xref: /spdk/lib/blob/blobstore.h (revision 877573897ad52be4fa8989f7617bd655b87e05c4)
1 /*   SPDX-License-Identifier: BSD-3-Clause
2  *   Copyright (C) 2017 Intel Corporation.
3  *   All rights reserved.
4  *   Copyright (c) 2022 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
5  */
6 
7 #ifndef SPDK_BLOBSTORE_H
8 #define SPDK_BLOBSTORE_H
9 
10 #include "spdk/assert.h"
11 #include "spdk/blob.h"
12 #include "spdk/queue.h"
13 #include "spdk/util.h"
14 #include "spdk/tree.h"
15 #include "spdk/thread.h"
16 
17 #include "request.h"
18 
19 /* In Memory Data Structures
20  *
21  * The following data structures exist only in memory.
22  */
23 
24 #define SPDK_BLOB_OPTS_CLUSTER_SZ (1024 * 1024)
25 #define SPDK_BLOB_OPTS_NUM_MD_PAGES UINT32_MAX
26 #define SPDK_BLOB_OPTS_MAX_MD_OPS 32
27 #define SPDK_BLOB_OPTS_DEFAULT_CHANNEL_OPS 512
28 #define SPDK_BLOB_BLOBID_HIGH_BIT (1ULL << 32)
29 
30 struct spdk_xattr {
31 	uint32_t	index;
32 	uint16_t	value_len;
33 	char		*name;
34 	void		*value;
35 	TAILQ_ENTRY(spdk_xattr)	link;
36 };
37 
38 /* The mutable part of the blob data that is sync'd to
39  * disk. The data in here is both mutable and persistent.
40  */
41 struct spdk_blob_mut_data {
42 	/* Number of data clusters in the blob */
43 	uint64_t	num_clusters;
44 
45 	/* Array LBAs that are the beginning of a cluster, in
46 	 * the order they appear in the blob.
47 	 */
48 	uint64_t	*clusters;
49 
50 	/* The size of the clusters array. This is greater than or
51 	 * equal to 'num_clusters'.
52 	 */
53 	size_t		cluster_array_size;
54 
55 	/* Number of extent pages */
56 	uint64_t	num_extent_pages;
57 
58 	/* Array of page offsets into the metadata region,
59 	 * containing extents. Can contain entries for not yet
60 	 * allocated pages. */
61 	uint32_t	*extent_pages;
62 
63 	/* The size of the extent page array. This is greater than or
64 	 * equal to 'num_extent_pages'. */
65 	size_t		extent_pages_array_size;
66 
67 	/* Number of metadata pages */
68 	uint32_t	num_pages;
69 
70 	/* Array of page offsets into the metadata region, in
71 	 * the order of the metadata page sequence.
72 	 */
73 	uint32_t	*pages;
74 };
75 
76 enum spdk_blob_state {
77 	/* The blob in-memory version does not match the on-disk
78 	 * version.
79 	 */
80 	SPDK_BLOB_STATE_DIRTY,
81 
82 	/* The blob in memory version of the blob matches the on disk
83 	 * version.
84 	 */
85 	SPDK_BLOB_STATE_CLEAN,
86 
87 	/* The in-memory state being synchronized with the on-disk
88 	 * blob state. */
89 	SPDK_BLOB_STATE_LOADING,
90 };
91 
92 TAILQ_HEAD(spdk_xattr_tailq, spdk_xattr);
93 
94 struct spdk_blob_list {
95 	spdk_blob_id id;
96 	size_t clone_count;
97 	TAILQ_HEAD(, spdk_blob_list) clones;
98 	TAILQ_ENTRY(spdk_blob_list) link;
99 };
100 
101 struct spdk_blob {
102 	struct spdk_blob_store *bs;
103 
104 	uint32_t	open_ref;
105 
106 	spdk_blob_id	id;
107 	spdk_blob_id	parent_id;
108 
109 	enum spdk_blob_state		state;
110 
111 	/* Two copies of the mutable data. One is a version
112 	 * that matches the last known data on disk (clean).
