xref: /linux/include/linux/page_ext.h (revision 49bda4826843be0ef97a162009a29ea3a63f3935)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef __LINUX_PAGE_EXT_H
3 #define __LINUX_PAGE_EXT_H
4 
5 #include <linux/types.h>
6 #include <linux/mmzone.h>
7 #include <linux/stacktrace.h>
8 
9 struct pglist_data;
10 
11 #ifdef CONFIG_PAGE_EXTENSION
12 /**
13  * struct page_ext_operations - per page_ext client operations
14  * @offset: Offset to the client's data within page_ext. Offset is returned to
15  *          the client by page_ext_init.
16  * @size: The size of the client data within page_ext.
17  * @need: Function that returns true if client requires page_ext.
18  * @init: (optional) Called to initialize client once page_exts are allocated.
19  * @need_shared_flags: True when client is using shared page_ext->flags
20  *                     field.
21  *
22  * Each Page Extension client must define page_ext_operations in
23  * page_ext_ops array.
24  */
25 struct page_ext_operations {
26 	size_t offset;
27 	size_t size;
28 	bool (*need)(void);
29 	void (*init)(void);
30 	bool need_shared_flags;
31 };
32 
33 /*
34  * The page_ext_flags users must set need_shared_flags to true.
35  */
36 enum page_ext_flags {
37 	PAGE_EXT_OWNER,
38 	PAGE_EXT_OWNER_ALLOCATED,
39 #if defined(CONFIG_PAGE_IDLE_FLAG) && !defined(CONFIG_64BIT)
40 	PAGE_EXT_YOUNG,
41 	PAGE_EXT_IDLE,
42 #endif
43 };
44 
45 /*
46  * Page Extension can be considered as an extended mem_map.
47  * A page_ext page is associated with every page descriptor. The
48  * page_ext helps us add more information about the page.
49  * All page_ext are allocated at boot or memory hotplug event,
50  * then the page_ext for pfn always exists.
51  */
52 struct page_ext {
53 	unsigned long flags;
54 };
55 
56 extern bool early_page_ext;
57 extern unsigned long page_ext_size;
58 
early_page_ext_enabled(void)59 static inline bool early_page_ext_enabled(void)
60 {
61 	return early_page_ext;
62 }
63 
64 #ifdef CONFIG_SPARSEMEM
page_ext_init_flatmem(void)65 static inline void page_ext_init_flatmem(void)
66 {
67 }
68 extern void page_ext_init(void);
page_ext_init_flatmem_late(void)69 static inline void page_ext_init_flatmem_late(void)
70 {
71 }
72 
page_ext_iter_next_fast_possible(unsigned long next_pfn)73 static inline bool page_ext_iter_next_fast_possible(unsigned long next_pfn)
74 {
75 	/*
76 	 * page_ext is allocated per memory section. Once we cross a
77 	 * memory section, we have to fetch the new pointer.
78 	 */
79 	return next_pfn % PAGES_PER_SECTION;
80 }
81 #else
82 extern void page_ext_init_flatmem(void);
83 extern void page_ext_init_flatmem_late(void);
page_ext_init(void)84 static inline void page_ext_init(void)
85 {
86 }
87 
page_ext_iter_next_fast_possible(unsigned long next_pfn)88 static inline bool page_ext_iter_next_fast_possible(unsigned long next_pfn)
89 {
90 	return true;
91 }
92 #endif
93 
94 extern struct page_ext *page_ext_get(const struct page *page);
95 extern struct page_ext *page_ext_from_phys(phys_addr_t phys);
96 extern void page_ext_put(struct page_ext *page_ext);
97 extern struct page_ext *page_ext_lookup(unsigned long pfn);
98 
page_ext_data(struct page_ext * page_ext,struct page_ext_operations * ops)99 static inline void *page_ext_data(struct page_ext *page_ext,
100 				  struct page_ext_operations *ops)
101 {
102 	return (void *)(page_ext) + ops->offset;
103 }
104 
page_ext_next(struct page_ext * curr)105 static inline struct page_ext *page_ext_next(struct page_ext *curr)
106 {
107 	void *next = curr;
108 	next += page_ext_size;
109 	return next;
110 }
111 
112 struct page_ext_iter {
113 	unsigned long index;
114 	unsigned long start_pfn;
115 	struct page_ext *page_ext;
116 };
117 
118 /**
119  * page_ext_iter_begin() - Prepare for iterating through page extensions.
