)0)
#define MEMBLOCK_ALLOC_ACCESSIBLE 0
+/*
+ * MEMBLOCK_ALLOC_NOLEAKTRACE avoids kmemleak tracing. It implies
+ * MEMBLOCK_ALLOC_ACCESSIBLE
+ */
#define MEMBLOCK_ALLOC_NOLEAKTRACE 1
/* We are using top down, so it is safe to use 0 here */
@@ -427,6 +428,12 @@ static __always_inline void *memblock_alloc(phys_addr_t size, phys_addr_t align)
MEMBLOCK_ALLOC_ACCESSIBLE, NUMA_NO_NODE);
}
+void *__memblock_alloc_or_panic(phys_addr_t size, phys_addr_t align,
+ const char *func);
+
+#define memblock_alloc_or_panic(size, align) \
+ __memblock_alloc_or_panic(size, align, __func__)
+
static inline void *memblock_alloc_raw(phys_addr_t size,
phys_addr_t align)
{
@@ -435,7 +442,7 @@ static inline void *memblock_alloc_raw(phys_addr_t size,
NUMA_NO_NODE);
}
-static inline void *memblock_alloc_from(phys_addr_t size,
+static __always_inline void *memblock_alloc_from(phys_addr_t size,
phys_addr_t align,
phys_addr_t min_addr)
{
@@ -477,6 +484,8 @@ static inline __init_memblock bool memblock_bottom_up(void)
phys_addr_t memblock_phys_mem_size(void);
phys_addr_t memblock_reserved_size(void);
+phys_addr_t memblock_reserved_kern_size(phys_addr_t limit, int nid);
+unsigned long memblock_estimated_nr_free_pages(void);
phys_addr_t memblock_start_of_DRAM(void);
phys_addr_t memblock_end_of_DRAM(void);
void memblock_enforce_memory_limit(phys_addr_t memory_limit);
@@ -554,7 +563,7 @@ static inline unsigned long memblock_region_reserved_end_pfn(const struct memblo
}
/**
- * for_each_mem_region - itereate over memory regions
+ * for_each_mem_region - iterate over memory regions
* @region: loop variable
*/
#define for_each_mem_region(region) \
@@ -582,9 +591,7 @@ extern void *alloc_large_system_hash(const char *tablename,
unsigned long high_limit);
#define HASH_EARLY 0x00000001 /* Allocating during early boot? */
-#define HASH_SMALL 0x00000002 /* sub-page allocation allowed, min
- * shift passed via *_hash_shift */
-#define HASH_ZERO 0x00000004 /* Zero allocated hash table */
+#define HASH_ZERO 0x00000002 /* Zero allocated hash table */
/* Only NUMA needs hash distribution. 64bit NUMA architectures have
* sufficient vmalloc space.
@@ -597,12 +604,21 @@ extern int hashdist; /* Distribute hashes across NUMA nodes? */
#endif
#ifdef CONFIG_MEMTEST
-extern void early_memtest(phys_addr_t start, phys_addr_t end);
+void early_memtest(phys_addr_t start, phys_addr_t end);
+void memtest_report_meminfo(struct seq_file *m);
#else
-static inline void early_memtest(phys_addr_t start, phys_addr_t end)
-{
-}
+static inline void early_memtest(phys_addr_t start, phys_addr_t end) { }
+static inline void memtest_report_meminfo(struct seq_file *m) { }
#endif
+#ifdef CONFIG_MEMBLOCK_KHO_SCRATCH
+void memblock_set_kho_scratch_only(void);
+void memblock_clear_kho_scratch_only(void);
+void memmap_init_kho_scratch_pages(void);
+#else
+static inline void memblock_set_kho_scratch_only(void) { }
+static inline void memblock_clear_kho_scratch_only(void) { }
+static inline void memmap_init_kho_scratch_pages(void) {}
+#endif
#endif /* _LINUX_MEMBLOCK_H */