1 /* 2 * Copyright (c) 2011-2015 The DragonFly Project. All rights reserved. 3 * 4 * This code is derived from software contributed to The DragonFly Project 5 * by Matthew Dillon <dillon@dragonflybsd.org> 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * 2. Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in 15 * the documentation and/or other materials provided with the 16 * distribution. 17 * 3. Neither the name of The DragonFly Project nor the names of its 18 * contributors may be used to endorse or promote products derived 19 * from this software without specific, prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 22 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 24 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE 25 * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 26 * INCIDENTAL, SPECIAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING, 27 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 28 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 29 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 30 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT 31 * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 32 * SUCH DAMAGE. 33 */ 34 35 #include <sys/types.h> 36 #include <sys/diskslice.h> 37 #include <sys/diskmbr.h> 38 #include <sys/stat.h> 39 #include <sys/time.h> 40 #include <sys/sysctl.h> 41 #include <vfs/hammer2/hammer2_xxhash.h> 42 #include <vfs/hammer2/hammer2_disk.h> 43 44 #include <stdio.h> 45 #include <stdlib.h> 46 #include <stdarg.h> 47 #include <stddef.h> 48 #include <unistd.h> 49 #include <string.h> 50 #include <errno.h> 51 #include <fcntl.h> 52 #include <assert.h> 53 #include <err.h> 54 #include <uuid.h> 55 56 #define MAXLABELS HAMMER2_SET_COUNT 57 58 #define hammer2_icrc32(buf, size) iscsi_crc32((buf), (size)) 59 #define hammer2_icrc32c(buf, size, crc) iscsi_crc32_ext((buf), (size), (crc)) 60 uint32_t iscsi_crc32(const void *buf, size_t size); 61 uint32_t iscsi_crc32_ext(const void *buf, size_t size, uint32_t ocrc); 62 63 static hammer2_off_t check_volume(const char *path, int *fdp); 64 static int64_t getsize(const char *str, int64_t minval, int64_t maxval, int pw); 65 static const char *sizetostr(hammer2_off_t size); 66 static uint64_t nowtime(void); 67 static int blkrefary_cmp(const void *b1, const void *b2); 68 static void usage(void); 69 70 static void format_hammer2(int fd, hammer2_off_t total_space, 71 hammer2_off_t free_space); 72 static void alloc_direct(hammer2_off_t *basep, hammer2_blockref_t *bref, 73 size_t bytes); 74 static hammer2_key_t dirhash(const unsigned char *name, size_t len); 75 76 static int Hammer2Version = -1; 77 static int ForceOpt = 0; 78 static uuid_t Hammer2_FSType; /* static filesystem type id for HAMMER2 */ 79 static uuid_t Hammer2_VolFSID; /* unique filesystem id in volu header */ 80 static uuid_t Hammer2_SupCLID; /* PFS cluster id in super-root inode */ 81 static uuid_t Hammer2_SupFSID; /* PFS unique id in super-root inode */ 82 static uuid_t Hammer2_PfsCLID[MAXLABELS]; 83 static uuid_t Hammer2_PfsFSID[MAXLABELS]; 84 static const char *Label[MAXLABELS]; 85 static hammer2_off_t BootAreaSize; 86 static hammer2_off_t AuxAreaSize; 87 static int NLabels; 88 89 #define GIG ((hammer2_off_t)1024*1024*1024) 90 91 int 92 main(int ac, char **av) 93 { 94 uint32_t status; 95 hammer2_off_t total_space; 96 hammer2_off_t free_space; 97 hammer2_off_t reserved_space; 98 int ch; 99 int fd = -1; 100 int i; 101 int defaultlabels = 1; 102 char *vol_fsid; 103 char *sup_clid_name; 104 char *sup_fsid_name; 105 char *pfs_clid_name; 106 char *pfs_fsid_name; 107 108 Label[NLabels++] = "LOCAL"; 109 110 /* 111 * Sanity check basic filesystem structures. No cookies for us 112 * if it gets broken! 113 */ 114 assert(sizeof(hammer2_volume_data_t) == HAMMER2_VOLUME_BYTES); 115 assert(sizeof(hammer2_inode_data_t) == HAMMER2_INODE_BYTES); 116 assert(sizeof(hammer2_blockref_t) == HAMMER2_BLOCKREF_BYTES); 117 118 /* 119 * Generate a filesystem id and lookup the filesystem type 120 */ 121 srandomdev(); 122 uuidgen(&Hammer2_VolFSID, 1); 123 uuidgen(&Hammer2_SupCLID, 1); 124 uuidgen(&Hammer2_SupFSID, 1); 125 uuid_from_string(HAMMER2_UUID_STRING, &Hammer2_FSType, &status); 126 /*uuid_name_lookup(&Hammer2_FSType, "DragonFly HAMMER2", &status);*/ 127 if (status != uuid_s_ok) { 128 errx(1, "uuids file does not have the DragonFly " 129 "HAMMER2 filesystem type"); 130 } 131 132 /* 133 * Parse arguments 134 */ 135 while ((ch = getopt(ac, av, "fL:b:m:r:V:")) != -1) { 136 switch(ch) { 137 case 'f': 138 ForceOpt = 1; 139 break; 140 case 'L': 141 defaultlabels = 0; 142 if (strcasecmp(optarg, "none") == 0) { 143 break; 144 } 145 if (NLabels >= MAXLABELS) { 146 errx(1, 147 "Limit of %d local labels", 148 MAXLABELS - 1); 149 } 150 Label[NLabels++] = optarg; 151 if (strlen(Label[NLabels-1]) > HAMMER2_INODE_MAXNAME) { 152 errx(1, "Root directory label too long " 153 "(64 chars max)\n"); 154 } 155 break; 156 case 'b': 157 BootAreaSize = getsize(optarg, 158 HAMMER2_NEWFS_ALIGN, 159 HAMMER2_BOOT_MAX_BYTES, 2); 160 break; 161 case 'r': 162 AuxAreaSize = getsize(optarg, 163 HAMMER2_NEWFS_ALIGN, 164 HAMMER2_REDO_MAX_BYTES, 2); 165 break; 166 case 'V': 167 Hammer2Version = strtol(optarg, NULL, 0); 168 if (Hammer2Version < HAMMER2_VOL_VERSION_MIN || 169 Hammer2Version >= HAMMER2_VOL_VERSION_WIP) { 170 errx(1, 171 "I don't understand how to format " 172 "HAMMER2 version %d\n", 173 Hammer2Version); 174 } 175 break; 176 default: 177 usage(); 178 break; 179 } 180 } 181 182 /* 183 * Check Hammer2 version 184 */ 185 if (Hammer2Version < 0) { 186 size_t olen = sizeof(Hammer2Version); 187 Hammer2Version = HAMMER2_VOL_VERSION_DEFAULT; 188 if (sysctlbyname("vfs.hammer2.supported_version", 189 &Hammer2Version, &olen, NULL, 0) == 0) { 190 if (Hammer2Version >= HAMMER2_VOL_VERSION_WIP) { 191 Hammer2Version = HAMMER2_VOL_VERSION_WIP - 1; 192 fprintf(stderr, 193 "newfs_hammer2: WARNING: HAMMER2 VFS " 194 "supports higher version than I " 195 "understand,\n" 196 "using version %d\n", 197 Hammer2Version); 198 } 199 } else { 200 fprintf(stderr, 201 "newfs_hammer2: WARNING: HAMMER2 VFS not " 202 "loaded, cannot get version info.