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TOMOYO Linux Cross Reference
Linux/mm/filemap.c

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Diff markup

Differences between /mm/filemap.c (Version linux-6.12-rc7) and /mm/filemap.c (Version linux-4.20.17)


  1 // SPDX-License-Identifier: GPL-2.0-only       << 
  2 /*                                                  1 /*
  3  *      linux/mm/filemap.c                          2  *      linux/mm/filemap.c
  4  *                                                  3  *
  5  * Copyright (C) 1994-1999  Linus Torvalds          4  * Copyright (C) 1994-1999  Linus Torvalds
  6  */                                                 5  */
  7                                                     6 
  8 /*                                                  7 /*
  9  * This file handles the generic file mmap sem      8  * This file handles the generic file mmap semantics used by
 10  * most "normal" filesystems (but you don't /h      9  * most "normal" filesystems (but you don't /have/ to use this:
 11  * the NFS filesystem used to do this differen     10  * the NFS filesystem used to do this differently, for example)
 12  */                                                11  */
 13 #include <linux/export.h>                          12 #include <linux/export.h>
 14 #include <linux/compiler.h>                        13 #include <linux/compiler.h>
 15 #include <linux/dax.h>                             14 #include <linux/dax.h>
 16 #include <linux/fs.h>                              15 #include <linux/fs.h>
 17 #include <linux/sched/signal.h>                    16 #include <linux/sched/signal.h>
 18 #include <linux/uaccess.h>                         17 #include <linux/uaccess.h>
 19 #include <linux/capability.h>                      18 #include <linux/capability.h>
 20 #include <linux/kernel_stat.h>                     19 #include <linux/kernel_stat.h>
 21 #include <linux/gfp.h>                             20 #include <linux/gfp.h>
 22 #include <linux/mm.h>                              21 #include <linux/mm.h>
 23 #include <linux/swap.h>                            22 #include <linux/swap.h>
 24 #include <linux/swapops.h>                     << 
 25 #include <linux/syscalls.h>                    << 
 26 #include <linux/mman.h>                            23 #include <linux/mman.h>
 27 #include <linux/pagemap.h>                         24 #include <linux/pagemap.h>
 28 #include <linux/file.h>                            25 #include <linux/file.h>
 29 #include <linux/uio.h>                             26 #include <linux/uio.h>
 30 #include <linux/error-injection.h>             << 
 31 #include <linux/hash.h>                            27 #include <linux/hash.h>
 32 #include <linux/writeback.h>                       28 #include <linux/writeback.h>
 33 #include <linux/backing-dev.h>                     29 #include <linux/backing-dev.h>
 34 #include <linux/pagevec.h>                         30 #include <linux/pagevec.h>
                                                   >>  31 #include <linux/blkdev.h>
 35 #include <linux/security.h>                        32 #include <linux/security.h>
 36 #include <linux/cpuset.h>                          33 #include <linux/cpuset.h>
 37 #include <linux/hugetlb.h>                         34 #include <linux/hugetlb.h>
 38 #include <linux/memcontrol.h>                      35 #include <linux/memcontrol.h>
                                                   >>  36 #include <linux/cleancache.h>
 39 #include <linux/shmem_fs.h>                        37 #include <linux/shmem_fs.h>
 40 #include <linux/rmap.h>                            38 #include <linux/rmap.h>
 41 #include <linux/delayacct.h>                       39 #include <linux/delayacct.h>
 42 #include <linux/psi.h>                             40 #include <linux/psi.h>
 43 #include <linux/ramfs.h>                       << 
 44 #include <linux/page_idle.h>                   << 
 45 #include <linux/migrate.h>                     << 
 46 #include <linux/pipe_fs_i.h>                   << 
 47 #include <linux/splice.h>                      << 
 48 #include <linux/rcupdate_wait.h>               << 
 49 #include <linux/sched/mm.h>                    << 
 50 #include <asm/pgalloc.h>                       << 
 51 #include <asm/tlbflush.h>                      << 
 52 #include "internal.h"                              41 #include "internal.h"
 53                                                    42 
 54 #define CREATE_TRACE_POINTS                        43 #define CREATE_TRACE_POINTS
 55 #include <trace/events/filemap.h>                  44 #include <trace/events/filemap.h>
 56                                                    45 
 57 /*                                                 46 /*
 58  * FIXME: remove all knowledge of the buffer l     47  * FIXME: remove all knowledge of the buffer layer from the core VM
 59  */                                                48  */
 60 #include <linux/buffer_head.h> /* for try_to_f     49 #include <linux/buffer_head.h> /* for try_to_free_buffers */
 61                                                    50 
 62 #include <asm/mman.h>                              51 #include <asm/mman.h>
 63                                                    52 
 64 #include "swap.h"                              << 
 65                                                << 
 66 /*                                                 53 /*
 67  * Shared mappings implemented 30.11.1994. It'     54  * Shared mappings implemented 30.11.1994. It's not fully working yet,
 68  * though.                                         55  * though.
 69  *                                                 56  *
 70  * Shared mappings now work. 15.8.1995  Bruno.     57  * Shared mappings now work. 15.8.1995  Bruno.
 71  *                                                 58  *
 72  * finished 'unifying' the page and buffer cac     59  * finished 'unifying' the page and buffer cache and SMP-threaded the
 73  * page-cache, 21.05.1999, Ingo Molnar <mingo@     60  * page-cache, 21.05.1999, Ingo Molnar <mingo@redhat.com>
 74  *                                                 61  *
 75  * SMP-threaded pagemap-LRU 1999, Andrea Arcan     62  * SMP-threaded pagemap-LRU 1999, Andrea Arcangeli <andrea@suse.de>
 76  */                                                63  */
 77                                                    64 
 78 /*                                                 65 /*
 79  * Lock ordering:                                  66  * Lock ordering:
 80  *                                                 67  *
 81  *  ->i_mmap_rwsem              (truncate_page     68  *  ->i_mmap_rwsem              (truncate_pagecache)
 82  *    ->private_lock            (__free_pte->b !!  69  *    ->private_lock            (__free_pte->__set_page_dirty_buffers)
 83  *      ->swap_lock             (exclusive_swa     70  *      ->swap_lock             (exclusive_swap_page, others)
 84  *        ->i_pages lock                           71  *        ->i_pages lock
 85  *                                                 72  *
 86  *  ->i_rwsem                                  !!  73  *  ->i_mutex
 87  *    ->invalidate_lock         (acquired by f !!  74  *    ->i_mmap_rwsem            (truncate->unmap_mapping_range)
 88  *      ->i_mmap_rwsem          (truncate->unm << 
 89  *                                                 75  *
 90  *  ->mmap_lock                                !!  76  *  ->mmap_sem
 91  *    ->i_mmap_rwsem                               77  *    ->i_mmap_rwsem
 92  *      ->page_table_lock or pte_lock   (vario     78  *      ->page_table_lock or pte_lock   (various, mainly in memory.c)
 93  *        ->i_pages lock        (arch-dependen     79  *        ->i_pages lock        (arch-dependent flush_dcache_mmap_lock)
 94  *                                                 80  *
 95  *  ->mmap_lock                                !!  81  *  ->mmap_sem
 96  *    ->invalidate_lock         (filemap_fault !!  82  *    ->lock_page               (access_process_vm)
 97  *      ->lock_page             (filemap_fault << 
 98  *                                                 83  *
 99  *  ->i_rwsem                   (generic_perfo !!  84  *  ->i_mutex                   (generic_perform_write)
100  *    ->mmap_lock               (fault_in_read !!  85  *    ->mmap_sem                (fault_in_pages_readable->do_page_fault)
101  *                                                 86  *
102  *  bdi->wb.list_lock                              87  *  bdi->wb.list_lock
103  *    sb_lock                   (fs/fs-writeba     88  *    sb_lock                   (fs/fs-writeback.c)
104  *    ->i_pages lock            (__sync_single     89  *    ->i_pages lock            (__sync_single_inode)
105  *                                                 90  *
106  *  ->i_mmap_rwsem                                 91  *  ->i_mmap_rwsem
107  *    ->anon_vma.lock           (vma_merge)    !!  92  *    ->anon_vma.lock           (vma_adjust)
108  *                                                 93  *
109  *  ->anon_vma.lock                                94  *  ->anon_vma.lock
110  *    ->page_table_lock or pte_lock     (anon_     95  *    ->page_table_lock or pte_lock     (anon_vma_prepare and various)
111  *                                                 96  *
112  *  ->page_table_lock or pte_lock                  97  *  ->page_table_lock or pte_lock
113  *    ->swap_lock               (try_to_unmap_     98  *    ->swap_lock               (try_to_unmap_one)
114  *    ->private_lock            (try_to_unmap_     99  *    ->private_lock            (try_to_unmap_one)
115  *    ->i_pages lock            (try_to_unmap_    100  *    ->i_pages lock            (try_to_unmap_one)
116  *    ->lruvec->lru_lock        (follow_page_m !! 101  *    ->zone_lru_lock(zone)     (follow_page->mark_page_accessed)
117  *    ->lruvec->lru_lock        (check_pte_ran !! 102  *    ->zone_lru_lock(zone)     (check_pte_range->isolate_lru_page)
118  *    ->private_lock            (folio_remove_ !! 103  *    ->private_lock            (page_remove_rmap->set_page_dirty)
119  *    ->i_pages lock            (folio_remove_ !! 104  *    ->i_pages lock            (page_remove_rmap->set_page_dirty)
120  *    bdi.wb->list_lock         (folio_remove_ !! 105  *    bdi.wb->list_lock         (page_remove_rmap->set_page_dirty)
121  *    ->inode->i_lock           (folio_remove_ !! 106  *    ->inode->i_lock           (page_remove_rmap->set_page_dirty)
122  *    ->memcg->move_lock        (folio_remove_ !! 107  *    ->memcg->move_lock        (page_remove_rmap->lock_page_memcg)
123  *    bdi.wb->list_lock         (zap_pte_range    108  *    bdi.wb->list_lock         (zap_pte_range->set_page_dirty)
124  *    ->inode->i_lock           (zap_pte_range    109  *    ->inode->i_lock           (zap_pte_range->set_page_dirty)
125  *    ->private_lock            (zap_pte_range !! 110  *    ->private_lock            (zap_pte_range->__set_page_dirty_buffers)
                                                   >> 111  *
                                                   >> 112  * ->i_mmap_rwsem
                                                   >> 113  *   ->tasklist_lock            (memory_failure, collect_procs_ao)
126  */                                               114  */
127                                                   115 
128 static void mapping_set_update(struct xa_state << 
129                 struct address_space *mapping) << 
130 {                                              << 
131         if (dax_mapping(mapping) || shmem_mapp << 
132                 return;                        << 
133         xas_set_update(xas, workingset_update_ << 
134         xas_set_lru(xas, &shadow_nodes);       << 
135 }                                              << 
136                                                << 
137 static void page_cache_delete(struct address_s    116 static void page_cache_delete(struct address_space *mapping,
138                                    struct foli !! 117                                    struct page *page, void *shadow)
139 {                                                 118 {
140         XA_STATE(xas, &mapping->i_pages, folio !! 119         XA_STATE(xas, &mapping->i_pages, page->index);
141         long nr = 1;                           !! 120         unsigned int nr = 1;
142                                                   121 
143         mapping_set_update(&xas, mapping);        122         mapping_set_update(&xas, mapping);
144                                                   123 
145         xas_set_order(&xas, folio->index, foli !! 124         /* hugetlb pages are represented by a single entry in the xarray */
146         nr = folio_nr_pages(folio);            !! 125         if (!PageHuge(page)) {
                                                   >> 126                 xas_set_order(&xas, page->index, compound_order(page));
                                                   >> 127                 nr = 1U << compound_order(page);
                                                   >> 128         }
147                                                   129 
148         VM_BUG_ON_FOLIO(!folio_test_locked(fol !! 130         VM_BUG_ON_PAGE(!PageLocked(page), page);
                                                   >> 131         VM_BUG_ON_PAGE(PageTail(page), page);
                                                   >> 132         VM_BUG_ON_PAGE(nr != 1 && shadow, page);
149                                                   133 
150         xas_store(&xas, shadow);                  134         xas_store(&xas, shadow);
151         xas_init_marks(&xas);                     135         xas_init_marks(&xas);
152                                                   136 
153         folio->mapping = NULL;                 !! 137         page->mapping = NULL;
154         /* Leave page->index set: truncation l    138         /* Leave page->index set: truncation lookup relies upon it */
                                                   >> 139 
                                                   >> 140         if (shadow) {
                                                   >> 141                 mapping->nrexceptional += nr;
                                                   >> 142                 /*
                                                   >> 143                  * Make sure the nrexceptional update is committed before
                                                   >> 144                  * the nrpages update so that final truncate racing
                                                   >> 145                  * with reclaim does not see both counters 0 at the
                                                   >> 146                  * same time and miss a shadow entry.
                                                   >> 147                  */
                                                   >> 148                 smp_wmb();
                                                   >> 149         }
155         mapping->nrpages -= nr;                   150         mapping->nrpages -= nr;
156 }                                                 151 }
157                                                   152 
158 static void filemap_unaccount_folio(struct add !! 153 static void unaccount_page_cache_page(struct address_space *mapping,
159                 struct folio *folio)           !! 154                                       struct page *page)
160 {                                                 155 {
161         long nr;                               !! 156         int nr;
                                                   >> 157 
                                                   >> 158         /*
                                                   >> 159          * if we're uptodate, flush out into the cleancache, otherwise
                                                   >> 160          * invalidate any existing cleancache entries.  We can't leave
                                                   >> 161          * stale data around in the cleancache once our page is gone
                                                   >> 162          */
                                                   >> 163         if (PageUptodate(page) && PageMappedToDisk(page))
                                                   >> 164                 cleancache_put_page(page);
                                                   >> 165         else
                                                   >> 166                 cleancache_invalidate_page(mapping, page);
                                                   >> 167 
                                                   >> 168         VM_BUG_ON_PAGE(PageTail(page), page);
                                                   >> 169         VM_BUG_ON_PAGE(page_mapped(page), page);
                                                   >> 170         if (!IS_ENABLED(CONFIG_DEBUG_VM) && unlikely(page_mapped(page))) {
                                                   >> 171                 int mapcount;
162                                                   172 
163         VM_BUG_ON_FOLIO(folio_mapped(folio), f << 
164         if (!IS_ENABLED(CONFIG_DEBUG_VM) && un << 
165                 pr_alert("BUG: Bad page cache     173                 pr_alert("BUG: Bad page cache in process %s  pfn:%05lx\n",
166                          current->comm, folio_ !! 174                          current->comm, page_to_pfn(page));
167                 dump_page(&folio->page, "still !! 175                 dump_page(page, "still mapped when deleted");
168                 dump_stack();                     176                 dump_stack();
169                 add_taint(TAINT_BAD_PAGE, LOCK    177                 add_taint(TAINT_BAD_PAGE, LOCKDEP_NOW_UNRELIABLE);
170                                                   178 
171                 if (mapping_exiting(mapping) & !! 179                 mapcount = page_mapcount(page);
172                         int mapcount = folio_m !! 180                 if (mapping_exiting(mapping) &&
173                                                !! 181                     page_count(page) >= mapcount + 2) {
174                         if (folio_ref_count(fo !! 182                         /*
175                                 /*             !! 183                          * All vmas have already been torn down, so it's
176                                  * All vmas ha !! 184                          * a good bet that actually the page is unmapped,
177                                  * a good bet  !! 185                          * and we'd prefer not to leak it: if we're wrong,
178                                  * and we'd ra !! 186                          * some other bad page check should catch it later.
179                                  * another bad !! 187                          */
180                                  */            !! 188                         page_mapcount_reset(page);
181                                 atomic_set(&fo !! 189                         page_ref_sub(page, mapcount);
182                                 folio_ref_sub( << 
183                         }                      << 
184                 }                                 190                 }
185         }                                         191         }
186                                                   192 
187         /* hugetlb folios do not participate i !! 193         /* hugetlb pages do not participate in page cache accounting. */
188         if (folio_test_hugetlb(folio))         !! 194         if (PageHuge(page))
189                 return;                           195                 return;
190                                                   196 
191         nr = folio_nr_pages(folio);            !! 197         nr = hpage_nr_pages(page);
192                                                   198 
193         __lruvec_stat_mod_folio(folio, NR_FILE !! 199         __mod_node_page_state(page_pgdat(page), NR_FILE_PAGES, -nr);
194         if (folio_test_swapbacked(folio)) {    !! 200         if (PageSwapBacked(page)) {
195                 __lruvec_stat_mod_folio(folio, !! 201                 __mod_node_page_state(page_pgdat(page), NR_SHMEM, -nr);
196                 if (folio_test_pmd_mappable(fo !! 202                 if (PageTransHuge(page))
197                         __lruvec_stat_mod_foli !! 203                         __dec_node_page_state(page, NR_SHMEM_THPS);
198         } else if (folio_test_pmd_mappable(fol !! 204         } else {
199                 __lruvec_stat_mod_folio(folio, !! 205                 VM_BUG_ON_PAGE(PageTransHuge(page), page);
200                 filemap_nr_thps_dec(mapping);  << 
201         }                                         206         }
202                                                   207 
203         /*                                        208         /*
204          * At this point folio must be either  !! 209          * At this point page must be either written or cleaned by
205          * truncate.  Dirty folio here signals !! 210          * truncate.  Dirty page here signals a bug and loss of
206          * unwritten data - on ordinary filesy !! 211          * unwritten data.
207          *                                     << 
208          * But it's harmless on in-memory file << 
209          * occur when a driver which did get_u << 
210          * before putting it, while the inode  << 
211          *                                        212          *
212          * Below fixes dirty accounting after  !! 213          * This fixes dirty accounting after removing the page entirely
213          * but leaves the dirty flag set: it h !! 214          * but leaves PageDirty set: it has no effect for truncated
214          * folio and anyway will be cleared be !! 215          * page and anyway will be cleared before returning page into
215          * buddy allocator.                       216          * buddy allocator.
216          */                                       217          */
217         if (WARN_ON_ONCE(folio_test_dirty(foli !! 218         if (WARN_ON_ONCE(PageDirty(page)))
218                          mapping_can_writeback !! 219                 account_page_cleaned(page, mapping, inode_to_wb(mapping->host));
219                 folio_account_cleaned(folio, i << 
220 }                                                 220 }
221                                                   221 
222 /*                                                222 /*
223  * Delete a page from the page cache and free     223  * Delete a page from the page cache and free it. Caller has to make
224  * sure the page is locked and that nobody els    224  * sure the page is locked and that nobody else uses it - or that usage
225  * is safe.  The caller must hold the i_pages     225  * is safe.  The caller must hold the i_pages lock.
226  */                                               226  */
227 void __filemap_remove_folio(struct folio *foli !! 227 void __delete_from_page_cache(struct page *page, void *shadow)
228 {                                                 228 {
229         struct address_space *mapping = folio- !! 229         struct address_space *mapping = page->mapping;
                                                   >> 230 
                                                   >> 231         trace_mm_filemap_delete_from_page_cache(page);
230                                                   232 
231         trace_mm_filemap_delete_from_page_cach !! 233         unaccount_page_cache_page(mapping, page);
232         filemap_unaccount_folio(mapping, folio !! 234         page_cache_delete(mapping, page, shadow);
233         page_cache_delete(mapping, folio, shad << 
234 }                                                 235 }
235                                                   236 
236 void filemap_free_folio(struct address_space * !! 237 static void page_cache_free_page(struct address_space *mapping,
                                                   >> 238                                 struct page *page)
237 {                                                 239 {
238         void (*free_folio)(struct folio *);    !! 240         void (*freepage)(struct page *);
239         int refs = 1;                          << 
240                                                   241 
241         free_folio = mapping->a_ops->free_foli !! 242         freepage = mapping->a_ops->freepage;
242         if (free_folio)                        !! 243         if (freepage)
243                 free_folio(folio);             !! 244                 freepage(page);
244                                                   245 
245         if (folio_test_large(folio))           !! 246         if (PageTransHuge(page) && !PageHuge(page)) {
246                 refs = folio_nr_pages(folio);  !! 247                 page_ref_sub(page, HPAGE_PMD_NR);
247         folio_put_refs(folio, refs);           !! 248                 VM_BUG_ON_PAGE(page_count(page) <= 0, page);
                                                   >> 249         } else {
                                                   >> 250                 put_page(page);
                                                   >> 251         }
248 }                                                 252 }
249                                                   253 
250 /**                                               254 /**
251  * filemap_remove_folio - Remove folio from pa !! 255  * delete_from_page_cache - delete page from page cache
252  * @folio: The folio.                          !! 256  * @page: the page which the kernel is trying to remove from page cache
253  *                                                257  *
254  * This must be called only on folios that are !! 258  * This must be called only on pages that have been verified to be in the page
255  * verified to be in the page cache.  It will  !! 259  * cache and locked.  It will never put the page into the free list, the caller
256  * the free list because the caller has a refe !! 260  * has a reference on the page.
257  */                                            !! 261  */
258 void filemap_remove_folio(struct folio *folio) !! 262 void delete_from_page_cache(struct page *page)
259 {                                              !! 263 {
260         struct address_space *mapping = folio- !! 264         struct address_space *mapping = page_mapping(page);
261                                                !! 265         unsigned long flags;
262         BUG_ON(!folio_test_locked(folio));     << 
263         spin_lock(&mapping->host->i_lock);     << 
264         xa_lock_irq(&mapping->i_pages);        << 
265         __filemap_remove_folio(folio, NULL);   << 
266         xa_unlock_irq(&mapping->i_pages);      << 
267         if (mapping_shrinkable(mapping))       << 
268                 inode_add_lru(mapping->host);  << 
269         spin_unlock(&mapping->host->i_lock);   << 
270                                                << 
271         filemap_free_folio(mapping, folio);    << 
272 }                                              << 
273                                                   266 
274 /*                                             !! 267         BUG_ON(!PageLocked(page));
275  * page_cache_delete_batch - delete several fo !! 268         xa_lock_irqsave(&mapping->i_pages, flags);
276  * @mapping: the mapping to which folios belon !! 269         __delete_from_page_cache(page, NULL);
277  * @fbatch: batch of folios to delete          !! 270         xa_unlock_irqrestore(&mapping->i_pages, flags);
278  *                                             !! 271 
279  * The function walks over mapping->i_pages an !! 272         page_cache_free_page(mapping, page);
280  * @fbatch from the mapping. The function expe !! 273 }
281  * by page index and is optimised for it to be !! 274 EXPORT_SYMBOL(delete_from_page_cache);
282  * It tolerates holes in @fbatch (mapping entr !! 275 
283  * modified).                                  !! 276 /*
                                                   >> 277  * page_cache_delete_batch - delete several pages from page cache
                                                   >> 278  * @mapping: the mapping to which pages belong
                                                   >> 279  * @pvec: pagevec with pages to delete
                                                   >> 280  *
                                                   >> 281  * The function walks over mapping->i_pages and removes pages passed in @pvec
                                                   >> 282  * from the mapping. The function expects @pvec to be sorted by page index.
                                                   >> 283  * It tolerates holes in @pvec (mapping entries at those indices are not
                                                   >> 284  * modified). The function expects only THP head pages to be present in the
                                                   >> 285  * @pvec and takes care to delete all corresponding tail pages from the
                                                   >> 286  * mapping as well.
284  *                                                287  *
285  * The function expects the i_pages lock to be    288  * The function expects the i_pages lock to be held.
286  */                                               289  */
287 static void page_cache_delete_batch(struct add    290 static void page_cache_delete_batch(struct address_space *mapping,
288                              struct folio_batc !! 291                              struct pagevec *pvec)
289 {                                                 292 {
290         XA_STATE(xas, &mapping->i_pages, fbatc !! 293         XA_STATE(xas, &mapping->i_pages, pvec->pages[0]->index);
291         long total_pages = 0;                  !! 294         int total_pages = 0;
292         int i = 0;                             !! 295         int i = 0, tail_pages = 0;
293         struct folio *folio;                   !! 296         struct page *page;
294                                                   297 
295         mapping_set_update(&xas, mapping);        298         mapping_set_update(&xas, mapping);
296         xas_for_each(&xas, folio, ULONG_MAX) { !! 299         xas_for_each(&xas, page, ULONG_MAX) {
297                 if (i >= folio_batch_count(fba !! 300                 if (i >= pagevec_count(pvec) && !tail_pages)
298                         break;                    301                         break;
299                                                !! 302                 if (xa_is_value(page))
300                 /* A swap/dax/shadow entry got << 
301                 if (xa_is_value(folio))        << 
302                         continue;              << 
303                 /*                             << 
304                  * A page got inserted in our  << 
305                  * pages locked so they are pr << 
306                  * If we see a page whose inde << 
307                  * means our page has been rem << 
308                  * possible because we're hold << 
309                  */                            << 
310                 if (folio != fbatch->folios[i] << 
311                         VM_BUG_ON_FOLIO(folio- << 
312                                         fbatch << 
313                         continue;                 303                         continue;
                                                   >> 304                 if (!tail_pages) {
                                                   >> 305                         /*
                                                   >> 306                          * Some page got inserted in our range? Skip it. We
                                                   >> 307                          * have our pages locked so they are protected from
                                                   >> 308                          * being removed.
                                                   >> 309                          */
                                                   >> 310                         if (page != pvec->pages[i]) {
                                                   >> 311                                 VM_BUG_ON_PAGE(page->index >
                                                   >> 312                                                 pvec->pages[i]->index, page);
                                                   >> 313                                 continue;
                                                   >> 314                         }
                                                   >> 315                         WARN_ON_ONCE(!PageLocked(page));
                                                   >> 316                         if (PageTransHuge(page) && !PageHuge(page))
                                                   >> 317                                 tail_pages = HPAGE_PMD_NR - 1;
                                                   >> 318                         page->mapping = NULL;
                                                   >> 319                         /*
                                                   >> 320                          * Leave page->index set: truncation lookup relies
                                                   >> 321                          * upon it
                                                   >> 322                          */
                                                   >> 323                         i++;
                                                   >> 324                 } else {
                                                   >> 325                         VM_BUG_ON_PAGE(page->index + HPAGE_PMD_NR - tail_pages
                                                   >> 326                                         != pvec->pages[i]->index, page);
                                                   >> 327                         tail_pages--;
314                 }                                 328                 }
315                                                << 
316                 WARN_ON_ONCE(!folio_test_locke << 
317                                                << 
318                 folio->mapping = NULL;         << 
319                 /* Leave folio->index set: tru << 
320                                                << 
321                 i++;                           << 
322                 xas_store(&xas, NULL);            329                 xas_store(&xas, NULL);
323                 total_pages += folio_nr_pages( !! 330                 total_pages++;
324         }                                         331         }
325         mapping->nrpages -= total_pages;          332         mapping->nrpages -= total_pages;
326 }                                                 333 }
327                                                   334 
328 void delete_from_page_cache_batch(struct addre    335 void delete_from_page_cache_batch(struct address_space *mapping,
329                                   struct folio !! 336                                   struct pagevec *pvec)
330 {                                                 337 {
331         int i;                                    338         int i;
                                                   >> 339         unsigned long flags;
332                                                   340 
333         if (!folio_batch_count(fbatch))        !! 341         if (!pagevec_count(pvec))
334                 return;                           342                 return;
335                                                   343 
336         spin_lock(&mapping->host->i_lock);     !! 344         xa_lock_irqsave(&mapping->i_pages, flags);
337         xa_lock_irq(&mapping->i_pages);        !! 345         for (i = 0; i < pagevec_count(pvec); i++) {
338         for (i = 0; i < folio_batch_count(fbat !! 346                 trace_mm_filemap_delete_from_page_cache(pvec->pages[i]);
339                 struct folio *folio = fbatch-> << 
340                                                << 
341                 trace_mm_filemap_delete_from_p << 
342                 filemap_unaccount_folio(mappin << 
343         }                                      << 
344         page_cache_delete_batch(mapping, fbatc << 
345         xa_unlock_irq(&mapping->i_pages);      << 
346         if (mapping_shrinkable(mapping))       << 
347                 inode_add_lru(mapping->host);  << 
348         spin_unlock(&mapping->host->i_lock);   << 
349                                                   347 
350         for (i = 0; i < folio_batch_count(fbat !! 348                 unaccount_page_cache_page(mapping, pvec->pages[i]);
351                 filemap_free_folio(mapping, fb !! 349         }
                                                   >> 350         page_cache_delete_batch(mapping, pvec);
                                                   >> 351         xa_unlock_irqrestore(&mapping->i_pages, flags);
                                                   >> 352 
                                                   >> 353         for (i = 0; i < pagevec_count(pvec); i++)
                                                   >> 354                 page_cache_free_page(mapping, pvec->pages[i]);
352 }                                                 355 }
353                                                   356 
354 int filemap_check_errors(struct address_space     357 int filemap_check_errors(struct address_space *mapping)
355 {                                                 358 {
356         int ret = 0;                              359         int ret = 0;
357         /* Check for outstanding write errors     360         /* Check for outstanding write errors */
358         if (test_bit(AS_ENOSPC, &mapping->flag    361         if (test_bit(AS_ENOSPC, &mapping->flags) &&
359             test_and_clear_bit(AS_ENOSPC, &map    362             test_and_clear_bit(AS_ENOSPC, &mapping->flags))
360                 ret = -ENOSPC;                    363                 ret = -ENOSPC;
361         if (test_bit(AS_EIO, &mapping->flags)     364         if (test_bit(AS_EIO, &mapping->flags) &&
362             test_and_clear_bit(AS_EIO, &mappin    365             test_and_clear_bit(AS_EIO, &mapping->flags))
363                 ret = -EIO;                       366                 ret = -EIO;
364         return ret;                               367         return ret;
365 }                                                 368 }
366 EXPORT_SYMBOL(filemap_check_errors);              369 EXPORT_SYMBOL(filemap_check_errors);
367                                                   370 
368 static int filemap_check_and_keep_errors(struc    371 static int filemap_check_and_keep_errors(struct address_space *mapping)
369 {                                                 372 {
370         /* Check for outstanding write errors     373         /* Check for outstanding write errors */
371         if (test_bit(AS_EIO, &mapping->flags))    374         if (test_bit(AS_EIO, &mapping->flags))
372                 return -EIO;                      375                 return -EIO;
373         if (test_bit(AS_ENOSPC, &mapping->flag    376         if (test_bit(AS_ENOSPC, &mapping->flags))
374                 return -ENOSPC;                   377                 return -ENOSPC;
375         return 0;                                 378         return 0;
376 }                                                 379 }
377                                                   380 
378 /**                                               381 /**
379  * filemap_fdatawrite_wbc - start writeback on << 
380  * @mapping:    address space structure to wri << 
381  * @wbc:        the writeback_control controll << 
382  *                                             << 
383  * Call writepages on the mapping using the pr << 
384  * writeout.                                   << 
385  *                                             << 
386  * Return: %0 on success, negative error code  << 
387  */                                            << 
388 int filemap_fdatawrite_wbc(struct address_spac << 
389                            struct writeback_co << 
390 {                                              << 
391         int ret;                               << 
392                                                << 
393         if (!mapping_can_writeback(mapping) || << 
394             !mapping_tagged(mapping, PAGECACHE << 
395                 return 0;                      << 
396                                                << 
397         wbc_attach_fdatawrite_inode(wbc, mappi << 
398         ret = do_writepages(mapping, wbc);     << 
399         wbc_detach_inode(wbc);                 << 
400         return ret;                            << 
401 }                                              << 
402 EXPORT_SYMBOL(filemap_fdatawrite_wbc);         << 
403                                                << 
404 /**                                            << 
405  * __filemap_fdatawrite_range - start writebac    382  * __filemap_fdatawrite_range - start writeback on mapping dirty pages in range
406  * @mapping:    address space structure to wri    383  * @mapping:    address space structure to write
407  * @start:      offset in bytes where the rang    384  * @start:      offset in bytes where the range starts
408  * @end:        offset in bytes where the rang    385  * @end:        offset in bytes where the range ends (inclusive)
409  * @sync_mode:  enable synchronous operation      386  * @sync_mode:  enable synchronous operation
410  *                                                387  *
411  * Start writeback against all of a mapping's     388  * Start writeback against all of a mapping's dirty pages that lie
412  * within the byte offsets <start, end> inclus    389  * within the byte offsets <start, end> inclusive.
413  *                                                390  *
414  * If sync_mode is WB_SYNC_ALL then this is a     391  * If sync_mode is WB_SYNC_ALL then this is a "data integrity" operation, as
415  * opposed to a regular memory cleansing write    392  * opposed to a regular memory cleansing writeback.  The difference between
416  * these two operations is that if a dirty pag    393  * these two operations is that if a dirty page/buffer is encountered, it must
417  * be waited upon, and not just skipped over.     394  * be waited upon, and not just skipped over.
418  *                                             << 
419  * Return: %0 on success, negative error code  << 
420  */                                               395  */
421 int __filemap_fdatawrite_range(struct address_    396 int __filemap_fdatawrite_range(struct address_space *mapping, loff_t start,
422                                 loff_t end, in    397                                 loff_t end, int sync_mode)
423 {                                                 398 {
                                                   >> 399         int ret;
424         struct writeback_control wbc = {          400         struct writeback_control wbc = {
425                 .sync_mode = sync_mode,           401                 .sync_mode = sync_mode,
426                 .nr_to_write = LONG_MAX,          402                 .nr_to_write = LONG_MAX,
427                 .range_start = start,             403                 .range_start = start,
428                 .range_end = end,                 404                 .range_end = end,
429         };                                        405         };
430                                                   406 
431         return filemap_fdatawrite_wbc(mapping, !! 407         if (!mapping_cap_writeback_dirty(mapping))
                                                   >> 408                 return 0;
                                                   >> 409 
                                                   >> 410         wbc_attach_fdatawrite_inode(&wbc, mapping->host);
                                                   >> 411         ret = do_writepages(mapping, &wbc);
                                                   >> 412         wbc_detach_inode(&wbc);
                                                   >> 413         return ret;
432 }                                                 414 }
433                                                   415 
434 static inline int __filemap_fdatawrite(struct     416 static inline int __filemap_fdatawrite(struct address_space *mapping,
435         int sync_mode)                            417         int sync_mode)
436 {                                                 418 {
437         return __filemap_fdatawrite_range(mapp    419         return __filemap_fdatawrite_range(mapping, 0, LLONG_MAX, sync_mode);
438 }                                                 420 }
439                                                   421 
440 int filemap_fdatawrite(struct address_space *m    422 int filemap_fdatawrite(struct address_space *mapping)
441 {                                                 423 {
442         return __filemap_fdatawrite(mapping, W    424         return __filemap_fdatawrite(mapping, WB_SYNC_ALL);
443 }                                                 425 }
444 EXPORT_SYMBOL(filemap_fdatawrite);                426 EXPORT_SYMBOL(filemap_fdatawrite);
445                                                   427 
446 int filemap_fdatawrite_range(struct address_sp    428 int filemap_fdatawrite_range(struct address_space *mapping, loff_t start,
447                                 loff_t end)       429                                 loff_t end)
448 {                                                 430 {
449         return __filemap_fdatawrite_range(mapp    431         return __filemap_fdatawrite_range(mapping, start, end, WB_SYNC_ALL);
450 }                                                 432 }
451 EXPORT_SYMBOL(filemap_fdatawrite_range);          433 EXPORT_SYMBOL(filemap_fdatawrite_range);
452                                                   434 
453 /**                                               435 /**
454  * filemap_flush - mostly a non-blocking flush    436  * filemap_flush - mostly a non-blocking flush
455  * @mapping:    target address_space              437  * @mapping:    target address_space
456  *                                                438  *
457  * This is a mostly non-blocking flush.  Not s    439  * This is a mostly non-blocking flush.  Not suitable for data-integrity
458  * purposes - I/O may not be started against a    440  * purposes - I/O may not be started against all dirty pages.
459  *                                             << 
460  * Return: %0 on success, negative error code  << 
461  */                                               441  */
462 int filemap_flush(struct address_space *mappin    442 int filemap_flush(struct address_space *mapping)
463 {                                                 443 {
464         return __filemap_fdatawrite(mapping, W    444         return __filemap_fdatawrite(mapping, WB_SYNC_NONE);
465 }                                                 445 }
466 EXPORT_SYMBOL(filemap_flush);                     446 EXPORT_SYMBOL(filemap_flush);
467                                                   447 
468 /**                                               448 /**
469  * filemap_range_has_page - check if a page ex    449  * filemap_range_has_page - check if a page exists in range.
470  * @mapping:           address space within wh    450  * @mapping:           address space within which to check
471  * @start_byte:        offset in bytes where t    451  * @start_byte:        offset in bytes where the range starts
472  * @end_byte:          offset in bytes where t    452  * @end_byte:          offset in bytes where the range ends (inclusive)
473  *                                                453  *
474  * Find at least one page in the range supplie    454  * Find at least one page in the range supplied, usually used to check if
475  * direct writing in this range will trigger a    455  * direct writing in this range will trigger a writeback.
476  *                                             << 
477  * Return: %true if at least one page exists i << 
478  * %false otherwise.                           << 
479  */                                               456  */
480 bool filemap_range_has_page(struct address_spa    457 bool filemap_range_has_page(struct address_space *mapping,
481                            loff_t start_byte,     458                            loff_t start_byte, loff_t end_byte)
482 {                                                 459 {
483         struct folio *folio;                   !! 460         struct page *page;
484         XA_STATE(xas, &mapping->i_pages, start    461         XA_STATE(xas, &mapping->i_pages, start_byte >> PAGE_SHIFT);
485         pgoff_t max = end_byte >> PAGE_SHIFT;     462         pgoff_t max = end_byte >> PAGE_SHIFT;
486                                                   463 
487         if (end_byte < start_byte)                464         if (end_byte < start_byte)
488                 return false;                     465                 return false;
489                                                   466 
490         rcu_read_lock();                          467         rcu_read_lock();
491         for (;;) {                                468         for (;;) {
492                 folio = xas_find(&xas, max);   !! 469                 page = xas_find(&xas, max);
493                 if (xas_retry(&xas, folio))    !! 470                 if (xas_retry(&xas, page))
494                         continue;                 471                         continue;
495                 /* Shadow entries don't count     472                 /* Shadow entries don't count */
496                 if (xa_is_value(folio))        !! 473                 if (xa_is_value(page))
497                         continue;                 474                         continue;
498                 /*                                475                 /*
499                  * We don't need to try to pin    476                  * We don't need to try to pin this page; we're about to
500                  * release the RCU lock anyway    477                  * release the RCU lock anyway.  It is enough to know that
501                  * there was a page here recen    478                  * there was a page here recently.
