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authorLinus Torvalds <torvalds@linux-foundation.org>2025-05-31 15:44:16 -0700
committerLinus Torvalds <torvalds@linux-foundation.org>2025-05-31 15:44:16 -0700
commit00c010e130e58301db2ea0cec1eadc931e1cb8cf (patch)
tree885eca54cb733ca2b91fc563f09a23f8c0123fe1 /include/linux
parentb42966552bb8d3027b66782fc1b53ce570e4d356 (diff)
parentc544a952ba61b1a025455098033c17e0573ab085 (diff)
Merge tag 'mm-stable-2025-05-31-14-50' of git://git.kernel.org/pub/scm/linux/kernel/git/akpm/mm
Pull MM updates from Andrew Morton: - "Add folio_mk_pte()" from Matthew Wilcox simplifies the act of creating a pte which addresses the first page in a folio and reduces the amount of plumbing which architecture must implement to provide this. - "Misc folio patches for 6.16" from Matthew Wilcox is a shower of largely unrelated folio infrastructure changes which clean things up and better prepare us for future work. - "memory,x86,acpi: hotplug memory alignment advisement" from Gregory Price adds early-init code to prevent x86 from leaving physical memory unused when physical address regions are not aligned to memory block size. - "mm/compaction: allow more aggressive proactive compaction" from Michal Clapinski provides some tuning of the (sadly, hard-coded (more sadly, not auto-tuned)) thresholds for our invokation of proactive compaction. In a simple test case, the reduction of a guest VM's memory consumption was dramatic. - "Minor cleanups and improvements to swap freeing code" from Kemeng Shi provides some code cleaups and a small efficiency improvement to this part of our swap handling code. - "ptrace: introduce PTRACE_SET_SYSCALL_INFO API" from Dmitry Levin adds the ability for a ptracer to modify syscalls arguments. At this time we can alter only "system call information that are used by strace system call tampering, namely, syscall number, syscall arguments, and syscall return value. This series should have been incorporated into mm.git's "non-MM" branch, but I goofed. - "fs/proc: extend the PAGEMAP_SCAN ioctl to report guard regions" from Andrei Vagin extends the info returned by the PAGEMAP_SCAN ioctl against /proc/pid/pagemap. This permits CRIU to more efficiently get at the info about guard regions. - "Fix parameter passed to page_mapcount_is_type()" from Gavin Shan implements that fix. No runtime effect is expected because validate_page_before_insert() happens to fix up this error. - "kernel/events/uprobes: uprobe_write_opcode() rewrite" from David Hildenbrand basically brings uprobe text poking into the current decade. Remove a bunch of hand-rolled implementation in favor of using more current facilities. - "mm/ptdump: Drop assumption that pxd_val() is u64" from Anshuman Khandual provides enhancements and generalizations to the pte dumping code. This might be needed when 128-bit Page Table Descriptors are enabled for ARM. - "Always call constructor for kernel page tables" from Kevin Brodsky ensures that the ctor/dtor is always called for kernel pgtables, as it already is for user pgtables. This permits the addition of more functionality such as "insert hooks to protect page tables". This change does result in various architectures performing unnecesary work, but this is fixed up where it is anticipated to occur. - "Rust support for mm_struct, vm_area_struct, and mmap" from Alice Ryhl adds plumbing to permit Rust access to core MM structures. - "fix incorrectly disallowed anonymous VMA merges" from Lorenzo Stoakes takes advantage of some VMA merging opportunities which we've been missing for 15 years. - "mm/madvise: batch tlb flushes for MADV_DONTNEED and MADV_FREE" from SeongJae Park optimizes process_madvise()'s TLB flushing. Instead of flushing each address range in the provided iovec, we batch the flushing across all the iovec entries. The syscall's cost was approximately halved with a microbenchmark which was designed to load this particular operation. - "Track node vacancy to reduce worst case allocation counts" from Sidhartha Kumar makes the maple tree smarter about its node preallocation. stress-ng mmap performance increased by single-digit percentages and the amount of unnecessarily preallocated memory was dramaticelly reduced. - "mm/gup: Minor fix, cleanup and improvements" from Baoquan He removes a few unnecessary things which Baoquan noted when reading the code. - ""Enhance sysfs handling for memory hotplug in weighted interleave" from Rakie Kim "enhances the weighted interleave policy in the memory management subsystem by improving sysfs handling, fixing memory leaks, and introducing dynamic sysfs updates for memory hotplug support". Fixes things on error paths which we are unlikely to hit. - "mm/damon: auto-tune DAMOS for NUMA setups including tiered memory" from SeongJae Park introduces new DAMOS quota goal metrics which eliminate the manual tuning which is required when utilizing DAMON for memory tiering. - "mm/vmalloc.c: code cleanup and improvements" from Baoquan He provides cleanups and small efficiency improvements which Baoquan found via code inspection. - "vmscan: enforce mems_effective during demotion" from Gregory Price changes reclaim to respect cpuset.mems_effective during demotion when possible. because presently, reclaim explicitly ignores cpuset.mems_effective when demoting, which may cause the cpuset settings to violated. This is useful for isolating workloads on a multi-tenant system from certain classes of memory more consistently. - "Clean up split_huge_pmd_locked() and remove unnecessary folio pointers" from Gavin Guo provides minor cleanups and efficiency gains in in the huge page splitting and migrating code. - "Use kmem_cache for memcg alloc" from Huan Yang creates a slab cache for `struct mem_cgroup', yielding improved memory utilization. - "add max arg to swappiness in memory.reclaim and lru_gen" from Zhongkun He adds a new "max" argument to the "swappiness=" argument for memory.reclaim MGLRU's lru_gen. This directs proactive reclaim to reclaim from only anon folios rather than file-backed folios. - "kexec: introduce Kexec HandOver (KHO)" from Mike Rapoport is the first step on the path to permitting the kernel to maintain existing VMs while replacing the host kernel via file-based kexec. At this time only memblock's reserve_mem is preserved. - "mm: Introduce for_each_valid_pfn()" from David Woodhouse provides and uses a smarter way of looping over a pfn range. By skipping ranges of invalid pfns. - "sched/numa: Skip VMA scanning on memory pinned to one NUMA node via cpuset.mems" from Libo Chen removes a lot of pointless VMA scanning when a task is pinned a single NUMA mode. Dramatic performance benefits were seen in some real world cases. - "JFS: Implement migrate_folio for jfs_metapage_aops" from Shivank Garg addresses a warning which occurs during memory compaction when using JFS. - "move all VMA allocation, freeing and duplication logic to mm" from Lorenzo Stoakes moves some VMA code from kernel/fork.c into the more appropriate mm/vma.c. - "mm, swap: clean up swap cache mapping helper" from Kairui Song provides code consolidation and cleanups related to the folio_index() function. - "mm/gup: Cleanup memfd_pin_folios()" from Vishal Moola does that. - "memcg: Fix test_memcg_min/low test failures" from Waiman Long addresses some bogus failures which are being reported by the test_memcontrol selftest. - "eliminate mmap() retry merge, add .mmap_prepare hook" from Lorenzo Stoakes commences the deprecation of file_operations.mmap() in favor of the new file_operations.mmap_prepare(). The latter is more restrictive and prevents drivers from messing with things in ways which, amongst other problems, may defeat VMA merging. - "memcg: decouple memcg and objcg stocks"" from Shakeel Butt decouples the per-cpu memcg charge cache from the objcg's one. This is a step along the way to making memcg and objcg charging NMI-safe, which is a BPF requirement. - "mm/damon: minor fixups and improvements for code, tests, and documents" from SeongJae Park is yet another batch of miscellaneous DAMON changes. Fix and improve minor problems in code, tests and documents. - "memcg: make memcg stats irq safe" from Shakeel Butt converts memcg stats to be irq safe. Another step along the way to making memcg charging and stats updates NMI-safe, a BPF requirement. - "Let unmap_hugepage_range() and several related functions take folio instead of page" from Fan Ni provides folio conversions in the hugetlb code. * tag 'mm-stable-2025-05-31-14-50' of git://git.kernel.org/pub/scm/linux/kernel/git/akpm/mm: (285 commits) mm: pcp: increase pcp->free_count threshold to trigger free_high mm/hugetlb: convert use of struct page to folio in __unmap_hugepage_range() mm/hugetlb: refactor __unmap_hugepage_range() to take folio instead of page mm/hugetlb: refactor unmap_hugepage_range() to take folio instead of page mm/hugetlb: pass folio instead of page to unmap_ref_private() memcg: objcg stock trylock without irq disabling memcg: no stock lock for cpu hot-unplug memcg: make __mod_memcg_lruvec_state re-entrant safe against irqs memcg: make count_memcg_events re-entrant safe against irqs memcg: make mod_memcg_state re-entrant safe against irqs memcg: move preempt disable to callers of memcg_rstat_updated memcg: memcg_rstat_updated re-entrant safe against irqs mm: khugepaged: decouple SHMEM and file folios' collapse selftests/eventfd: correct test name and improve messages alloc_tag: check mem_profiling_support in alloc_tag_init Docs/damon: update titles and brief introductions to explain DAMOS selftests/damon/_damon_sysfs: read tried regions directories in order mm/damon/tests/core-kunit: add a test for damos_set_filters_default_reject() mm/damon/paddr: remove unused variable, folio_list, in damon_pa_stat() mm/damon/sysfs-schemes: fix wrong comment on damons_sysfs_quota_goal_metric_strs ...
Diffstat (limited to 'include/linux')
-rw-r--r--include/linux/cpuset.h9
-rw-r--r--include/linux/damon.h6
-rw-r--r--include/linux/fs.h25
-rw-r--r--include/linux/gfp.h8
-rw-r--r--include/linux/huge_mm.h17
-rw-r--r--include/linux/hugetlb.h15
-rw-r--r--include/linux/kexec.h5
-rw-r--r--include/linux/kexec_handover.h109
-rw-r--r--include/linux/khugepaged.h8
-rw-r--r--include/linux/maple_tree.h4
-rw-r--r--include/linux/memblock.h41
-rw-r--r--include/linux/memcontrol.h55
-rw-r--r--include/linux/memory.h10
-rw-r--r--include/linux/mempolicy.h4
-rw-r--r--include/linux/mm.h357
-rw-r--r--include/linux/mm_inline.h2
-rw-r--r--include/linux/mm_types.h36
-rw-r--r--include/linux/mmap_lock.h227
-rw-r--r--include/linux/mmzone.h88
-rw-r--r--include/linux/numa_memblks.h1
-rw-r--r--include/linux/page-flags-layout.h4
-rw-r--r--include/linux/page-flags.h21
-rw-r--r--include/linux/pagemap.h91
-rw-r--r--include/linux/percpu-defs.h2
-rw-r--r--include/linux/pgtable.h131
-rw-r--r--include/linux/ptdump.h15
-rw-r--r--include/linux/rmap.h2
-rw-r--r--include/linux/swap.h12
-rw-r--r--include/linux/uprobes.h6
-rw-r--r--include/linux/util_macros.h3
-rw-r--r--include/linux/xarray.h24
-rw-r--r--include/linux/zpool.h4
-rw-r--r--include/linux/zsmalloc.h3
33 files changed, 840 insertions, 505 deletions
diff --git a/include/linux/cpuset.h b/include/linux/cpuset.h
index 5466c96a33db..2ddb256187b5 100644
--- a/include/linux/cpuset.h
+++ b/include/linux/cpuset.h
@@ -82,11 +82,11 @@ extern nodemask_t cpuset_mems_allowed(struct task_struct *p);
void cpuset_init_current_mems_allowed(void);
int cpuset_nodemask_valid_mems_allowed(nodemask_t *nodemask);
-extern bool cpuset_node_allowed(int node, gfp_t gfp_mask);
+extern bool cpuset_current_node_allowed(int node, gfp_t gfp_mask);
static inline bool __cpuset_zone_allowed(struct zone *z, gfp_t gfp_mask)
{
- return cpuset_node_allowed(zone_to_nid(z), gfp_mask);
+ return cpuset_current_node_allowed(zone_to_nid(z), gfp_mask);
}
static inline bool cpuset_zone_allowed(struct zone *z, gfp_t gfp_mask)
@@ -173,6 +173,7 @@ static inline void set_mems_allowed(nodemask_t nodemask)
task_unlock(current);
}
+extern bool cpuset_node_allowed(struct cgroup *cgroup, int nid);
#else /* !CONFIG_CPUSETS */
static inline bool cpusets_enabled(void) { return false; }
@@ -293,6 +294,10 @@ static inline bool read_mems_allowed_retry(unsigned int seq)
return false;
}
+static inline bool cpuset_node_allowed(struct cgroup *cgroup, int nid)
+{
+ return true;
+}
#endif /* !CONFIG_CPUSETS */
#endif /* _LINUX_CPUSET_H */
diff --git a/include/linux/damon.h b/include/linux/damon.h
index 47e36e6ea203..a4011726cb3b 100644
--- a/include/linux/damon.h
+++ b/include/linux/damon.h
@@ -145,6 +145,8 @@ enum damos_action {
*
* @DAMOS_QUOTA_USER_INPUT: User-input value.