113 	 * The other (active) is the current data. Syncing
114 	 * a blob makes the clean match the active.
115 	 */
116 	struct spdk_blob_mut_data	clean;
117 	struct spdk_blob_mut_data	active;
118 
119 	bool		invalid;
120 	bool		data_ro;
121 	bool		md_ro;
122 
123 	uint64_t	invalid_flags;
124 	uint64_t	data_ro_flags;
125 	uint64_t	md_ro_flags;
126 
127 	struct spdk_bs_dev *back_bs_dev;
128 
129 	/* TODO: The xattrs are mutable, but we don't want to be
130 	 * copying them unnecessarily. Figure this out.
131 	 */
132 	struct spdk_xattr_tailq xattrs;
133 	struct spdk_xattr_tailq xattrs_internal;
134 
135 	RB_ENTRY(spdk_blob) link;
136 
137 	uint32_t frozen_refcnt;
138 	bool locked_operation_in_progress;
139 	enum blob_clear_method clear_method;
140 	bool extent_rle_found;
141 	bool extent_table_found;
142 	bool use_extent_table;
143 
144 	/* A list of pending metadata pending_persists */
145 	TAILQ_HEAD(, spdk_blob_persist_ctx) pending_persists;
146 	TAILQ_HEAD(, spdk_blob_persist_ctx) persists_to_complete;
147 
148 	/* Number of data clusters retrieved from extent table,
149 	 * that many have to be read from extent pages. */
150 	uint64_t	remaining_clusters_in_et;
151 };
152 
153 struct spdk_blob_store {
154 	uint64_t			md_start; /* Offset from beginning of disk, in pages */
155 	uint32_t			md_len; /* Count, in pages */
156 
157 	struct spdk_io_channel		*md_channel;
158 	uint32_t			max_channel_ops;
159 
160 	struct spdk_thread		*md_thread;
161 
162 	struct spdk_bs_dev		*dev;
163 
164 	struct spdk_bit_array		*used_md_pages;		/* Protected by used_lock */
165 	struct spdk_bit_pool		*used_clusters;		/* Protected by used_lock */
166 	struct spdk_bit_array		*used_blobids;
167 	struct spdk_bit_array		*open_blobids;
168 
169 	struct spdk_spinlock		used_lock;
170 
171 	uint32_t			cluster_sz;
172 	uint64_t			total_clusters;
173 	uint64_t			total_data_clusters;
174 	uint64_t			num_free_clusters;	/* Protected by used_lock */
175 	uint64_t			pages_per_cluster;
176 	uint8_t				pages_per_cluster_shift;
177 	uint32_t			io_unit_size;
178 
179 	spdk_blob_id			super_blob;
180 	struct spdk_bs_type		bstype;
181 
182 	struct spdk_bs_cpl		unload_cpl;
183 	int				unload_err;
184 
185 	RB_HEAD(spdk_blob_tree, spdk_blob) open_blobs;
186 	TAILQ_HEAD(, spdk_blob_list)	snapshots;
187 
188 	bool				clean;
189 };
190 
191 struct spdk_bs_channel {
192 	struct spdk_bs_request_set	*req_mem;
193 	TAILQ_HEAD(, spdk_bs_request_set) reqs;
194 
195 	struct spdk_blob_store		*bs;
196 
197 	struct spdk_bs_dev		*dev;
198 	struct spdk_io_channel		*dev_channel;
199 
200 	/* This page is only used during insert of a new cluster. */
201 	struct spdk_blob_md_page	*new_cluster_page;
202 
203 	TAILQ_HEAD(, spdk_bs_request_set) need_cluster_alloc;
204 	TAILQ_HEAD(, spdk_bs_request_set) queued_io;
205 };
206 
207 /** operation type */
208 enum spdk_blob_op_type {
209 	SPDK_BLOB_WRITE,
210 	SPDK_BLOB_READ,
211 	SPDK_BLOB_UNMAP,
212 	SPDK_BLOB_WRITE_ZEROES,
213 	SPDK_BLOB_WRITEV,
214 	SPDK_BLOB_READV,
215 };
216 
217 /* back bs_dev */
218 
219 #define BLOB_SNAPSHOT "SNAP"
220 #define SNAPSHOT_IN_PROGRESS "SNAPTMP"
221 #define SNAPSHOT_PENDING_REMOVAL "SNAPRM"
222 
223 struct spdk_blob_bs_dev {
224 	struct spdk_bs_dev bs_dev;
225 	struct spdk_blob *blob;
226 };
227 
228 /* On-Disk Data Structures
229  *
230  * The following data structures exist on disk.
