]> git.ipfire.org Git - thirdparty/systemd.git/blame - src/coredump/coredump.c
coredump: slight simplification
[thirdparty/systemd.git] / src / coredump / coredump.c
CommitLineData
f5e04665
LP
1/***
2 This file is part of systemd.
3
4 Copyright 2012 Lennart Poettering
5
6 systemd is free software; you can redistribute it and/or modify it
5430f7f2
LP
7 under the terms of the GNU Lesser General Public License as published by
8 the Free Software Foundation; either version 2.1 of the License, or
f5e04665
LP
9 (at your option) any later version.
10
11 systemd is distributed in the hope that it will be useful, but
12 WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
5430f7f2 14 Lesser General Public License for more details.
f5e04665 15
5430f7f2 16 You should have received a copy of the GNU Lesser General Public License
f5e04665
LP
17 along with systemd; If not, see <http://www.gnu.org/licenses/>.
18***/
19
20#include <errno.h>
803a3464
LP
21#include <stdio.h>
22#include <sys/prctl.h>
cacd6403 23#include <sys/xattr.h>
4f5dd394 24#include <unistd.h>
f5e04665 25
4d229b31 26#ifdef HAVE_ELFUTILS
3c171f0b
LP
27#include <dwarf.h>
28#include <elfutils/libdwfl.h>
4d229b31
UTL
29#endif
30
73a99163 31#include "sd-daemon.h"
f11943c5
LP
32#include "sd-journal.h"
33#include "sd-login.h"
73a99163 34#include "sd-messages.h"
4f5dd394
LP
35
36#include "acl-util.h"
b5efdb8a 37#include "alloc-util.h"
430f0182 38#include "capability-util.h"
ba1261bc 39#include "cgroup-util.h"
4f5dd394 40#include "compress.h"
34c10968
LP
41#include "conf-parser.h"
42#include "copy.h"
f11943c5 43#include "coredump-vacuum.h"
a0956174 44#include "dirent-util.h"
4f5dd394 45#include "escape.h"
3ffd4af2 46#include "fd-util.h"
4f5dd394 47#include "fileio.h"
f4f15635 48#include "fs-util.h"
afc5dbf3 49#include "io-util.h"
b18453ed 50#include "journal-importer.h"
4f5dd394
LP
51#include "log.h"
52#include "macro.h"
0c773903 53#include "missing.h"
4f5dd394 54#include "mkdir.h"
6bedfcbb 55#include "parse-util.h"
0b452006 56#include "process-util.h"
d14bcb4e 57#include "signal-util.h"
3c171f0b 58#include "socket-util.h"
4f5dd394
LP
59#include "special.h"
60#include "stacktrace.h"
8b43440b 61#include "string-table.h"
07630cea 62#include "string-util.h"
4f5dd394 63#include "strv.h"
b1d4f8e1 64#include "user-util.h"
4f5dd394 65#include "util.h"
34727273 66
34c10968 67/* The maximum size up to which we process coredumps */
59f448cf 68#define PROCESS_SIZE_MAX ((uint64_t) (2LLU*1024LLU*1024LLU*1024LLU))
34c10968 69
bdfd7b2c 70/* The maximum size up to which we leave the coredump around on disk */
34c10968
LP
71#define EXTERNAL_SIZE_MAX PROCESS_SIZE_MAX
72
bdfd7b2c 73/* The maximum size up to which we store the coredump in the journal */
34c10968 74#define JOURNAL_SIZE_MAX ((size_t) (767LU*1024LU*1024LU))
f5e04665 75
c4aa09b0 76/* Make sure to not make this larger than the maximum journal entry
874bc134
ZJS
77 * size. See DATA_SIZE_MAX in journald-native.c. */
78assert_cc(JOURNAL_SIZE_MAX <= DATA_SIZE_MAX);
f5e04665
LP
79
80enum {
3c171f0b
LP
81 /* We use this as array indexes for a couple of special fields we use for naming coredumping files, and
82 * attaching xattrs */
83 CONTEXT_PID,
84 CONTEXT_UID,
85 CONTEXT_GID,
86 CONTEXT_SIGNAL,
87 CONTEXT_TIMESTAMP,
bdfd7b2c 88 CONTEXT_RLIMIT,
3c171f0b
LP
89 CONTEXT_COMM,
90 CONTEXT_EXE,
91 _CONTEXT_MAX
f5e04665
LP
92};
93
34c10968
LP
94typedef enum CoredumpStorage {
95 COREDUMP_STORAGE_NONE,
96 COREDUMP_STORAGE_EXTERNAL,
97 COREDUMP_STORAGE_JOURNAL,
34c10968
LP
98 _COREDUMP_STORAGE_MAX,
99 _COREDUMP_STORAGE_INVALID = -1
100} CoredumpStorage;
101
34c10968
LP
102static const char* const coredump_storage_table[_COREDUMP_STORAGE_MAX] = {
103 [COREDUMP_STORAGE_NONE] = "none",
104 [COREDUMP_STORAGE_EXTERNAL] = "external",
105 [COREDUMP_STORAGE_JOURNAL] = "journal",
34c10968
LP
106};
107
108DEFINE_PRIVATE_STRING_TABLE_LOOKUP(coredump_storage, CoredumpStorage);
8c9571d0 109static DEFINE_CONFIG_PARSE_ENUM(config_parse_coredump_storage, coredump_storage, CoredumpStorage, "Failed to parse storage setting");
34727273
ZJS
110
111static CoredumpStorage arg_storage = COREDUMP_STORAGE_EXTERNAL;
8c9571d0 112static bool arg_compress = true;
59f448cf
LP
113static uint64_t arg_process_size_max = PROCESS_SIZE_MAX;
114static uint64_t arg_external_size_max = EXTERNAL_SIZE_MAX;
6e2b4a69 115static uint64_t arg_journal_size_max = JOURNAL_SIZE_MAX;
59f448cf
LP
116static uint64_t arg_keep_free = (uint64_t) -1;
117static uint64_t arg_max_use = (uint64_t) -1;
34c10968
LP
118
119static int parse_config(void) {
34c10968 120 static const ConfigTableItem items[] = {
8c9571d0
LP
121 { "Coredump", "Storage", config_parse_coredump_storage, 0, &arg_storage },
122 { "Coredump", "Compress", config_parse_bool, 0, &arg_compress },
59f448cf
LP
123 { "Coredump", "ProcessSizeMax", config_parse_iec_uint64, 0, &arg_process_size_max },
124 { "Coredump", "ExternalSizeMax", config_parse_iec_uint64, 0, &arg_external_size_max },
8c9571d0 125 { "Coredump", "JournalSizeMax", config_parse_iec_size, 0, &arg_journal_size_max },
59f448cf
LP
126 { "Coredump", "KeepFree", config_parse_iec_uint64, 0, &arg_keep_free },
127 { "Coredump", "MaxUse", config_parse_iec_uint64, 0, &arg_max_use },
34c10968
LP
128 {}
129 };
130
43688c49 131 return config_parse_many_nulstr(PKGSYSCONFDIR "/coredump.conf",
75eb6154 132 CONF_PATHS_NULSTR("systemd/coredump.conf.d"),
301af7e4
JT
133 "Coredump\0",
134 config_item_table_lookup, items,
135 false, NULL);
34c10968
LP
136}
137
73a99163
ZJS
138static inline uint64_t storage_size_max(void) {
139 return arg_storage == COREDUMP_STORAGE_EXTERNAL ? arg_external_size_max : arg_journal_size_max;
140}
141
34c10968
LP
142static int fix_acl(int fd, uid_t uid) {
143
144#ifdef HAVE_ACL
145 _cleanup_(acl_freep) acl_t acl = NULL;
146 acl_entry_t entry;
147 acl_permset_t permset;
709f6e46 148 int r;