* @DAMOS_QUOTA_SOME_MEM_PSI_US: System level some memory PSI in us.
+ * @DAMOS_QUOTA_NODE_MEM_USED_BP: MemUsed ratio of a node.
+ * @DAMOS_QUOTA_NODE_MEM_FREE_BP: MemFree ratio of a node.
* @NR_DAMOS_QUOTA_GOAL_METRICS: Number of DAMOS quota goal metrics.
*
* Metrics equal to larger than @NR_DAMOS_QUOTA_GOAL_METRICS are unsupported.
@@ -152,6 +154,8 @@ enum damos_action {
enum damos_quota_goal_metric {
DAMOS_QUOTA_USER_INPUT,
DAMOS_QUOTA_SOME_MEM_PSI_US,
+ DAMOS_QUOTA_NODE_MEM_USED_BP,
+ DAMOS_QUOTA_NODE_MEM_FREE_BP,
NR_DAMOS_QUOTA_GOAL_METRICS,
};
@@ -161,6 +165,7 @@ enum damos_quota_goal_metric {
* @target_value: Target value of @metric to achieve with the tuning.
* @current_value: Current value of @metric.
* @last_psi_total: Last measured total PSI
+ * @nid: Node id.
* @list: List head for siblings.
*
* Data structure for getting the current score of the quota tuning goal. The
@@ -179,6 +184,7 @@ struct damos_quota_goal {
/* metric-dependent fields */
union {
u64 last_psi_total;
+ int nid;
};
struct list_head list;
};
diff --git a/include/linux/fs.h b/include/linux/fs.h
index 27c1eb1f8b37..da86fcb11882 100644
--- a/include/linux/fs.h
+++ b/include/linux/fs.h
@@ -2189,6 +2189,7 @@ struct file_operations {
int (*uring_cmd)(struct io_uring_cmd *ioucmd, unsigned int issue_flags);
int (*uring_cmd_iopoll)(struct io_uring_cmd *, struct io_comp_batch *,
unsigned int poll_flags);
+ int (*mmap_prepare)(struct vm_area_desc *);
} __randomize_layout;
/* Supports async buffered reads */
@@ -2258,11 +2259,35 @@ struct inode_operations {
struct offset_ctx *(*get_offset_ctx)(struct inode *inode);
} ____cacheline_aligned;
+/* Did the driver provide valid mmap hook configuration? */
+static inline bool file_has_valid_mmap_hooks(struct file *file)
+{
+ bool has_mmap = file->f_op->mmap;
+ bool has_mmap_prepare = file->f_op->mmap_prepare;
+
+ /* Hooks are mutually exclusive. */
+ if (WARN_ON_ONCE(has_mmap && has_mmap_prepare))
+ return false;
+ if (!has_mmap && !has_mmap_prepare)
+ return false;
+
+ return true;
+}
+
static inline int call_mmap(struct file *file, struct vm_area_struct *vma)
{
+ if (WARN_ON_ONCE(file->f_op->mmap_prepare))
+ return -EINVAL;
+
return file->f_op->mmap(file, vma);
}
+static inline int __call_mmap_prepare(struct file *file,
+ struct vm_area_desc *desc)
+{
+ return file->f_op->mmap_prepare(desc);
+}
+
extern ssize_t vfs_read(struct file *, char __user *, size_t, loff_t *);
extern ssize_t vfs_write(struct file *, const char __user *, size_t, loff_t *);
extern ssize_t vfs_copy_file_range(struct file *, loff_t , struct file *,
diff --git a/include/linux/gfp.h b/include/linux/gfp.h
index c9fa6309c903..be160e8d8bcb 100644
--- a/include/linux/gfp.h
+++ b/include/linux/gfp.h
@@ -45,13 +45,13 @@ static inline bool gfpflags_allow_spinning(const gfp_t gfp_flags)
* !__GFP_DIRECT_RECLAIM -> direct claim is not allowed.
* !__GFP_KSWAPD_RECLAIM -> it's not safe to wake up kswapd.
* All GFP_* flags including GFP_NOWAIT use one or both flags.
- * try_alloc_pages() is the only API that doesn't specify either flag.
+ * alloc_pages_nolock() is the only API that doesn't specify either flag.
*
* This is stronger than GFP_NOWAIT or GFP_ATOMIC because
* those are guaranteed to never block on a sleeping lock.
* Here we are enforcing that the allocation doesn't ever spin
* on any locks (i.e. only trylocks). There is no high level
- * GFP_$FOO flag for this use in try_alloc_pages() as the
+ * GFP_$FOO flag for this use in alloc_pages_nolock() as the
* regular page allocator doesn't fully support this
* allocation mode.
*/
@@ -354,8 +354,8 @@ static inline struct page *alloc_page_vma_noprof(gfp_t gfp,
}
#define alloc_page_vma(...) alloc_hooks(alloc_page_vma_noprof(__VA_ARGS__))
-struct page *try_alloc_pages_noprof(int nid, unsigned int order);
-#define try_alloc_pages(...) alloc_hooks(try_alloc_pages_noprof(__VA_ARGS__))
+struct page *alloc_pages_nolock_noprof(int nid, unsigned int order);
+#define alloc_pages_nolock(...) alloc_hooks(alloc_pages_nolock_noprof(__VA_ARGS__))
extern unsigned long get_free_pages_noprof(gfp_t gfp_mask, unsigned int order);
#define __get_free_pages(...) alloc_hooks(get_free_pages_noprof(__VA_ARGS__))
diff --git a/include/linux/huge_mm.h b/include/linux/huge_mm.h
index e893d546a49f..2f190c90192d 100644
--- a/include/linux/huge_mm.h
+++ b/include/linux/huge_mm.h
@@ -395,7 +395,7 @@ static inline int split_huge_page(struct page *page)
void deferred_split_folio(struct folio *folio, bool partially_mapped);
void __split_huge_pmd(struct vm_area_struct *vma, pmd_t *pmd,
- unsigned long address, bool freeze, struct folio *folio);
+ unsigned long address, bool freeze);
#define split_huge_pmd(__vma, __pmd, __address) \
do { \
@@ -403,12 +403,11 @@ void __split_huge_pmd(struct vm_area_struct *vma, pmd_t *pmd,
if (is_swap_pmd(*____pmd) || pmd_trans_huge(*____pmd) \
|| pmd_devmap(*____pmd)) \
__split_huge_pmd(__vma, __pmd, __address, \
- false, NULL); \
+ false); \
} while (0)
-
void split_huge_pmd_address(struct vm_area_struct *vma, unsigned long address,
- bool freeze, struct folio *folio);
+ bool freeze);
void __split_huge_pud(struct vm_area_struct *vma, pud_t *pud,
unsigned long address);
@@ -495,15 +494,13 @@ static inline bool is_huge_zero_pmd(pmd_t pmd)
struct folio *mm_get_huge_zero_folio(struct mm_struct *mm);
void mm_put_huge_zero_folio(struct mm_struct *mm);
-#define mk_huge_pmd(page, prot) pmd_mkhuge(mk_pmd(page, prot))
-
static inline bool thp_migration_supported(void)
{
return IS_ENABLED(CONFIG_ARCH_ENABLE_THP_MIGRATION);
}
void split_huge_pmd_locked(struct vm_area_struct *vma, unsigned long address,
- pmd_t *pmd, bool freeze, struct folio *folio);
+ pmd_t *pmd, bool freeze);
bool unmap_huge_pmd_locked(struct vm_area_struct *vma, unsigned long addr,
pmd_t *pmdp, struct folio *folio);
@@ -578,12 +575,12 @@ static inline void deferred_split_folio(struct folio *folio, bool partially_mapp
do { } while (0)
static inline void __split_huge_pmd(struct vm_area_struct *vma, pmd_t *pmd,
- unsigned long address, bool freeze, struct folio *folio) {}
+ unsigned long address, bool freeze) {}
static inline void split_huge_pmd_address(struct vm_area_struct *vma,
- unsigned long address, bool freeze, struct folio *folio) {}
+ unsigned long address, bool freeze) {}
static inline void split_huge_pmd_locked(struct vm_area_struct *vma,
unsigned long address, pmd_t *pmd,
- bool freeze, struct folio *folio) {}
+ bool freeze) {}
static inline bool unmap_huge_pmd_locked(struct vm_area_struct *vma,
unsigned long addr, pmd_t *pmdp,
diff --git a/include/linux/hugetlb.h b/include/linux/hugetlb.h
index 4861a7e304bb..0598f36931de 100644
--- a/include/linux/hugetlb.h
+++ b/include/linux/hugetlb.h
@@ -14,6 +14,7 @@
#include <linux/pgtable.h>
#include <linux/gfp.h>
#include <linux/userfaultfd_k.h>
+#include <linux/nodemask.h>
struct ctl_table;
struct user_struct;
@@ -128,12 +129,12 @@ int move_hugetlb_page_tables(struct vm_area_struct *vma,
int copy_hugetlb_page_range(struct mm_struct *, struct mm_struct *,
struct vm_area_struct *, struct vm_area_struct *);
void unmap_hugepage_range(struct vm_area_struct *,
- unsigned long, unsigned long, struct page *,
- zap_flags_t);
+ unsigned long start, unsigned long end,
+ struct folio *, zap_flags_t);
void __unmap_hugepage_range(struct mmu_gather *tlb,
struct vm_area_struct *vma,
unsigned long start, unsigned long end,
- struct page *ref_page, zap_flags_t zap_flags);
+ struct folio *, zap_flags_t zap_flags);
void hugetlb_report_meminfo(struct seq_file *);
int hugetlb_report_node_meminfo(char *buf, int len, int nid);
void hugetlb_show_meminfo_node(int nid);
@@ -176,6 +177,8 @@ extern struct list_head huge_boot_pages[MAX_NUMNODES];
void hugetlb_bootmem_alloc(void);
bool hugetlb_bootmem_allocated(void);
+extern nodemask_t hugetlb_bootmem_nodes;
+void hugetlb_bootmem_set_nodes(void);
/* arch callbacks */
@@ -453,7 +456,7 @@ static inline long hugetlb_change_protection(
static inline void __unmap_hugepage_range(struct mmu_gather *tlb,
struct vm_area_struct *vma, unsigned long start,
- unsigned long end, struct page *ref_page,
+ unsigned long end, struct folio *folio,
zap_flags_t zap_flags)
{
BUG();
@@ -700,7 +703,7 @@ struct huge_bootmem_page {
bool hugetlb_bootmem_page_zones_valid(int nid, struct huge_bootmem_page *m);
-int isolate_or_dissolve_huge_page(struct page *page, struct list_head *list);
+int isolate_or_dissolve_huge_folio(struct folio *folio, struct list_head *list);
int replace_free_hugepage_folios(unsigned long start_pfn, unsigned long end_pfn);
void wait_for_freed_hugetlb_folios(void);
struct folio *alloc_hugetlb_folio(struct vm_area_struct *vma,
@@ -1088,7 +1091,7 @@ static inline struct folio *filemap_lock_hugetlb_folio(struct hstate *h,
return NULL;
}
-static inline int isolate_or_dissolve_huge_page(struct page *page,
+static inline int isolate_or_dissolve_huge_folio(struct folio *folio,
struct list_head *list)
{
return -ENOMEM;
diff --git a/include/linux/kexec.h b/include/linux/kexec.h
index 53ef1b6c8712..f03ee2b40816 100644
--- a/include/linux/kexec.h
+++ b/include/linux/kexec.h
@@ -374,6 +374,11 @@ struct kimage {
bool is_ima_segment_index_set;
#endif
+ struct {
+ struct kexec_segment *scratch;
+ phys_addr_t fdt;
+ } kho;
+
/* Core ELF header buffer */
void *elf_headers;
unsigned long elf_headers_sz;
diff --git a/include/linux/kexec_handover.h b/include/linux/kexec_handover.h
new file mode 100644
index 000000000000..348844cffb13
--- /dev/null
+++ b/include/linux/kexec_handover.h
@@ -0,0 +1,109 @@
+/* SPDX-License-Identifier: GPL-2.0 */
+#ifndef LINUX_KEXEC_HANDOVER_H
+#define LINUX_KEXEC_HANDOVER_H
+
+#include <linux/types.h>
+#include <linux/errno.h>
+
+struct kho_scratch {
+ phys_addr_t addr;
+ phys_addr_t size;
+};
+
+/* KHO Notifier index */
+enum kho_event {
+ KEXEC_KHO_FINALIZE = 0,
+ KEXEC_KHO_ABORT = 1,
+};
+
+struct folio;
+struct notifier_block;
+
+#define DECLARE_KHOSER_PTR(name, type) \
+ union { \
+ phys_addr_t phys; \
+ type ptr; \
+ } name
+#define KHOSER_STORE_PTR(dest, val) \
+ ({ \
+ typeof(val) v = val; \
+ typecheck(typeof((dest).ptr), v); \
+ (dest).phys = virt_to_phys(v); \
+ })
+#define KHOSER_LOAD_PTR(src) \
+ ({ \
+ typeof(src) s = src; \
+ (typeof((s).ptr))((s).phys ? phys_to_virt((s).phys) : NULL); \
+ })
+
+struct kho_serialization;
+
+#ifdef CONFIG_KEXEC_HANDOVER
+bool kho_is_enabled(void);
+
+int kho_preserve_folio(struct folio *folio);