502                  */                               479                  */
503                 break;                            480                 break;
504         }                                         481         }
505         rcu_read_unlock();                        482         rcu_read_unlock();
506                                                   483 
507         return folio != NULL;                  !! 484         return page != NULL;
508 }                                                 485 }
509 EXPORT_SYMBOL(filemap_range_has_page);            486 EXPORT_SYMBOL(filemap_range_has_page);
510                                                   487 
511 static void __filemap_fdatawait_range(struct a    488 static void __filemap_fdatawait_range(struct address_space *mapping,
512                                      loff_t st    489                                      loff_t start_byte, loff_t end_byte)
513 {                                                 490 {
514         pgoff_t index = start_byte >> PAGE_SHI    491         pgoff_t index = start_byte >> PAGE_SHIFT;
515         pgoff_t end = end_byte >> PAGE_SHIFT;     492         pgoff_t end = end_byte >> PAGE_SHIFT;
516         struct folio_batch fbatch;             !! 493         struct pagevec pvec;
517         unsigned nr_folios;                    !! 494         int nr_pages;
518                                                   495 
519         folio_batch_init(&fbatch);             !! 496         if (end_byte < start_byte)
                                                   >> 497                 return;
520                                                   498 
                                                   >> 499         pagevec_init(&pvec);
521         while (index <= end) {                    500         while (index <= end) {
522                 unsigned i;                       501                 unsigned i;
523                                                   502 
524                 nr_folios = filemap_get_folios !! 503                 nr_pages = pagevec_lookup_range_tag(&pvec, mapping, &index,
525                                 PAGECACHE_TAG_ !! 504                                 end, PAGECACHE_TAG_WRITEBACK);
526                                                !! 505                 if (!nr_pages)
527                 if (!nr_folios)                << 
528                         break;                    506                         break;
529                                                   507 
530                 for (i = 0; i < nr_folios; i++ !! 508                 for (i = 0; i < nr_pages; i++) {
531                         struct folio *folio =  !! 509                         struct page *page = pvec.pages[i];
532                                                   510 
533                         folio_wait_writeback(f !! 511                         wait_on_page_writeback(page);
                                                   >> 512                         ClearPageError(page);
534                 }                                 513                 }
535                 folio_batch_release(&fbatch);  !! 514                 pagevec_release(&pvec);
536                 cond_resched();                   515                 cond_resched();
537         }                                         516         }
538 }                                                 517 }
539                                                   518 
540 /**                                               519 /**
541  * filemap_fdatawait_range - wait for writebac    520  * filemap_fdatawait_range - wait for writeback to complete
542  * @mapping:            address space structur    521  * @mapping:            address space structure to wait for
543  * @start_byte:         offset in bytes where     522  * @start_byte:         offset in bytes where the range starts
544  * @end_byte:           offset in bytes where     523  * @end_byte:           offset in bytes where the range ends (inclusive)
545  *                                                524  *
546  * Walk the list of under-writeback pages of t    525  * Walk the list of under-writeback pages of the given address space
547  * in the given range and wait for all of them    526  * in the given range and wait for all of them.  Check error status of
548  * the address space and return it.               527  * the address space and return it.
549  *                                                528  *
550  * Since the error status of the address space    529  * Since the error status of the address space is cleared by this function,
551  * callers are responsible for checking the re    530  * callers are responsible for checking the return value and handling and/or
552  * reporting the error.                           531  * reporting the error.
553  *                                             << 
554  * Return: error status of the address space.  << 
555  */                                               532  */
556 int filemap_fdatawait_range(struct address_spa    533 int filemap_fdatawait_range(struct address_space *mapping, loff_t start_byte,
557                             loff_t end_byte)      534                             loff_t end_byte)
558 {                                                 535 {
559         __filemap_fdatawait_range(mapping, sta    536         __filemap_fdatawait_range(mapping, start_byte, end_byte);
560         return filemap_check_errors(mapping);     537         return filemap_check_errors(mapping);
561 }                                                 538 }
562 EXPORT_SYMBOL(filemap_fdatawait_range);           539 EXPORT_SYMBOL(filemap_fdatawait_range);
563                                                   540 
564 /**                                               541 /**
565  * filemap_fdatawait_range_keep_errors - wait  << 
566  * @mapping:            address space structur << 
567  * @start_byte:         offset in bytes where  << 
568  * @end_byte:           offset in bytes where  << 
569  *                                             << 
570  * Walk the list of under-writeback pages of t << 
571  * given range and wait for all of them.  Unli << 
572  * this function does not clear error status o << 
573  *                                             << 
574  * Use this function if callers don't handle e << 
575  * call sites are system-wide / filesystem-wid << 
576  * fsfreeze(8)                                 << 
577  */                                            << 
578 int filemap_fdatawait_range_keep_errors(struct << 
579                 loff_t start_byte, loff_t end_ << 
580 {                                              << 
581         __filemap_fdatawait_range(mapping, sta << 
582         return filemap_check_and_keep_errors(m << 
583 }                                              << 
584 EXPORT_SYMBOL(filemap_fdatawait_range_keep_err << 
585                                                << 
586 /**                                            << 
587  * file_fdatawait_range - wait for writeback t    542  * file_fdatawait_range - wait for writeback to complete
588  * @file:               file pointing to addre    543  * @file:               file pointing to address space structure to wait for
589  * @start_byte:         offset in bytes where     544  * @start_byte:         offset in bytes where the range starts
590  * @end_byte:           offset in bytes where     545  * @end_byte:           offset in bytes where the range ends (inclusive)
591  *                                                546  *
592  * Walk the list of under-writeback pages of t    547  * Walk the list of under-writeback pages of the address space that file
593  * refers to, in the given range and wait for     548  * refers to, in the given range and wait for all of them.  Check error
594  * status of the address space vs. the file->f    549  * status of the address space vs. the file->f_wb_err cursor and return it.
595  *                                                550  *
596  * Since the error status of the file is advan    551  * Since the error status of the file is advanced by this function,
597  * callers are responsible for checking the re    552  * callers are responsible for checking the return value and handling and/or
598  * reporting the error.                           553  * reporting the error.
599  *                                             << 
600  * Return: error status of the address space v << 
601  */                                               554  */
602 int file_fdatawait_range(struct file *file, lo    555 int file_fdatawait_range(struct file *file, loff_t start_byte, loff_t end_byte)
603 {                                                 556 {
604         struct address_space *mapping = file->    557         struct address_space *mapping = file->f_mapping;
605                                                   558 
606         __filemap_fdatawait_range(mapping, sta    559         __filemap_fdatawait_range(mapping, start_byte, end_byte);
607         return file_check_and_advance_wb_err(f    560         return file_check_and_advance_wb_err(file);
608 }                                                 561 }
609 EXPORT_SYMBOL(file_fdatawait_range);              562 EXPORT_SYMBOL(file_fdatawait_range);
610                                                   563 
611 /**                                               564 /**
612  * filemap_fdatawait_keep_errors - wait for wr    565  * filemap_fdatawait_keep_errors - wait for writeback without clearing errors
613  * @mapping: address space structure to wait f    566  * @mapping: address space structure to wait for
614  *                                                567  *
615  * Walk the list of under-writeback pages of t    568  * Walk the list of under-writeback pages of the given address space
616  * and wait for all of them.  Unlike filemap_f    569  * and wait for all of them.  Unlike filemap_fdatawait(), this function
617  * does not clear error status of the address     570  * does not clear error status of the address space.
618  *                                                571  *
619  * Use this function if callers don't handle e    572  * Use this function if callers don't handle errors themselves.  Expected
620  * call sites are system-wide / filesystem-wid    573  * call sites are system-wide / filesystem-wide data flushers: e.g. sync(2),
621  * fsfreeze(8)                                    574  * fsfreeze(8)
622  *                                             << 
623  * Return: error status of the address space.  << 
624  */                                               575  */
625 int filemap_fdatawait_keep_errors(struct addre    576 int filemap_fdatawait_keep_errors(struct address_space *mapping)
626 {                                                 577 {
627         __filemap_fdatawait_range(mapping, 0,     578         __filemap_fdatawait_range(mapping, 0, LLONG_MAX);
628         return filemap_check_and_keep_errors(m    579         return filemap_check_and_keep_errors(mapping);
629 }                                                 580 }
630 EXPORT_SYMBOL(filemap_fdatawait_keep_errors);     581 EXPORT_SYMBOL(filemap_fdatawait_keep_errors);
631                                                   582 
632 /* Returns true if writeback might be needed o << 
633 static bool mapping_needs_writeback(struct add    583 static bool mapping_needs_writeback(struct address_space *mapping)
634 {                                                 584 {
635         return mapping->nrpages;               !! 585         return (!dax_mapping(mapping) && mapping->nrpages) ||
                                                   >> 586             (dax_mapping(mapping) && mapping->nrexceptional);
636 }                                                 587 }
637                                                   588 
638 bool filemap_range_has_writeback(struct addres !! 589 int filemap_write_and_wait(struct address_space *mapping)
639                                  loff_t start_ << 
640 {                                                 590 {
641         XA_STATE(xas, &mapping->i_pages, start !! 591         int err = 0;
642         pgoff_t max = end_byte >> PAGE_SHIFT;  << 
643         struct folio *folio;                   << 
644                                                << 
645         if (end_byte < start_byte)             << 
646                 return false;                  << 
647                                                   592 
648         rcu_read_lock();                       !! 593         if (mapping_needs_writeback(mapping)) {
649         xas_for_each(&xas, folio, max) {       !! 594                 err = filemap_fdatawrite(mapping);
650                 if (xas_retry(&xas, folio))    !! 595                 /*
651                         continue;              !! 596                  * Even if the above returned error, the pages may be
652                 if (xa_is_value(folio))        !! 597                  * written partially (e.g. -ENOSPC), so we wait for it.
653                         continue;              !! 598                  * But the -EIO is special case, it may indicate the worst
654                 if (folio_test_dirty(folio) || !! 599                  * thing (e.g. bug) happened, so we avoid waiting for it.
655                                 folio_test_wri !! 600                  */
656                         break;                 !! 601                 if (err != -EIO) {
                                                   >> 602                         int err2 = filemap_fdatawait(mapping);
                                                   >> 603                         if (!err)
                                                   >> 604                                 err = err2;
                                                   >> 605                 } else {
                                                   >> 606                         /* Clear any previously stored errors */
                                                   >> 607                         filemap_check_errors(mapping);
                                                   >> 608                 }
                                                   >> 609         } else {
                                                   >> 610                 err = filemap_check_errors(mapping);
657         }                                         611         }
658         rcu_read_unlock();                     !! 612         return err;
659         return folio != NULL;                  << 
660 }                                                 613 }
661 EXPORT_SYMBOL_GPL(filemap_range_has_writeback) !! 614 EXPORT_SYMBOL(filemap_write_and_wait);
662                                                   615 
663 /**                                               616 /**
664  * filemap_write_and_wait_range - write out &     617  * filemap_write_and_wait_range - write out & wait on a file range
665  * @mapping:    the address_space for the page    618  * @mapping:    the address_space for the pages
666  * @lstart:     offset in bytes where the rang    619  * @lstart:     offset in bytes where the range starts
667  * @lend:       offset in bytes where the rang    620  * @lend:       offset in bytes where the range ends (inclusive)
668  *                                                621  *
669  * Write out and wait upon file offsets lstart    622  * Write out and wait upon file offsets lstart->lend, inclusive.
670  *                                                623  *
671  * Note that @lend is inclusive (describes the    624  * Note that @lend is inclusive (describes the last byte to be written) so
672  * that this function can be used to write to     625  * that this function can be used to write to the very end-of-file (end = -1).
673  *                                             << 
674  * Return: error status of the address space.  << 
675  */                                               626  */
676 int filemap_write_and_wait_range(struct addres    627 int filemap_write_and_wait_range(struct address_space *mapping,
677                                  loff_t lstart    628                                  loff_t lstart, loff_t lend)
678 {                                                 629 {
679         int err = 0, err2;                     !! 630         int err = 0;
680                                                << 
681         if (lend < lstart)                     << 
682                 return 0;                      << 
683                                                   631 
684         if (mapping_needs_writeback(mapping))     632         if (mapping_needs_writeback(mapping)) {
685                 err = __filemap_fdatawrite_ran    633                 err = __filemap_fdatawrite_range(mapping, lstart, lend,
686                                                   634                                                  WB_SYNC_ALL);
687                 /*                             !! 635                 /* See comment of filemap_write_and_wait() */
688                  * Even if the above returned  !! 636                 if (err != -EIO) {
689                  * written partially (e.g. -EN !! 637                         int err2 = filemap_fdatawait_range(mapping,
690                  * But the -EIO is special cas !! 638                                                 lstart, lend);
691                  * thing (e.g. bug) happened,  !! 639                         if (!err)
692                  */                            !! 640                                 err = err2;
693                 if (err != -EIO)               !! 641                 } else {
694                         __filemap_fdatawait_ra !! 642                         /* Clear any previously stored errors */
                                                   >> 643                         filemap_check_errors(mapping);
                                                   >> 644                 }
                                                   >> 645         } else {
                                                   >> 646                 err = filemap_check_errors(mapping);
695         }                                         647         }
696         err2 = filemap_check_errors(mapping);  << 
697         if (!err)                              << 
698                 err = err2;                    << 
699         return err;                               648         return err;
700 }                                                 649 }
701 EXPORT_SYMBOL(filemap_write_and_wait_range);      650 EXPORT_SYMBOL(filemap_write_and_wait_range);
702                                                   651 
703 void __filemap_set_wb_err(struct address_space    652 void __filemap_set_wb_err(struct address_space *mapping, int err)
704 {                                                 653 {
705         errseq_t eseq = errseq_set(&mapping->w    654         errseq_t eseq = errseq_set(&mapping->wb_err, err);
706                                                   655 
707         trace_filemap_set_wb_err(mapping, eseq    656         trace_filemap_set_wb_err(mapping, eseq);
708 }                                                 657 }
709 EXPORT_SYMBOL(__filemap_set_wb_err);              658 EXPORT_SYMBOL(__filemap_set_wb_err);
710                                                   659 
711 /**                                               660 /**
712  * file_check_and_advance_wb_err - report wb e    661  * file_check_and_advance_wb_err - report wb error (if any) that was previously
713  *                                 and advance    662  *                                 and advance wb_err to current one
714  * @file: struct file on which the error is be    663  * @file: struct file on which the error is being reported
715  *                                                664  *
716  * When userland calls fsync (or something lik    665  * When userland calls fsync (or something like nfsd does the equivalent), we
717  * want to report any writeback errors that oc    666  * want to report any writeback errors that occurred since the last fsync (or
718  * since the file was opened if there haven't     667  * since the file was opened if there haven't been any).
719  *                                                668  *
720  * Grab the wb_err from the mapping. If it mat    669  * Grab the wb_err from the mapping. If it matches what we have in the file,
721  * then just quickly return 0. The file is all    670  * then just quickly return 0. The file is all caught up.
722  *                                                671  *
723  * If it doesn't match, then take the mapping     672  * If it doesn't match, then take the mapping value, set the "seen" flag in
724  * it and try to swap it into place. If it wor    673  * it and try to swap it into place. If it works, or another task beat us
725  * to it with the new value, then update the f    674  * to it with the new value, then update the f_wb_err and return the error
726  * portion. The error at this point must be re    675  * portion. The error at this point must be reported via proper channels
727  * (a'la fsync, or NFS COMMIT operation, etc.)    676  * (a'la fsync, or NFS COMMIT operation, etc.).
728  *                                                677  *
729  * While we handle mapping->wb_err with atomic    678  * While we handle mapping->wb_err with atomic operations, the f_wb_err
730  * value is protected by the f_lock since we m    679  * value is protected by the f_lock since we must ensure that it reflects
731  * the latest value swapped in for this file d    680  * the latest value swapped in for this file descriptor.
732  *                                             << 
733  * Return: %0 on success, negative error code  << 
734  */                                               681  */
735 int file_check_and_advance_wb_err(struct file     682 int file_check_and_advance_wb_err(struct file *file)
736 {                                                 683 {
737         int err = 0;                              684         int err = 0;
738         errseq_t old = READ_ONCE(file->f_wb_er    685         errseq_t old = READ_ONCE(file->f_wb_err);
739         struct address_space *mapping = file->    686         struct address_space *mapping = file->f_mapping;
740                                                   687 
741         /* Locklessly handle the common case w    688         /* Locklessly handle the common case where nothing has changed */
742         if (errseq_check(&mapping->wb_err, old    689         if (errseq_check(&mapping->wb_err, old)) {
743                 /* Something changed, must use    690                 /* Something changed, must use slow path */
744                 spin_lock(&file->f_lock);         691                 spin_lock(&file->f_lock);
745                 old = file->f_wb_err;             692                 old = file->f_wb_err;
746                 err = errseq_check_and_advance    693                 err = errseq_check_and_advance(&mapping->wb_err,
747                                                   694                                                 &file->f_wb_err);
748                 trace_file_check_and_advance_w    695                 trace_file_check_and_advance_wb_err(file, old);
749                 spin_unlock(&file->f_lock);       696                 spin_unlock(&file->f_lock);
750         }                                         697         }
751                                                   698 
752         /*                                        699         /*
753          * We're mostly using this function as    700          * We're mostly using this function as a drop in replacement for
754          * filemap_check_errors. Clear AS_EIO/    701          * filemap_check_errors. Clear AS_EIO/AS_ENOSPC to emulate the effect
755          * that the legacy code would have had    702          * that the legacy code would have had on these flags.
756          */                                       703          */
757         clear_bit(AS_EIO, &mapping->flags);       704         clear_bit(AS_EIO, &mapping->flags);
758         clear_bit(AS_ENOSPC, &mapping->flags);    705         clear_bit(AS_ENOSPC, &mapping->flags);
759         return err;                               706         return err;
760 }                                                 707 }
761 EXPORT_SYMBOL(file_check_and_advance_wb_err);     708 EXPORT_SYMBOL(file_check_and_advance_wb_err);
762                                                   709 
763 /**                                               710 /**
764  * file_write_and_wait_range - write out & wai    711  * file_write_and_wait_range - write out & wait on a file range
765  * @file:       file pointing to address_space    712  * @file:       file pointing to address_space with pages
766  * @lstart:     offset in bytes where the rang    713  * @lstart:     offset in bytes where the range starts
767  * @lend:       offset in bytes where the rang    714  * @lend:       offset in bytes where the range ends (inclusive)
768  *                                                715  *
769  * Write out and wait upon file offsets lstart    716  * Write out and wait upon file offsets lstart->lend, inclusive.
770  *                                                717  *
771  * Note that @lend is inclusive (describes the    718  * Note that @lend is inclusive (describes the last byte to be written) so
772  * that this function can be used to write to     719  * that this function can be used to write to the very end-of-file (end = -1).
773  *                                                720  *
774  * After writing out and waiting on the data,     721  * After writing out and waiting on the data, we check and advance the
775  * f_wb_err cursor to the latest value, and re    722  * f_wb_err cursor to the latest value, and return any errors detected there.
776  *                                             << 
777  * Return: %0 on success, negative error code  << 
778  */                                               723  */
779 int file_write_and_wait_range(struct file *fil    724 int file_write_and_wait_range(struct file *file, loff_t lstart, loff_t lend)
780 {                                                 725 {
781         int err = 0, err2;                        726         int err = 0, err2;
782         struct address_space *mapping = file->    727         struct address_space *mapping = file->f_mapping;
783                                                   728 
784         if (lend < lstart)                     << 
785                 return 0;                      << 
786                                                << 
787         if (mapping_needs_writeback(mapping))     729         if (mapping_needs_writeback(mapping)) {
788                 err = __filemap_fdatawrite_ran    730                 err = __filemap_fdatawrite_range(mapping, lstart, lend,
789                                                   731                                                  WB_SYNC_ALL);
790                 /* See comment of filemap_writ    732                 /* See comment of filemap_write_and_wait() */
791                 if (err != -EIO)                  733                 if (err != -EIO)
792                         __filemap_fdatawait_ra    734                         __filemap_fdatawait_range(mapping, lstart, lend);
793         }                                         735         }
794         err2 = file_check_and_advance_wb_err(f    736         err2 = file_check_and_advance_wb_err(file);
795         if (!err)                                 737         if (!err)
796                 err = err2;                       738                 err = err2;
797         return err;                               739         return err;
798 }                                                 740 }
799 EXPORT_SYMBOL(file_write_and_wait_range);         741 EXPORT_SYMBOL(file_write_and_wait_range);
800                                                   742 
801 /**                                               743 /**
802  * replace_page_cache_folio - replace a pageca !! 744  * replace_page_cache_page - replace a pagecache page with a new one
803  * @old:        folio to be replaced           !! 745  * @old:        page to be replaced
804  * @new:        folio to replace with          !! 746  * @new:        page to replace with
805  *                                             !! 747  * @gfp_mask:   allocation mode
806  * This function replaces a folio in the pagec !! 748  *
807  * success it acquires the pagecache reference !! 749  * This function replaces a page in the pagecache with a new one.  On
808  * drops it for the old folio.  Both the old a !! 750  * success it acquires the pagecache reference for the new page and
809  * locked.  This function does not add the new !! 751  * drops it for the old page.  Both the old and new pages must be
                                                   >> 752  * locked.  This function does not add the new page to the LRU, the
810  * caller must do that.                           753  * caller must do that.
811  *                                                754  *
812  * The remove + add is atomic.  This function     755  * The remove + add is atomic.  This function cannot fail.
813  */                                               756  */
814 void replace_page_cache_folio(struct folio *ol !! 757 int replace_page_cache_page(struct page *old, struct page *new, gfp_t gfp_mask)
815 {                                                 758 {
816         struct address_space *mapping = old->m    759         struct address_space *mapping = old->mapping;
817         void (*free_folio)(struct folio *) = m !! 760         void (*freepage)(struct page *) = mapping->a_ops->freepage;
818         pgoff_t offset = old->index;              761         pgoff_t offset = old->index;
819         XA_STATE(xas, &mapping->i_pages, offse    762         XA_STATE(xas, &mapping->i_pages, offset);
                                                   >> 763         unsigned long flags;
820                                                   764 
821         VM_BUG_ON_FOLIO(!folio_test_locked(old !! 765         VM_BUG_ON_PAGE(!PageLocked(old), old);
822         VM_BUG_ON_FOLIO(!folio_test_locked(new !! 766         VM_BUG_ON_PAGE(!PageLocked(new), new);
823         VM_BUG_ON_FOLIO(new->mapping, new);    !! 767         VM_BUG_ON_PAGE(new->mapping, new);
824                                                   768 
825         folio_get(new);                        !! 769         get_page(new);
826         new->mapping = mapping;                   770         new->mapping = mapping;
827         new->index = offset;                      771         new->index = offset;
828                                                   772 
829         mem_cgroup_replace_folio(old, new);    !! 773         xas_lock_irqsave(&xas, flags);
830                                                << 
831         xas_lock_irq(&xas);                    << 
832         xas_store(&xas, new);                     774         xas_store(&xas, new);
833                                                   775 
834         old->mapping = NULL;                      776         old->mapping = NULL;
835         /* hugetlb pages do not participate in    777         /* hugetlb pages do not participate in page cache accounting. */
836         if (!folio_test_hugetlb(old))          !! 778         if (!PageHuge(old))
837                 __lruvec_stat_sub_folio(old, N !! 779                 __dec_node_page_state(new, NR_FILE_PAGES);
838         if (!folio_test_hugetlb(new))          !! 780         if (!PageHuge(new))
839                 __lruvec_stat_add_folio(new, N !! 781                 __inc_node_page_state(new, NR_FILE_PAGES);
840         if (folio_test_swapbacked(old))        !! 782         if (PageSwapBacked(old))
841                 __lruvec_stat_sub_folio(old, N !! 783                 __dec_node_page_state(new, NR_SHMEM);
842         if (folio_test_swapbacked(new))        !! 784         if (PageSwapBacked(new))
843                 __lruvec_stat_add_folio(new, N !! 785                 __inc_node_page_state(new, NR_SHMEM);
844         xas_unlock_irq(&xas);                  !! 786         xas_unlock_irqrestore(&xas, flags);
845         if (free_folio)                        !! 787         mem_cgroup_migrate(old, new);
846                 free_folio(old);               !! 788         if (freepage)
847         folio_put(old);                        !! 789                 freepage(old);
                                                   >> 790         put_page(old);
                                                   >> 791 
                                                   >> 792         return 0;
848 }                                                 793 }
849 EXPORT_SYMBOL_GPL(replace_page_cache_folio);   !! 794 EXPORT_SYMBOL_GPL(replace_page_cache_page);
850                                                   795 
851 noinline int __filemap_add_folio(struct addres !! 796 static int __add_to_page_cache_locked(struct page *page,
852                 struct folio *folio, pgoff_t i !! 797                                       struct address_space *mapping,
                                                   >> 798                                       pgoff_t offset, gfp_t gfp_mask,
                                                   >> 799                                       void **shadowp)
853 {                                                 800 {
854         XA_STATE(xas, &mapping->i_pages, index !! 801         XA_STATE(xas, &mapping->i_pages, offset);
855         void *alloced_shadow = NULL;           !! 802         int huge = PageHuge(page);
856         int alloced_order = 0;                 !! 803         struct mem_cgroup *memcg;
857         bool huge;                             !! 804         int error;
858         long nr;                               !! 805         void *old;
859                                                !! 806 
860         VM_BUG_ON_FOLIO(!folio_test_locked(fol !! 807         VM_BUG_ON_PAGE(!PageLocked(page), page);
861         VM_BUG_ON_FOLIO(folio_test_swapbacked( !! 808         VM_BUG_ON_PAGE(PageSwapBacked(page), page);
862         VM_BUG_ON_FOLIO(folio_order(folio) < m << 
863                         folio);                << 
864         mapping_set_update(&xas, mapping);        809         mapping_set_update(&xas, mapping);
865                                                   810 
866         VM_BUG_ON_FOLIO(index & (folio_nr_page !! 811         if (!huge) {
867         xas_set_order(&xas, index, folio_order !! 812                 error = mem_cgroup_try_charge(page, current->mm,
868         huge = folio_test_hugetlb(folio);      !! 813                                               gfp_mask, &memcg, false);
869         nr = folio_nr_pages(folio);            !! 814                 if (error)
870                                                !! 815                         return error;
871         gfp &= GFP_RECLAIM_MASK;               !! 816         }
872         folio_ref_add(folio, nr);              << 
873         folio->mapping = mapping;              << 
874         folio->index = xas.xa_index;           << 
875                                                   817 
876         for (;;) {                             !! 818         get_page(page);
877                 int order = -1, split_order =  !! 819         page->mapping = mapping;
878                 void *entry, *old = NULL;      !! 820         page->index = offset;
879                                                   821 
                                                   >> 822         do {
880                 xas_lock_irq(&xas);               823                 xas_lock_irq(&xas);
881                 xas_for_each_conflict(&xas, en !! 824                 old = xas_load(&xas);
882                         old = entry;           !! 825                 if (old && !xa_is_value(old))
883                         if (!xa_is_value(entry !! 826                         xas_set_err(&xas, -EEXIST);
884                                 xas_set_err(&x !! 827                 xas_store(&xas, page);
885                                 goto unlock;   !! 828                 if (xas_error(&xas))
886                         }                      !! 829                         goto unlock;
887                         /*                     << 
888                          * If a larger entry e << 
889                          * it will be the firs << 
890                          */                    << 
891                         if (order == -1)       << 
892                                 order = xas_ge << 
893                 }                              << 
894                                                   830 
895                 /* entry may have changed befo !! 831                 if (xa_is_value(old)) {
896                 if (alloced_order && (old != a !! 832                         mapping->nrexceptional--;
897                         xas_destroy(&xas);     << 
898                         alloced_order = 0;     << 
899                 }                              << 
900                                                << 
901                 if (old) {                     << 
902                         if (order > 0 && order << 
903                                 /* How to hand << 
904                                 BUG_ON(shmem_m << 
905                                 if (!alloced_o << 
906                                         split_ << 
907                                         goto u << 
908                                 }              << 
909                                 xas_split(&xas << 
910                                 xas_reset(&xas << 
911                         }                      << 
912                         if (shadowp)              833                         if (shadowp)
913                                 *shadowp = old    834                                 *shadowp = old;
914                 }                                 835                 }
915                                                !! 836                 mapping->nrpages++;
916                 xas_store(&xas, folio);        << 
917                 if (xas_error(&xas))           << 
918                         goto unlock;           << 
919                                                << 
920                 mapping->nrpages += nr;        << 
921                                                   837 
922                 /* hugetlb pages do not partic    838                 /* hugetlb pages do not participate in page cache accounting */
923                 if (!huge) {                   !! 839                 if (!huge)
924                         __lruvec_stat_mod_foli !! 840                         __inc_node_page_state(page, NR_FILE_PAGES);
925                         if (folio_test_pmd_map << 
926                                 __lruvec_stat_ << 
927                                                << 
928                 }                              << 
929                                                << 
930 unlock:                                           841 unlock:
931                 xas_unlock_irq(&xas);             842                 xas_unlock_irq(&xas);
932                                                !! 843         } while (xas_nomem(&xas, gfp_mask & GFP_RECLAIM_MASK));
933                 /* split needed, alloc here an << 
934                 if (split_order) {             << 
935                         xas_split_alloc(&xas,  << 
936                         if (xas_error(&xas))   << 
937                                 goto error;    << 
938                         alloced_shadow = old;  << 
939                         alloced_order = split_ << 
940                         xas_reset(&xas);       << 
941                         continue;              << 
942                 }                              << 
943                                                << 
944                 if (!xas_nomem(&xas, gfp))     << 
945                         break;                 << 
946         }                                      << 
947                                                   844 
948         if (xas_error(&xas))                      845         if (xas_error(&xas))
949                 goto error;                       846                 goto error;
950                                                   847 
951         trace_mm_filemap_add_to_page_cache(fol !! 848         if (!huge)
                                                   >> 849                 mem_cgroup_commit_charge(page, memcg, false, false);
                                                   >> 850         trace_mm_filemap_add_to_page_cache(page);
952         return 0;                                 851         return 0;
953 error:                                            852 error:
954         folio->mapping = NULL;                 !! 853         page->mapping = NULL;
955         /* Leave page->index set: truncation r    854         /* Leave page->index set: truncation relies upon it */
956         folio_put_refs(folio, nr);             !! 855         if (!huge)
                                                   >> 856                 mem_cgroup_cancel_charge(page, memcg, false);
                                                   >> 857         put_page(page);
957         return xas_error(&xas);                   858         return xas_error(&xas);
958 }                                                 859 }
959 ALLOW_ERROR_INJECTION(__filemap_add_folio, ERR << 
960                                                   860 
961 int filemap_add_folio(struct address_space *ma !! 861 /**
962                                 pgoff_t index, !! 862  * add_to_page_cache_locked - add a locked page to the pagecache
                                                   >> 863  * @page:       page to add
                                                   >> 864  * @mapping:    the page's address_space
                                                   >> 865  * @offset:     page index
                                                   >> 866  * @gfp_mask:   page allocation mode
                                                   >> 867  *
                                                   >> 868  * This function is used to add a page to the pagecache. It must be locked.
                                                   >> 869  * This function does not add the page to the LRU.  The caller must do that.
                                                   >> 870  */
                                                   >> 871 int add_to_page_cache_locked(struct page *page, struct address_space *mapping,
                                                   >> 872                 pgoff_t offset, gfp_t gfp_mask)
                                                   >> 873 {
                                                   >> 874         return __add_to_page_cache_locked(page, mapping, offset,
                                                   >> 875                                           gfp_mask, NULL);
                                                   >> 876 }
                                                   >> 877 EXPORT_SYMBOL(add_to_page_cache_locked);
                                                   >> 878 
                                                   >> 879 int add_to_page_cache_lru(struct page *page, struct address_space *mapping,
                                                   >> 880                                 pgoff_t offset, gfp_t gfp_mask)
963 {                                                 881 {
964         void *shadow = NULL;                      882         void *shadow = NULL;
965         int ret;                                  883         int ret;
966                                                   884 
967         ret = mem_cgroup_charge(folio, NULL, g !! 885         __SetPageLocked(page);
968         if (ret)                               !! 886         ret = __add_to_page_cache_locked(page, mapping, offset,
969                 return ret;                    !! 887                                          gfp_mask, &shadow);
970                                                !! 888         if (unlikely(ret))
971         __folio_set_locked(folio);             !! 889                 __ClearPageLocked(page);
972         ret = __filemap_add_folio(mapping, fol !! 890         else {
973         if (unlikely(ret)) {                   << 
974                 mem_cgroup_uncharge(folio);    << 
975                 __folio_clear_locked(folio);   << 
976         } else {                               << 
977                 /*                                891                 /*
978                  * The folio might have been e !! 892                  * The page might have been evicted from cache only
979                  * recently, in which case it     893                  * recently, in which case it should be activated like
980                  * any other repeatedly access !! 894                  * any other repeatedly accessed page.
981                  * The exception is folios get !! 895                  * The exception is pages getting rewritten; evicting other
982                  * data from the working set,     896                  * data from the working set, only to cache data that will
983                  * get overwritten with someth    897                  * get overwritten with something else, is a waste of memory.
984                  */                               898                  */
985                 WARN_ON_ONCE(folio_test_active !! 899                 WARN_ON_ONCE(PageActive(page));
986                 if (!(gfp & __GFP_WRITE) && sh !! 900                 if (!(gfp_mask & __GFP_WRITE) && shadow)
987                         workingset_refault(fol !! 901                         workingset_refault(page, shadow);
988                 folio_add_lru(folio);          !! 902                 lru_cache_add(page);
989         }                                         903         }
990         return ret;                               904         return ret;
991 }                                                 905 }
992 EXPORT_SYMBOL_GPL(filemap_add_folio);          !! 906 EXPORT_SYMBOL_GPL(add_to_page_cache_lru);
993                                                   907 
994 #ifdef CONFIG_NUMA                                908 #ifdef CONFIG_NUMA
995 struct folio *filemap_alloc_folio_noprof(gfp_t !! 909 struct page *__page_cache_alloc(gfp_t gfp)
996 {                                                 910 {
997         int n;                                    911         int n;
998         struct folio *folio;                   !! 912         struct page *page;
999                                                   913 
1000         if (cpuset_do_page_mem_spread()) {       914         if (cpuset_do_page_mem_spread()) {
1001                 unsigned int cpuset_mems_cook    915                 unsigned int cpuset_mems_cookie;
1002                 do {                             916                 do {
1003                         cpuset_mems_cookie =     917                         cpuset_mems_cookie = read_mems_allowed_begin();
1004                         n = cpuset_mem_spread    918                         n = cpuset_mem_spread_node();
1005                         folio = __folio_alloc !! 919                         page = __alloc_pages_node(n, gfp, 0);
1006                 } while (!folio && read_mems_ !! 920                 } while (!page && read_mems_allowed_retry(cpuset_mems_cookie));
1007                                                  921 
1008                 return folio;                 !! 922                 return page;
1009         }                                        923         }
1010         return folio_alloc_noprof(gfp, order) !! 924         return alloc_pages(gfp, 0);
1011 }                                                925 }
1012 EXPORT_SYMBOL(filemap_alloc_folio_noprof);    !! 926 EXPORT_SYMBOL(__page_cache_alloc);
1013 #endif                                           927 #endif
1014                                                  928 
1015 /*                                               929 /*
1016  * filemap_invalidate_lock_two - lock invalid << 
1017  *                                            << 
1018  * Lock exclusively invalidate_lock of any pa << 
1019  *                                            << 
1020  * @mapping1: the first mapping to lock       << 
1021  * @mapping2: the second mapping to lock      << 
1022  */                                           << 
1023 void filemap_invalidate_lock_two(struct addre << 
1024                                  struct addre << 
1025 {                                             << 
1026         if (mapping1 > mapping2)              << 
1027                 swap(mapping1, mapping2);     << 
1028         if (mapping1)                         << 
1029                 down_write(&mapping1->invalid << 
1030         if (mapping2 && mapping1 != mapping2) << 
1031                 down_write_nested(&mapping2-> << 
1032 }                                             << 
1033 EXPORT_SYMBOL(filemap_invalidate_lock_two);   << 
1034                                               << 
1035 /*                                            << 
1036  * filemap_invalidate_unlock_two - unlock inv << 
1037  *                                            << 
1038  * Unlock exclusive invalidate_lock of any pa << 
1039  *                                            << 
1040  * @mapping1: the first mapping to unlock     << 
1041  * @mapping2: the second mapping to unlock    << 
1042  */                                           << 
1043 void filemap_invalidate_unlock_two(struct add << 
1044                                    struct add << 
1045 {                                             << 
1046         if (mapping1)                         << 
1047                 up_write(&mapping1->invalidat << 
1048         if (mapping2 && mapping1 != mapping2) << 
1049                 up_write(&mapping2->invalidat << 
1050 }                                             << 
1051 EXPORT_SYMBOL(filemap_invalidate_unlock_two); << 
1052                                               << 
1053 /*                                            << 
1054  * In order to wait for pages to become avail    930  * In order to wait for pages to become available there must be
1055  * waitqueues associated with pages. By using    931  * waitqueues associated with pages. By using a hash table of
1056  * waitqueues where the bucket discipline is     932  * waitqueues where the bucket discipline is to maintain all
1057  * waiters on the same queue and wake all whe    933  * waiters on the same queue and wake all when any of the pages
1058  * become available, and for the woken contex    934  * become available, and for the woken contexts to check to be
1059  * sure the appropriate page became available    935  * sure the appropriate page became available, this saves space
1060  * at a cost of "thundering herd" phenomena d    936  * at a cost of "thundering herd" phenomena during rare hash
1061  * collisions.                                   937  * collisions.