231  */
232 #define SPDK_BS_INITIAL_VERSION 1
233 #define SPDK_BS_VERSION 3 /* current version */
234 
235 #pragma pack(push, 1)
236 
237 #define SPDK_MD_MASK_TYPE_USED_PAGES 0
238 #define SPDK_MD_MASK_TYPE_USED_CLUSTERS 1
239 #define SPDK_MD_MASK_TYPE_USED_BLOBIDS 2
240 
241 struct spdk_bs_md_mask {
242 	uint8_t		type;
243 	uint32_t	length; /* In bits */
244 	uint8_t		mask[0];
245 };
246 
247 #define SPDK_MD_DESCRIPTOR_TYPE_PADDING 0
248 #define SPDK_MD_DESCRIPTOR_TYPE_XATTR 2
249 #define SPDK_MD_DESCRIPTOR_TYPE_FLAGS 3
250 #define SPDK_MD_DESCRIPTOR_TYPE_XATTR_INTERNAL 4
251 
252 /* Following descriptors define cluster layout in a blob.
253  * EXTENT_RLE cannot be present in blobs metadata,
254  * at the same time as EXTENT_TABLE and EXTENT_PAGE descriptors. */
255 
256 /* EXTENT_RLE descriptor holds an array of LBA that points to
257  * beginning of allocated clusters. The array is run-length encoded,
258  * with 0's being unallocated clusters. It is part of serialized
259  * metadata chain for a blob. */
260 #define SPDK_MD_DESCRIPTOR_TYPE_EXTENT_RLE 1
261 /* EXTENT_TABLE descriptor holds array of md page offsets that
262  * point to pages with EXTENT_PAGE descriptor. The 0's in the array
263  * are run-length encoded, non-zero values are unallocated pages.
264  * It is part of serialized metadata chain for a blob. */
265 #define SPDK_MD_DESCRIPTOR_TYPE_EXTENT_TABLE 5
266 /* EXTENT_PAGE descriptor holds an array of LBAs that point to
267  * beginning of allocated clusters. The array is run-length encoded,
268  * with 0's being unallocated clusters. It is NOT part of
269  * serialized metadata chain for a blob. */
270 #define SPDK_MD_DESCRIPTOR_TYPE_EXTENT_PAGE 6
271 
272 struct spdk_blob_md_descriptor_xattr {
273 	uint8_t		type;
274 	uint32_t	length;
275 
276 	uint16_t	name_length;
277 	uint16_t	value_length;
278 
279 	char		name[0];
280 	/* String name immediately followed by string value. */
281 };
282 
283 struct spdk_blob_md_descriptor_extent_rle {
284 	uint8_t		type;
285 	uint32_t	length;
286 
287 	struct {
288 		uint32_t	cluster_idx;
289 		uint32_t	length; /* In units of clusters */
290 	} extents[0];
291 };
292 
293 struct spdk_blob_md_descriptor_extent_table {
294 	uint8_t		type;
295 	uint32_t	length;
296 
297 	/* Number of data clusters in the blob */