+int kho_preserve_phys(phys_addr_t phys, size_t size);
+struct folio *kho_restore_folio(phys_addr_t phys);
+int kho_add_subtree(struct kho_serialization *ser, const char *name, void *fdt);
+int kho_retrieve_subtree(const char *name, phys_addr_t *phys);
+
+int register_kho_notifier(struct notifier_block *nb);
+int unregister_kho_notifier(struct notifier_block *nb);
+
+void kho_memory_init(void);
+
+void kho_populate(phys_addr_t fdt_phys, u64 fdt_len, phys_addr_t scratch_phys,
+ u64 scratch_len);
+#else
+static inline bool kho_is_enabled(void)
+{
+ return false;
+}
+
+static inline int kho_preserve_folio(struct folio *folio)
+{
+ return -EOPNOTSUPP;
+}
+
+static inline int kho_preserve_phys(phys_addr_t phys, size_t size)
+{
+ return -EOPNOTSUPP;
+}
+
+static inline struct folio *kho_restore_folio(phys_addr_t phys)
+{
+ return NULL;
+}
+
+static inline int kho_add_subtree(struct kho_serialization *ser,
+ const char *name, void *fdt)
+{
+ return -EOPNOTSUPP;
+}
+
+static inline int kho_retrieve_subtree(const char *name, phys_addr_t *phys)
+{
+ return -EOPNOTSUPP;
+}
+
+static inline int register_kho_notifier(struct notifier_block *nb)
+{
+ return -EOPNOTSUPP;
+}
+
+static inline int unregister_kho_notifier(struct notifier_block *nb)
+{
+ return -EOPNOTSUPP;
+}
+
+static inline void kho_memory_init(void)
+{
+}
+
+static inline void kho_populate(phys_addr_t fdt_phys, u64 fdt_len,
+ phys_addr_t scratch_phys, u64 scratch_len)
+{
+}
+#endif /* CONFIG_KEXEC_HANDOVER */
+
+#endif /* LINUX_KEXEC_HANDOVER_H */
diff --git a/include/linux/khugepaged.h b/include/linux/khugepaged.h
index 1f46046080f5..b8d69cfbb58b 100644
--- a/include/linux/khugepaged.h
+++ b/include/linux/khugepaged.h
@@ -15,16 +15,8 @@ extern void khugepaged_enter_vma(struct vm_area_struct *vma,
unsigned long vm_flags);
extern void khugepaged_min_free_kbytes_update(void);
extern bool current_is_khugepaged(void);
-#ifdef CONFIG_SHMEM
extern int collapse_pte_mapped_thp(struct mm_struct *mm, unsigned long addr,
bool install_pmd);
-#else
-static inline int collapse_pte_mapped_thp(struct mm_struct *mm,
- unsigned long addr, bool install_pmd)
-{
- return 0;
-}
-#endif
static inline void khugepaged_fork(struct mm_struct *mm, struct mm_struct *oldmm)
{
diff --git a/include/linux/maple_tree.h b/include/linux/maple_tree.h
index cbbcd18d4186..9ef129038224 100644
--- a/include/linux/maple_tree.h
+++ b/include/linux/maple_tree.h
@@ -463,6 +463,8 @@ struct ma_wr_state {
void __rcu **slots; /* mas->node->slots pointer */
void *entry; /* The entry to write */
void *content; /* The existing entry that is being overwritten */
+ unsigned char vacant_height; /* Height of lowest node with free space */
+ unsigned char sufficient_height;/* Height of lowest node with min sufficiency + 1 nodes */
};
#define mas_lock(mas) spin_lock(&((mas)->tree->ma_lock))
@@ -498,6 +500,8 @@ struct ma_wr_state {
.mas = ma_state, \
.content = NULL, \
.entry = wr_entry, \
+ .vacant_height = 0, \
+ .sufficient_height = 0 \
}
#define MA_TOPIARY(name, tree) \
diff --git a/include/linux/memblock.h b/include/linux/memblock.h
index ef5a1ecc6e59..bb19a2534224 100644
--- a/include/linux/memblock.h
+++ b/include/linux/memblock.h
@@ -42,6 +42,14 @@ extern unsigned long long max_possible_pfn;
* kernel resource tree.
* @MEMBLOCK_RSRV_NOINIT: memory region for which struct pages are
* not initialized (only for reserved regions).
+ * @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 */
@@ -50,6 +58,8 @@ enum memblock_flags {
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 */
};
/**
@@ -116,7 +126,19 @@ 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
@@ -132,6 +154,8 @@ 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(void *ptr, size_t size);
void reset_all_zones_managed_pages(void);
@@ -275,6 +299,11 @@ 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,
@@ -476,6 +505,7 @@ 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);
@@ -602,5 +632,14 @@ 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 */
diff --git a/include/linux/memcontrol.h b/include/linux/memcontrol.h
index 53364526d877..f7848f73f41c 100644
--- a/include/linux/memcontrol.h
+++ b/include/linux/memcontrol.h
@@ -903,19 +903,9 @@ struct mem_cgroup *mem_cgroup_get_oom_group(struct task_struct *victim,
struct mem_cgroup *oom_domain);
void mem_cgroup_print_oom_group(struct mem_cgroup *memcg);
-void __mod_memcg_state(struct mem_cgroup *memcg, enum memcg_stat_item idx,
- int val);
-
/* idx can be of type enum memcg_stat_item or node_stat_item */
-static inline void mod_memcg_state(struct mem_cgroup *memcg,
- enum memcg_stat_item idx, int val)
-{
- unsigned long flags;
-
- local_irq_save(flags);
- __mod_memcg_state(memcg, idx, val);
- local_irq_restore(flags);
-}
+void mod_memcg_state(struct mem_cgroup *memcg,
+ enum memcg_stat_item idx, int val);
static inline void mod_memcg_page_state(struct page *page,
enum memcg_stat_item idx, int val)
@@ -952,19 +942,8 @@ static inline void mod_lruvec_kmem_state(void *p, enum node_stat_item idx,
local_irq_restore(flags);
}
-void __count_memcg_events(struct mem_cgroup *memcg, enum vm_event_item idx,
- unsigned long count);
-
-static inline void count_memcg_events(struct mem_cgroup *memcg,
- enum vm_event_item idx,
- unsigned long count)
-{
- unsigned long flags;
-
- local_irq_save(flags);
- __count_memcg_events(memcg, idx, count);
- local_irq_restore(flags);
-}
+void count_memcg_events(struct mem_cgroup *memcg, enum vm_event_item idx,
+ unsigned long count);
static inline void count_memcg_folio_events(struct folio *folio,
enum vm_event_item idx, unsigned long nr)
@@ -1057,6 +1036,7 @@ static inline u64 cgroup_id_from_mm(struct mm_struct *mm)
return id;
}
+extern int mem_cgroup_init(void);
#else /* CONFIG_MEMCG */
#define MEM_CGROUP_ID_SHIFT 0
@@ -1374,12 +1354,6 @@ static inline void mem_cgroup_print_oom_group(struct mem_cgroup *memcg)
{
}
-static inline void __mod_memcg_state(struct mem_cgroup *memcg,
- enum memcg_stat_item idx,
- int nr)
-{
-}
-
static inline void mod_memcg_state(struct mem_cgroup *memcg,
enum memcg_stat_item idx,
int nr)
@@ -1433,12 +1407,6 @@ static inline void mod_lruvec_kmem_state(void *p, enum node_stat_item idx,
}
static inline void count_memcg_events(struct mem_cgroup *memcg,
- enum vm_event_item idx,
- unsigned long count)
-{
-}
-
-static inline void __count_memcg_events(struct mem_cgroup *memcg,
enum vm_event_item idx,
unsigned long count)
{
@@ -1472,6 +1440,8 @@ static inline u64 cgroup_id_from_mm(struct mm_struct *mm)
{
return 0;
}
+
+static inline int mem_cgroup_init(void) { return 0; }
#endif /* CONFIG_MEMCG */
/*
@@ -1736,6 +1706,8 @@ static inline void count_objcg_events(struct obj_cgroup *objcg,
rcu_read_unlock();
}
+bool mem_cgroup_node_allowed(struct mem_cgroup *memcg, int nid);
+
#else
static inline bool mem_cgroup_kmem_disabled(void)
{
@@ -1793,6 +1765,15 @@ static inline void count_objcg_events(struct obj_cgroup *objcg,
{
}
+static inline ino_t page_cgroup_ino(struct page *page)
+{
+ return 0;
+}
+
+static inline bool mem_cgroup_node_allowed(struct mem_cgroup *memcg, int nid)
+{
+ return true;
+}
#endif /* CONFIG_MEMCG */
#if defined(CONFIG_MEMCG) && defined(CONFIG_ZSWAP)
diff --git a/include/linux/memory.h b/include/linux/memory.h
index 12daa6ec7d09..5ec4e6d209b9 100644
--- a/include/linux/memory.h
+++ b/include/linux/memory.h
@@ -149,6 +149,14 @@ static inline int hotplug_memory_notifier(notifier_fn_t fn, int pri)
{
return 0;
}
+static inline int memory_block_advise_max_size(unsigned long size)
+{
+ return -ENODEV;
+}
+static inline unsigned long memory_block_advised_max_size(void)
+{
+ return 0;
+}
#else /* CONFIG_MEMORY_HOTPLUG */
extern int register_memory_notifier(struct notifier_block *nb);
extern void unregister_memory_notifier(struct notifier_block *nb);
@@ -181,6 +189,8 @@ int walk_dynamic_memory_groups(int nid, walk_memory_groups_func_t func,
void memory_block_add_nid(struct memory_block *mem, int nid,
enum meminit_context context);
#endif /* CONFIG_NUMA */
+int memory_block_advise_max_size(unsigned long size);
+unsigned long memory_block_advised_max_size(void);
#endif /* CONFIG_MEMORY_HOTPLUG */
/*
diff --git a/include/linux/mempolicy.h b/include/linux/mempolicy.h
index ce9885e0178a..0fe96f3ab3ef 100644
--- a/include/linux/mempolicy.h
+++ b/include/linux/mempolicy.h
@@ -11,6 +11,7 @@
#include <linux/slab.h>
#include <linux/rbtree.h>
#include <linux/spinlock.h>
+#include <linux/node.h>
#include <linux/nodemask.h>
#include <linux/pagemap.h>
#include <uapi/linux/mempolicy.h>
@@ -178,6 +179,9 @@ static inline bool mpol_is_preferred_many(struct mempolicy *pol)
extern bool apply_policy_zone(struct mempolicy *policy, enum zone_type zone);
+extern int mempolicy_set_node_perf(unsigned int node,
+ struct access_coordinate *coords);
+
#else
struct mempolicy {};
diff --git a/include/linux/mm.h b/include/linux/mm.h
index e51dba8398f7..9e221ffcb868 100644
--- a/include/linux/mm.h
+++ b/include/linux/mm.h
@@ -12,6 +12,7 @@
#include <linux/rbtree.h>
#include <linux/atomic.h>
#include <linux/debug_locks.h>
+#include <linux/compiler.h>
#include <linux/mm_types.h>
#include <linux/mmap_lock.h>
#include <linux/range.h>
@@ -356,9 +357,7 @@ extern unsigned int kobjsize(const void *objp);
# define VM_SHADOW_STACK VM_NONE
#endif
-#if defined(CONFIG_X86)
-# define VM_PAT VM_ARCH_1 /* PAT reserves whole VMA at once (x86) */
-#elif defined(CONFIG_PPC64)
+#if defined(CONFIG_PPC64)
# define VM_SAO VM_ARCH_1 /* Strong Access Ordering (powerpc) */
#elif defined(CONFIG_PARISC)
# define VM_GROWSUP VM_ARCH_1
@@ -670,204 +669,11 @@ static inline void vma_numab_state_init(struct vm_area_struct *vma) {}
static inline void vma_numab_state_free(struct vm_area_struct *vma) {}
#endif /* CONFIG_NUMA_BALANCING */
-#ifdef CONFIG_PER_VMA_LOCK
-static inline void vma_lock_init(struct vm_area_struct *vma, bool reset_refcnt)
-{
-#ifdef CONFIG_DEBUG_LOCK_ALLOC
- static struct lock_class_key lockdep_key;
-
- lockdep_init_map(&vma->vmlock_dep_map, "vm_lock", &lockdep_key, 0);
-#endif
- if (reset_refcnt)
- refcount_set(&vma->vm_refcnt, 0);
- vma->vm_lock_seq = UINT_MAX;
-}
-
-static inline bool is_vma_writer_only(int refcnt)
-{
- /*
- * With a writer and no readers, refcnt is VMA_LOCK_OFFSET if the vma
- * is detached and (VMA_LOCK_OFFSET + 1) if it is attached. Waiting on
- * a detached vma happens only in vma_mark_detached() and is a rare
- * case, therefore most of the time there will be no unnecessary wakeup.