\n" 203 "Using version %d\n", 204 HAMMER2_VOL_VERSION_DEFAULT); 205 } 206 } 207 208 ac -= optind; 209 av += optind; 210 211 if (ac != 1 || av[0][0] == 0) { 212 fprintf(stderr, "Exactly one disk device must be specified\n"); 213 exit(1); 214 } 215 216 /* 217 * Adjust Label[] and NLabels. 218 */ 219 if (defaultlabels == 0) { 220 NLabels = 1; 221 } else { 222 char c = av[0][strlen(av[0]) - 1]; 223 if (c == 'a') 224 Label[NLabels++] = "BOOT"; 225 else if (c == 'd') 226 Label[NLabels++] = "ROOT"; 227 else 228 Label[NLabels++] = "DATA"; 229 } 230 231 /* 232 * Collect volume information. 233 */ 234 total_space = check_volume(av[0], &fd); 235 236 /* 237 * ~typically 8MB alignment to avoid edge cases for reserved blocks 238 * and so raid stripes (if any) operate efficiently. 239 */ 240 total_space &= ~HAMMER2_VOLUME_ALIGNMASK64; 241 242 /* 243 * Calculate defaults for the boot area size and round to the 244 * volume alignment boundary. 245 * 246 * NOTE: These areas are currently not used for booting but are 247 * reserved for future filesystem expansion. 248 */ 249 if (BootAreaSize == 0) { 250 BootAreaSize = HAMMER2_BOOT_NOM_BYTES; 251 while (BootAreaSize > total_space / 20) 252 BootAreaSize >>= 1; 253 if (BootAreaSize < HAMMER2_BOOT_MIN_BYTES) 254 BootAreaSize = HAMMER2_BOOT_MIN_BYTES; 255 } else if (BootAreaSize < HAMMER2_BOOT_MIN_BYTES) { 256 BootAreaSize = HAMMER2_BOOT_MIN_BYTES; 257 } 258 BootAreaSize = (BootAreaSize + HAMMER2_VOLUME_ALIGNMASK64) & 259 ~HAMMER2_VOLUME_ALIGNMASK64; 260 261 /* 262 * Calculate defaults for the redo area size and round to the 263 * volume alignment boundary. 264 * 265 * NOTE: These areas are currently not used for logging but are 266 * reserved for future filesystem expansion. 267 */ 268 if (AuxAreaSize == 0) { 269 AuxAreaSize = HAMMER2_REDO_NOM_BYTES; 270 while (AuxAreaSize > total_space / 20) 271 AuxAreaSize >>= 1; 272 if (AuxAreaSize < HAMMER2_REDO_MIN_BYTES) 273 AuxAreaSize = HAMMER2_REDO_MIN_BYTES; 274 } else if (AuxAreaSize < HAMMER2_REDO_MIN_BYTES) { 275 AuxAreaSize = HAMMER2_REDO_MIN_BYTES; 276 } 277 AuxAreaSize = (AuxAreaSize + HAMMER2_VOLUME_ALIGNMASK64) & 278 ~HAMMER2_VOLUME_ALIGNMASK64; 279 280 /* 281 * We'll need to stuff this in the volume header soon. 282 */ 283 uuid_to_string(&Hammer2_VolFSID, &vol_fsid, &status); 284 uuid_to_string(&Hammer2_SupCLID, &sup_clid_name, &status); 285 uuid_to_string(&Hammer2_SupFSID, &sup_fsid_name, &status); 286 287 /* 288 * Calculate the amount of reserved space. HAMMER2_ZONE_SEG (4MB) 289 * is reserved at the beginning of every 2GB of storage, rounded up. 290 * Thus a 200MB filesystem will still have a 4MB reserve area. 291 * 292 * We also include the boot and redo areas in the reserve. The 293 * reserve is used to help 'df' calculate the amount of available 294 * space. 