34c10968 149
b59233e6
LP
150 assert(fd >= 0);
151
34c10968
LP
152 if (uid <= SYSTEM_UID_MAX)
153 return 0;
154
155 /* Make sure normal users can read (but not write or delete)
156 * their own coredumps */
157
158 acl = acl_get_fd(fd);
4a62c710
MS
159 if (!acl)
160 return log_error_errno(errno, "Failed to get ACL: %m");
34c10968
LP
161
162 if (acl_create_entry(&acl, &entry) < 0 ||
163 acl_set_tag_type(entry, ACL_USER) < 0 ||
d710aaf7
ZJS
164 acl_set_qualifier(entry, &uid) < 0)
165 return log_error_errno(errno, "Failed to patch ACL: %m");
34c10968
LP
166
167 if (acl_get_permset(entry, &permset) < 0 ||
709f6e46
MS
168 acl_add_perm(permset, ACL_READ) < 0)
169 return log_warning_errno(errno, "Failed to patch ACL: %m");
170
171 r = calc_acl_mask_if_needed(&acl);
172 if (r < 0)
173 return log_warning_errno(r, "Failed to patch ACL: %m");
34c10968 174
4a62c710
MS
175 if (acl_set_fd(fd, acl) < 0)
176 return log_error_errno(errno, "Failed to apply ACL: %m");
34c10968
LP
177#endif
178
179 return 0;
180}
181
3c171f0b 182static int fix_xattr(int fd, const char *context[_CONTEXT_MAX]) {
0cd77f97 183
3c171f0b
LP
184 static const char * const xattrs[_CONTEXT_MAX] = {
185 [CONTEXT_PID] = "user.coredump.pid",
186 [CONTEXT_UID] = "user.coredump.uid",
187 [CONTEXT_GID] = "user.coredump.gid",
188 [CONTEXT_SIGNAL] = "user.coredump.signal",
189 [CONTEXT_TIMESTAMP] = "user.coredump.timestamp",
6d337300 190 [CONTEXT_RLIMIT] = "user.coredump.rlimit",
3c171f0b
LP
191 [CONTEXT_COMM] = "user.coredump.comm",
192 [CONTEXT_EXE] = "user.coredump.exe",
0cd77f97
LP
193 };
194
34c10968 195 int r = 0;
0cd77f97 196 unsigned i;
34c10968 197
b59233e6
LP
198 assert(fd >= 0);
199
1eef15b1 200 /* Attach some metadata to coredumps via extended
34c10968
LP
201 * attributes. Just because we can. */
202
3c171f0b 203 for (i = 0; i < _CONTEXT_MAX; i++) {
1eef15b1
ZJS
204 int k;
205
3c171f0b 206 if (isempty(context[i]) || !xattrs[i])
0cd77f97 207 continue;
34c10968 208
3c171f0b 209 k = fsetxattr(fd, xattrs[i], context[i], strlen(context[i]), XATTR_CREATE);
1eef15b1 210 if (k < 0 && r == 0)
34c10968 211 r = -errno;
0cd77f97 212 }
34c10968
LP
213
214 return r;
215}
216
b0b21dce 217#define filename_escape(s) xescape((s), "./ ")
34c10968 218
0c773903
EV
219static inline const char *coredump_tmpfile_name(const char *s) {
220 return s ? s : "(unnamed temporary file)";
221}
222
b59233e6
LP
223static int fix_permissions(
224 int fd,
225 const char *filename,
226 const char *target,
3c171f0b 227 const char *context[_CONTEXT_MAX],
b59233e6
LP
228 uid_t uid) {
229
03532f0a
LP
230 int r;
231
b59233e6 232 assert(fd >= 0);
b59233e6 233 assert(target);
3c171f0b 234 assert(context);
cfd652ed
ZJS
235
236 /* Ignore errors on these */
3c171f0b
LP
237 (void) fchmod(fd, 0640);
238 (void) fix_acl(fd, uid);
239 (void) fix_xattr(fd, context);
cfd652ed 240
4a62c710 241 if (fsync(fd) < 0)
0c773903 242 return log_error_errno(errno, "Failed to sync coredump %s: %m", coredump_tmpfile_name(filename));
cfd652ed 243
03532f0a
LP
244 r = link_tmpfile(fd, filename, target);
245 if (r < 0)
246 return log_error_errno(r, "Failed to move coredump %s into place: %m", target);
cfd652ed
ZJS
247
248 return 0;
249}
250
59f448cf 251static int maybe_remove_external_coredump(const char *filename, uint64_t size) {
cfd652ed 252
b59233e6 253 /* Returns 1 if might remove, 0 if will not remove, < 0 on error. */
cfd652ed 254
fc6cec86 255 if (arg_storage == COREDUMP_STORAGE_EXTERNAL &&
cfd652ed
ZJS
256 size <= arg_external_size_max)
257 return 0;
258
259 if (!filename)
260 return 1;
261
4a62c710
MS
262 if (unlink(filename) < 0 && errno != ENOENT)
263 return log_error_errno(errno, "Failed to unlink %s: %m", filename);
cfd652ed
ZJS
264
265 return 1;
266}
267
3c171f0b 268static int make_filename(const char *context[_CONTEXT_MAX], char **ret) {
b59233e6 269 _cleanup_free_ char *c = NULL, *u = NULL, *p = NULL, *t = NULL;
a7f7d1bd 270 sd_id128_t boot = {};
34c10968
LP
271 int r;
272
3c171f0b 273 assert(context);
34c10968 274
3c171f0b 275 c = filename_escape(context[CONTEXT_COMM]);
34c10968 276 if (!c)
b59233e6 277 return -ENOMEM;
34c10968 278
3c171f0b 279 u = filename_escape(context[CONTEXT_UID]);
0dc5d23c 280 if (!u)
b59233e6 281 return -ENOMEM;
34c10968
LP
282
283 r = sd_id128_get_boot(&boot);
b59233e6 284 if (r < 0)
34c10968 285 return r;
34c10968 286
3c171f0b 287 p = filename_escape(context[CONTEXT_PID]);
b59233e6
LP
288 if (!p)
289 return -ENOMEM;
290
3c171f0b 291 t = filename_escape(context[CONTEXT_TIMESTAMP]);
b59233e6
LP
292 if (!t)
293 return -ENOMEM;
294
295 if (asprintf(ret,
0dc5d23c 296 "/var/lib/systemd/coredump/core.%s.%s." SD_ID128_FORMAT_STR ".%s.%s000000",
34c10968 297 c,
0dc5d23c 298 u,
34c10968
LP
299 SD_ID128_FORMAT_VAL(boot),
300 p,
b59233e6
LP
301 t) < 0)
302 return -ENOMEM;
303
304 return 0;
305}
306
307static int save_external_coredump(
3c171f0b
LP
308 const char *context[_CONTEXT_MAX],
309 int input_fd,
b59233e6 310 char **ret_filename,
5f3e0a74
HW
311 int *ret_node_fd,
312 int *ret_data_fd,
59f448cf 313 uint64_t *ret_size) {
b59233e6
LP
314
315 _cleanup_free_ char *fn = NULL, *tmp = NULL;
316 _cleanup_close_ int fd = -1;
bdfd7b2c 317 uint64_t rlimit, max_size;
b59233e6 318 struct stat st;
3c171f0b 319 uid_t uid;
b59233e6
LP
320 int r;
321
3c171f0b 322 assert(context);
b59233e6 323 assert(ret_filename);
5f3e0a74
HW
324 assert(ret_node_fd);
325 assert(ret_data_fd);
b59233e6
LP
326 assert(ret_size);
327
3c171f0b
LP
328 r = parse_uid(context[CONTEXT_UID], &uid);
329 if (r < 0)
330 return log_error_errno(r, "Failed to parse UID: %m");
331
bdfd7b2c
LP
332 r = safe_atou64(context[CONTEXT_RLIMIT], &rlimit);
333 if (r < 0)
334 return log_error_errno(r, "Failed to parse resource limit: %s", context[CONTEXT_RLIMIT]);
6998b540
ZJS
335 if (rlimit < page_size()) {
336 /* Is coredumping disabled? Then don't bother saving/processing the coredump.
