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Return error to dm_tree_suspend_children() callers.
[lvm2.git] / libdm / libdm-deptree.c
CommitLineData
3d0480ed 1/*
147d5fac 2 * Copyright (C) 2005-2007 Red Hat, Inc. All rights reserved.
3d0480ed
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3 *
4 * This file is part of the device-mapper userspace tools.
5 *
6 * This copyrighted material is made available to anyone wishing to use,
7 * modify, copy, or redistribute it subject to the terms and conditions
8 * of the GNU Lesser General Public License v.2.1.
9 *
10 * You should have received a copy of the GNU Lesser General Public License
11 * along with this program; if not, write to the Free Software Foundation,
12 * Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
13 */
14
3e5b6ed2 15#include "dmlib.h"
3d0480ed
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16#include "libdm-targets.h"
17#include "libdm-common.h"
3d0480ed 18#include "kdev_t.h"
0782ad50 19#include "dm-ioctl.h"
3d0480ed
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20
21#include <stdarg.h>
22#include <sys/param.h>
8f26e18c 23#include <sys/utsname.h>
3d0480ed 24
165e4a11
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25#define MAX_TARGET_PARAMSIZE 500000
26
87f98002
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27/* FIXME Fix interface so this is used only by LVM */
28#define UUID_PREFIX "LVM-"
29
165e4a11
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30/* Supported segment types */
31enum {
12ca060e
MB
32 SEG_CRYPT,
33 SEG_ERROR,
165e4a11
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34 SEG_LINEAR,
35 SEG_MIRRORED,
36 SEG_SNAPSHOT,
37 SEG_SNAPSHOT_ORIGIN,
38 SEG_STRIPED,
39 SEG_ZERO,
40};
b4f1578f 41
165e4a11
AK
42/* FIXME Add crypt and multipath support */
43
44struct {
45 unsigned type;
46 const char *target;
47} dm_segtypes[] = {
12ca060e 48 { SEG_CRYPT, "crypt" },
165e4a11
AK
49 { SEG_ERROR, "error" },
50 { SEG_LINEAR, "linear" },
51 { SEG_MIRRORED, "mirror" },
52 { SEG_SNAPSHOT, "snapshot" },
53 { SEG_SNAPSHOT_ORIGIN, "snapshot-origin" },
54 { SEG_STRIPED, "striped" },
55 { SEG_ZERO, "zero"},
56};
57
58/* Some segment types have a list of areas of other devices attached */
59struct seg_area {
2c44337b 60 struct dm_list list;
165e4a11 61
b4f1578f 62 struct dm_tree_node *dev_node;
165e4a11
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63
64 uint64_t offset;
65};
66
67/* Per-segment properties */
68struct load_segment {
2c44337b 69 struct dm_list list;
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70
71 unsigned type;
72
73 uint64_t size;
74
12ca060e
MB
75 unsigned area_count; /* Linear + Striped + Mirrored + Crypt */
76 struct dm_list areas; /* Linear + Striped + Mirrored + Crypt */
165e4a11
AK
77
78 uint32_t stripe_size; /* Striped */
79
80 int persistent; /* Snapshot */
81 uint32_t chunk_size; /* Snapshot */
b4f1578f
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82 struct dm_tree_node *cow; /* Snapshot */
83 struct dm_tree_node *origin; /* Snapshot + Snapshot origin */
165e4a11 84
b4f1578f 85 struct dm_tree_node *log; /* Mirror */
165e4a11
AK
86 uint32_t region_size; /* Mirror */
87 unsigned clustered; /* Mirror */
88 unsigned mirror_area_count; /* Mirror */
dbcb64b8 89 uint32_t flags; /* Mirror log */
67b25ed4 90 char *uuid; /* Clustered mirror log */
12ca060e
MB
91
92 const char *cipher; /* Crypt */
93 const char *chainmode; /* Crypt */
94 const char *iv; /* Crypt */
95 uint64_t iv_offset; /* Crypt */
96 const char *key; /* Crypt */
165e4a11
AK
97};
98
99/* Per-device properties */
100struct load_properties {
101 int read_only;
102 uint32_t major;
103 uint32_t minor;
104
52b84409
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105 uint32_t read_ahead;
106 uint32_t read_ahead_flags;
107
165e4a11 108 unsigned segment_count;
bb875bb9 109 unsigned size_changed;
2c44337b 110 struct dm_list segs;
165e4a11
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111
112 const char *new_name;
113};
114
115/* Two of these used to join two nodes with uses and used_by. */
b4f1578f 116struct dm_tree_link {
2c44337b 117 struct dm_list list;
b4f1578f 118 struct dm_tree_node *node;
165e4a11
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119};
120
b4f1578f
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121struct dm_tree_node {
122 struct dm_tree *dtree;
3d0480ed
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123
124 const char *name;
125 const char *uuid;
126 struct dm_info info;
127
2c44337b
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128 struct dm_list uses; /* Nodes this node uses */
129 struct dm_list used_by; /* Nodes that use this node */
165e4a11 130
56c28292
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131 int activation_priority; /* 0 gets activated first */
132
f16aea9e
PR
133 uint16_t udev_flags; /* Udev control flags */
134
165e4a11
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135 void *context; /* External supplied context */
136
137 struct load_properties props; /* For creation/table (re)load */
3d0480ed
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138};
139
b4f1578f 140struct dm_tree {
a3f6b2ce
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141 struct dm_pool *mem;
142 struct dm_hash_table *devs;
165e4a11 143 struct dm_hash_table *uuids;
b4f1578f 144 struct dm_tree_node root;
c55b1410 145 int skip_lockfs; /* 1 skips lockfs (for non-snapshots) */
b9ffd32c 146 int no_flush; /* 1 sets noflush (mirrors/multipath) */
bd90c6b2 147 uint32_t cookie;
3d0480ed
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148};
149
b4f1578f 150struct dm_tree *dm_tree_create(void)
3d0480ed 151{
b4f1578f 152 struct dm_tree *dtree;
3d0480ed 153
b4f1578f
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154 if (!(dtree = dm_malloc(sizeof(*dtree)))) {
155 log_error("dm_tree_create malloc failed");
3d0480ed
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156 return NULL;
157 }
158
b4f1578f
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159 memset(dtree, 0, sizeof(*dtree));
160 dtree->root.dtree = dtree;
2c44337b
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161 dm_list_init(&dtree->root.uses);
162 dm_list_init(&dtree->root.used_by);
c55b1410 163 dtree->skip_lockfs = 0;
b9ffd32c 164 dtree->no_flush = 0;
3d0480ed 165
b4f1578f
AK
166 if (!(dtree->mem = dm_pool_create("dtree", 1024))) {
167 log_error("dtree pool creation failed");
168 dm_free(dtree);
3d0480ed
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169 return NULL;
170 }
171
b4f1578f
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172 if (!(dtree->devs = dm_hash_create(8))) {
173 log_error("dtree hash creation failed");
174 dm_pool_destroy(dtree->mem);
175 dm_free(dtree);
3d0480ed
AK
176 return NULL;
177 }
178
b4f1578f
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179 if (!(dtree->uuids = dm_hash_create(32))) {
180 log_error("dtree uuid hash creation failed");
181 dm_hash_destroy(dtree->devs);
182 dm_pool_destroy(dtree->mem);
183 dm_free(dtree);
165e4a11
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184 return NULL;
185 }
186
b4f1578f 187 return dtree;
3d0480ed
AK
188}
189
b4f1578f 190void dm_tree_free(struct dm_tree *dtree)
3d0480ed 191{
b4f1578f 192 if (!dtree)
3d0480ed
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193 return;
194
b4f1578f
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195 dm_hash_destroy(dtree->uuids);
196 dm_hash_destroy(dtree->devs);
197 dm_pool_destroy(dtree->mem);
198 dm_free(dtree);
3d0480ed
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199}
200
b4f1578f
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201static int _nodes_are_linked(struct dm_tree_node *parent,
202 struct dm_tree_node *child)
3d0480ed 203{
b4f1578f 204 struct dm_tree_link *dlink;
3d0480ed 205
2c44337b 206 dm_list_iterate_items(dlink, &parent->uses)
3d0480ed
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207 if (dlink->node == child)
208 return 1;
3d0480ed
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209
210 return 0;
211}
212
2c44337b 213static int _link(struct dm_list *list, struct dm_tree_node *node)