295 */ 296 reserved_space = ((total_space + HAMMER2_ZONE_MASK64) / 297 HAMMER2_ZONE_BYTES64) * HAMMER2_ZONE_SEG64; 298 299 free_space = total_space - reserved_space - 300 BootAreaSize - AuxAreaSize; 301 302 format_hammer2(fd, total_space, free_space); 303 fsync(fd); 304 close(fd); 305 306 printf("---------------------------------------------\n"); 307 printf("version: %d\n", Hammer2Version); 308 printf("total-size: %s (%jd bytes)\n", 309 sizetostr(total_space), 310 (intmax_t)total_space); 311 printf("boot-area-size: %s\n", sizetostr(BootAreaSize)); 312 printf("aux-area-size: %s\n", sizetostr(AuxAreaSize)); 313 printf("topo-reserved: %s\n", sizetostr(reserved_space)); 314 printf("free-space: %s\n", sizetostr(free_space)); 315 printf("vol-fsid: %s\n", vol_fsid); 316 printf("sup-clid: %s\n", sup_clid_name); 317 printf("sup-fsid: %s\n", sup_fsid_name); 318 for (i = 0; i < NLabels; ++i) { 319 printf("PFS \"%s\"\n", Label[i]); 320 uuid_to_string(&Hammer2_PfsCLID[i], &pfs_clid_name, &status); 321 uuid_to_string(&Hammer2_PfsFSID[i], &pfs_fsid_name, &status); 322 printf(" clid %s\n", pfs_clid_name); 323 printf(" fsid %s\n", pfs_fsid_name); 324 } 325 printf("\n"); 326 327 return(0); 328 } 329 330 static 331 void 332 usage(void) 333 { 334 fprintf(stderr, 335 "usage: newfs_hammer2 -L label [-f] [-b bootsize] " 336 "[-r redosize] [-V version] special ...\n" 337 ); 338 exit(1); 339 } 340 341 /* 342 * Convert the size in bytes to a human readable string. 343 */ 344 static 345 const char * 346 sizetostr(hammer2_off_t size) 347 { 348 static char buf[32]; 349 350 if (size < 1024 / 2) { 351 snprintf(buf, sizeof(buf), "%6.2f", (double)size); 352 } else if (size < 1024 * 1024 / 2) { 353 snprintf(buf, sizeof(buf), "%6.2fKB", 354 (double)size / 1024); 355 } else if (size < 1024 * 1024 * 1024LL / 2) { 356 snprintf(buf, sizeof(buf), "%6.2fMB", 357 (double)size / (1024 * 1024)); 358 } else if (size < 1024 * 1024 * 1024LL * 1024LL / 2) { 359 snprintf(buf, sizeof(buf), "%6.2fGB", 360 (double)size / (1024 * 1024 * 1024LL)); 361 } else { 362 snprintf(buf, sizeof(buf), "%6.2fTB", 363 (double)size / (1024 * 1024 * 1024LL * 1024LL)); 364 } 365 return(buf); 366 } 367 368 /* 369 * Convert a string to a 64 bit signed integer with various requirements. 370 */ 371 static int64_t 372 getsize(const char *str, int64_t minval, int64_t maxval, int powerof2) 373 { 374 int64_t val; 375 char *ptr; 376 377 val = strtoll(str, &ptr, 0); 378 switch(*ptr) { 379 case 't': 380 case 'T': 381 val *= 1024; 382 /* fall through */ 383 case 'g': 384 case 'G': 385 val *= 1024; 386 /* fall through */ 387 case 'm': 388 case 'M': 389 val *= 1024; 390 /* fall through */ 391 case 'k': 392 case 'K': 393 val *= 1024; 394 break; 395 default: 396 errx(1, "Unknown suffix in number '%s'\n", str); 397 /* not reached */ 398 } 399 if (ptr[1]) { 400 errx(1, "Unknown suffix in number '%s'\n", str); 401 /* not reached */ 402 } 403 if (val < minval) { 404 errx(1, "Value