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TOMOYO Linux Cross Reference
Linux/fs/proc/page.c

Version: ~ [ linux-6.12-rc7 ] ~ [ linux-6.11.7 ] ~ [ linux-6.10.14 ] ~ [ linux-6.9.12 ] ~ [ linux-6.8.12 ] ~ [ linux-6.7.12 ] ~ [ linux-6.6.60 ] ~ [ linux-6.5.13 ] ~ [ linux-6.4.16 ] ~ [ linux-6.3.13 ] ~ [ linux-6.2.16 ] ~ [ linux-6.1.116 ] ~ [ linux-6.0.19 ] ~ [ linux-5.19.17 ] ~ [ linux-5.18.19 ] ~ [ linux-5.17.15 ] ~ [ linux-5.16.20 ] ~ [ linux-5.15.171 ] ~ [ linux-5.14.21 ] ~ [ linux-5.13.19 ] ~ [ linux-5.12.19 ] ~ [ linux-5.11.22 ] ~ [ linux-5.10.229 ] ~ [ linux-5.9.16 ] ~ [ linux-5.8.18 ] ~ [ linux-5.7.19 ] ~ [ linux-5.6.19 ] ~ [ linux-5.5.19 ] ~ [ linux-5.4.285 ] ~ [ linux-5.3.18 ] ~ [ linux-5.2.21 ] ~ [ linux-5.1.21 ] ~ [ linux-5.0.21 ] ~ [ linux-4.20.17 ] ~ [ linux-4.19.323 ] ~ [ linux-4.18.20 ] ~ [ linux-4.17.19 ] ~ [ linux-4.16.18 ] ~ [ linux-4.15.18 ] ~ [ linux-4.14.336 ] ~ [ linux-4.13.16 ] ~ [ linux-4.12.14 ] ~ [ linux-4.11.12 ] ~ [ linux-4.10.17 ] ~ [ linux-4.9.337 ] ~ [ linux-4.4.302 ] ~ [ linux-3.10.108 ] ~ [ linux-2.6.32.71 ] ~ [ linux-2.6.0 ] ~ [ linux-2.4.37.11 ] ~ [ unix-v6-master ] ~ [ ccs-tools-1.8.12 ] ~ [ policy-sample ] ~
Architecture: ~ [ i386 ] ~ [ alpha ] ~ [ m68k ] ~ [ mips ] ~ [ ppc ] ~ [ sparc ] ~ [ sparc64 ] ~

Diff markup

Differences between /fs/proc/page.c (Version linux-6.12-rc7) and /fs/proc/page.c (Version linux-5.15.171)


  1 // SPDX-License-Identifier: GPL-2.0                 1 // SPDX-License-Identifier: GPL-2.0
  2 #include <linux/memblock.h>                         2 #include <linux/memblock.h>
  3 #include <linux/compiler.h>                         3 #include <linux/compiler.h>
  4 #include <linux/fs.h>                               4 #include <linux/fs.h>
  5 #include <linux/init.h>                             5 #include <linux/init.h>
  6 #include <linux/ksm.h>                              6 #include <linux/ksm.h>
  7 #include <linux/mm.h>                               7 #include <linux/mm.h>
  8 #include <linux/mmzone.h>                           8 #include <linux/mmzone.h>
  9 #include <linux/huge_mm.h>                          9 #include <linux/huge_mm.h>
 10 #include <linux/proc_fs.h>                         10 #include <linux/proc_fs.h>
 11 #include <linux/seq_file.h>                        11 #include <linux/seq_file.h>
 12 #include <linux/hugetlb.h>                         12 #include <linux/hugetlb.h>
 13 #include <linux/memremap.h>                    << 
 14 #include <linux/memcontrol.h>                      13 #include <linux/memcontrol.h>
 15 #include <linux/mmu_notifier.h>                    14 #include <linux/mmu_notifier.h>
 16 #include <linux/page_idle.h>                       15 #include <linux/page_idle.h>
 17 #include <linux/kernel-page-flags.h>               16 #include <linux/kernel-page-flags.h>
 18 #include <linux/uaccess.h>                         17 #include <linux/uaccess.h>
 19 #include "internal.h"                              18 #include "internal.h"
 20                                                    19 
 21 #define KPMSIZE sizeof(u64)                        20 #define KPMSIZE sizeof(u64)
 22 #define KPMMASK (KPMSIZE - 1)                      21 #define KPMMASK (KPMSIZE - 1)
 23 #define KPMBITS (KPMSIZE * BITS_PER_BYTE)          22 #define KPMBITS (KPMSIZE * BITS_PER_BYTE)
 24                                                    23 
 25 static inline unsigned long get_max_dump_pfn(v     24 static inline unsigned long get_max_dump_pfn(void)
 26 {                                                  25 {
 27 #ifdef CONFIG_SPARSEMEM                            26 #ifdef CONFIG_SPARSEMEM
 28         /*                                         27         /*
 29          * The memmap of early sections is com     28          * The memmap of early sections is completely populated and marked
 30          * online even if max_pfn does not fal     29          * online even if max_pfn does not fall on a section boundary -
 31          * pfn_to_online_page() will succeed o     30          * pfn_to_online_page() will succeed on all pages. Allow inspecting
 32          * these memmaps.                          31          * these memmaps.