3d0480ed 214{
b4f1578f 215 struct dm_tree_link *dlink;
3d0480ed 216
b4f1578f
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217 if (!(dlink = dm_pool_alloc(node->dtree->mem, sizeof(*dlink)))) {
218 log_error("dtree link allocation failed");
3d0480ed
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219 return 0;
220 }
221
222 dlink->node = node;
2c44337b 223 dm_list_add(list, &dlink->list);
3d0480ed
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224
225 return 1;
226}
227
b4f1578f
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228static int _link_nodes(struct dm_tree_node *parent,
229 struct dm_tree_node *child)
3d0480ed
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230{
231 if (_nodes_are_linked(parent, child))
232 return 1;
233
234 if (!_link(&parent->uses, child))
235 return 0;
236
237 if (!_link(&child->used_by, parent))
238 return 0;
239
240 return 1;
241}
242
2c44337b 243static void _unlink(struct dm_list *list, struct dm_tree_node *node)
3d0480ed 244{
b4f1578f 245 struct dm_tree_link *dlink;
3d0480ed 246
2c44337b 247 dm_list_iterate_items(dlink, list)
3d0480ed 248 if (dlink->node == node) {
2c44337b 249 dm_list_del(&dlink->list);
3d0480ed
AK
250 break;
251 }
3d0480ed
AK
252}
253
b4f1578f
AK
254static void _unlink_nodes(struct dm_tree_node *parent,
255 struct dm_tree_node *child)
3d0480ed
AK
256{
257 if (!_nodes_are_linked(parent, child))
258 return;
259
260 _unlink(&parent->uses, child);
261 _unlink(&child->used_by, parent);
262}
263
b4f1578f 264static int _add_to_toplevel(struct dm_tree_node *node)
165e4a11 265{
b4f1578f 266 return _link_nodes(&node->dtree->root, node);
165e4a11
AK
267}
268
b4f1578f 269static void _remove_from_toplevel(struct dm_tree_node *node)
3d0480ed 270{
b1ebf028 271 _unlink_nodes(&node->dtree->root, node);
3d0480ed
AK
272}
273
b4f1578f 274static int _add_to_bottomlevel(struct dm_tree_node *node)
3d0480ed 275{
b4f1578f 276 return _link_nodes(node, &node->dtree->root);
3d0480ed
AK
277}
278
b4f1578f 279static void _remove_from_bottomlevel(struct dm_tree_node *node)
165e4a11 280{
b1ebf028 281 _unlink_nodes(node, &node->dtree->root);
165e4a11
AK
282}
283
b4f1578f 284static int _link_tree_nodes(struct dm_tree_node *parent, struct dm_tree_node *child)
165e4a11
AK
285{
286 /* Don't link to root node if child already has a parent */
b4f1578f
AK
287 if ((parent == &parent->dtree->root)) {
288 if (dm_tree_node_num_children(child, 1))
165e4a11
AK
289 return 1;
290 } else
291 _remove_from_toplevel(child);
292
b4f1578f
AK
293 if ((child == &child->dtree->root)) {
294 if (dm_tree_node_num_children(parent, 0))
165e4a11
AK
295 return 1;
296 } else
297 _remove_from_bottomlevel(parent);
298
299 return _link_nodes(parent, child);
300}
301
b4f1578f 302static struct dm_tree_node *_create_dm_tree_node(struct dm_tree *dtree,
3d0480ed
AK
303 const char *name,
304 const char *uuid,
165e4a11 305 struct dm_info *info,
f16aea9e
PR
306 void *context,
307 uint16_t udev_flags)
3d0480ed 308{
b4f1578f 309 struct dm_tree_node *node;
3d0480ed
AK
310 uint64_t dev;
311
b4f1578f
AK
312 if (!(node = dm_pool_zalloc(dtree->mem, sizeof(*node)))) {
313 log_error("_create_dm_tree_node alloc failed");
3d0480ed
AK
314 return NULL;
315 }
316
b4f1578f 317 node->dtree = dtree;
3d0480ed
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318
319 node->name = name;
320 node->uuid = uuid;
321 node->info = *info;
165e4a11 322 node->context = context;
f16aea9e 323 node->udev_flags = udev_flags;
56c28292 324 node->activation_priority = 0;
3d0480ed 325
2c44337b
AK
326 dm_list_init(&node->uses);
327 dm_list_init(&node->used_by);
328 dm_list_init(&node->props.segs);
3d0480ed
AK
329
330 dev = MKDEV(info->major, info->minor);
331
b4f1578f 332 if (!dm_hash_insert_binary(dtree->devs, (const char *) &dev,
3d0480ed 333 sizeof(dev), node)) {
b4f1578f
AK
334 log_error("dtree node hash insertion failed");
335 dm_pool_free(dtree->mem, node);
3d0480ed
AK
336 return NULL;
337 }
338
165e4a11 339 if (uuid && *uuid &&
b4f1578f
AK
340 !dm_hash_insert(dtree->uuids, uuid, node)) {
341 log_error("dtree uuid hash insertion failed");
342 dm_hash_remove_binary(dtree->devs, (const char *) &dev,
165e4a11 343 sizeof(dev));
b4f1578f 344 dm_pool_free(dtree->mem, node);
165e4a11
AK
345 return NULL;
346 }
347
3d0480ed
AK
348 return node;
349}
350
b4f1578f 351static struct dm_tree_node *_find_dm_tree_node(struct dm_tree *dtree,
3d0480ed
AK
352 uint32_t major, uint32_t minor)
353{
354 uint64_t dev = MKDEV(major, minor);
355
b4f1578f 356 return dm_hash_lookup_binary(dtree->devs, (const char *) &dev,
3d0480ed
AK
357 sizeof(dev));
358}
359
b4f1578f 360static struct dm_tree_node *_find_dm_tree_node_by_uuid(struct dm_tree *dtree,
165e4a11
AK
361 const char *uuid)
362{
87f98002
AK
363 struct dm_tree_node *node;
364
365 if ((node = dm_hash_lookup(dtree->uuids, uuid)))
366 return node;
367
368 if (strncmp(uuid, UUID_PREFIX, sizeof(UUID_PREFIX) - 1))
369 return NULL;
370
371 return dm_hash_lookup(dtree->uuids, uuid + sizeof(UUID_PREFIX) - 1);
165e4a11
AK
372}
373
a3f6b2ce 374static int _deps(struct dm_task **dmt, struct dm_pool *mem, uint32_t major, uint32_t minor,
3d0480ed
AK
375 const char **name, const char **uuid,
376 struct dm_info *info, struct dm_deps **deps)
377{
378 memset(info, 0, sizeof(*info));
379
380 if (!dm_is_dm_major(major)) {
381 *name = "";
382 *uuid = "";
383 *deps = NULL;
384 info->major = major;
385 info->minor = minor;
386 info->exists = 0;
165e4a11
AK
387 info->live_table = 0;
388 info->inactive_table = 0;
389 info->read_only = 0;
3d0480ed
AK
390 return 1;
391 }
392
393 if (!(*dmt = dm_task_create(DM_DEVICE_DEPS))) {
394 log_error("deps dm_task creation failed");
395 return 0;
396 }
397
b4f1578f
AK
398 if (!dm_task_set_major(*dmt, major)) {
399 log_error("_deps: failed to set major for (%" PRIu32 ":%" PRIu32 ")",
400 major, minor);
3d0480ed 401 goto failed;
b4f1578f 402 }
3d0480ed 403
b4f1578f
AK
404 if (!dm_task_set_minor(*dmt, minor)) {
405 log_error("_deps: failed to set minor for (%" PRIu32 ":%" PRIu32 ")",
406 major, minor);
3d0480ed 407 goto failed;
b4f1578f 408 }
3d0480ed 409
b4f1578f
AK
410 if (!dm_task_run(*dmt)) {
411 log_error("_deps: task run failed for (%" PRIu32 ":%" PRIu32 ")",
412 major, minor);
3d0480ed 413 goto failed;
b4f1578f 414 }
3d0480ed 415
b4f1578f
AK
416 if (!dm_task_get_info(*dmt, info)) {
417 log_error("_deps: failed to get info for (%" PRIu32 ":%" PRIu32 ")",
418 major, minor);
3d0480ed 419 goto failed;
b4f1578f 420 }
3d0480ed
AK
421
422 if (!info->exists) {
423 *name = "";
424 *uuid = "";
425 *deps = NULL;
426 } else {
427 if (info->major != major) {
b4f1578f 428 log_error("Inconsistent dtree major number: %u != %u",
3d0480ed
AK
429 major, info->major);
430 goto failed;
431 }
432 if (info->minor != minor) {
b4f1578f 433 log_error("Inconsistent dtree minor number: %u != %u",
3d0480ed
AK
434 minor, info->minor);
435 goto failed;
436 }
a3f6b2ce 437 if (!(*name = dm_pool_strdup(mem, dm_task_get_name(*dmt)))) {
3d0480ed
AK
438 log_error("name pool_strdup failed");
439 goto failed;
440 }
a3f6b2ce 441 if (!(*uuid = dm_pool_strdup(mem, dm_task_get_uuid(*dmt)))) {
3d0480ed
AK
442 log_error("uuid pool_strdup failed");
443 goto failed;
444 }
445 *deps = dm_task_get_deps(*dmt);
446 }
447
448 return 1;
449
450failed:
451 dm_task_destroy(*dmt);
452 return 0;
453}
454
b4f1578f
AK
455static struct dm_tree_node *_add_dev(struct dm_tree *dtree,
456 struct dm_tree_node *parent,
165e4a11 457 uint32_t major, uint32_t minor)
3d0480ed
AK
458{
459 struct dm_task *dmt = NULL;
460 struct dm_info info;
461 struct dm_deps *deps = NULL;
462 const char *name = NULL;
463 const char *uuid = NULL;
b4f1578f 464 struct dm_tree_node *node = NULL;
3d0480ed 465 uint32_t i;
3d0480ed
AK
466 int new = 0;
467
468 /* Already in tree? */
b4f1578f
AK
469 if (!(node = _find_dm_tree_node(dtree, major, minor))) {
470 if (!_deps(&dmt, dtree->mem, major, minor, &name, &uuid, &info, &deps))
471 return_NULL;
3d0480ed 472
f16aea9e
PR
473 if (!(node = _create_dm_tree_node(dtree, name, uuid, &info,
474 NULL, 0)))
b4f1578f 475 goto_out;
3d0480ed
AK
476 new = 1;
477 }
478
165e4a11
AK
479 if (!_link_tree_nodes(parent, node)) {
480 node = NULL;