- */
- return refcnt & VMA_LOCK_OFFSET && refcnt <= VMA_LOCK_OFFSET + 1;
-}
-
-static inline void vma_refcount_put(struct vm_area_struct *vma)
-{
- /* Use a copy of vm_mm in case vma is freed after we drop vm_refcnt */
- struct mm_struct *mm = vma->vm_mm;
- int oldcnt;
-
- rwsem_release(&vma->vmlock_dep_map, _RET_IP_);
- if (!__refcount_dec_and_test(&vma->vm_refcnt, &oldcnt)) {
-
- if (is_vma_writer_only(oldcnt - 1))
- rcuwait_wake_up(&mm->vma_writer_wait);
- }
-}
-
-/*
- * Try to read-lock a vma. The function is allowed to occasionally yield false
- * locked result to avoid performance overhead, in which case we fall back to
- * using mmap_lock. The function should never yield false unlocked result.
- * False locked result is possible if mm_lock_seq overflows or if vma gets
- * reused and attached to a different mm before we lock it.
- * Returns the vma on success, NULL on failure to lock and EAGAIN if vma got
- * detached.
- */
-static inline struct vm_area_struct *vma_start_read(struct mm_struct *mm,
- struct vm_area_struct *vma)
-{
- int oldcnt;
-
- /*
- * Check before locking. A race might cause false locked result.
- * We can use READ_ONCE() for the mm_lock_seq here, and don't need
- * ACQUIRE semantics, because this is just a lockless check whose result
- * we don't rely on for anything - the mm_lock_seq read against which we
- * need ordering is below.
- */
- if (READ_ONCE(vma->vm_lock_seq) == READ_ONCE(mm->mm_lock_seq.sequence))
- return NULL;
-
- /*
- * If VMA_LOCK_OFFSET is set, __refcount_inc_not_zero_limited_acquire()
- * will fail because VMA_REF_LIMIT is less than VMA_LOCK_OFFSET.
- * Acquire fence is required here to avoid reordering against later
- * vm_lock_seq check and checks inside lock_vma_under_rcu().
- */
- if (unlikely(!__refcount_inc_not_zero_limited_acquire(&vma->vm_refcnt, &oldcnt,
- VMA_REF_LIMIT))) {
- /* return EAGAIN if vma got detached from under us */
- return oldcnt ? NULL : ERR_PTR(-EAGAIN);
- }
-
- rwsem_acquire_read(&vma->vmlock_dep_map, 0, 1, _RET_IP_);
- /*
- * Overflow of vm_lock_seq/mm_lock_seq might produce false locked result.
- * False unlocked result is impossible because we modify and check
- * vma->vm_lock_seq under vma->vm_refcnt protection and mm->mm_lock_seq
- * modification invalidates all existing locks.
- *
- * We must use ACQUIRE semantics for the mm_lock_seq so that if we are
- * racing with vma_end_write_all(), we only start reading from the VMA
- * after it has been unlocked.
- * This pairs with RELEASE semantics in vma_end_write_all().
- */
- if (unlikely(vma->vm_lock_seq == raw_read_seqcount(&mm->mm_lock_seq))) {
- vma_refcount_put(vma);
- return NULL;
- }
-
- return vma;
-}
-
/*
- * Use only while holding mmap read lock which guarantees that locking will not
- * fail (nobody can concurrently write-lock the vma). vma_start_read() should
- * not be used in such cases because it might fail due to mm_lock_seq overflow.
- * This functionality is used to obtain vma read lock and drop the mmap read lock.
+ * These must be here rather than mmap_lock.h as dependent on vm_fault type,
+ * declared in this header.
*/
-static inline bool vma_start_read_locked_nested(struct vm_area_struct *vma, int subclass)
-{
- int oldcnt;
-
- mmap_assert_locked(vma->vm_mm);
- if (unlikely(!__refcount_inc_not_zero_limited_acquire(&vma->vm_refcnt, &oldcnt,
- VMA_REF_LIMIT)))
- return false;
-
- rwsem_acquire_read(&vma->vmlock_dep_map, 0, 1, _RET_IP_);
- return true;
-}
-
-/*
- * Use only while holding mmap read lock which guarantees that locking will not
- * fail (nobody can concurrently write-lock the vma). vma_start_read() should
- * not be used in such cases because it might fail due to mm_lock_seq overflow.
- * This functionality is used to obtain vma read lock and drop the mmap read lock.
- */
-static inline bool vma_start_read_locked(struct vm_area_struct *vma)
-{
- return vma_start_read_locked_nested(vma, 0);
-}
-
-static inline void vma_end_read(struct vm_area_struct *vma)
-{
- vma_refcount_put(vma);
-}
-
-/* WARNING! Can only be used if mmap_lock is expected to be write-locked */
-static bool __is_vma_write_locked(struct vm_area_struct *vma, unsigned int *mm_lock_seq)
-{
- mmap_assert_write_locked(vma->vm_mm);
-
- /*
- * current task is holding mmap_write_lock, both vma->vm_lock_seq and
- * mm->mm_lock_seq can't be concurrently modified.
- */
- *mm_lock_seq = vma->vm_mm->mm_lock_seq.sequence;
- return (vma->vm_lock_seq == *mm_lock_seq);
-}
-
-void __vma_start_write(struct vm_area_struct *vma, unsigned int mm_lock_seq);
-
-/*
- * Begin writing to a VMA.
- * Exclude concurrent readers under the per-VMA lock until the currently
- * write-locked mmap_lock is dropped or downgraded.
- */
-static inline void vma_start_write(struct vm_area_struct *vma)
-{
- unsigned int mm_lock_seq;
-
- if (__is_vma_write_locked(vma, &mm_lock_seq))
- return;
-
- __vma_start_write(vma, mm_lock_seq);
-}
-
-static inline void vma_assert_write_locked(struct vm_area_struct *vma)
-{
- unsigned int mm_lock_seq;
-
- VM_BUG_ON_VMA(!__is_vma_write_locked(vma, &mm_lock_seq), vma);
-}
-
-static inline void vma_assert_locked(struct vm_area_struct *vma)
-{
- unsigned int mm_lock_seq;
-
- VM_BUG_ON_VMA(refcount_read(&vma->vm_refcnt) <= 1 &&
- !__is_vma_write_locked(vma, &mm_lock_seq), vma);
-}
-
-/*
- * WARNING: to avoid racing with vma_mark_attached()/vma_mark_detached(), these
- * assertions should be made either under mmap_write_lock or when the object
- * has been isolated under mmap_write_lock, ensuring no competing writers.
- */
-static inline void vma_assert_attached(struct vm_area_struct *vma)
-{
- WARN_ON_ONCE(!refcount_read(&vma->vm_refcnt));
-}
-
-static inline void vma_assert_detached(struct vm_area_struct *vma)
-{
- WARN_ON_ONCE(refcount_read(&vma->vm_refcnt));
-}
-
-static inline void vma_mark_attached(struct vm_area_struct *vma)
-{
- vma_assert_write_locked(vma);
- vma_assert_detached(vma);
- refcount_set_release(&vma->vm_refcnt, 1);
-}
-
-void vma_mark_detached(struct vm_area_struct *vma);
-
+#ifdef CONFIG_PER_VMA_LOCK
static inline void release_fault_lock(struct vm_fault *vmf)
{
if (vmf->flags & FAULT_FLAG_VMA_LOCK)
@@ -883,36 +689,7 @@ static inline void assert_fault_locked(struct vm_fault *vmf)
else
mmap_assert_locked(vmf->vma->vm_mm);
}
-
-struct vm_area_struct *lock_vma_under_rcu(struct mm_struct *mm,
- unsigned long address);
-
-#else /* CONFIG_PER_VMA_LOCK */
-
-static inline void vma_lock_init(struct vm_area_struct *vma, bool reset_refcnt) {}
-static inline struct vm_area_struct *vma_start_read(struct mm_struct *mm,
- struct vm_area_struct *vma)
- { return NULL; }
-static inline void vma_end_read(struct vm_area_struct *vma) {}
-static inline void vma_start_write(struct vm_area_struct *vma) {}
-static inline void vma_assert_write_locked(struct vm_area_struct *vma)
- { mmap_assert_write_locked(vma->vm_mm); }
-static inline void vma_assert_attached(struct vm_area_struct *vma) {}
-static inline void vma_assert_detached(struct vm_area_struct *vma) {}
-static inline void vma_mark_attached(struct vm_area_struct *vma) {}
-static inline void vma_mark_detached(struct vm_area_struct *vma) {}
-
-static inline struct vm_area_struct *lock_vma_under_rcu(struct mm_struct *mm,
- unsigned long address)
-{
- return NULL;
-}
-
-static inline void vma_assert_locked(struct vm_area_struct *vma)
-{
- mmap_assert_locked(vma->vm_mm);
-}
-
+#else
static inline void release_fault_lock(struct vm_fault *vmf)
{
mmap_read_unlock(vmf->vma->vm_mm);
@@ -922,7 +699,6 @@ static inline void assert_fault_locked(struct vm_fault *vmf)
{
mmap_assert_locked(vmf->vma->vm_mm);
}
-
#endif /* CONFIG_PER_VMA_LOCK */
extern const struct vm_operations_struct vma_dummy_vm_ops;
@@ -1459,7 +1235,7 @@ static inline pte_t maybe_mkwrite(pte_t pte, struct vm_area_struct *vma)
return pte;
}
-vm_fault_t do_set_pmd(struct vm_fault *vmf, struct page *page);
+vm_fault_t do_set_pmd(struct vm_fault *vmf, struct folio *folio, struct page *page);
void set_pte_range(struct vm_fault *vmf, struct folio *folio,
struct page *page, unsigned int nr, unsigned long addr);
@@ -2004,6 +1780,45 @@ static inline struct folio *pfn_folio(unsigned long pfn)
return page_folio(pfn_to_page(pfn));
}
+#ifdef CONFIG_MMU
+static inline pte_t mk_pte(struct page *page, pgprot_t pgprot)
+{
+ return pfn_pte(page_to_pfn(page), pgprot);
+}
+
+/**
+ * folio_mk_pte - Create a PTE for this folio
+ * @folio: The folio to create a PTE for
+ * @pgprot: The page protection bits to use
+ *
+ * Create a page table entry for the first page of this folio.
+ * This is suitable for passing to set_ptes().
+ *
+ * Return: A page table entry suitable for mapping this folio.
+ */
+static inline pte_t folio_mk_pte(struct folio *folio, pgprot_t pgprot)
+{
+ return pfn_pte(folio_pfn(folio), pgprot);
+}
+
+#ifdef CONFIG_TRANSPARENT_HUGEPAGE
+/**
+ * folio_mk_pmd - Create a PMD for this folio
+ * @folio: The folio to create a PMD for
+ * @pgprot: The page protection bits to use
+ *
+ * Create a page table entry for the first page of this folio.
+ * This is suitable for passing to set_pmd_at().
+ *
+ * Return: A page table entry suitable for mapping this folio.
+ */
+static inline pmd_t folio_mk_pmd(struct folio *folio, pgprot_t pgprot)
+{
+ return pmd_mkhuge(pfn_pmd(folio_pfn(folio), pgprot));
+}
+#endif
+#endif /* CONFIG_MMU */
+
static inline bool folio_has_pincount(const struct folio *folio)
{
if (IS_ENABLED(CONFIG_64BIT))
@@ -2185,15 +2000,6 @@ static inline long compound_nr(struct page *page)
}
/**
- * thp_nr_pages - The number of regular pages in this huge page.
- * @page: The head page of a huge page.
- */
-static inline long thp_nr_pages(struct page *page)
-{
- return folio_nr_pages((struct folio *)page);
-}
-
-/**
* folio_next - Move to the next physical folio.
* @folio: The folio we're currently operating on.