too small: %s, min is %s\n", 405 str, sizetostr(minval)); 406 /* not reached */ 407 } 408 if (val > maxval) { 409 errx(1, "Value too large: %s, max is %s\n", 410 str, sizetostr(maxval)); 411 /* not reached */ 412 } 413 if ((powerof2 & 1) && (val ^ (val - 1)) != ((val << 1) - 1)) { 414 errx(1, "Value not power of 2: %s\n", str); 415 /* not reached */ 416 } 417 if ((powerof2 & 2) && (val & HAMMER2_NEWFS_ALIGNMASK)) { 418 errx(1, "Value not an integral multiple of %dK: %s", 419 HAMMER2_NEWFS_ALIGN / 1024, str); 420 /* not reached */ 421 } 422 return(val); 423 } 424 425 static uint64_t 426 nowtime(void) 427 { 428 struct timeval tv; 429 uint64_t xtime; 430 431 gettimeofday(&tv, NULL); 432 xtime = tv.tv_sec * 1000000LL + tv.tv_usec; 433 return(xtime); 434 } 435 436 /* 437 * Figure out how big the volume is. 438 */ 439 static 440 hammer2_off_t 441 check_volume(const char *path, int *fdp) 442 { 443 struct partinfo pinfo; 444 struct stat st; 445 hammer2_off_t size; 446 447 /* 448 * Get basic information about the volume 449 */ 450 *fdp = open(path, O_RDWR); 451 if (*fdp < 0) 452 err(1, "Unable to open %s R+W", path); 453 if (ioctl(*fdp, DIOCGPART, &pinfo) < 0) { 454 /* 455 * Allow the formatting of regular files as HAMMER2 volumes 456 */ 457 if (fstat(*fdp, &st) < 0) 458 err(1, "Unable to stat %s", path); 459 size = st.st_size; 460 } else { 461 /* 462 * When formatting a block device as a HAMMER2 volume the 463 * sector size must be compatible. HAMMER2 uses 64K 464 * filesystem buffers but logical buffers for direct I/O 465 * can be as small as HAMMER2_LOGSIZE (16KB). 466 */ 467 if (pinfo.reserved_blocks) { 468 errx(1, "HAMMER2 cannot be placed in a partition " 469 "which overlaps the disklabel or MBR"); 470 } 471 if (pinfo.media_blksize > HAMMER2_PBUFSIZE || 472 HAMMER2_PBUFSIZE % pinfo.media_blksize) { 473 errx(1, "A media sector size of %d is not supported", 474 pinfo.media_blksize); 475 } 476 size = pinfo.media_size; 477 } 478 printf("Volume %-15s size %s\n", path, sizetostr(size)); 479 return (size); 480 } 481 482 /* 483 * Create the volume header, the super-root directory inode, and 484 * the writable snapshot subdirectory (named via the label) which 485 * is to be the initial mount point, or at least the first mount point. 486 * 487 * [----reserved_area----][boot_area][aux_area] 488 * [[vol_hdr]... ] [sroot][root]... 489 * 490 * The sroot and root inodes eat 512 bytes each. newfs labels can only be 491 * 64 bytes so the root (snapshot) inode does not need to extend past 512 492 * bytes. We use the correct hash slot correct but note that because 493 * directory hashes are chained 16x, any slot in the inode will work. 494 * 495 * Also format the allocation map. 496 * 497 * NOTE: The passed total_space is 8MB-aligned to avoid edge cases. 