 33          */                                        32          */
 34         return round_up(max_pfn, PAGES_PER_SEC     33         return round_up(max_pfn, PAGES_PER_SECTION);
 35 #else                                              34 #else
 36         return max_pfn;                            35         return max_pfn;
 37 #endif                                             36 #endif
 38 }                                                  37 }
 39                                                    38 
 40 /* /proc/kpagecount - an array exposing page m !!  39 /* /proc/kpagecount - an array exposing page counts
 41  *                                                 40  *
 42  * Each entry is a u64 representing the corres     41  * Each entry is a u64 representing the corresponding
 43  * physical page mapcount.                     !!  42  * physical page count.
 44  */                                                43  */
 45 static ssize_t kpagecount_read(struct file *fi     44 static ssize_t kpagecount_read(struct file *file, char __user *buf,
 46                              size_t count, lof     45                              size_t count, loff_t *ppos)
 47 {                                                  46 {
 48         const unsigned long max_dump_pfn = get     47         const unsigned long max_dump_pfn = get_max_dump_pfn();
 49         u64 __user *out = (u64 __user *)buf;       48         u64 __user *out = (u64 __user *)buf;
                                                   >>  49         struct page *ppage;
 50         unsigned long src = *ppos;                 50         unsigned long src = *ppos;
 51         unsigned long pfn;                         51         unsigned long pfn;
 52         ssize_t ret = 0;                           52         ssize_t ret = 0;
                                                   >>  53         u64 pcount;
 53                                                    54 
 54         pfn = src / KPMSIZE;                       55         pfn = src / KPMSIZE;
 55         if (src & KPMMASK || count & KPMMASK)      56         if (src & KPMMASK || count & KPMMASK)
 56                 return -EINVAL;                    57                 return -EINVAL;
 57         if (src >= max_dump_pfn * KPMSIZE)         58         if (src >= max_dump_pfn * KPMSIZE)
 58                 return 0;                          59                 return 0;
 59         count = min_t(unsigned long, count, (m     60         count = min_t(unsigned long, count, (max_dump_pfn * KPMSIZE) - src);
 60                                                    61 
 61         while (count > 0) {                        62         while (count > 0) {
 62                 struct page *page;             << 
 63                 u64 mapcount = 0;              << 
 64                                                << 
 65                 /*                                 63                 /*
 66                  * TODO: ZONE_DEVICE support r     64                  * TODO: ZONE_DEVICE support requires to identify
 67                  * memmaps that were actually      65                  * memmaps that were actually initialized.