298 	uint64_t	num_clusters;
299 
300 	struct {
301 		uint32_t	page_idx;
302 		uint32_t	num_pages; /* In units of pages */
303 	} extent_page[0];
304 };
305 
306 struct spdk_blob_md_descriptor_extent_page {
307 	uint8_t		type;
308 	uint32_t	length;
309 
310 	/* First cluster index in this extent page */
311 	uint32_t	start_cluster_idx;
312 
313 	uint32_t	cluster_idx[0];
314 };
315 
316 #define SPDK_BLOB_THIN_PROV (1ULL << 0)
317 #define SPDK_BLOB_INTERNAL_XATTR (1ULL << 1)
318 #define SPDK_BLOB_EXTENT_TABLE (1ULL << 2)
319 #define SPDK_BLOB_INVALID_FLAGS_MASK	(SPDK_BLOB_THIN_PROV | SPDK_BLOB_INTERNAL_XATTR | SPDK_BLOB_EXTENT_TABLE)
320 
321 #define SPDK_BLOB_READ_ONLY (1ULL << 0)
322 #define SPDK_BLOB_DATA_RO_FLAGS_MASK	SPDK_BLOB_READ_ONLY
323 
324 #define SPDK_BLOB_CLEAR_METHOD_SHIFT 0
325 #define SPDK_BLOB_CLEAR_METHOD (3ULL << SPDK_BLOB_CLEAR_METHOD_SHIFT)
326 #define SPDK_BLOB_MD_RO_FLAGS_MASK	SPDK_BLOB_CLEAR_METHOD
327 
328 struct spdk_blob_md_descriptor_flags {
329 	uint8_t		type;
330 	uint32_t	length;
331 
332 	/*
333 	 * If a flag in invalid_flags is set that the application is not aware of,
334 	 *  it will not allow the blob to be opened.
335 	 */
336 	uint64_t	invalid_flags;
337 
338 	/*
339 	 * If a flag in data_ro_flags is set that the application is not aware of,
340 	 *  allow the blob to be opened in data_read_only and md_read_only mode.
341 	 */
342 	uint64_t	data_ro_flags;
343 
344 	/*
345 	 * If a flag in md_ro_flags is set the application is not aware of,
346 	 *  allow the blob to be opened in md_read_only mode.
347 	 */
348 	uint64_t	md_ro_flags;
349 };
350 
351 struct spdk_blob_md_descriptor {
352 	uint8_t		type;
353 	uint32_t	length;
354 };
355 
356 #define SPDK_INVALID_MD_PAGE UINT32_MAX
357 
358 struct spdk_blob_md_page {
359 	spdk_blob_id     id;
360 
361 	uint32_t	sequence_num;
362 	uint32_t	reserved0;
363 
364 	/* Descriptors here */
365 	uint8_t		descriptors[4072];
366 
367 	uint32_t	next;
368 	uint32_t	crc;
369 };
370 #define SPDK_BS_PAGE_SIZE 0x1000
371 SPDK_STATIC_ASSERT(SPDK_BS_PAGE_SIZE == sizeof(struct spdk_blob_md_page), "Invalid md page size");
372 
373 #define SPDK_BS_MAX_DESC_SIZE SPDK_SIZEOF_MEMBER(struct spdk_blob_md_page, descriptors)
374 
375 /* Maximum number of extents a single Extent Page can fit.