498 */ 499 static 500 void 501 format_hammer2(int fd, hammer2_off_t total_space, hammer2_off_t free_space) 502 { 503 char *buf = malloc(HAMMER2_PBUFSIZE); 504 hammer2_volume_data_t *vol; 505 hammer2_inode_data_t *rawip; 506 hammer2_blockref_t sroot_blockref; 507 hammer2_blockref_t root_blockref[MAXLABELS]; 508 uint64_t now; 509 hammer2_off_t volu_base = 0; 510 hammer2_off_t boot_base = HAMMER2_ZONE_SEG; 511 hammer2_off_t aux_base = boot_base + BootAreaSize; 512 hammer2_off_t alloc_base = aux_base + AuxAreaSize; 513 hammer2_off_t tmp_base; 514 size_t n; 515 int i; 516 517 /* 518 * Clear the entire reserve for the first 2G segment and 519 * make sure we can write to the last block. 520 */ 521 bzero(buf, HAMMER2_PBUFSIZE); 522 tmp_base = volu_base; 523 for (i = 0; i < HAMMER2_ZONE_BLOCKS_SEG; ++i) { 524 n = pwrite(fd, buf, HAMMER2_PBUFSIZE, tmp_base); 525 if (n != HAMMER2_PBUFSIZE) { 526 perror("write"); 527 exit(1); 528 } 529 tmp_base += HAMMER2_PBUFSIZE; 530 } 531 532 n = pwrite(fd, buf, HAMMER2_PBUFSIZE, 533 volu_base + total_space - HAMMER2_PBUFSIZE); 534 if (n != HAMMER2_PBUFSIZE) { 535 perror("write (at-end-of-volume)"); 536 exit(1); 537 } 538 539 /* 540 * Make sure alloc_base won't cross the reserved area at the 541 * beginning of each 2GB zone. 542 * 543 * Reserve space for the super-root inode and the root inode. 544 * Make sure they are in the same 64K block to simplify our code. 545 */ 546 assert((alloc_base & HAMMER2_PBUFMASK) == 0); 547 assert(alloc_base < HAMMER2_ZONE_BYTES64 - HAMMER2_ZONE_SEG); 548 now = nowtime(); 549 bzero(buf, HAMMER2_PBUFSIZE); 550 551 alloc_base &= ~HAMMER2_PBUFMASK64; 552 alloc_direct(&alloc_base, &sroot_blockref, HAMMER2_INODE_BYTES); 553 554 for (i = 0; i < NLabels; ++i) { 555 uuidgen(&Hammer2_PfsCLID[i], 1); 556 uuidgen(&Hammer2_PfsFSID[i], 1); 557 558 alloc_direct(&alloc_base, &root_blockref[i], 559 HAMMER2_INODE_BYTES); 560 assert(((sroot_blockref.data_off ^ root_blockref[i].data_off) & 561 HAMMER2_OFF_MASK_HI) == 0); 562 563 /* 564 * Format the root directory inode, which is left empty. 565 */ 566 rawip = (void *)(buf + (HAMMER2_OFF_MASK_LO & 567 root_blockref[i].data_off)); 568 rawip->meta.version = HAMMER2_INODE_VERSION_ONE; 569 rawip->meta.ctime = now; 570 rawip->meta.mtime = now; 571 /* rawip->atime = now; NOT IMPL MUST BE ZERO */ 572 rawip->meta.btime = now; 573 rawip->meta.type = HAMMER2_OBJTYPE_DIRECTORY; 574 rawip->meta.mode = 0755; 575 rawip->meta.inum = 1; /* root inode, inumber 1 */ 576 rawip->meta.nlinks = 1; /* directory link count compat */ 577 578 rawip->meta.name_len = strlen(Label[i]); 579 bcopy(Label[i], rawip->filename, rawip->meta.name_len); 580 rawip->meta.name_key = 581 dirhash(rawip->filename, rawip->meta.name_len); 582 583 /* 584 * Compression mode and supported copyids. 585 * 586 * Do not allow compression when creating any "BOOT" label 587 * (pfs-create also does the same if the pfs is named "BOOT") 588 */ 589 if (strcasecmp(Label[i], "BOOT") == 0) { 590 rawip->meta.comp_algo = HAMMER2_ENC_ALGO( 591 HAMMER2_COMP_AUTOZERO); 592 rawip->meta.check_algo = HAMMER2_ENC_ALGO( 593 HAMMER2_CHECK_XXHASH64); 594 } else { 595 rawip->meta.comp_algo = HAMMER2_ENC_ALGO( 596 HAMMER2_COMP_NEWFS_DEFAULT); 597 rawip->meta.check_algo = HAMMER2_ENC_ALGO( 598 HAMMER2_CHECK_XXHASH64); 599 } 600 601 /* 602 * NOTE: We leave nmasters set to 0, which means that we 603 * don't know how many masters there are. The quorum 604 * calculation will effectively be 1 ( 0 / 2 + 1 ). 