 68                  */                                66                  */
 69                 page = pfn_to_online_page(pfn) !!  67                 ppage = pfn_to_online_page(pfn);
 70                 if (page)                      << 
 71                         mapcount = folio_preci << 
 72                                                << 
 73                                                    68 
 74                 if (put_user(mapcount, out)) { !!  69                 if (!ppage || PageSlab(ppage) || page_has_type(ppage))
                                                   >>  70                         pcount = 0;
                                                   >>  71                 else
                                                   >>  72                         pcount = page_mapcount(ppage);
                                                   >>  73 
                                                   >>  74                 if (put_user(pcount, out)) {
 75                         ret = -EFAULT;             75                         ret = -EFAULT;
 76                         break;                     76                         break;
 77                 }                                  77                 }
 78                                                    78 
 79                 pfn++;                             79                 pfn++;
 80                 out++;                             80                 out++;
 81                 count -= KPMSIZE;                  81                 count -= KPMSIZE;
 82                                                    82 
 83                 cond_resched();                    83                 cond_resched();
 84         }                                          84         }
 85                                                    85 
 86         *ppos += (char __user *)out - buf;         86         *ppos += (char __user *)out - buf;
 87         if (!ret)                                  87         if (!ret)
 88                 ret = (char __user *)out - buf     88                 ret = (char __user *)out - buf;
 89         return ret;                                89         return ret;
 90 }                                                  90 }
 91                                                    91 
 92 static const struct proc_ops kpagecount_proc_o     92 static const struct proc_ops kpagecount_proc_ops = {
 93         .proc_flags     = PROC_ENTRY_PERMANENT << 
 94         .proc_lseek     = mem_lseek,               93         .proc_lseek     = mem_lseek,
 95         .proc_read      = kpagecount_read,         94         .proc_read      = kpagecount_read,
 96 };                                                 95 };
 97                                                    96 
 98 /* /proc/kpageflags - an array exposing page f     97 /* /proc/kpageflags - an array exposing page flags
 99  *                                                 98  *
100  * Each entry is a u64 representing the corres     99  * Each entry is a u64 representing the corresponding
101  * physical page flags.                           100  * physical page flags.
102  */                                               101  */
103                                                   102 
104 static inline u64 kpf_copy_bit(u64 kflags, int    103 static inline u64 kpf_copy_bit(u64 kflags, int ubit, int kbit)
105 {                                                 104 {
106         return ((kflags >> kbit) & 1) << ubit;    105         return ((kflags >> kbit) & 1) << ubit;
107 }                                                 106 }
108                                                   107 
109 u64 stable_page_flags(const struct page *page) !! 108 u64 stable_page_flags(struct page *page)
110 {                                                 109 {
111         const struct folio *folio;             !! 110         u64 k;
112         unsigned long k;                       !! 111         u64 u;
113         unsigned long mapping;                 << 
114         bool is_anon;                          << 
115         u64 u = 0;                             << 
116                                                   112 
117         /*                                        113         /*
118          * pseudo flag: KPF_NOPAGE                114          * pseudo flag: KPF_NOPAGE
119          * it differentiates a memory hole fro    115          * it differentiates a memory hole from a page with no flags
120          */                                       116          */
121         if (!page)                                117         if (!page)
122                 return 1 << KPF_NOPAGE;           118                 return 1 << KPF_NOPAGE;
123         folio = page_folio(page);              << 
124                                                   119 
125         k = folio->flags;                      !! 120         k = page->flags;
126         mapping = (unsigned long)folio->mappin !! 121         u = 0;
127         is_anon = mapping & PAGE_MAPPING_ANON; << 
128                                                   122 
129         /*                                        123         /*
130          * pseudo flags for the well known (an    124          * pseudo flags for the well known (anonymous) memory mapped pages
                                                   >> 125          *
                                                   >> 126          * Note that page->_mapcount is overloaded in SLOB/SLUB/SLQB, so the
                                                   >> 127          * simple test in page_mapped() is not enough.