1062  */                                              938  */
1063 #define PAGE_WAIT_TABLE_BITS 8                   939 #define PAGE_WAIT_TABLE_BITS 8
1064 #define PAGE_WAIT_TABLE_SIZE (1 << PAGE_WAIT_    940 #define PAGE_WAIT_TABLE_SIZE (1 << PAGE_WAIT_TABLE_BITS)
1065 static wait_queue_head_t folio_wait_table[PAG !! 941 static wait_queue_head_t page_wait_table[PAGE_WAIT_TABLE_SIZE] __cacheline_aligned;
1066                                                  942 
1067 static wait_queue_head_t *folio_waitqueue(str !! 943 static wait_queue_head_t *page_waitqueue(struct page *page)
1068 {                                                944 {
1069         return &folio_wait_table[hash_ptr(fol !! 945         return &page_wait_table[hash_ptr(page, PAGE_WAIT_TABLE_BITS)];
1070 }                                                946 }
1071                                                  947 
1072 void __init pagecache_init(void)                 948 void __init pagecache_init(void)
1073 {                                                949 {
1074         int i;                                   950         int i;
1075                                                  951 
1076         for (i = 0; i < PAGE_WAIT_TABLE_SIZE;    952         for (i = 0; i < PAGE_WAIT_TABLE_SIZE; i++)
1077                 init_waitqueue_head(&folio_wa !! 953                 init_waitqueue_head(&page_wait_table[i]);
1078                                                  954 
1079         page_writeback_init();                   955         page_writeback_init();
1080 }                                                956 }
1081                                                  957 
1082 /*                                            !! 958 /* This has the same layout as wait_bit_key - see fs/cachefiles/rdwr.c */
1083  * The page wait code treats the "wait->flags !! 959 struct wait_page_key {
1084  * we have multiple different kinds of waits, !! 960         struct page *page;
1085  * one.                                       !! 961         int bit_nr;
1086  *                                            !! 962         int page_match;
1087  * We have:                                   !! 963 };
1088  *                                            !! 964 
1089  *  (a) no special bits set:                  !! 965 struct wait_page_queue {
1090  *                                            !! 966         struct page *page;
1091  *      We're just waiting for the bit to be  !! 967         int bit_nr;
1092  *      calls the wakeup function, we set WQ_ !! 968         wait_queue_entry_t wait;
1093  *      and remove it from the wait queue.    !! 969 };
1094  *                                            !! 970 
1095  *      Simple and straightforward.           << 
1096  *                                            << 
1097  *  (b) WQ_FLAG_EXCLUSIVE:                    << 
1098  *                                            << 
1099  *      The waiter is waiting to get the lock << 
1100  *      be woken up to avoid any thundering h << 
1101  *      WQ_FLAG_WOKEN bit, wake it up, and re << 
1102  *                                            << 
1103  *      This is the traditional exclusive wai << 
1104  *                                            << 
1105  *  (c) WQ_FLAG_EXCLUSIVE | WQ_FLAG_CUSTOM:   << 
1106  *                                            << 
1107  *      The waiter is waiting to get the bit, << 
1108  *      lock to be transferred to it for fair << 
1109  *      cannot be taken, we stop walking the  << 
1110  *      the waiter.                           << 
1111  *                                            << 
1112  *      This is the "fair lock handoff" case, << 
1113  *      WQ_FLAG_WOKEN, we set WQ_FLAG_DONE to << 
1114  *      that it now has the lock.             << 
1115  */                                           << 
1116 static int wake_page_function(wait_queue_entr    971 static int wake_page_function(wait_queue_entry_t *wait, unsigned mode, int sync, void *arg)
1117 {                                                972 {
1118         unsigned int flags;                   << 
1119         struct wait_page_key *key = arg;         973         struct wait_page_key *key = arg;
1120         struct wait_page_queue *wait_page        974         struct wait_page_queue *wait_page
1121                 = container_of(wait, struct w    975                 = container_of(wait, struct wait_page_queue, wait);
1122                                                  976 
1123         if (!wake_page_match(wait_page, key)) !! 977         if (wait_page->page != key->page)
1124                 return 0;                     !! 978                return 0;
                                                   >> 979         key->page_match = 1;
1125                                                  980 
1126         /*                                    !! 981         if (wait_page->bit_nr != key->bit_nr)
1127          * If it's a lock handoff wait, we ge !! 982                 return 0;
1128          * stop walking (and do not wake it u << 
1129          */                                   << 
1130         flags = wait->flags;                  << 
1131         if (flags & WQ_FLAG_EXCLUSIVE) {      << 
1132                 if (test_bit(key->bit_nr, &ke << 
1133                         return -1;            << 
1134                 if (flags & WQ_FLAG_CUSTOM) { << 
1135                         if (test_and_set_bit( << 
1136                                 return -1;    << 
1137                         flags |= WQ_FLAG_DONE << 
1138                 }                             << 
1139         }                                     << 
1140                                                  983 
1141         /*                                    !! 984         /* Stop walking if it's locked */
1142          * We are holding the wait-queue lock !! 985         if (test_bit(key->bit_nr, &key->page->flags))
1143          * is waiting for this will be checki !! 986                 return -1;
1144          * any locking.                       << 
1145          *                                    << 
1146          * So update the flags atomically, an << 
1147          * afterwards to avoid any races. Thi << 
1148          * with the load-acquire in folio_wai << 
1149          */                                   << 
1150         smp_store_release(&wait->flags, flags << 
1151         wake_up_state(wait->private, mode);   << 
1152                                                  987 
1153         /*                                    !! 988         return autoremove_wake_function(wait, mode, sync, key);
1154          * Ok, we have successfully done what << 
1155          * and we can unconditionally remove  << 
1156          *                                    << 
1157          * Note that this pairs with the "fin << 
1158          * waiter, and has to be the absolute << 
1159          * After this list_del_init(&wait->en << 
1160          * might be de-allocated and the proc << 
1161          * exited.                            << 
1162          */                                   << 
1163         list_del_init_careful(&wait->entry);  << 
1164         return (flags & WQ_FLAG_EXCLUSIVE) != << 
1165 }                                                989 }
1166                                                  990 
1167 static void folio_wake_bit(struct folio *foli !! 991 static void wake_up_page_bit(struct page *page, int bit_nr)
1168 {                                                992 {
1169         wait_queue_head_t *q = folio_waitqueu !! 993         wait_queue_head_t *q = page_waitqueue(page);
1170         struct wait_page_key key;                994         struct wait_page_key key;
1171         unsigned long flags;                     995         unsigned long flags;
                                                   >> 996         wait_queue_entry_t bookmark;
1172                                                  997 
1173         key.folio = folio;                    !! 998         key.page = page;
1174         key.bit_nr = bit_nr;                     999         key.bit_nr = bit_nr;
1175         key.page_match = 0;                      1000         key.page_match = 0;
1176                                                  1001 
                                                   >> 1002         bookmark.flags = 0;
                                                   >> 1003         bookmark.private = NULL;
                                                   >> 1004         bookmark.func = NULL;
                                                   >> 1005         INIT_LIST_HEAD(&bookmark.entry);
                                                   >> 1006 
1177         spin_lock_irqsave(&q->lock, flags);      1007         spin_lock_irqsave(&q->lock, flags);
1178         __wake_up_locked_key(q, TASK_NORMAL,  !! 1008         __wake_up_locked_key_bookmark(q, TASK_NORMAL, &key, &bookmark);
                                                   >> 1009 
                                                   >> 1010         while (bookmark.flags & WQ_FLAG_BOOKMARK) {
                                                   >> 1011                 /*
                                                   >> 1012                  * Take a breather from holding the lock,
                                                   >> 1013                  * allow pages that finish wake up asynchronously
                                                   >> 1014                  * to acquire the lock and remove themselves
                                                   >> 1015                  * from wait queue
                                                   >> 1016                  */
                                                   >> 1017                 spin_unlock_irqrestore(&q->lock, flags);
                                                   >> 1018                 cpu_relax();
                                                   >> 1019                 spin_lock_irqsave(&q->lock, flags);
                                                   >> 1020                 __wake_up_locked_key_bookmark(q, TASK_NORMAL, &key, &bookmark);
                                                   >> 1021         }
1179                                                  1022 
1180         /*                                       1023         /*
1181          * It's possible to miss clearing wai !! 1024          * It is possible for other pages to have collided on the waitqueue
1182          * waiters, but the hashed waitqueue  !! 1025          * hash, so in that case check for a page match. That prevents a long-
1183          * That's okay, it's a rare case. The !! 1026          * term waiter
1184          *                                       1027          *
1185          * Note that, depending on the page p !! 1028          * It is still possible to miss a case here, when we woke page waiters
1186          * other), the flag may be cleared in !! 1029          * and removed them from the waitqueue, but there are still other
1187          * but that is not required for corre !! 1030          * page waiters.
1188          */                                   !! 1031          */
1189         if (!waitqueue_active(q) || !key.page !! 1032         if (!waitqueue_active(q) || !key.page_match) {
1190                 folio_clear_waiters(folio);   !! 1033                 ClearPageWaiters(page);
1191                                               !! 1034                 /*
                                                   >> 1035                  * It's possible to miss clearing Waiters here, when we woke
                                                   >> 1036                  * our page waiters, but the hashed waitqueue has waiters for
                                                   >> 1037                  * other pages on it.
                                                   >> 1038                  *
                                                   >> 1039                  * That's okay, it's a rare case. The next waker will clear it.
                                                   >> 1040                  */
                                                   >> 1041         }
1192         spin_unlock_irqrestore(&q->lock, flag    1042         spin_unlock_irqrestore(&q->lock, flags);
1193 }                                                1043 }
1194                                                  1044 
1195 /*                                            !! 1045 static void wake_up_page(struct page *page, int bit)
1196  * A choice of three behaviors for folio_wait << 
1197  */                                           << 
1198 enum behavior {                               << 
1199         EXCLUSIVE,      /* Hold ref to page a << 
1200                          * __folio_lock() wai << 
1201                          */                   << 
1202         SHARED,         /* Hold ref to page a << 
1203                          * folio_wait_writeba << 
1204                          */                   << 
1205         DROP,           /* Drop ref to page b << 
1206                          * like folio_put_wai << 
1207                          */                   << 
1208 };                                            << 
1209                                               << 
1210 /*                                            << 
1211  * Attempt to check (or get) the folio flag,  << 
1212  * if successful.                             << 
1213  */                                           << 
1214 static inline bool folio_trylock_flag(struct  << 
1215                                         struc << 
1216 {                                                1046 {
1217         if (wait->flags & WQ_FLAG_EXCLUSIVE)  !! 1047         if (!PageWaiters(page))
1218                 if (test_and_set_bit(bit_nr,  !! 1048                 return;
1219                         return false;         !! 1049         wake_up_page_bit(page, bit);
1220         } else if (test_bit(bit_nr, &folio->f << 
1221                 return false;                 << 
1222                                               << 
1223         wait->flags |= WQ_FLAG_WOKEN | WQ_FLA << 
1224         return true;                          << 
1225 }                                                1050 }
1226                                                  1051 
1227 /* How many times do we accept lock stealing  !! 1052 static inline int wait_on_page_bit_common(wait_queue_head_t *q,
1228 int sysctl_page_lock_unfairness = 5;          !! 1053                 struct page *page, int bit_nr, int state, bool lock)
1229                                               << 
1230 static inline int folio_wait_bit_common(struc << 
1231                 int state, enum behavior beha << 
1232 {                                                1054 {
1233         wait_queue_head_t *q = folio_waitqueu << 
1234         int unfairness = sysctl_page_lock_unf << 
1235         struct wait_page_queue wait_page;        1055         struct wait_page_queue wait_page;
1236         wait_queue_entry_t *wait = &wait_page    1056         wait_queue_entry_t *wait = &wait_page.wait;
1237         bool thrashing = false;                  1057         bool thrashing = false;
1238         unsigned long pflags;                    1058         unsigned long pflags;
1239         bool in_thrashing;                    !! 1059         int ret = 0;
1240                                                  1060 
1241         if (bit_nr == PG_locked &&               1061         if (bit_nr == PG_locked &&
1242             !folio_test_uptodate(folio) && fo !! 1062             !PageUptodate(page) && PageWorkingset(page)) {
1243                 delayacct_thrashing_start(&in !! 1063                 if (!PageSwapBacked(page))
                                                   >> 1064                         delayacct_thrashing_start();
1244                 psi_memstall_enter(&pflags);     1065                 psi_memstall_enter(&pflags);
1245                 thrashing = true;                1066                 thrashing = true;
1246         }                                        1067         }
1247                                                  1068 
1248         init_wait(wait);                         1069         init_wait(wait);
                                                   >> 1070         wait->flags = lock ? WQ_FLAG_EXCLUSIVE : 0;
1249         wait->func = wake_page_function;         1071         wait->func = wake_page_function;
1250         wait_page.folio = folio;              !! 1072         wait_page.page = page;
1251         wait_page.bit_nr = bit_nr;               1073         wait_page.bit_nr = bit_nr;
1252                                                  1074 
1253 repeat:                                       << 
1254         wait->flags = 0;                      << 
1255         if (behavior == EXCLUSIVE) {          << 
1256                 wait->flags = WQ_FLAG_EXCLUSI << 
1257                 if (--unfairness < 0)         << 
1258                         wait->flags |= WQ_FLA << 
1259         }                                     << 
1260                                               << 
1261         /*                                    << 
1262          * Do one last check whether we can g << 
1263          * page bit synchronously.            << 
1264          *                                    << 
1265          * Do the folio_set_waiters() marking << 
1266          * to let any waker we _just_ missed  << 
1267          * need to wake us up (otherwise they << 
1268          * even go to the slow case that look << 
1269          * page queue), and add ourselves to  << 
1270          * queue if we need to sleep.         << 
1271          *                                    << 
1272          * This part needs to be done under t << 
1273          * lock to avoid races.               << 
1274          */                                   << 
1275         spin_lock_irq(&q->lock);              << 
1276         folio_set_waiters(folio);             << 
1277         if (!folio_trylock_flag(folio, bit_nr << 
1278                 __add_wait_queue_entry_tail(q << 
1279         spin_unlock_irq(&q->lock);            << 
1280                                               << 
1281         /*                                    << 
1282          * From now on, all the logic will be << 
1283          * the WQ_FLAG_WOKEN and WQ_FLAG_DONE << 
1284          * see whether the page bit testing h << 
1285          * been done by the wake function.    << 
1286          *                                    << 
1287          * We can drop our reference to the f << 
1288          */                                   << 
1289         if (behavior == DROP)                 << 
1290                 folio_put(folio);             << 
1291                                               << 
1292         /*                                    << 
1293          * Note that until the "finish_wait() << 
1294          * we see the WQ_FLAG_WOKEN flag, we  << 
1295          * be very careful with the 'wait->fl << 
1296          * we may race with a waker that sets << 
1297          */                                   << 
1298         for (;;) {                               1075         for (;;) {
1299                 unsigned int flags;           !! 1076                 spin_lock_irq(&q->lock);
                                                   >> 1077 
                                                   >> 1078                 if (likely(list_empty(&wait->entry))) {
                                                   >> 1079                         __add_wait_queue_entry_tail(q, wait);
                                                   >> 1080                         SetPageWaiters(page);
                                                   >> 1081                 }
1300                                                  1082 
1301                 set_current_state(state);        1083                 set_current_state(state);
1302                                                  1084 
1303                 /* Loop until we've been woke !! 1085                 spin_unlock_irq(&q->lock);
1304                 flags = smp_load_acquire(&wai << 
1305                 if (!(flags & WQ_FLAG_WOKEN)) << 
1306                         if (signal_pending_st << 
1307                                 break;        << 
1308                                                  1086 
                                                   >> 1087                 if (likely(test_bit(bit_nr, &page->flags))) {
1309                         io_schedule();           1088                         io_schedule();
1310                         continue;             << 
1311                 }                                1089                 }
1312                                                  1090 
1313                 /* If we were non-exclusive,  !! 1091                 if (lock) {
1314                 if (behavior != EXCLUSIVE)    !! 1092                         if (!test_and_set_bit_lock(bit_nr, &page->flags))
1315                         break;                !! 1093                                 break;
                                                   >> 1094                 } else {
                                                   >> 1095                         if (!test_bit(bit_nr, &page->flags))
                                                   >> 1096                                 break;
                                                   >> 1097                 }
1316                                                  1098 
1317                 /* If the waker got the lock  !! 1099                 if (unlikely(signal_pending_state(state, current))) {
1318                 if (flags & WQ_FLAG_DONE)     !! 1100                         ret = -EINTR;
1319                         break;                   1101                         break;
1320                                               !! 1102                 }
1321                 /*                            << 
1322                  * Otherwise, if we're gettin << 
1323                  * try to get it ourselves.   << 
1324                  *                            << 
1325                  * And if that fails, we'll h << 
1326                  */                           << 
1327                 if (unlikely(test_and_set_bit << 
1328                         goto repeat;          << 
1329                                               << 
1330                 wait->flags |= WQ_FLAG_DONE;  << 
1331                 break;                        << 
1332         }                                        1103         }
1333                                                  1104 
1334         /*                                    << 
1335          * If a signal happened, this 'finish << 
1336          * waiter from the wait-queues, but t << 
1337          * set. That's ok. The next wakeup wi << 
1338          * to do it here would be difficult a << 
1339          */                                   << 
1340         finish_wait(q, wait);                    1105         finish_wait(q, wait);
1341                                                  1106 
1342         if (thrashing) {                         1107         if (thrashing) {
1343                 delayacct_thrashing_end(&in_t !! 1108                 if (!PageSwapBacked(page))
                                                   >> 1109                         delayacct_thrashing_end();
1344                 psi_memstall_leave(&pflags);     1110                 psi_memstall_leave(&pflags);
1345         }                                        1111         }
1346                                                  1112 
1347         /*                                       1113         /*
1348          * NOTE! The wait->flags weren't stab !! 1114          * A signal could leave PageWaiters set. Clearing it here if
1349          * 'finish_wait()', and we could have !! 1115          * !waitqueue_active would be possible (by open-coding finish_wait),
1350          * to a signal, and had a wakeup even !! 1116          * but still fail to catch it in the case of wait hash collision. We
1351          * test but before the 'finish_wait() !! 1117          * already can fail to clear wait hash collision cases, so don't
1352          *                                    !! 1118          * bother with signals either.
1353          * So only after the finish_wait() ca << 
1354          * if we got woken up or not, so we c << 
1355          * return value based on that state w << 
1356          *                                    << 
1357          * Also note that WQ_FLAG_WOKEN is su << 
1358          * waiter, but an exclusive one requi << 
1359          */                                   << 
1360         if (behavior == EXCLUSIVE)            << 
1361                 return wait->flags & WQ_FLAG_ << 
1362                                               << 
1363         return wait->flags & WQ_FLAG_WOKEN ?  << 
1364 }                                             << 
1365                                               << 
1366 #ifdef CONFIG_MIGRATION                       << 
1367 /**                                           << 
1368  * migration_entry_wait_on_locked - Wait for  << 
1369  * @entry: migration swap entry.              << 
1370  * @ptl: already locked ptl. This function wi << 
1371  *                                            << 
1372  * Wait for a migration entry referencing the << 
1373  * equivalent to put_and_wait_on_page_locked( << 
1374  * this can be called without taking a refere << 
1375  * should be called while holding the ptl for << 
1376  * the page.                                  << 
1377  *                                            << 
1378  * Returns after unlocking the ptl.           << 
1379  *                                            << 
1380  * This follows the same logic as folio_wait_ << 
1381  * there.                                     << 
1382  */                                           << 
1383 void migration_entry_wait_on_locked(swp_entry << 
1384         __releases(ptl)                       << 
1385 {                                             << 
1386         struct wait_page_queue wait_page;     << 
1387         wait_queue_entry_t *wait = &wait_page << 
1388         bool thrashing = false;               << 
1389         unsigned long pflags;                 << 
1390         bool in_thrashing;                    << 
1391         wait_queue_head_t *q;                 << 
1392         struct folio *folio = pfn_swap_entry_ << 
1393                                               << 
1394         q = folio_waitqueue(folio);           << 
1395         if (!folio_test_uptodate(folio) && fo << 
1396                 delayacct_thrashing_start(&in << 
1397                 psi_memstall_enter(&pflags);  << 
1398                 thrashing = true;             << 
1399         }                                     << 
1400                                               << 
1401         init_wait(wait);                      << 
1402         wait->func = wake_page_function;      << 
1403         wait_page.folio = folio;              << 
1404         wait_page.bit_nr = PG_locked;         << 
1405         wait->flags = 0;                      << 
1406                                               << 
1407         spin_lock_irq(&q->lock);              << 
1408         folio_set_waiters(folio);             << 
1409         if (!folio_trylock_flag(folio, PG_loc << 
1410                 __add_wait_queue_entry_tail(q << 
1411         spin_unlock_irq(&q->lock);            << 
1412                                               << 
1413         /*                                    << 
1414          * If a migration entry exists for th << 
1415          * a valid reference to the page, and << 
1416          * migration entry. So the page is va << 
1417          */                                      1119          */
1418         spin_unlock(ptl);                     << 
1419                                               << 
1420         for (;;) {                            << 
1421                 unsigned int flags;           << 
1422                                               << 
1423                 set_current_state(TASK_UNINTE << 
1424                                               << 
1425                 /* Loop until we've been woke << 
1426                 flags = smp_load_acquire(&wai << 
1427                 if (!(flags & WQ_FLAG_WOKEN)) << 
1428                         if (signal_pending_st << 
1429                                 break;        << 
1430                                                  1120 
1431                         io_schedule();        !! 1121         return ret;
1432                         continue;             << 
1433                 }                             << 
1434                 break;                        << 
1435         }                                     << 
1436                                               << 
1437         finish_wait(q, wait);                 << 
1438                                               << 
1439         if (thrashing) {                      << 
1440                 delayacct_thrashing_end(&in_t << 
1441                 psi_memstall_leave(&pflags);  << 
1442         }                                     << 
1443 }                                                1122 }
1444 #endif                                        << 
1445                                                  1123 
1446 void folio_wait_bit(struct folio *folio, int  !! 1124 void wait_on_page_bit(struct page *page, int bit_nr)
1447 {                                                1125 {
1448         folio_wait_bit_common(folio, bit_nr,  !! 1126         wait_queue_head_t *q = page_waitqueue(page);
                                                   >> 1127         wait_on_page_bit_common(q, page, bit_nr, TASK_UNINTERRUPTIBLE, false);
1449 }                                                1128 }
1450 EXPORT_SYMBOL(folio_wait_bit);                !! 1129 EXPORT_SYMBOL(wait_on_page_bit);
1451                                                  1130 
1452 int folio_wait_bit_killable(struct folio *fol !! 1131 int wait_on_page_bit_killable(struct page *page, int bit_nr)
1453 {                                                1132 {
1454         return folio_wait_bit_common(folio, b !! 1133         wait_queue_head_t *q = page_waitqueue(page);
                                                   >> 1134         return wait_on_page_bit_common(q, page, bit_nr, TASK_KILLABLE, false);
1455 }                                                1135 }
1456 EXPORT_SYMBOL(folio_wait_bit_killable);       !! 1136 EXPORT_SYMBOL(wait_on_page_bit_killable);
1457                                                  1137 
1458 /**                                              1138 /**
1459  * folio_put_wait_locked - Drop a reference a !! 1139  * add_page_wait_queue - Add an arbitrary waiter to a page's wait queue
1460  * @folio: The folio to wait for.             !! 1140  * @page: Page defining the wait queue of interest
1461  * @state: The sleep state (TASK_KILLABLE, TA << 
1462  *                                            << 
1463  * The caller should hold a reference on @fol << 
1464  * become unlocked relatively soon, but do no << 
1465  * (for example) by holding the reference whi << 
1466  * come unlocked.  After this function return << 
1467  * dereference @folio.                        << 
1468  *                                            << 
1469  * Return: 0 if the folio was unlocked or -EI << 
1470  */                                           << 
1471 static int folio_put_wait_locked(struct folio << 
1472 {                                             << 
1473         return folio_wait_bit_common(folio, P << 
1474 }                                             << 
1475                                               << 
1476 /**                                           << 
1477  * folio_add_wait_queue - Add an arbitrary wa << 
1478  * @folio: Folio defining the wait queue of i << 
1479  * @waiter: Waiter to add to the queue           1141  * @waiter: Waiter to add to the queue
1480  *                                               1142  *
1481  * Add an arbitrary @waiter to the wait queue !! 1143  * Add an arbitrary @waiter to the wait queue for the nominated @page.
1482  */                                              1144  */
1483 void folio_add_wait_queue(struct folio *folio !! 1145 void add_page_wait_queue(struct page *page, wait_queue_entry_t *waiter)
1484 {                                                1146 {
1485         wait_queue_head_t *q = folio_waitqueu !! 1147         wait_queue_head_t *q = page_waitqueue(page);
1486         unsigned long flags;                     1148         unsigned long flags;
1487                                                  1149 
1488         spin_lock_irqsave(&q->lock, flags);      1150         spin_lock_irqsave(&q->lock, flags);
1489         __add_wait_queue_entry_tail(q, waiter    1151         __add_wait_queue_entry_tail(q, waiter);
1490         folio_set_waiters(folio);             !! 1152         SetPageWaiters(page);
1491         spin_unlock_irqrestore(&q->lock, flag    1153         spin_unlock_irqrestore(&q->lock, flags);
1492 }                                                1154 }
1493 EXPORT_SYMBOL_GPL(folio_add_wait_queue);      !! 1155 EXPORT_SYMBOL_GPL(add_page_wait_queue);
1494                                                  1156 
1495 /**                                           !! 1157 #ifndef clear_bit_unlock_is_negative_byte
1496  * folio_unlock - Unlock a locked folio.      << 
1497  * @folio: The folio.                         << 
1498  *                                            << 
1499  * Unlocks the folio and wakes up any thread  << 
1500  *                                            << 
1501  * Context: May be called from interrupt or p << 
1502  * called from NMI context.                   << 
1503  */                                           << 
1504 void folio_unlock(struct folio *folio)        << 
1505 {                                             << 
1506         /* Bit 7 allows x86 to check the byte << 
1507         BUILD_BUG_ON(PG_waiters != 7);        << 
1508         BUILD_BUG_ON(PG_locked > 7);          << 
1509         VM_BUG_ON_FOLIO(!folio_test_locked(fo << 
1510         if (folio_xor_flags_has_waiters(folio << 
1511                 folio_wake_bit(folio, PG_lock << 
1512 }                                             << 
1513 EXPORT_SYMBOL(folio_unlock);                  << 
1514                                                  1158 
1515 /**                                           !! 1159 /*
1516  * folio_end_read - End read on a folio.      !! 1160  * PG_waiters is the high bit in the same byte as PG_lock.
1517  * @folio: The folio.                         << 
1518  * @success: True if all reads completed succ << 
1519  *                                            << 
1520  * When all reads against a folio have comple << 
1521  * call this function to let the pagecache kn << 
1522  * are outstanding.  This will unlock the fol << 
1523  * sleeping on the lock.  The folio will also << 
1524  * reads succeeded.                           << 
1525  *                                            << 
1526  * Context: May be called from interrupt or p << 
1527  * called from NMI context.                   << 
1528  */                                           << 
1529 void folio_end_read(struct folio *folio, bool << 
1530 {                                             << 
1531         unsigned long mask = 1 << PG_locked;  << 
1532                                               << 
1533         /* Must be in bottom byte for x86 to  << 
1534         BUILD_BUG_ON(PG_uptodate > 7);        << 
1535         VM_BUG_ON_FOLIO(!folio_test_locked(fo << 
1536         VM_BUG_ON_FOLIO(folio_test_uptodate(f << 
1537                                               << 
1538         if (likely(success))                  << 
1539                 mask |= 1 << PG_uptodate;     << 
1540         if (folio_xor_flags_has_waiters(folio << 
1541                 folio_wake_bit(folio, PG_lock << 
1542 }                                             << 
1543 EXPORT_SYMBOL(folio_end_read);                << 
1544                                               << 
1545 /**                                           << 
1546  * folio_end_private_2 - Clear PG_private_2 a << 
1547  * @folio: The folio.                         << 
1548  *                                               1161  *
1549  * Clear the PG_private_2 bit on a folio and  !! 1162  * On x86 (and on many other architectures), we can clear PG_lock and
1550  * it.  The folio reference held for PG_priva !! 1163  * test the sign bit at the same time. But if the architecture does
                                                   >> 1164  * not support that special operation, we just do this all by hand
                                                   >> 1165  * instead.
1551  *                                               1166  *
1552  * This is, for example, used when a netfs fo !! 1167  * The read of PG_waiters has to be after (or concurrently with) PG_locked
1553  * disk cache, thereby allowing writes to the !! 1168  * being cleared, but a memory barrier should be unneccssary since it is
1554  * serialised.                                !! 1169  * in the same byte as PG_locked.
1555  */                                              1170  */
1556 void folio_end_private_2(struct folio *folio) !! 1171 static inline bool clear_bit_unlock_is_negative_byte(long nr, volatile void *mem)
1557 {                                                1172 {
1558         VM_BUG_ON_FOLIO(!folio_test_private_2 !! 1173         clear_bit_unlock(nr, mem);
1559         clear_bit_unlock(PG_private_2, folio_ !! 1174         /* smp_mb__after_atomic(); */
1560         folio_wake_bit(folio, PG_private_2);  !! 1175         return test_bit(PG_waiters, mem);
1561         folio_put(folio);                     << 
1562 }                                                1176 }
1563 EXPORT_SYMBOL(folio_end_private_2);           !! 1177 
                                                   >> 1178 #endif
1564                                                  1179 
1565 /**                                              1180 /**
1566  * folio_wait_private_2 - Wait for PG_private !! 1181  * unlock_page - unlock a locked page
1567  * @folio: The folio to wait on.              !! 1182  * @page: the page
1568  *                                               1183  *
1569  * Wait for PG_private_2 to be cleared on a f !! 1184  * Unlocks the page and wakes up sleepers in ___wait_on_page_locked().
                                                   >> 1185  * Also wakes sleepers in wait_on_page_writeback() because the wakeup
                                                   >> 1186  * mechanism between PageLocked pages and PageWriteback pages is shared.
                                                   >> 1187  * But that's OK - sleepers in wait_on_page_writeback() just go back to sleep.
                                                   >> 1188  *
                                                   >> 1189  * Note that this depends on PG_waiters being the sign bit in the byte
                                                   >> 1190  * that contains PG_locked - thus the BUILD_BUG_ON(). That allows us to
                                                   >> 1191  * clear the PG_locked bit and test PG_waiters at the same time fairly
                                                   >> 1192  * portably (architectures that do LL/SC can test any bit, while x86 can
                                                   >> 1193  * test the sign bit).
1570  */                                              1194  */
1571 void folio_wait_private_2(struct folio *folio !! 1195 void unlock_page(struct page *page)
1572 {                                                1196 {
1573         while (folio_test_private_2(folio))   !! 1197         BUILD_BUG_ON(PG_waiters != 7);
1574                 folio_wait_bit(folio, PG_priv !! 1198         page = compound_head(page);
                                                   >> 1199         VM_BUG_ON_PAGE(!PageLocked(page), page);
                                                   >> 1200         if (clear_bit_unlock_is_negative_byte(PG_locked, &page->flags))
                                                   >> 1201                 wake_up_page_bit(page, PG_locked);
1575 }                                                1202 }
1576 EXPORT_SYMBOL(folio_wait_private_2);          !! 1203 EXPORT_SYMBOL(unlock_page);
1577                                                  1204 
1578 /**                                              1205 /**
1579  * folio_wait_private_2_killable - Wait for P !! 1206  * end_page_writeback - end writeback against a page
1580  * @folio: The folio to wait on.              !! 1207  * @page: the page
1581  *                                            << 
1582  * Wait for PG_private_2 to be cleared on a f << 
1583  * received by the calling task.              << 
1584  *                                            << 
1585  * Return:                                    << 
1586  * - 0 if successful.                         << 
1587  * - -EINTR if a fatal signal was encountered << 
1588  */                                              1208  */
1589 int folio_wait_private_2_killable(struct foli !! 1209 void end_page_writeback(struct page *page)
1590 {                                                1210 {
1591         int ret = 0;                          !! 1211         /*
1592                                               !! 1212          * TestClearPageReclaim could be used here but it is an atomic
1593         while (folio_test_private_2(folio)) { !! 1213          * operation and overkill in this particular case. Failing to
1594                 ret = folio_wait_bit_killable !! 1214          * shuffle a page marked for immediate reclaim is too mild to
1595                 if (ret < 0)                  !! 1215          * justify taking an atomic operation penalty at the end of
1596                         break;                !! 1216          * ever page writeback.
                                                   >> 1217          */
                                                   >> 1218         if (PageReclaim(page)) {
                                                   >> 1219                 ClearPageReclaim(page);
                                                   >> 1220                 rotate_reclaimable_page(page);
1597         }                                        1221         }
1598                                                  1222 
1599         return ret;                           !! 1223         if (!test_clear_page_writeback(page))
                                                   >> 1224                 BUG();
                                                   >> 1225 
                                                   >> 1226         smp_mb__after_atomic();
                                                   >> 1227         wake_up_page(page, PG_writeback);
1600 }                                                1228 }
1601 EXPORT_SYMBOL(folio_wait_private_2_killable); !! 1229 EXPORT_SYMBOL(end_page_writeback);
1602                                                  1230 
1603 /**                                           !! 1231 /*
1604  * folio_end_writeback - End writeback agains !! 1232  * After completing I/O on a page, call this routine to update the page
1605  * @folio: The folio.                         !! 1233  * flags appropriately
1606  *                                            << 
1607  * The folio must actually be under writeback << 
1608  *                                            << 
1609  * Context: May be called from process or int << 
1610  */                                              1234  */
1611 void folio_end_writeback(struct folio *folio) !! 1235 void page_endio(struct page *page, bool is_write, int err)
1612 {                                                1236 {
1613         VM_BUG_ON_FOLIO(!folio_test_writeback !! 1237         if (!is_write) {
                                                   >> 1238                 if (!err) {
                                                   >> 1239                         SetPageUptodate(page);
                                                   >> 1240                 } else {
                                                   >> 1241                         ClearPageUptodate(page);
                                                   >> 1242                         SetPageError(page);
                                                   >> 1243                 }
                                                   >> 1244                 unlock_page(page);
                                                   >> 1245         } else {
                                                   >> 1246                 if (err) {
                                                   >> 1247                         struct address_space *mapping;
1614                                                  1248 
1615         /*                                    !! 1249                         SetPageError(page);
1616          * folio_test_clear_reclaim() could b !! 1250                         mapping = page_mapping(page);
1617          * atomic operation and overkill in t !! 1251                         if (mapping)
1618          * to shuffle a folio marked for imme !! 1252                                 mapping_set_error(mapping, err);
1619          * a gain to justify taking an atomic !! 1253                 }
1620          * end of every folio writeback.      !! 1254                 end_page_writeback(page);
1621          */                                   << 
1622         if (folio_test_reclaim(folio)) {      << 
1623                 folio_clear_reclaim(folio);   << 
1624                 folio_rotate_reclaimable(foli << 
1625         }                                        1255         }
1626                                               << 
1627         /*                                    << 
1628          * Writeback does not hold a folio re << 
1629          * on truncation to wait for the clea << 
1630          * But here we must make sure that th << 
1631          * reused before the folio_wake_bit() << 
1632          */                                   << 
1633         folio_get(folio);                     << 
1634         if (__folio_end_writeback(folio))     << 
1635                 folio_wake_bit(folio, PG_writ << 
1636         acct_reclaim_writeback(folio);        << 
1637         folio_put(folio);                     << 
1638 }                                                1256 }
1639 EXPORT_SYMBOL(folio_end_writeback);           !! 1257 EXPORT_SYMBOL_GPL(page_endio);
1640                                                  1258 
1641 /**                                              1259 /**
1642  * __folio_lock - Get a lock on the folio, as !! 1260  * __lock_page - get a lock on the page, assuming we need to sleep to get it
1643  * @folio: The folio to lock                  !! 1261  * @__page: the page to lock
1644  */                                              1262  */
1645 void __folio_lock(struct folio *folio)        !! 1263 void __lock_page(struct page *__page)
1646 {                                                1264 {
1647         folio_wait_bit_common(folio, PG_locke !! 1265         struct page *page = compound_head(__page);
1648                                 EXCLUSIVE);   !! 1266         wait_queue_head_t *q = page_waitqueue(page);
                                                   >> 1267         wait_on_page_bit_common(q, page, PG_locked, TASK_UNINTERRUPTIBLE, true);
1649 }                                                1268 }
1650 EXPORT_SYMBOL(__folio_lock);                  !! 1269 EXPORT_SYMBOL(__lock_page);
1651                                                  1270 
1652 int __folio_lock_killable(struct folio *folio !! 1271 int __lock_page_killable(struct page *__page)
1653 {                                                1272 {
1654         return folio_wait_bit_common(folio, P !! 1273         struct page *page = compound_head(__page);
1655                                         EXCLU !! 1274         wait_queue_head_t *q = page_waitqueue(page);
1656 }                                             !! 1275         return wait_on_page_bit_common(q, page, PG_locked, TASK_KILLABLE, true);
1657 EXPORT_SYMBOL_GPL(__folio_lock_killable);     << 
1658                                               << 
1659 static int __folio_lock_async(struct folio *f << 
1660 {                                             << 
1661         struct wait_queue_head *q = folio_wai << 
1662         int ret;                              << 
1663                                               << 
1664         wait->folio = folio;                  << 
1665         wait->bit_nr = PG_locked;             << 
1666                                               << 
1667         spin_lock_irq(&q->lock);              << 
1668         __add_wait_queue_entry_tail(q, &wait- << 
1669         folio_set_waiters(folio);             << 
1670         ret = !folio_trylock(folio);          << 
1671         /*                                    << 
1672          * If we were successful now, we know << 
1673          * waitqueue as we're still under the << 
1674          * safe to remove and return success, << 
1675          * isn't going to trigger.            << 
1676          */                                   << 
1677         if (!ret)                             << 
1678                 __remove_wait_queue(q, &wait- << 
1679         else                                  << 
1680                 ret = -EIOCBQUEUED;           << 
1681         spin_unlock_irq(&q->lock);            << 
1682         return ret;                           << 
1683 }                                                1276 }
                                                   >> 1277 EXPORT_SYMBOL_GPL(__lock_page_killable);
1684                                                  1278 
1685 /*                                               1279 /*
1686  * Return values:                                1280  * Return values:
1687  * 0 - folio is locked.                       !! 1281  * 1 - page is locked; mmap_sem is still held.
1688  * non-zero - folio is not locked.            !! 1282  * 0 - page is not locked.
1689  *     mmap_lock or per-VMA lock has been rel !! 1283  *     mmap_sem has been released (up_read()), unless flags had both
1690  *     vma_end_read()), unless flags had both !! 1284  *     FAULT_FLAG_ALLOW_RETRY and FAULT_FLAG_RETRY_NOWAIT set, in
1691  *     FAULT_FLAG_RETRY_NOWAIT set, in which  !! 1285  *     which case mmap_sem is still held.
