OSDN Git Service

Merge tag 'gfs2-v5.16-rc3-fixes2' of git://git.kernel.org/pub/scm/linux/kernel/git...
[uclinux-h8/linux.git] / fs / jffs2 / file.c
1 /*
2  * JFFS2 -- Journalling Flash File System, Version 2.
3  *
4  * Copyright © 2001-2007 Red Hat, Inc.
5  * Copyright © 2004-2010 David Woodhouse <dwmw2@infradead.org>
6  *
7  * Created by David Woodhouse <dwmw2@infradead.org>
8  *
9  * For licensing information, see the file 'LICENCE' in this directory.
10  *
11  */
12
13 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
14
15 #include <linux/kernel.h>
16 #include <linux/fs.h>
17 #include <linux/time.h>
18 #include <linux/pagemap.h>
19 #include <linux/highmem.h>
20 #include <linux/crc32.h>
21 #include <linux/jffs2.h>
22 #include "nodelist.h"
23
24 static int jffs2_write_end(struct file *filp, struct address_space *mapping,
25                         loff_t pos, unsigned len, unsigned copied,
26                         struct page *pg, void *fsdata);
27 static int jffs2_write_begin(struct file *filp, struct address_space *mapping,
28                         loff_t pos, unsigned len, unsigned flags,
29                         struct page **pagep, void **fsdata);
30 static int jffs2_readpage (struct file *filp, struct page *pg);
31
32 int jffs2_fsync(struct file *filp, loff_t start, loff_t end, int datasync)
33 {
34         struct inode *inode = filp->f_mapping->host;
35         struct jffs2_sb_info *c = JFFS2_SB_INFO(inode->i_sb);
36         int ret;
37
38         ret = file_write_and_wait_range(filp, start, end);
39         if (ret)
40                 return ret;
41
42         inode_lock(inode);
43         /* Trigger GC to flush any pending writes for this inode */
44         jffs2_flush_wbuf_gc(c, inode->i_ino);
45         inode_unlock(inode);
46
47         return 0;
48 }
49
50 const struct file_operations jffs2_file_operations =
51 {
52         .llseek =       generic_file_llseek,
53         .open =         generic_file_open,
54         .read_iter =    generic_file_read_iter,
55         .write_iter =   generic_file_write_iter,
56         .unlocked_ioctl=jffs2_ioctl,
57         .mmap =         generic_file_readonly_mmap,
58         .fsync =        jffs2_fsync,
59         .splice_read =  generic_file_splice_read,
60         .splice_write = iter_file_splice_write,
61 };
62
63 /* jffs2_file_inode_operations */
64
65 const struct inode_operations jffs2_file_inode_operations =
66 {
67         .get_acl =      jffs2_get_acl,
68         .set_acl =      jffs2_set_acl,
69         .setattr =      jffs2_setattr,
70         .listxattr =    jffs2_listxattr,
71 };
72
73 const struct address_space_operations jffs2_file_address_operations =
74 {
75         .readpage =     jffs2_readpage,
76         .write_begin =  jffs2_write_begin,
77         .write_end =    jffs2_write_end,
78 };
79
80 static int jffs2_do_readpage_nolock (struct inode *inode, struct page *pg)
81 {
82         struct jffs2_inode_info *f = JFFS2_INODE_INFO(inode);
83         struct jffs2_sb_info *c = JFFS2_SB_INFO(inode->i_sb);
84         unsigned char *pg_buf;
85         int ret;
86
87         jffs2_dbg(2, "%s(): ino #%lu, page at offset 0x%lx\n",
88                   __func__, inode->i_ino, pg->index << PAGE_SHIFT);
89
90         BUG_ON(!PageLocked(pg));
91
92         pg_buf = kmap(pg);
93         /* FIXME: Can kmap fail? */
94
95         ret = jffs2_read_inode_range(c, f, pg_buf, pg->index << PAGE_SHIFT,
96                                      PAGE_SIZE);
97
98         if (ret) {
99                 ClearPageUptodate(pg);
100                 SetPageError(pg);
101         } else {
102                 SetPageUptodate(pg);
103                 ClearPageError(pg);
104         }
105
106         flush_dcache_page(pg);
107         kunmap(pg);
108
109         jffs2_dbg(2, "readpage finished\n");
110         return ret;
111 }
112
113 int jffs2_do_readpage_unlock(void *data, struct page *pg)
114 {
115         int ret = jffs2_do_readpage_nolock(data, pg);
116         unlock_page(pg);
117         return ret;
118 }
119
120
121 static int jffs2_readpage (struct file *filp, struct page *pg)
122 {
123         struct jffs2_inode_info *f = JFFS2_INODE_INFO(pg->mapping->host);
124         int ret;
125
126         mutex_lock(&f->sem);
127         ret = jffs2_do_readpage_unlock(pg->mapping->host, pg);
128         mutex_unlock(&f->sem);
129         return ret;
130 }
131
132 static int jffs2_write_begin(struct file *filp, struct address_space *mapping,