131          */                                       128          */
132         if (page_mapped(page))                 !! 129         if (!PageSlab(page) && page_mapped(page))
133                 u |= 1 << KPF_MMAP;               130                 u |= 1 << KPF_MMAP;
134         if (is_anon) {                         !! 131         if (PageAnon(page))
135                 u |= 1 << KPF_ANON;               132                 u |= 1 << KPF_ANON;
136                 if (mapping & PAGE_MAPPING_KSM !! 133         if (PageKsm(page))
137                         u |= 1 << KPF_KSM;     !! 134                 u |= 1 << KPF_KSM;
138         }                                      << 
139                                                   135 
140         /*                                        136         /*
141          * compound pages: export both head/ta    137          * compound pages: export both head/tail info
142          * they together define a compound pag    138          * they together define a compound page's start/end pos and order
143          */                                       139          */
144         if (page == &folio->page)              !! 140         if (PageHead(page))
145                 u |= kpf_copy_bit(k, KPF_COMPO !! 141                 u |= 1 << KPF_COMPOUND_HEAD;
146         else                                   !! 142         if (PageTail(page))
147                 u |= 1 << KPF_COMPOUND_TAIL;      143                 u |= 1 << KPF_COMPOUND_TAIL;
148         if (folio_test_hugetlb(folio))         !! 144         if (PageHuge(page))
149                 u |= 1 << KPF_HUGE;               145                 u |= 1 << KPF_HUGE;
150         else if (folio_test_large(folio) &&    !! 146         /*
151                  folio_test_large_rmappable(fo !! 147          * PageTransCompound can be true for non-huge compound pages (slab
152                 /* Note: we indicate any THPs  !! 148          * pages or pages allocated by drivers with __GFP_COMP) because it
153                 u |= 1 << KPF_THP;             !! 149          * just checks PG_head/PG_tail, so we need to check PageLRU/PageAnon
154         } else if (is_huge_zero_folio(folio))  !! 150          * to make sure a given page is a thp, not a non-huge compound page.
155                 u |= 1 << KPF_ZERO_PAGE;       !! 151          */
156                 u |= 1 << KPF_THP;             !! 152         else if (PageTransCompound(page)) {
157         } else if (is_zero_folio(folio)) {     !! 153                 struct page *head = compound_head(page);
                                                   >> 154 
                                                   >> 155                 if (PageLRU(head) || PageAnon(head))
                                                   >> 156                         u |= 1 << KPF_THP;
                                                   >> 157                 else if (is_huge_zero_page(head)) {
                                                   >> 158                         u |= 1 << KPF_ZERO_PAGE;
                                                   >> 159                         u |= 1 << KPF_THP;
                                                   >> 160                 }
                                                   >> 161         } else if (is_zero_pfn(page_to_pfn(page)))
158                 u |= 1 << KPF_ZERO_PAGE;          162                 u |= 1 << KPF_ZERO_PAGE;
159         }                                      !! 163 
160                                                   164 
161         /*                                        165         /*
162          * Caveats on high order pages: PG_bud !! 166          * Caveats on high order pages: page->_refcount will only be set
163          * on the head page.                   !! 167          * -1 on the head page; SLUB/SLQB do the same for PG_slab;
                                                   >> 168          * SLOB won't set PG_slab at all on compound pages.
164          */                                       169          */
165         if (PageBuddy(page))                      170         if (PageBuddy(page))
166                 u |= 1 << KPF_BUDDY;              171                 u |= 1 << KPF_BUDDY;
167         else if (page_count(page) == 0 && is_f    172         else if (page_count(page) == 0 && is_free_buddy_page(page))
168                 u |= 1 << KPF_BUDDY;              173                 u |= 1 << KPF_BUDDY;
169                                                   174 
170         if (PageOffline(page))                    175         if (PageOffline(page))
171                 u |= 1 << KPF_OFFLINE;            176                 u |= 1 << KPF_OFFLINE;
172         if (PageTable(page))                      177         if (PageTable(page))
173                 u |= 1 << KPF_PGTABLE;            178                 u |= 1 << KPF_PGTABLE;
174         if (folio_test_slab(folio))            << 
175                 u |= 1 << KPF_SLAB;            << 