337 * Anything below PAGE_SIZE cannot give a readable coredump (the kernel uses
338 * ELF_EXEC_PAGESIZE which is not easily accessible, but is usually the same as PAGE_SIZE. */
73a99163
ZJS
339 log_info("Resource limits disable core dumping for process %s (%s).",
340 context[CONTEXT_PID], context[CONTEXT_COMM]);
bdfd7b2c
LP
341 return -EBADSLT;
342 }
343
344 /* Never store more than the process configured, or than we actually shall keep or process */
73a99163 345 max_size = MIN(rlimit, MAX(arg_process_size_max, storage_size_max()));
bdfd7b2c 346
3c171f0b 347 r = make_filename(context, &fn);
23bbb0de
MS
348 if (r < 0)
349 return log_error_errno(r, "Failed to determine coredump file name: %m");
34c10968 350
d2e54fae 351 mkdir_p_label("/var/lib/systemd/coredump", 0755);
803a3464 352
03532f0a 353 fd = open_tmpfile_linkable(fn, O_RDWR|O_CLOEXEC, &tmp);
4a62c710 354 if (fd < 0)
03532f0a 355 return log_error_errno(fd, "Failed to create temporary file for coredump %s: %m", fn);
803a3464 356
1c876927 357 r = copy_bytes(input_fd, fd, max_size, 0);
73a99163
ZJS
358 if (r < 0) {
359 log_error_errno(r, "Cannot store coredump of %s (%s): %m", context[CONTEXT_PID], context[CONTEXT_COMM]);
93240d3a 360 goto fail;
73a99163
ZJS
361 } else if (r == 1)
362 log_struct(LOG_INFO,
363 LOG_MESSAGE("Core file was truncated to %zu bytes.", max_size),
364 "SIZE_LIMIT=%zu", max_size,
2b044526 365 "MESSAGE_ID=" SD_MESSAGE_TRUNCATED_CORE_STR,
73a99163 366 NULL);
803a3464 367
34c10968 368 if (fstat(fd, &st) < 0) {
73a99163 369 log_error_errno(errno, "Failed to fstat core file %s: %m", coredump_tmpfile_name(tmp));
34c10968
LP
370 goto fail;
371 }
372
7849c2ac 373 if (lseek(fd, 0, SEEK_SET) == (off_t) -1) {
0c773903 374 log_error_errno(errno, "Failed to seek on %s: %m", coredump_tmpfile_name(tmp));
b59233e6 375 goto fail;
7849c2ac
TA
376 }
377
d89c8fdf 378#if defined(HAVE_XZ) || defined(HAVE_LZ4)
cfd652ed 379 /* If we will remove the coredump anyway, do not compress. */
6e9ef603 380 if (arg_compress && !maybe_remove_external_coredump(NULL, st.st_size)) {
cfd652ed 381
b59233e6
LP
382 _cleanup_free_ char *fn_compressed = NULL, *tmp_compressed = NULL;
383 _cleanup_close_ int fd_compressed = -1;
cfd652ed 384
d89c8fdf 385 fn_compressed = strappend(fn, COMPRESSED_EXT);
b59233e6 386 if (!fn_compressed) {
d89c8fdf 387 log_oom();
cfd652ed
ZJS
388 goto uncompressed;
389 }
390
03532f0a
LP
391 fd_compressed = open_tmpfile_linkable(fn_compressed, O_RDWR|O_CLOEXEC, &tmp_compressed);
392 if (fd_compressed < 0) {
393 log_error_errno(fd_compressed, "Failed to create temporary file for coredump %s: %m", fn_compressed);
b59233e6 394 goto uncompressed;
03532f0a 395 }
cfd652ed 396
d89c8fdf 397 r = compress_stream(fd, fd_compressed, -1);
b59233e6 398 if (r < 0) {
0c773903 399 log_error_errno(r, "Failed to compress %s: %m", coredump_tmpfile_name(tmp_compressed));
b59233e6
LP
400 goto fail_compressed;
401 }
402
3c171f0b 403 r = fix_permissions(fd_compressed, tmp_compressed, fn_compressed, context, uid);
cfd652ed 404 if (r < 0)
b59233e6
LP
405 goto fail_compressed;
406
407 /* OK, this worked, we can get rid of the uncompressed version now */
0c773903
EV
408 if (tmp)
409 unlink_noerrno(tmp);
cfd652ed 410
59f448cf 411 *ret_filename = fn_compressed; /* compressed */
5f3e0a74
HW
412 *ret_node_fd = fd_compressed; /* compressed */
413 *ret_data_fd = fd; /* uncompressed */
59f448cf 414 *ret_size = (uint64_t) st.st_size; /* uncompressed */
cfd652ed 415
b59233e6 416 fn_compressed = NULL;
5f3e0a74 417 fd = fd_compressed = -1;
cfd652ed
ZJS
418
419 return 0;
420
b59233e6 421 fail_compressed:
0c773903
EV
422 if (tmp_compressed)
423 (void) unlink(tmp_compressed);
34c10968 424 }
cfd652ed
ZJS
425
426uncompressed:
3b1a55e1 427#endif
5f3e0a74 428
3c171f0b 429 r = fix_permissions(fd, tmp, fn, context, uid);
cfd652ed
ZJS
430 if (r < 0)
431 goto fail;
34c10968
LP
432
433 *ret_filename = fn;
5f3e0a74
HW
434 *ret_data_fd = fd;
435 *ret_node_fd = -1;
59f448cf 436 *ret_size = (uint64_t) st.st_size;
34c10968
LP
437
438 fn = NULL;
439 fd = -1;
440
441 return 0;
442
443fail:
0c773903
EV
444 if (tmp)
445 (void) unlink(tmp);
34c10968
LP
446 return r;
447}
448
449static int allocate_journal_field(int fd, size_t size, char **ret, size_t *ret_size) {
450 _cleanup_free_ char *field = NULL;
451 ssize_t n;
452
8d4e028f 453 assert(fd >= 0);
34c10968
LP
454 assert(ret);
455 assert(ret_size);
456
4a62c710
MS
457 if (lseek(fd, 0, SEEK_SET) == (off_t) -1)
458 return log_warning_errno(errno, "Failed to seek: %m");
803a3464 459
34c10968
LP
460 field = malloc(9 + size);
461 if (!field) {
cfd652ed 462 log_warning("Failed to allocate memory for coredump, coredump will not be stored.");
34c10968
LP
463 return -ENOMEM;
464 }
465
466 memcpy(field, "COREDUMP=", 9);
467
468 n = read(fd, field + 9, size);
23bbb0de
MS
469 if (n < 0)
470 return log_error_errno((int) n, "Failed to read core data: %m");
34c10968
LP
471 if ((size_t) n < size) {
472 log_error("Core data too short.");
473 return -EIO;
474 }
475
476 *ret = field;
477 *ret_size = size + 9;
478
479 field = NULL;
480
481 return 0;
482}
803a3464 483
3f132692
JF
484/* Joins /proc/[pid]/fd/ and /proc/[pid]/fdinfo/ into the following lines:
485 * 0:/dev/pts/23
486 * pos: 0
487 * flags: 0100002
488 *
489 * 1:/dev/pts/23
490 * pos: 0
491 * flags: 0100002
492 *
493 * 2:/dev/pts/23
494 * pos: 0
495 * flags: 0100002
496 * EOF
497 */
498static int compose_open_fds(pid_t pid, char **open_fds) {
4d84bc2f
LP
499 _cleanup_closedir_ DIR *proc_fd_dir = NULL;
500 _cleanup_close_ int proc_fdinfo_fd = -1;
501 _cleanup_free_ char *buffer = NULL;
3f132692 502 _cleanup_fclose_ FILE *stream = NULL;
59059b4a 503 const char *fddelim = "", *path;
3f132692 504 struct dirent *dent = NULL;
4d84bc2f 505 size_t size = 0;
3f132692
JF
506 int r = 0;
507
508 assert(pid >= 0);
509 assert(open_fds != NULL);
510