120  * @iter: page extension iterator.
121  * @pfn: PFN of the page we're interested in.
122  * @count: maximum number of page extensions to return.
123  *
124  * Must be called with RCU read lock taken.
125  *
126  * Return: NULL if no page_ext exists for this page.
127  */
page_ext_iter_begin(struct page_ext_iter * iter,unsigned long pfn,unsigned long count)128 static inline struct page_ext *page_ext_iter_begin(struct page_ext_iter *iter,
129 		unsigned long pfn, unsigned long count)
130 {
131 	if (!count)
132 		return NULL;
133 
134 	iter->index = 0;
135 	iter->start_pfn = pfn;
136 	iter->page_ext = page_ext_lookup(pfn);
137 
138 	return iter->page_ext;
139 }
140 
141 /**
142  * page_ext_iter_next() - Get next page extension
143  * @iter: page extension iterator.
144  * @count: maximum number of page extensions to return.
145  *
146  * Must be called with RCU read lock taken.
147  *
148  * Return: NULL if no next page_ext exists.
149  */
page_ext_iter_next(struct page_ext_iter * iter,unsigned long count)150 static inline struct page_ext *page_ext_iter_next(struct page_ext_iter *iter,
151 		unsigned long count)
152 {
153 	unsigned long pfn;
154 
155 	if (WARN_ON_ONCE(!iter->page_ext))
156 		return NULL;
157 
158 	if (++iter->index >= count)
159 		return NULL;
160 	pfn = iter->start_pfn + iter->index;
161 
162 	if (page_ext_iter_next_fast_possible(pfn))
163 		iter->page_ext = page_ext_next(iter->page_ext);
164 	else
165 		iter->page_ext = page_ext_lookup(pfn);
166 
167 	return iter->page_ext;
168 }
169 
170 /**
171  * page_ext_iter_get() - Get current page extension
172  * @iter: page extension iterator.
173  *
174  * Return: NULL if no page_ext exists for this iterator.
175  */
page_ext_iter_get(const struct page_ext_iter * iter)176 static inline struct page_ext *page_ext_iter_get(const struct page_ext_iter *iter)
177 {
178 	return iter->page_ext;
179 }
180 
181 /**
182  * for_each_page_ext(): iterate through page_ext objects.
183  * @__page: the page we're interested in
184  * @__pgcount: how many pages to iterate through
185  * @__page_ext: struct page_ext pointer where the current page_ext
186  *              object is returned
187  * @__iter: struct page_ext_iter object (defined in the stack)
188  *
189  * IMPORTANT: must be called with RCU read lock taken.
190  */
191 #define for_each_page_ext(__page, __pgcount, __page_ext, __iter) \
192 	for (__page_ext = page_ext_iter_begin(&__iter, page_to_pfn(__page), __pgcount); \
193 		__page_ext; \
194 		__page_ext = page_ext_iter_next(&__iter, __pgcount))
195 
196 #else /* !CONFIG_PAGE_EXTENSION */
197 struct page_ext;
198 
early_page_ext_enabled(void)199 static inline bool early_page_ext_enabled(void)
200 {
201 	return false;
202 }
203 
page_ext_init(void)204 static inline void page_ext_init(void)
205 {
206 }
207 
page_ext_init_flatmem_late(void)208 static inline void page_ext_init_flatmem_late(void)
209 {
210 }
211 
page_ext_init_flatmem(void)212 static inline void page_ext_init_flatmem(void)
213 {
214 }
215 
page_ext_get(const struct page * page)216 static inline struct page_ext *page_ext_get(const struct page *page)
217 {
218 	return NULL;
219 }
220 
page_ext_from_phys(phys_addr_t phys)221 static inline struct page_ext *page_ext_from_phys(phys_addr_t phys)
222 {
223 	return NULL;
224 }
225 
page_ext_put(struct page_ext * page_ext)226 static inline void page_ext_put(struct page_ext *page_ext)
227 {
228 }
229 #endif /* CONFIG_PAGE_EXTENSION */
230 #endif /* __LINUX_PAGE_EXT_H */
231