176                                                   179 
177 #if defined(CONFIG_PAGE_IDLE_FLAG) && defined( !! 180         if (page_is_idle(page))
178         u |= kpf_copy_bit(k, KPF_IDLE,         << 
179 #else                                          << 
180         if (folio_test_idle(folio))            << 
181                 u |= 1 << KPF_IDLE;               181                 u |= 1 << KPF_IDLE;
182 #endif                                         << 
183                                                   182 
184         u |= kpf_copy_bit(k, KPF_LOCKED,          183         u |= kpf_copy_bit(k, KPF_LOCKED,        PG_locked);
                                                   >> 184 
                                                   >> 185         u |= kpf_copy_bit(k, KPF_SLAB,          PG_slab);
                                                   >> 186         if (PageTail(page) && PageSlab(compound_head(page)))
                                                   >> 187                 u |= 1 << KPF_SLAB;
                                                   >> 188 
                                                   >> 189         u |= kpf_copy_bit(k, KPF_ERROR,         PG_error);
185         u |= kpf_copy_bit(k, KPF_DIRTY,           190         u |= kpf_copy_bit(k, KPF_DIRTY,         PG_dirty);
186         u |= kpf_copy_bit(k, KPF_UPTODATE,        191         u |= kpf_copy_bit(k, KPF_UPTODATE,      PG_uptodate);
187         u |= kpf_copy_bit(k, KPF_WRITEBACK,       192         u |= kpf_copy_bit(k, KPF_WRITEBACK,     PG_writeback);
188                                                   193 
189         u |= kpf_copy_bit(k, KPF_LRU,             194         u |= kpf_copy_bit(k, KPF_LRU,           PG_lru);
190         u |= kpf_copy_bit(k, KPF_REFERENCED,      195         u |= kpf_copy_bit(k, KPF_REFERENCED,    PG_referenced);
191         u |= kpf_copy_bit(k, KPF_ACTIVE,          196         u |= kpf_copy_bit(k, KPF_ACTIVE,        PG_active);
192         u |= kpf_copy_bit(k, KPF_RECLAIM,         197         u |= kpf_copy_bit(k, KPF_RECLAIM,       PG_reclaim);
193                                                   198 
194 #define SWAPCACHE ((1 << PG_swapbacked) | (1 < !! 199         if (PageSwapCache(page))
195         if ((k & SWAPCACHE) == SWAPCACHE)      << 
196                 u |= 1 << KPF_SWAPCACHE;          200                 u |= 1 << KPF_SWAPCACHE;
197         u |= kpf_copy_bit(k, KPF_SWAPBACKED,      201         u |= kpf_copy_bit(k, KPF_SWAPBACKED,    PG_swapbacked);
198                                                   202 
199         u |= kpf_copy_bit(k, KPF_UNEVICTABLE,     203         u |= kpf_copy_bit(k, KPF_UNEVICTABLE,   PG_unevictable);
200         u |= kpf_copy_bit(k, KPF_MLOCKED,         204         u |= kpf_copy_bit(k, KPF_MLOCKED,       PG_mlocked);
201                                                   205 
202 #ifdef CONFIG_MEMORY_FAILURE                      206 #ifdef CONFIG_MEMORY_FAILURE
203         if (u & (1 << KPF_HUGE))               !! 207         u |= kpf_copy_bit(k, KPF_HWPOISON,      PG_hwpoison);
204                 u |= kpf_copy_bit(k, KPF_HWPOI !! 208 #endif
205         else                                   !! 209 
206                 u |= kpf_copy_bit(page->flags, !! 210 #ifdef CONFIG_ARCH_USES_PG_UNCACHED
                                                   >> 211         u |= kpf_copy_bit(k, KPF_UNCACHED,      PG_uncached);
207 #endif                                            212 #endif
208                                                   213 
209         u |= kpf_copy_bit(k, KPF_RESERVED,        214         u |= kpf_copy_bit(k, KPF_RESERVED,      PG_reserved);
210         u |= kpf_copy_bit(k, KPF_OWNER_2,      !! 215         u |= kpf_copy_bit(k, KPF_MAPPEDTODISK,  PG_mappedtodisk);
211         u |= kpf_copy_bit(k, KPF_PRIVATE,         216         u |= kpf_copy_bit(k, KPF_PRIVATE,       PG_private);
212         u |= kpf_copy_bit(k, KPF_PRIVATE_2,       217         u |= kpf_copy_bit(k, KPF_PRIVATE_2,     PG_private_2);
213         u |= kpf_copy_bit(k, KPF_OWNER_PRIVATE    218         u |= kpf_copy_bit(k, KPF_OWNER_PRIVATE, PG_owner_priv_1);
214         u |= kpf_copy_bit(k, KPF_ARCH,            219         u |= kpf_copy_bit(k, KPF_ARCH,          PG_arch_1);
215 #ifdef CONFIG_ARCH_USES_PG_ARCH_2              !! 220 #ifdef CONFIG_64BIT
216         u |= kpf_copy_bit(k, KPF_ARCH_2,          221         u |= kpf_copy_bit(k, KPF_ARCH_2,        PG_arch_2);
217 #endif                                            222 #endif
218 #ifdef CONFIG_ARCH_USES_PG_ARCH_3              << 
219         u |= kpf_copy_bit(k, KPF_ARCH_3,       << 
220 #endif                                         << 
221                                                   223 
222         return u;                                 224         return u;
223 };                                                225 };
224                                                   226 