59059b4a 511 path = procfs_file_alloca(pid, "fd");
3f132692 512 proc_fd_dir = opendir(path);
59059b4a
ZJS
513 if (!proc_fd_dir)
514 return -errno;
3f132692 515
4d84bc2f 516 proc_fdinfo_fd = openat(dirfd(proc_fd_dir), "../fdinfo", O_DIRECTORY|O_NOFOLLOW|O_CLOEXEC|O_PATH);
59059b4a
ZJS
517 if (proc_fdinfo_fd < 0)
518 return -errno;
3f132692 519
4d84bc2f 520 stream = open_memstream(&buffer, &size);
3f132692
JF
521 if (!stream)
522 return -ENOMEM;
523
4d84bc2f 524 FOREACH_DIRENT(dent, proc_fd_dir, return -errno) {
3f132692 525 _cleanup_fclose_ FILE *fdinfo = NULL;
4d84bc2f 526 _cleanup_free_ char *fdname = NULL;
59059b4a 527 char line[LINE_MAX];
4d84bc2f 528 int fd;
3f132692 529
59059b4a 530 r = readlinkat_malloc(dirfd(proc_fd_dir), dent->d_name, &fdname);
3f132692
JF
531 if (r < 0)
532 return r;
533
534 fprintf(stream, "%s%s:%s\n", fddelim, dent->d_name, fdname);
535 fddelim = "\n";
536
537 /* Use the directory entry from /proc/[pid]/fd with /proc/[pid]/fdinfo */
59059b4a
ZJS
538 fd = openat(proc_fdinfo_fd, dent->d_name, O_NOFOLLOW|O_CLOEXEC|O_RDONLY);
539 if (fd < 0)
3f132692
JF
540 continue;
541
59059b4a
ZJS
542 fdinfo = fdopen(fd, "re");
543 if (fdinfo == NULL) {
544 close(fd);
3f132692 545 continue;
59059b4a 546 }
3f132692 547
4d84bc2f
LP
548 FOREACH_LINE(line, fdinfo, break) {
549 fputs(line, stream);
550 if (!endswith(line, "\n"))
551 fputc('\n', stream);
552 }
3f132692
JF
553 }
554
4d84bc2f 555 errno = 0;
74ca738f 556 stream = safe_fclose(stream);
4d84bc2f 557
b3267152 558 if (errno > 0)
4d84bc2f
LP
559 return -errno;
560
561 *open_fds = buffer;
562 buffer = NULL;
563
3f132692
JF
564 return 0;
565}
566
7ed03ce6
JF
567static int get_process_ns(pid_t pid, const char *namespace, ino_t *ns) {
568 const char *p;
569 struct stat stbuf;
570 _cleanup_close_ int proc_ns_dir_fd;
571
572 p = procfs_file_alloca(pid, "ns");
573
574 proc_ns_dir_fd = open(p, O_DIRECTORY | O_CLOEXEC | O_RDONLY);
575 if (proc_ns_dir_fd < 0)
576 return -errno;
577
578 if (fstatat(proc_ns_dir_fd, namespace, &stbuf, /* flags */0) < 0)
579 return -errno;
580
581 *ns = stbuf.st_ino;
582 return 0;
583}
584
585static int get_mount_namespace_leader(pid_t pid, pid_t *container_pid) {
586 pid_t cpid = pid, ppid = 0;
587 ino_t proc_mntns;
588 int r = 0;
589
590 r = get_process_ns(pid, "mnt", &proc_mntns);
591 if (r < 0)
592 return r;
593
aa7530d6 594 for (;;) {
7ed03ce6
JF
595 ino_t parent_mntns;
596
597 r = get_process_ppid(cpid, &ppid);
598 if (r < 0)
599 return r;
600
601 r = get_process_ns(ppid, "mnt", &parent_mntns);
602 if (r < 0)
603 return r;
604
605 if (proc_mntns != parent_mntns)
606 break;
607
608 if (ppid == 1)
609 return -ENOENT;
610
611 cpid = ppid;
612 }
613
614 *container_pid = ppid;
615 return 0;
616}
617
618/* Returns 1 if the parent was found.
619 * Returns 0 if there is not a process we can call the pid's
620 * container parent (the pid's process isn't 'containerized').
621 * Returns a negative number on errors.
622 */
623static int get_process_container_parent_cmdline(pid_t pid, char** cmdline) {
624 int r = 0;
625 pid_t container_pid;
626 const char *proc_root_path;
627 struct stat root_stat, proc_root_stat;
628
629 /* To compare inodes of / and /proc/[pid]/root */
630 if (stat("/", &root_stat) < 0)
631 return -errno;
632
633 proc_root_path = procfs_file_alloca(pid, "root");
634 if (stat(proc_root_path, &proc_root_stat) < 0)
635 return -errno;
636
637 /* The process uses system root. */
638 if (proc_root_stat.st_ino == root_stat.st_ino) {
639 *cmdline = NULL;
640 return 0;
641 }
642
643 r = get_mount_namespace_leader(pid, &container_pid);
644 if (r < 0)
645 return r;
646
d3cba4ea
EV
647 r = get_process_cmdline(container_pid, 0, false, cmdline);
648 if (r < 0)
649 return r;
650
651 return 1;
7ed03ce6
JF
652}
653
3c171f0b
LP
654static int change_uid_gid(const char *context[]) {
655 uid_t uid;
656 gid_t gid;
657 int r;
34c10968 658
3c171f0b
LP
659 r = parse_uid(context[CONTEXT_UID], &uid);
660 if (r < 0)
661 return r;
8c8549db 662
888e378d
LP
663 if (uid <= SYSTEM_UID_MAX) {
664 const char *user = "systemd-coredump";
665
666 r = get_user_creds(&user, &uid, &gid, NULL, NULL);
667 if (r < 0) {
668 log_warning_errno(r, "Cannot resolve %s user. Proceeding to dump core as root: %m", user);
669 uid = gid = 0;
670 }
671 } else {
672 r = parse_gid(context[CONTEXT_GID], &gid);
673 if (r < 0)
674 return r;
675 }
3c171f0b
LP
676
677 return drop_privileges(uid, gid, 0);
678}
8c8549db 679
3c171f0b
LP
680static int submit_coredump(
681 const char *context[_CONTEXT_MAX],
682 struct iovec *iovec,
683 size_t n_iovec_allocated,
684 size_t n_iovec,
685 int input_fd) {
34c10968 686
5f3e0a74 687 _cleanup_close_ int coredump_fd = -1, coredump_node_fd = -1;
3c171f0b 688 _cleanup_free_ char *core_message = NULL, *filename = NULL, *coredump_data = NULL;
a5ca3649 689 uint64_t coredump_size = UINT64_MAX;
3c171f0b 690 int r;
f5e04665 691
3c171f0b
LP
692 assert(context);
693 assert(iovec);
694 assert(n_iovec_allocated >= n_iovec + 3);
695 assert(input_fd >= 0);
f5e04665 696
3c171f0b
LP
697 /* Vacuum before we write anything again */
698 (void) coredump_vacuum(-1, arg_keep_free, arg_max_use);
803a3464 699
3c171f0b
LP
700 /* Always stream the coredump to disk, if that's possible */
701 r = save_external_coredump(context, input_fd, &filename, &coredump_node_fd, &coredump_fd, &coredump_size);
702 if (r < 0)
703 /* Skip whole core dumping part */
704 goto log;
705
706 /* If we don't want to keep the coredump on disk, remove it now, as later on we will lack the privileges for
707 * it. However, we keep the fd to it, so that we can still process it and log it. */
708 r = maybe_remove_external_coredump(filename, coredump_size);
709 if (r < 0)
710 return r;
711 if (r == 0) {
712 const char *coredump_filename;
713
714 coredump_filename = strjoina("COREDUMP_FILENAME=", filename);