*
@@ -2303,7 +2109,62 @@ static inline bool folio_maybe_mapped_shared(struct folio *folio)
*/
if (mapcount <= 1)
return false;
- return folio_test_large_maybe_mapped_shared(folio);
+ return test_bit(FOLIO_MM_IDS_SHARED_BITNUM, &folio->_mm_ids);
+}
+
+/**
+ * folio_expected_ref_count - calculate the expected folio refcount
+ * @folio: the folio
+ *
+ * Calculate the expected folio refcount, taking references from the pagecache,
+ * swapcache, PG_private and page table mappings into account. Useful in
+ * combination with folio_ref_count() to detect unexpected references (e.g.,
+ * GUP or other temporary references).
+ *
+ * Does currently not consider references from the LRU cache. If the folio
+ * was isolated from the LRU (which is the case during migration or split),
+ * the LRU cache does not apply.
+ *
+ * Calling this function on an unmapped folio -- !folio_mapped() -- that is
+ * locked will return a stable result.
+ *
+ * Calling this function on a mapped folio will not result in a stable result,
+ * because nothing stops additional page table mappings from coming (e.g.,
+ * fork()) or going (e.g., munmap()).
+ *
+ * Calling this function without the folio lock will also not result in a
+ * stable result: for example, the folio might get dropped from the swapcache
+ * concurrently.
+ *
+ * However, even when called without the folio lock or on a mapped folio,
+ * this function can be used to detect unexpected references early (for example,
+ * if it makes sense to even lock the folio and unmap it).
+ *
+ * The caller must add any reference (e.g., from folio_try_get()) it might be
+ * holding itself to the result.
+ *
+ * Returns the expected folio refcount.
+ */
+static inline int folio_expected_ref_count(const struct folio *folio)
+{
+ const int order = folio_order(folio);
+ int ref_count = 0;
+
+ if (WARN_ON_ONCE(folio_test_slab(folio)))
+ return 0;
+
+ if (folio_test_anon(folio)) {
+ /* One reference per page from the swapcache. */
+ ref_count += folio_test_swapcache(folio) << order;
+ } else if (!((unsigned long)folio->mapping & PAGE_MAPPING_FLAGS)) {
+ /* One reference per page from the pagecache. */
+ ref_count += !!folio->mapping << order;
+ /* One reference from PG_private. */
+ ref_count += folio_test_private(folio);
+ }
+
+ /* One reference per page table mapping. */
+ return ref_count + folio_mapcount(folio);
}
#ifndef HAVE_ARCH_MAKE_FOLIO_ACCESSIBLE
@@ -2406,7 +2267,6 @@ static inline void clear_page_pfmemalloc(struct page *page)
extern void pagefault_out_of_memory(void);
#define offset_in_page(p) ((unsigned long)(p) & ~PAGE_MASK)
-#define offset_in_thp(page, p) ((unsigned long)(p) & (thp_size(page) - 1))
#define offset_in_folio(folio, p) ((unsigned long)(p) & (folio_size(folio) - 1))
/*
@@ -2767,7 +2627,7 @@ static inline void update_hiwater_rss(struct mm_struct *mm)
{
unsigned long _rss = get_mm_rss(mm);
- if ((mm)->hiwater_rss < _rss)
+ if (data_race(mm->hiwater_rss) < _rss)
(mm)->hiwater_rss = _rss;
}
@@ -3117,9 +2977,10 @@ static inline void pagetable_dtor_free(struct ptdesc *ptdesc)
pagetable_free(ptdesc);
}
-static inline bool pagetable_pte_ctor(struct ptdesc *ptdesc)
+static inline bool pagetable_pte_ctor(struct mm_struct *mm,
+ struct ptdesc *ptdesc)
{
- if (!ptlock_init(ptdesc))
+ if (mm != &init_mm && !ptlock_init(ptdesc))
return false;
__pagetable_ctor(ptdesc);
return true;
@@ -3223,9 +3084,10 @@ static inline spinlock_t *pmd_lock(struct mm_struct *mm, pmd_t *pmd)
return ptl;
}
-static inline bool pagetable_pmd_ctor(struct ptdesc *ptdesc)
+static inline bool pagetable_pmd_ctor(struct mm_struct *mm,
+ struct ptdesc *ptdesc)
{
- if (!pmd_ptlock_init(ptdesc))
+ if (mm != &init_mm && !pmd_ptlock_init(ptdesc))
return false;
ptdesc_pmd_pts_init(ptdesc);
__pagetable_ctor(ptdesc);
@@ -3414,7 +3276,6 @@ void anon_vma_interval_tree_verify(struct anon_vma_chain *node);
extern int __vm_enough_memory(struct mm_struct *mm, long pages, int cap_sys_admin);
extern int insert_vm_struct(struct mm_struct *, struct vm_area_struct *);
extern void exit_mmap(struct mm_struct *);
-int relocate_vma_down(struct vm_area_struct *vma, unsigned long shift);
bool mmap_read_lock_maybe_expand(struct mm_struct *mm, struct vm_area_struct *vma,
unsigned long addr, bool write);
diff --git a/include/linux/mm_inline.h b/include/linux/mm_inline.h
index f9157a0c42a5..89b518ff097e 100644
--- a/include/linux/mm_inline.h
+++ b/include/linux/mm_inline.h
@@ -447,6 +447,8 @@ static inline bool anon_vma_name_eq(struct anon_vma_name *anon_name1,
#endif /* CONFIG_ANON_VMA_NAME */
+void pfnmap_track_ctx_release(struct kref *ref);
+
static inline void init_tlb_flush_pending(struct mm_struct *mm)
{
atomic_set(&mm->tlb_flush_pending, 0);
diff --git a/include/linux/mm_types.h b/include/linux/mm_types.h
index 32ba5126e221..d3cffd8828c9 100644
--- a/include/linux/mm_types.h
+++ b/include/linux/mm_types.h
@@ -28,7 +28,6 @@
#endif
#define AT_VECTOR_SIZE (2*(AT_VECTOR_SIZE_ARCH + AT_VECTOR_SIZE_BASE + 1))
-#define INIT_PASID 0
struct address_space;
struct futex_private_hash;
@@ -765,6 +764,38 @@ struct vma_numab_state {
int prev_scan_seq;
};
+#ifdef __HAVE_PFNMAP_TRACKING
+struct pfnmap_track_ctx {
+ struct kref kref;
+ unsigned long pfn;
+ unsigned long size; /* in bytes */
+};
+#endif
+
+/*
+ * Describes a VMA that is about to be mmap()'ed. Drivers may choose to
+ * manipulate mutable fields which will cause those fields to be updated in the
+ * resultant VMA.
+ *
+ * Helper functions are not required for manipulating any field.
+ */
+struct vm_area_desc {
+ /* Immutable state. */
+ struct mm_struct *mm;
+ unsigned long start;
+ unsigned long end;
+
+ /* Mutable fields. Populated with initial state. */
+ pgoff_t pgoff;
+ struct file *file;
+ vm_flags_t vm_flags;
+ pgprot_t page_prot;
+
+ /* Write-only fields. */
+ const struct vm_operations_struct *vm_ops;
+ void *private_data;
+};
+
/*
* This struct describes a virtual memory area. There is one of these
* per VM-area/task. A VM area is any part of the process virtual memory
@@ -878,6 +909,9 @@ struct vm_area_struct {
struct anon_vma_name *anon_name;
#endif
struct vm_userfaultfd_ctx vm_userfaultfd_ctx;
+#ifdef __HAVE_PFNMAP_TRACKING
+ struct pfnmap_track_ctx *pfnmap_track_ctx;
+#endif
} __randomize_layout;
#ifdef CONFIG_NUMA
diff --git a/include/linux/mmap_lock.h b/include/linux/mmap_lock.h
index e0eddfd306ef..5da384bd0a26 100644
--- a/include/linux/mmap_lock.h
+++ b/include/linux/mmap_lock.h
@@ -1,6 +1,10 @@
+/* SPDX-License-Identifier: GPL-2.0 */
#ifndef _LINUX_MMAP_LOCK_H
#define _LINUX_MMAP_LOCK_H
+/* Avoid a dependency loop by declaring here. */
+extern int rcuwait_wake_up(struct rcuwait *w);
+
#include <linux/lockdep.h>
#include <linux/mm_types.h>
#include <linux/mmdebug.h>
@@ -105,6 +109,206 @@ static inline bool mmap_lock_speculate_retry(struct mm_struct *mm, unsigned int
return read_seqcount_retry(&mm->mm_lock_seq, seq);
}
+static inline void vma_lock_init(struct vm_area_struct *vma, bool reset_refcnt)
+{
+#ifdef CONFIG_DEBUG_LOCK_ALLOC
+ static struct lock_class_key lockdep_key;
+
+ lockdep_init_map(&vma->vmlock_dep_map, "vm_lock", &lockdep_key, 0);
+#endif
+ if (reset_refcnt)
+ refcount_set(&vma->vm_refcnt, 0);
+ vma->vm_lock_seq = UINT_MAX;
+}
+
+static inline bool is_vma_writer_only(int refcnt)
+{
+ /*
+ * With a writer and no readers, refcnt is VMA_LOCK_OFFSET if the vma
+ * is detached and (VMA_LOCK_OFFSET + 1) if it is attached. Waiting on
+ * a detached vma happens only in vma_mark_detached() and is a rare
+ * case, therefore most of the time there will be no unnecessary wakeup.
+ */
+ return refcnt & VMA_LOCK_OFFSET && refcnt <= VMA_LOCK_OFFSET + 1;
+}
+
+static inline void vma_refcount_put(struct vm_area_struct *vma)
+{
+ /* Use a copy of vm_mm in case vma is freed after we drop vm_refcnt */
+ struct mm_struct *mm = vma->vm_mm;
+ int oldcnt;
+
+ rwsem_release(&vma->vmlock_dep_map, _RET_IP_);
+ if (!__refcount_dec_and_test(&vma->vm_refcnt, &oldcnt)) {
+
+ if (is_vma_writer_only(oldcnt - 1))
+ rcuwait_wake_up(&mm->vma_writer_wait);
+ }
+}
+
+/*
+ * Try to read-lock a vma. The function is allowed to occasionally yield false
+ * locked result to avoid performance overhead, in which case we fall back to
+ * using mmap_lock. The function should never yield false unlocked result.
+ * False locked result is possible if mm_lock_seq overflows or if vma gets
+ * reused and attached to a different mm before we lock it.
+ * Returns the vma on success, NULL on failure to lock and EAGAIN if vma got
+ * detached.
+ */
+static inline struct vm_area_struct *vma_start_read(struct mm_struct *mm,
+ struct vm_area_struct *vma)
+{
+ int oldcnt;
+
+ /*
+ * Check before locking. A race might cause false locked result.
+ * We can use READ_ONCE() for the mm_lock_seq here, and don't need
+ * ACQUIRE semantics, because this is just a lockless check whose result
+ * we don't rely on for anything - the mm_lock_seq read against which we
+ * need ordering is below.
+ */
+ if (READ_ONCE(vma->vm_lock_seq) == READ_ONCE(mm->mm_lock_seq.sequence))
+ return NULL;
+
+ /*
+ * If VMA_LOCK_OFFSET is set, __refcount_inc_not_zero_limited_acquire()
+ * will fail because VMA_REF_LIMIT is less than VMA_LOCK_OFFSET.
+ * Acquire fence is required here to avoid reordering against later
+ * vm_lock_seq check and checks inside lock_vma_under_rcu().
+ */
+ if (unlikely(!__refcount_inc_not_zero_limited_acquire(&vma->vm_refcnt, &oldcnt,
+ VMA_REF_LIMIT))) {
+ /* return EAGAIN if vma got detached from under us */
+ return oldcnt ? NULL : ERR_PTR(-EAGAIN);
+ }
+
+ rwsem_acquire_read(&vma->vmlock_dep_map, 0, 1, _RET_IP_);
+ /*
+ * Overflow of vm_lock_seq/mm_lock_seq might produce false locked result.
+ * False unlocked result is impossible because we modify and check
+ * vma->vm_lock_seq under vma->vm_refcnt protection and mm->mm_lock_seq
+ * modification invalidates all existing locks.
+ *
+ * We must use ACQUIRE semantics for the mm_lock_seq so that if we are
+ * racing with vma_end_write_all(), we only start reading from the VMA
+ * after it has been unlocked.
+ * This pairs with RELEASE semantics in vma_end_write_all().
+ */
+ if (unlikely(vma->vm_lock_seq == raw_read_seqcount(&mm->mm_lock_seq))) {
+ vma_refcount_put(vma);
+ return NULL;
+ }
+
+ return vma;
+}
+
+/*
+ * Use only while holding mmap read lock which guarantees that locking will not
+ * fail (nobody can concurrently write-lock the vma). vma_start_read() should
+ * not be used in such cases because it might fail due to mm_lock_seq overflow.