b4f1578f 481 goto_out;
165e4a11 482 }
3d0480ed
AK
483
484 /* If node was already in tree, no need to recurse. */
485 if (!new)
165e4a11 486 goto out;
3d0480ed
AK
487
488 /* Can't recurse if not a mapped device or there are no dependencies */
489 if (!node->info.exists || !deps->count) {
b4f1578f
AK
490 if (!_add_to_bottomlevel(node)) {
491 stack;
165e4a11 492 node = NULL;
b4f1578f 493 }
165e4a11 494 goto out;
3d0480ed
AK
495 }
496
497 /* Add dependencies to tree */
498 for (i = 0; i < deps->count; i++)
b4f1578f 499 if (!_add_dev(dtree, node, MAJOR(deps->device[i]),
165e4a11
AK
500 MINOR(deps->device[i]))) {
501 node = NULL;
b4f1578f 502 goto_out;
165e4a11 503 }
3d0480ed 504
3d0480ed
AK
505out:
506 if (dmt)
507 dm_task_destroy(dmt);
508
165e4a11
AK
509 return node;
510}
511
b4f1578f 512static int _node_clear_table(struct dm_tree_node *dnode)
165e4a11
AK
513{
514 struct dm_task *dmt;
515 struct dm_info *info;
516 const char *name;
517 int r;
518
519 if (!(info = &dnode->info)) {
b4f1578f 520 log_error("_node_clear_table failed: missing info");
165e4a11
AK
521 return 0;
522 }
523
b4f1578f
AK
524 if (!(name = dm_tree_node_get_name(dnode))) {
525 log_error("_node_clear_table failed: missing name");
165e4a11
AK
526 return 0;
527 }
528
529 /* Is there a table? */
530 if (!info->exists || !info->inactive_table)
531 return 1;
532
533 log_verbose("Clearing inactive table %s (%" PRIu32 ":%" PRIu32 ")",
534 name, info->major, info->minor);
535
536 if (!(dmt = dm_task_create(DM_DEVICE_CLEAR))) {
537 dm_task_destroy(dmt);
538 log_error("Table clear dm_task creation failed for %s", name);
539 return 0;
540 }
541
542 if (!dm_task_set_major(dmt, info->major) ||
543 !dm_task_set_minor(dmt, info->minor)) {
544 log_error("Failed to set device number for %s table clear", name);
545 dm_task_destroy(dmt);
546 return 0;
547 }
548
549 r = dm_task_run(dmt);
550
551 if (!dm_task_get_info(dmt, info)) {
b4f1578f 552 log_error("_node_clear_table failed: info missing after running task for %s", name);
165e4a11
AK
553 r = 0;
554 }
555
556 dm_task_destroy(dmt);
557
3d0480ed
AK
558 return r;
559}
560
b4f1578f 561struct dm_tree_node *dm_tree_add_new_dev(struct dm_tree *dtree,
165e4a11
AK
562 const char *name,
563 const char *uuid,
564 uint32_t major, uint32_t minor,
565 int read_only,
566 int clear_inactive,
567 void *context)
568{
b4f1578f 569 struct dm_tree_node *dnode;
165e4a11
AK
570 struct dm_info info;
571 const char *name2;
572 const char *uuid2;
573
574 /* Do we need to add node to tree? */
b4f1578f
AK
575 if (!(dnode = dm_tree_find_node_by_uuid(dtree, uuid))) {
576 if (!(name2 = dm_pool_strdup(dtree->mem, name))) {
165e4a11
AK
577 log_error("name pool_strdup failed");
578 return NULL;
579 }
b4f1578f 580 if (!(uuid2 = dm_pool_strdup(dtree->mem, uuid))) {
165e4a11
AK
581 log_error("uuid pool_strdup failed");
582 return NULL;
583 }
584
585 info.major = 0;
586 info.minor = 0;
587 info.exists = 0;
588 info.live_table = 0;
589 info.inactive_table = 0;
590 info.read_only = 0;
591
f16aea9e
PR
592 if (!(dnode = _create_dm_tree_node(dtree, name2, uuid2, &info,
593 context, 0)))
b4f1578f 594 return_NULL;
165e4a11
AK
595
596 /* Attach to root node until a table is supplied */
b4f1578f
AK
597 if (!_add_to_toplevel(dnode) || !_add_to_bottomlevel(dnode))
598 return_NULL;
165e4a11
AK
599
600 dnode->props.major = major;
601 dnode->props.minor = minor;
602 dnode->props.new_name = NULL;
bb875bb9 603 dnode->props.size_changed = 0;
165e4a11
AK
604 } else if (strcmp(name, dnode->name)) {
605 /* Do we need to rename node? */
b4f1578f 606 if (!(dnode->props.new_name = dm_pool_strdup(dtree->mem, name))) {
165e4a11
AK
607 log_error("name pool_strdup failed");
608 return 0;
609 }
610 }
611
612 dnode->props.read_only = read_only ? 1 : 0;
52b84409
AK
613 dnode->props.read_ahead = DM_READ_AHEAD_AUTO;
614 dnode->props.read_ahead_flags = 0;
165e4a11 615
b4f1578f
AK
616 if (clear_inactive && !_node_clear_table(dnode))
617 return_NULL;
165e4a11
AK
618
619 dnode->context = context;
f16aea9e 620 dnode->udev_flags = 0;
165e4a11
AK
621
622 return dnode;
623}
624
f16aea9e
PR
625struct dm_tree_node *dm_tree_add_new_dev_with_udev_flags(struct dm_tree *dtree,
626 const char *name,
627 const char *uuid,
628 uint32_t major,
629 uint32_t minor,
630 int read_only,
631 int clear_inactive,
632 void *context,
633 uint16_t udev_flags)
634{
635 struct dm_tree_node *node;
636
637 if ((node = dm_tree_add_new_dev(dtree, name, uuid, major, minor, read_only,
638 clear_inactive, context)))
639 node->udev_flags = udev_flags;
640
641 return node;
642}
643
644
52b84409
AK
645void dm_tree_node_set_read_ahead(struct dm_tree_node *dnode,
646 uint32_t read_ahead,
647 uint32_t read_ahead_flags)
08e64ce5 648{
52b84409
AK
649 dnode->props.read_ahead = read_ahead;
650 dnode->props.read_ahead_flags = read_ahead_flags;
651}
652
b4f1578f 653int dm_tree_add_dev(struct dm_tree *dtree, uint32_t major, uint32_t minor)
3d0480ed 654{
b4f1578f 655 return _add_dev(dtree, &dtree->root, major, minor) ? 1 : 0;
3d0480ed
AK
656}
657
b4f1578f 658const char *dm_tree_node_get_name(struct dm_tree_node *node)
3d0480ed
AK
659{
660 return node->info.exists ? node->name : "";
661}
662
b4f1578f 663const char *dm_tree_node_get_uuid(struct dm_tree_node *node)
3d0480ed
AK
664{
665 return node->info.exists ? node->uuid : "";
666}
667
b4f1578f 668const struct dm_info *dm_tree_node_get_info(struct dm_tree_node *node)
3d0480ed
AK
669{
670 return &node->info;
671}
672
b4f1578f 673void *dm_tree_node_get_context(struct dm_tree_node *node)
165e4a11
AK
674{
675 return node->context;
676}
677
eb91c4ee
MB
678int dm_tree_node_size_changed(struct dm_tree_node *dnode)
679{
680 return dnode->props.size_changed;
681}
682
b4f1578f 683int dm_tree_node_num_children(struct dm_tree_node *node, uint32_t inverted)
3d0480ed
AK
684{
685 if (inverted) {
b4f1578f 686 if (_nodes_are_linked(&node->dtree->root, node))
3d0480ed 687 return 0;
2c44337b 688 return dm_list_size(&node->used_by);
3d0480ed
AK
689 }
690
b4f1578f 691 if (_nodes_are_linked(node, &node->dtree->root))
3d0480ed
AK
692 return 0;
693
2c44337b 694 return dm_list_size(&node->uses);
3d0480ed
AK
695}
696
2b69db1f
AK
697/*
698 * Returns 1 if no prefix supplied
699 */
700static int _uuid_prefix_matches(const char *uuid, const char *uuid_prefix, size_t uuid_prefix_len)
701{
702 if (!uuid_prefix)
703 return 1;
704
705 if (!strncmp(uuid, uuid_prefix, uuid_prefix_len))
706 return 1;
707
708 /* Handle transition: active device uuids might be missing the prefix */
709 if (uuid_prefix_len <= 4)
710 return 0;
711
87f98002 712 if (!strncmp(uuid, UUID_PREFIX, sizeof(UUID_PREFIX) - 1))
872dea04
AK
713 return 0;
714
87f98002 715 if (strncmp(uuid_prefix, UUID_PREFIX, sizeof(UUID_PREFIX) - 1))
2b69db1f
AK
716 return 0;
717
87f98002 718 if (!strncmp(uuid, uuid_prefix + sizeof(UUID_PREFIX) - 1, uuid_prefix_len - (sizeof(UUID_PREFIX) - 1)))
2b69db1f
AK
719 return 1;
720
721 return 0;
722}
723
690a5da2
AK
724/*
725 * Returns 1 if no children.
726 */
b4f1578f 727static int _children_suspended(struct dm_tree_node *node,
690a5da2
AK
728 uint32_t inverted,
729 const char *uuid_prefix,
730 size_t uuid_prefix_len)
731{
2c44337b 732 struct dm_list *list;
b4f1578f 733 struct dm_tree_link *dlink;
690a5da2
AK
734 const struct dm_info *dinfo;
735 const char *uuid;
736
737 if (inverted) {
b4f1578f 738 if (_nodes_are_linked(&node->dtree->root, node))
690a5da2
AK
739 return 1;
740 list = &node->used_by;
741 } else {
b4f1578f 742 if (_nodes_are_linked(node, &node->dtree->root))
690a5da2
AK
743 return 1;
744 list = &node->uses;
745 }
746
2c44337b 747 dm_list_iterate_items(dlink, list) {
b4f1578f 748 if (!(uuid = dm_tree_node_get_uuid(dlink->node))) {
690a5da2
AK
749 stack;
750 continue;
751 }
752
753 /* Ignore if it doesn't belong to this VG */
2b69db1f 754 if (!_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
690a5da2
AK
755 continue;
756
b4f1578f
AK
757 if (!(dinfo = dm_tree_node_get_info(dlink->node))) {
758 stack; /* FIXME Is this normal? */
690a5da2
AK
759 return 0;
760 }
761
762 if (!dinfo->suspended)
763 return 0;
764 }
765
766 return 1;
767}
768
3d0480ed
AK
769/*
770 * Set major and minor to zero for root of tree.