376  * For an SPDK_BS_PAGE_SIZE of 4K SPDK_EXTENTS_PER_EP would be 512. */
377 #define SPDK_EXTENTS_PER_EP_MAX ((SPDK_BS_MAX_DESC_SIZE - sizeof(struct spdk_blob_md_descriptor_extent_page)) / sizeof(uint32_t))
378 #define SPDK_EXTENTS_PER_EP (spdk_align64pow2(SPDK_EXTENTS_PER_EP_MAX + 1) >> 1u)
379 
380 #define SPDK_BS_SUPER_BLOCK_SIG "SPDKBLOB"
381 
382 struct spdk_bs_super_block {
383 	uint8_t		signature[8];
384 	uint32_t	version;
385 	uint32_t	length;
386 	uint32_t	clean; /* If there was a clean shutdown, this is 1. */
387 	spdk_blob_id	super_blob;
388 
389 	uint32_t	cluster_size; /* In bytes */
390 
391 	uint32_t	used_page_mask_start; /* Offset from beginning of disk, in pages */
392 	uint32_t	used_page_mask_len; /* Count, in pages */
393 
394 	uint32_t	used_cluster_mask_start; /* Offset from beginning of disk, in pages */
395 	uint32_t	used_cluster_mask_len; /* Count, in pages */
396 
397 	uint32_t	md_start; /* Offset from beginning of disk, in pages */
398 	uint32_t	md_len; /* Count, in pages */
399 
400 	struct spdk_bs_type	bstype; /* blobstore type */
401 
402 	uint32_t	used_blobid_mask_start; /* Offset from beginning of disk, in pages */
403 	uint32_t	used_blobid_mask_len; /* Count, in pages */
404 
405 	uint64_t	size; /* size of blobstore in bytes */
406 	uint32_t	io_unit_size; /* Size of io unit in bytes */
407 
408 	uint8_t		reserved[4000];
409 	uint32_t	crc;
410 };
411 SPDK_STATIC_ASSERT(sizeof(struct spdk_bs_super_block) == 0x1000, "Invalid super block size");
412 
413 #pragma pack(pop)
414 
415 struct spdk_bs_dev *bs_create_zeroes_dev(void);
416 struct spdk_bs_dev *bs_create_blob_bs_dev(struct spdk_blob *blob);
417 
418 /* Unit Conversions
419  *
420  * The blobstore works with several different units:
421  * - Byte: Self explanatory
422  * - LBA: The logical blocks on the backing storage device.
423  * - Page: The read/write units of blobs and metadata. This is
424  *         an offset into a blob in units of 4KiB.
425  * - Cluster Index: The disk is broken into a sequential list of
426  *		    clusters. This is the offset from the beginning.
427  *
428  * NOTE: These conversions all act on simple magnitudes, not with any sort
429  *        of knowledge about the blobs themselves. For instance, converting
430  *        a page to an lba with the conversion function below simply converts
431  *        a number of pages to an equivalent number of lbas, but that
432  *        lba certainly isn't the right lba that corresponds to a page offset
433  *        for a particular blob.
434  */
435 static inline uint64_t
436 bs_byte_to_lba(struct spdk_blob_store *bs, uint64_t length)
437 {
438 	assert(length % bs->dev->blocklen == 0);
439 
440 	return length / bs->dev->blocklen;
441 }
442 
443 static inline uint64_t
444 bs_dev_byte_to_lba(struct spdk_bs_dev *bs_dev, uint64_t length)
445 {
446 	assert(length % bs_dev->blocklen == 0);
447 
448 	return length / bs_dev->blocklen;
449 }
450 
451 static inline uint64_t
452 bs_page_to_lba(struct spdk_blob_store *bs, uint64_t page)
453 {
454 	return page * SPDK_BS_PAGE_SIZE / bs->dev->blocklen;
455 }
456 
457 static inline uint64_t
458 bs_md_page_to_lba(struct spdk_blob_store *bs, uint32_t page)
459 {
460 	assert(page < bs->md_len);