+ * This functionality is used to obtain vma read lock and drop the mmap read lock.
+ */
+static inline bool vma_start_read_locked_nested(struct vm_area_struct *vma, int subclass)
+{
+ int oldcnt;
+
+ mmap_assert_locked(vma->vm_mm);
+ if (unlikely(!__refcount_inc_not_zero_limited_acquire(&vma->vm_refcnt, &oldcnt,
+ VMA_REF_LIMIT)))
+ return false;
+
+ rwsem_acquire_read(&vma->vmlock_dep_map, 0, 1, _RET_IP_);
+ return true;
+}
+
+/*
+ * Use only while holding mmap read lock which guarantees that locking will not
+ * fail (nobody can concurrently write-lock the vma). vma_start_read() should
+ * not be used in such cases because it might fail due to mm_lock_seq overflow.
+ * This functionality is used to obtain vma read lock and drop the mmap read lock.
+ */
+static inline bool vma_start_read_locked(struct vm_area_struct *vma)
+{
+ return vma_start_read_locked_nested(vma, 0);
+}
+
+static inline void vma_end_read(struct vm_area_struct *vma)
+{
+ vma_refcount_put(vma);
+}
+
+/* WARNING! Can only be used if mmap_lock is expected to be write-locked */
+static bool __is_vma_write_locked(struct vm_area_struct *vma, unsigned int *mm_lock_seq)
+{
+ mmap_assert_write_locked(vma->vm_mm);
+
+ /*
+ * current task is holding mmap_write_lock, both vma->vm_lock_seq and
+ * mm->mm_lock_seq can't be concurrently modified.
+ */
+ *mm_lock_seq = vma->vm_mm->mm_lock_seq.sequence;
+ return (vma->vm_lock_seq == *mm_lock_seq);
+}
+
+void __vma_start_write(struct vm_area_struct *vma, unsigned int mm_lock_seq);
+
+/*
+ * Begin writing to a VMA.
+ * Exclude concurrent readers under the per-VMA lock until the currently
+ * write-locked mmap_lock is dropped or downgraded.
+ */
+static inline void vma_start_write(struct vm_area_struct *vma)
+{
+ unsigned int mm_lock_seq;
+
+ if (__is_vma_write_locked(vma, &mm_lock_seq))
+ return;
+
+ __vma_start_write(vma, mm_lock_seq);
+}
+
+static inline void vma_assert_write_locked(struct vm_area_struct *vma)
+{
+ unsigned int mm_lock_seq;
+
+ VM_BUG_ON_VMA(!__is_vma_write_locked(vma, &mm_lock_seq), vma);
+}
+
+static inline void vma_assert_locked(struct vm_area_struct *vma)
+{
+ unsigned int mm_lock_seq;
+
+ VM_BUG_ON_VMA(refcount_read(&vma->vm_refcnt) <= 1 &&
+ !__is_vma_write_locked(vma, &mm_lock_seq), vma);
+}
+
+/*
+ * WARNING: to avoid racing with vma_mark_attached()/vma_mark_detached(), these
+ * assertions should be made either under mmap_write_lock or when the object
+ * has been isolated under mmap_write_lock, ensuring no competing writers.
+ */
+static inline void vma_assert_attached(struct vm_area_struct *vma)
+{
+ WARN_ON_ONCE(!refcount_read(&vma->vm_refcnt));
+}
+
+static inline void vma_assert_detached(struct vm_area_struct *vma)
+{
+ WARN_ON_ONCE(refcount_read(&vma->vm_refcnt));
+}
+
+static inline void vma_mark_attached(struct vm_area_struct *vma)
+{
+ vma_assert_write_locked(vma);
+ vma_assert_detached(vma);
+ refcount_set_release(&vma->vm_refcnt, 1);
+}
+
+void vma_mark_detached(struct vm_area_struct *vma);
+
+struct vm_area_struct *lock_vma_under_rcu(struct mm_struct *mm,
+ unsigned long address);
+
#else /* CONFIG_PER_VMA_LOCK */
static inline void mm_lock_seqcount_init(struct mm_struct *mm) {}
@@ -120,6 +324,29 @@ static inline bool mmap_lock_speculate_retry(struct mm_struct *mm, unsigned int
{
return true;
}
+static inline void vma_lock_init(struct vm_area_struct *vma, bool reset_refcnt) {}
+static inline struct vm_area_struct *vma_start_read(struct mm_struct *mm,
+ struct vm_area_struct *vma)
+ { return NULL; }
+static inline void vma_end_read(struct vm_area_struct *vma) {}
+static inline void vma_start_write(struct vm_area_struct *vma) {}
+static inline void vma_assert_write_locked(struct vm_area_struct *vma)
+ { mmap_assert_write_locked(vma->vm_mm); }
+static inline void vma_assert_attached(struct vm_area_struct *vma) {}
+static inline void vma_assert_detached(struct vm_area_struct *vma) {}
+static inline void vma_mark_attached(struct vm_area_struct *vma) {}
+static inline void vma_mark_detached(struct vm_area_struct *vma) {}
+
+static inline struct vm_area_struct *lock_vma_under_rcu(struct mm_struct *mm,
+ unsigned long address)
+{
+ return NULL;
+}
+
+static inline void vma_assert_locked(struct vm_area_struct *vma)
+{
+ mmap_assert_locked(vma->vm_mm);
+}
#endif /* CONFIG_PER_VMA_LOCK */
diff --git a/include/linux/mmzone.h b/include/linux/mmzone.h
index b1c459f7a485..28066b4ced81 100644
--- a/include/linux/mmzone.h
+++ b/include/linux/mmzone.h
@@ -2074,11 +2074,37 @@ static inline int pfn_section_valid(struct mem_section *ms, unsigned long pfn)
return usage ? test_bit(idx, usage->subsection_map) : 0;
}
+
+static inline bool pfn_section_first_valid(struct mem_section *ms, unsigned long *pfn)
+{
+ struct mem_section_usage *usage = READ_ONCE(ms->usage);
+ int idx = subsection_map_index(*pfn);
+ unsigned long bit;
+
+ if (!usage)
+ return false;
+
+ if (test_bit(idx, usage->subsection_map))
+ return true;
+
+ /* Find the next subsection that exists */
+ bit = find_next_bit(usage->subsection_map, SUBSECTIONS_PER_SECTION, idx);
+ if (bit == SUBSECTIONS_PER_SECTION)
+ return false;
+
+ *pfn = (*pfn & PAGE_SECTION_MASK) + (bit * PAGES_PER_SUBSECTION);
+ return true;
+}
#else
static inline int pfn_section_valid(struct mem_section *ms, unsigned long pfn)
{
return 1;
}
+
+static inline bool pfn_section_first_valid(struct mem_section *ms, unsigned long *pfn)
+{
+ return true;
+}
#endif
void sparse_init_early_section(int nid, struct page *map, unsigned long pnum,
@@ -2127,6 +2153,58 @@ static inline int pfn_valid(unsigned long pfn)
return ret;
}
+
+/* Returns end_pfn or higher if no valid PFN remaining in range */
+static inline unsigned long first_valid_pfn(unsigned long pfn, unsigned long end_pfn)
+{
+ unsigned long nr = pfn_to_section_nr(pfn);
+
+ rcu_read_lock_sched();
+
+ while (nr <= __highest_present_section_nr && pfn < end_pfn) {
+ struct mem_section *ms = __pfn_to_section(pfn);
+
+ if (valid_section(ms) &&
+ (early_section(ms) || pfn_section_first_valid(ms, &pfn))) {
+ rcu_read_unlock_sched();
+ return pfn;
+ }
+
+ /* Nothing left in this section? Skip to next section */
+ nr++;
+ pfn = section_nr_to_pfn(nr);
+ }
+
+ rcu_read_unlock_sched();
+ return end_pfn;
+}
+
+static inline unsigned long next_valid_pfn(unsigned long pfn, unsigned long end_pfn)
+{
+ pfn++;
+
+ if (pfn >= end_pfn)
+ return end_pfn;
+
+ /*
+ * Either every PFN within the section (or subsection for VMEMMAP) is
+ * valid, or none of them are. So there's no point repeating the check
+ * for every PFN; only call first_valid_pfn() again when crossing a
+ * (sub)section boundary (i.e. !(pfn & ~PAGE_{SUB,}SECTION_MASK)).
+ */
+ if (pfn & ~(IS_ENABLED(CONFIG_SPARSEMEM_VMEMMAP) ?
+ PAGE_SUBSECTION_MASK : PAGE_SECTION_MASK))
+ return pfn;
+
+ return first_valid_pfn(pfn, end_pfn);
+}
+
+
+#define for_each_valid_pfn(_pfn, _start_pfn, _end_pfn) \
+ for ((_pfn) = first_valid_pfn((_start_pfn), (_end_pfn)); \
+ (_pfn) < (_end_pfn); \
+ (_pfn) = next_valid_pfn((_pfn), (_end_pfn)))
+
#endif
static inline int pfn_in_present_section(unsigned long pfn)
@@ -2176,6 +2254,16 @@ void sparse_init(void);
#define subsection_map_init(_pfn, _nr_pages) do {} while (0)
#endif /* CONFIG_SPARSEMEM */
+/*
+ * Fallback case for when the architecture provides its own pfn_valid() but
+ * not a corresponding for_each_valid_pfn().
+ */
+#ifndef for_each_valid_pfn
+#define for_each_valid_pfn(_pfn, _start_pfn, _end_pfn) \
+ for ((_pfn) = (_start_pfn); (_pfn) < (_end_pfn); (_pfn)++) \
+ if (pfn_valid(_pfn))
+#endif
+
#endif /* !__GENERATING_BOUNDS.H */
#endif /* !__ASSEMBLY__ */
#endif /* _LINUX_MMZONE_H */
diff --git a/include/linux/numa_memblks.h b/include/linux/numa_memblks.h
index dd85613cdd86..991076cba7c5 100644
--- a/include/linux/numa_memblks.h
+++ b/include/linux/numa_memblks.h
@@ -22,6 +22,7 @@ struct numa_meminfo {
};
int __init numa_add_memblk(int nodeid, u64 start, u64 end);
+int __init numa_add_reserved_memblk(int nid, u64 start, u64 end);
void __init numa_remove_memblk_from(int idx, struct numa_meminfo *mi);
int __init numa_cleanup_meminfo(struct numa_meminfo *mi);
diff --git a/include/linux/page-flags-layout.h b/include/linux/page-flags-layout.h
index 4f5c9e979bb9..760006b1c480 100644
--- a/include/linux/page-flags-layout.h
+++ b/include/linux/page-flags-layout.h
@@ -72,8 +72,10 @@
#define NODE_NOT_IN_PAGE_FLAGS 1
#endif
-#if defined(CONFIG_KASAN_SW_TAGS) || defined(CONFIG_KASAN_HW_TAGS)
+#if defined(CONFIG_KASAN_SW_TAGS)
#define KASAN_TAG_WIDTH 8
+#elif defined(CONFIG_KASAN_HW_TAGS)
+#define KASAN_TAG_WIDTH 4
#else
#define KASAN_TAG_WIDTH 0
#endif
diff --git a/include/linux/page-flags.h b/include/linux/page-flags.h
index 3b814ce08331..4fe5ee67535b 100644
--- a/include/linux/page-flags.h
+++ b/include/linux/page-flags.h
@@ -915,20 +915,6 @@ FOLIO_FLAG_FALSE(partially_mapped)
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
/*
- * PageHuge() only returns true for hugetlbfs pages, but not for
- * normal or transparent huge pages.
- *
- * PageTransHuge() returns true for both transparent huge and
- * hugetlbfs pages, but not normal pages. PageTransHuge() can only be
- * called only in the core VM paths where hugetlbfs pages can't exist.
- */
-static inline int PageTransHuge(const struct page *page)
-{
- VM_BUG_ON_PAGE(PageTail(page), page);
- return PageHead(page);
-}
-
-/*
* PageTransCompound returns true for both transparent huge pages
* and hugetlbfs pages, so it should only be called when it's known
* that hugetlbfs pages aren't involved.