771 */
b4f1578f 772struct dm_tree_node *dm_tree_find_node(struct dm_tree *dtree,
3d0480ed
AK
773 uint32_t major,
774 uint32_t minor)
775{
776 if (!major && !minor)
b4f1578f 777 return &dtree->root;
3d0480ed 778
b4f1578f 779 return _find_dm_tree_node(dtree, major, minor);
3d0480ed
AK
780}
781
165e4a11
AK
782/*
783 * Set uuid to NULL for root of tree.
784 */
b4f1578f 785struct dm_tree_node *dm_tree_find_node_by_uuid(struct dm_tree *dtree,
165e4a11
AK
786 const char *uuid)
787{
788 if (!uuid || !*uuid)
b4f1578f 789 return &dtree->root;
165e4a11 790
b4f1578f 791 return _find_dm_tree_node_by_uuid(dtree, uuid);
165e4a11
AK
792}
793
3d0480ed
AK
794/*
795 * First time set *handle to NULL.
796 * Set inverted to invert the tree.
797 */
b4f1578f
AK
798struct dm_tree_node *dm_tree_next_child(void **handle,
799 struct dm_tree_node *parent,
3d0480ed
AK
800 uint32_t inverted)
801{
2c44337b
AK
802 struct dm_list **dlink = (struct dm_list **) handle;
803 struct dm_list *use_list;
3d0480ed
AK
804
805 if (inverted)
806 use_list = &parent->used_by;
807 else
808 use_list = &parent->uses;
809
810 if (!*dlink)
2c44337b 811 *dlink = dm_list_first(use_list);
3d0480ed 812 else
2c44337b 813 *dlink = dm_list_next(use_list, *dlink);
3d0480ed 814
2c44337b 815 return (*dlink) ? dm_list_item(*dlink, struct dm_tree_link)->node : NULL;
3d0480ed
AK
816}
817
3e8c6b73 818/*
a6d97ede 819 * Deactivate a device with its dependencies if the uuid prefix matches.
3e8c6b73 820 */
db208f51
AK
821static int _info_by_dev(uint32_t major, uint32_t minor, int with_open_count,
822 struct dm_info *info)
3e8c6b73
AK
823{
824 struct dm_task *dmt;
825 int r;
826
827 if (!(dmt = dm_task_create(DM_DEVICE_INFO))) {
828 log_error("_info_by_dev: dm_task creation failed");
829 return 0;
830 }
831
832 if (!dm_task_set_major(dmt, major) || !dm_task_set_minor(dmt, minor)) {
833 log_error("_info_by_dev: Failed to set device number");
834 dm_task_destroy(dmt);
835 return 0;
836 }
837
db208f51
AK
838 if (!with_open_count && !dm_task_no_open_count(dmt))
839 log_error("Failed to disable open_count");
840
3e8c6b73
AK
841 if ((r = dm_task_run(dmt)))
842 r = dm_task_get_info(dmt, info);
843
844 dm_task_destroy(dmt);
845
846 return r;
847}
848
f16aea9e
PR
849static int _deactivate_node(const char *name, uint32_t major, uint32_t minor,
850 uint32_t *cookie, uint16_t udev_flags)
3e8c6b73
AK
851{
852 struct dm_task *dmt;
bd90c6b2 853 int r = 0;
3e8c6b73
AK
854
855 log_verbose("Removing %s (%" PRIu32 ":%" PRIu32 ")", name, major, minor);
856
857 if (!(dmt = dm_task_create(DM_DEVICE_REMOVE))) {
858 log_error("Deactivation dm_task creation failed for %s", name);
859 return 0;
860 }
861
862 if (!dm_task_set_major(dmt, major) || !dm_task_set_minor(dmt, minor)) {
863 log_error("Failed to set device number for %s deactivation", name);
bd90c6b2 864 goto out;
3e8c6b73
AK
865 }
866
867 if (!dm_task_no_open_count(dmt))
868 log_error("Failed to disable open_count");
869
f16aea9e 870 if (!dm_task_set_cookie(dmt, cookie, udev_flags))
bd90c6b2
AK
871 goto out;
872
3e8c6b73
AK
873 r = dm_task_run(dmt);
874
165e4a11 875 /* FIXME Until kernel returns actual name so dm-ioctl.c can handle it */
421671b1 876 rm_dev_node(name, dmt->cookie_set);
165e4a11 877
db208f51
AK
878 /* FIXME Remove node from tree or mark invalid? */
879
bd90c6b2 880out:
db208f51
AK
881 dm_task_destroy(dmt);
882
883 return r;
884}
885
bd90c6b2 886static int _rename_node(const char *old_name, const char *new_name, uint32_t major,
f16aea9e 887 uint32_t minor, uint32_t *cookie, uint16_t udev_flags)
165e4a11
AK
888{
889 struct dm_task *dmt;
890 int r = 0;
891
892 log_verbose("Renaming %s (%" PRIu32 ":%" PRIu32 ") to %s", old_name, major, minor, new_name);
893
894 if (!(dmt = dm_task_create(DM_DEVICE_RENAME))) {
895 log_error("Rename dm_task creation failed for %s", old_name);
896 return 0;
897 }
898
899 if (!dm_task_set_name(dmt, old_name)) {
900 log_error("Failed to set name for %s rename.", old_name);
901 goto out;
902 }
903
b4f1578f
AK
904 if (!dm_task_set_newname(dmt, new_name))
905 goto_out;
165e4a11
AK
906
907 if (!dm_task_no_open_count(dmt))
908 log_error("Failed to disable open_count");
909
f16aea9e 910 if (!dm_task_set_cookie(dmt, cookie, udev_flags))
bd90c6b2
AK
911 goto out;
912
165e4a11
AK
913 r = dm_task_run(dmt);
914
915out:
916 dm_task_destroy(dmt);
917
918 return r;
919}
920
165e4a11
AK
921/* FIXME Merge with _suspend_node? */
922static int _resume_node(const char *name, uint32_t major, uint32_t minor,
52b84409 923 uint32_t read_ahead, uint32_t read_ahead_flags,
f16aea9e
PR
924 struct dm_info *newinfo, uint32_t *cookie,
925 uint16_t udev_flags)
165e4a11
AK
926{
927 struct dm_task *dmt;
bd90c6b2 928 int r = 0;
165e4a11
AK
929
930 log_verbose("Resuming %s (%" PRIu32 ":%" PRIu32 ")", name, major, minor);
931
932 if (!(dmt = dm_task_create(DM_DEVICE_RESUME))) {
933 log_error("Suspend dm_task creation failed for %s", name);
934 return 0;
935 }
936
0b7d16bc
AK
937 /* FIXME Kernel should fill in name on return instead */
938 if (!dm_task_set_name(dmt, name)) {
939 log_error("Failed to set readahead device name for %s", name);
bd90c6b2 940 goto out;
0b7d16bc
AK
941 }
942
165e4a11
AK
943 if (!dm_task_set_major(dmt, major) || !dm_task_set_minor(dmt, minor)) {
944 log_error("Failed to set device number for %s resumption.", name);
bd90c6b2 945 goto out;
165e4a11
AK
946 }
947
948 if (!dm_task_no_open_count(dmt))
949 log_error("Failed to disable open_count");
950
52b84409
AK
951 if (!dm_task_set_read_ahead(dmt, read_ahead, read_ahead_flags))
952 log_error("Failed to set read ahead");
953
f16aea9e 954 if (!dm_task_set_cookie(dmt, cookie, udev_flags))
bd90c6b2
AK
955 goto out;
956
165e4a11
AK
957 if ((r = dm_task_run(dmt)))
958 r = dm_task_get_info(dmt, newinfo);
959
bd90c6b2 960out:
165e4a11
AK
961 dm_task_destroy(dmt);
962
963 return r;
964}
965
db208f51 966static int _suspend_node(const char *name, uint32_t major, uint32_t minor,
b9ffd32c 967 int skip_lockfs, int no_flush, struct dm_info *newinfo)
db208f51
AK
968{
969 struct dm_task *dmt;
970 int r;
971
b9ffd32c
AK
972 log_verbose("Suspending %s (%" PRIu32 ":%" PRIu32 ")%s%s",
973 name, major, minor,
974 skip_lockfs ? "" : " with filesystem sync",
6e1898a5 975 no_flush ? "" : " with device flush");
db208f51
AK
976
977 if (!(dmt = dm_task_create(DM_DEVICE_SUSPEND))) {
978 log_error("Suspend dm_task creation failed for %s", name);
979 return 0;
980 }
981
982 if (!dm_task_set_major(dmt, major) || !dm_task_set_minor(dmt, minor)) {
983 log_error("Failed to set device number for %s suspension.", name);
984 dm_task_destroy(dmt);
985 return 0;
986 }
987
988 if (!dm_task_no_open_count(dmt))
989 log_error("Failed to disable open_count");
990
c55b1410
AK
991 if (skip_lockfs && !dm_task_skip_lockfs(dmt))
992 log_error("Failed to set skip_lockfs flag.");
993
b9ffd32c
AK
994 if (no_flush && !dm_task_no_flush(dmt))
995 log_error("Failed to set no_flush flag.");
996
db208f51
AK
997 if ((r = dm_task_run(dmt)))
998 r = dm_task_get_info(dmt, newinfo);
999
3e8c6b73
AK
1000 dm_task_destroy(dmt);
1001
1002 return r;
1003}
1004
b4f1578f 1005int dm_tree_deactivate_children(struct dm_tree_node *dnode,
a6d97ede
AK
1006 const char *uuid_prefix,
1007 size_t uuid_prefix_len)
3e8c6b73
AK
1008{
1009 void *handle = NULL;