461 	return bs_page_to_lba(bs, page + bs->md_start);
462 }
463 
464 static inline uint64_t
465 bs_dev_page_to_lba(struct spdk_bs_dev *bs_dev, uint64_t page)
466 {
467 	return page * SPDK_BS_PAGE_SIZE / bs_dev->blocklen;
468 }
469 
470 static inline uint64_t
471 bs_io_unit_per_page(struct spdk_blob_store *bs)
472 {
473 	return SPDK_BS_PAGE_SIZE / bs->io_unit_size;
474 }
475 
476 static inline uint64_t
477 bs_io_unit_to_page(struct spdk_blob_store *bs, uint64_t io_unit)
478 {
479 	return io_unit / bs_io_unit_per_page(bs);
480 }
481 
482 static inline uint64_t
483 bs_cluster_to_page(struct spdk_blob_store *bs, uint32_t cluster)
484 {
485 	return (uint64_t)cluster * bs->pages_per_cluster;
486 }
487 
488 static inline uint32_t
489 bs_page_to_cluster(struct spdk_blob_store *bs, uint64_t page)
490 {
491 	assert(page % bs->pages_per_cluster == 0);
492 
493 	return page / bs->pages_per_cluster;
494 }
495 
496 static inline uint64_t
497 bs_cluster_to_lba(struct spdk_blob_store *bs, uint32_t cluster)
498 {
499 	assert(bs->cluster_sz / bs->dev->blocklen > 0);
500 
501 	return (uint64_t)cluster * (bs->cluster_sz / bs->dev->blocklen);
502 }
503 
504 static inline uint32_t
505 bs_lba_to_cluster(struct spdk_blob_store *bs, uint64_t lba)
506 {
507 	assert(lba % (bs->cluster_sz / bs->dev->blocklen) == 0);
508 
509 	return lba / (bs->cluster_sz / bs->dev->blocklen);
510 }
511 
512 static inline uint64_t
513 bs_io_unit_to_back_dev_lba(struct spdk_blob *blob, uint64_t io_unit)
514 {
515 	return io_unit * (blob->bs->io_unit_size / blob->back_bs_dev->blocklen);
516 }
517 
518 static inline uint64_t
519 bs_cluster_to_extent_table_id(uint64_t cluster_num)
520 {
521 	return cluster_num / SPDK_EXTENTS_PER_EP;
522 }
523 
524 static inline uint32_t *
525 bs_cluster_to_extent_page(struct spdk_blob *blob, uint64_t cluster_num)
526 {
527 	uint64_t extent_table_id = bs_cluster_to_extent_table_id(cluster_num);
528 
529 	assert(blob->use_extent_table);
530 	assert(extent_table_id < blob->active.extent_pages_array_size);
531 
532 	return &blob->active.extent_pages[extent_table_id];
533 }
534 
535 static inline uint64_t
536 bs_io_units_per_cluster(struct spdk_blob *blob)
537 {
538 	uint64_t	io_units_per_cluster;
539 	uint8_t		shift = blob->bs->pages_per_cluster_shift;
540 
541 	if (shift != 0) {
542 		io_units_per_cluster = bs_io_unit_per_page(blob->bs) << shift;
543 	} else {
544 		io_units_per_cluster = bs_io_unit_per_page(blob->bs) * blob->bs->pages_per_cluster;
545 	}
546 
547 	return io_units_per_cluster;
548 }
549 
550 /* End basic conversions */
551 
552 static inline uint64_t
553 bs_blobid_to_page(spdk_blob_id id)
554 {
555 	return id & 0xFFFFFFFF;
556 }
557 
558 /* The blob id is a 64 bit number. The lower 32 bits are the page_idx. The upper
559  * 32 bits are not currently used. Stick a 1 there just to catch bugs where the
560  * code assumes blob id == page_idx.
561  */
562 static inline spdk_blob_id
563 bs_page_to_blobid(uint64_t page_idx)
564 {
565 	if (page_idx > UINT32_MAX) {
566 		return SPDK_BLOBID_INVALID;
567 	}
568 	return SPDK_BLOB_BLOBID_HIGH_BIT | page_idx;
569 }
570 
571 /* Given an io unit offset into a blob, look up the LBA for the
572  * start of that io unit.