605 */ 606 rawip->meta.pfs_clid = Hammer2_PfsCLID[i]; 607 rawip->meta.pfs_fsid = Hammer2_PfsFSID[i]; 608 rawip->meta.pfs_type = HAMMER2_PFSTYPE_MASTER; 609 rawip->meta.op_flags |= HAMMER2_OPFLAG_PFSROOT; 610 611 /* first allocatable inode number */ 612 rawip->meta.pfs_inum = 16; 613 614 /* rawip->u.blockset is left empty */ 615 616 /* 617 * The root blockref will be stored in the super-root inode as 618 * the only directory entry. The copyid here is the actual 619 * copyid of the storage ref. 620 * 621 * The key field for a directory entry's blockref is 622 * essentially the name key for the entry. 623 */ 624 root_blockref[i].key = rawip->meta.name_key; 625 root_blockref[i].copyid = HAMMER2_COPYID_LOCAL; 626 root_blockref[i].keybits = 0; 627 root_blockref[i].check.xxhash64.value = 628 XXH64(rawip, sizeof(*rawip), XXH_HAMMER2_SEED); 629 root_blockref[i].type = HAMMER2_BREF_TYPE_INODE; 630 root_blockref[i].methods = 631 HAMMER2_ENC_CHECK(HAMMER2_CHECK_XXHASH64) | 632 HAMMER2_ENC_COMP(HAMMER2_COMP_NONE); 633 root_blockref[i].mirror_tid = 16; 634 root_blockref[i].flags = HAMMER2_BREF_FLAG_PFSROOT; 635 } 636 637 /* 638 * Format the super-root directory inode, giving it one directory 639 * entry (root_blockref) and fixup the icrc method. 640 * 641 * The superroot contains one directory entry pointing at the root 642 * inode (named via the label). Inodes contain one blockset which 643 * is fully associative so we can put the entry anywhere without 644 * having to worry about the hash. Use index 0. 645 */ 646 rawip = (void *)(buf + (HAMMER2_OFF_MASK_LO & sroot_blockref.data_off)); 647 rawip->meta.version = HAMMER2_INODE_VERSION_ONE; 648 rawip->meta.ctime = now; 649 rawip->meta.mtime = now; 650 /* rawip->meta.atime = now; NOT IMPL MUST BE ZERO */ 651 rawip->meta.btime = now; 652 rawip->meta.type = HAMMER2_OBJTYPE_DIRECTORY; 653 rawip->meta.mode = 0700; /* super-root - root only */ 654 rawip->meta.inum = 0; /* super root inode, inumber 0 */ 655 rawip->meta.nlinks = 2; /* directory link count compat */ 656 657 rawip->meta.name_len = 0; /* super-root is unnamed */ 658 rawip->meta.name_key = 0; 659 660 rawip->meta.comp_algo = HAMMER2_ENC_ALGO(HAMMER2_COMP_AUTOZERO); 661 rawip->meta.check_algo = HAMMER2_ENC_ALGO(HAMMER2_CHECK_XXHASH64); 662 663 /* 664 * The super-root is flagged as a PFS and typically given its own 665 * random FSID, making it possible to mirror an entire HAMMER2 disk 666 * snapshots and all if desired. PFS ids are used to match up 667 * mirror sources and targets and cluster copy sources and targets. 