@@ -938,7 +924,6 @@ static inline int PageTransCompound(const struct page *page)
return PageCompound(page);
}
#else
-TESTPAGEFLAG_FALSE(TransHuge, transhuge)
TESTPAGEFLAG_FALSE(TransCompound, transcompound)
#endif
@@ -989,7 +974,7 @@ static inline bool page_mapcount_is_type(unsigned int mapcount)
static inline bool page_has_type(const struct page *page)
{
- return page_mapcount_is_type(data_race(page->page_type));
+ return page_type_has_type(data_race(page->page_type));
}
#define FOLIO_TYPE_OPS(lname, fname) \
@@ -1237,10 +1222,6 @@ static inline int folio_has_private(const struct folio *folio)
return !!(folio->flags & PAGE_FLAGS_PRIVATE);
}
-static inline bool folio_test_large_maybe_mapped_shared(const struct folio *folio)
-{
- return test_bit(FOLIO_MM_IDS_SHARED_BITNUM, &folio->_mm_ids);
-}
#undef PF_ANY
#undef PF_HEAD
#undef PF_NO_TAIL
diff --git a/include/linux/pagemap.h b/include/linux/pagemap.h
index 26baa78f1ca7..d2ced9920992 100644
--- a/include/linux/pagemap.h
+++ b/include/linux/pagemap.h
@@ -533,7 +533,6 @@ static inline void filemap_nr_thps_dec(struct address_space *mapping)
}
struct address_space *folio_mapping(struct folio *);
-struct address_space *swapcache_mapping(struct folio *);
/**
* folio_flush_mapping - Find the file mapping this folio belongs to.
@@ -884,26 +883,6 @@ static inline struct page *grab_cache_page_nowait(struct address_space *mapping,
mapping_gfp_mask(mapping));
}
-extern pgoff_t __folio_swap_cache_index(struct folio *folio);
-
-/**
- * folio_index - File index of a folio.
- * @folio: The folio.
- *
- * For a folio which is either in the page cache or the swap cache,
- * return its index within the address_space it belongs to. If you know
- * the page is definitely in the page cache, you can look at the folio's
- * index directly.
- *
- * Return: The index (offset in units of pages) of a folio in its file.
- */
-static inline pgoff_t folio_index(struct folio *folio)
-{
- if (unlikely(folio_test_swapcache(folio)))
- return __folio_swap_cache_index(folio);
- return folio->index;
-}
-
/**
* folio_next_index - Get the index of the next folio.
* @folio: The current folio.
@@ -935,27 +914,14 @@ static inline struct page *folio_file_page(struct folio *folio, pgoff_t index)
* @folio: The folio.
* @index: The page index within the file.
*
- * Context: The caller should have the page locked in order to prevent
- * (eg) shmem from moving the page between the page cache and swap cache
- * and changing its index in the middle of the operation.
+ * Context: The caller should have the folio locked and ensure
+ * e.g., shmem did not move this folio to the swap cache.
* Return: true or false.
*/
static inline bool folio_contains(struct folio *folio, pgoff_t index)
{
- return index - folio_index(folio) < folio_nr_pages(folio);
-}
-
-/*
- * Given the page we found in the page cache, return the page corresponding
- * to this index in the file
- */
-static inline struct page *find_subpage(struct page *head, pgoff_t index)
-{
- /* HugeTLBfs wants the head page regardless */
- if (PageHuge(head))
- return head;
-
- return head + (index & (thp_nr_pages(head) - 1));
+ VM_WARN_ON_ONCE_FOLIO(folio_test_swapcache(folio), folio);
+ return index - folio->index < folio_nr_pages(folio);
}
unsigned filemap_get_folios(struct address_space *mapping, pgoff_t *start,
@@ -1308,9 +1274,9 @@ static inline bool filemap_range_needs_writeback(struct address_space *mapping,
* struct readahead_control - Describes a readahead request.
*
* A readahead request is for consecutive pages. Filesystems which
- * implement the ->readahead method should call readahead_page() or
- * readahead_page_batch() in a loop and attempt to start I/O against
- * each page in the request.
+ * implement the ->readahead method should call readahead_folio() or
+ * __readahead_batch() in a loop and attempt to start reads into each
+ * folio in the request.
*
* Most of the fields in this struct are private and should be accessed
* by the functions below.
@@ -1416,22 +1382,6 @@ static inline struct folio *__readahead_folio(struct readahead_control *ractl)
}
/**
- * readahead_page - Get the next page to read.
- * @ractl: The current readahead request.
- *
- * Context: The page is locked and has an elevated refcount. The caller
- * should decreases the refcount once the page has been submitted for I/O
- * and unlock the page once all I/O to that page has completed.
- * Return: A pointer to the next page, or %NULL if we are done.
- */
-static inline struct page *readahead_page(struct readahead_control *ractl)
-{
- struct folio *folio = __readahead_folio(ractl);
-
- return &folio->page;
-}
-
-/**
* readahead_folio - Get the next folio to read.
* @ractl: The current readahead request.
*
@@ -1453,7 +1403,7 @@ static inline unsigned int __readahead_batch(struct readahead_control *rac,
{
unsigned int i = 0;
XA_STATE(xas, &rac->mapping->i_pages, 0);
- struct page *page;
+ struct folio *folio;
BUG_ON(rac->_batch_count > rac->_nr_pages);
rac->_nr_pages -= rac->_batch_count;
@@ -1462,13 +1412,12 @@ static inline unsigned int __readahead_batch(struct readahead_control *rac,
xas_set(&xas, rac->_index);
rcu_read_lock();
- xas_for_each(&xas, page, rac->_index + rac->_nr_pages - 1) {
- if (xas_retry(&xas, page))
+ xas_for_each(&xas, folio, rac->_index + rac->_nr_pages - 1) {
+ if (xas_retry(&xas, folio))
continue;
- VM_BUG_ON_PAGE(!PageLocked(page), page);
- VM_BUG_ON_PAGE(PageTail(page), page);
- array[i++] = page;
- rac->_batch_count += thp_nr_pages(page);
+ VM_BUG_ON_FOLIO(!folio_test_locked(folio), folio);
+ array[i++] = folio_page(folio, 0);
+ rac->_batch_count += folio_nr_pages(folio);
if (i == array_sz)
break;
}
@@ -1478,20 +1427,6 @@ static inline unsigned int __readahead_batch(struct readahead_control *rac,
}
/**
- * readahead_page_batch - Get a batch of pages to read.
- * @rac: The current readahead request.
- * @array: An array of pointers to struct page.
- *
- * Context: The pages are locked and have an elevated refcount. The caller
- * should decreases the refcount once the page has been submitted for I/O
- * and unlock the page once all I/O to that page has completed.
- * Return: The number of pages placed in the array. 0 indicates the request
- * is complete.
- */
-#define readahead_page_batch(rac, array) \
- __readahead_batch(rac, array, ARRAY_SIZE(array))
-
-/**
* readahead_pos - The byte offset into the file of this readahead request.
* @rac: The readahead request.
*/
diff --git a/include/linux/percpu-defs.h b/include/linux/percpu-defs.h
index 0aeb0e276a3e..c16cdeaa505e 100644
--- a/include/linux/percpu-defs.h
+++ b/include/linux/percpu-defs.h
@@ -375,7 +375,7 @@ do { \
} while (0)
/*
- * this_cpu operations (C) 2008-2013 Christoph Lameter <cl@linux.com>
+ * this_cpu operations (C) 2008-2013 Christoph Lameter <cl@gentwo.org>
*
* Optimized manipulation for memory allocated through the per cpu
* allocator or for addresses of per cpu variables.
diff --git a/include/linux/pgtable.h b/include/linux/pgtable.h
index b50447ef1c92..0b6e1f781d86 100644
--- a/include/linux/pgtable.h
+++ b/include/linux/pgtable.h
@@ -1164,10 +1164,6 @@ static inline void arch_swap_restore(swp_entry_t entry, struct folio *folio)
}
#endif
-#ifndef __HAVE_ARCH_PGD_OFFSET_GATE
-#define pgd_offset_gate(mm, addr) pgd_offset(mm, addr)
-#endif
-
#ifndef __HAVE_ARCH_MOVE_PTE
#define move_pte(pte, old_addr, new_addr) (pte)
#endif
@@ -1489,83 +1485,92 @@ static inline pmd_t pmd_swp_clear_soft_dirty(pmd_t pmd)
* vmf_insert_pfn.
*/
-/*
- * track_pfn_remap is called when a _new_ pfn mapping is being established
- * by remap_pfn_range() for physical range indicated by pfn and size.
- */
-static inline int track_pfn_remap(struct vm_area_struct *vma, pgprot_t *prot,
- unsigned long pfn, unsigned long addr,
- unsigned long size)
+static inline int pfnmap_setup_cachemode(unsigned long pfn, unsigned long size,
+ pgprot_t *prot)
{
return 0;
}
-/*
- * track_pfn_insert is called when a _new_ single pfn is established
- * by vmf_insert_pfn().
- */
-static inline void track_pfn_insert(struct vm_area_struct *vma, pgprot_t *prot,
- pfn_t pfn)
+static inline int pfnmap_track(unsigned long pfn, unsigned long size,
+ pgprot_t *prot)
{
+ return 0;
}
-/*
- * track_pfn_copy is called when a VM_PFNMAP VMA is about to get the page
- * tables copied during copy_page_range(). Will store the pfn to be
- * passed to untrack_pfn_copy() only if there is something to be untracked.
- * Callers should initialize the pfn to 0.
- */
-static inline int track_pfn_copy(struct vm_area_struct *dst_vma,
- struct vm_area_struct *src_vma, unsigned long *pfn)
+static inline void pfnmap_untrack(unsigned long pfn, unsigned long size)
{
- return 0;
}
+#else
+/**
+ * pfnmap_setup_cachemode - setup the cachemode in the pgprot for a pfn range
+ * @pfn: the start of the pfn range
+ * @size: the size of the pfn range in bytes
+ * @prot: the pgprot to modify
+ *
+ * Lookup the cachemode for the pfn range starting at @pfn with the size
+ * @size and store it in @prot, leaving other data in @prot unchanged.
+ *
+ * This allows for a hardware implementation to have fine-grained control of
+ * memory cache behavior at page level granularity. Without a hardware
+ * implementation, this function does nothing.
+ *
+ * Currently there is only one implementation for this - x86 Page Attribute
+ * Table (PAT). See Documentation/arch/x86/pat.rst for more details.
+ *
+ * This function can fail if the pfn range spans pfns that require differing
+ * cachemodes. If the pfn range was previously verified to have a single
+ * cachemode, it is sufficient to query only a single pfn. The assumption is
+ * that this is the case for drivers using the vmf_insert_pfn*() interface.
+ *
+ * Returns 0 on success and -EINVAL on error.
+ */
+int pfnmap_setup_cachemode(unsigned long pfn, unsigned long size,
+ pgprot_t *prot);
-/*
- * untrack_pfn_copy is called when a VM_PFNMAP VMA failed to copy during
- * copy_page_range(), but after track_pfn_copy() was already called. Can
- * be called even if track_pfn_copy() did not actually track anything:
- * handled internally.
+/**
+ * pfnmap_track - track a pfn range
+ * @pfn: the start of the pfn range
+ * @size: the size of the pfn range in bytes
+ * @prot: the pgprot to track
+ *
+ * Requested the pfn range to be 'tracked' by a hardware implementation and
+ * setup the cachemode in @prot similar to pfnmap_setup_cachemode().
+ *
+ * This allows for fine-grained control of memory cache behaviour at page
+ * level granularity. Tracking memory this way is persisted across VMA splits
+ * (VMA merging does not apply for VM_PFNMAP).
+ *
+ * Currently, there is only one implementation for this - x86 Page Attribute
+ * Table (PAT). See Documentation/arch/x86/pat.rst for more details.
+ *
+ * Returns 0 on success and -EINVAL on error.
*/
-static inline void untrack_pfn_copy(struct vm_area_struct *dst_vma,
- unsigned long pfn)
-{
-}
+int pfnmap_track(unsigned long pfn, unsigned long size, pgprot_t *prot);
-/*
- * untrack_pfn is called while unmapping a pfnmap for a region.
- * untrack can be called for a specific region indicated by pfn and size or
- * can be for the entire vma (in which case pfn, size are zero).
+/**
+ * pfnmap_untrack - untrack a pfn range
+ * @pfn: the start of the pfn range
+ * @size: the size of the pfn range in bytes
+ *
+ * Untrack a pfn range previously tracked through pfnmap_track().
*/
-static inline void untrack_pfn(struct vm_area_struct *vma,
- unsigned long pfn, unsigned long size,
- bool mm_wr_locked)
-{
-}
+void pfnmap_untrack(unsigned long pfn, unsigned long size);
+#endif
-/*
- * untrack_pfn_clear is called in the following cases on a VM_PFNMAP VMA:
+/**
+ * pfnmap_setup_cachemode_pfn - setup the cachemode in the pgprot for a pfn
+ * @pfn: the pfn
+ * @prot: the pgprot to modify
+ *
+ * Lookup the cachemode for @pfn and store it in @prot, leaving other
+ * data in @prot unchanged.
*
- * 1) During mremap() on the src VMA after the page tables were moved.
- * 2) During fork() on the dst VMA, immediately after duplicating the src VMA.
+ * See pfnmap_setup_cachemode() for details.