715 IOVEC_SET_STRING(iovec[n_iovec++], coredump_filename);
6e9ef603 716 } else if (arg_storage == COREDUMP_STORAGE_EXTERNAL)
5206a724 717 log_info("The core will not be stored: size %"PRIu64" is greater than %"PRIu64" (the configured maximum)",
6e9ef603 718 coredump_size, arg_external_size_max);
f5e04665 719
3c171f0b
LP
720 /* Vacuum again, but exclude the coredump we just created */
721 (void) coredump_vacuum(coredump_node_fd >= 0 ? coredump_node_fd : coredump_fd, arg_keep_free, arg_max_use);
8c9571d0 722
3c171f0b
LP
723 /* Now, let's drop privileges to become the user who owns the segfaulted process and allocate the coredump
724 * memory under the user's uid. This also ensures that the credentials journald will see are the ones of the
725 * coredumping user, thus making sure the user gets access to the core dump. Let's also get rid of all
726 * capabilities, if we run as root, we won't need them anymore. */
727 r = change_uid_gid(context);
728 if (r < 0)
729 return log_error_errno(r, "Failed to drop privileges: %m");
34c10968 730
3c171f0b
LP
731#ifdef HAVE_ELFUTILS
732 /* Try to get a strack trace if we can */
733 if (coredump_size <= arg_process_size_max) {
734 _cleanup_free_ char *stacktrace = NULL;
735
736 r = coredump_make_stack_trace(coredump_fd, context[CONTEXT_EXE], &stacktrace);
737 if (r >= 0)
605405c6
ZJS
738 core_message = strjoin("MESSAGE=Process ", context[CONTEXT_PID],
739 " (", context[CONTEXT_COMM], ") of user ",
740 context[CONTEXT_UID], " dumped core.\n\n",
741 stacktrace);
3c171f0b
LP
742 else if (r == -EINVAL)
743 log_warning("Failed to generate stack trace: %s", dwfl_errmsg(dwfl_errno()));
744 else
745 log_warning_errno(r, "Failed to generate stack trace: %m");
6e9ef603 746 } else
5206a724 747 log_debug("Not generating stack trace: core size %"PRIu64" is greater than %"PRIu64" (the configured maximum)",
6e9ef603 748 coredump_size, arg_process_size_max);
803a3464 749
3c171f0b
LP
750 if (!core_message)
751#endif
752log:
605405c6
ZJS
753 core_message = strjoin("MESSAGE=Process ", context[CONTEXT_PID], " (",
754 context[CONTEXT_COMM], ") of user ",
755 context[CONTEXT_UID], " dumped core.");
3c171f0b
LP
756 if (core_message)
757 IOVEC_SET_STRING(iovec[n_iovec++], core_message);
758
759 /* Optionally store the entire coredump in the journal */
6e9ef603
ZJS
760 if (arg_storage == COREDUMP_STORAGE_JOURNAL) {
761 if (coredump_size <= arg_journal_size_max) {
762 size_t sz = 0;
763
764 /* Store the coredump itself in the journal */
765
766 r = allocate_journal_field(coredump_fd, (size_t) coredump_size, &coredump_data, &sz);
767 if (r >= 0) {
768 iovec[n_iovec].iov_base = coredump_data;
769 iovec[n_iovec].iov_len = sz;
770 n_iovec++;
771 } else
772 log_warning_errno(r, "Failed to attach the core to the journal entry: %m");
773 } else
5206a724 774 log_info("The core will not be stored: size %"PRIu64" is greater than %"PRIu64" (the configured maximum)",
6e9ef603 775 coredump_size, arg_journal_size_max);
f5e04665
LP
776 }
777
3c171f0b
LP
778 assert(n_iovec <= n_iovec_allocated);
779
780 r = sd_journal_sendv(iovec, n_iovec);
781 if (r < 0)
782 return log_error_errno(r, "Failed to log coredump: %m");
783
784 return 0;
785}
786
787static void map_context_fields(const struct iovec *iovec, const char *context[]) {
788
789 static const char * const context_field_names[_CONTEXT_MAX] = {
790 [CONTEXT_PID] = "COREDUMP_PID=",
791 [CONTEXT_UID] = "COREDUMP_UID=",
792 [CONTEXT_GID] = "COREDUMP_GID=",
793 [CONTEXT_SIGNAL] = "COREDUMP_SIGNAL=",
794 [CONTEXT_TIMESTAMP] = "COREDUMP_TIMESTAMP=",
795 [CONTEXT_COMM] = "COREDUMP_COMM=",
796 [CONTEXT_EXE] = "COREDUMP_EXE=",
bdfd7b2c 797 [CONTEXT_RLIMIT] = "COREDUMP_RLIMIT=",
3c171f0b
LP
798 };
799
800 unsigned i;
801
802 assert(iovec);
803 assert(context);
804
805 for (i = 0; i < _CONTEXT_MAX; i++) {
806 size_t l;
807
808 l = strlen(context_field_names[i]);
809 if (iovec->iov_len < l)
810 continue;
811
812 if (memcmp(iovec->iov_base, context_field_names[i], l) != 0)
813 continue;
814
815 /* Note that these strings are NUL terminated, because we made sure that a trailing NUL byte is in the
816 * buffer, though not included in the iov_len count. (see below) */
817 context[i] = (char*) iovec->iov_base + l;
818 break;
819 }
820}
821
822static int process_socket(int fd) {
823 _cleanup_close_ int coredump_fd = -1;
824 struct iovec *iovec = NULL;
80002f66 825 size_t n_iovec = 0, n_allocated = 0, i, k;
3c171f0b
LP
826 const char *context[_CONTEXT_MAX] = {};
827 int r;
828
829 assert(fd >= 0);
830
831 log_set_target(LOG_TARGET_AUTO);
832 log_parse_environment();
833 log_open();
834
988e89ee
ZJS
835 log_debug("Processing coredump received on stdin...");
836
3c171f0b
LP
837 for (;;) {
838 union {
839 struct cmsghdr cmsghdr;
840 uint8_t buf[CMSG_SPACE(sizeof(int))];
841 } control = {};
842 struct msghdr mh = {
843 .msg_control = &control,
844 .msg_controllen = sizeof(control),
845 .msg_iovlen = 1,
846 };
847 ssize_t n;
fe1ef0f8 848 ssize_t l;
3c171f0b 849
5b45a160 850 if (!GREEDY_REALLOC(iovec, n_allocated, n_iovec + 3)) {
3c171f0b
LP
851 r = log_oom();
852 goto finish;
853 }
854
fe1ef0f8
EV
855 l = next_datagram_size_fd(fd);
856 if (l < 0) {
857 r = log_error_errno(l, "Failed to determine datagram size to read: %m");
3c171f0b
LP
858 goto finish;
859 }
860
861 assert(l >= 0);
862
863 iovec[n_iovec].iov_len = l;
864 iovec[n_iovec].iov_base = malloc(l + 1);
3c171f0b
LP
865 if (!iovec[n_iovec].iov_base) {
866 r = log_oom();
867 goto finish;
868 }
869
870 mh.msg_iov = iovec + n_iovec;
871
872 n = recvmsg(fd, &mh, MSG_NOSIGNAL|MSG_CMSG_CLOEXEC);
873 if (n < 0) {
874 free(iovec[n_iovec].iov_base);
875 r = log_error_errno(errno, "Failed to receive datagram: %m");
876 goto finish;
877 }
878
879 if (n == 0) {
880 struct cmsghdr *cmsg, *found = NULL;
881 /* The final zero-length datagram carries the file descriptor and tells us that we're done. */
