]> git.sesse.net Git - bcachefs-tools-debian/blob - libbcachefs/error.c
Update bcachefs sources to fd381c355c bcachefs: Fix a null ptr deref in fsck check_ex...
[bcachefs-tools-debian] / libbcachefs / error.c
1 // SPDX-License-Identifier: GPL-2.0
2 #include "bcachefs.h"
3 #include "error.h"
4 #include "io.h"
5 #include "super.h"
6
7 #define FSCK_ERR_RATELIMIT_NR   10
8
9 bool bch2_inconsistent_error(struct bch_fs *c)
10 {
11         set_bit(BCH_FS_ERROR, &c->flags);
12
13         switch (c->opts.errors) {
14         case BCH_ON_ERROR_continue:
15                 return false;
16         case BCH_ON_ERROR_ro:
17                 if (bch2_fs_emergency_read_only(c))
18                         bch_err(c, "inconsistency detected - emergency read only");
19                 return true;
20         case BCH_ON_ERROR_panic:
21                 panic(bch2_fmt(c, "panic after error"));
22                 return true;
23         default:
24                 BUG();
25         }
26 }
27
28 void bch2_topology_error(struct bch_fs *c)
29 {
30         if (!test_bit(BCH_FS_TOPOLOGY_REPAIR_DONE, &c->flags))
31                 return;
32
33         set_bit(BCH_FS_TOPOLOGY_ERROR, &c->flags);
34         if (test_bit(BCH_FS_FSCK_DONE, &c->flags))
35                 bch2_inconsistent_error(c);
36 }
37
38 void bch2_fatal_error(struct bch_fs *c)
39 {
40         if (bch2_fs_emergency_read_only(c))
41                 bch_err(c, "fatal error - emergency read only");
42 }
43
44 void bch2_io_error_work(struct work_struct *work)
45 {
46         struct bch_dev *ca = container_of(work, struct bch_dev, io_error_work);
47         struct bch_fs *c = ca->fs;
48         bool dev;
49
50         down_write(&c->state_lock);
51         dev = bch2_dev_state_allowed(c, ca, BCH_MEMBER_STATE_ro,
52                                     BCH_FORCE_IF_DEGRADED);
53         if (dev
54             ? __bch2_dev_set_state(c, ca, BCH_MEMBER_STATE_ro,
55                                   BCH_FORCE_IF_DEGRADED)
56             : bch2_fs_emergency_read_only(c))
57                 bch_err(ca,
58                         "too many IO errors, setting %s RO",
59                         dev ? "device" : "filesystem");
60         up_write(&c->state_lock);
61 }
62
63 void bch2_io_error(struct bch_dev *ca)
64 {
65         //queue_work(system_long_wq, &ca->io_error_work);
66 }
67
68 enum ask_yn {
69         YN_NO,
70         YN_YES,
71         YN_ALLNO,
72         YN_ALLYES,
73 };
74
75 #ifdef __KERNEL__
76 #define bch2_fsck_ask_yn()      YN_NO
77 #else
78
79 #include "tools-util.h"
80
81 enum ask_yn bch2_fsck_ask_yn(void)
82 {
83         char *buf = NULL;
84         size_t buflen = 0;
85         bool ret;
86
87         while (true) {
88                 fputs(" (y,n,Y,N) ", stdout);
89                 fflush(stdout);
90
91                 if (getline(&buf, &buflen, stdin) < 0)
92                         die("error reading from standard input");
93
94                 if (strlen(buf) != 1)
95                         continue;
96
97                 switch (buf[0]) {
98                 case 'n':
99                         return YN_NO;
100                 case 'y':
101                         return YN_YES;
102                 case 'N':
103                         return YN_ALLNO;
104                 case 'Y':
105                         return YN_ALLYES;
106                 }
107         }
108
109         free(buf);
110         return ret;
111 }
112
113 #endif
114
115 static struct fsck_err_state *fsck_err_get(struct bch_fs *c, const char *fmt)
116 {
117         struct fsck_err_state *s;
118
119         if (test_bit(BCH_FS_FSCK_DONE, &c->flags))
120                 return NULL;
121
122         list_for_each_entry(s, &c->fsck_errors, list)
123                 if (s->fmt == fmt) {
124                         /*
125                          * move it to the head of the list: repeated fsck errors
126                          * are common
127                          */
128                         list_move(&s->list, &c->fsck_errors);
129                         return s;
130                 }
131
132         s = kzalloc(sizeof(*s), GFP_NOFS);
133         if (!s) {
134                 if (!c->fsck_alloc_err)
135                         bch_err(c, "kmalloc err, cannot ratelimit fsck errs");
136                 c->fsck_alloc_err = true;
137                 return NULL;
138         }
139
140         INIT_LIST_HEAD(&s->list);
141         s->fmt = fmt;
142         list_add(&s->list, &c->fsck_errors);
143         return s;
144 }
145
146 int bch2_fsck_err(struct bch_fs *c, unsigned flags, const char *fmt, ...)