573  */
574 static inline uint64_t
575 bs_blob_io_unit_to_lba(struct spdk_blob *blob, uint64_t io_unit)
576 {
577 	uint64_t	lba;
578 	uint64_t	pages_per_cluster;
579 	uint8_t		shift;
580 	uint64_t	io_units_per_cluster;
581 	uint64_t	io_units_per_page;
582 	uint64_t	page;
583 
584 	page = bs_io_unit_to_page(blob->bs, io_unit);
585 
586 	pages_per_cluster = blob->bs->pages_per_cluster;
587 	shift = blob->bs->pages_per_cluster_shift;
588 	io_units_per_page = bs_io_unit_per_page(blob->bs);
589 
590 	assert(page < blob->active.num_clusters * pages_per_cluster);
591 
592 	if (shift != 0) {
593 		io_units_per_cluster = io_units_per_page << shift;
594 		lba = blob->active.clusters[page >> shift];
595 	} else {
596 		io_units_per_cluster = io_units_per_page * pages_per_cluster;
597 		lba = blob->active.clusters[page / pages_per_cluster];
598 	}
599 	lba += io_unit % io_units_per_cluster;
600 	return lba;
601 }
602 
603 /* Given an io_unit offset into a blob, look up the number of io_units until the
604  * next cluster boundary.
605  */
606 static inline uint32_t
607 bs_num_io_units_to_cluster_boundary(struct spdk_blob *blob, uint64_t io_unit)
608 {
609 	uint64_t	io_units_per_cluster;
610 
611 	io_units_per_cluster = bs_io_units_per_cluster(blob);
612 
613 	return io_units_per_cluster - (io_unit % io_units_per_cluster);
614 }
615 
616 /* Given an io_unit offset into a blob, look up the number of pages into blob to beginning of current cluster */
617 static inline uint32_t
618 bs_io_unit_to_cluster_start(struct spdk_blob *blob, uint64_t io_unit)
619 {
620 	uint64_t	pages_per_cluster;
621 	uint64_t	page;
622 
623 	pages_per_cluster = blob->bs->pages_per_cluster;
624 	page = bs_io_unit_to_page(blob->bs, io_unit);
625 
626 	return page - (page % pages_per_cluster);
627 }
628 
629 /* Given an io_unit offset into a blob, look up the number of pages into blob to beginning of current cluster */
630 static inline uint32_t
631 bs_io_unit_to_cluster_number(struct spdk_blob *blob, uint64_t io_unit)
632 {
633 	uint64_t	pages_per_cluster = blob->bs->pages_per_cluster;
634 	uint8_t		shift = blob->bs->pages_per_cluster_shift;
635 	uint32_t	page_offset;
636 
637 	page_offset = io_unit / bs_io_unit_per_page(blob->bs);
638 	if (shift != 0) {
639 		return page_offset >> shift;
640 	} else {
641 		return page_offset / pages_per_cluster;
642 	}
643 }
644 
645 /* Given an io unit offset into a blob, look up if it is from allocated cluster. */
646 static inline bool
647 bs_io_unit_is_allocated(struct spdk_blob *blob, uint64_t io_unit)
648 {
649 	uint64_t	lba;
650 	uint64_t	page;
651 	uint64_t	pages_per_cluster;
652 	uint8_t		shift;
653 
654 	shift = blob->bs->pages_per_cluster_shift;
655 	pages_per_cluster = blob->bs->pages_per_cluster;
656 	page = bs_io_unit_to_page(blob->bs, io_unit);
657 
658 	assert(page < blob->active.num_clusters * pages_per_cluster);
659 
660 	if (shift != 0) {
661 		lba = blob->active.clusters[page >> shift];
662 	} else {
663 		lba = blob->active.clusters[page / pages_per_cluster];
664 	}
665 
666 	if (lba == 0) {
667 		assert(spdk_blob_is_thin_provisioned(blob));
668 		return false;
669 	} else {
670 		return true;
671 	}
672 }
673 
674 #endif
675