1692  *                                            !! 1286  *
1693  * If neither ALLOW_RETRY nor KILLABLE are se !! 1287  * If neither ALLOW_RETRY nor KILLABLE are set, will always return 1
1694  * with the folio locked and the mmap_lock/pe !! 1288  * with the page locked and the mmap_sem unperturbed.
1695  */                                              1289  */
1696 vm_fault_t __folio_lock_or_retry(struct folio !! 1290 int __lock_page_or_retry(struct page *page, struct mm_struct *mm,
                                                   >> 1291                          unsigned int flags)
1697 {                                                1292 {
1698         unsigned int flags = vmf->flags;      !! 1293         if (flags & FAULT_FLAG_ALLOW_RETRY) {
1699                                               << 
1700         if (fault_flag_allow_retry_first(flag << 
1701                 /*                               1294                 /*
1702                  * CAUTION! In this case, mma !! 1295                  * CAUTION! In this case, mmap_sem is not released
1703                  * released even though retur !! 1296                  * even though return 0.
1704                  */                              1297                  */
1705                 if (flags & FAULT_FLAG_RETRY_    1298                 if (flags & FAULT_FLAG_RETRY_NOWAIT)
1706                         return VM_FAULT_RETRY !! 1299                         return 0;
1707                                                  1300 
1708                 release_fault_lock(vmf);      !! 1301                 up_read(&mm->mmap_sem);
1709                 if (flags & FAULT_FLAG_KILLAB    1302                 if (flags & FAULT_FLAG_KILLABLE)
1710                         folio_wait_locked_kil !! 1303                         wait_on_page_locked_killable(page);
1711                 else                             1304                 else
1712                         folio_wait_locked(fol !! 1305                         wait_on_page_locked(page);
1713                 return VM_FAULT_RETRY;        !! 1306                 return 0;
1714         }                                     << 
1715         if (flags & FAULT_FLAG_KILLABLE) {    << 
1716                 bool ret;                     << 
1717                                               << 
1718                 ret = __folio_lock_killable(f << 
1719                 if (ret) {                    << 
1720                         release_fault_lock(vm << 
1721                         return VM_FAULT_RETRY << 
1722                 }                             << 
1723         } else {                                 1307         } else {
1724                 __folio_lock(folio);          !! 1308                 if (flags & FAULT_FLAG_KILLABLE) {
1725         }                                     !! 1309                         int ret;
1726                                                  1310 
1727         return 0;                             !! 1311                         ret = __lock_page_killable(page);
                                                   >> 1312                         if (ret) {
                                                   >> 1313                                 up_read(&mm->mmap_sem);
                                                   >> 1314                                 return 0;
                                                   >> 1315                         }
                                                   >> 1316                 } else
                                                   >> 1317                         __lock_page(page);
                                                   >> 1318                 return 1;
                                                   >> 1319         }
1728 }                                                1320 }
1729                                                  1321 
1730 /**                                              1322 /**
1731  * page_cache_next_miss() - Find the next gap    1323  * page_cache_next_miss() - Find the next gap in the page cache.
1732  * @mapping: Mapping.                            1324  * @mapping: Mapping.
1733  * @index: Index.                                1325  * @index: Index.
1734  * @max_scan: Maximum range to search.           1326  * @max_scan: Maximum range to search.
1735  *                                               1327  *
1736  * Search the range [index, min(index + max_s    1328  * Search the range [index, min(index + max_scan - 1, ULONG_MAX)] for the
1737  * gap with the lowest index.                    1329  * gap with the lowest index.
1738  *                                               1330  *
1739  * This function may be called under the rcu_    1331  * This function may be called under the rcu_read_lock.  However, this will
1740  * not atomically search a snapshot of the ca    1332  * not atomically search a snapshot of the cache at a single point in time.
1741  * For example, if a gap is created at index     1333  * For example, if a gap is created at index 5, then subsequently a gap is
1742  * created at index 10, page_cache_next_miss     1334  * created at index 10, page_cache_next_miss covering both indices may
1743  * return 10 if called under the rcu_read_loc    1335  * return 10 if called under the rcu_read_lock.
1744  *                                               1336  *
1745  * Return: The index of the gap if found, oth    1337  * Return: The index of the gap if found, otherwise an index outside the
1746  * range specified (in which case 'return - i    1338  * range specified (in which case 'return - index >= max_scan' will be true).
1747  * In the rare case of index wrap-around, 0 w    1339  * In the rare case of index wrap-around, 0 will be returned.
1748  */                                              1340  */
1749 pgoff_t page_cache_next_miss(struct address_s    1341 pgoff_t page_cache_next_miss(struct address_space *mapping,
1750                              pgoff_t index, u    1342                              pgoff_t index, unsigned long max_scan)
1751 {                                                1343 {
1752         XA_STATE(xas, &mapping->i_pages, inde    1344         XA_STATE(xas, &mapping->i_pages, index);
1753                                                  1345 
1754         while (max_scan--) {                     1346         while (max_scan--) {
1755                 void *entry = xas_next(&xas);    1347                 void *entry = xas_next(&xas);
1756                 if (!entry || xa_is_value(ent    1348                 if (!entry || xa_is_value(entry))
1757                         return xas.xa_index;  !! 1349                         break;
1758                 if (xas.xa_index == 0)           1350                 if (xas.xa_index == 0)
1759                         return 0;             !! 1351                         break;
1760         }                                        1352         }
1761                                                  1353 
1762         return index + max_scan;              !! 1354         return xas.xa_index;
1763 }                                                1355 }
1764 EXPORT_SYMBOL(page_cache_next_miss);             1356 EXPORT_SYMBOL(page_cache_next_miss);
1765                                                  1357 
1766 /**                                              1358 /**
1767  * page_cache_prev_miss() - Find the previous !! 1359  * page_cache_prev_miss() - Find the next gap in the page cache.
1768  * @mapping: Mapping.                            1360  * @mapping: Mapping.
1769  * @index: Index.                                1361  * @index: Index.
1770  * @max_scan: Maximum range to search.           1362  * @max_scan: Maximum range to search.
1771  *                                               1363  *
1772  * Search the range [max(index - max_scan + 1    1364  * Search the range [max(index - max_scan + 1, 0), index] for the
1773  * gap with the highest index.                   1365  * gap with the highest index.
1774  *                                               1366  *
1775  * This function may be called under the rcu_    1367  * This function may be called under the rcu_read_lock.  However, this will
1776  * not atomically search a snapshot of the ca    1368  * not atomically search a snapshot of the cache at a single point in time.
1777  * For example, if a gap is created at index     1369  * For example, if a gap is created at index 10, then subsequently a gap is
1778  * created at index 5, page_cache_prev_miss()    1370  * created at index 5, page_cache_prev_miss() covering both indices may
1779  * return 5 if called under the rcu_read_lock    1371  * return 5 if called under the rcu_read_lock.
1780  *                                               1372  *
1781  * Return: The index of the gap if found, oth    1373  * Return: The index of the gap if found, otherwise an index outside the
1782  * range specified (in which case 'index - re    1374  * range specified (in which case 'index - return >= max_scan' will be true).
1783  * In the rare case of wrap-around, ULONG_MAX    1375  * In the rare case of wrap-around, ULONG_MAX will be returned.
1784  */                                              1376  */
1785 pgoff_t page_cache_prev_miss(struct address_s    1377 pgoff_t page_cache_prev_miss(struct address_space *mapping,
1786                              pgoff_t index, u    1378                              pgoff_t index, unsigned long max_scan)
1787 {                                                1379 {
1788         XA_STATE(xas, &mapping->i_pages, inde    1380         XA_STATE(xas, &mapping->i_pages, index);
1789                                                  1381 
1790         while (max_scan--) {                     1382         while (max_scan--) {
1791                 void *entry = xas_prev(&xas);    1383                 void *entry = xas_prev(&xas);
1792                 if (!entry || xa_is_value(ent    1384                 if (!entry || xa_is_value(entry))
1793                         break;                   1385                         break;
1794                 if (xas.xa_index == ULONG_MAX    1386                 if (xas.xa_index == ULONG_MAX)
1795                         break;                   1387                         break;
1796         }                                        1388         }
1797                                                  1389 
1798         return xas.xa_index;                     1390         return xas.xa_index;
1799 }                                                1391 }
1800 EXPORT_SYMBOL(page_cache_prev_miss);             1392 EXPORT_SYMBOL(page_cache_prev_miss);
1801                                                  1393 
1802 /*                                            !! 1394 /**
1803  * Lockless page cache protocol:              !! 1395  * find_get_entry - find and get a page cache entry
1804  * On the lookup side:                        << 
1805  * 1. Load the folio from i_pages             << 
1806  * 2. Increment the refcount if it's not zero << 
1807  * 3. If the folio is not found by xas_reload << 
1808  *                                            << 
1809  * On the removal side:                       << 
1810  * A. Freeze the page (by zeroing the refcoun << 
1811  * B. Remove the page from i_pages            << 
1812  * C. Return the page to the page allocator   << 
1813  *                                            << 
1814  * This means that any page may have its refe << 
1815  * increased by a speculative page cache (or  << 
1816  * be allocated by another user before the RC << 
1817  * Because the refcount temporarily acquired  << 
1818  * last refcount on the page, any page alloca << 
1819  * folio_put().                               << 
1820  */                                           << 
1821                                               << 
1822 /*                                            << 
1823  * filemap_get_entry - Get a page cache entry << 
1824  * @mapping: the address_space to search         1396  * @mapping: the address_space to search
1825  * @index: The page cache index.              !! 1397  * @offset: the page cache index
                                                   >> 1398  *
                                                   >> 1399  * Looks up the page cache slot at @mapping & @offset.  If there is a
                                                   >> 1400  * page cache page, it is returned with an increased refcount.
1826  *                                               1401  *
1827  * Looks up the page cache entry at @mapping  !! 1402  * If the slot holds a shadow entry of a previously evicted page, or a
1828  * it is returned with an increased refcount. !! 1403  * swap entry from shmem/tmpfs, it is returned.
1829  * of a previously evicted folio, or a swap e << 
1830  * it is returned without further action.     << 
1831  *                                               1404  *
1832  * Return: The folio, swap or shadow entry, % !! 1405  * Otherwise, %NULL is returned.
1833  */                                              1406  */
1834 void *filemap_get_entry(struct address_space  !! 1407 struct page *find_get_entry(struct address_space *mapping, pgoff_t offset)
1835 {                                                1408 {
1836         XA_STATE(xas, &mapping->i_pages, inde !! 1409         XA_STATE(xas, &mapping->i_pages, offset);
1837         struct folio *folio;                  !! 1410         struct page *head, *page;
1838                                                  1411 
1839         rcu_read_lock();                         1412         rcu_read_lock();
1840 repeat:                                          1413 repeat:
1841         xas_reset(&xas);                         1414         xas_reset(&xas);
1842         folio = xas_load(&xas);               !! 1415         page = xas_load(&xas);
1843         if (xas_retry(&xas, folio))           !! 1416         if (xas_retry(&xas, page))
1844                 goto repeat;                     1417                 goto repeat;
1845         /*                                       1418         /*
1846          * A shadow entry of a recently evict    1419          * A shadow entry of a recently evicted page, or a swap entry from
1847          * shmem/tmpfs.  Return it without at    1420          * shmem/tmpfs.  Return it without attempting to raise page count.
1848          */                                      1421          */
1849         if (!folio || xa_is_value(folio))     !! 1422         if (!page || xa_is_value(page))
1850                 goto out;                        1423                 goto out;
1851                                                  1424 
1852         if (!folio_try_get(folio))            !! 1425         head = compound_head(page);
                                                   >> 1426         if (!page_cache_get_speculative(head))
1853                 goto repeat;                     1427                 goto repeat;
1854                                                  1428 
1855         if (unlikely(folio != xas_reload(&xas !! 1429         /* The page was split under us? */
1856                 folio_put(folio);             !! 1430         if (compound_head(page) != head) {
                                                   >> 1431                 put_page(head);
                                                   >> 1432                 goto repeat;
                                                   >> 1433         }
                                                   >> 1434 
                                                   >> 1435         /*
                                                   >> 1436          * Has the page moved?
                                                   >> 1437          * This is part of the lockless pagecache protocol. See
                                                   >> 1438          * include/linux/pagemap.h for details.
                                                   >> 1439          */
                                                   >> 1440         if (unlikely(page != xas_reload(&xas))) {
                                                   >> 1441                 put_page(head);
1857                 goto repeat;                     1442                 goto repeat;
1858         }                                        1443         }
1859 out:                                             1444 out:
1860         rcu_read_unlock();                       1445         rcu_read_unlock();
1861                                                  1446 
1862         return folio;                         !! 1447         return page;
                                                   >> 1448 }
                                                   >> 1449 EXPORT_SYMBOL(find_get_entry);
                                                   >> 1450 
                                                   >> 1451 /**
                                                   >> 1452  * find_lock_entry - locate, pin and lock a page cache entry
                                                   >> 1453  * @mapping: the address_space to search
                                                   >> 1454  * @offset: the page cache index
                                                   >> 1455  *
                                                   >> 1456  * Looks up the page cache slot at @mapping & @offset.  If there is a
                                                   >> 1457  * page cache page, it is returned locked and with an increased
                                                   >> 1458  * refcount.
                                                   >> 1459  *
                                                   >> 1460  * If the slot holds a shadow entry of a previously evicted page, or a
                                                   >> 1461  * swap entry from shmem/tmpfs, it is returned.
                                                   >> 1462  *
                                                   >> 1463  * Otherwise, %NULL is returned.
                                                   >> 1464  *
                                                   >> 1465  * find_lock_entry() may sleep.
                                                   >> 1466  */
                                                   >> 1467 struct page *find_lock_entry(struct address_space *mapping, pgoff_t offset)
                                                   >> 1468 {
                                                   >> 1469         struct page *page;
                                                   >> 1470 
                                                   >> 1471 repeat:
                                                   >> 1472         page = find_get_entry(mapping, offset);
                                                   >> 1473         if (page && !xa_is_value(page)) {
                                                   >> 1474                 lock_page(page);
                                                   >> 1475                 /* Has the page been truncated? */
                                                   >> 1476                 if (unlikely(page_mapping(page) != mapping)) {
                                                   >> 1477                         unlock_page(page);
                                                   >> 1478                         put_page(page);
                                                   >> 1479                         goto repeat;
                                                   >> 1480                 }
                                                   >> 1481                 VM_BUG_ON_PAGE(page_to_pgoff(page) != offset, page);
                                                   >> 1482         }
                                                   >> 1483         return page;
1863 }                                                1484 }
                                                   >> 1485 EXPORT_SYMBOL(find_lock_entry);
1864                                                  1486 
1865 /**                                              1487 /**
1866  * __filemap_get_folio - Find and get a refer !! 1488  * pagecache_get_page - find and get a page reference
1867  * @mapping: The address_space to search.     !! 1489  * @mapping: the address_space to search
1868  * @index: The page index.                    !! 1490  * @offset: the page index
1869  * @fgp_flags: %FGP flags modify how the foli !! 1491  * @fgp_flags: PCG flags
1870  * @gfp: Memory allocation flags to use if %F !! 1492  * @gfp_mask: gfp mask to use for the page cache data page allocation
                                                   >> 1493  *
                                                   >> 1494  * Looks up the page cache slot at @mapping & @offset.
                                                   >> 1495  *
                                                   >> 1496  * PCG flags modify how the page is returned.
1871  *                                               1497  *
1872  * Looks up the page cache entry at @mapping  !! 1498  * @fgp_flags can be:
1873  *                                               1499  *
1874  * If %FGP_LOCK or %FGP_CREAT are specified t !! 1500  * - FGP_ACCESSED: the page will be marked accessed
1875  * if the %GFP flags specified for %FGP_CREAT !! 1501  * - FGP_LOCK: Page is return locked
                                                   >> 1502  * - FGP_CREAT: If page is not present then a new page is allocated using
                                                   >> 1503  *   @gfp_mask and added to the page cache and the VM's LRU
                                                   >> 1504  *   list. The page is returned locked and with an increased
                                                   >> 1505  *   refcount. Otherwise, NULL is returned.
1876  *                                               1506  *
1877  * If this function returns a folio, it is re !! 1507  * If FGP_LOCK or FGP_CREAT are specified then the function may sleep even
                                                   >> 1508  * if the GFP flags specified for FGP_CREAT are atomic.
1878  *                                               1509  *
1879  * Return: The found folio or an ERR_PTR() ot !! 1510  * If there is a page cache page, it is returned with an increased refcount.
1880  */                                              1511  */
1881 struct folio *__filemap_get_folio(struct addr !! 1512 struct page *pagecache_get_page(struct address_space *mapping, pgoff_t offset,
1882                 fgf_t fgp_flags, gfp_t gfp)   !! 1513         int fgp_flags, gfp_t gfp_mask)
1883 {                                                1514 {
1884         struct folio *folio;                  !! 1515         struct page *page;
1885                                                  1516 
1886 repeat:                                          1517 repeat:
1887         folio = filemap_get_entry(mapping, in !! 1518         page = find_get_entry(mapping, offset);
1888         if (xa_is_value(folio))               !! 1519         if (xa_is_value(page))
1889                 folio = NULL;                 !! 1520                 page = NULL;
1890         if (!folio)                           !! 1521         if (!page)
1891                 goto no_page;                    1522                 goto no_page;
1892                                                  1523 
1893         if (fgp_flags & FGP_LOCK) {              1524         if (fgp_flags & FGP_LOCK) {
1894                 if (fgp_flags & FGP_NOWAIT) {    1525                 if (fgp_flags & FGP_NOWAIT) {
1895                         if (!folio_trylock(fo !! 1526                         if (!trylock_page(page)) {
1896                                 folio_put(fol !! 1527                                 put_page(page);
1897                                 return ERR_PT !! 1528                                 return NULL;
1898                         }                        1529                         }
1899                 } else {                         1530                 } else {
1900                         folio_lock(folio);    !! 1531                         lock_page(page);
1901                 }                                1532                 }
1902                                                  1533 
1903                 /* Has the page been truncate    1534                 /* Has the page been truncated? */
1904                 if (unlikely(folio->mapping ! !! 1535                 if (unlikely(page->mapping != mapping)) {
1905                         folio_unlock(folio);  !! 1536                         unlock_page(page);
1906                         folio_put(folio);     !! 1537                         put_page(page);
1907                         goto repeat;             1538                         goto repeat;
1908                 }                                1539                 }
1909                 VM_BUG_ON_FOLIO(!folio_contai !! 1540                 VM_BUG_ON_PAGE(page->index != offset, page);
1910         }                                        1541         }
1911                                                  1542 
1912         if (fgp_flags & FGP_ACCESSED)         !! 1543         if (page && (fgp_flags & FGP_ACCESSED))
1913                 folio_mark_accessed(folio);   !! 1544                 mark_page_accessed(page);
1914         else if (fgp_flags & FGP_WRITE) {     << 
1915                 /* Clear idle flag for buffer << 
1916                 if (folio_test_idle(folio))   << 
1917                         folio_clear_idle(foli << 
1918         }                                     << 
1919                                                  1545 
1920         if (fgp_flags & FGP_STABLE)           << 
1921                 folio_wait_stable(folio);     << 
1922 no_page:                                         1546 no_page:
1923         if (!folio && (fgp_flags & FGP_CREAT) !! 1547         if (!page && (fgp_flags & FGP_CREAT)) {
1924                 unsigned int min_order = mapp << 
1925                 unsigned int order = max(min_ << 
1926                 int err;                         1548                 int err;
1927                 index = mapping_align_index(m !! 1549                 if ((fgp_flags & FGP_WRITE) && mapping_cap_account_dirty(mapping))
1928                                               !! 1550                         gfp_mask |= __GFP_WRITE;
1929                 if ((fgp_flags & FGP_WRITE) & << 
1930                         gfp |= __GFP_WRITE;   << 
1931                 if (fgp_flags & FGP_NOFS)        1551                 if (fgp_flags & FGP_NOFS)
1932                         gfp &= ~__GFP_FS;     !! 1552                         gfp_mask &= ~__GFP_FS;
1933                 if (fgp_flags & FGP_NOWAIT) { << 
1934                         gfp &= ~GFP_KERNEL;   << 
1935                         gfp |= GFP_NOWAIT | _ << 
1936                 }                             << 
1937                 if (WARN_ON_ONCE(!(fgp_flags  << 
1938                         fgp_flags |= FGP_LOCK << 
1939                                               << 
1940                 if (order > mapping_max_folio << 
1941                         order = mapping_max_f << 
1942                 /* If we're not aligned, allo << 
1943                 if (index & ((1UL << order) - << 
1944                         order = __ffs(index); << 
1945                                               << 
1946                 do {                          << 
1947                         gfp_t alloc_gfp = gfp << 
1948                                               << 
1949                         err = -ENOMEM;        << 
1950                         if (order > min_order << 
1951                                 alloc_gfp |=  << 
1952                         folio = filemap_alloc << 
1953                         if (!folio)           << 
1954                                 continue;     << 
1955                                               << 
1956                         /* Init accessed so a << 
1957                         if (fgp_flags & FGP_A << 
1958                                 __folio_set_r << 
1959                                               << 
1960                         err = filemap_add_fol << 
1961                         if (!err)             << 
1962                                 break;        << 
1963                         folio_put(folio);     << 
1964                         folio = NULL;         << 
1965                 } while (order-- > min_order) << 
1966                                                  1553 
1967                 if (err == -EEXIST)           !! 1554                 page = __page_cache_alloc(gfp_mask);
1968                         goto repeat;          !! 1555                 if (!page)
1969                 if (err)                      !! 1556                         return NULL;
1970                         return ERR_PTR(err);  << 
1971                 /*                            << 
1972                  * filemap_add_folio locks th << 
1973                  * we expect an unlocked page << 
1974                  */                           << 
1975                 if (folio && (fgp_flags & FGP << 
1976                         folio_unlock(folio);  << 
1977         }                                     << 
1978                                               << 
1979         if (!folio)                           << 
1980                 return ERR_PTR(-ENOENT);      << 
1981         return folio;                         << 
1982 }                                             << 
1983 EXPORT_SYMBOL(__filemap_get_folio);           << 
1984                                               << 
1985 static inline struct folio *find_get_entry(st << 
1986                 xa_mark_t mark)               << 
1987 {                                             << 
1988         struct folio *folio;                  << 
1989                                               << 
1990 retry:                                        << 
1991         if (mark == XA_PRESENT)               << 
1992                 folio = xas_find(xas, max);   << 
1993         else                                  << 
1994                 folio = xas_find_marked(xas,  << 
1995                                                  1557 
1996         if (xas_retry(xas, folio))            !! 1558                 if (WARN_ON_ONCE(!(fgp_flags & FGP_LOCK)))
1997                 goto retry;                   !! 1559                         fgp_flags |= FGP_LOCK;
1998         /*                                    << 
1999          * A shadow entry of a recently evict << 
2000          * entry from shmem/tmpfs or a DAX en << 
2001          * without attempting to raise page c << 
2002          */                                   << 
2003         if (!folio || xa_is_value(folio))     << 
2004                 return folio;                 << 
2005                                                  1560 
2006         if (!folio_try_get(folio))            !! 1561                 /* Init accessed so avoid atomic mark_page_accessed later */
2007                 goto reset;                   !! 1562                 if (fgp_flags & FGP_ACCESSED)
                                                   >> 1563                         __SetPageReferenced(page);
2008                                                  1564 
2009         if (unlikely(folio != xas_reload(xas) !! 1565                 err = add_to_page_cache_lru(page, mapping, offset, gfp_mask);
2010                 folio_put(folio);             !! 1566                 if (unlikely(err)) {
2011                 goto reset;                   !! 1567                         put_page(page);
                                                   >> 1568                         page = NULL;
                                                   >> 1569                         if (err == -EEXIST)
                                                   >> 1570                                 goto repeat;
                                                   >> 1571                 }
2012         }                                        1572         }
2013                                                  1573 
2014         return folio;                         !! 1574         return page;
2015 reset:                                        << 
2016         xas_reset(xas);                       << 
2017         goto retry;                           << 
2018 }                                                1575 }
                                                   >> 1576 EXPORT_SYMBOL(pagecache_get_page);
2019                                                  1577 
2020 /**                                              1578 /**
2021  * find_get_entries - gang pagecache lookup      1579  * find_get_entries - gang pagecache lookup
2022  * @mapping:    The address_space to search      1580  * @mapping:    The address_space to search
2023  * @start:      The starting page cache index    1581  * @start:      The starting page cache index
2024  * @end:        The final page index (inclusi !! 1582  * @nr_entries: The maximum number of entries
2025  * @fbatch:     Where the resulting entries a !! 1583  * @entries:    Where the resulting entries are placed
2026  * @indices:    The cache indices correspondi    1584  * @indices:    The cache indices corresponding to the entries in @entries
2027  *                                               1585  *
2028  * find_get_entries() will search for and ret !! 1586  * find_get_entries() will search for and return a group of up to
2029  * the mapping.  The entries are placed in @f !! 1587  * @nr_entries entries in the mapping.  The entries are placed at
2030  * takes a reference on any actual folios it  !! 1588  * @entries.  find_get_entries() takes a reference against any actual
                                                   >> 1589  * pages it returns.
                                                   >> 1590  *
                                                   >> 1591  * The search returns a group of mapping-contiguous page cache entries
                                                   >> 1592  * with ascending indexes.  There may be holes in the indices due to
                                                   >> 1593  * not-present pages.
2031  *                                               1594  *
2032  * The entries have ascending indexes.  The i !! 1595  * Any shadow entries of evicted pages, or swap entries from
2033  * due to not-present entries or large folios << 
2034  *                                            << 
2035  * Any shadow entries of evicted folios, or s << 
2036  * shmem/tmpfs, are included in the returned     1596  * shmem/tmpfs, are included in the returned array.
2037  *                                               1597  *
2038  * Return: The number of entries which were f !! 1598  * find_get_entries() returns the number of pages and shadow entries
                                                   >> 1599  * which were found.
2039  */                                              1600  */
2040 unsigned find_get_entries(struct address_spac !! 1601 unsigned find_get_entries(struct address_space *mapping,
2041                 pgoff_t end, struct folio_bat !! 1602                           pgoff_t start, unsigned int nr_entries,
                                                   >> 1603                           struct page **entries, pgoff_t *indices)
2042 {                                                1604 {
2043         XA_STATE(xas, &mapping->i_pages, *sta !! 1605         XA_STATE(xas, &mapping->i_pages, start);
2044         struct folio *folio;                  !! 1606         struct page *page;
2045                                               !! 1607         unsigned int ret = 0;
2046         rcu_read_lock();                      << 
2047         while ((folio = find_get_entry(&xas,  << 
2048                 indices[fbatch->nr] = xas.xa_ << 
2049                 if (!folio_batch_add(fbatch,  << 
2050                         break;                << 
2051         }                                     << 
2052                                               << 
2053         if (folio_batch_count(fbatch)) {      << 
2054                 unsigned long nr;             << 
2055                 int idx = folio_batch_count(f << 
2056                                               << 
2057                 folio = fbatch->folios[idx];  << 
2058                 if (!xa_is_value(folio))      << 
2059                         nr = folio_nr_pages(f << 
2060                 else                          << 
2061                         nr = 1 << xa_get_orde << 
2062                 *start = round_down(indices[i << 
2063         }                                     << 
2064         rcu_read_unlock();                    << 
2065                                               << 
2066         return folio_batch_count(fbatch);     << 
2067 }                                             << 
2068                                                  1608 
2069 /**                                           !! 1609         if (!nr_entries)
2070  * find_lock_entries - Find a batch of pageca !! 1610                 return 0;
2071  * @mapping:    The address_space to search.  << 
2072  * @start:      The starting page cache index << 
2073  * @end:        The final page index (inclusi << 
2074  * @fbatch:     Where the resulting entries a << 
2075  * @indices:    The cache indices of the entr << 
2076  *                                            << 
2077  * find_lock_entries() will return a batch of << 
2078  * Swap, shadow and DAX entries are included. << 
2079  * locked and with an incremented refcount.   << 
2080  * by somebody else or under writeback are sk << 
2081  * partially outside the range are not return << 
2082  *                                            << 
2083  * The entries have ascending indexes.  The i << 
2084  * due to not-present entries, large folios,  << 
2085  * locked or folios under writeback.          << 
2086  *                                            << 
2087  * Return: The number of entries which were f << 
2088  */                                           << 
2089 unsigned find_lock_entries(struct address_spa << 
2090                 pgoff_t end, struct folio_bat << 
2091 {                                             << 
2092         XA_STATE(xas, &mapping->i_pages, *sta << 
2093         struct folio *folio;                  << 
2094                                                  1611 
2095         rcu_read_lock();                         1612         rcu_read_lock();
2096         while ((folio = find_get_entry(&xas,  !! 1613         xas_for_each(&xas, page, ULONG_MAX) {
2097                 unsigned long base;           !! 1614                 struct page *head;
2098                 unsigned long nr;             !! 1615                 if (xas_retry(&xas, page))
2099                                               !! 1616                         continue;
2100                 if (!xa_is_value(folio)) {    !! 1617                 /*
2101                         nr = folio_nr_pages(f !! 1618                  * A shadow entry of a recently evicted page, a swap
2102                         base = folio->index;  !! 1619                  * entry from shmem/tmpfs or a DAX entry.  Return it
2103                         /* Omit large folio w !! 1620                  * without attempting to raise page count.
2104                         if (base < *start)    !! 1621                  */
2105                                 goto put;     !! 1622                 if (xa_is_value(page))
2106                         /* Omit large folio w !! 1623                         goto export;
2107                         if (base + nr - 1 > e !! 1624 
2108                                 goto put;     !! 1625                 head = compound_head(page);
2109                         if (!folio_trylock(fo !! 1626                 if (!page_cache_get_speculative(head))
2110                                 goto put;     !! 1627                         goto retry;
2111                         if (folio->mapping != << 
2112                             folio_test_writeb << 
2113                                 goto unlock;  << 
2114                         VM_BUG_ON_FOLIO(!foli << 
2115                                         folio << 
2116                 } else {                      << 
2117                         nr = 1 << xas_get_ord << 
2118                         base = xas.xa_index & << 
2119                         /* Omit order>0 value << 
2120                         if (base < *start)    << 
2121                                 continue;     << 
2122                         /* Omit order>0 value << 
2123                         if (base + nr - 1 > e << 
2124                                 break;        << 
2125                 }                             << 
2126                                                  1628 
2127                 /* Update start now so that l !! 1629                 /* The page was split under us? */
2128                 *start = base + nr;           !! 1630                 if (compound_head(page) != head)
2129                 indices[fbatch->nr] = xas.xa_ !! 1631                         goto put_page;
2130                 if (!folio_batch_add(fbatch,  !! 1632 
                                                   >> 1633                 /* Has the page moved? */
                                                   >> 1634                 if (unlikely(page != xas_reload(&xas)))
                                                   >> 1635                         goto put_page;
                                                   >> 1636 
                                                   >> 1637 export:
                                                   >> 1638                 indices[ret] = xas.xa_index;
                                                   >> 1639                 entries[ret] = page;
                                                   >> 1640                 if (++ret == nr_entries)
2131                         break;                   1641                         break;
2132                 continue;                        1642                 continue;
2133 unlock:                                       !! 1643 put_page:
2134                 folio_unlock(folio);          !! 1644                 put_page(head);
2135 put:                                          !! 1645 retry:
2136                 folio_put(folio);             !! 1646                 xas_reset(&xas);
2137         }                                        1647         }
2138         rcu_read_unlock();                       1648         rcu_read_unlock();
2139                                               !! 1649         return ret;
2140         return folio_batch_count(fbatch);     << 
2141 }                                             << 
2142                                               << 
2143 /**                                           << 
2144  * filemap_get_folios - Get a batch of folios << 
2145  * @mapping:    The address_space to search   << 
2146  * @start:      The starting page index       << 
2147  * @end:        The final page index (inclusi << 
2148  * @fbatch:     The batch to fill.            << 
2149  *                                            << 
2150  * Search for and return a batch of folios in << 
2151  * index @start and up to index @end (inclusi << 
2152  * in @fbatch with an elevated reference coun << 
2153  *                                            << 
2154  * Return: The number of folios which were fo << 
2155  * We also update @start to index the next fo << 
2156  */                                           << 
2157 unsigned filemap_get_folios(struct address_sp << 
2158                 pgoff_t end, struct folio_bat << 
2159 {                                             << 
2160         return filemap_get_folios_tag(mapping << 
2161 }                                                1650 }
2162 EXPORT_SYMBOL(filemap_get_folios);            << 
2163                                                  1651 
2164 /**                                              1652 /**
2165  * filemap_get_folios_contig - Get a batch of !! 1653  * find_get_pages_range - gang pagecache lookup
2166  * @mapping:    The address_space to search      1654  * @mapping:    The address_space to search
2167  * @start:      The starting page index          1655  * @start:      The starting page index
2168  * @end:        The final page index (inclusi    1656  * @end:        The final page index (inclusive)
2169  * @fbatch:     The batch to fill             !! 1657  * @nr_pages:   The maximum number of pages
                                                   >> 1658  * @pages:      Where the resulting pages are placed
2170  *                                               1659  *
2171  * filemap_get_folios_contig() works exactly  !! 1660  * find_get_pages_range() will search for and return a group of up to @nr_pages
2172  * except the returned folios are guaranteed  !! 1661  * pages in the mapping starting at index @start and up to index @end
2173  * not return all contiguous folios if the ba !! 1662  * (inclusive).  The pages are placed at @pages.  find_get_pages_range() takes
2174  *                                            !! 1663  * a reference against the returned pages.
2175  * Return: The number of folios found.        !! 1664  *
2176  * Also update @start to be positioned for tr !! 1665  * The search returns a group of mapping-contiguous pages with ascending
2177  */                                           !! 1666  * indexes.  There may be holes in the indices due to not-present pages.
2178                                               !! 1667  * We also update @start to index the next page for the traversal.
2179 unsigned filemap_get_folios_contig(struct add !! 1668  *
2180                 pgoff_t *start, pgoff_t end,  !! 1669  * find_get_pages_range() returns the number of pages which were found. If this
                                                   >> 1670  * number is smaller than @nr_pages, the end of specified range has been
                                                   >> 1671  * reached.
                                                   >> 1672  */
                                                   >> 1673 unsigned find_get_pages_range(struct address_space *mapping, pgoff_t *start,
                                                   >> 1674                               pgoff_t end, unsigned int nr_pages,
                                                   >> 1675                               struct page **pages)
2181 {                                                1676 {
2182         XA_STATE(xas, &mapping->i_pages, *sta    1677         XA_STATE(xas, &mapping->i_pages, *start);
2183         unsigned long nr;                     !! 1678         struct page *page;
2184         struct folio *folio;                  !! 1679         unsigned ret = 0;
2185                                                  1680 
2186         rcu_read_lock();                      !! 1681         if (unlikely(!nr_pages))
                                                   >> 1682                 return 0;
2187                                                  1683 
2188         for (folio = xas_load(&xas); folio && !! 1684         rcu_read_lock();
2189                         folio = xas_next(&xas !! 1685         xas_for_each(&xas, page, end) {
2190                 if (xas_retry(&xas, folio))   !! 1686                 struct page *head;
                                                   >> 1687                 if (xas_retry(&xas, page))
                                                   >> 1688                         continue;
                                                   >> 1689                 /* Skip over shadow, swap and DAX entries */
                                                   >> 1690                 if (xa_is_value(page))
2191                         continue;                1691                         continue;
2192                 /*                            << 
2193                  * If the entry has been swap << 
2194                  * No current caller is looki << 
2195                  */                           << 
2196                 if (xa_is_value(folio))       << 
2197                         goto update_start;    << 
2198                                               << 
2199                 /* If we landed in the middle << 
2200                 if (xa_is_sibling(folio))     << 
2201                         goto update_start;    << 
2202                                                  1692 
2203                 if (!folio_try_get(folio))    !! 1693                 head = compound_head(page);
                                                   >> 1694                 if (!page_cache_get_speculative(head))
2204                         goto retry;              1695                         goto retry;
2205                                                  1696 
2206                 if (unlikely(folio != xas_rel !! 1697                 /* The page was split under us? */
2207                         goto put_folio;       !! 1698                 if (compound_head(page) != head)
2208                                               !! 1699                         goto put_page;
2209                 if (!folio_batch_add(fbatch,  !! 1700 
2210                         nr = folio_nr_pages(f !! 1701                 /* Has the page moved? */
2211                         *start = folio->index !! 1702                 if (unlikely(page != xas_reload(&xas)))
                                                   >> 1703                         goto put_page;
                                                   >> 1704 
                                                   >> 1705                 pages[ret] = page;
                                                   >> 1706                 if (++ret == nr_pages) {
                                                   >> 1707                         *start = page->index + 1;
2212                         goto out;                1708                         goto out;
2213                 }                                1709                 }
2214                 continue;                        1710                 continue;
2215 put_folio:                                    !! 1711 put_page:
2216                 folio_put(folio);             !! 1712                 put_page(head);
2217                                               << 
2218 retry:                                           1713 retry:
2219                 xas_reset(&xas);                 1714                 xas_reset(&xas);
2220         }                                        1715         }
2221                                                  1716 
2222 update_start:                                 << 
2223         nr = folio_batch_count(fbatch);       << 
2224                                               << 
2225         if (nr) {                             << 
2226                 folio = fbatch->folios[nr - 1 << 
2227                 *start = folio_next_index(fol << 
2228         }                                     << 
2229 out:                                          << 
2230         rcu_read_unlock();                    << 
2231         return folio_batch_count(fbatch);     << 
2232 }                                             << 
2233 EXPORT_SYMBOL(filemap_get_folios_contig);     << 
2234                                               << 
2235 /**                                           << 
2236  * filemap_get_folios_tag - Get a batch of fo << 
2237  * @mapping:    The address_space to search   << 
2238  * @start:      The starting page index       << 
2239  * @end:        The final page index (inclusi << 
2240  * @tag:        The tag index                 << 
2241  * @fbatch:     The batch to fill             << 
2242  *                                            << 
2243  * The first folio may start before @start; i << 
2244  * @start.  The final folio may extend beyond << 
2245  * contain @end.  The folios have ascending i << 
2246  * between the folios if there are indices wh << 
2247  * page cache.  If folios are added to or rem << 
2248  * while this is running, they may or may not << 
2249  * Only returns folios that are tagged with @ << 
2250  *                                            << 
2251  * Return: The number of folios found.        << 
2252  * Also update @start to index the next folio << 
2253  */                                           << 
2254 unsigned filemap_get_folios_tag(struct addres << 
2255                         pgoff_t end, xa_mark_ << 
2256 {                                             << 
2257         XA_STATE(xas, &mapping->i_pages, *sta << 
2258         struct folio *folio;                  << 
2259                                               << 
2260         rcu_read_lock();                      << 
2261         while ((folio = find_get_entry(&xas,  << 
2262                 /*                            << 
2263                  * Shadow entries should neve << 
2264                  * is lockless so there is a  << 
2265                  * a page we saw tagged. Skip << 
2266                  */                           << 
2267                 if (xa_is_value(folio))       << 
2268                         continue;             << 
2269                 if (!folio_batch_add(fbatch,  << 
2270                         unsigned long nr = fo << 
2271                         *start = folio->index << 
2272                         goto out;             << 
2273                 }                             << 
2274         }                                     << 
2275         /*                                       1717         /*
2276          * We come here when there is no page    1718          * We come here when there is no page beyond @end. We take care to not
2277          * overflow the index @start as it co    1719          * overflow the index @start as it confuses some of the callers. This
2278          * breaks the iteration when there is    1720          * breaks the iteration when there is a page at index -1 but that is
2279          * already broke anyway.              !! 1721          * already broken anyway.