133                         loff_t pos, unsigned len, unsigned flags,
134                         struct page **pagep, void **fsdata)
135 {
136         struct page *pg;
137         struct inode *inode = mapping->host;
138         struct jffs2_inode_info *f = JFFS2_INODE_INFO(inode);
139         struct jffs2_sb_info *c = JFFS2_SB_INFO(inode->i_sb);
140         pgoff_t index = pos >> PAGE_SHIFT;
141         uint32_t pageofs = index << PAGE_SHIFT;
142         int ret = 0;
143
144         jffs2_dbg(1, "%s()\n", __func__);
145
146         if (pageofs > inode->i_size) {
147                 /* Make new hole frag from old EOF to new page */
148                 struct jffs2_raw_inode ri;
149                 struct jffs2_full_dnode *fn;
150                 uint32_t alloc_len;
151
152                 jffs2_dbg(1, "Writing new hole frag 0x%x-0x%x between current EOF and new page\n",
153                           (unsigned int)inode->i_size, pageofs);
154
155                 ret = jffs2_reserve_space(c, sizeof(ri), &alloc_len,
156                                           ALLOC_NORMAL, JFFS2_SUMMARY_INODE_SIZE);
157                 if (ret)
158                         goto out_err;
159
160                 mutex_lock(&f->sem);
161                 memset(&ri, 0, sizeof(ri));
162
163                 ri.magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
164                 ri.nodetype = cpu_to_je16(JFFS2_NODETYPE_INODE);
165                 ri.totlen = cpu_to_je32(sizeof(ri));
166                 ri.hdr_crc = cpu_to_je32(crc32(0, &ri, sizeof(struct jffs2_unknown_node)-4));
167
168                 ri.ino = cpu_to_je32(f->inocache->ino);
169                 ri.version = cpu_to_je32(++f->highest_version);
170                 ri.mode = cpu_to_jemode(inode->i_mode);
171                 ri.uid = cpu_to_je16(i_uid_read(inode));
172                 ri.gid = cpu_to_je16(i_gid_read(inode));
173                 ri.isize = cpu_to_je32(max((uint32_t)inode->i_size, pageofs));
174                 ri.atime = ri.ctime = ri.mtime = cpu_to_je32(JFFS2_NOW());
175                 ri.offset = cpu_to_je32(inode->i_size);
176                 ri.dsize = cpu_to_je32(pageofs - inode->i_size);
177                 ri.csize = cpu_to_je32(0);
178                 ri.compr = JFFS2_COMPR_ZERO;
179                 ri.node_crc = cpu_to_je32(crc32(0, &ri, sizeof(ri)-8));
180                 ri.data_crc = cpu_to_je32(0);
181
182                 fn = jffs2_write_dnode(c, f, &ri, NULL, 0, ALLOC_NORMAL);
183
184                 if (IS_ERR(fn)) {
185                         ret = PTR_ERR(fn);
186                         jffs2_complete_reservation(c);
187                         mutex_unlock(&f->sem);
188                         goto out_err;
189                 }
190                 ret = jffs2_add_full_dnode_to_inode(c, f, fn);
191                 if (f->metadata) {
192                         jffs2_mark_node_obsolete(c, f->metadata->raw);
193                         jffs2_free_full_dnode(f->metadata);
194                         f->metadata = NULL;
195                 }
196                 if (ret) {
197                         jffs2_dbg(1, "Eep. add_full_dnode_to_inode() failed in write_begin, returned %d\n",
198                                   ret);
199                         jffs2_mark_node_obsolete(c, fn->raw);
200                         jffs2_free_full_dnode(fn);
201                         jffs2_complete_reservation(c);
202                         mutex_unlock(&f->sem);
203                         goto out_err;
204                 }
205                 jffs2_complete_reservation(c);
206                 inode->i_size = pageofs;
207                 mutex_unlock(&f->sem);
208         }
209
210         /*
211          * While getting a page and reading data in, lock c->alloc_sem until
212          * the page is Uptodate. Otherwise GC task may attempt to read the same
213          * page in read_cache_page(), which causes a deadlock.
214          */
215         mutex_lock(&c->alloc_sem);
216         pg = grab_cache_page_write_begin(mapping, index, flags);
217         if (!pg) {
218                 ret = -ENOMEM;
219                 goto release_sem;
220         }
221         *pagep = pg;
222
223         /*
224          * Read in the page if it wasn't already present. Cannot optimize away
225          * the whole page write case until jffs2_write_end can handle the
226          * case of a short-copy.