882
883 free(iovec[n_iovec].iov_base);
884
885 CMSG_FOREACH(cmsg, &mh) {
886 if (cmsg->cmsg_level == SOL_SOCKET &&
887 cmsg->cmsg_type == SCM_RIGHTS &&
888 cmsg->cmsg_len == CMSG_LEN(sizeof(int))) {
889 assert(!found);
890 found = cmsg;
891 }
892 }
893
894 if (!found) {
895 log_error("Coredump file descriptor missing.");
896 r = -EBADMSG;
897 goto finish;
898 }
899
900 assert(coredump_fd < 0);
901 coredump_fd = *(int*) CMSG_DATA(found);
902 break;
903 }
904
905 /* Add trailing NUL byte, in case these are strings */
906 ((char*) iovec[n_iovec].iov_base)[n] = 0;
907 iovec[n_iovec].iov_len = (size_t) n;
908
909 cmsg_close_all(&mh);
910 map_context_fields(iovec + n_iovec, context);
911 n_iovec++;
912 }
913
5b45a160 914 if (!GREEDY_REALLOC(iovec, n_allocated, n_iovec + 3)) {
3c171f0b 915 r = log_oom();
34c10968
LP
916 goto finish;
917 }
918
61233823 919 /* Make sure we got all data we really need */
3c171f0b
LP
920 assert(context[CONTEXT_PID]);
921 assert(context[CONTEXT_UID]);
922 assert(context[CONTEXT_GID]);
923 assert(context[CONTEXT_SIGNAL]);
924 assert(context[CONTEXT_TIMESTAMP]);
bdfd7b2c 925 assert(context[CONTEXT_RLIMIT]);
3c171f0b
LP
926 assert(context[CONTEXT_COMM]);
927 assert(coredump_fd >= 0);
928
80002f66
LP
929 /* Small quirk: the journal fields contain the timestamp padded with six zeroes, so that the kernel-supplied 1s
930 * granularity timestamps becomes 1µs granularity, i.e. the granularity systemd usually operates in. Since we
931 * are reconstructing the original kernel context, we chop this off again, here. */
932 k = strlen(context[CONTEXT_TIMESTAMP]);
933 if (k > 6)
934 context[CONTEXT_TIMESTAMP] = strndupa(context[CONTEXT_TIMESTAMP], k - 6);
935
5b45a160 936 r = submit_coredump(context, iovec, n_allocated, n_iovec, coredump_fd);
3c171f0b
LP
937
938finish:
939 for (i = 0; i < n_iovec; i++)
940 free(iovec[i].iov_base);
941 free(iovec);
942
943 return r;
944}
945
946static int send_iovec(const struct iovec iovec[], size_t n_iovec, int input_fd) {
947
948 static const union sockaddr_union sa = {
949 .un.sun_family = AF_UNIX,
950 .un.sun_path = "/run/systemd/coredump",
951 };
952 _cleanup_close_ int fd = -1;
953 size_t i;
954 int r;
955
956 assert(iovec || n_iovec <= 0);
957 assert(input_fd >= 0);
958
959 fd = socket(AF_UNIX, SOCK_SEQPACKET|SOCK_CLOEXEC, 0);
960 if (fd < 0)
961 return log_error_errno(errno, "Failed to create coredump socket: %m");
962
fc2fffe7 963 if (connect(fd, &sa.sa, SOCKADDR_UN_LEN(sa.un)) < 0)
3c171f0b
LP
964 return log_error_errno(errno, "Failed to connect to coredump service: %m");
965
966 for (i = 0; i < n_iovec; i++) {
fec603eb
LP
967 struct msghdr mh = {
968 .msg_iov = (struct iovec*) iovec + i,
969 .msg_iovlen = 1,
970 };
971 struct iovec copy[2];
972
973 for (;;) {
974 if (sendmsg(fd, &mh, MSG_NOSIGNAL) >= 0)
975 break;
976
977 if (errno == EMSGSIZE && mh.msg_iov[0].iov_len > 0) {
978 /* This field didn't fit? That's a pity. Given that this is just metadata,
979 * let's truncate the field at half, and try again. We append three dots, in
980 * order to show that this is truncated. */
981
982 if (mh.msg_iov != copy) {
983 /* We don't want to modify the caller's iovec, hence let's create our
984 * own array, consisting of two new iovecs, where the first is a
985 * (truncated) copy of what we want to send, and the second one
986 * contains the trailing dots. */
987 copy[0] = iovec[i];
988 copy[1] = (struct iovec) {
989 .iov_base = (char[]) { '.', '.', '.' },
990 .iov_len = 3,
991 };
992
993 mh.msg_iov = copy;
994 mh.msg_iovlen = 2;
995 }
996
997 copy[0].iov_len /= 2; /* halve it, and try again */
998 continue;
999 }
3c171f0b 1000
3c171f0b 1001 return log_error_errno(errno, "Failed to send coredump datagram: %m");
fec603eb 1002 }
1eef15b1
ZJS
1003 }
1004
3c171f0b
LP
1005 r = send_one_fd(fd, input_fd, 0);
1006 if (r < 0)
1007 return log_error_errno(r, "Failed to send coredump fd: %m");
1eef15b1 1008
3c171f0b
LP
1009 return 0;
1010}
1eef15b1 1011
78f043f7 1012static int process_special_crash(const char *context[], int input_fd) {
3c171f0b
LP
1013 _cleanup_close_ int coredump_fd = -1, coredump_node_fd = -1;
1014 _cleanup_free_ char *filename = NULL;
1015 uint64_t coredump_size;
1016 int r;
803a3464 1017
3c171f0b
LP
1018 assert(context);
1019 assert(input_fd >= 0);
803a3464 1020
78f043f7 1021 /* If we are pid1 or journald, we cut things short, don't write to the journal, but still create a coredump. */
34c10968 1022
3c171f0b
LP
1023 if (arg_storage != COREDUMP_STORAGE_NONE)
1024 arg_storage = COREDUMP_STORAGE_EXTERNAL;
34c10968 1025
3c171f0b
LP
1026 r = save_external_coredump(context, input_fd, &filename, &coredump_node_fd, &coredump_fd, &coredump_size);
1027 if (r < 0)
1028 return r;
34c10968 1029
3c171f0b
LP
1030 r = maybe_remove_external_coredump(filename, coredump_size);
1031 if (r < 0)
1032 return r;
34c10968 1033
78f043f7
LP
1034 log_notice("Detected coredump of the journal daemon or PID 1, diverted to %s.", filename);
1035
3c171f0b
LP
1036 return 0;
1037}
1038
9aa82023
ZJS
1039static char* set_iovec_field(struct iovec iovec[27], size_t *n_iovec, const char *field, const char *value) {
1040 char *x;
3c171f0b 1041
9aa82023
ZJS
1042 x = strappend(field, value);
1043 if (x)
1044 IOVEC_SET_STRING(iovec[(*n_iovec)++], x);
1045 return x;
1046}
3c171f0b 1047
9aa82023
ZJS
1048static char* set_iovec_field_free(struct iovec iovec[27], size_t *n_iovec, const char *field, char *value) {
1049 char *x;
1050
1051 x = set_iovec_field(iovec, n_iovec, field, value);
1052 free(value);
1053 return x;
1054}
1055
86562420 1056static int gather_pid_metadata_and_process_special_crash(
9aa82023
ZJS
1057 const char *context[_CONTEXT_MAX],
1058 char **comm_fallback,
988e89ee 1059 char **comm_ret,
5b45a160 1060 struct iovec *iovec, size_t *n_iovec) {
d14bcb4e
LP
1061
1062 /* We need 26 empty slots in iovec!