b4f1578f 1010 struct dm_tree_node *child = dnode;
3e8c6b73
AK
1011 struct dm_info info;
1012 const struct dm_info *dinfo;
1013 const char *name;
1014 const char *uuid;
1015
b4f1578f
AK
1016 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
1017 if (!(dinfo = dm_tree_node_get_info(child))) {
3e8c6b73
AK
1018 stack;
1019 continue;
1020 }
1021
b4f1578f 1022 if (!(name = dm_tree_node_get_name(child))) {
3e8c6b73
AK
1023 stack;
1024 continue;
1025 }
1026
b4f1578f 1027 if (!(uuid = dm_tree_node_get_uuid(child))) {
3e8c6b73
AK
1028 stack;
1029 continue;
1030 }
1031
1032 /* Ignore if it doesn't belong to this VG */
2b69db1f 1033 if (!_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
3e8c6b73 1034 continue;
3e8c6b73
AK
1035
1036 /* Refresh open_count */
db208f51 1037 if (!_info_by_dev(dinfo->major, dinfo->minor, 1, &info) ||
3e8c6b73
AK
1038 !info.exists || info.open_count)
1039 continue;
1040
f16aea9e 1041 if (!_deactivate_node(name, info.major, info.minor,
584d1fb7 1042 &child->dtree->cookie, child->udev_flags)) {
3e8c6b73
AK
1043 log_error("Unable to deactivate %s (%" PRIu32
1044 ":%" PRIu32 ")", name, info.major,
1045 info.minor);
1046 continue;
1047 }
1048
b4f1578f
AK
1049 if (dm_tree_node_num_children(child, 0))
1050 dm_tree_deactivate_children(child, uuid_prefix, uuid_prefix_len);
3e8c6b73
AK
1051 }
1052
1053 return 1;
1054}
db208f51 1055
c55b1410
AK
1056void dm_tree_skip_lockfs(struct dm_tree_node *dnode)
1057{
1058 dnode->dtree->skip_lockfs = 1;
1059}
1060
b9ffd32c
AK
1061void dm_tree_use_no_flush_suspend(struct dm_tree_node *dnode)
1062{
1063 dnode->dtree->no_flush = 1;
1064}
1065
b4f1578f 1066int dm_tree_suspend_children(struct dm_tree_node *dnode,
08e64ce5
ZK
1067 const char *uuid_prefix,
1068 size_t uuid_prefix_len)
db208f51 1069{
68085c93 1070 int r = 1;
db208f51 1071 void *handle = NULL;
b4f1578f 1072 struct dm_tree_node *child = dnode;
db208f51
AK
1073 struct dm_info info, newinfo;
1074 const struct dm_info *dinfo;
1075 const char *name;
1076 const char *uuid;
1077
690a5da2 1078 /* Suspend nodes at this level of the tree */
b4f1578f
AK
1079 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
1080 if (!(dinfo = dm_tree_node_get_info(child))) {
db208f51
AK
1081 stack;
1082 continue;
1083 }
1084
b4f1578f 1085 if (!(name = dm_tree_node_get_name(child))) {
db208f51
AK
1086 stack;
1087 continue;
1088 }
1089
b4f1578f 1090 if (!(uuid = dm_tree_node_get_uuid(child))) {
db208f51
AK
1091 stack;
1092 continue;
1093 }
1094
1095 /* Ignore if it doesn't belong to this VG */
2b69db1f 1096 if (!_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
db208f51
AK
1097 continue;
1098
690a5da2
AK
1099 /* Ensure immediate parents are already suspended */
1100 if (!_children_suspended(child, 1, uuid_prefix, uuid_prefix_len))
1101 continue;
1102
db208f51 1103 if (!_info_by_dev(dinfo->major, dinfo->minor, 0, &info) ||
b700541f 1104 !info.exists || info.suspended)
db208f51
AK
1105 continue;
1106
c55b1410 1107 if (!_suspend_node(name, info.major, info.minor,
b9ffd32c
AK
1108 child->dtree->skip_lockfs,
1109 child->dtree->no_flush, &newinfo)) {
db208f51
AK
1110 log_error("Unable to suspend %s (%" PRIu32
1111 ":%" PRIu32 ")", name, info.major,
1112 info.minor);
68085c93 1113 r = 0;
db208f51
AK
1114 continue;
1115 }
1116
1117 /* Update cached info */
1118 child->info = newinfo;
690a5da2
AK
1119 }
1120
1121 /* Then suspend any child nodes */
1122 handle = NULL;
1123
b4f1578f
AK
1124 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
1125 if (!(uuid = dm_tree_node_get_uuid(child))) {
690a5da2
AK
1126 stack;
1127 continue;
1128 }
1129
1130 /* Ignore if it doesn't belong to this VG */
87f98002 1131 if (!_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
690a5da2 1132 continue;
db208f51 1133
b4f1578f 1134 if (dm_tree_node_num_children(child, 0))
68085c93
MS
1135 if (!dm_tree_suspend_children(child, uuid_prefix, uuid_prefix_len))
1136 return_0;
db208f51
AK
1137 }
1138
68085c93 1139 return r;
db208f51
AK
1140}
1141
b4f1578f 1142int dm_tree_activate_children(struct dm_tree_node *dnode,
db208f51
AK
1143 const char *uuid_prefix,
1144 size_t uuid_prefix_len)
1145{
2ca6b865 1146 int r = 1;
db208f51 1147 void *handle = NULL;
b4f1578f 1148 struct dm_tree_node *child = dnode;
165e4a11
AK
1149 struct dm_info newinfo;
1150 const char *name;
db208f51 1151 const char *uuid;
56c28292 1152 int priority;
db208f51 1153
165e4a11 1154 /* Activate children first */
b4f1578f
AK
1155 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
1156 if (!(uuid = dm_tree_node_get_uuid(child))) {
165e4a11
AK
1157 stack;
1158 continue;
db208f51
AK
1159 }
1160
908db078
AK
1161 if (!_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
1162 continue;
db208f51 1163
b4f1578f 1164 if (dm_tree_node_num_children(child, 0))
2ca6b865
MS
1165 if (!dm_tree_activate_children(child, uuid_prefix, uuid_prefix_len))
1166 return_0;
56c28292 1167 }
165e4a11 1168
56c28292 1169 handle = NULL;
165e4a11 1170
56c28292
AK
1171 for (priority = 0; priority < 2; priority++) {
1172 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
1173 if (!(uuid = dm_tree_node_get_uuid(child))) {
1174 stack;
1175 continue;
165e4a11 1176 }
165e4a11 1177
56c28292
AK
1178 if (!_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
1179 continue;
165e4a11 1180
56c28292
AK
1181 if (priority != child->activation_priority)
1182 continue;
165e4a11 1183
56c28292
AK
1184 if (!(name = dm_tree_node_get_name(child))) {
1185 stack;
1186 continue;
1187 }
1188
1189 /* Rename? */
1190 if (child->props.new_name) {
bd90c6b2 1191 if (!_rename_node(name, child->props.new_name, child->info.major,
f16aea9e
PR
1192 child->info.minor, &child->dtree->cookie,
1193 child->udev_flags)) {
56c28292
AK
1194 log_error("Failed to rename %s (%" PRIu32
1195 ":%" PRIu32 ") to %s", name, child->info.major,
1196 child->info.minor, child->props.new_name);
1197 return 0;
1198 }
1199 child->name = child->props.new_name;
1200 child->props.new_name = NULL;
1201 }
1202
1203 if (!child->info.inactive_table && !child->info.suspended)
1204 continue;
1205
bafa2f39 1206 if (!_resume_node(child->name, child->info.major, child->info.minor,
bd90c6b2 1207 child->props.read_ahead, child->props.read_ahead_flags,
f16aea9e 1208 &newinfo, &child->dtree->cookie, child->udev_flags)) {
56c28292 1209 log_error("Unable to resume %s (%" PRIu32
bafa2f39 1210 ":%" PRIu32 ")", child->name, child->info.major,
56c28292 1211 child->info.minor);
2ca6b865 1212 r = 0;
56c28292
AK
1213 continue;
1214 }
1215
1216 /* Update cached info */
1217 child->info = newinfo;
1218 }
db208f51
AK
1219 }
1220
165e4a11
AK
1221 handle = NULL;
1222
2ca6b865 1223 return r;
165e4a11
AK
1224}
1225
b4f1578f 1226static int _create_node(struct dm_tree_node *dnode)
165e4a11
AK
1227{
1228 int r = 0;
1229 struct dm_task *dmt;
1230
1231 log_verbose("Creating %s", dnode->name);
1232
1233 if (!(dmt = dm_task_create(DM_DEVICE_CREATE))) {
1234 log_error("Create dm_task creation failed for %s", dnode->name);
1235 return 0;
1236 }
1237
1238 if (!dm_task_set_name(dmt, dnode->name)) {
1239 log_error("Failed to set device name for %s", dnode->name);
1240 goto out;
1241 }
1242
1243 if (!dm_task_set_uuid(dmt, dnode->uuid)) {
1244 log_error("Failed to set uuid for %s", dnode->name);
1245 goto out;
1246 }
1247