227          */
228         if (!PageUptodate(pg)) {
229                 mutex_lock(&f->sem);
230                 ret = jffs2_do_readpage_nolock(inode, pg);
231                 mutex_unlock(&f->sem);
232                 if (ret) {
233                         unlock_page(pg);
234                         put_page(pg);
235                         goto release_sem;
236                 }
237         }
238         jffs2_dbg(1, "end write_begin(). pg->flags %lx\n", pg->flags);
239
240 release_sem:
241         mutex_unlock(&c->alloc_sem);
242 out_err:
243         return ret;
244 }
245
246 static int jffs2_write_end(struct file *filp, struct address_space *mapping,
247                         loff_t pos, unsigned len, unsigned copied,
248                         struct page *pg, void *fsdata)
249 {
250         /* Actually commit the write from the page cache page we're looking at.
251          * For now, we write the full page out each time. It sucks, but it's simple
252          */
253         struct inode *inode = mapping->host;
254         struct jffs2_inode_info *f = JFFS2_INODE_INFO(inode);
255         struct jffs2_sb_info *c = JFFS2_SB_INFO(inode->i_sb);
256         struct jffs2_raw_inode *ri;
257         unsigned start = pos & (PAGE_SIZE - 1);
258         unsigned end = start + copied;
259         unsigned aligned_start = start & ~3;
260         int ret = 0;
261         uint32_t writtenlen = 0;
262
263         jffs2_dbg(1, "%s(): ino #%lu, page at 0x%lx, range %d-%d, flags %lx\n",
264                   __func__, inode->i_ino, pg->index << PAGE_SHIFT,
265                   start, end, pg->flags);
266
267         /* We need to avoid deadlock with page_cache_read() in
268            jffs2_garbage_collect_pass(). So the page must be
269            up to date to prevent page_cache_read() from trying
270            to re-lock it. */
271         BUG_ON(!PageUptodate(pg));
272
273         if (end == PAGE_SIZE) {
274                 /* When writing out the end of a page, write out the
275                    _whole_ page. This helps to reduce the number of
276                    nodes in files which have many short writes, like
277                    syslog files. */
278                 aligned_start = 0;
279         }
280
281         ri = jffs2_alloc_raw_inode();
282
283         if (!ri) {
284                 jffs2_dbg(1, "%s(): Allocation of raw inode failed\n",
285                           __func__);
286                 unlock_page(pg);
287                 put_page(pg);
288                 return -ENOMEM;
289         }
290
291         /* Set the fields that the generic jffs2_write_inode_range() code can't find */
292         ri->ino = cpu_to_je32(inode->i_ino);
293         ri->mode = cpu_to_jemode(inode->i_mode);
294         ri->uid = cpu_to_je16(i_uid_read(inode));
295         ri->gid = cpu_to_je16(i_gid_read(inode));
296         ri->isize = cpu_to_je32((uint32_t)inode->i_size);
297         ri->atime = ri->ctime = ri->mtime = cpu_to_je32(JFFS2_NOW());
298
299         /* In 2.4, it was already kmapped by generic_file_write(). Doesn't
300            hurt to do it again. The alternative is ifdefs, which are ugly. */
301         kmap(pg);
302
303         ret = jffs2_write_inode_range(c, f, ri, page_address(pg) + aligned_start,
304                                       (pg->index << PAGE_SHIFT) + aligned_start,
305                                       end - aligned_start, &writtenlen);
306
307         kunmap(pg);
308
309         if (ret) {
310                 /* There was an error writing. */
311                 SetPageError(pg);
312         }
313
314         /* Adjust writtenlen for the padding we did, so we don't confuse our caller */
315         writtenlen -= min(writtenlen, (start - aligned_start));
316
317         if (writtenlen) {
318                 if (inode->i_size < pos + writtenlen) {
319                         inode->i_size = pos + writtenlen;
320                         inode->i_blocks = (inode->i_size + 511) >> 9;
321
322                         inode->i_ctime = inode->i_mtime = ITIME(je32_to_cpu(ri->ctime));
323                 }
324         }
325
326         jffs2_free_raw_inode(ri);
327
328         if (start+writtenlen < end) {
329                 /* generic_file_write has written more to the page cache than we've
330                    actually written to the medium. Mark the page !Uptodate so that
331                    it gets reread */
332                 jffs2_dbg(1, "%s(): Not all bytes written. Marking page !uptodate\n",
333                         __func__);
334                 SetPageError(pg);
335                 ClearPageUptodate(pg);
336         }
337
338         jffs2_dbg(1, "%s() returning %d\n",
339                   __func__, writtenlen > 0 ? writtenlen : ret);
340         unlock_page(pg);
341         put_page(pg);
342         return writtenlen > 0 ? writtenlen : ret;
343 }