1063 *
1064 * Note that if we fail on oom later on, we do not roll-back changes to the iovec structure. (It remains valid,
1065 * with the first n_iovec fields initialized.) */
3c171f0b
LP
1066
1067 _cleanup_free_ char *exe = NULL, *comm = NULL;
3c171f0b 1068 uid_t owner_uid;
3c171f0b
LP
1069 pid_t pid;
1070 char *t;
9aa82023 1071 const char *p;
d14bcb4e 1072 int r, signo;
3c171f0b 1073
9aa82023 1074 r = parse_pid(context[CONTEXT_PID], &pid);
3c171f0b 1075 if (r < 0)
988e89ee 1076 return log_error_errno(r, "Failed to parse PID \"%s\": %m", context[CONTEXT_PID]);
3c171f0b
LP
1077
1078 r = get_process_comm(pid, &comm);
1079 if (r < 0) {
1080 log_warning_errno(r, "Failed to get COMM, falling back to the command line: %m");
9aa82023 1081 comm = strv_join(comm_fallback, " ");
3c171f0b
LP
1082 if (!comm)
1083 return log_oom();
1084 }
1085
1086 r = get_process_exe(pid, &exe);
1087 if (r < 0)
1088 log_warning_errno(r, "Failed to get EXE, ignoring: %m");
1089
3c171f0b
LP
1090 if (cg_pid_get_unit(pid, &t) >= 0) {
1091
c8091d92
LP
1092 /* If this is PID 1 disable coredump collection, we'll unlikely be able to process it later on. */
1093 if (streq(t, SPECIAL_INIT_SCOPE)) {
1094 log_notice("Due to PID 1 having crashed coredump collection will now be turned off.");
1095 (void) write_string_file("/proc/sys/kernel/core_pattern", "|/bin/false", 0);
1096 }
1097
78f043f7
LP
1098 /* Let's avoid dead-locks when processing journald and init crashes, as socket activation and logging
1099 * are unlikely to work then. */
1100 if (STR_IN_SET(t, SPECIAL_JOURNALD_SERVICE, SPECIAL_INIT_SCOPE)) {
3c171f0b 1101 free(t);
86562420
LP
1102 r = process_special_crash(context, STDIN_FILENO);
1103 if (r < 0)
1104 return r;
1105
1106 return 1; /* > 0 means: we have already processed it, because it's a special crash */
803a3464
LP
1107 }
1108
9aa82023 1109 set_iovec_field_free(iovec, n_iovec, "COREDUMP_UNIT=", t);
8c8549db 1110 }
803a3464 1111
3c171f0b 1112 /* OK, now we know it's not the journal, hence we can make use of it now. */
803a3464
LP
1113 log_set_target(LOG_TARGET_JOURNAL_OR_KMSG);
1114 log_open();
1115
9aa82023
ZJS
1116 if (cg_pid_get_user_unit(pid, &t) >= 0)
1117 set_iovec_field_free(iovec, n_iovec, "COREDUMP_USER_UNIT=", t);
3c171f0b 1118
9aa82023
ZJS
1119 /* The next few are mandatory */
1120 if (!set_iovec_field(iovec, n_iovec, "COREDUMP_PID=", context[CONTEXT_PID]))
1121 return log_oom();
3c171f0b 1122
9aa82023
ZJS
1123 if (!set_iovec_field(iovec, n_iovec, "COREDUMP_UID=", context[CONTEXT_UID]))
1124 return log_oom();
f5e04665 1125
9aa82023
ZJS
1126 if (!set_iovec_field(iovec, n_iovec, "COREDUMP_GID=", context[CONTEXT_GID]))
1127 return log_oom();
f5e04665 1128
9aa82023
ZJS
1129 if (!set_iovec_field(iovec, n_iovec, "COREDUMP_SIGNAL=", context[CONTEXT_SIGNAL]))
1130 return log_oom();
f5e04665 1131
9aa82023
ZJS
1132 if (!set_iovec_field(iovec, n_iovec, "COREDUMP_RLIMIT=", context[CONTEXT_RLIMIT]))
1133 return log_oom();
f5e04665 1134
9aa82023
ZJS
1135 if (!set_iovec_field(iovec, n_iovec, "COREDUMP_COMM=", comm))
1136 return log_oom();
bdfd7b2c 1137
9aa82023
ZJS
1138 if (exe &&
1139 !set_iovec_field(iovec, n_iovec, "COREDUMP_EXE=", exe))
1140 return log_oom();
f5e04665 1141
9aa82023
ZJS
1142 if (sd_pid_get_session(pid, &t) >= 0)
1143 set_iovec_field_free(iovec, n_iovec, "COREDUMP_SESSION=", t);
f5e04665 1144
a035f819 1145 if (sd_pid_get_owner_uid(pid, &owner_uid) >= 0) {
9aa82023 1146 r = asprintf(&t, "COREDUMP_OWNER_UID=" UID_FMT, owner_uid);
7de80bfe 1147 if (r > 0)
9aa82023 1148 IOVEC_SET_STRING(iovec[(*n_iovec)++], t);
f5e04665
LP
1149 }
1150
9aa82023
ZJS
1151 if (sd_pid_get_slice(pid, &t) >= 0)
1152 set_iovec_field_free(iovec, n_iovec, "COREDUMP_SLICE=", t);
f5e04665 1153
9aa82023
ZJS
1154 if (get_process_cmdline(pid, 0, false, &t) >= 0)
1155 set_iovec_field_free(iovec, n_iovec, "COREDUMP_CMDLINE=", t);
a035f819 1156
9aa82023
ZJS
1157 if (cg_pid_get_path_shifted(pid, NULL, &t) >= 0)
1158 set_iovec_field_free(iovec, n_iovec, "COREDUMP_CGROUP=", t);
a035f819 1159
9aa82023
ZJS
1160 if (compose_open_fds(pid, &t) >= 0)
1161 set_iovec_field_free(iovec, n_iovec, "COREDUMP_OPEN_FDS=", t);
3f132692
JF
1162
1163 p = procfs_file_alloca(pid, "status");
9aa82023
ZJS
1164 if (read_full_file(p, &t, NULL) >= 0)
1165 set_iovec_field_free(iovec, n_iovec, "COREDUMP_PROC_STATUS=", t);
3f132692
JF
1166
1167 p = procfs_file_alloca(pid, "maps");
9aa82023
ZJS
1168 if (read_full_file(p, &t, NULL) >= 0)
1169 set_iovec_field_free(iovec, n_iovec, "COREDUMP_PROC_MAPS=", t);
3f132692
JF
1170
1171 p = procfs_file_alloca(pid, "limits");
9aa82023
ZJS
1172 if (read_full_file(p, &t, NULL) >= 0)
1173 set_iovec_field_free(iovec, n_iovec, "COREDUMP_PROC_LIMITS=", t);
3f132692
JF
1174
1175 p = procfs_file_alloca(pid, "cgroup");
9aa82023
ZJS
1176 if (read_full_file(p, &t, NULL) >=0)
1177 set_iovec_field_free(iovec, n_iovec, "COREDUMP_PROC_CGROUP=", t);
3f132692 1178
d7032b1f 1179 p = procfs_file_alloca(pid, "mountinfo");
9aa82023
ZJS
1180 if (read_full_file(p, &t, NULL) >=0)
1181 set_iovec_field_free(iovec, n_iovec, "COREDUMP_PROC_MOUNTINFO=", t);
d7032b1f 1182
9aa82023
ZJS
1183 if (get_process_cwd(pid, &t) >= 0)
1184 set_iovec_field_free(iovec, n_iovec, "COREDUMP_CWD=", t);
3f132692
JF
1185
1186 if (get_process_root(pid, &t) >= 0) {
9aa82023
ZJS
1187 bool proc_self_root_is_slash;
1188
1189 proc_self_root_is_slash = strcmp(t, "/") == 0;
3f132692 1190
9aa82023 1191 set_iovec_field_free(iovec, n_iovec, "COREDUMP_ROOT=", t);
7ed03ce6
JF
1192
1193 /* If the process' root is "/", then there is a chance it has
1194 * mounted own root and hence being containerized. */
9aa82023
ZJS
1195 if (proc_self_root_is_slash && get_process_container_parent_cmdline(pid, &t) > 0)
1196 set_iovec_field_free(iovec, n_iovec, "COREDUMP_CONTAINER_CMDLINE=", t);
3f132692
JF
1197 }
1198
9aa82023
ZJS
1199 if (get_process_environ(pid, &t) >= 0)
1200 set_iovec_field_free(iovec, n_iovec, "COREDUMP_ENVIRON=", t);
1201
1202 t = strjoin("COREDUMP_TIMESTAMP=", context[CONTEXT_TIMESTAMP], "000000", NULL);
1203 if (t)
1204 IOVEC_SET_STRING(iovec[(*n_iovec)++], t);
1205
d14bcb4e
LP
1206 if (safe_atoi(context[CONTEXT_SIGNAL], &signo) >= 0 && SIGNAL_VALID(signo))
1207 set_iovec_field(iovec, n_iovec, "COREDUMP_SIGNAL_NAME=SIG", signal_to_string(signo));
1208
988e89ee
ZJS