2280          */                                      1722          */
2281         if (end == (pgoff_t)-1)                  1723         if (end == (pgoff_t)-1)
2282                 *start = (pgoff_t)-1;            1724                 *start = (pgoff_t)-1;
2283         else                                     1725         else
2284                 *start = end + 1;                1726                 *start = end + 1;
2285 out:                                             1727 out:
2286         rcu_read_unlock();                       1728         rcu_read_unlock();
2287                                                  1729 
2288         return folio_batch_count(fbatch);     !! 1730         return ret;
2289 }                                                1731 }
2290 EXPORT_SYMBOL(filemap_get_folios_tag);        << 
2291                                                  1732 
2292 /*                                            !! 1733 /**
2293  * CD/DVDs are error prone. When a medium err !! 1734  * find_get_pages_contig - gang contiguous pagecache lookup
2294  * a _large_ part of the i/o request. Imagine !! 1735  * @mapping:    The address_space to search
2295  *                                            !! 1736  * @index:      The starting page index
2296  *      ---R_________________________________ !! 1737  * @nr_pages:   The maximum number of pages
2297  *         ^ reading here                     !! 1738  * @pages:      Where the resulting pages are placed
2298  *                                            << 
2299  * read(R) => miss => readahead(R...B) => med << 
2300  * => failing the whole request => read(R) => << 
2301  * readahead(R+1...B+1) => bang => read(R+2)  << 
2302  * readahead(R+3...B+2) => bang => read(R+3)  << 
2303  * readahead(R+4...B+3) => bang => read(R+4)  << 
2304  *                                               1739  *
2305  * It is going insane. Fix it by quickly scal !! 1740  * find_get_pages_contig() works exactly like find_get_pages(), except
2306  */                                           !! 1741  * that the returned number of pages are guaranteed to be contiguous.
2307 static void shrink_readahead_size_eio(struct  << 
2308 {                                             << 
2309         ra->ra_pages /= 4;                    << 
2310 }                                             << 
2311                                               << 
2312 /*                                            << 
2313  * filemap_get_read_batch - Get a batch of fo << 
2314  *                                               1742  *
2315  * Get a batch of folios which represent a co !! 1743  * find_get_pages_contig() returns the number of pages which were found.
2316  * the file.  No exceptional entries will be  << 
2317  * the middle of a folio, the entire folio wi << 
2318  * folio in the batch may have the readahead  << 
2319  * clear so that the caller can take the appr << 
2320  */                                              1744  */
2321 static void filemap_get_read_batch(struct add !! 1745 unsigned find_get_pages_contig(struct address_space *mapping, pgoff_t index,
2322                 pgoff_t index, pgoff_t max, s !! 1746                                unsigned int nr_pages, struct page **pages)
2323 {                                                1747 {
2324         XA_STATE(xas, &mapping->i_pages, inde    1748         XA_STATE(xas, &mapping->i_pages, index);
2325         struct folio *folio;                  !! 1749         struct page *page;
                                                   >> 1750         unsigned int ret = 0;
                                                   >> 1751 
                                                   >> 1752         if (unlikely(!nr_pages))
                                                   >> 1753                 return 0;
2326                                                  1754 
2327         rcu_read_lock();                         1755         rcu_read_lock();
2328         for (folio = xas_load(&xas); folio; f !! 1756         for (page = xas_load(&xas); page; page = xas_next(&xas)) {
2329                 if (xas_retry(&xas, folio))   !! 1757                 struct page *head;
                                                   >> 1758                 if (xas_retry(&xas, page))
2330                         continue;                1759                         continue;
2331                 if (xas.xa_index > max || xa_ !! 1760                 /*
2332                         break;                !! 1761                  * If the entry has been swapped out, we can stop looking.
2333                 if (xa_is_sibling(folio))     !! 1762                  * No current caller is looking for DAX entries.
                                                   >> 1763                  */
                                                   >> 1764                 if (xa_is_value(page))
2334                         break;                   1765                         break;
2335                 if (!folio_try_get(folio))    !! 1766 
                                                   >> 1767                 head = compound_head(page);
                                                   >> 1768                 if (!page_cache_get_speculative(head))
2336                         goto retry;              1769                         goto retry;
2337                                                  1770 
2338                 if (unlikely(folio != xas_rel !! 1771                 /* The page was split under us? */
2339                         goto put_folio;       !! 1772                 if (compound_head(page) != head)
                                                   >> 1773                         goto put_page;
2340                                                  1774 
2341                 if (!folio_batch_add(fbatch,  !! 1775                 /* Has the page moved? */
2342                         break;                !! 1776                 if (unlikely(page != xas_reload(&xas)))
2343                 if (!folio_test_uptodate(foli !! 1777                         goto put_page;
                                                   >> 1778 
                                                   >> 1779                 /*
                                                   >> 1780                  * must check mapping and index after taking the ref.
                                                   >> 1781                  * otherwise we can get both false positives and false
                                                   >> 1782                  * negatives, which is just confusing to the caller.
                                                   >> 1783                  */
                                                   >> 1784                 if (!page->mapping || page_to_pgoff(page) != xas.xa_index) {
                                                   >> 1785                         put_page(page);
2344                         break;                   1786                         break;
2345                 if (folio_test_readahead(foli !! 1787                 }
                                                   >> 1788 
                                                   >> 1789                 pages[ret] = page;
                                                   >> 1790                 if (++ret == nr_pages)
2346                         break;                   1791                         break;
2347                 xas_advance(&xas, folio_next_ << 
2348                 continue;                        1792                 continue;
2349 put_folio:                                    !! 1793 put_page:
2350                 folio_put(folio);             !! 1794                 put_page(head);
2351 retry:                                           1795 retry:
2352                 xas_reset(&xas);                 1796                 xas_reset(&xas);
2353         }                                        1797         }
2354         rcu_read_unlock();                       1798         rcu_read_unlock();
                                                   >> 1799         return ret;
2355 }                                                1800 }
                                                   >> 1801 EXPORT_SYMBOL(find_get_pages_contig);
2356                                                  1802 
2357 static int filemap_read_folio(struct file *fi !! 1803 /**
2358                 struct folio *folio)          !! 1804  * find_get_pages_range_tag - find and return pages in given range matching @tag
                                                   >> 1805  * @mapping:    the address_space to search
                                                   >> 1806  * @index:      the starting page index
                                                   >> 1807  * @end:        The final page index (inclusive)
                                                   >> 1808  * @tag:        the tag index
                                                   >> 1809  * @nr_pages:   the maximum number of pages
                                                   >> 1810  * @pages:      where the resulting pages are placed
                                                   >> 1811  *
                                                   >> 1812  * Like find_get_pages, except we only return pages which are tagged with
                                                   >> 1813  * @tag.   We update @index to index the next page for the traversal.
                                                   >> 1814  */
                                                   >> 1815 unsigned find_get_pages_range_tag(struct address_space *mapping, pgoff_t *index,
                                                   >> 1816                         pgoff_t end, xa_mark_t tag, unsigned int nr_pages,
                                                   >> 1817                         struct page **pages)
2359 {                                                1818 {
2360         bool workingset = folio_test_workings !! 1819         XA_STATE(xas, &mapping->i_pages, *index);
2361         unsigned long pflags;                 !! 1820         struct page *page;
2362         int error;                            !! 1821         unsigned ret = 0;
2363                                               << 
2364         /* Start the actual read. The read wi << 
2365         if (unlikely(workingset))             << 
2366                 psi_memstall_enter(&pflags);  << 
2367         error = filler(file, folio);          << 
2368         if (unlikely(workingset))             << 
2369                 psi_memstall_leave(&pflags);  << 
2370         if (error)                            << 
2371                 return error;                 << 
2372                                                  1822 
2373         error = folio_wait_locked_killable(fo !! 1823         if (unlikely(!nr_pages))
2374         if (error)                            << 
2375                 return error;                 << 
2376         if (folio_test_uptodate(folio))       << 
2377                 return 0;                        1824                 return 0;
2378         if (file)                             << 
2379                 shrink_readahead_size_eio(&fi << 
2380         return -EIO;                          << 
2381 }                                             << 
2382                                               << 
2383 static bool filemap_range_uptodate(struct add << 
2384                 loff_t pos, size_t count, str << 
2385                 bool need_uptodate)           << 
2386 {                                             << 
2387         if (folio_test_uptodate(folio))       << 
2388                 return true;                  << 
2389         /* pipes can't handle partially uptod << 
2390         if (need_uptodate)                    << 
2391                 return false;                 << 
2392         if (!mapping->a_ops->is_partially_upt << 
2393                 return false;                 << 
2394         if (mapping->host->i_blkbits >= folio << 
2395                 return false;                 << 
2396                                                  1825 
2397         if (folio_pos(folio) > pos) {         !! 1826         rcu_read_lock();
2398                 count -= folio_pos(folio) - p !! 1827         xas_for_each_marked(&xas, page, end, tag) {
2399                 pos = 0;                      !! 1828                 struct page *head;
2400         } else {                              !! 1829                 if (xas_retry(&xas, page))
2401                 pos -= folio_pos(folio);      !! 1830                         continue;
2402         }                                     !! 1831                 /*
2403                                               !! 1832                  * Shadow entries should never be tagged, but this iteration
2404         return mapping->a_ops->is_partially_u !! 1833                  * is lockless so there is a window for page reclaim to evict
2405 }                                             !! 1834                  * a page we saw tagged.  Skip over it.
2406                                               !! 1835                  */
2407 static int filemap_update_page(struct kiocb * !! 1836                 if (xa_is_value(page))
2408                 struct address_space *mapping !! 1837                         continue;
2409                 struct folio *folio, bool nee << 
2410 {                                             << 
2411         int error;                            << 
2412                                                  1838 
2413         if (iocb->ki_flags & IOCB_NOWAIT) {   !! 1839                 head = compound_head(page);
2414                 if (!filemap_invalidate_trylo !! 1840                 if (!page_cache_get_speculative(head))
2415                         return -EAGAIN;       !! 1841                         goto retry;
2416         } else {                              << 
2417                 filemap_invalidate_lock_share << 
2418         }                                     << 
2419                                                  1842 
2420         if (!folio_trylock(folio)) {          !! 1843                 /* The page was split under us? */
2421                 error = -EAGAIN;              !! 1844                 if (compound_head(page) != head)
2422                 if (iocb->ki_flags & (IOCB_NO !! 1845                         goto put_page;
2423                         goto unlock_mapping;  !! 1846 
2424                 if (!(iocb->ki_flags & IOCB_W !! 1847                 /* Has the page moved? */
2425                         filemap_invalidate_un !! 1848                 if (unlikely(page != xas_reload(&xas)))
2426                         /*                    !! 1849                         goto put_page;
2427                          * This is where we u !! 1850 
2428                          * previously submitt !! 1851                 pages[ret] = page;
2429                          */                   !! 1852                 if (++ret == nr_pages) {
2430                         folio_put_wait_locked !! 1853                         *index = page->index + 1;
2431                         return AOP_TRUNCATED_ !! 1854                         goto out;
2432                 }                                1855                 }
2433                 error = __folio_lock_async(fo !! 1856                 continue;
2434                 if (error)                    !! 1857 put_page:
2435                         goto unlock_mapping;  !! 1858                 put_page(head);
                                                   >> 1859 retry:
                                                   >> 1860                 xas_reset(&xas);
2436         }                                        1861         }
2437                                                  1862 
2438         error = AOP_TRUNCATED_PAGE;           << 
2439         if (!folio->mapping)                  << 
2440                 goto unlock;                  << 
2441                                               << 
2442         error = 0;                            << 
2443         if (filemap_range_uptodate(mapping, i << 
2444                                    need_uptod << 
2445                 goto unlock;                  << 
2446                                               << 
2447         error = -EAGAIN;                      << 
2448         if (iocb->ki_flags & (IOCB_NOIO | IOC << 
2449                 goto unlock;                  << 
2450                                               << 
2451         error = filemap_read_folio(iocb->ki_f << 
2452                         folio);               << 
2453         goto unlock_mapping;                  << 
2454 unlock:                                       << 
2455         folio_unlock(folio);                  << 
2456 unlock_mapping:                               << 
2457         filemap_invalidate_unlock_shared(mapp << 
2458         if (error == AOP_TRUNCATED_PAGE)      << 
2459                 folio_put(folio);             << 
2460         return error;                         << 
2461 }                                             << 
2462                                               << 
2463 static int filemap_create_folio(struct file * << 
2464                 struct address_space *mapping << 
2465                 struct folio_batch *fbatch)   << 
2466 {                                             << 
2467         struct folio *folio;                  << 
2468         int error;                            << 
2469         unsigned int min_order = mapping_min_ << 
2470         pgoff_t index;                        << 
2471                                               << 
2472         folio = filemap_alloc_folio(mapping_g << 
2473         if (!folio)                           << 
2474                 return -ENOMEM;               << 
2475                                               << 
2476         /*                                       1863         /*
2477          * Protect against truncate / hole pu !! 1864          * We come here when we got to @end. We take care to not overflow the
2478          * here assures we cannot instantiate !! 1865          * index @index as it confuses some of the callers. This breaks the
2479          * pagecache folios after evicting pa !! 1866          * iteration when there is a page at index -1 but that is already
2480          * and before actually freeing blocks !! 1867          * broken anyway.
2481          * release invalidate_lock after inse << 
2482          * the page cache as the locked folio << 
2483          * synchronize with hole punching. Bu << 
2484          * such as filemap_update_page() fill << 
2485          * pages or ->readahead() that need t << 
2486          * while mapping blocks for IO so let << 
2487          * well to keep locking rules simple. << 
2488          */                                      1868          */
2489         filemap_invalidate_lock_shared(mappin !! 1869         if (end == (pgoff_t)-1)
2490         index = (pos >> (PAGE_SHIFT + min_ord !! 1870                 *index = (pgoff_t)-1;
2491         error = filemap_add_folio(mapping, fo !! 1871         else
2492                         mapping_gfp_constrain !! 1872                 *index = end + 1;
2493         if (error == -EEXIST)                 !! 1873 out:
2494                 error = AOP_TRUNCATED_PAGE;   !! 1874         rcu_read_unlock();
2495         if (error)                            << 
2496                 goto error;                   << 
2497                                               << 
2498         error = filemap_read_folio(file, mapp << 
2499         if (error)                            << 
2500                 goto error;                   << 
2501                                                  1875 
2502         filemap_invalidate_unlock_shared(mapp !! 1876         return ret;
2503         folio_batch_add(fbatch, folio);       << 
2504         return 0;                             << 
2505 error:                                        << 
2506         filemap_invalidate_unlock_shared(mapp << 
2507         folio_put(folio);                     << 
2508         return error;                         << 
2509 }                                                1877 }
                                                   >> 1878 EXPORT_SYMBOL(find_get_pages_range_tag);
2510                                                  1879 
2511 static int filemap_readahead(struct kiocb *io !! 1880 /**
2512                 struct address_space *mapping !! 1881  * find_get_entries_tag - find and return entries that match @tag
2513                 pgoff_t last_index)           !! 1882  * @mapping:    the address_space to search
                                                   >> 1883  * @start:      the starting page cache index
                                                   >> 1884  * @tag:        the tag index
                                                   >> 1885  * @nr_entries: the maximum number of entries
                                                   >> 1886  * @entries:    where the resulting entries are placed
                                                   >> 1887  * @indices:    the cache indices corresponding to the entries in @entries
                                                   >> 1888  *
                                                   >> 1889  * Like find_get_entries, except we only return entries which are tagged with
                                                   >> 1890  * @tag.
                                                   >> 1891  */
                                                   >> 1892 unsigned find_get_entries_tag(struct address_space *mapping, pgoff_t start,
                                                   >> 1893                         xa_mark_t tag, unsigned int nr_entries,
                                                   >> 1894                         struct page **entries, pgoff_t *indices)
2514 {                                                1895 {
2515         DEFINE_READAHEAD(ractl, file, &file-> !! 1896         XA_STATE(xas, &mapping->i_pages, start);
2516                                               !! 1897         struct page *page;
2517         if (iocb->ki_flags & IOCB_NOIO)       !! 1898         unsigned int ret = 0;
2518                 return -EAGAIN;               << 
2519         page_cache_async_ra(&ractl, folio, la << 
2520         return 0;                             << 
2521 }                                             << 
2522                                                  1899 
2523 static int filemap_get_pages(struct kiocb *io !! 1900         if (!nr_entries)
2524                 struct folio_batch *fbatch, b !! 1901                 return 0;
2525 {                                             << 
2526         struct file *filp = iocb->ki_filp;    << 
2527         struct address_space *mapping = filp- << 
2528         struct file_ra_state *ra = &filp->f_r << 
2529         pgoff_t index = iocb->ki_pos >> PAGE_ << 
2530         pgoff_t last_index;                   << 
2531         struct folio *folio;                  << 
2532         unsigned int flags;                   << 
2533         int err = 0;                          << 
2534                                                  1902 
2535         /* "last_index" is the index of the p !! 1903         rcu_read_lock();
2536         last_index = DIV_ROUND_UP(iocb->ki_po !! 1904         xas_for_each_marked(&xas, page, ULONG_MAX, tag) {
2537 retry:                                        !! 1905                 struct page *head;
2538         if (fatal_signal_pending(current))    !! 1906                 if (xas_retry(&xas, page))
2539                 return -EINTR;                !! 1907                         continue;
                                                   >> 1908                 /*
                                                   >> 1909                  * A shadow entry of a recently evicted page, a swap
                                                   >> 1910                  * entry from shmem/tmpfs or a DAX entry.  Return it
                                                   >> 1911                  * without attempting to raise page count.
                                                   >> 1912                  */
                                                   >> 1913                 if (xa_is_value(page))
                                                   >> 1914                         goto export;
2540                                                  1915 
2541         filemap_get_read_batch(mapping, index !! 1916                 head = compound_head(page);
2542         if (!folio_batch_count(fbatch)) {     !! 1917                 if (!page_cache_get_speculative(head))
2543                 if (iocb->ki_flags & IOCB_NOI << 
2544                         return -EAGAIN;       << 
2545                 if (iocb->ki_flags & IOCB_NOW << 
2546                         flags = memalloc_noio << 
2547                 page_cache_sync_readahead(map << 
2548                                 last_index -  << 
2549                 if (iocb->ki_flags & IOCB_NOW << 
2550                         memalloc_noio_restore << 
2551                 filemap_get_read_batch(mappin << 
2552         }                                     << 
2553         if (!folio_batch_count(fbatch)) {     << 
2554                 if (iocb->ki_flags & (IOCB_NO << 
2555                         return -EAGAIN;       << 
2556                 err = filemap_create_folio(fi << 
2557                 if (err == AOP_TRUNCATED_PAGE << 
2558                         goto retry;              1918                         goto retry;
2559                 return err;                   << 
2560         }                                     << 
2561                                                  1919 
2562         folio = fbatch->folios[folio_batch_co !! 1920                 /* The page was split under us? */
2563         if (folio_test_readahead(folio)) {    !! 1921                 if (compound_head(page) != head)
2564                 err = filemap_readahead(iocb, !! 1922                         goto put_page;
2565                 if (err)                      !! 1923 
2566                         goto err;             !! 1924                 /* Has the page moved? */
2567         }                                     !! 1925                 if (unlikely(page != xas_reload(&xas)))
2568         if (!folio_test_uptodate(folio)) {    !! 1926                         goto put_page;
2569                 if ((iocb->ki_flags & IOCB_WA !! 1927 
2570                     folio_batch_count(fbatch) !! 1928 export:
2571                         iocb->ki_flags |= IOC !! 1929                 indices[ret] = xas.xa_index;
2572                 err = filemap_update_page(ioc !! 1930                 entries[ret] = page;
2573                                           nee !! 1931                 if (++ret == nr_entries)
2574                 if (err)                      !! 1932                         break;
2575                         goto err;             !! 1933                 continue;
                                                   >> 1934 put_page:
                                                   >> 1935                 put_page(head);
                                                   >> 1936 retry:
                                                   >> 1937                 xas_reset(&xas);
2576         }                                        1938         }
2577                                               !! 1939         rcu_read_unlock();
2578         trace_mm_filemap_get_pages(mapping, i !! 1940         return ret;
2579         return 0;                             << 
2580 err:                                          << 
2581         if (err < 0)                          << 
2582                 folio_put(folio);             << 
2583         if (likely(--fbatch->nr))             << 
2584                 return 0;                     << 
2585         if (err == AOP_TRUNCATED_PAGE)        << 
2586                 goto retry;                   << 
2587         return err;                           << 
2588 }                                                1941 }
                                                   >> 1942 EXPORT_SYMBOL(find_get_entries_tag);
2589                                                  1943 
2590 static inline bool pos_same_folio(loff_t pos1 !! 1944 /*
                                                   >> 1945  * CD/DVDs are error prone. When a medium error occurs, the driver may fail
                                                   >> 1946  * a _large_ part of the i/o request. Imagine the worst scenario:
                                                   >> 1947  *
                                                   >> 1948  *      ---R__________________________________________B__________
                                                   >> 1949  *         ^ reading here                             ^ bad block(assume 4k)
                                                   >> 1950  *
                                                   >> 1951  * read(R) => miss => readahead(R...B) => media error => frustrating retries
                                                   >> 1952  * => failing the whole request => read(R) => read(R+1) =>
                                                   >> 1953  * readahead(R+1...B+1) => bang => read(R+2) => read(R+3) =>
                                                   >> 1954  * readahead(R+3...B+2) => bang => read(R+3) => read(R+4) =>
                                                   >> 1955  * readahead(R+4...B+3) => bang => read(R+4) => read(R+5) => ......
                                                   >> 1956  *
                                                   >> 1957  * It is going insane. Fix it by quickly scaling down the readahead size.
                                                   >> 1958  */
                                                   >> 1959 static void shrink_readahead_size_eio(struct file *filp,
                                                   >> 1960                                         struct file_ra_state *ra)
2591 {                                                1961 {
2592         unsigned int shift = folio_shift(foli !! 1962         ra->ra_pages /= 4;
2593                                               << 
2594         return (pos1 >> shift == pos2 >> shif << 
2595 }                                                1963 }
2596                                                  1964 
2597 /**                                              1965 /**
2598  * filemap_read - Read data from the page cac !! 1966  * generic_file_buffered_read - generic file read routine
2599  * @iocb: The iocb to read.                   !! 1967  * @iocb:       the iocb to read
2600  * @iter: Destination for the data.           !! 1968  * @iter:       data destination
2601  * @already_read: Number of bytes already rea !! 1969  * @written:    already copied
2602  *                                            !! 1970  *
2603  * Copies data from the page cache.  If the d !! 1971  * This is a generic file read routine, and uses the
2604  * uses the readahead and read_folio address_ !! 1972  * mapping->a_ops->readpage() function for the actual low-level stuff.
2605  *                                            !! 1973  *
2606  * Return: Total number of bytes copied, incl !! 1974  * This is really ugly. But the goto's actually try to clarify some
2607  * the caller.  If an error happens before an !! 1975  * of the logic when it comes to error handling etc.
2608  * a negative error number.                   << 
2609  */                                              1976  */
2610 ssize_t filemap_read(struct kiocb *iocb, stru !! 1977 static ssize_t generic_file_buffered_read(struct kiocb *iocb,
2611                 ssize_t already_read)         !! 1978                 struct iov_iter *iter, ssize_t written)
2612 {                                                1979 {
2613         struct file *filp = iocb->ki_filp;       1980         struct file *filp = iocb->ki_filp;
2614         struct file_ra_state *ra = &filp->f_r << 
2615         struct address_space *mapping = filp-    1981         struct address_space *mapping = filp->f_mapping;
2616         struct inode *inode = mapping->host;     1982         struct inode *inode = mapping->host;
2617         struct folio_batch fbatch;            !! 1983         struct file_ra_state *ra = &filp->f_ra;
2618         int i, error = 0;                     !! 1984         loff_t *ppos = &iocb->ki_pos;
2619         bool writably_mapped;                 !! 1985         pgoff_t index;
2620         loff_t isize, end_offset;             !! 1986         pgoff_t last_index;
2621         loff_t last_pos = ra->prev_pos;       !! 1987         pgoff_t prev_index;
                                                   >> 1988         unsigned long offset;      /* offset into pagecache page */
                                                   >> 1989         unsigned int prev_offset;
                                                   >> 1990         int error = 0;
2622                                                  1991 
2623         if (unlikely(iocb->ki_pos >= inode->i !! 1992         if (unlikely(*ppos >= inode->i_sb->s_maxbytes))
2624                 return 0;                        1993                 return 0;
2625         if (unlikely(!iov_iter_count(iter)))  !! 1994         iov_iter_truncate(iter, inode->i_sb->s_maxbytes);
2626                 return 0;                     << 
2627                                               << 
2628         iov_iter_truncate(iter, inode->i_sb-> << 
2629         folio_batch_init(&fbatch);            << 
2630                                                  1995 
2631         do {                                  !! 1996         index = *ppos >> PAGE_SHIFT;
2632                 cond_resched();               !! 1997         prev_index = ra->prev_pos >> PAGE_SHIFT;
                                                   >> 1998         prev_offset = ra->prev_pos & (PAGE_SIZE-1);
                                                   >> 1999         last_index = (*ppos + iter->count + PAGE_SIZE-1) >> PAGE_SHIFT;
                                                   >> 2000         offset = *ppos & ~PAGE_MASK;
2633                                                  2001 
2634                 /*                            !! 2002         for (;;) {
2635                  * If we've already successfu !! 2003                 struct page *page;
2636                  * can no longer safely retur !! 2004                 pgoff_t end_index;
2637                  * an async read NOWAIT at th !! 2005                 loff_t isize;
2638                  */                           !! 2006                 unsigned long nr, ret;
2639                 if ((iocb->ki_flags & IOCB_WA << 
2640                         iocb->ki_flags |= IOC << 
2641                                                  2007 
2642                 if (unlikely(iocb->ki_pos >=  !! 2008                 cond_resched();
2643                         break;                !! 2009 find_page:
                                                   >> 2010                 if (fatal_signal_pending(current)) {
                                                   >> 2011                         error = -EINTR;
                                                   >> 2012                         goto out;
                                                   >> 2013                 }
2644                                                  2014 
2645                 error = filemap_get_pages(ioc !! 2015                 page = find_get_page(mapping, index);
2646                 if (error < 0)                !! 2016                 if (!page) {
2647                         break;                !! 2017                         if (iocb->ki_flags & IOCB_NOWAIT)
                                                   >> 2018                                 goto would_block;
                                                   >> 2019                         page_cache_sync_readahead(mapping,
                                                   >> 2020                                         ra, filp,
                                                   >> 2021                                         index, last_index - index);
                                                   >> 2022                         page = find_get_page(mapping, index);
                                                   >> 2023                         if (unlikely(page == NULL))
                                                   >> 2024                                 goto no_cached_page;
                                                   >> 2025                 }
                                                   >> 2026                 if (PageReadahead(page)) {
                                                   >> 2027                         page_cache_async_readahead(mapping,
                                                   >> 2028                                         ra, filp, page,
                                                   >> 2029                                         index, last_index - index);
                                                   >> 2030                 }
                                                   >> 2031                 if (!PageUptodate(page)) {
                                                   >> 2032                         if (iocb->ki_flags & IOCB_NOWAIT) {
                                                   >> 2033                                 put_page(page);
                                                   >> 2034                                 goto would_block;
                                                   >> 2035                         }
2648                                                  2036 
                                                   >> 2037                         /*
                                                   >> 2038                          * See comment in do_read_cache_page on why
                                                   >> 2039                          * wait_on_page_locked is used to avoid unnecessarily
                                                   >> 2040                          * serialisations and why it's safe.
                                                   >> 2041                          */
                                                   >> 2042                         error = wait_on_page_locked_killable(page);
                                                   >> 2043                         if (unlikely(error))
                                                   >> 2044                                 goto readpage_error;
                                                   >> 2045                         if (PageUptodate(page))
                                                   >> 2046                                 goto page_ok;
                                                   >> 2047 
                                                   >> 2048                         if (inode->i_blkbits == PAGE_SHIFT ||
                                                   >> 2049                                         !mapping->a_ops->is_partially_uptodate)
                                                   >> 2050                                 goto page_not_up_to_date;
                                                   >> 2051                         /* pipes can't handle partially uptodate pages */
                                                   >> 2052                         if (unlikely(iov_iter_is_pipe(iter)))
                                                   >> 2053                                 goto page_not_up_to_date;
                                                   >> 2054                         if (!trylock_page(page))
                                                   >> 2055                                 goto page_not_up_to_date;
                                                   >> 2056                         /* Did it get truncated before we got the lock? */
                                                   >> 2057                         if (!page->mapping)
                                                   >> 2058                                 goto page_not_up_to_date_locked;
                                                   >> 2059                         if (!mapping->a_ops->is_partially_uptodate(page,
                                                   >> 2060                                                         offset, iter->count))
                                                   >> 2061                                 goto page_not_up_to_date_locked;
                                                   >> 2062                         unlock_page(page);
                                                   >> 2063                 }
                                                   >> 2064 page_ok:
2649                 /*                               2065                 /*
2650                  * i_size must be checked aft !! 2066                  * i_size must be checked after we know the page is Uptodate.
2651                  *                               2067                  *
2652                  * Checking i_size after the     2068                  * Checking i_size after the check allows us to calculate
2653                  * the correct value for "nr"    2069                  * the correct value for "nr", which means the zero-filled
2654                  * part of the page is not co    2070                  * part of the page is not copied back to userspace (unless
2655                  * another truncate extends t    2071                  * another truncate extends the file - this is desired though).
2656                  */                              2072                  */
                                                   >> 2073 
2657                 isize = i_size_read(inode);      2074                 isize = i_size_read(inode);
2658                 if (unlikely(iocb->ki_pos >=  !! 2075                 end_index = (isize - 1) >> PAGE_SHIFT;
2659                         goto put_folios;      !! 2076                 if (unlikely(!isize || index > end_index)) {
2660                 end_offset = min_t(loff_t, is !! 2077                         put_page(page);
                                                   >> 2078                         goto out;
                                                   >> 2079                 }
                                                   >> 2080 
                                                   >> 2081                 /* nr is the maximum number of bytes to copy from this page */
                                                   >> 2082                 nr = PAGE_SIZE;
                                                   >> 2083                 if (index == end_index) {
                                                   >> 2084                         nr = ((isize - 1) & ~PAGE_MASK) + 1;
                                                   >> 2085                         if (nr <= offset) {
                                                   >> 2086                                 put_page(page);
                                                   >> 2087                                 goto out;
                                                   >> 2088                         }
                                                   >> 2089                 }
                                                   >> 2090                 nr = nr - offset;
                                                   >> 2091 
                                                   >> 2092                 /* If users can be writing to this page using arbitrary
                                                   >> 2093                  * virtual addresses, take care about potential aliasing
                                                   >> 2094                  * before reading the page on the kernel side.
                                                   >> 2095                  */
                                                   >> 2096                 if (mapping_writably_mapped(mapping))
                                                   >> 2097                         flush_dcache_page(page);
2661                                                  2098 
2662                 /*                               2099                 /*
2663                  * Once we start copying data !! 2100                  * When a sequential read accesses a page several times,
2664                  * cachelines that might be c !! 2101                  * only mark it as accessed the first time.
2665                  */                              2102                  */
2666                 writably_mapped = mapping_wri !! 2103                 if (prev_index != index || offset != prev_offset)
                                                   >> 2104                         mark_page_accessed(page);
                                                   >> 2105                 prev_index = index;
2667                                                  2106 
2668                 /*                               2107                 /*
2669                  * When a read accesses the s !! 2108                  * Ok, we have the page, and it's up-to-date, so
2670                  * mark it as accessed the fi !! 2109                  * now we can copy it to user space...
2671                  */                              2110                  */
2672                 if (!pos_same_folio(iocb->ki_ << 
2673                                     fbatch.fo << 
2674                         folio_mark_accessed(f << 
2675                                               << 
2676                 for (i = 0; i < folio_batch_c << 
2677                         struct folio *folio = << 
2678                         size_t fsize = folio_ << 
2679                         size_t offset = iocb- << 
2680                         size_t bytes = min_t( << 
2681                                               << 
2682                         size_t copied;        << 
2683                                                  2111 
2684                         if (end_offset < foli !! 2112                 ret = copy_page_to_iter(page, offset, nr, iter);
2685                                 break;        !! 2113                 offset += ret;
2686                         if (i > 0)            !! 2114                 index += offset >> PAGE_SHIFT;
2687                                 folio_mark_ac !! 2115                 offset &= ~PAGE_MASK;
2688                         /*                    !! 2116                 prev_offset = offset;
2689                          * If users can be wr << 
2690                          * virtual addresses, << 
2691                          * before reading the << 
2692                          */                   << 
2693                         if (writably_mapped)  << 
2694                                 flush_dcache_ << 
2695                                                  2117 
2696                         copied = copy_folio_t !! 2118                 put_page(page);
                                                   >> 2119                 written += ret;
                                                   >> 2120                 if (!iov_iter_count(iter))
                                                   >> 2121                         goto out;
                                                   >> 2122                 if (ret < nr) {
                                                   >> 2123                         error = -EFAULT;
                                                   >> 2124                         goto out;
                                                   >> 2125                 }
                                                   >> 2126                 continue;
2697                                                  2127 
2698                         already_read += copie !! 2128 page_not_up_to_date:
2699                         iocb->ki_pos += copie !! 2129                 /* Get exclusive access to the page ... */
2700                         last_pos = iocb->ki_p !! 2130                 error = lock_page_killable(page);
                                                   >> 2131                 if (unlikely(error))
                                                   >> 2132                         goto readpage_error;
                                                   >> 2133 
                                                   >> 2134 page_not_up_to_date_locked:
                                                   >> 2135                 /* Did it get truncated before we got the lock? */
                                                   >> 2136                 if (!page->mapping) {
                                                   >> 2137                         unlock_page(page);
                                                   >> 2138                         put_page(page);
                                                   >> 2139                         continue;
                                                   >> 2140                 }
2701                                                  2141 
2702                         if (copied < bytes) { !! 2142                 /* Did somebody else fill it already? */
2703                                 error = -EFAU !! 2143                 if (PageUptodate(page)) {
2704                                 break;        !! 2144                         unlock_page(page);
                                                   >> 2145                         goto page_ok;
                                                   >> 2146                 }
                                                   >> 2147 
                                                   >> 2148 readpage:
                                                   >> 2149                 /*
                                                   >> 2150                  * A previous I/O error may have been due to temporary
                                                   >> 2151                  * failures, eg. multipath errors.
                                                   >> 2152                  * PG_error will be set again if readpage fails.
                                                   >> 2153                  */
                                                   >> 2154                 ClearPageError(page);
                                                   >> 2155                 /* Start the actual read. The read will unlock the page. */
                                                   >> 2156                 error = mapping->a_ops->readpage(filp, page);
                                                   >> 2157 
                                                   >> 2158                 if (unlikely(error)) {
                                                   >> 2159                         if (error == AOP_TRUNCATED_PAGE) {
                                                   >> 2160                                 put_page(page);
                                                   >> 2161                                 error = 0;
                                                   >> 2162                                 goto find_page;
2705                         }                        2163                         }
                                                   >> 2164                         goto readpage_error;
2706                 }                                2165                 }
2707 put_folios:                                   << 
2708                 for (i = 0; i < folio_batch_c << 
2709                         folio_put(fbatch.foli << 
2710                 folio_batch_init(&fbatch);    << 
2711         } while (iov_iter_count(iter) && iocb << 
2712                                                  2166 
2713         file_accessed(filp);                  !! 2167                 if (!PageUptodate(page)) {
2714         ra->prev_pos = last_pos;              !! 2168                         error = lock_page_killable(page);
2715         return already_read ? already_read :  !! 2169                         if (unlikely(error))
2716 }                                             !! 2170                                 goto readpage_error;
2717 EXPORT_SYMBOL_GPL(filemap_read);              !! 2171                         if (!PageUptodate(page)) {
2718                                               !! 2172                                 if (page->mapping == NULL) {
2719 int kiocb_write_and_wait(struct kiocb *iocb,  !! 2173                                         /*
2720 {                                             !! 2174                                          * invalidate_mapping_pages got it
2721         struct address_space *mapping = iocb- !! 2175                                          */
2722         loff_t pos = iocb->ki_pos;            !! 2176                                         unlock_page(page);
2723         loff_t end = pos + count - 1;         !! 2177                                         put_page(page);
2724                                               !! 2178                                         goto find_page;
2725         if (iocb->ki_flags & IOCB_NOWAIT) {   !! 2179                                 }
2726                 if (filemap_range_needs_write !! 2180                                 unlock_page(page);
2727                         return -EAGAIN;       !! 2181                                 shrink_readahead_size_eio(filp, ra);
2728                 return 0;                     !! 2182                                 error = -EIO;
2729         }                                     !! 2183                                 goto readpage_error;
                                                   >> 2184                         }
                                                   >> 2185                         unlock_page(page);
                                                   >> 2186                 }
2730                                                  2187 
2731         return filemap_write_and_wait_range(m !! 2188                 goto page_ok;
2732 }                                             << 
2733 EXPORT_SYMBOL_GPL(kiocb_write_and_wait);      << 
2734                                                  2189 
2735 int filemap_invalidate_pages(struct address_s !! 2190 readpage_error:
2736                              loff_t pos, loff !! 2191                 /* UHHUH! A synchronous read error occurred. Report it */
2737 {                                             !! 2192                 put_page(page);
2738         int ret;                              !! 2193                 goto out;
2739                                                  2194 
2740         if (nowait) {                         !! 2195 no_cached_page:
2741                 /* we could block if there ar !! 2196                 /*
2742                 if (filemap_range_has_page(ma !! 2197                  * Ok, it wasn't cached, so we need to create a new
2743                         return -EAGAIN;       !! 2198                  * page..