*/
-static inline void untrack_pfn_clear(struct vm_area_struct *vma)
+static inline void pfnmap_setup_cachemode_pfn(unsigned long pfn, pgprot_t *prot)
{
+ pfnmap_setup_cachemode(pfn, PAGE_SIZE, prot);
}
-#else
-extern int track_pfn_remap(struct vm_area_struct *vma, pgprot_t *prot,
- unsigned long pfn, unsigned long addr,
- unsigned long size);
-extern void track_pfn_insert(struct vm_area_struct *vma, pgprot_t *prot,
- pfn_t pfn);
-extern int track_pfn_copy(struct vm_area_struct *dst_vma,
- struct vm_area_struct *src_vma, unsigned long *pfn);
-extern void untrack_pfn_copy(struct vm_area_struct *dst_vma,
- unsigned long pfn);
-extern void untrack_pfn(struct vm_area_struct *vma, unsigned long pfn,
- unsigned long size, bool mm_wr_locked);
-extern void untrack_pfn_clear(struct vm_area_struct *vma);
-#endif
#ifdef CONFIG_MMU
#ifdef __HAVE_COLOR_ZERO_PAGE
diff --git a/include/linux/ptdump.h b/include/linux/ptdump.h
index 8dbd51ea8626..240bd3bff18d 100644
--- a/include/linux/ptdump.h
+++ b/include/linux/ptdump.h
@@ -11,10 +11,17 @@ struct ptdump_range {
};
struct ptdump_state {
- /* level is 0:PGD to 4:PTE, or -1 if unknown */
- void (*note_page)(struct ptdump_state *st, unsigned long addr,
- int level, u64 val);
- void (*effective_prot)(struct ptdump_state *st, int level, u64 val);
+ void (*note_page_pte)(struct ptdump_state *st, unsigned long addr, pte_t pte);
+ void (*note_page_pmd)(struct ptdump_state *st, unsigned long addr, pmd_t pmd);
+ void (*note_page_pud)(struct ptdump_state *st, unsigned long addr, pud_t pud);
+ void (*note_page_p4d)(struct ptdump_state *st, unsigned long addr, p4d_t p4d);
+ void (*note_page_pgd)(struct ptdump_state *st, unsigned long addr, pgd_t pgd);
+ void (*note_page_flush)(struct ptdump_state *st);
+ void (*effective_prot_pte)(struct ptdump_state *st, pte_t pte);
+ void (*effective_prot_pmd)(struct ptdump_state *st, pmd_t pmd);
+ void (*effective_prot_pud)(struct ptdump_state *st, pud_t pud);
+ void (*effective_prot_p4d)(struct ptdump_state *st, p4d_t p4d);
+ void (*effective_prot_pgd)(struct ptdump_state *st, pgd_t pgd);
const struct ptdump_range *range;
};
diff --git a/include/linux/rmap.h b/include/linux/rmap.h
index 6b82b618846e..c4f4903b1088 100644
--- a/include/linux/rmap.h
+++ b/include/linux/rmap.h
@@ -223,7 +223,7 @@ static inline void __folio_large_mapcount_sanity_checks(const struct folio *foli
VM_WARN_ON_ONCE(folio_mm_id(folio, 1) != MM_ID_DUMMY &&
folio->_mm_id_mapcount[1] < 0);
VM_WARN_ON_ONCE(!folio_mapped(folio) &&
- folio_test_large_maybe_mapped_shared(folio));
+ test_bit(FOLIO_MM_IDS_SHARED_BITNUM, &folio->_mm_ids));
}
static __always_inline void folio_set_large_mapcount(struct folio *folio,
diff --git a/include/linux/swap.h b/include/linux/swap.h
index db46b25a65ae..bc0e1c275fc0 100644
--- a/include/linux/swap.h
+++ b/include/linux/swap.h
@@ -414,6 +414,10 @@ extern unsigned long try_to_free_pages(struct zonelist *zonelist, int order,
#define MEMCG_RECLAIM_PROACTIVE (1 << 2)
#define MIN_SWAPPINESS 0
#define MAX_SWAPPINESS 200
+
+/* Just recliam from anon folios in proactive memory reclaim */
+#define SWAPPINESS_ANON_ONLY (MAX_SWAPPINESS + 1)
+
extern unsigned long try_to_free_mem_cgroup_pages(struct mem_cgroup *memcg,
unsigned long nr_pages,
gfp_t gfp_mask,
@@ -450,7 +454,7 @@ static inline unsigned long total_swapcache_pages(void)
}
void free_swap_cache(struct folio *folio);
-void free_page_and_swap_cache(struct page *);
+void free_folio_and_swap_cache(struct folio *folio);
void free_pages_and_swap_cache(struct encoded_page **, int);
/* linux/mm/swapfile.c */
extern atomic_long_t nr_swap_pages;
@@ -520,10 +524,8 @@ static inline void put_swap_device(struct swap_info_struct *si)
#define si_swapinfo(val) \
do { (val)->freeswap = (val)->totalswap = 0; } while (0)
-/* only sparc can not include linux/pagemap.h in this file
- * so leave put_page and release_pages undeclared... */
-#define free_page_and_swap_cache(page) \
- put_page(page)
+#define free_folio_and_swap_cache(folio) \
+ folio_put(folio)
#define free_pages_and_swap_cache(pages, nr) \
release_pages((pages), (nr));
diff --git a/include/linux/uprobes.h b/include/linux/uprobes.h
index 2e46b69ff0a6..516217c39094 100644
--- a/include/linux/uprobes.h
+++ b/include/linux/uprobes.h
@@ -188,13 +188,13 @@ struct uprobes_state {
};
extern void __init uprobes_init(void);
-extern int set_swbp(struct arch_uprobe *aup, struct mm_struct *mm, unsigned long vaddr);
-extern int set_orig_insn(struct arch_uprobe *aup, struct mm_struct *mm, unsigned long vaddr);
+extern int set_swbp(struct arch_uprobe *aup, struct vm_area_struct *vma, unsigned long vaddr);
+extern int set_orig_insn(struct arch_uprobe *aup, struct vm_area_struct *vma, unsigned long vaddr);
extern bool is_swbp_insn(uprobe_opcode_t *insn);
extern bool is_trap_insn(uprobe_opcode_t *insn);
extern unsigned long uprobe_get_swbp_addr(struct pt_regs *regs);
extern unsigned long uprobe_get_trap_addr(struct pt_regs *regs);
-extern int uprobe_write_opcode(struct arch_uprobe *auprobe, struct mm_struct *mm, unsigned long vaddr, uprobe_opcode_t);
+extern int uprobe_write_opcode(struct arch_uprobe *auprobe, struct vm_area_struct *vma, unsigned long vaddr, uprobe_opcode_t);
extern struct uprobe *uprobe_register(struct inode *inode, loff_t offset, loff_t ref_ctr_offset, struct uprobe_consumer *uc);
extern int uprobe_apply(struct uprobe *uprobe, struct uprobe_consumer *uc, bool);
extern void uprobe_unregister_nosync(struct uprobe *uprobe, struct uprobe_consumer *uc);
diff --git a/include/linux/util_macros.h b/include/linux/util_macros.h
index 3b570b765b75..76ca2b83c13e 100644
--- a/include/linux/util_macros.h
+++ b/include/linux/util_macros.h
@@ -2,7 +2,10 @@
#ifndef _LINUX_HELPER_MACROS_H_
#define _LINUX_HELPER_MACROS_H_
+#include <linux/compiler_attributes.h>
#include <linux/math.h>
+#include <linux/typecheck.h>
+#include <linux/stddef.h>
/**
* for_each_if - helper for handling conditionals in various for_each macros
diff --git a/include/linux/xarray.h b/include/linux/xarray.h
index 78eede109b1a..be850174e802 100644
--- a/include/linux/xarray.h
+++ b/include/linux/xarray.h
@@ -965,10 +965,12 @@ static inline int __must_check xa_alloc_irq(struct xarray *xa, u32 *id,
* Must only be operated on an xarray initialized with flag XA_FLAGS_ALLOC set
* in xa_init_flags().
*
+ * Note that callers interested in whether wrapping has occurred should
+ * use __xa_alloc_cyclic() instead.
+ *
* Context: Any context. Takes and releases the xa_lock. May sleep if
* the @gfp flags permit.
- * Return: 0 if the allocation succeeded without wrapping. 1 if the
- * allocation succeeded after wrapping, -ENOMEM if memory could not be
+ * Return: 0 if the allocation succeeded, -ENOMEM if memory could not be
* allocated or -EBUSY if there are no free entries in @limit.
*/
static inline int xa_alloc_cyclic(struct xarray *xa, u32 *id, void *entry,
@@ -981,7 +983,7 @@ static inline int xa_alloc_cyclic(struct xarray *xa, u32 *id, void *entry,
err = __xa_alloc_cyclic(xa, id, entry, limit, next, gfp);
xa_unlock(xa);
- return err;
+ return err < 0 ? err : 0;
}
/**
@@ -1002,10 +1004,12 @@ static inline int xa_alloc_cyclic(struct xarray *xa, u32 *id, void *entry,
* Must only be operated on an xarray initialized with flag XA_FLAGS_ALLOC set
* in xa_init_flags().
*
+ * Note that callers interested in whether wrapping has occurred should
+ * use __xa_alloc_cyclic() instead.
+ *
* Context: Any context. Takes and releases the xa_lock while
* disabling softirqs. May sleep if the @gfp flags permit.
- * Return: 0 if the allocation succeeded without wrapping. 1 if the
- * allocation succeeded after wrapping, -ENOMEM if memory could not be
+ * Return: 0 if the allocation succeeded, -ENOMEM if memory could not be
* allocated or -EBUSY if there are no free entries in @limit.
*/
static inline int xa_alloc_cyclic_bh(struct xarray *xa, u32 *id, void *entry,
@@ -1018,7 +1022,7 @@ static inline int xa_alloc_cyclic_bh(struct xarray *xa, u32 *id, void *entry,
err = __xa_alloc_cyclic(xa, id, entry, limit, next, gfp);
xa_unlock_bh(xa);
- return err;
+ return err < 0 ? err : 0;
}
/**
@@ -1039,10 +1043,12 @@ static inline int xa_alloc_cyclic_bh(struct xarray *xa, u32 *id, void *entry,
* Must only be operated on an xarray initialized with flag XA_FLAGS_ALLOC set
* in xa_init_flags().
*
+ * Note that callers interested in whether wrapping has occurred should
+ * use __xa_alloc_cyclic() instead.
+ *
* Context: Process context. Takes and releases the xa_lock while
* disabling interrupts. May sleep if the @gfp flags permit.
- * Return: 0 if the allocation succeeded without wrapping. 1 if the
- * allocation succeeded after wrapping, -ENOMEM if memory could not be
+ * Return: 0 if the allocation succeeded, -ENOMEM if memory could not be
* allocated or -EBUSY if there are no free entries in @limit.
*/
static inline int xa_alloc_cyclic_irq(struct xarray *xa, u32 *id, void *entry,
@@ -1055,7 +1061,7 @@ static inline int xa_alloc_cyclic_irq(struct xarray *xa, u32 *id, void *entry,
err = __xa_alloc_cyclic(xa, id, entry, limit, next, gfp);
xa_unlock_irq(xa);
- return err;
+ return err < 0 ? err : 0;
}
/**
diff --git a/include/linux/zpool.h b/include/linux/zpool.h
index 52f30e526607..369ef068fad8 100644
--- a/include/linux/zpool.h
+++ b/include/linux/zpool.h
@@ -22,7 +22,7 @@ const char *zpool_get_type(struct zpool *pool);
void zpool_destroy_pool(struct zpool *pool);
int zpool_malloc(struct zpool *pool, size_t size, gfp_t gfp,
- unsigned long *handle);
+ unsigned long *handle, const int nid);
void zpool_free(struct zpool *pool, unsigned long handle);
@@ -64,7 +64,7 @@ struct zpool_driver {
void (*destroy)(void *pool);
int (*malloc)(void *pool, size_t size, gfp_t gfp,
- unsigned long *handle);
+ unsigned long *handle, const int nid);
void (*free)(void *pool, unsigned long handle);
void *(*obj_read_begin)(void *pool, unsigned long handle,
diff --git a/include/linux/zsmalloc.h b/include/linux/zsmalloc.h
index c26baf9fb331..13e9cc5490f7 100644
--- a/include/linux/zsmalloc.h
+++ b/include/linux/zsmalloc.h
@@ -26,7 +26,8 @@ struct zs_pool;
struct zs_pool *zs_create_pool(const char *name);
void zs_destroy_pool(struct zs_pool *pool);
-unsigned long zs_malloc(struct zs_pool *pool, size_t size, gfp_t flags);
+unsigned long zs_malloc(struct zs_pool *pool, size_t size, gfp_t flags,
+ const int nid);
void zs_free(struct zs_pool *pool, unsigned long obj);
size_t zs_huge_class_size(struct zs_pool *pool);