1248 if (dnode->props.major &&
1249 (!dm_task_set_major(dmt, dnode->props.major) ||
1250 !dm_task_set_minor(dmt, dnode->props.minor))) {
1251 log_error("Failed to set device number for %s creation.", dnode->name);
1252 goto out;
1253 }
1254
1255 if (dnode->props.read_only && !dm_task_set_ro(dmt)) {
1256 log_error("Failed to set read only flag for %s", dnode->name);
1257 goto out;
1258 }
1259
1260 if (!dm_task_no_open_count(dmt))
1261 log_error("Failed to disable open_count");
1262
1263 if ((r = dm_task_run(dmt)))
1264 r = dm_task_get_info(dmt, &dnode->info);
1265
1266out:
1267 dm_task_destroy(dmt);
1268
1269 return r;
1270}
1271
1272
b4f1578f 1273static int _build_dev_string(char *devbuf, size_t bufsize, struct dm_tree_node *node)
165e4a11
AK
1274{
1275 if (!dm_format_dev(devbuf, bufsize, node->info.major, node->info.minor)) {
1276 log_error("Failed to format %s device number for %s as dm "
1277 "target (%u,%u)",
1278 node->name, node->uuid, node->info.major, node->info.minor);
1279 return 0;
1280 }
1281
1282 return 1;
1283}
1284
ffa9b6a5
ZK
1285/* simplify string emiting code */
1286#define EMIT_PARAMS(p, str...)\
7b6c011c
AK
1287do {\
1288 int w;\
1289 if ((w = dm_snprintf(params + p, paramsize - (size_t) p, str)) < 0) {\
1290 stack; /* Out of space */\
1291 return -1;\
1292 }\
1293 p += w;\
1294} while (0)
ffa9b6a5 1295
3c74075f
JEB
1296/*
1297 * _emit_areas_line
1298 *
1299 * Returns: 1 on success, 0 on failure
1300 */
4dcaa230
AK
1301static int _emit_areas_line(struct dm_task *dmt __attribute((unused)),
1302 struct load_segment *seg, char *params,
1303 size_t paramsize, int *pos)
165e4a11
AK
1304{
1305 struct seg_area *area;
7d7d93ac 1306 char devbuf[DM_FORMAT_DEV_BUFSIZE];
609faae9 1307 unsigned first_time = 1;
165e4a11 1308
2c44337b 1309 dm_list_iterate_items(area, &seg->areas) {
b4f1578f
AK
1310 if (!_build_dev_string(devbuf, sizeof(devbuf), area->dev_node))
1311 return_0;
165e4a11 1312
609faae9
AK
1313 EMIT_PARAMS(*pos, "%s%s %" PRIu64, first_time ? "" : " ",
1314 devbuf, area->offset);
1315
1316 first_time = 0;
165e4a11
AK
1317 }
1318
1319 return 1;
1320}
1321
3c74075f 1322/*
3c74075f
JEB
1323 * Returns: 1 on success, 0 on failure
1324 */
536f0e08
AK
1325static int _mirror_emit_segment_line(struct dm_task *dmt, uint32_t major,
1326 uint32_t minor, struct load_segment *seg,
1327 uint64_t *seg_start, char *params,
1328 size_t paramsize)
165e4a11 1329{
8f26e18c
JEB
1330 int r;
1331 int block_on_error = 0;
1332 int handle_errors = 0;
1333 int dm_log_userspace = 0;
1334 struct utsname uts;
dbcb64b8 1335 unsigned log_parm_count;
ffa9b6a5 1336 int pos = 0;
7d7d93ac 1337 char logbuf[DM_FORMAT_DEV_BUFSIZE];
dbcb64b8 1338 const char *logtype;
165e4a11 1339
8f26e18c
JEB
1340 r = uname(&uts);
1341 if (r)
1342 return_0;
67b25ed4 1343
8f26e18c
JEB
1344 if ((seg->flags & DM_BLOCK_ON_ERROR)) {
1345 /*
1346 * Originally, block_on_error was an argument to the log
1347 * portion of the mirror CTR table. It was renamed to
1348 * "handle_errors" and now resides in the 'features'
1349 * section of the mirror CTR table (i.e. at the end).
1350 *
1351 * We can identify whether to use "block_on_error" or
1352 * "handle_errors" by the dm-mirror module's version
1353 * number (>= 1.12) or by the kernel version (>= 2.6.22).
1354 */
1355 if (strncmp(uts.release, "2.6.22", 6) >= 0)
1356 handle_errors = 1;
1357 else
1358 block_on_error = 1;
1359 }
1360
1361 if (seg->clustered) {
1362 /* Cluster mirrors require a UUID */
1363 if (!seg->uuid)
1364 return_0;
1365
1366 /*
1367 * Cluster mirrors used to have their own log
1368 * types. Now they are accessed through the
1369 * userspace log type.
1370 *
1371 * The dm-log-userspace module was added to the
1372 * 2.6.31 kernel.
1373 */
1374 if (strncmp(uts.release, "2.6.31", 6) >= 0)
1375 dm_log_userspace = 1;
1376 }
1377
1378 /* Region size */
1379 log_parm_count = 1;
1380
1381 /* [no]sync, block_on_error etc. */
1382 log_parm_count += hweight32(seg->flags);
311d6d81 1383
8f26e18c
JEB
1384 /* "handle_errors" is a feature arg now */
1385 if (handle_errors)
1386 log_parm_count--;
1387
1388 /* DM_CORELOG does not count in the param list */
1389 if (seg->flags & DM_CORELOG)
1390 log_parm_count--;
1391
1392 if (seg->clustered) {
1393 log_parm_count++; /* For UUID */
1394
1395 if (!dm_log_userspace)
ffa9b6a5 1396 EMIT_PARAMS(pos, "clustered-");
8f26e18c 1397 }
dbcb64b8 1398
8f26e18c
JEB
1399 if (!seg->log)
1400 logtype = "core";
1401 else {
1402 logtype = "disk";
1403 log_parm_count++;
1404 if (!_build_dev_string(logbuf, sizeof(logbuf), seg->log))
1405 return_0;
1406 }
dbcb64b8 1407
8f26e18c
JEB
1408 if (dm_log_userspace)
1409 EMIT_PARAMS(pos, "userspace %u %s clustered-%s",
1410 log_parm_count, seg->uuid, logtype);
1411 else
ffa9b6a5 1412 EMIT_PARAMS(pos, "%s %u", logtype, log_parm_count);
dbcb64b8 1413
8f26e18c
JEB
1414 if (seg->log)
1415 EMIT_PARAMS(pos, " %s", logbuf);
1416
1417 EMIT_PARAMS(pos, " %u", seg->region_size);
dbcb64b8 1418
8f26e18c
JEB
1419 if (seg->clustered && !dm_log_userspace)
1420 EMIT_PARAMS(pos, " %s", seg->uuid);
67b25ed4 1421
8f26e18c
JEB
1422 if ((seg->flags & DM_NOSYNC))
1423 EMIT_PARAMS(pos, " nosync");
1424 else if ((seg->flags & DM_FORCESYNC))
1425 EMIT_PARAMS(pos, " sync");
dbcb64b8 1426
8f26e18c
JEB
1427 if (block_on_error)
1428 EMIT_PARAMS(pos, " block_on_error");
1429
1430 EMIT_PARAMS(pos, " %u ", seg->mirror_area_count);
1431
3c74075f
JEB
1432 if ((r = _emit_areas_line(dmt, seg, params, paramsize, &pos)) <= 0)
1433 return_0;
dbcb64b8 1434
8f26e18c
JEB
1435 if (handle_errors)
1436 EMIT_PARAMS(pos, " 1 handle_errors");
ffa9b6a5 1437
3c74075f 1438 return 1;
8f26e18c
JEB
1439}
1440
1441static int _emit_segment_line(struct dm_task *dmt, uint32_t major,
1442 uint32_t minor, struct load_segment *seg,
1443 uint64_t *seg_start, char *params,
1444 size_t paramsize)
1445{
1446 int pos = 0;
1447 int r;
1448 char originbuf[DM_FORMAT_DEV_BUFSIZE], cowbuf[DM_FORMAT_DEV_BUFSIZE];
dbcb64b8 1449
8f26e18c
JEB
1450 switch(seg->type) {
1451 case SEG_ERROR:
1452 case SEG_ZERO:
1453 case SEG_LINEAR:
1454 break;
1455 case SEG_MIRRORED:
1456 /* Mirrors are pretty complicated - now in separate function */
536f0e08
AK
1457 r = _mirror_emit_segment_line(dmt, major, minor, seg, seg_start,
1458 params, paramsize);
3c74075f
JEB
1459 if (!r)
1460 return_0;
165e4a11
AK
1461 break;
1462 case SEG_SNAPSHOT:
b4f1578f
AK
1463 if (!_build_dev_string(originbuf, sizeof(originbuf), seg->origin))
1464 return_0;
1465 if (!_build_dev_string(cowbuf, sizeof(cowbuf), seg->cow))
1466 return_0;
ffa9b6a5
ZK
1467 EMIT_PARAMS(pos, "%s %s %c %d", originbuf, cowbuf,
1468 seg->persistent ? 'P' : 'N', seg->chunk_size);
165e4a11
AK
1469 break;
1470 case SEG_SNAPSHOT_ORIGIN:
b4f1578f
AK
1471 if (!_build_dev_string(originbuf, sizeof(originbuf), seg->origin))
1472 return_0;
ffa9b6a5 1473 EMIT_PARAMS(pos, "%s", originbuf);
165e4a11
AK
1474 break;
1475 case SEG_STRIPED:
609faae9 1476 EMIT_PARAMS(pos, "%u %u ", seg->area_count, seg->stripe_size);
165e4a11 1477 break;
12ca060e 1478 case SEG_CRYPT:
609faae9 1479 EMIT_PARAMS(pos, "%s%s%s%s%s %s %" PRIu64 " ", seg->cipher,
12ca060e
MB
1480 seg->chainmode ? "-" : "", seg->chainmode ?: "",
1481 seg->iv ? "-" : "", seg->iv ?: "", seg->key,
1482 seg->iv_offset != DM_CRYPT_IV_DEFAULT ?