225 static ssize_t kpageflags_read(struct file *fi    227 static ssize_t kpageflags_read(struct file *file, char __user *buf,
226                              size_t count, lof    228                              size_t count, loff_t *ppos)
227 {                                                 229 {
228         const unsigned long max_dump_pfn = get    230         const unsigned long max_dump_pfn = get_max_dump_pfn();
229         u64 __user *out = (u64 __user *)buf;      231         u64 __user *out = (u64 __user *)buf;
                                                   >> 232         struct page *ppage;
230         unsigned long src = *ppos;                233         unsigned long src = *ppos;
231         unsigned long pfn;                        234         unsigned long pfn;
232         ssize_t ret = 0;                          235         ssize_t ret = 0;
233                                                   236 
234         pfn = src / KPMSIZE;                      237         pfn = src / KPMSIZE;
235         if (src & KPMMASK || count & KPMMASK)     238         if (src & KPMMASK || count & KPMMASK)
236                 return -EINVAL;                   239                 return -EINVAL;
237         if (src >= max_dump_pfn * KPMSIZE)        240         if (src >= max_dump_pfn * KPMSIZE)
238                 return 0;                         241                 return 0;
239         count = min_t(unsigned long, count, (m    242         count = min_t(unsigned long, count, (max_dump_pfn * KPMSIZE) - src);
240                                                   243 
241         while (count > 0) {                       244         while (count > 0) {
242                 /*                                245                 /*
243                  * TODO: ZONE_DEVICE support r    246                  * TODO: ZONE_DEVICE support requires to identify
244                  * memmaps that were actually     247                  * memmaps that were actually initialized.
245                  */                               248                  */
246                 struct page *page = pfn_to_onl !! 249                 ppage = pfn_to_online_page(pfn);
247                                                   250 
248                 if (put_user(stable_page_flags !! 251                 if (put_user(stable_page_flags(ppage), out)) {
249                         ret = -EFAULT;            252                         ret = -EFAULT;
250                         break;                    253                         break;
251                 }                                 254                 }
252                                                   255 
253                 pfn++;                            256                 pfn++;
254                 out++;                            257                 out++;
255                 count -= KPMSIZE;                 258                 count -= KPMSIZE;
256                                                   259 
257                 cond_resched();                   260                 cond_resched();
258         }                                         261         }
259                                                   262 
260         *ppos += (char __user *)out - buf;        263         *ppos += (char __user *)out - buf;
261         if (!ret)                                 264         if (!ret)
262                 ret = (char __user *)out - buf    265                 ret = (char __user *)out - buf;
263         return ret;                               266         return ret;
264 }                                                 267 }
265                                                   268 
266 static const struct proc_ops kpageflags_proc_o    269 static const struct proc_ops kpageflags_proc_ops = {
267         .proc_flags     = PROC_ENTRY_PERMANENT << 
268         .proc_lseek     = mem_lseek,              270         .proc_lseek     = mem_lseek,
269         .proc_read      = kpageflags_read,        271         .proc_read      = kpageflags_read,
270 };                                                272 };
271                                                   273 
272 #ifdef CONFIG_MEMCG                               274 #ifdef CONFIG_MEMCG
273 static ssize_t kpagecgroup_read(struct file *f    275 static ssize_t kpagecgroup_read(struct file *file, char __user *buf,
274                                 size_t count,     276                                 size_t count, loff_t *ppos)
275 {                                                 277 {
276         const unsigned long max_dump_pfn = get    278         const unsigned long max_dump_pfn = get_max_dump_pfn();
277         u64 __user *out = (u64 __user *)buf;      279         u64 __user *out = (u64 __user *)buf;
278         struct page *ppage;                       280         struct page *ppage;
279         unsigned long src = *ppos;                281         unsigned long src = *ppos;
280         unsigned long pfn;                        282         unsigned long pfn;