2744         } else {                              !! 2199                  */
2745                 ret = filemap_write_and_wait_ !! 2200                 page = page_cache_alloc(mapping);
2746                 if (ret)                      !! 2201                 if (!page) {
2747                         return ret;           !! 2202                         error = -ENOMEM;
                                                   >> 2203                         goto out;
                                                   >> 2204                 }
                                                   >> 2205                 error = add_to_page_cache_lru(page, mapping, index,
                                                   >> 2206                                 mapping_gfp_constraint(mapping, GFP_KERNEL));
                                                   >> 2207                 if (error) {
                                                   >> 2208                         put_page(page);
                                                   >> 2209                         if (error == -EEXIST) {
                                                   >> 2210                                 error = 0;
                                                   >> 2211                                 goto find_page;
                                                   >> 2212                         }
                                                   >> 2213                         goto out;
                                                   >> 2214                 }
                                                   >> 2215                 goto readpage;
2748         }                                        2216         }
2749                                                  2217 
2750         /*                                    !! 2218 would_block:
2751          * After a write we want buffered rea !! 2219         error = -EAGAIN;
2752          * the new data.  We invalidate clean !! 2220 out:
2753          * about to write.  We do this *befor !! 2221         ra->prev_pos = prev_index;
2754          * without clobbering -EIOCBQUEUED fr !! 2222         ra->prev_pos <<= PAGE_SHIFT;
2755          */                                   !! 2223         ra->prev_pos |= prev_offset;
2756         return invalidate_inode_pages2_range( << 
2757                                               << 
2758 }                                             << 
2759                                               << 
2760 int kiocb_invalidate_pages(struct kiocb *iocb << 
2761 {                                             << 
2762         struct address_space *mapping = iocb- << 
2763                                                  2224 
2764         return filemap_invalidate_pages(mappi !! 2225         *ppos = ((loff_t)index << PAGE_SHIFT) + offset;
2765                                         iocb- !! 2226         file_accessed(filp);
2766                                         iocb- !! 2227         return written ? written : error;
2767 }                                                2228 }
2768 EXPORT_SYMBOL_GPL(kiocb_invalidate_pages);    << 
2769                                                  2229 
2770 /**                                              2230 /**
2771  * generic_file_read_iter - generic filesyste    2231  * generic_file_read_iter - generic filesystem read routine
2772  * @iocb:       kernel I/O control block         2232  * @iocb:       kernel I/O control block
2773  * @iter:       destination for the data read    2233  * @iter:       destination for the data read
2774  *                                               2234  *
2775  * This is the "read_iter()" routine for all     2235  * This is the "read_iter()" routine for all filesystems
2776  * that can use the page cache directly.         2236  * that can use the page cache directly.
2777  *                                            << 
2778  * The IOCB_NOWAIT flag in iocb->ki_flags ind << 
2779  * be returned when no data can be read witho << 
2780  * to complete; it doesn't prevent readahead. << 
2781  *                                            << 
2782  * The IOCB_NOIO flag in iocb->ki_flags indic << 
2783  * requests shall be made for the read or for << 
2784  * can be read, -EAGAIN shall be returned.  W << 
2785  * triggered, a partial, possibly empty read  << 
2786  *                                            << 
2787  * Return:                                    << 
2788  * * number of bytes copied, even for partial << 
2789  * * negative error code (or 0 if IOCB_NOIO)  << 
2790  */                                              2237  */
2791 ssize_t                                          2238 ssize_t
2792 generic_file_read_iter(struct kiocb *iocb, st    2239 generic_file_read_iter(struct kiocb *iocb, struct iov_iter *iter)
2793 {                                                2240 {
2794         size_t count = iov_iter_count(iter);     2241         size_t count = iov_iter_count(iter);
2795         ssize_t retval = 0;                      2242         ssize_t retval = 0;
2796                                                  2243 
2797         if (!count)                              2244         if (!count)
2798                 return 0; /* skip atime */    !! 2245                 goto out; /* skip atime */
2799                                                  2246 
2800         if (iocb->ki_flags & IOCB_DIRECT) {      2247         if (iocb->ki_flags & IOCB_DIRECT) {
2801                 struct file *file = iocb->ki_    2248                 struct file *file = iocb->ki_filp;
2802                 struct address_space *mapping    2249                 struct address_space *mapping = file->f_mapping;
2803                 struct inode *inode = mapping    2250                 struct inode *inode = mapping->host;
                                                   >> 2251                 loff_t size;
                                                   >> 2252 
                                                   >> 2253                 size = i_size_read(inode);
                                                   >> 2254                 if (iocb->ki_flags & IOCB_NOWAIT) {
                                                   >> 2255                         if (filemap_range_has_page(mapping, iocb->ki_pos,
                                                   >> 2256                                                    iocb->ki_pos + count - 1))
                                                   >> 2257                                 return -EAGAIN;
                                                   >> 2258                 } else {
                                                   >> 2259                         retval = filemap_write_and_wait_range(mapping,
                                                   >> 2260                                                 iocb->ki_pos,
                                                   >> 2261                                                 iocb->ki_pos + count - 1);
                                                   >> 2262                         if (retval < 0)
                                                   >> 2263                                 goto out;
                                                   >> 2264                 }
2804                                                  2265 
2805                 retval = kiocb_write_and_wait << 
2806                 if (retval < 0)               << 
2807                         return retval;        << 
2808                 file_accessed(file);             2266                 file_accessed(file);
2809                                                  2267 
2810                 retval = mapping->a_ops->dire    2268                 retval = mapping->a_ops->direct_IO(iocb, iter);
2811                 if (retval >= 0) {               2269                 if (retval >= 0) {
2812                         iocb->ki_pos += retva    2270                         iocb->ki_pos += retval;
2813                         count -= retval;         2271                         count -= retval;
2814                 }                                2272                 }
2815                 if (retval != -EIOCBQUEUED)   !! 2273                 iov_iter_revert(iter, count - iov_iter_count(iter));
2816                         iov_iter_revert(iter, << 
2817                                                  2274 
2818                 /*                               2275                 /*
2819                  * Btrfs can have a short DIO    2276                  * Btrfs can have a short DIO read if we encounter
2820                  * compressed extents, so if     2277                  * compressed extents, so if there was an error, or if
2821                  * we've already read everyth    2278                  * we've already read everything we wanted to, or if
2822                  * there was a short read bec    2279                  * there was a short read because we hit EOF, go ahead
2823                  * and return.  Otherwise fal    2280                  * and return.  Otherwise fallthrough to buffered io for
2824                  * the rest of the read.  Buf    2281                  * the rest of the read.  Buffered reads will not work for
2825                  * DAX files, so don't bother    2282                  * DAX files, so don't bother trying.
2826                  */                              2283                  */
2827                 if (retval < 0 || !count || I !! 2284                 if (retval < 0 || !count || iocb->ki_pos >= size ||
2828                         return retval;        !! 2285                     IS_DAX(inode))
2829                 if (iocb->ki_pos >= i_size_re !! 2286                         goto out;
2830                         return retval;        << 
2831         }                                        2287         }
2832                                                  2288 
2833         return filemap_read(iocb, iter, retva !! 2289         retval = generic_file_buffered_read(iocb, iter, retval);
                                                   >> 2290 out:
                                                   >> 2291         return retval;
2834 }                                                2292 }
2835 EXPORT_SYMBOL(generic_file_read_iter);           2293 EXPORT_SYMBOL(generic_file_read_iter);
2836                                                  2294 
2837 /*                                            !! 2295 #ifdef CONFIG_MMU
2838  * Splice subpages from a folio into a pipe.  !! 2296 /**
                                                   >> 2297  * page_cache_read - adds requested page to the page cache if not already there
                                                   >> 2298  * @file:       file to read
                                                   >> 2299  * @offset:     page index
                                                   >> 2300  * @gfp_mask:   memory allocation flags
                                                   >> 2301  *
                                                   >> 2302  * This adds the requested page to the page cache if it isn't already there,
                                                   >> 2303  * and schedules an I/O to read in its contents from disk.
2839  */                                              2304  */
2840 size_t splice_folio_into_pipe(struct pipe_ino !! 2305 static int page_cache_read(struct file *file, pgoff_t offset, gfp_t gfp_mask)
2841                               struct folio *f << 
2842 {                                                2306 {
                                                   >> 2307         struct address_space *mapping = file->f_mapping;
2843         struct page *page;                       2308         struct page *page;
2844         size_t spliced = 0, offset = offset_i !! 2309         int ret;
2845                                               << 
2846         page = folio_page(folio, offset / PAG << 
2847         size = min(size, folio_size(folio) -  << 
2848         offset %= PAGE_SIZE;                  << 
2849                                               << 
2850         while (spliced < size &&              << 
2851                !pipe_full(pipe->head, pipe->t << 
2852                 struct pipe_buffer *buf = pip << 
2853                 size_t part = min_t(size_t, P << 
2854                                               << 
2855                 *buf = (struct pipe_buffer) { << 
2856                         .ops    = &page_cache << 
2857                         .page   = page,       << 
2858                         .offset = offset,     << 
2859                         .len    = part,       << 
2860                 };                            << 
2861                 folio_get(folio);             << 
2862                 pipe->head++;                 << 
2863                 page++;                       << 
2864                 spliced += part;              << 
2865                 offset = 0;                   << 
2866         }                                     << 
2867                                               << 
2868         return spliced;                       << 
2869 }                                             << 
2870                                               << 
2871 /**                                           << 
2872  * filemap_splice_read -  Splice data from a  << 
2873  * @in: The file to read from                 << 
2874  * @ppos: Pointer to the file position to rea << 
2875  * @pipe: The pipe to splice into             << 
2876  * @len: The amount to splice                 << 
2877  * @flags: The SPLICE_F_* flags               << 
2878  *                                            << 
2879  * This function gets folios from a file's pa << 
2880  * pipe.  Readahead will be called as necessa << 
2881  * be used for blockdevs also.                << 
2882  *                                            << 
2883  * Return: On success, the number of bytes re << 
2884  * will be updated if appropriate; 0 will be  << 
2885  * to be read; -EAGAIN will be returned if th << 
2886  * other negative error code will be returned << 
2887  * if the pipe has insufficient space, we rea << 
2888  * hole.                                      << 
2889  */                                           << 
2890 ssize_t filemap_splice_read(struct file *in,  << 
2891                             struct pipe_inode << 
2892                             size_t len, unsig << 
2893 {                                             << 
2894         struct folio_batch fbatch;            << 
2895         struct kiocb iocb;                    << 
2896         size_t total_spliced = 0, used, npage << 
2897         loff_t isize, end_offset;             << 
2898         bool writably_mapped;                 << 
2899         int i, error = 0;                     << 
2900                                               << 
2901         if (unlikely(*ppos >= in->f_mapping-> << 
2902                 return 0;                     << 
2903                                               << 
2904         init_sync_kiocb(&iocb, in);           << 
2905         iocb.ki_pos = *ppos;                  << 
2906                                               << 
2907         /* Work out how much data we can actu << 
2908         used = pipe_occupancy(pipe->head, pip << 
2909         npages = max_t(ssize_t, pipe->max_usa << 
2910         len = min_t(size_t, len, npages * PAG << 
2911                                               << 
2912         folio_batch_init(&fbatch);            << 
2913                                               << 
2914         do {                                  << 
2915                 cond_resched();               << 
2916                                               << 
2917                 if (*ppos >= i_size_read(in-> << 
2918                         break;                << 
2919                                               << 
2920                 iocb.ki_pos = *ppos;          << 
2921                 error = filemap_get_pages(&io << 
2922                 if (error < 0)                << 
2923                         break;                << 
2924                                               << 
2925                 /*                            << 
2926                  * i_size must be checked aft << 
2927                  *                            << 
2928                  * Checking i_size after the  << 
2929                  * the correct value for "nr" << 
2930                  * part of the page is not co << 
2931                  * another truncate extends t << 
2932                  */                           << 
2933                 isize = i_size_read(in->f_map << 
2934                 if (unlikely(*ppos >= isize)) << 
2935                         break;                << 
2936                 end_offset = min_t(loff_t, is << 
2937                                               << 
2938                 /*                            << 
2939                  * Once we start copying data << 
2940                  * cachelines that might be c << 
2941                  */                           << 
2942                 writably_mapped = mapping_wri << 
2943                                               << 
2944                 for (i = 0; i < folio_batch_c << 
2945                         struct folio *folio = << 
2946                         size_t n;             << 
2947                                               << 
2948                         if (folio_pos(folio)  << 
2949                                 goto out;     << 
2950                         folio_mark_accessed(f << 
2951                                               << 
2952                         /*                    << 
2953                          * If users can be wr << 
2954                          * virtual addresses, << 
2955                          * before reading the << 
2956                          */                   << 
2957                         if (writably_mapped)  << 
2958                                 flush_dcache_ << 
2959                                               << 
2960                         n = min_t(loff_t, len << 
2961                         n = splice_folio_into << 
2962                         if (!n)               << 
2963                                 goto out;     << 
2964                         len -= n;             << 
2965                         total_spliced += n;   << 
2966                         *ppos += n;           << 
2967                         in->f_ra.prev_pos = * << 
2968                         if (pipe_full(pipe->h << 
2969                                 goto out;     << 
2970                 }                             << 
2971                                               << 
2972                 folio_batch_release(&fbatch); << 
2973         } while (len);                        << 
2974                                               << 
2975 out:                                          << 
2976         folio_batch_release(&fbatch);         << 
2977         file_accessed(in);                    << 
2978                                               << 
2979         return total_spliced ? total_spliced  << 
2980 }                                             << 
2981 EXPORT_SYMBOL(filemap_splice_read);           << 
2982                                               << 
2983 static inline loff_t folio_seek_hole_data(str << 
2984                 struct address_space *mapping << 
2985                 loff_t start, loff_t end, boo << 
2986 {                                             << 
2987         const struct address_space_operations << 
2988         size_t offset, bsz = i_blocksize(mapp << 
2989                                               << 
2990         if (xa_is_value(folio) || folio_test_ << 
2991                 return seek_data ? start : en << 
2992         if (!ops->is_partially_uptodate)      << 
2993                 return seek_data ? end : star << 
2994                                               << 
2995         xas_pause(xas);                       << 
2996         rcu_read_unlock();                    << 
2997         folio_lock(folio);                    << 
2998         if (unlikely(folio->mapping != mappin << 
2999                 goto unlock;                  << 
3000                                               << 
3001         offset = offset_in_folio(folio, start << 
3002                                                  2310 
3003         do {                                     2311         do {
3004                 if (ops->is_partially_uptodat !! 2312                 page = __page_cache_alloc(gfp_mask);
3005                                               !! 2313                 if (!page)
3006                         break;                !! 2314                         return -ENOMEM;
3007                 start = (start + bsz) & ~(bsz !! 2315 
3008                 offset += bsz;                !! 2316                 ret = add_to_page_cache_lru(page, mapping, offset, gfp_mask);
3009         } while (offset < folio_size(folio)); !! 2317                 if (ret == 0)
3010 unlock:                                       !! 2318                         ret = mapping->a_ops->readpage(file, page);
3011         folio_unlock(folio);                  !! 2319                 else if (ret == -EEXIST)
3012         rcu_read_lock();                      !! 2320                         ret = 0; /* losing race to add is OK */
3013         return start;                         << 
3014 }                                             << 
3015                                               << 
3016 static inline size_t seek_folio_size(struct x << 
3017 {                                             << 
3018         if (xa_is_value(folio))               << 
3019                 return PAGE_SIZE << xas_get_o << 
3020         return folio_size(folio);             << 
3021 }                                             << 
3022                                                  2321 
3023 /**                                           !! 2322                 put_page(page);
3024  * mapping_seek_hole_data - Seek for SEEK_DAT << 
3025  * @mapping: Address space to search.         << 
3026  * @start: First byte to consider.            << 
3027  * @end: Limit of search (exclusive).         << 
3028  * @whence: Either SEEK_HOLE or SEEK_DATA.    << 
3029  *                                            << 
3030  * If the page cache knows which blocks conta << 
3031  * contain data, your filesystem can use this << 
3032  * SEEK_HOLE and SEEK_DATA.  This is useful f << 
3033  * entirely memory-based such as tmpfs, and f << 
3034  * unwritten extents.                         << 
3035  *                                            << 
3036  * Return: The requested offset on success, o << 
3037  * SEEK_DATA and there is no data after @star << 
3038  * after @end - 1, so SEEK_HOLE returns @end  << 
3039  * and @end contain data.                     << 
3040  */                                           << 
3041 loff_t mapping_seek_hole_data(struct address_ << 
3042                 loff_t end, int whence)       << 
3043 {                                             << 
3044         XA_STATE(xas, &mapping->i_pages, star << 
3045         pgoff_t max = (end - 1) >> PAGE_SHIFT << 
3046         bool seek_data = (whence == SEEK_DATA << 
3047         struct folio *folio;                  << 
3048                                                  2323 
3049         if (end <= start)                     !! 2324         } while (ret == AOP_TRUNCATED_PAGE);
3050                 return -ENXIO;                << 
3051                                                  2325 
3052         rcu_read_lock();                      !! 2326         return ret;
3053         while ((folio = find_get_entry(&xas,  << 
3054                 loff_t pos = (u64)xas.xa_inde << 
3055                 size_t seek_size;             << 
3056                                               << 
3057                 if (start < pos) {            << 
3058                         if (!seek_data)       << 
3059                                 goto unlock;  << 
3060                         start = pos;          << 
3061                 }                             << 
3062                                               << 
3063                 seek_size = seek_folio_size(& << 
3064                 pos = round_up((u64)pos + 1,  << 
3065                 start = folio_seek_hole_data( << 
3066                                 seek_data);   << 
3067                 if (start < pos)              << 
3068                         goto unlock;          << 
3069                 if (start >= end)             << 
3070                         break;                << 
3071                 if (seek_size > PAGE_SIZE)    << 
3072                         xas_set(&xas, pos >>  << 
3073                 if (!xa_is_value(folio))      << 
3074                         folio_put(folio);     << 
3075         }                                     << 
3076         if (seek_data)                        << 
3077                 start = -ENXIO;               << 
3078 unlock:                                       << 
3079         rcu_read_unlock();                    << 
3080         if (folio && !xa_is_value(folio))     << 
3081                 folio_put(folio);             << 
3082         if (start > end)                      << 
3083                 return end;                   << 
3084         return start;                         << 
3085 }                                                2327 }
3086                                                  2328 
3087 #ifdef CONFIG_MMU                             << 
3088 #define MMAP_LOTSAMISS  (100)                    2329 #define MMAP_LOTSAMISS  (100)
3089 /*                                            << 
3090  * lock_folio_maybe_drop_mmap - lock the page << 
3091  * @vmf - the vm_fault for this fault.        << 
3092  * @folio - the folio to lock.                << 
3093  * @fpin - the pointer to the file we may pin << 
3094  *                                            << 
3095  * This works similar to lock_folio_or_retry  << 
3096  * mmap_lock.  It differs in that it actually << 
3097  * if it returns 1 and 0 if it couldn't lock  << 
3098  * to drop the mmap_lock then fpin will point << 
3099  * needs to be fput()'ed at a later point.    << 
3100  */                                           << 
3101 static int lock_folio_maybe_drop_mmap(struct  << 
3102                                      struct f << 
3103 {                                             << 
3104         if (folio_trylock(folio))             << 
3105                 return 1;                     << 
3106                                               << 
3107         /*                                    << 
3108          * NOTE! This will make us return wit << 
3109          * the fault lock still held. That's  << 
3110          * is supposed to work. We have way t << 
3111          */                                   << 
3112         if (vmf->flags & FAULT_FLAG_RETRY_NOW << 
3113                 return 0;                     << 
3114                                               << 
3115         *fpin = maybe_unlock_mmap_for_io(vmf, << 
3116         if (vmf->flags & FAULT_FLAG_KILLABLE) << 
3117                 if (__folio_lock_killable(fol << 
3118                         /*                    << 
3119                          * We didn't have the << 
3120                          * fault lock, but al << 
3121                          * for fatal signals  << 
3122                          * so we need to drop << 
3123                          * return 0 if we don << 
3124                          */                   << 
3125                         if (*fpin == NULL)    << 
3126                                 release_fault << 
3127                         return 0;             << 
3128                 }                             << 
3129         } else                                << 
3130                 __folio_lock(folio);          << 
3131                                               << 
3132         return 1;                             << 
3133 }                                             << 
3134                                                  2330 
3135 /*                                               2331 /*
3136  * Synchronous readahead happens when we don' !! 2332  * Synchronous readahead happens when we don't even find
3137  * cache at all.  We don't want to perform IO !! 2333  * a page in the page cache at all.
3138  * to drop the mmap sem we return the file th << 
3139  * that.  If we didn't pin a file then we ret << 
3140  * returned needs to be fput()'ed when we're  << 
3141  */                                              2334  */
3142 static struct file *do_sync_mmap_readahead(st !! 2335 static void do_sync_mmap_readahead(struct vm_area_struct *vma,
                                                   >> 2336                                    struct file_ra_state *ra,
                                                   >> 2337                                    struct file *file,
                                                   >> 2338                                    pgoff_t offset)
3143 {                                                2339 {
3144         struct file *file = vmf->vma->vm_file << 
3145         struct file_ra_state *ra = &file->f_r << 
3146         struct address_space *mapping = file-    2340         struct address_space *mapping = file->f_mapping;
3147         DEFINE_READAHEAD(ractl, file, ra, map << 
3148         struct file *fpin = NULL;             << 
3149         unsigned long vm_flags = vmf->vma->vm << 
3150         unsigned int mmap_miss;               << 
3151                                               << 
3152 #ifdef CONFIG_TRANSPARENT_HUGEPAGE            << 
3153         /* Use the readahead code, even if re << 
3154         if ((vm_flags & VM_HUGEPAGE) && HPAGE << 
3155                 fpin = maybe_unlock_mmap_for_ << 
3156                 ractl._index &= ~((unsigned l << 
3157                 ra->size = HPAGE_PMD_NR;      << 
3158                 /*                            << 
3159                  * Fetch two PMD folios, so w << 
3160                  * readahead, unless we've be << 
3161                  */                           << 
3162                 if (!(vm_flags & VM_RAND_READ << 
3163                         ra->size *= 2;        << 
3164                 ra->async_size = HPAGE_PMD_NR << 
3165                 page_cache_ra_order(&ractl, r << 
3166                 return fpin;                  << 
3167         }                                     << 
3168 #endif                                        << 
3169                                                  2341 
3170         /* If we don't want any read-ahead, d    2342         /* If we don't want any read-ahead, don't bother */
3171         if (vm_flags & VM_RAND_READ)          !! 2343         if (vma->vm_flags & VM_RAND_READ)
3172                 return fpin;                  !! 2344                 return;
3173         if (!ra->ra_pages)                       2345         if (!ra->ra_pages)
3174                 return fpin;                  !! 2346                 return;
3175                                                  2347 
3176         if (vm_flags & VM_SEQ_READ) {         !! 2348         if (vma->vm_flags & VM_SEQ_READ) {
3177                 fpin = maybe_unlock_mmap_for_ !! 2349                 page_cache_sync_readahead(mapping, ra, file, offset,
3178                 page_cache_sync_ra(&ractl, ra !! 2350                                           ra->ra_pages);
3179                 return fpin;                  !! 2351                 return;
3180         }                                        2352         }
3181                                                  2353 
3182         /* Avoid banging the cache line if no    2354         /* Avoid banging the cache line if not needed */
3183         mmap_miss = READ_ONCE(ra->mmap_miss); !! 2355         if (ra->mmap_miss < MMAP_LOTSAMISS * 10)
3184         if (mmap_miss < MMAP_LOTSAMISS * 10)  !! 2356                 ra->mmap_miss++;
3185                 WRITE_ONCE(ra->mmap_miss, ++m << 
3186                                                  2357 
3187         /*                                       2358         /*
3188          * Do we miss much more than hit in t    2359          * Do we miss much more than hit in this file? If so,
3189          * stop bothering with read-ahead. It    2360          * stop bothering with read-ahead. It will only hurt.
3190          */                                      2361          */
3191         if (mmap_miss > MMAP_LOTSAMISS)       !! 2362         if (ra->mmap_miss > MMAP_LOTSAMISS)
3192                 return fpin;                  !! 2363                 return;
3193                                                  2364 
3194         /*                                       2365         /*
3195          * mmap read-around                      2366          * mmap read-around
3196          */                                      2367          */
3197         fpin = maybe_unlock_mmap_for_io(vmf,  !! 2368         ra->start = max_t(long, 0, offset - ra->ra_pages / 2);
3198         ra->start = max_t(long, 0, vmf->pgoff << 
3199         ra->size = ra->ra_pages;                 2369         ra->size = ra->ra_pages;
3200         ra->async_size = ra->ra_pages / 4;       2370         ra->async_size = ra->ra_pages / 4;
3201         ractl._index = ra->start;             !! 2371         ra_submit(ra, mapping, file);
3202         page_cache_ra_order(&ractl, ra, 0);   << 
3203         return fpin;                          << 
3204 }                                                2372 }
3205                                                  2373 
3206 /*                                               2374 /*
3207  * Asynchronous readahead happens when we fin    2375  * Asynchronous readahead happens when we find the page and PG_readahead,
3208  * so we want to possibly extend the readahea !! 2376  * so we want to possibly extend the readahead further..
3209  * was pinned if we have to drop the mmap_loc << 
3210  */                                              2377  */
3211 static struct file *do_async_mmap_readahead(s !! 2378 static void do_async_mmap_readahead(struct vm_area_struct *vma,
3212                                             s !! 2379                                     struct file_ra_state *ra,
                                                   >> 2380                                     struct file *file,
                                                   >> 2381                                     struct page *page,
                                                   >> 2382                                     pgoff_t offset)
3213 {                                                2383 {
3214         struct file *file = vmf->vma->vm_file !! 2384         struct address_space *mapping = file->f_mapping;
3215         struct file_ra_state *ra = &file->f_r << 
3216         DEFINE_READAHEAD(ractl, file, ra, fil << 
3217         struct file *fpin = NULL;             << 
3218         unsigned int mmap_miss;               << 
3219                                                  2385 
3220         /* If we don't want any read-ahead, d    2386         /* If we don't want any read-ahead, don't bother */
3221         if (vmf->vma->vm_flags & VM_RAND_READ !! 2387         if (vma->vm_flags & VM_RAND_READ)
3222                 return fpin;                  !! 2388                 return;
3223                                               !! 2389         if (ra->mmap_miss > 0)
3224         mmap_miss = READ_ONCE(ra->mmap_miss); !! 2390                 ra->mmap_miss--;
3225         if (mmap_miss)                        !! 2391         if (PageReadahead(page))
3226                 WRITE_ONCE(ra->mmap_miss, --m !! 2392                 page_cache_async_readahead(mapping, ra, file,
3227                                               !! 2393                                            page, offset, ra->ra_pages);
3228         if (folio_test_readahead(folio)) {    << 
3229                 fpin = maybe_unlock_mmap_for_ << 
3230                 page_cache_async_ra(&ractl, f << 
3231         }                                     << 
3232         return fpin;                          << 
3233 }                                             << 
3234                                               << 
3235 static vm_fault_t filemap_fault_recheck_pte_n << 
3236 {                                             << 
3237         struct vm_area_struct *vma = vmf->vma << 
3238         vm_fault_t ret = 0;                   << 
3239         pte_t *ptep;                          << 
3240                                               << 
3241         /*                                    << 
3242          * We might have COW'ed a pagecache f << 
3243          * anon folio mapped. The original pa << 
3244          * might have been evicted. During a  << 
3245          * the PTE, such as done in do_numa_p << 
3246          * temporarily clear the PTE under PT << 
3247          * "none" when not holding the PT loc << 
3248          *                                    << 
3249          * Not rechecking the PTE under PT lo << 
3250          * major fault in an mlock'ed region. << 
3251          * scenario while holding the PT lock << 
3252          * scenarios. Recheck the PTE without << 
3253          * the number of times we hold PT loc << 
3254          */                                   << 
3255         if (!(vma->vm_flags & VM_LOCKED))     << 
3256                 return 0;                     << 
3257                                               << 
3258         if (!(vmf->flags & FAULT_FLAG_ORIG_PT << 
3259                 return 0;                     << 
3260                                               << 
3261         ptep = pte_offset_map_nolock(vma->vm_ << 
3262                                      &vmf->pt << 
3263         if (unlikely(!ptep))                  << 
3264                 return VM_FAULT_NOPAGE;       << 
3265                                               << 
3266         if (unlikely(!pte_none(ptep_get_lockl << 
3267                 ret = VM_FAULT_NOPAGE;        << 
3268         } else {                              << 
3269                 spin_lock(vmf->ptl);          << 
3270                 if (unlikely(!pte_none(ptep_g << 
3271                         ret = VM_FAULT_NOPAGE << 
3272                 spin_unlock(vmf->ptl);        << 
3273         }                                     << 
3274         pte_unmap(ptep);                      << 
3275         return ret;                           << 
3276 }                                                2394 }
3277                                                  2395 
3278 /**                                              2396 /**
3279  * filemap_fault - read in file data for page    2397  * filemap_fault - read in file data for page fault handling
3280  * @vmf:        struct vm_fault containing de    2398  * @vmf:        struct vm_fault containing details of the fault
3281  *                                               2399  *
3282  * filemap_fault() is invoked via the vma ope    2400  * filemap_fault() is invoked via the vma operations vector for a
3283  * mapped memory region to read in file data     2401  * mapped memory region to read in file data during a page fault.
3284  *                                               2402  *
3285  * The goto's are kind of ugly, but this stre    2403  * The goto's are kind of ugly, but this streamlines the normal case of having
3286  * it in the page cache, and handles the spec    2404  * it in the page cache, and handles the special cases reasonably without
3287  * having a lot of duplicated code.              2405  * having a lot of duplicated code.
3288  *                                               2406  *
3289  * vma->vm_mm->mmap_lock must be held on entr !! 2407  * vma->vm_mm->mmap_sem must be held on entry.
3290  *                                               2408  *
3291  * If our return value has VM_FAULT_RETRY set !! 2409  * If our return value has VM_FAULT_RETRY set, it's because
3292  * may be dropped before doing I/O or by lock !! 2410  * lock_page_or_retry() returned 0.
                                                   >> 2411  * The mmap_sem has usually been released in this case.
                                                   >> 2412  * See __lock_page_or_retry() for the exception.
3293  *                                               2413  *
3294  * If our return value does not have VM_FAULT !! 2414  * If our return value does not have VM_FAULT_RETRY set, the mmap_sem
3295  * has not been released.                        2415  * has not been released.
3296  *                                               2416  *
3297  * We never return with VM_FAULT_RETRY and a     2417  * We never return with VM_FAULT_RETRY and a bit from VM_FAULT_ERROR set.
3298  *                                            << 
3299  * Return: bitwise-OR of %VM_FAULT_ codes.    << 
3300  */                                              2418  */
3301 vm_fault_t filemap_fault(struct vm_fault *vmf    2419 vm_fault_t filemap_fault(struct vm_fault *vmf)
3302 {                                                2420 {
3303         int error;                               2421         int error;
3304         struct file *file = vmf->vma->vm_file    2422         struct file *file = vmf->vma->vm_file;
3305         struct file *fpin = NULL;             << 
3306         struct address_space *mapping = file-    2423         struct address_space *mapping = file->f_mapping;
                                                   >> 2424         struct file_ra_state *ra = &file->f_ra;
3307         struct inode *inode = mapping->host;     2425         struct inode *inode = mapping->host;
3308         pgoff_t max_idx, index = vmf->pgoff;  !! 2426         pgoff_t offset = vmf->pgoff;
3309         struct folio *folio;                  !! 2427         pgoff_t max_off;
                                                   >> 2428         struct page *page;
3310         vm_fault_t ret = 0;                      2429         vm_fault_t ret = 0;
3311         bool mapping_locked = false;          << 
3312                                                  2430 
3313         max_idx = DIV_ROUND_UP(i_size_read(in !! 2431         max_off = DIV_ROUND_UP(i_size_read(inode), PAGE_SIZE);
3314         if (unlikely(index >= max_idx))       !! 2432         if (unlikely(offset >= max_off))
3315                 return VM_FAULT_SIGBUS;          2433                 return VM_FAULT_SIGBUS;
3316                                                  2434 
3317         trace_mm_filemap_fault(mapping, index << 
3318                                               << 
3319         /*                                       2435         /*
3320          * Do we have something in the page c    2436          * Do we have something in the page cache already?
3321          */                                      2437          */
3322         folio = filemap_get_folio(mapping, in !! 2438         page = find_get_page(mapping, offset);
3323         if (likely(!IS_ERR(folio))) {         !! 2439         if (likely(page) && !(vmf->flags & FAULT_FLAG_TRIED)) {
3324                 /*                               2440                 /*
3325                  * We found the page, so try  !! 2441                  * We found the page, so try async readahead before
3326                  * the lock.                  !! 2442                  * waiting for the lock.
3327                  */                              2443                  */
3328                 if (!(vmf->flags & FAULT_FLAG !! 2444                 do_async_mmap_readahead(vmf->vma, ra, file, page, offset);
3329                         fpin = do_async_mmap_ !! 2445         } else if (!page) {
3330                 if (unlikely(!folio_test_upto << 
3331                         filemap_invalidate_lo << 
3332                         mapping_locked = true << 
3333                 }                             << 
3334         } else {                              << 
3335                 ret = filemap_fault_recheck_p << 
3336                 if (unlikely(ret))            << 
3337                         return ret;           << 
3338                                               << 
3339                 /* No page in the page cache     2446                 /* No page in the page cache at all */
                                                   >> 2447                 do_sync_mmap_readahead(vmf->vma, ra, file, offset);
3340                 count_vm_event(PGMAJFAULT);      2448                 count_vm_event(PGMAJFAULT);
3341                 count_memcg_event_mm(vmf->vma    2449                 count_memcg_event_mm(vmf->vma->vm_mm, PGMAJFAULT);
3342                 ret = VM_FAULT_MAJOR;            2450                 ret = VM_FAULT_MAJOR;
3343                 fpin = do_sync_mmap_readahead << 
3344 retry_find:                                      2451 retry_find:
3345                 /*                            !! 2452                 page = find_get_page(mapping, offset);
3346                  * See comment in filemap_cre !! 2453                 if (!page)
3347                  * invalidate_lock            !! 2454                         goto no_cached_page;
3348                  */                           << 
3349                 if (!mapping_locked) {        << 
3350                         filemap_invalidate_lo << 
3351                         mapping_locked = true << 
3352                 }                             << 
3353                 folio = __filemap_get_folio(m << 
3354                                           FGP << 
3355                                           vmf << 
3356                 if (IS_ERR(folio)) {          << 
3357                         if (fpin)             << 
3358                                 goto out_retr << 
3359                         filemap_invalidate_un << 
3360                         return VM_FAULT_OOM;  << 
3361                 }                             << 
3362         }                                        2455         }
3363                                                  2456 
3364         if (!lock_folio_maybe_drop_mmap(vmf,  !! 2457         if (!lock_page_or_retry(page, vmf->vma->vm_mm, vmf->flags)) {
3365                 goto out_retry;               !! 2458                 put_page(page);
                                                   >> 2459                 return ret | VM_FAULT_RETRY;
                                                   >> 2460         }
3366                                                  2461 
3367         /* Did it get truncated? */              2462         /* Did it get truncated? */
3368         if (unlikely(folio->mapping != mappin !! 2463         if (unlikely(page->mapping != mapping)) {
3369                 folio_unlock(folio);          !! 2464                 unlock_page(page);
3370                 folio_put(folio);             !! 2465                 put_page(page);
3371                 goto retry_find;                 2466                 goto retry_find;
3372         }                                        2467         }
3373         VM_BUG_ON_FOLIO(!folio_contains(folio !! 2468         VM_BUG_ON_PAGE(page->index != offset, page);
3374                                                  2469 
3375         /*                                       2470         /*
3376          * We have a locked folio in the page !! 2471          * We have a locked page in the page cache, now we need to check
3377          * that it's up-to-date. If not, it i !! 2472          * that it's up-to-date. If not, it is going to be due to an error.
3378          * or because readahead was otherwise << 
3379          */                                      2473          */
3380         if (unlikely(!folio_test_uptodate(fol !! 2474         if (unlikely(!PageUptodate(page)))
3381                 /*                            << 
3382                  * If the invalidate lock is  << 
3383                  * and uptodate and now it is << 
3384                  * didn't hold the page lock  << 
3385                  * everything, get the invali << 
3386                  */                           << 
3387                 if (!mapping_locked) {        << 
3388                         folio_unlock(folio);  << 
3389                         folio_put(folio);     << 
3390                         goto retry_find;      << 
3391                 }                             << 
3392                                               << 
3393                 /*                            << 
3394                  * OK, the folio is really no << 
3395                  * VMA has the VM_RAND_READ f << 
3396                  * arose. Let's read it in di << 
3397                  */                           << 
3398                 goto page_not_uptodate;          2475                 goto page_not_uptodate;
3399         }                                     << 
3400                                               << 
3401         /*                                    << 
3402          * We've made it this far and we had  << 
3403          * time to return to the upper layer  << 
3404          * redo the fault.                    << 
3405          */                                   << 
3406         if (fpin) {                           << 
3407                 folio_unlock(folio);          << 
3408                 goto out_retry;               << 
3409         }                                     << 
3410         if (mapping_locked)                   << 
3411                 filemap_invalidate_unlock_sha << 
3412                                                  2476 
3413         /*                                       2477         /*
3414          * Found the page and have a referenc    2478          * Found the page and have a reference on it.
3415          * We must recheck i_size under page     2479          * We must recheck i_size under page lock.