1483 seg->iv_offset : *seg_start);
1484 break;
165e4a11
AK
1485 }
1486
1487 switch(seg->type) {
1488 case SEG_ERROR:
1489 case SEG_SNAPSHOT:
1490 case SEG_SNAPSHOT_ORIGIN:
1491 case SEG_ZERO:
1492 break;
12ca060e 1493 case SEG_CRYPT:
165e4a11 1494 case SEG_LINEAR:
165e4a11
AK
1495 case SEG_STRIPED:
1496 if ((r = _emit_areas_line(dmt, seg, params, paramsize, &pos)) <= 0) {
1497 stack;
1498 return r;
1499 }
1500 break;
1501 }
1502
4b2cae46
AK
1503 log_debug("Adding target to (%" PRIu32 ":%" PRIu32 "): %" PRIu64
1504 " %" PRIu64 " %s %s", major, minor,
165e4a11
AK
1505 *seg_start, seg->size, dm_segtypes[seg->type].target, params);
1506
b4f1578f
AK
1507 if (!dm_task_add_target(dmt, *seg_start, seg->size, dm_segtypes[seg->type].target, params))
1508 return_0;
165e4a11
AK
1509
1510 *seg_start += seg->size;
1511
1512 return 1;
1513}
1514
ffa9b6a5
ZK
1515#undef EMIT_PARAMS
1516
4b2cae46
AK
1517static int _emit_segment(struct dm_task *dmt, uint32_t major, uint32_t minor,
1518 struct load_segment *seg, uint64_t *seg_start)
165e4a11
AK
1519{
1520 char *params;
1521 size_t paramsize = 4096;
1522 int ret;
1523
1524 do {
1525 if (!(params = dm_malloc(paramsize))) {
1526 log_error("Insufficient space for target parameters.");
1527 return 0;
1528 }
1529
12ea7cb1 1530 params[0] = '\0';
4b2cae46
AK
1531 ret = _emit_segment_line(dmt, major, minor, seg, seg_start,
1532 params, paramsize);
165e4a11
AK
1533 dm_free(params);
1534
1535 if (!ret)
1536 stack;
1537
1538 if (ret >= 0)
1539 return ret;
1540
1541 log_debug("Insufficient space in params[%" PRIsize_t
1542 "] for target parameters.", paramsize);
1543
1544 paramsize *= 2;
1545 } while (paramsize < MAX_TARGET_PARAMSIZE);
1546
1547 log_error("Target parameter size too big. Aborting.");
1548 return 0;
1549}
1550
b4f1578f 1551static int _load_node(struct dm_tree_node *dnode)
165e4a11
AK
1552{
1553 int r = 0;
1554 struct dm_task *dmt;
1555 struct load_segment *seg;
1556 uint64_t seg_start = 0;
1557
4b2cae46
AK
1558 log_verbose("Loading %s table (%" PRIu32 ":%" PRIu32 ")", dnode->name,
1559 dnode->info.major, dnode->info.minor);
165e4a11
AK
1560
1561 if (!(dmt = dm_task_create(DM_DEVICE_RELOAD))) {
1562 log_error("Reload dm_task creation failed for %s", dnode->name);
1563 return 0;
1564 }
1565
1566 if (!dm_task_set_major(dmt, dnode->info.major) ||
1567 !dm_task_set_minor(dmt, dnode->info.minor)) {
1568 log_error("Failed to set device number for %s reload.", dnode->name);
1569 goto out;
1570 }
1571
1572 if (dnode->props.read_only && !dm_task_set_ro(dmt)) {
1573 log_error("Failed to set read only flag for %s", dnode->name);
1574 goto out;
1575 }
1576
1577 if (!dm_task_no_open_count(dmt))
1578 log_error("Failed to disable open_count");
1579
2c44337b 1580 dm_list_iterate_items(seg, &dnode->props.segs)
4b2cae46
AK
1581 if (!_emit_segment(dmt, dnode->info.major, dnode->info.minor,
1582 seg, &seg_start))
b4f1578f 1583 goto_out;
165e4a11 1584
ec289b64
AK
1585 if (!dm_task_suppress_identical_reload(dmt))
1586 log_error("Failed to suppress reload of identical tables.");
1587
1588 if ((r = dm_task_run(dmt))) {
165e4a11 1589 r = dm_task_get_info(dmt, &dnode->info);
ec289b64
AK
1590 if (r && !dnode->info.inactive_table)
1591 log_verbose("Suppressed %s identical table reload.",
1592 dnode->name);
bb875bb9
AK
1593
1594 if ((dnode->props.size_changed =
1595 (dm_task_get_existing_table_size(dmt) == seg_start) ? 0 : 1))
1596 log_debug("Table size changed from %" PRIu64 " to %"
1597 PRIu64 " for %s",
1598 dm_task_get_existing_table_size(dmt),
1599 seg_start, dnode->name);
ec289b64 1600 }
165e4a11
AK
1601
1602 dnode->props.segment_count = 0;
1603
1604out:
1605 dm_task_destroy(dmt);
1606
1607 return r;
165e4a11
AK
1608}
1609
b4f1578f 1610int dm_tree_preload_children(struct dm_tree_node *dnode,
bb875bb9
AK
1611 const char *uuid_prefix,
1612 size_t uuid_prefix_len)
165e4a11 1613{
2ca6b865 1614 int r = 1;
165e4a11 1615 void *handle = NULL;
b4f1578f 1616 struct dm_tree_node *child;
165e4a11 1617 struct dm_info newinfo;
165e4a11
AK
1618
1619 /* Preload children first */
b4f1578f 1620 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
165e4a11
AK
1621 /* Skip existing non-device-mapper devices */
1622 if (!child->info.exists && child->info.major)
1623 continue;
1624
1625 /* Ignore if it doesn't belong to this VG */
87f98002
AK
1626 if (child->info.exists &&
1627 !_uuid_prefix_matches(child->uuid, uuid_prefix, uuid_prefix_len))
165e4a11
AK
1628 continue;
1629
b4f1578f 1630 if (dm_tree_node_num_children(child, 0))
2ca6b865
MS
1631 if (!dm_tree_preload_children(child, uuid_prefix, uuid_prefix_len))
1632 return_0;
165e4a11 1633
165e4a11
AK
1634 /* FIXME Cope if name exists with no uuid? */
1635 if (!child->info.exists) {
1636 if (!_create_node(child)) {
1637 stack;
1638 return 0;
1639 }
1640 }
1641
1642 if (!child->info.inactive_table && child->props.segment_count) {
1643 if (!_load_node(child)) {
1644 stack;
1645 return 0;
1646 }
1647 }
1648
eb91c4ee
MB
1649 /* Propagate device size change change */
1650 if (child->props.size_changed)
1651 dnode->props.size_changed = 1;
1652
bb875bb9 1653 /* Resume device immediately if it has parents and its size changed */
3776c494 1654 if (!dm_tree_node_num_children(child, 1) || !child->props.size_changed)
165e4a11
AK
1655 continue;
1656
7707ea90
AK
1657 if (!child->info.inactive_table && !child->info.suspended)
1658 continue;
1659
fc795d87 1660 if (!_resume_node(child->name, child->info.major, child->info.minor,
bd90c6b2 1661 child->props.read_ahead, child->props.read_ahead_flags,
f16aea9e 1662 &newinfo, &child->dtree->cookie, child->udev_flags)) {
165e4a11 1663 log_error("Unable to resume %s (%" PRIu32
fc795d87 1664 ":%" PRIu32 ")", child->name, child->info.major,
165e4a11 1665 child->info.minor);
2ca6b865 1666 r = 0;
165e4a11
AK
1667 continue;
1668 }
1669
1670 /* Update cached info */
1671 child->info = newinfo;
1672 }
1673
1674 handle = NULL;
1675
2ca6b865 1676 return r;
165e4a11
AK
1677}
1678
165e4a11
AK
1679/*
1680 * Returns 1 if unsure.