147 {
148         struct fsck_err_state *s = NULL;
149         va_list args;
150         bool print = true, suppressing = false, inconsistent = false;
151         struct printbuf buf = PRINTBUF, *out = &buf;
152         int ret = -BCH_ERR_fsck_ignore;
153
154         va_start(args, fmt);
155         prt_vprintf(out, fmt, args);
156         va_end(args);
157
158         mutex_lock(&c->fsck_error_lock);
159         s = fsck_err_get(c, fmt);
160         if (s) {
161                 if (s->last_msg && !strcmp(buf.buf, s->last_msg)) {
162                         ret = s->ret;
163                         mutex_unlock(&c->fsck_error_lock);
164                         printbuf_exit(&buf);
165                         return ret;
166                 }
167
168                 kfree(s->last_msg);
169                 s->last_msg = kstrdup(buf.buf, GFP_KERNEL);
170
171                 if (c->opts.ratelimit_errors &&
172                     !(flags & FSCK_NO_RATELIMIT) &&
173                     s->nr >= FSCK_ERR_RATELIMIT_NR) {
174                         if (s->nr == FSCK_ERR_RATELIMIT_NR)
175                                 suppressing = true;
176                         else
177                                 print = false;
178                 }
179
180                 s->nr++;
181         }
182
183 #ifdef BCACHEFS_LOG_PREFIX
184         if (!strncmp(fmt, "bcachefs:", 9))
185                 prt_printf(out, bch2_log_msg(c, ""));
186 #endif
187
188         if (test_bit(BCH_FS_FSCK_DONE, &c->flags)) {
189                 if (c->opts.errors != BCH_ON_ERROR_continue ||
190                     !(flags & (FSCK_CAN_FIX|FSCK_CAN_IGNORE))) {
191                         prt_str(out, ", shutting down");
192                         inconsistent = true;
193                         ret = -BCH_ERR_fsck_errors_not_fixed;
194                 } else if (flags & FSCK_CAN_FIX) {
195                         prt_str(out, ", fixing");
196                         ret = -BCH_ERR_fsck_fix;
197                 } else {
198                         prt_str(out, ", continuing");
199                         ret = -BCH_ERR_fsck_ignore;
200                 }
201         } else if (c->opts.fix_errors == FSCK_OPT_EXIT) {
202                 prt_str(out, ", exiting");
203                 ret = -BCH_ERR_fsck_errors_not_fixed;
204         } else if (flags & FSCK_CAN_FIX) {
205                 int fix = s && s->fix
206                         ? s->fix
207                         : c->opts.fix_errors;
208
209                 if (fix == FSCK_OPT_ASK) {
210                         int ask;
211
212                         prt_str(out, ": fix?");
213                         bch2_print_string_as_lines(KERN_ERR, out->buf);
214                         print = false;
215
216                         ask = bch2_fsck_ask_yn();
217
218                         if (ask >= YN_ALLNO && s)
219                                 s->fix = ask == YN_ALLNO
220                                         ? FSCK_OPT_NO
221                                         : FSCK_OPT_YES;
222
223                         ret = ask & 1
224                                 ? -BCH_ERR_fsck_fix
225                                 : -BCH_ERR_fsck_ignore;
226                 } else if (fix == FSCK_OPT_YES ||
227                            (c->opts.nochanges &&
228                             !(flags & FSCK_CAN_IGNORE))) {
229                         prt_str(out, ", fixing");
230                         ret = -BCH_ERR_fsck_fix;
231                 } else {
232                         prt_str(out, ", not fixing");
233                 }
234         } else if (flags & FSCK_NEED_FSCK) {
235                 prt_str(out, " (run fsck to correct)");
236         } else {
237                 prt_str(out, " (repair unimplemented)");
238         }
239
240         if (ret == -BCH_ERR_fsck_ignore &&
241             (c->opts.fix_errors == FSCK_OPT_EXIT ||
242              !(flags & FSCK_CAN_IGNORE)))
243                 ret = -BCH_ERR_fsck_errors_not_fixed;
244
245         if (print)
246                 bch2_print_string_as_lines(KERN_ERR, out->buf);
247
248         if (!test_bit(BCH_FS_FSCK_DONE, &c->flags) &&
249             (ret != -BCH_ERR_fsck_fix &&
250              ret != -BCH_ERR_fsck_ignore))
251                 bch_err(c, "Unable to continue, halting");
252         else if (suppressing)
253                 bch_err(c, "Ratelimiting new instances of previous error");
254
255         if (s)
256                 s->ret = ret;
257
258         mutex_unlock(&c->fsck_error_lock);
259
260         printbuf_exit(&buf);
261
262         if (inconsistent)
263                 bch2_inconsistent_error(c);
264
265         if (ret == -BCH_ERR_fsck_fix) {
266                 set_bit(BCH_FS_ERRORS_FIXED, &c->flags);
267         } else {
268                 set_bit(BCH_FS_ERRORS_NOT_FIXED, &c->flags);
269                 set_bit(BCH_FS_ERROR, &c->flags);
270         }
271
272         return ret;
273 }
274
275 void bch2_flush_fsck_errs(struct bch_fs *c)
276 {
277         struct fsck_err_state *s, *n;
278
279         mutex_lock(&c->fsck_error_lock);
280
281         list_for_each_entry_safe(s, n, &c->fsck_errors, list) {
282                 if (s->ratelimited && s->last_msg)
283                         bch_err(c, "Saw %llu errors like:\n    %s", s->nr, s->last_msg);
284
285                 list_del(&s->list);
286                 kfree(s->last_msg);
287                 kfree(s);
288         }
289
290         mutex_unlock(&c->fsck_error_lock);
291 }