3416          */                                      2480          */
3417         max_idx = DIV_ROUND_UP(i_size_read(in !! 2481         max_off = DIV_ROUND_UP(i_size_read(inode), PAGE_SIZE);
3418         if (unlikely(index >= max_idx)) {     !! 2482         if (unlikely(offset >= max_off)) {
3419                 folio_unlock(folio);          !! 2483                 unlock_page(page);
3420                 folio_put(folio);             !! 2484                 put_page(page);
3421                 return VM_FAULT_SIGBUS;          2485                 return VM_FAULT_SIGBUS;
3422         }                                        2486         }
3423                                                  2487 
3424         vmf->page = folio_file_page(folio, in !! 2488         vmf->page = page;
3425         return ret | VM_FAULT_LOCKED;            2489         return ret | VM_FAULT_LOCKED;
3426                                                  2490 
                                                   >> 2491 no_cached_page:
                                                   >> 2492         /*
                                                   >> 2493          * We're only likely to ever get here if MADV_RANDOM is in
                                                   >> 2494          * effect.
                                                   >> 2495          */
                                                   >> 2496         error = page_cache_read(file, offset, vmf->gfp_mask);
                                                   >> 2497 
                                                   >> 2498         /*
                                                   >> 2499          * The page we want has now been added to the page cache.
                                                   >> 2500          * In the unlikely event that someone removed it in the
                                                   >> 2501          * meantime, we'll just come back here and read it again.
                                                   >> 2502          */
                                                   >> 2503         if (error >= 0)
                                                   >> 2504                 goto retry_find;
                                                   >> 2505 
                                                   >> 2506         /*
                                                   >> 2507          * An error return from page_cache_read can result if the
                                                   >> 2508          * system is low on memory, or a problem occurs while trying
                                                   >> 2509          * to schedule I/O.
                                                   >> 2510          */
                                                   >> 2511         return vmf_error(error);
                                                   >> 2512 
3427 page_not_uptodate:                               2513 page_not_uptodate:
3428         /*                                       2514         /*
3429          * Umm, take care of errors if the pa    2515          * Umm, take care of errors if the page isn't up-to-date.
3430          * Try to re-read it _once_. We do th    2516          * Try to re-read it _once_. We do this synchronously,
3431          * because there really aren't any pe    2517          * because there really aren't any performance issues here
3432          * and we need to check for errors.      2518          * and we need to check for errors.
3433          */                                      2519          */
3434         fpin = maybe_unlock_mmap_for_io(vmf,  !! 2520         ClearPageError(page);
3435         error = filemap_read_folio(file, mapp !! 2521         error = mapping->a_ops->readpage(file, page);
3436         if (fpin)                             !! 2522         if (!error) {
3437                 goto out_retry;               !! 2523                 wait_on_page_locked(page);
3438         folio_put(folio);                     !! 2524                 if (!PageUptodate(page))
                                                   >> 2525                         error = -EIO;
                                                   >> 2526         }
                                                   >> 2527         put_page(page);
3439                                                  2528 
3440         if (!error || error == AOP_TRUNCATED_    2529         if (!error || error == AOP_TRUNCATED_PAGE)
3441                 goto retry_find;                 2530                 goto retry_find;
3442         filemap_invalidate_unlock_shared(mapp << 
3443                                                  2531 
                                                   >> 2532         /* Things didn't work out. Return zero to tell the mm layer so. */
                                                   >> 2533         shrink_readahead_size_eio(file, ra);
3444         return VM_FAULT_SIGBUS;                  2534         return VM_FAULT_SIGBUS;
3445                                               << 
3446 out_retry:                                    << 
3447         /*                                    << 
3448          * We dropped the mmap_lock, we need  << 
3449          * re-find the vma and come back and  << 
3450          * page.                              << 
3451          */                                   << 
3452         if (!IS_ERR(folio))                   << 
3453                 folio_put(folio);             << 
3454         if (mapping_locked)                   << 
3455                 filemap_invalidate_unlock_sha << 
3456         if (fpin)                             << 
3457                 fput(fpin);                   << 
3458         return ret | VM_FAULT_RETRY;          << 
3459 }                                                2535 }
3460 EXPORT_SYMBOL(filemap_fault);                    2536 EXPORT_SYMBOL(filemap_fault);
3461                                                  2537 
3462 static bool filemap_map_pmd(struct vm_fault * !! 2538 void filemap_map_pages(struct vm_fault *vmf,
3463                 pgoff_t start)                !! 2539                 pgoff_t start_pgoff, pgoff_t end_pgoff)
3464 {                                             << 
3465         struct mm_struct *mm = vmf->vma->vm_m << 
3466                                               << 
3467         /* Huge page is mapped? No need to pr << 
3468         if (pmd_trans_huge(*vmf->pmd)) {      << 
3469                 folio_unlock(folio);          << 
3470                 folio_put(folio);             << 
3471                 return true;                  << 
3472         }                                     << 
3473                                               << 
3474         if (pmd_none(*vmf->pmd) && folio_test << 
3475                 struct page *page = folio_fil << 
3476                 vm_fault_t ret = do_set_pmd(v << 
3477                 if (!ret) {                   << 
3478                         /* The page is mapped << 
3479                         folio_unlock(folio);  << 
3480                         return true;          << 
3481                 }                             << 
3482         }                                     << 
3483                                               << 
3484         if (pmd_none(*vmf->pmd) && vmf->preal << 
3485                 pmd_install(mm, vmf->pmd, &vm << 
3486                                               << 
3487         return false;                         << 
3488 }                                             << 
3489                                               << 
3490 static struct folio *next_uptodate_folio(stru << 
3491                 struct address_space *mapping << 
3492 {                                                2540 {
3493         struct folio *folio = xas_next_entry( !! 2541         struct file *file = vmf->vma->vm_file;
                                                   >> 2542         struct address_space *mapping = file->f_mapping;
                                                   >> 2543         pgoff_t last_pgoff = start_pgoff;
3494         unsigned long max_idx;                   2544         unsigned long max_idx;
                                                   >> 2545         XA_STATE(xas, &mapping->i_pages, start_pgoff);
                                                   >> 2546         struct page *head, *page;
3495                                                  2547 
3496         do {                                  !! 2548         rcu_read_lock();
3497                 if (!folio)                   !! 2549         xas_for_each(&xas, page, end_pgoff) {
3498                         return NULL;          !! 2550                 if (xas_retry(&xas, page))
3499                 if (xas_retry(xas, folio))    << 
3500                         continue;             << 
3501                 if (xa_is_value(folio))       << 
3502                         continue;             << 
3503                 if (folio_test_locked(folio)) << 
3504                         continue;             << 
3505                 if (!folio_try_get(folio))    << 
3506                         continue;                2551                         continue;
3507                 /* Has the page moved or been !! 2552                 if (xa_is_value(page))
3508                 if (unlikely(folio != xas_rel !! 2553                         goto next;
3509                         goto skip;            << 
3510                 if (!folio_test_uptodate(foli << 
3511                         goto skip;            << 
3512                 if (!folio_trylock(folio))    << 
3513                         goto skip;            << 
3514                 if (folio->mapping != mapping << 
3515                         goto unlock;          << 
3516                 if (!folio_test_uptodate(foli << 
3517                         goto unlock;          << 
3518                 max_idx = DIV_ROUND_UP(i_size << 
3519                 if (xas->xa_index >= max_idx) << 
3520                         goto unlock;          << 
3521                 return folio;                 << 
3522 unlock:                                       << 
3523                 folio_unlock(folio);          << 
3524 skip:                                         << 
3525                 folio_put(folio);             << 
3526         } while ((folio = xas_next_entry(xas, << 
3527                                                  2554 
3528         return NULL;                          !! 2555                 head = compound_head(page);
3529 }                                             !! 2556                 if (!page_cache_get_speculative(head))
                                                   >> 2557                         goto next;
3530                                                  2558 
3531 /*                                            !! 2559                 /* The page was split under us? */
3532  * Map page range [start_page, start_page + n !! 2560                 if (compound_head(page) != head)
3533  * start_page is gotten from start by folio_p << 
3534  */                                           << 
3535 static vm_fault_t filemap_map_folio_range(str << 
3536                         struct folio *folio,  << 
3537                         unsigned long addr, u << 
3538                         unsigned long *rss, u << 
3539 {                                             << 
3540         vm_fault_t ret = 0;                   << 
3541         struct page *page = folio_page(folio, << 
3542         unsigned int count = 0;               << 
3543         pte_t *old_ptep = vmf->pte;           << 
3544                                               << 
3545         do {                                  << 
3546                 if (PageHWPoison(page + count << 
3547                         goto skip;               2561                         goto skip;
3548                                                  2562 
3549                 /*                            !! 2563                 /* Has the page moved? */
3550                  * If there are too many foli !! 2564                 if (unlikely(page != xas_reload(&xas)))
3551                  * in a file, they will proba << 
3552                  * In such situation, read-ah << 
3553                  * Don't decrease mmap_miss i << 
3554                  * we can stop read-ahead.    << 
3555                  */                           << 
3556                 if (!folio_test_workingset(fo << 
3557                         (*mmap_miss)++;       << 
3558                                               << 
3559                 /*                            << 
3560                  * NOTE: If there're PTE mark << 
3561                  * handled in the specific fa << 
3562                  * fault-around logic.        << 
3563                  */                           << 
3564                 if (!pte_none(ptep_get(&vmf-> << 
3565                         goto skip;               2565                         goto skip;
3566                                                  2566 
3567                 count++;                      !! 2567                 if (!PageUptodate(page) ||
3568                 continue;                     !! 2568                                 PageReadahead(page) ||
3569 skip:                                         !! 2569                                 PageHWPoison(page))
3570                 if (count) {                  !! 2570                         goto skip;
3571                         set_pte_range(vmf, fo !! 2571                 if (!trylock_page(page))
3572                         *rss += count;        !! 2572                         goto skip;
3573                         folio_ref_add(folio,  << 
3574                         if (in_range(vmf->add << 
3575                                 ret = VM_FAUL << 
3576                 }                             << 
3577                                               << 
3578                 count++;                      << 
3579                 page += count;                << 
3580                 vmf->pte += count;            << 
3581                 addr += count * PAGE_SIZE;    << 
3582                 count = 0;                    << 
3583         } while (--nr_pages > 0);             << 
3584                                               << 
3585         if (count) {                          << 
3586                 set_pte_range(vmf, folio, pag << 
3587                 *rss += count;                << 
3588                 folio_ref_add(folio, count);  << 
3589                 if (in_range(vmf->address, ad << 
3590                         ret = VM_FAULT_NOPAGE << 
3591         }                                     << 
3592                                               << 
3593         vmf->pte = old_ptep;                  << 
3594                                               << 
3595         return ret;                           << 
3596 }                                             << 
3597                                               << 
3598 static vm_fault_t filemap_map_order0_folio(st << 
3599                 struct folio *folio, unsigned << 
3600                 unsigned long *rss, unsigned  << 
3601 {                                             << 
3602         vm_fault_t ret = 0;                   << 
3603         struct page *page = &folio->page;     << 
3604                                               << 
3605         if (PageHWPoison(page))               << 
3606                 return ret;                   << 
3607                                               << 
3608         /* See comment of filemap_map_folio_r << 
3609         if (!folio_test_workingset(folio))    << 
3610                 (*mmap_miss)++;               << 
3611                                               << 
3612         /*                                    << 
3613          * NOTE: If there're PTE markers, we' << 
3614          * handled in the specific fault path << 
3615          * the fault-around logic.            << 
3616          */                                   << 
3617         if (!pte_none(ptep_get(vmf->pte)))    << 
3618                 return ret;                   << 
3619                                               << 
3620         if (vmf->address == addr)             << 
3621                 ret = VM_FAULT_NOPAGE;        << 
3622                                               << 
3623         set_pte_range(vmf, folio, page, 1, ad << 
3624         (*rss)++;                             << 
3625         folio_ref_inc(folio);                 << 
3626                                               << 
3627         return ret;                           << 
3628 }                                             << 
3629                                               << 
3630 vm_fault_t filemap_map_pages(struct vm_fault  << 
3631                              pgoff_t start_pg << 
3632 {                                             << 
3633         struct vm_area_struct *vma = vmf->vma << 
3634         struct file *file = vma->vm_file;     << 
3635         struct address_space *mapping = file- << 
3636         pgoff_t file_end, last_pgoff = start_ << 
3637         unsigned long addr;                   << 
3638         XA_STATE(xas, &mapping->i_pages, star << 
3639         struct folio *folio;                  << 
3640         vm_fault_t ret = 0;                   << 
3641         unsigned long rss = 0;                << 
3642         unsigned int nr_pages = 0, mmap_miss  << 
3643                                               << 
3644         rcu_read_lock();                      << 
3645         folio = next_uptodate_folio(&xas, map << 
3646         if (!folio)                           << 
3647                 goto out;                     << 
3648                                               << 
3649         if (filemap_map_pmd(vmf, folio, start << 
3650                 ret = VM_FAULT_NOPAGE;        << 
3651                 goto out;                     << 
3652         }                                     << 
3653                                                  2573 
3654         addr = vma->vm_start + ((start_pgoff  !! 2574                 if (page->mapping != mapping || !PageUptodate(page))
3655         vmf->pte = pte_offset_map_lock(vma->v !! 2575                         goto unlock;
3656         if (!vmf->pte) {                      << 
3657                 folio_unlock(folio);          << 
3658                 folio_put(folio);             << 
3659                 goto out;                     << 
3660         }                                     << 
3661                                                  2576 
3662         file_end = DIV_ROUND_UP(i_size_read(m !! 2577                 max_idx = DIV_ROUND_UP(i_size_read(mapping->host), PAGE_SIZE);
3663         if (end_pgoff > file_end)             !! 2578                 if (page->index >= max_idx)
3664                 end_pgoff = file_end;         !! 2579                         goto unlock;
3665                                                  2580 
3666         folio_type = mm_counter_file(folio);  !! 2581                 if (file->f_ra.mmap_miss > 0)
3667         do {                                  !! 2582                         file->f_ra.mmap_miss--;
3668                 unsigned long end;            << 
3669                                                  2583 
3670                 addr += (xas.xa_index - last_ !! 2584                 vmf->address += (xas.xa_index - last_pgoff) << PAGE_SHIFT;
3671                 vmf->pte += xas.xa_index - la !! 2585                 if (vmf->pte)
                                                   >> 2586                         vmf->pte += xas.xa_index - last_pgoff;
3672                 last_pgoff = xas.xa_index;       2587                 last_pgoff = xas.xa_index;
3673                 end = folio_next_index(folio) !! 2588                 if (alloc_set_pte(vmf, NULL, page))
3674                 nr_pages = min(end, end_pgoff !! 2589                         goto unlock;
3675                                               !! 2590                 unlock_page(page);
3676                 if (!folio_test_large(folio)) !! 2591                 goto next;
3677                         ret |= filemap_map_or !! 2592 unlock:
3678                                         folio !! 2593                 unlock_page(page);
3679                 else                          !! 2594 skip:
3680                         ret |= filemap_map_fo !! 2595                 put_page(page);
3681                                         xas.x !! 2596 next:
3682                                         nr_pa !! 2597                 /* Huge page is mapped? No need to proceed. */
3683                                               !! 2598                 if (pmd_trans_huge(*vmf->pmd))
3684                 folio_unlock(folio);          !! 2599                         break;
3685                 folio_put(folio);             !! 2600         }
3686         } while ((folio = next_uptodate_folio << 
3687         add_mm_counter(vma->vm_mm, folio_type << 
3688         pte_unmap_unlock(vmf->pte, vmf->ptl); << 
3689         trace_mm_filemap_map_pages(mapping, s << 
3690 out:                                          << 
3691         rcu_read_unlock();                       2601         rcu_read_unlock();
3692                                               << 
3693         mmap_miss_saved = READ_ONCE(file->f_r << 
3694         if (mmap_miss >= mmap_miss_saved)     << 
3695                 WRITE_ONCE(file->f_ra.mmap_mi << 
3696         else                                  << 
3697                 WRITE_ONCE(file->f_ra.mmap_mi << 
3698                                               << 
3699         return ret;                           << 
3700 }                                                2602 }
3701 EXPORT_SYMBOL(filemap_map_pages);                2603 EXPORT_SYMBOL(filemap_map_pages);
3702                                                  2604 
3703 vm_fault_t filemap_page_mkwrite(struct vm_fau    2605 vm_fault_t filemap_page_mkwrite(struct vm_fault *vmf)
3704 {                                                2606 {
3705         struct address_space *mapping = vmf-> !! 2607         struct page *page = vmf->page;
3706         struct folio *folio = page_folio(vmf- !! 2608         struct inode *inode = file_inode(vmf->vma->vm_file);
3707         vm_fault_t ret = VM_FAULT_LOCKED;        2609         vm_fault_t ret = VM_FAULT_LOCKED;
3708                                                  2610 
3709         sb_start_pagefault(mapping->host->i_s !! 2611         sb_start_pagefault(inode->i_sb);
3710         file_update_time(vmf->vma->vm_file);     2612         file_update_time(vmf->vma->vm_file);
3711         folio_lock(folio);                    !! 2613         lock_page(page);
3712         if (folio->mapping != mapping) {      !! 2614         if (page->mapping != inode->i_mapping) {
3713                 folio_unlock(folio);          !! 2615                 unlock_page(page);
3714                 ret = VM_FAULT_NOPAGE;           2616                 ret = VM_FAULT_NOPAGE;
3715                 goto out;                        2617                 goto out;
3716         }                                        2618         }
3717         /*                                       2619         /*
3718          * We mark the folio dirty already he !! 2620          * We mark the page dirty already here so that when freeze is in
3719          * progress, we are guaranteed that w    2621          * progress, we are guaranteed that writeback during freezing will
3720          * see the dirty folio and writeprote !! 2622          * see the dirty page and writeprotect it again.
3721          */                                      2623          */
3722         folio_mark_dirty(folio);              !! 2624         set_page_dirty(page);
3723         folio_wait_stable(folio);             !! 2625         wait_for_stable_page(page);
3724 out:                                             2626 out:
3725         sb_end_pagefault(mapping->host->i_sb) !! 2627         sb_end_pagefault(inode->i_sb);
3726         return ret;                              2628         return ret;
3727 }                                                2629 }
3728                                                  2630 
3729 const struct vm_operations_struct generic_fil    2631 const struct vm_operations_struct generic_file_vm_ops = {
3730         .fault          = filemap_fault,         2632         .fault          = filemap_fault,
3731         .map_pages      = filemap_map_pages,     2633         .map_pages      = filemap_map_pages,
3732         .page_mkwrite   = filemap_page_mkwrit    2634         .page_mkwrite   = filemap_page_mkwrite,
3733 };                                               2635 };
3734                                                  2636 
3735 /* This is used for a general mmap of a disk     2637 /* This is used for a general mmap of a disk file */
3736                                                  2638 
3737 int generic_file_mmap(struct file *file, stru !! 2639 int generic_file_mmap(struct file * file, struct vm_area_struct * vma)
3738 {                                                2640 {
3739         struct address_space *mapping = file-    2641         struct address_space *mapping = file->f_mapping;
3740                                                  2642 
3741         if (!mapping->a_ops->read_folio)      !! 2643         if (!mapping->a_ops->readpage)
3742                 return -ENOEXEC;                 2644                 return -ENOEXEC;
3743         file_accessed(file);                     2645         file_accessed(file);
3744         vma->vm_ops = &generic_file_vm_ops;      2646         vma->vm_ops = &generic_file_vm_ops;
3745         return 0;                                2647         return 0;
3746 }                                                2648 }
3747                                                  2649 
3748 /*                                               2650 /*
3749  * This is for filesystems which do not imple    2651  * This is for filesystems which do not implement ->writepage.
3750  */                                              2652  */
3751 int generic_file_readonly_mmap(struct file *f    2653 int generic_file_readonly_mmap(struct file *file, struct vm_area_struct *vma)
3752 {                                                2654 {
3753         if (vma_is_shared_maywrite(vma))      !! 2655         if ((vma->vm_flags & VM_SHARED) && (vma->vm_flags & VM_MAYWRITE))
3754                 return -EINVAL;                  2656                 return -EINVAL;
3755         return generic_file_mmap(file, vma);     2657         return generic_file_mmap(file, vma);
3756 }                                                2658 }
3757 #else                                            2659 #else
3758 vm_fault_t filemap_page_mkwrite(struct vm_fau    2660 vm_fault_t filemap_page_mkwrite(struct vm_fault *vmf)
3759 {                                                2661 {
3760         return VM_FAULT_SIGBUS;                  2662         return VM_FAULT_SIGBUS;
3761 }                                                2663 }
3762 int generic_file_mmap(struct file *file, stru !! 2664 int generic_file_mmap(struct file * file, struct vm_area_struct * vma)
3763 {                                                2665 {
3764         return -ENOSYS;                          2666         return -ENOSYS;
3765 }                                                2667 }
3766 int generic_file_readonly_mmap(struct file *f !! 2668 int generic_file_readonly_mmap(struct file * file, struct vm_area_struct * vma)
3767 {                                                2669 {
3768         return -ENOSYS;                          2670         return -ENOSYS;
3769 }                                                2671 }
3770 #endif /* CONFIG_MMU */                          2672 #endif /* CONFIG_MMU */
3771                                                  2673 
3772 EXPORT_SYMBOL(filemap_page_mkwrite);             2674 EXPORT_SYMBOL(filemap_page_mkwrite);
3773 EXPORT_SYMBOL(generic_file_mmap);                2675 EXPORT_SYMBOL(generic_file_mmap);
3774 EXPORT_SYMBOL(generic_file_readonly_mmap);       2676 EXPORT_SYMBOL(generic_file_readonly_mmap);
3775                                                  2677 
3776 static struct folio *do_read_cache_folio(stru !! 2678 static struct page *wait_on_page_read(struct page *page)
3777                 pgoff_t index, filler_t fille << 
3778 {                                                2679 {
3779         struct folio *folio;                  !! 2680         if (!IS_ERR(page)) {
3780         int err;                              !! 2681                 wait_on_page_locked(page);
                                                   >> 2682                 if (!PageUptodate(page)) {
                                                   >> 2683                         put_page(page);
                                                   >> 2684                         page = ERR_PTR(-EIO);
                                                   >> 2685                 }
                                                   >> 2686         }
                                                   >> 2687         return page;
                                                   >> 2688 }
3781                                                  2689 
3782         if (!filler)                          !! 2690 static struct page *do_read_cache_page(struct address_space *mapping,
3783                 filler = mapping->a_ops->read !! 2691                                 pgoff_t index,
                                                   >> 2692                                 int (*filler)(void *, struct page *),
                                                   >> 2693                                 void *data,
                                                   >> 2694                                 gfp_t gfp)
                                                   >> 2695 {
                                                   >> 2696         struct page *page;
                                                   >> 2697         int err;
3784 repeat:                                          2698 repeat:
3785         folio = filemap_get_folio(mapping, in !! 2699         page = find_get_page(mapping, index);
3786         if (IS_ERR(folio)) {                  !! 2700         if (!page) {
3787                 folio = filemap_alloc_folio(g !! 2701                 page = __page_cache_alloc(gfp);
3788                                             m !! 2702                 if (!page)
3789                 if (!folio)                   << 
3790                         return ERR_PTR(-ENOME    2703                         return ERR_PTR(-ENOMEM);
3791                 index = mapping_align_index(m !! 2704                 err = add_to_page_cache_lru(page, mapping, index, gfp);
3792                 err = filemap_add_folio(mappi << 
3793                 if (unlikely(err)) {             2705                 if (unlikely(err)) {
3794                         folio_put(folio);     !! 2706                         put_page(page);
3795                         if (err == -EEXIST)      2707                         if (err == -EEXIST)
3796                                 goto repeat;     2708                                 goto repeat;
3797                         /* Presumably ENOMEM     2709                         /* Presumably ENOMEM for xarray node */
3798                         return ERR_PTR(err);     2710                         return ERR_PTR(err);
3799                 }                                2711                 }
3800                                                  2712 
3801                 goto filler;                  !! 2713 filler:
                                                   >> 2714                 err = filler(data, page);
                                                   >> 2715                 if (err < 0) {
                                                   >> 2716                         put_page(page);
                                                   >> 2717                         return ERR_PTR(err);
                                                   >> 2718                 }
                                                   >> 2719 
                                                   >> 2720                 page = wait_on_page_read(page);
                                                   >> 2721                 if (IS_ERR(page))
                                                   >> 2722                         return page;
                                                   >> 2723                 goto out;
3802         }                                        2724         }
3803         if (folio_test_uptodate(folio))       !! 2725         if (PageUptodate(page))
3804                 goto out;                        2726                 goto out;
3805                                                  2727 
3806         if (!folio_trylock(folio)) {          !! 2728         /*
3807                 folio_put_wait_locked(folio,  !! 2729          * Page is not up to date and may be locked due one of the following
3808                 goto repeat;                  !! 2730          * case a: Page is being filled and the page lock is held
3809         }                                     !! 2731          * case b: Read/write error clearing the page uptodate status
                                                   >> 2732          * case c: Truncation in progress (page locked)
                                                   >> 2733          * case d: Reclaim in progress
                                                   >> 2734          *
                                                   >> 2735          * Case a, the page will be up to date when the page is unlocked.
                                                   >> 2736          *    There is no need to serialise on the page lock here as the page
                                                   >> 2737          *    is pinned so the lock gives no additional protection. Even if the
                                                   >> 2738          *    the page is truncated, the data is still valid if PageUptodate as
                                                   >> 2739          *    it's a race vs truncate race.
                                                   >> 2740          * Case b, the page will not be up to date
                                                   >> 2741          * Case c, the page may be truncated but in itself, the data may still
                                                   >> 2742          *    be valid after IO completes as it's a read vs truncate race. The
                                                   >> 2743          *    operation must restart if the page is not uptodate on unlock but
                                                   >> 2744          *    otherwise serialising on page lock to stabilise the mapping gives
                                                   >> 2745          *    no additional guarantees to the caller as the page lock is
                                                   >> 2746          *    released before return.
                                                   >> 2747          * Case d, similar to truncation. If reclaim holds the page lock, it
                                                   >> 2748          *    will be a race with remove_mapping that determines if the mapping
                                                   >> 2749          *    is valid on unlock but otherwise the data is valid and there is
                                                   >> 2750          *    no need to serialise with page lock.
                                                   >> 2751          *
                                                   >> 2752          * As the page lock gives no additional guarantee, we optimistically
                                                   >> 2753          * wait on the page to be unlocked and check if it's up to date and
                                                   >> 2754          * use the page if it is. Otherwise, the page lock is required to
                                                   >> 2755          * distinguish between the different cases. The motivation is that we
                                                   >> 2756          * avoid spurious serialisations and wakeups when multiple processes
                                                   >> 2757          * wait on the same page for IO to complete.
                                                   >> 2758          */
                                                   >> 2759         wait_on_page_locked(page);
                                                   >> 2760         if (PageUptodate(page))
                                                   >> 2761                 goto out;
3810                                                  2762 
3811         /* Folio was truncated from mapping * !! 2763         /* Distinguish between all the cases under the safety of the lock */
3812         if (!folio->mapping) {                !! 2764         lock_page(page);
3813                 folio_unlock(folio);          !! 2765 
3814                 folio_put(folio);             !! 2766         /* Case c or d, restart the operation */
                                                   >> 2767         if (!page->mapping) {
                                                   >> 2768                 unlock_page(page);
                                                   >> 2769                 put_page(page);
3815                 goto repeat;                     2770                 goto repeat;
3816         }                                        2771         }
3817                                                  2772 
3818         /* Someone else locked and filled the    2773         /* Someone else locked and filled the page in a very small window */
3819         if (folio_test_uptodate(folio)) {     !! 2774         if (PageUptodate(page)) {
3820                 folio_unlock(folio);          !! 2775                 unlock_page(page);
3821                 goto out;                        2776                 goto out;
3822         }                                        2777         }
3823                                               !! 2778         goto filler;
3824 filler:                                       << 
3825         err = filemap_read_folio(file, filler << 
3826         if (err) {                            << 
3827                 folio_put(folio);             << 
3828                 if (err == AOP_TRUNCATED_PAGE << 
3829                         goto repeat;          << 
3830                 return ERR_PTR(err);          << 
3831         }                                     << 
3832                                                  2779 
3833 out:                                             2780 out:
3834         folio_mark_accessed(folio);           !! 2781         mark_page_accessed(page);
3835         return folio;                         !! 2782         return page;
3836 }                                             << 
3837                                               << 
3838 /**                                           << 
3839  * read_cache_folio - Read into page cache, f << 
3840  * @mapping: The address_space to read from.  << 
3841  * @index: The index to read.                 << 
3842  * @filler: Function to perform the read, or  << 
3843  * @file: Passed to filler function, may be N << 
3844  *                                            << 
3845  * Read one page into the page cache.  If it  << 
3846  * will contain @index, but it may not be the << 
3847  *                                            << 
3848  * If the filler function returns an error, i << 
3849  * caller.                                    << 
3850  *                                            << 
3851  * Context: May sleep.  Expects mapping->inva << 
3852  * Return: An uptodate folio on success, ERR_ << 
3853  */                                           << 
3854 struct folio *read_cache_folio(struct address << 
3855                 filler_t filler, struct file  << 
3856 {                                             << 
3857         return do_read_cache_folio(mapping, i << 
3858                         mapping_gfp_mask(mapp << 
3859 }                                                2783 }
3860 EXPORT_SYMBOL(read_cache_folio);              << 
3861                                                  2784 
3862 /**                                              2785 /**
3863  * mapping_read_folio_gfp - Read into page ca !! 2786  * read_cache_page - read into page cache, fill it if needed
3864  * @mapping:    The address_space for the fol !! 2787  * @mapping:    the page's address_space
3865  * @index:      The index that the allocated  !! 2788  * @index:      the page index
3866  * @gfp:        The page allocator flags to u !! 2789  * @filler:     function to perform the read
3867  *                                            !! 2790  * @data:       first arg to filler(data, page) function, often left as NULL
3868  * This is the same as "read_cache_folio(mapp << 
3869  * any new memory allocations done using the  << 
3870  *                                            << 
3871  * The most likely error from this function i << 
3872  * possible and so is EINTR.  If ->read_folio << 
3873  * that will be returned to the caller.       << 
3874  *                                               2791  *
3875  * The function expects mapping->invalidate_l !! 2792  * Read into the page cache. If a page already exists, and PageUptodate() is
                                                   >> 2793  * not set, try to fill the page and wait for it to become unlocked.
3876  *                                               2794  *
3877  * Return: Uptodate folio on success, ERR_PTR !! 2795  * If the page does not get brought uptodate, return -EIO.
3878  */                                              2796  */
3879 struct folio *mapping_read_folio_gfp(struct a << 
3880                 pgoff_t index, gfp_t gfp)     << 
3881 {                                             << 
3882         return do_read_cache_folio(mapping, i << 
3883 }                                             << 
3884 EXPORT_SYMBOL(mapping_read_folio_gfp);        << 
3885                                               << 
3886 static struct page *do_read_cache_page(struct << 
3887                 pgoff_t index, filler_t *fill << 
3888 {                                             << 
3889         struct folio *folio;                  << 
3890                                               << 
3891         folio = do_read_cache_folio(mapping,  << 
3892         if (IS_ERR(folio))                    << 
3893                 return &folio->page;          << 
3894         return folio_file_page(folio, index); << 
3895 }                                             << 
3896                                               << 
3897 struct page *read_cache_page(struct address_s    2797 struct page *read_cache_page(struct address_space *mapping,
3898                         pgoff_t index, filler !! 2798                                 pgoff_t index,
                                                   >> 2799                                 int (*filler)(void *, struct page *),
                                                   >> 2800                                 void *data)
3899 {                                                2801 {
3900         return do_read_cache_page(mapping, in !! 2802         return do_read_cache_page(mapping, index, filler, data, mapping_gfp_mask(mapping));
3901                         mapping_gfp_mask(mapp << 
3902 }                                                2803 }
3903 EXPORT_SYMBOL(read_cache_page);                  2804 EXPORT_SYMBOL(read_cache_page);
3904                                                  2805 
3905 /**                                              2806 /**
3906  * read_cache_page_gfp - read into page cache    2807  * read_cache_page_gfp - read into page cache, using specified page allocation flags.
3907  * @mapping:    the page's address_space         2808  * @mapping:    the page's address_space
3908  * @index:      the page index                   2809  * @index:      the page index
3909  * @gfp:        the page allocator flags to u    2810  * @gfp:        the page allocator flags to use if allocating
3910  *                                               2811  *
3911  * This is the same as "read_mapping_page(map    2812  * This is the same as "read_mapping_page(mapping, index, NULL)", but with
3912  * any new page allocations done using the sp    2813  * any new page allocations done using the specified allocation flags.
3913  *                                               2814  *
3914  * If the page does not get brought uptodate,    2815  * If the page does not get brought uptodate, return -EIO.
3915  *                                            << 
3916  * The function expects mapping->invalidate_l << 
3917  *                                            << 
3918  * Return: up to date page on success, ERR_PT << 
3919  */                                              2816  */
3920 struct page *read_cache_page_gfp(struct addre    2817 struct page *read_cache_page_gfp(struct address_space *mapping,
3921                                 pgoff_t index    2818                                 pgoff_t index,
3922                                 gfp_t gfp)       2819                                 gfp_t gfp)
3923 {                                                2820 {
3924         return do_read_cache_page(mapping, in !! 2821         filler_t *filler = (filler_t *)mapping->a_ops->readpage;
                                                   >> 2822 
                                                   >> 2823         return do_read_cache_page(mapping, index, filler, NULL, gfp);
3925 }                                                2824 }
3926 EXPORT_SYMBOL(read_cache_page_gfp);              2825 EXPORT_SYMBOL(read_cache_page_gfp);
3927                                                  2826 
3928 /*                                               2827 /*
3929  * Warn about a page cache invalidation failu !! 2828  * Don't operate on ranges the page cache doesn't support, and don't exceed the
                                                   >> 2829  * LFS limits.  If pos is under the limit it becomes a short access.  If it
                                                   >> 2830  * exceeds the limit we return -EFBIG.
3930  */                                              2831  */
3931 static void dio_warn_stale_pagecache(struct f !! 2832 static int generic_access_check_limits(struct file *file, loff_t pos,
                                                   >> 2833                                        loff_t *count)
                                                   >> 2834 {
                                                   >> 2835         struct inode *inode = file->f_mapping->host;
                                                   >> 2836         loff_t max_size = inode->i_sb->s_maxbytes;
                                                   >> 2837 
                                                   >> 2838         if (!(file->f_flags & O_LARGEFILE))
                                                   >> 2839                 max_size = MAX_NON_LFS;
                                                   >> 2840 
                                                   >> 2841         if (unlikely(pos >= max_size))
                                                   >> 2842                 return -EFBIG;
                                                   >> 2843         *count = min(*count, max_size - pos);
                                                   >> 2844         return 0;
                                                   >> 2845 }
                                                   >> 2846 
                                                   >> 2847 static int generic_write_check_limits(struct file *file, loff_t pos,
                                                   >> 2848                                       loff_t *count)
3932 {                                                2849 {
3933         static DEFINE_RATELIMIT_STATE(_rs, 86 !! 2850         loff_t limit = rlimit(RLIMIT_FSIZE);
3934         char pathname[128];                   << 
3935         char *path;                           << 
3936                                                  2851 
3937         errseq_set(&filp->f_mapping->wb_err,  !! 2852         if (limit != RLIM_INFINITY) {
3938         if (__ratelimit(&_rs)) {              !! 2853                 if (pos >= limit) {
3939                 path = file_path(filp, pathna !! 2854                         send_sig(SIGXFSZ, current, 0);
3940                 if (IS_ERR(path))             !! 2855                         return -EFBIG;
3941                         path = "(unknown)";   !! 2856                 }
3942                 pr_crit("Page cache invalidat !! 2857                 *count = min(*count, limit - pos);
3943                 pr_crit("File: %s PID: %d Com << 
3944                         current->comm);       << 
3945         }                                        2858         }
                                                   >> 2859 
                                                   >> 2860         return generic_access_check_limits(file, pos, count);
3946 }                                                2861 }
3947                                                  2862 
3948 void kiocb_invalidate_post_direct_write(struc !! 2863 /*
                                                   >> 2864  * Performs necessary checks before doing a write
                                                   >> 2865  *
                                                   >> 2866  * Can adjust writing position or amount of bytes to write.
                                                   >> 2867  * Returns appropriate error code that caller should return or
                                                   >> 2868  * zero in case that write should be allowed.
                                                   >> 2869  */
                                                   >> 2870 inline ssize_t generic_write_checks(struct kiocb *iocb, struct iov_iter *from)
3949 {                                                2871 {
3950         struct address_space *mapping = iocb- !! 2872         struct file *file = iocb->ki_filp;
                                                   >> 2873         struct inode *inode = file->f_mapping->host;
                                                   >> 2874         loff_t count;
                                                   >> 2875         int ret;
                                                   >> 2876 
                                                   >> 2877         if (!iov_iter_count(from))
                                                   >> 2878                 return 0;
                                                   >> 2879 
                                                   >> 2880         /* FIXME: this is for backwards compatibility with 2.4 */
                                                   >> 2881         if (iocb->ki_flags & IOCB_APPEND)
                                                   >> 2882                 iocb->ki_pos = i_size_read(inode);
3951                                                  2883 
3952         if (mapping->nrpages &&               !! 2884         if ((iocb->ki_flags & IOCB_NOWAIT) && !(iocb->ki_flags & IOCB_DIRECT))
3953             invalidate_inode_pages2_range(map !! 2885                 return -EINVAL;
3954                         iocb->ki_pos >> PAGE_ !! 2886 
3955                         (iocb->ki_pos + count !! 2887         count = iov_iter_count(from);
3956                 dio_warn_stale_pagecache(iocb !! 2888         ret = generic_write_check_limits(file, iocb->ki_pos, &count);
                                                   >> 2889         if (ret)
                                                   >> 2890                 return ret;
                                                   >> 2891 
                                                   >> 2892         iov_iter_truncate(from, count);
                                                   >> 2893         return iov_iter_count(from);
3957 }                                                2894 }
                                                   >> 2895 EXPORT_SYMBOL(generic_write_checks);
                                                   >> 2896 
                                                   >> 2897 /*
                                                   >> 2898  * Performs necessary checks before doing a clone.
                                                   >> 2899  *
                                                   >> 2900  * Can adjust amount of bytes to clone.
                                                   >> 2901  * Returns appropriate error code that caller should return or
                                                   >> 2902  * zero in case the clone should be allowed.