1681 */
b4f1578f 1682int dm_tree_children_use_uuid(struct dm_tree_node *dnode,
165e4a11
AK
1683 const char *uuid_prefix,
1684 size_t uuid_prefix_len)
1685{
1686 void *handle = NULL;
b4f1578f 1687 struct dm_tree_node *child = dnode;
165e4a11
AK
1688 const char *uuid;
1689
b4f1578f
AK
1690 while ((child = dm_tree_next_child(&handle, dnode, 0))) {
1691 if (!(uuid = dm_tree_node_get_uuid(child))) {
1692 log_error("Failed to get uuid for dtree node.");
165e4a11
AK
1693 return 1;
1694 }
1695
87f98002 1696 if (_uuid_prefix_matches(uuid, uuid_prefix, uuid_prefix_len))
165e4a11
AK
1697 return 1;
1698
b4f1578f
AK
1699 if (dm_tree_node_num_children(child, 0))
1700 dm_tree_children_use_uuid(child, uuid_prefix, uuid_prefix_len);
165e4a11
AK
1701 }
1702
1703 return 0;
1704}
1705
1706/*
1707 * Target functions
1708 */
b4f1578f 1709static struct load_segment *_add_segment(struct dm_tree_node *dnode, unsigned type, uint64_t size)
165e4a11
AK
1710{
1711 struct load_segment *seg;
1712
b4f1578f
AK
1713 if (!(seg = dm_pool_zalloc(dnode->dtree->mem, sizeof(*seg)))) {
1714 log_error("dtree node segment allocation failed");
165e4a11
AK
1715 return NULL;
1716 }
1717
1718 seg->type = type;
1719 seg->size = size;
1720 seg->area_count = 0;
2c44337b 1721 dm_list_init(&seg->areas);
165e4a11
AK
1722 seg->stripe_size = 0;
1723 seg->persistent = 0;
1724 seg->chunk_size = 0;
1725 seg->cow = NULL;
1726 seg->origin = NULL;
1727
2c44337b 1728 dm_list_add(&dnode->props.segs, &seg->list);
165e4a11
AK
1729 dnode->props.segment_count++;
1730
1731 return seg;
1732}
1733
b4f1578f 1734int dm_tree_node_add_snapshot_origin_target(struct dm_tree_node *dnode,
165e4a11
AK
1735 uint64_t size,
1736 const char *origin_uuid)
1737{
1738 struct load_segment *seg;
b4f1578f 1739 struct dm_tree_node *origin_node;
165e4a11 1740
b4f1578f
AK
1741 if (!(seg = _add_segment(dnode, SEG_SNAPSHOT_ORIGIN, size)))
1742 return_0;
165e4a11 1743
b4f1578f 1744 if (!(origin_node = dm_tree_find_node_by_uuid(dnode->dtree, origin_uuid))) {
165e4a11
AK
1745 log_error("Couldn't find snapshot origin uuid %s.", origin_uuid);
1746 return 0;
1747 }
1748
1749 seg->origin = origin_node;
b4f1578f
AK
1750 if (!_link_tree_nodes(dnode, origin_node))
1751 return_0;
165e4a11 1752
56c28292
AK
1753 /* Resume snapshot origins after new snapshots */
1754 dnode->activation_priority = 1;
1755
165e4a11
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1756 return 1;
1757}
1758
b4f1578f 1759int dm_tree_node_add_snapshot_target(struct dm_tree_node *node,
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1760 uint64_t size,
1761 const char *origin_uuid,
1762 const char *cow_uuid,
1763 int persistent,
1764 uint32_t chunk_size)
1765{
1766 struct load_segment *seg;
b4f1578f 1767 struct dm_tree_node *origin_node, *cow_node;
165e4a11 1768
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1769 if (!(seg = _add_segment(node, SEG_SNAPSHOT, size)))
1770 return_0;
165e4a11 1771
b4f1578f 1772 if (!(origin_node = dm_tree_find_node_by_uuid(node->dtree, origin_uuid))) {
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1773 log_error("Couldn't find snapshot origin uuid %s.", origin_uuid);
1774 return 0;
1775 }
1776
1777 seg->origin = origin_node;
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1778 if (!_link_tree_nodes(node, origin_node))
1779 return_0;
165e4a11 1780
b4f1578f 1781 if (!(cow_node = dm_tree_find_node_by_uuid(node->dtree, cow_uuid))) {
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1782 log_error("Couldn't find snapshot origin uuid %s.", cow_uuid);
1783 return 0;
1784 }
1785
1786 seg->cow = cow_node;
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1787 if (!_link_tree_nodes(node, cow_node))
1788 return_0;
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1789
1790 seg->persistent = persistent ? 1 : 0;
1791 seg->chunk_size = chunk_size;
1792
1793 return 1;
1794}
1795
b4f1578f 1796int dm_tree_node_add_error_target(struct dm_tree_node *node,
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1797 uint64_t size)
1798{
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1799 if (!_add_segment(node, SEG_ERROR, size))
1800 return_0;
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1801
1802 return 1;
1803}
1804
b4f1578f 1805int dm_tree_node_add_zero_target(struct dm_tree_node *node,
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1806 uint64_t size)
1807{
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1808 if (!_add_segment(node, SEG_ZERO, size))
1809 return_0;
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1810
1811 return 1;
1812}
1813
b4f1578f 1814int dm_tree_node_add_linear_target(struct dm_tree_node *node,
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1815 uint64_t size)
1816{
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1817 if (!_add_segment(node, SEG_LINEAR, size))
1818 return_0;
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1819
1820 return 1;
1821}
1822
b4f1578f 1823int dm_tree_node_add_striped_target(struct dm_tree_node *node,
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1824 uint64_t size,
1825 uint32_t stripe_size)
1826{
1827 struct load_segment *seg;
1828
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1829 if (!(seg = _add_segment(node, SEG_STRIPED, size)))
1830 return_0;
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1831
1832 seg->stripe_size = stripe_size;
1833
1834 return 1;
1835}
1836
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1837int dm_tree_node_add_crypt_target(struct dm_tree_node *node,
1838 uint64_t size,
1839 const char *cipher,
1840 const char *chainmode,
1841 const char *iv,
1842 uint64_t iv_offset,
1843 const char *key)
1844{
1845 struct load_segment *seg;
1846
1847 if (!(seg = _add_segment(node, SEG_CRYPT, size)))
1848 return_0;
1849
1850 seg->cipher = cipher;
1851 seg->chainmode = chainmode;
1852 seg->iv = iv;
1853 seg->iv_offset = iv_offset;
1854 seg->key = key;
1855
1856 return 1;
1857}
1858
b4f1578f 1859int dm_tree_node_add_mirror_target_log(struct dm_tree_node *node,
165e4a11 1860 uint32_t region_size,
08e64ce5 1861 unsigned clustered,
165e4a11 1862 const char *log_uuid,
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1863 unsigned area_count,
1864 uint32_t flags)
165e4a11 1865{
908db078 1866 struct dm_tree_node *log_node = NULL;
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1867 struct load_segment *seg;
1868
1869 if (!node->props.segment_count) {
1870 log_error("Internal error: Attempt to add target area to missing segment.");
1871 return 0;
1872 }
1873
2c44337b 1874 seg = dm_list_item(dm_list_last(&node->props.segs), struct load_segment);
165e4a11 1875
24b026e3 1876 if (log_uuid) {
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1877 if (!(seg->uuid = dm_pool_strdup(node->dtree->mem, log_uuid))) {
1878 log_error("log uuid pool_strdup failed");
1879 return 0;
1880 }
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1881 if (!(flags & DM_CORELOG)) {
1882 if (!(log_node = dm_tree_find_node_by_uuid(node->dtree, log_uuid))) {
1883 log_error("Couldn't find mirror log uuid %s.", log_uuid);
1884 return 0;
1885 }
1886
1887 if (!_link_tree_nodes(node, log_node))
1888 return_0;
1889 }
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1890 }
1891
1892 seg->log = log_node;
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1893 seg->region_size = region_size;
1894 seg->clustered = clustered;
1895 seg->mirror_area_count = area_count;
dbcb64b8 1896 seg->flags = flags;
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1897
1898 return 1;
1899}
1900
b4f1578f 1901int dm_tree_node_add_mirror_target(struct dm_tree_node *node,
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1902 uint64_t size)
1903{
1904 struct load_segment *seg;
1905
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1906 if (!(seg = _add_segment(node, SEG_MIRRORED, size)))
1907 return_0;
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1908
1909 return 1;
1910}
1911
b4f1578f 1912static int _add_area(struct dm_tree_node *node, struct load_segment *seg, struct dm_tree_node *dev_node, uint64_t offset)
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1913{
1914 struct seg_area *area;
1915
b4f1578f 1916 if (!(area = dm_pool_zalloc(node->dtree->mem, sizeof (*area)))) {
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1917 log_error("Failed to allocate target segment area.");
1918 return 0;
1919 }
1920
1921 area->dev_node = dev_node;
1922 area->offset = offset;
1923
2c44337b 1924 dm_list_add(&seg->areas, &area->list);
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1925 seg->area_count++;
1926
1927 return 1;
1928}
1929
b4f1578f 1930int dm_tree_node_add_target_area(struct dm_tree_node *node,
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1931 const char *dev_name,
1932 const char *uuid,
1933 uint64_t offset)
1934{
1935 struct load_segment *seg;
1936 struct stat info;
b4f1578f 1937 struct dm_tree_node *dev_node;
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1938
1939 if ((!dev_name || !*dev_name) && (!uuid || !*uuid)) {
b4f1578f 1940 log_error("dm_tree_node_add_target_area called without device");
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1941 return 0;
1942 }
1943
1944 if (uuid) {
b4f1578f 1945 if (!(dev_node = dm_tree_find_node_by_uuid(node->dtree, uuid))) {
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1946 log_error("Couldn't find area uuid %s.", uuid);
1947 return 0;
1948 }
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1949 if (!_link_tree_nodes(node, dev_node))
1950 return_0;
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1951 } else {
1952 if (stat(dev_name, &info) < 0) {
1953 log_error("Device %s not found.", dev_name);
1954 return 0;
1955 }
1956
1957 if (!S_ISBLK(info.st_mode)) {
1958 log_error("Device %s is not a block device.", dev_name);
1959 return 0;
1960 }
1961
1962 /* FIXME Check correct macro use */
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1963 if (!(dev_node = _add_dev(node->dtree, node, MAJOR(info.st_rdev), MINOR(info.st_rdev))))
1964 return_0;
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1965 }
1966
1967 if (!node->props.segment_count) {
1968 log_error("Internal error: Attempt to add target area to missing segment.");
1969 return 0;
1970 }
1971
2c44337b 1972 seg = dm_list_item(dm_list_last(&node->props.segs), struct load_segment);
165e4a11 1973
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1974 if (!_add_area(node, seg, dev_node, offset))
1975 return_0;
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1976
1977 return 1;
db208f51 1978}
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1979
1980void dm_tree_set_cookie(struct dm_tree_node *node, uint32_t cookie)
1981{
1982 node->dtree->cookie = cookie;
1983}
1984
1985uint32_t dm_tree_get_cookie(struct dm_tree_node *node)
1986{
1987 return node->dtree->cookie;
1988}
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