1209 if (comm_ret) {
1210 *comm_ret = comm;
1211 comm = NULL;
1212 }
1213
86562420 1214 return 0; /* == 0 means: we successfully acquired all metadata */
9aa82023 1215}
3f132692 1216
9aa82023
ZJS
1217static int process_kernel(int argc, char* argv[]) {
1218
1219 const char *context[_CONTEXT_MAX];
d14bcb4e 1220 struct iovec iovec[28];
988e89ee 1221 size_t i, n_iovec, n_to_free = 0;
9aa82023
ZJS
1222 int r;
1223
988e89ee
ZJS
1224 log_debug("Processing coredump received from the kernel...");
1225
9aa82023 1226 if (argc < CONTEXT_COMM + 1) {
988e89ee 1227 log_error("Not enough arguments passed by the kernel (%i, expected %i).", argc - 1, CONTEXT_COMM + 1 - 1);
9aa82023 1228 return -EINVAL;
3f132692
JF
1229 }
1230
9aa82023
ZJS
1231 context[CONTEXT_PID] = argv[CONTEXT_PID + 1];
1232 context[CONTEXT_UID] = argv[CONTEXT_UID + 1];
1233 context[CONTEXT_GID] = argv[CONTEXT_GID + 1];
1234 context[CONTEXT_SIGNAL] = argv[CONTEXT_SIGNAL + 1];
1235 context[CONTEXT_TIMESTAMP] = argv[CONTEXT_TIMESTAMP + 1];
1236 context[CONTEXT_RLIMIT] = argv[CONTEXT_RLIMIT + 1];
1237
86562420 1238 r = gather_pid_metadata_and_process_special_crash(context, argv + CONTEXT_COMM + 1, NULL, iovec, &n_to_free);
a6a73a10
ZJS
1239 if (r != 0)
1240 /* Error, or a a special crash, which has already been processed. */
86562420 1241 goto finish;
86562420 1242
988e89ee 1243 n_iovec = n_to_free;
f5e04665 1244
2b044526 1245 IOVEC_SET_STRING(iovec[n_iovec++], "MESSAGE_ID=" SD_MESSAGE_COREDUMP_STR);
4850d39a
LP
1246
1247 assert_cc(2 == LOG_CRIT);
3c171f0b 1248 IOVEC_SET_STRING(iovec[n_iovec++], "PRIORITY=2");
0dc5d23c 1249
3c171f0b 1250 assert(n_iovec <= ELEMENTSOF(iovec));
34c10968 1251
9aa82023
ZJS
1252 r = send_iovec(iovec, n_iovec, STDIN_FILENO);
1253
1254 finish:
1255 for (i = 0; i < n_to_free; i++)
1256 free(iovec[i].iov_base);
1257
1258 return r;
3c171f0b 1259}
34c10968 1260
988e89ee
ZJS
1261static int process_backtrace(int argc, char *argv[]) {
1262 const char *context[_CONTEXT_MAX];
5b45a160
ZJS
1263 _cleanup_free_ char *comm = NULL, *message = NULL;
1264 _cleanup_free_ struct iovec *iovec = NULL;
1265 size_t n_iovec, n_allocated, n_to_free = 0, i;
988e89ee 1266 int r;
5b45a160
ZJS
1267 JournalImporter importer = {
1268 .fd = STDIN_FILENO,
1269 };
988e89ee
ZJS
1270
1271 log_debug("Processing backtrace on stdin...");
1272
1273 if (argc < CONTEXT_COMM + 1) {
1274 log_error("Not enough arguments passed (%i, expected %i).", argc - 1, CONTEXT_COMM + 1 - 1);
1275 return -EINVAL;
1276 }
1277
1278 context[CONTEXT_PID] = argv[CONTEXT_PID + 2];
1279 context[CONTEXT_UID] = argv[CONTEXT_UID + 2];
1280 context[CONTEXT_GID] = argv[CONTEXT_GID + 2];
1281 context[CONTEXT_SIGNAL] = argv[CONTEXT_SIGNAL + 2];
1282 context[CONTEXT_TIMESTAMP] = argv[CONTEXT_TIMESTAMP + 2];
1283 context[CONTEXT_RLIMIT] = argv[CONTEXT_RLIMIT + 2];
1284
d14bcb4e 1285 n_allocated = 33; /* 25 metadata, 2 static, +unknown input, rounded up */
5b45a160
ZJS
1286 iovec = new(struct iovec, n_allocated);
1287 if (!iovec)
1288 return log_oom();
1289
86562420 1290 r = gather_pid_metadata_and_process_special_crash(context, argv + CONTEXT_COMM + 2, &comm, iovec, &n_to_free);
988e89ee
ZJS
1291 if (r < 0)
1292 goto finish;
86562420
LP
1293 if (r > 0) {
1294 /* This was a special crash, and has already been processed. */
1295 r = 0;
1296 goto finish;
1297 }
5b45a160 1298 n_iovec = n_to_free;
988e89ee 1299
86562420 1300 for (;;) {
5b45a160
ZJS
1301 r = journal_importer_process_data(&importer);
1302 if (r < 0) {
1303 log_error_errno(r, "Failed to parse journal entry on stdin: %m");
1304 goto finish;
1305 }
1306 if (r == 1)
1307 break;
988e89ee 1308 }
988e89ee 1309
5b45a160
ZJS
1310 if (!GREEDY_REALLOC(iovec, n_allocated, n_iovec + importer.iovw.count + 2))
1311 return log_oom();
1312
1313 if (journal_importer_eof(&importer)) {
1314 log_warning("Did not receive a full journal entry on stdin, ignoring message sent by reporter");
988e89ee 1315
5b45a160
ZJS
1316 message = strjoin("MESSAGE=Process ", context[CONTEXT_PID], " (", comm, ")"
1317 " of user ", context[CONTEXT_UID],
1318 " failed with ", context[CONTEXT_SIGNAL]);
1319 if (!message) {
1320 r = log_oom();
1321 goto finish;
1322 }
1323 IOVEC_SET_STRING(iovec[n_iovec++], message);
1324 } else {
1325 for (i = 0; i < importer.iovw.count; i++)
1326 iovec[n_iovec++] = importer.iovw.iovec[i];
1327 }
988e89ee 1328
2b044526 1329 IOVEC_SET_STRING(iovec[n_iovec++], "MESSAGE_ID=" SD_MESSAGE_BACKTRACE_STR);
988e89ee
ZJS
1330 assert_cc(2 == LOG_CRIT);
1331 IOVEC_SET_STRING(iovec[n_iovec++], "PRIORITY=2");
1332
5b45a160 1333 assert(n_iovec <= n_allocated);
988e89ee
ZJS
1334
1335 r = sd_journal_sendv(iovec, n_iovec);
1336 if (r < 0)
1337 log_error_errno(r, "Failed to log backtrace: %m");
1338
1339 finish:
1340 for (i = 0; i < n_to_free; i++)
1341 free(iovec[i].iov_base);
1342
1343 return r;
1344}
1345
3c171f0b
LP
1346int main(int argc, char *argv[]) {
1347 int r;
fee80f69 1348
9aa82023
ZJS
1349 /* First, log to a safe place, since we don't know what crashed and it might
1350 * be journald which we'd rather not log to then. */
8d4e028f 1351
3c171f0b
LP
1352 log_set_target(LOG_TARGET_KMSG);
1353 log_open();
8d4e028f 1354
3c171f0b
LP
1355 /* Make sure we never enter a loop */
1356 (void) prctl(PR_SET_DUMPABLE, 0);
8d4e028f 1357
3c171f0b
LP
1358 /* Ignore all parse errors */
1359 (void) parse_config();
fee80f69 1360
3c171f0b
LP
1361 log_debug("Selected storage '%s'.", coredump_storage_to_string(arg_storage));
1362 log_debug("Selected compression %s.", yes_no(arg_compress));
fee80f69 1363
3c171f0b
LP
1364 r = sd_listen_fds(false);
1365 if (r < 0) {
1366 log_error_errno(r, "Failed to determine number of file descriptor: %m");
1367 goto finish;
fee80f69
LP
1368 }
1369
9aa82023
ZJS
1370 /* If we got an fd passed, we are running in coredumpd mode. Otherwise we
1371 * are invoked from the kernel as coredump handler. */
988e89ee
ZJS
1372 if (r == 0) {
1373 if (streq_ptr(argv[1], "--backtrace"))
1374 r = process_backtrace(argc, argv);
1375 else
1376 r = process_kernel(argc, argv);
1377 } else if (r == 1)
3c171f0b
LP
1378 r = process_socket(SD_LISTEN_FDS_START);
1379 else {
1380 log_error("Received unexpected number of file descriptors.");
1381 r = -EINVAL;
1382 }
f5e04665
LP
1383
1384finish:
f5e04665
LP
1385 return r < 0 ? EXIT_FAILURE : EXIT_SUCCESS;
1386}