                                                   >> 2903  */
                                                   >> 2904 int generic_remap_checks(struct file *file_in, loff_t pos_in,
                                                   >> 2905                          struct file *file_out, loff_t pos_out,
                                                   >> 2906                          loff_t *req_count, unsigned int remap_flags)
                                                   >> 2907 {
                                                   >> 2908         struct inode *inode_in = file_in->f_mapping->host;
                                                   >> 2909         struct inode *inode_out = file_out->f_mapping->host;
                                                   >> 2910         uint64_t count = *req_count;
                                                   >> 2911         uint64_t bcount;
                                                   >> 2912         loff_t size_in, size_out;
                                                   >> 2913         loff_t bs = inode_out->i_sb->s_blocksize;
                                                   >> 2914         int ret;
                                                   >> 2915 
                                                   >> 2916         /* The start of both ranges must be aligned to an fs block. */
                                                   >> 2917         if (!IS_ALIGNED(pos_in, bs) || !IS_ALIGNED(pos_out, bs))
                                                   >> 2918                 return -EINVAL;
                                                   >> 2919 
                                                   >> 2920         /* Ensure offsets don't wrap. */
                                                   >> 2921         if (pos_in + count < pos_in || pos_out + count < pos_out)
                                                   >> 2922                 return -EINVAL;
                                                   >> 2923 
                                                   >> 2924         size_in = i_size_read(inode_in);
                                                   >> 2925         size_out = i_size_read(inode_out);
                                                   >> 2926 
                                                   >> 2927         /* Dedupe requires both ranges to be within EOF. */
                                                   >> 2928         if ((remap_flags & REMAP_FILE_DEDUP) &&
                                                   >> 2929             (pos_in >= size_in || pos_in + count > size_in ||
                                                   >> 2930              pos_out >= size_out || pos_out + count > size_out))
                                                   >> 2931                 return -EINVAL;
                                                   >> 2932 
                                                   >> 2933         /* Ensure the infile range is within the infile. */
                                                   >> 2934         if (pos_in >= size_in)
                                                   >> 2935                 return -EINVAL;
                                                   >> 2936         count = min(count, size_in - (uint64_t)pos_in);
                                                   >> 2937 
                                                   >> 2938         ret = generic_access_check_limits(file_in, pos_in, &count);
                                                   >> 2939         if (ret)
                                                   >> 2940                 return ret;
                                                   >> 2941 
                                                   >> 2942         ret = generic_write_check_limits(file_out, pos_out, &count);
                                                   >> 2943         if (ret)
                                                   >> 2944                 return ret;
                                                   >> 2945 
                                                   >> 2946         /*
                                                   >> 2947          * If the user wanted us to link to the infile's EOF, round up to the
                                                   >> 2948          * next block boundary for this check.
                                                   >> 2949          *
                                                   >> 2950          * Otherwise, make sure the count is also block-aligned, having
                                                   >> 2951          * already confirmed the starting offsets' block alignment.
                                                   >> 2952          */
                                                   >> 2953         if (pos_in + count == size_in) {
                                                   >> 2954                 bcount = ALIGN(size_in, bs) - pos_in;
                                                   >> 2955         } else {
                                                   >> 2956                 if (!IS_ALIGNED(count, bs))
                                                   >> 2957                         count = ALIGN_DOWN(count, bs);
                                                   >> 2958                 bcount = count;
                                                   >> 2959         }
                                                   >> 2960 
                                                   >> 2961         /* Don't allow overlapped cloning within the same file. */
                                                   >> 2962         if (inode_in == inode_out &&
                                                   >> 2963             pos_out + bcount > pos_in &&
                                                   >> 2964             pos_out < pos_in + bcount)
                                                   >> 2965                 return -EINVAL;
                                                   >> 2966 
                                                   >> 2967         /*
                                                   >> 2968          * We shortened the request but the caller can't deal with that, so
                                                   >> 2969          * bounce the request back to userspace.
                                                   >> 2970          */
                                                   >> 2971         if (*req_count != count && !(remap_flags & REMAP_FILE_CAN_SHORTEN))
                                                   >> 2972                 return -EINVAL;
                                                   >> 2973 
                                                   >> 2974         *req_count = count;
                                                   >> 2975         return 0;
                                                   >> 2976 }
                                                   >> 2977 
                                                   >> 2978 int pagecache_write_begin(struct file *file, struct address_space *mapping,
                                                   >> 2979                                 loff_t pos, unsigned len, unsigned flags,
                                                   >> 2980                                 struct page **pagep, void **fsdata)
                                                   >> 2981 {
                                                   >> 2982         const struct address_space_operations *aops = mapping->a_ops;
                                                   >> 2983 
                                                   >> 2984         return aops->write_begin(file, mapping, pos, len, flags,
                                                   >> 2985                                                         pagep, fsdata);
                                                   >> 2986 }
                                                   >> 2987 EXPORT_SYMBOL(pagecache_write_begin);
                                                   >> 2988 
                                                   >> 2989 int pagecache_write_end(struct file *file, struct address_space *mapping,
                                                   >> 2990                                 loff_t pos, unsigned len, unsigned copied,
                                                   >> 2991                                 struct page *page, void *fsdata)
                                                   >> 2992 {
                                                   >> 2993         const struct address_space_operations *aops = mapping->a_ops;
                                                   >> 2994 
                                                   >> 2995         return aops->write_end(file, mapping, pos, len, copied, page, fsdata);
                                                   >> 2996 }
                                                   >> 2997 EXPORT_SYMBOL(pagecache_write_end);
3958                                                  2998 
3959 ssize_t                                          2999 ssize_t
3960 generic_file_direct_write(struct kiocb *iocb,    3000 generic_file_direct_write(struct kiocb *iocb, struct iov_iter *from)
3961 {                                                3001 {
3962         struct address_space *mapping = iocb- !! 3002         struct file     *file = iocb->ki_filp;
3963         size_t write_len = iov_iter_count(fro !! 3003         struct address_space *mapping = file->f_mapping;
3964         ssize_t written;                      !! 3004         struct inode    *inode = mapping->host;
                                                   >> 3005         loff_t          pos = iocb->ki_pos;
                                                   >> 3006         ssize_t         written;
                                                   >> 3007         size_t          write_len;
                                                   >> 3008         pgoff_t         end;
3965                                                  3009 
                                                   >> 3010         write_len = iov_iter_count(from);
                                                   >> 3011         end = (pos + write_len - 1) >> PAGE_SHIFT;
                                                   >> 3012 
                                                   >> 3013         if (iocb->ki_flags & IOCB_NOWAIT) {
                                                   >> 3014                 /* If there are pages to writeback, return */
                                                   >> 3015                 if (filemap_range_has_page(inode->i_mapping, pos,
                                                   >> 3016                                            pos + write_len))
                                                   >> 3017                         return -EAGAIN;
                                                   >> 3018         } else {
                                                   >> 3019                 written = filemap_write_and_wait_range(mapping, pos,
                                                   >> 3020                                                         pos + write_len - 1);
                                                   >> 3021                 if (written)
                                                   >> 3022                         goto out;
                                                   >> 3023         }
                                                   >> 3024 
                                                   >> 3025         /*
                                                   >> 3026          * After a write we want buffered reads to be sure to go to disk to get
                                                   >> 3027          * the new data.  We invalidate clean cached page from the region we're
                                                   >> 3028          * about to write.  We do this *before* the write so that we can return
                                                   >> 3029          * without clobbering -EIOCBQUEUED from ->direct_IO().
                                                   >> 3030          */
                                                   >> 3031         written = invalidate_inode_pages2_range(mapping,
                                                   >> 3032                                         pos >> PAGE_SHIFT, end);
3966         /*                                       3033         /*
3967          * If a page can not be invalidated,     3034          * If a page can not be invalidated, return 0 to fall back
3968          * to buffered write.                    3035          * to buffered write.
3969          */                                      3036          */
3970         written = kiocb_invalidate_pages(iocb << 
3971         if (written) {                           3037         if (written) {
3972                 if (written == -EBUSY)           3038                 if (written == -EBUSY)
3973                         return 0;                3039                         return 0;
3974                 return written;               !! 3040                 goto out;
3975         }                                        3041         }
3976                                                  3042 
3977         written = mapping->a_ops->direct_IO(i    3043         written = mapping->a_ops->direct_IO(iocb, from);
3978                                                  3044 
3979         /*                                       3045         /*
3980          * Finally, try again to invalidate c    3046          * Finally, try again to invalidate clean pages which might have been
3981          * cached by non-direct readahead, or    3047          * cached by non-direct readahead, or faulted in by get_user_pages()
3982          * if the source of the write was an     3048          * if the source of the write was an mmap'ed region of the file
3983          * we're writing.  Either one is a pr    3049          * we're writing.  Either one is a pretty crazy thing to do,
3984          * so we don't support it 100%.  If t    3050          * so we don't support it 100%.  If this invalidation
3985          * fails, tough, the write still work    3051          * fails, tough, the write still worked...
3986          *                                       3052          *
3987          * Most of the time we do not need th    3053          * Most of the time we do not need this since dio_complete() will do
3988          * the invalidation for us. However t    3054          * the invalidation for us. However there are some file systems that
3989          * do not end up with dio_complete()     3055          * do not end up with dio_complete() being called, so let's not break
3990          * them by removing it completely.    !! 3056          * them by removing it completely
3991          *                                    << 
3992          * Noticeable example is a blkdev_dir << 
3993          *                                    << 
3994          * Skip invalidation for async writes << 
3995          */                                      3057          */
3996         if (written > 0) {                    !! 3058         if (mapping->nrpages)
3997                 struct inode *inode = mapping !! 3059                 invalidate_inode_pages2_range(mapping,
3998                 loff_t pos = iocb->ki_pos;    !! 3060                                         pos >> PAGE_SHIFT, end);
3999                                                  3061 
4000                 kiocb_invalidate_post_direct_ !! 3062         if (written > 0) {
4001                 pos += written;                  3063                 pos += written;
4002                 write_len -= written;            3064                 write_len -= written;
4003                 if (pos > i_size_read(inode)     3065                 if (pos > i_size_read(inode) && !S_ISBLK(inode->i_mode)) {
4004                         i_size_write(inode, p    3066                         i_size_write(inode, pos);
4005                         mark_inode_dirty(inod    3067                         mark_inode_dirty(inode);
4006                 }                                3068                 }
4007                 iocb->ki_pos = pos;              3069                 iocb->ki_pos = pos;
4008         }                                        3070         }
4009         if (written != -EIOCBQUEUED)          !! 3071         iov_iter_revert(from, write_len - iov_iter_count(from));
4010                 iov_iter_revert(from, write_l !! 3072 out:
4011         return written;                          3073         return written;
4012 }                                                3074 }
4013 EXPORT_SYMBOL(generic_file_direct_write);        3075 EXPORT_SYMBOL(generic_file_direct_write);
4014                                                  3076 
4015 ssize_t generic_perform_write(struct kiocb *i !! 3077 /*
                                                   >> 3078  * Find or create a page at the given pagecache position. Return the locked
                                                   >> 3079  * page. This function is specifically for buffered writes.
                                                   >> 3080  */
                                                   >> 3081 struct page *grab_cache_page_write_begin(struct address_space *mapping,
                                                   >> 3082                                         pgoff_t index, unsigned flags)
                                                   >> 3083 {
                                                   >> 3084         struct page *page;
                                                   >> 3085         int fgp_flags = FGP_LOCK|FGP_WRITE|FGP_CREAT;
                                                   >> 3086 
                                                   >> 3087         if (flags & AOP_FLAG_NOFS)
                                                   >> 3088                 fgp_flags |= FGP_NOFS;
                                                   >> 3089 
                                                   >> 3090         page = pagecache_get_page(mapping, index, fgp_flags,
                                                   >> 3091                         mapping_gfp_mask(mapping));
                                                   >> 3092         if (page)
                                                   >> 3093                 wait_for_stable_page(page);
                                                   >> 3094 
                                                   >> 3095         return page;
                                                   >> 3096 }
                                                   >> 3097 EXPORT_SYMBOL(grab_cache_page_write_begin);
                                                   >> 3098 
                                                   >> 3099 ssize_t generic_perform_write(struct file *file,
                                                   >> 3100                                 struct iov_iter *i, loff_t pos)
4016 {                                                3101 {
4017         struct file *file = iocb->ki_filp;    << 
4018         loff_t pos = iocb->ki_pos;            << 
4019         struct address_space *mapping = file-    3102         struct address_space *mapping = file->f_mapping;
4020         const struct address_space_operations    3103         const struct address_space_operations *a_ops = mapping->a_ops;
4021         size_t chunk = mapping_max_folio_size << 
4022         long status = 0;                         3104         long status = 0;
4023         ssize_t written = 0;                     3105         ssize_t written = 0;
                                                   >> 3106         unsigned int flags = 0;
4024                                                  3107 
4025         do {                                     3108         do {
4026                 struct folio *folio;          !! 3109                 struct page *page;
4027                 size_t offset;          /* Of !! 3110                 unsigned long offset;   /* Offset into pagecache page */
4028                 size_t bytes;           /* By !! 3111                 unsigned long bytes;    /* Bytes to write to page */
4029                 size_t copied;          /* By    3112                 size_t copied;          /* Bytes copied from user */
4030                 void *fsdata = NULL;          !! 3113                 void *fsdata;
4031                                                  3114 
4032                 bytes = iov_iter_count(i);    !! 3115                 offset = (pos & (PAGE_SIZE - 1));
4033 retry:                                        !! 3116                 bytes = min_t(unsigned long, PAGE_SIZE - offset,
4034                 offset = pos & (chunk - 1);   !! 3117                                                 iov_iter_count(i));
4035                 bytes = min(chunk - offset, b << 
4036                 balance_dirty_pages_ratelimit << 
4037                                                  3118 
                                                   >> 3119 again:
4038                 /*                               3120                 /*
4039                  * Bring in the user page tha    3121                  * Bring in the user page that we will copy from _first_.
4040                  * Otherwise there's a nasty     3122                  * Otherwise there's a nasty deadlock on copying from the
4041                  * same page as we're writing    3123                  * same page as we're writing to, without it being marked
4042                  * up-to-date.                   3124                  * up-to-date.
                                                   >> 3125                  *
                                                   >> 3126                  * Not only is this an optimisation, but it is also required
                                                   >> 3127                  * to check that the address is actually valid, when atomic
                                                   >> 3128                  * usercopies are used, below.
4043                  */                              3129                  */
4044                 if (unlikely(fault_in_iov_ite !! 3130                 if (unlikely(iov_iter_fault_in_readable(i, bytes))) {
4045                         status = -EFAULT;        3131                         status = -EFAULT;
4046                         break;                   3132                         break;
4047                 }                                3133                 }
4048                                                  3134 
4049                 if (fatal_signal_pending(curr    3135                 if (fatal_signal_pending(current)) {
4050                         status = -EINTR;         3136                         status = -EINTR;
4051                         break;                   3137                         break;
4052                 }                                3138                 }
4053                                                  3139 
4054                 status = a_ops->write_begin(f !! 3140                 status = a_ops->write_begin(file, mapping, pos, bytes, flags,
4055                                               !! 3141                                                 &page, &fsdata);
4056                 if (unlikely(status < 0))        3142                 if (unlikely(status < 0))
4057                         break;                   3143                         break;
4058                                                  3144 
4059                 offset = offset_in_folio(foli << 
4060                 if (bytes > folio_size(folio) << 
4061                         bytes = folio_size(fo << 
4062                                               << 
4063                 if (mapping_writably_mapped(m    3145                 if (mapping_writably_mapped(mapping))
4064                         flush_dcache_folio(fo !! 3146                         flush_dcache_page(page);
4065                                                  3147 
4066                 copied = copy_folio_from_iter !! 3148                 copied = iov_iter_copy_from_user_atomic(page, i, offset, bytes);
4067                 flush_dcache_folio(folio);    !! 3149                 flush_dcache_page(page);
4068                                                  3150 
4069                 status = a_ops->write_end(fil    3151                 status = a_ops->write_end(file, mapping, pos, bytes, copied,
4070                                               !! 3152                                                 page, fsdata);
4071                 if (unlikely(status != copied !! 3153                 if (unlikely(status < 0))
4072                         iov_iter_revert(i, co !! 3154                         break;
4073                         if (unlikely(status < !! 3155                 copied = status;
4074                                 break;        !! 3156 
4075                 }                             << 
4076                 cond_resched();                  3157                 cond_resched();
4077                                                  3158 
4078                 if (unlikely(status == 0)) {  !! 3159                 iov_iter_advance(i, copied);
                                                   >> 3160                 if (unlikely(copied == 0)) {
4079                         /*                       3161                         /*
4080                          * A short copy made  !! 3162                          * If we were unable to copy any data at all, we must
4081                          * thing entirely.  M !! 3163                          * fall back to a single segment length write.
4082                          * halfway through, m !! 3164                          *
4083                          * might be severe me !! 3165                          * If we didn't fallback here, we could livelock
                                                   >> 3166                          * because not all segments in the iov can be copied at
                                                   >> 3167                          * once without a pagefault.
4084                          */                      3168                          */
4085                         if (chunk > PAGE_SIZE !! 3169                         bytes = min_t(unsigned long, PAGE_SIZE - offset,
4086                                 chunk /= 2;   !! 3170                                                 iov_iter_single_seg_count(i));
4087                         if (copied) {         !! 3171                         goto again;
4088                                 bytes = copie << 
4089                                 goto retry;   << 
4090                         }                     << 
4091                 } else {                      << 
4092                         pos += status;        << 
4093                         written += status;    << 
4094                 }                                3172                 }
                                                   >> 3173                 pos += copied;
                                                   >> 3174                 written += copied;
                                                   >> 3175 
                                                   >> 3176                 balance_dirty_pages_ratelimited(mapping);
4095         } while (iov_iter_count(i));             3177         } while (iov_iter_count(i));
4096                                                  3178 
4097         if (!written)                         !! 3179         return written ? written : status;
4098                 return status;                << 
4099         iocb->ki_pos += written;              << 
4100         return written;                       << 
4101 }                                                3180 }
4102 EXPORT_SYMBOL(generic_perform_write);            3181 EXPORT_SYMBOL(generic_perform_write);
4103                                                  3182 
4104 /**                                              3183 /**
4105  * __generic_file_write_iter - write data to     3184  * __generic_file_write_iter - write data to a file
4106  * @iocb:       IO state structure (file, off    3185  * @iocb:       IO state structure (file, offset, etc.)
4107  * @from:       iov_iter with data to write      3186  * @from:       iov_iter with data to write
4108  *                                               3187  *
4109  * This function does all the work needed for    3188  * This function does all the work needed for actually writing data to a
4110  * file. It does all basic checks, removes SU    3189  * file. It does all basic checks, removes SUID from the file, updates
4111  * modification times and calls proper subrou    3190  * modification times and calls proper subroutines depending on whether we
4112  * do direct IO or a standard buffered write.    3191  * do direct IO or a standard buffered write.
4113  *                                               3192  *
4114  * It expects i_rwsem to be grabbed unless we !! 3193  * It expects i_mutex to be grabbed unless we work on a block device or similar
4115  * object which does not need locking at all.    3194  * object which does not need locking at all.
4116  *                                               3195  *
4117  * This function does *not* take care of sync    3196  * This function does *not* take care of syncing data in case of O_SYNC write.
4118  * A caller has to handle it. This is mainly     3197  * A caller has to handle it. This is mainly due to the fact that we want to
4119  * avoid syncing under i_rwsem.               !! 3198  * avoid syncing under i_mutex.
4120  *                                            << 
4121  * Return:                                    << 
4122  * * number of bytes written, even for trunca << 
4123  * * negative error code if no data has been  << 
4124  */                                              3199  */
4125 ssize_t __generic_file_write_iter(struct kioc    3200 ssize_t __generic_file_write_iter(struct kiocb *iocb, struct iov_iter *from)
4126 {                                                3201 {
4127         struct file *file = iocb->ki_filp;       3202         struct file *file = iocb->ki_filp;
4128         struct address_space *mapping = file- !! 3203         struct address_space * mapping = file->f_mapping;
4129         struct inode *inode = mapping->host;  !! 3204         struct inode    *inode = mapping->host;
4130         ssize_t ret;                          !! 3205         ssize_t         written = 0;
4131                                               !! 3206         ssize_t         err;
4132         ret = file_remove_privs(file);        !! 3207         ssize_t         status;
4133         if (ret)                              !! 3208 
4134                 return ret;                   !! 3209         /* We can write back this queue in page reclaim */
                                                   >> 3210         current->backing_dev_info = inode_to_bdi(inode);
                                                   >> 3211         err = file_remove_privs(file);
                                                   >> 3212         if (err)
                                                   >> 3213                 goto out;
4135                                                  3214 
4136         ret = file_update_time(file);         !! 3215         err = file_update_time(file);
4137         if (ret)                              !! 3216         if (err)
4138                 return ret;                   !! 3217                 goto out;
4139                                                  3218 
4140         if (iocb->ki_flags & IOCB_DIRECT) {      3219         if (iocb->ki_flags & IOCB_DIRECT) {
4141                 ret = generic_file_direct_wri !! 3220                 loff_t pos, endbyte;
                                                   >> 3221 
                                                   >> 3222                 written = generic_file_direct_write(iocb, from);
4142                 /*                               3223                 /*
4143                  * If the write stopped short    3224                  * If the write stopped short of completing, fall back to
4144                  * buffered writes.  Some fil    3225                  * buffered writes.  Some filesystems do this for writes to
4145                  * holes, for example.  For D    3226                  * holes, for example.  For DAX files, a buffered write will
4146                  * not succeed (even if it di    3227                  * not succeed (even if it did, DAX does not handle dirty
4147                  * page-cache pages correctly    3228                  * page-cache pages correctly).
4148                  */                              3229                  */
4149                 if (ret < 0 || !iov_iter_coun !! 3230                 if (written < 0 || !iov_iter_count(from) || IS_DAX(inode))
4150                         return ret;           !! 3231                         goto out;
4151                 return direct_write_fallback( << 
4152                                 generic_perfo << 
4153         }                                     << 
4154                                                  3232 
4155         return generic_perform_write(iocb, fr !! 3233                 status = generic_perform_write(file, from, pos = iocb->ki_pos);
                                                   >> 3234                 /*
                                                   >> 3235                  * If generic_perform_write() returned a synchronous error
                                                   >> 3236                  * then we want to return the number of bytes which were
                                                   >> 3237                  * direct-written, or the error code if that was zero.  Note
                                                   >> 3238                  * that this differs from normal direct-io semantics, which
                                                   >> 3239                  * will return -EFOO even if some bytes were written.
                                                   >> 3240                  */
                                                   >> 3241                 if (unlikely(status < 0)) {
                                                   >> 3242                         err = status;
                                                   >> 3243                         goto out;
                                                   >> 3244                 }
                                                   >> 3245                 /*
                                                   >> 3246                  * We need to ensure that the page cache pages are written to
                                                   >> 3247                  * disk and invalidated to preserve the expected O_DIRECT
                                                   >> 3248                  * semantics.
                                                   >> 3249                  */
                                                   >> 3250                 endbyte = pos + status - 1;
                                                   >> 3251                 err = filemap_write_and_wait_range(mapping, pos, endbyte);
                                                   >> 3252                 if (err == 0) {
                                                   >> 3253                         iocb->ki_pos = endbyte + 1;
                                                   >> 3254                         written += status;
                                                   >> 3255                         invalidate_mapping_pages(mapping,
                                                   >> 3256                                                  pos >> PAGE_SHIFT,
                                                   >> 3257                                                  endbyte >> PAGE_SHIFT);
                                                   >> 3258                 } else {
                                                   >> 3259                         /*
                                                   >> 3260                          * We don't know how much we wrote, so just return
                                                   >> 3261                          * the number of bytes which were direct-written
                                                   >> 3262                          */
                                                   >> 3263                 }
                                                   >> 3264         } else {
                                                   >> 3265                 written = generic_perform_write(file, from, iocb->ki_pos);
                                                   >> 3266                 if (likely(written > 0))
                                                   >> 3267                         iocb->ki_pos += written;
                                                   >> 3268         }
                                                   >> 3269 out:
                                                   >> 3270         current->backing_dev_info = NULL;
                                                   >> 3271         return written ? written : err;
4156 }                                                3272 }
4157 EXPORT_SYMBOL(__generic_file_write_iter);        3273 EXPORT_SYMBOL(__generic_file_write_iter);
4158                                                  3274 
4159 /**                                              3275 /**
4160  * generic_file_write_iter - write data to a     3276  * generic_file_write_iter - write data to a file
4161  * @iocb:       IO state structure               3277  * @iocb:       IO state structure
4162  * @from:       iov_iter with data to write      3278  * @from:       iov_iter with data to write
4163  *                                               3279  *
4164  * This is a wrapper around __generic_file_wr    3280  * This is a wrapper around __generic_file_write_iter() to be used by most
4165  * filesystems. It takes care of syncing the     3281  * filesystems. It takes care of syncing the file in case of O_SYNC file
4166  * and acquires i_rwsem as needed.            !! 3282  * and acquires i_mutex as needed.
4167  * Return:                                    << 
4168  * * negative error code if no data has been  << 
4169  *   vfs_fsync_range() failed for a synchrono << 
4170  * * number of bytes written, even for trunca << 
4171  */                                              3283  */
4172 ssize_t generic_file_write_iter(struct kiocb     3284 ssize_t generic_file_write_iter(struct kiocb *iocb, struct iov_iter *from)
4173 {                                                3285 {
4174         struct file *file = iocb->ki_filp;       3286         struct file *file = iocb->ki_filp;
4175         struct inode *inode = file->f_mapping    3287         struct inode *inode = file->f_mapping->host;
4176         ssize_t ret;                             3288         ssize_t ret;
4177                                                  3289 
4178         inode_lock(inode);                       3290         inode_lock(inode);
4179         ret = generic_write_checks(iocb, from    3291         ret = generic_write_checks(iocb, from);
4180         if (ret > 0)                             3292         if (ret > 0)
4181                 ret = __generic_file_write_it    3293                 ret = __generic_file_write_iter(iocb, from);
4182         inode_unlock(inode);                     3294         inode_unlock(inode);
4183                                                  3295 
4184         if (ret > 0)                             3296         if (ret > 0)
4185                 ret = generic_write_sync(iocb    3297                 ret = generic_write_sync(iocb, ret);
4186         return ret;                              3298         return ret;
4187 }                                                3299 }
4188 EXPORT_SYMBOL(generic_file_write_iter);          3300 EXPORT_SYMBOL(generic_file_write_iter);
4189                                                  3301 
4190 /**                                              3302 /**
4191  * filemap_release_folio() - Release fs-speci !! 3303  * try_to_release_page() - release old fs-specific metadata on a page
4192  * @folio: The folio which the kernel is tryi << 
4193  * @gfp: Memory allocation flags (and I/O mod << 
4194  *                                               3304  *
4195  * The address_space is trying to release any !! 3305  * @page: the page which the kernel is trying to free
4196  * (presumably at folio->private).            !! 3306  * @gfp_mask: memory allocation flags (and I/O mode)
4197  *                                               3307  *
4198  * This will also be called if the private_2  !! 3308  * The address_space is to try to release any data against the page
4199  * indicating that the folio has other metada !! 3309  * (presumably at page->private).  If the release was successful, return '1'.
                                                   >> 3310  * Otherwise return zero.
4200  *                                               3311  *
4201  * The @gfp argument specifies whether I/O ma !! 3312  * This may also be called if PG_fscache is set on a page, indicating that the
4202  * this page (__GFP_IO), and whether the call !! 3313  * page is known to the local caching routines.
4203  * (__GFP_RECLAIM & __GFP_FS).                !! 3314  *
                                                   >> 3315  * The @gfp_mask argument specifies whether I/O may be performed to release
                                                   >> 3316  * this page (__GFP_IO), and whether the call may block (__GFP_RECLAIM & __GFP_FS).
4204  *                                               3317  *
4205  * Return: %true if the release was successfu << 
4206  */                                           << 
4207 bool filemap_release_folio(struct folio *foli << 
4208 {                                             << 
4209         struct address_space * const mapping  << 
4210                                               << 
4211         BUG_ON(!folio_test_locked(folio));    << 
4212         if (!folio_needs_release(folio))      << 
4213                 return true;                  << 
4214         if (folio_test_writeback(folio))      << 
4215                 return false;                 << 
4216                                               << 
4217         if (mapping && mapping->a_ops->releas << 
4218                 return mapping->a_ops->releas << 
4219         return try_to_free_buffers(folio);    << 
4220 }                                             << 
4221 EXPORT_SYMBOL(filemap_release_folio);         << 
4222                                               << 
4223 /**                                           << 
4224  * filemap_invalidate_inode - Invalidate/forc << 
4225  * @inode: The inode to flush                 << 
4226  * @flush: Set to write back rather than simp << 
4227  * @start: First byte to in range.            << 
4228  * @end: Last byte in range (inclusive), or L << 
4229  *       onwards.                             << 
4230  *                                            << 
4231  * Invalidate all the folios on an inode that << 
4232  * range, possibly writing them back first.   << 
4233  * undertaken, the invalidate lock is held to << 
4234  * installed.                                 << 
4235  */                                           << 
4236 int filemap_invalidate_inode(struct inode *in << 
4237                              loff_t start, lo << 
4238 {                                             << 
4239         struct address_space *mapping = inode << 
4240         pgoff_t first = start >> PAGE_SHIFT;  << 
4241         pgoff_t last = end >> PAGE_SHIFT;     << 
4242         pgoff_t nr = end == LLONG_MAX ? ULONG << 
4243                                               << 
4244         if (!mapping || !mapping->nrpages ||  << 
4245                 goto out;                     << 
4246                                               << 
4247         /* Prevent new folios from being adde << 
4248         filemap_invalidate_lock(mapping);     << 
4249                                               << 
4250         if (!mapping->nrpages)                << 
4251                 goto unlock;                  << 
4252                                               << 
4253         unmap_mapping_pages(mapping, first, n << 
4254                                               << 
4255         /* Write back the data if we're asked << 
4256         if (flush) {                          << 
4257                 struct writeback_control wbc  << 
4258                         .sync_mode      = WB_ << 
4259                         .nr_to_write    = LON << 
4260                         .range_start    = sta << 
4261                         .range_end      = end << 
4262                 };                            << 
4263                                               << 
4264                 filemap_fdatawrite_wbc(mappin << 
4265         }                                     << 
4266                                               << 
4267         /* Wait for writeback to complete on  << 
4268         invalidate_inode_pages2_range(mapping << 
4269                                               << 
4270 unlock:                                       << 
4271         filemap_invalidate_unlock(mapping);   << 
4272 out:                                          << 
4273         return filemap_check_errors(mapping); << 
4274 }                                             << 
4275 EXPORT_SYMBOL_GPL(filemap_invalidate_inode);  << 
4276                                               << 
4277 #ifdef CONFIG_CACHESTAT_SYSCALL               << 
4278 /**                                           << 
4279  * filemap_cachestat() - compute the page cac << 
4280  * @mapping:    The mapping to compute the st << 
4281  * @first_index:        The starting page cac << 
4282  * @last_index: The final page index (inclusi << 
4283  * @cs: the cachestat struct to write the res << 
4284  *                                            << 
4285  * This will query the page cache statistics  << 
4286  * page range of [first_index, last_index] (i << 
4287  * queried include: number of dirty pages, nu << 
4288  * writeback, and the number of (recently) ev << 
4289  */                                              3318  */
4290 static void filemap_cachestat(struct address_ !! 3319 int try_to_release_page(struct page *page, gfp_t gfp_mask)
4291                 pgoff_t first_index, pgoff_t  << 
4292 {                                                3320 {
4293         XA_STATE(xas, &mapping->i_pages, firs !! 3321         struct address_space * const mapping = page->mapping;
4294         struct folio *folio;                  << 
4295                                               << 
4296         /* Flush stats (and potentially sleep << 
4297         mem_cgroup_flush_stats_ratelimited(NU << 
4298                                               << 
4299         rcu_read_lock();                      << 
4300         xas_for_each(&xas, folio, last_index) << 
4301                 int order;                    << 
4302                 unsigned long nr_pages;       << 
4303                 pgoff_t folio_first_index, fo << 
4304                                               << 
4305                 /*                            << 
4306                  * Don't deref the folio. It  << 
4307                  * get freed (and reused) und << 
4308                  *                            << 
4309                  * We *could* pin it, but tha << 
4310                  * what should be a fast and  << 
4311                  *                            << 
4312                  * Instead, derive all inform << 
4313                  * the rcu-protected xarray.  << 
4314                  */                           << 
4315                                               << 
4316                 if (xas_retry(&xas, folio))   << 
4317                         continue;             << 
4318                                               << 
4319                 order = xas_get_order(&xas);  << 
4320                 nr_pages = 1 << order;        << 
4321                 folio_first_index = round_dow << 
4322                 folio_last_index = folio_firs << 
4323                                               << 
4324                 /* Folios might straddle the  << 
4325                 if (folio_first_index < first << 
4326                         nr_pages -= first_ind << 
4327                                               << 
4328                 if (folio_last_index > last_i << 
4329                         nr_pages -= folio_las << 
4330                                               << 
4331                 if (xa_is_value(folio)) {     << 
4332                         /* page is evicted */ << 
4333                         void *shadow = (void  << 
4334                         bool workingset; /* n << 
4335                                               << 
4336                         cs->nr_evicted += nr_ << 
4337                                               << 
4338 #ifdef CONFIG_SWAP /* implies CONFIG_MMU */   << 
4339                         if (shmem_mapping(map << 
4340                                 /* shmem file << 
4341                                 swp_entry_t s << 
4342                                               << 
4343                                 /* swapin err << 
4344                                 if (non_swap_ << 
4345                                         goto  << 
4346                                               << 
4347                                 /*            << 
4348                                  * Getting a  << 
4349                                  * inode mean << 
4350                                  * shmem_unus << 
4351                                  * ensures sw << 
4352                                  * freeing th << 
4353                                  * we can rac << 
4354                                  * invalidati << 
4355                                  * a shadow i << 
4356                                  */           << 
4357                                 shadow = get_ << 
4358                                 if (!shadow)  << 
4359                                         goto  << 
4360                         }                     << 
4361 #endif                                        << 
4362                         if (workingset_test_r << 
4363                                 cs->nr_recent << 
4364                                               << 
4365                         goto resched;         << 
4366                 }                             << 
4367                                               << 
4368                 /* page is in cache */        << 
4369                 cs->nr_cache += nr_pages;     << 
4370                                               << 
4371                 if (xas_get_mark(&xas, PAGECA << 
4372                         cs->nr_dirty += nr_pa << 
4373                                                  3322 
4374                 if (xas_get_mark(&xas, PAGECA !! 3323         BUG_ON(!PageLocked(page));
4375                         cs->nr_writeback += n !! 3324         if (PageWriteback(page))
                                                   >> 3325                 return 0;
4376                                                  3326 
4377 resched:                                      !! 3327         if (mapping && mapping->a_ops->releasepage)
4378                 if (need_resched()) {         !! 3328                 return mapping->a_ops->releasepage(page, gfp_mask);
4379                         xas_pause(&xas);      !! 3329         return try_to_free_buffers(page);
4380                         cond_resched_rcu();   << 
4381                 }                             << 
4382         }                                     << 
4383         rcu_read_unlock();                    << 
4384 }                                                3330 }
4385                                                  3331 
4386 /*                                            !! 3332 EXPORT_SYMBOL(try_to_release_page);
4387  * The cachestat(2) system call.              << 
4388  *                                            << 
4389  * cachestat() returns the page cache statist << 
4390  * bytes range specified by `off` and `len`:  << 
4391  * number of dirty pages, number of pages mar << 
4392  * number of evicted pages, and number of rec << 
4393  *                                            << 
4394  * An evicted page is a page that is previous << 
4395  * but has been evicted since. A page is rece << 
4396  * eviction was recent enough that its reentr << 
4397  * indicate that it is actively being used by << 
4398  * there is memory pressure on the system.    << 
4399  *                                            << 
4400  * `off` and `len` must be non-negative integ << 
4401  * the queried range is [`off`, `off` + `len` << 
4402  * we will query in the range from `off` to t << 
4403  *                                            << 
4404  * The `flags` argument is unused for now, bu << 
4405  * extensibility. User should pass 0 (i.e no  << 
4406  *                                            << 
4407  * Currently, hugetlbfs is not supported.     << 
4408  *                                            << 
4409  * Because the status of a page can change af << 
4410  * but before it returns to the application,  << 
4411  * contain stale information.                 << 
4412  *                                            << 
4413  * return values:                             << 
4414  *  zero        - success                     << 
4415  *  -EFAULT     - cstat or cstat_range points << 
4416  *  -EINVAL     - invalid flags               << 
4417  *  -EBADF      - invalid file descriptor     << 
4418  *  -EOPNOTSUPP - file descriptor is of a hug << 
4419  */                                           << 
4420 SYSCALL_DEFINE4(cachestat, unsigned int, fd,  << 
4421                 struct cachestat_range __user << 
4422                 struct cachestat __user *, cs << 
4423 {                                             << 
4424         struct fd f = fdget(fd);              << 
4425         struct address_space *mapping;        << 
4426         struct cachestat_range csr;           << 
4427         struct cachestat cs;                  << 
4428         pgoff_t first_index, last_index;      << 
4429                                               << 
4430         if (!fd_file(f))                      << 
4431                 return -EBADF;                << 
4432                                               << 
4433         if (copy_from_user(&csr, cstat_range, << 
4434                         sizeof(struct cachest << 
4435                 fdput(f);                     << 
4436                 return -EFAULT;               << 
4437         }                                     << 
4438                                               << 
4439         /* hugetlbfs is not supported */      << 
4440         if (is_file_hugepages(fd_file(f))) {  << 
4441                 fdput(f);                     << 
4442                 return -EOPNOTSUPP;           << 
4443         }                                     << 
4444                                               << 
4445         if (flags != 0) {                     << 
4446                 fdput(f);                     << 
4447                 return -EINVAL;               << 
4448         }                                     << 
4449                                               << 
4450         first_index = csr.off >> PAGE_SHIFT;  << 
4451         last_index =                          << 
4452                 csr.len == 0 ? ULONG_MAX : (c << 
4453         memset(&cs, 0, sizeof(struct cachesta << 
4454         mapping = fd_file(f)->f_mapping;      << 
4455         filemap_cachestat(mapping, first_inde << 
4456         fdput(f);                             << 
4457                                               << 
4458         if (copy_to_user(cstat, &cs, sizeof(s << 
4459                 return -EFAULT;               << 
4460                                               << 
4461         return 0;                             << 
4462 }                                             << 
4463 #endif /* CONFIG_CACHESTAT_SYSCALL */         << 
4464                                                  3333 

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