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