281         ssize_t ret = 0;                          283         ssize_t ret = 0;
282         u64 ino;                                  284         u64 ino;
283                                                   285 
284         pfn = src / KPMSIZE;                      286         pfn = src / KPMSIZE;
285         if (src & KPMMASK || count & KPMMASK)     287         if (src & KPMMASK || count & KPMMASK)
286                 return -EINVAL;                   288                 return -EINVAL;
287         if (src >= max_dump_pfn * KPMSIZE)        289         if (src >= max_dump_pfn * KPMSIZE)
288                 return 0;                         290                 return 0;
289         count = min_t(unsigned long, count, (m    291         count = min_t(unsigned long, count, (max_dump_pfn * KPMSIZE) - src);
290                                                   292 
291         while (count > 0) {                       293         while (count > 0) {
292                 /*                                294                 /*
293                  * TODO: ZONE_DEVICE support r    295                  * TODO: ZONE_DEVICE support requires to identify
294                  * memmaps that were actually     296                  * memmaps that were actually initialized.
295                  */                               297                  */
296                 ppage = pfn_to_online_page(pfn    298                 ppage = pfn_to_online_page(pfn);
297                                                   299 
298                 if (ppage)                        300                 if (ppage)
299                         ino = page_cgroup_ino(    301                         ino = page_cgroup_ino(ppage);
300                 else                              302                 else
301                         ino = 0;                  303                         ino = 0;
302                                                   304 
303                 if (put_user(ino, out)) {         305                 if (put_user(ino, out)) {
304                         ret = -EFAULT;            306                         ret = -EFAULT;
305                         break;                    307                         break;
306                 }                                 308                 }
307                                                   309 
308                 pfn++;                            310                 pfn++;
309                 out++;                            311                 out++;
310                 count -= KPMSIZE;                 312                 count -= KPMSIZE;
311                                                   313 
312                 cond_resched();                   314                 cond_resched();
313         }                                         315         }
314                                                   316 
315         *ppos += (char __user *)out - buf;        317         *ppos += (char __user *)out - buf;
316         if (!ret)                                 318         if (!ret)
317                 ret = (char __user *)out - buf    319                 ret = (char __user *)out - buf;
318         return ret;                               320         return ret;
319 }                                                 321 }
320                                                   322 
321 static const struct proc_ops kpagecgroup_proc_    323 static const struct proc_ops kpagecgroup_proc_ops = {
322         .proc_flags     = PROC_ENTRY_PERMANENT << 
323         .proc_lseek     = mem_lseek,              324         .proc_lseek     = mem_lseek,
324         .proc_read      = kpagecgroup_read,       325         .proc_read      = kpagecgroup_read,
325 };                                                326 };
326 #endif /* CONFIG_MEMCG */                         327 #endif /* CONFIG_MEMCG */
327                                                   328 
328 static int __init proc_page_init(void)            329 static int __init proc_page_init(void)
329 {                                                 330 {
330         proc_create("kpagecount", S_IRUSR, NUL    331         proc_create("kpagecount", S_IRUSR, NULL, &kpagecount_proc_ops);
331         proc_create("kpageflags", S_IRUSR, NUL    332         proc_create("kpageflags", S_IRUSR, NULL, &kpageflags_proc_ops);
332 #ifdef CONFIG_MEMCG                               333 #ifdef CONFIG_MEMCG
333         proc_create("kpagecgroup", S_IRUSR, NU    334         proc_create("kpagecgroup", S_IRUSR, NULL, &kpagecgroup_proc_ops);
334 #endif                                            335 #endif
335         return 0;                                 336         return 0;
336 }                                                 337 }
337 fs_initcall(proc_page_init);                      338 fs_initcall(proc_page_init);
338                                                   339 

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