668 * 669 * (XXX whole-disk logical mirroring is not really supported in 670 * the first attempt because each PFS is in its own modify/mirror 671 * transaction id domain, so normal mechanics cannot cross a PFS 672 * boundary). 673 */ 674 rawip->meta.pfs_clid = Hammer2_SupCLID; 675 rawip->meta.pfs_fsid = Hammer2_SupFSID; 676 rawip->meta.pfs_type = HAMMER2_PFSTYPE_SUPROOT; 677 snprintf(rawip->filename, sizeof(rawip->filename), "SUPROOT"); 678 rawip->meta.name_key = 0; 679 rawip->meta.name_len = strlen(rawip->filename); 680 681 /* The super-root has an inode number of 0 */ 682 rawip->meta.pfs_inum = 0; 683 684 /* 685 * Currently newfs_hammer2 just throws the PFS inodes into the 686 * top-level block table at the volume root and doesn't try to 687 * create an indirect block, so we are limited to ~4 at filesystem 688 * creation time. More can be added after mounting. 689 */ 690 qsort(root_blockref, NLabels, sizeof(root_blockref[0]), blkrefary_cmp); 691 for (i = 0; i < NLabels; ++i) 692 rawip->u.blockset.blockref[i] = root_blockref[i]; 693 694 /* 695 * The sroot blockref will be stored in the volume header. 696 */ 697 sroot_blockref.copyid = HAMMER2_COPYID_LOCAL; 698 sroot_blockref.keybits = 0; 699 sroot_blockref.check.xxhash64.value = 700 XXH64(rawip, sizeof(*rawip), XXH_HAMMER2_SEED); 701 sroot_blockref.type = HAMMER2_BREF_TYPE_INODE; 702 sroot_blockref.methods = HAMMER2_ENC_CHECK(HAMMER2_CHECK_XXHASH64) | 703 HAMMER2_ENC_COMP(HAMMER2_COMP_AUTOZERO); 704 sroot_blockref.mirror_tid = 16; 705 rawip = NULL; 706 707 /* 708 * Write out the 64K HAMMER2 block containing the root and sroot. 709 */ 710 n = pwrite(fd, buf, HAMMER2_PBUFSIZE, 711 sroot_blockref.data_off & HAMMER2_OFF_MASK_HI); 712 if (n != HAMMER2_PBUFSIZE) { 713 perror("write"); 714 exit(1); 715 } 716 717 /* 718 * Format the volume header. 719 * 720 * The volume header points to sroot_blockref. Also be absolutely 721 * sure that allocator_beg is set. 722 */ 723 bzero(buf, HAMMER2_PBUFSIZE); 724 vol = (void *)buf; 725 726 vol->magic = HAMMER2_VOLUME_ID_HBO; 727 vol->boot_beg = boot_base; 728 vol->boot_end = boot_base + BootAreaSize; 729 vol->aux_beg = aux_base; 730 vol->aux_end = aux_base + AuxAreaSize; 731 vol->volu_size = total_space; 732 vol->version = Hammer2Version; 733 vol->flags = 0; 734 735 vol->fsid = Hammer2_VolFSID; 736 vol->fstype = Hammer2_FSType; 737 738 vol->peer_type = DMSG_PEER_HAMMER2; /* LNK_CONN identification */ 739 740 vol->allocator_size = free_space; 741 vol->allocator_free = free_space; 742 vol->allocator_beg = alloc_base; 743 744 vol->sroot_blockset.blockref[0] = sroot_blockref; 745 vol->mirror_tid = 16; /* all blockref mirror TIDs set to 16 */ 746 vol->freemap_tid = 16; /* all blockref mirror TIDs set to 16 */ 747 vol->icrc_sects[HAMMER2_VOL_ICRC_SECT1] = 748 hammer2_icrc32((char *)vol + HAMMER2_VOLUME_ICRC1_OFF, 749 HAMMER2_VOLUME_ICRC1_SIZE); 750 751 /* 752 * Set ICRC_SECT0 after all remaining elements of sect0 have been 753 * populated in the volume header. Note hat ICRC_SECT* (except for 754 * SECT0) are part of sect0. 755 */ 756 vol->icrc_sects[HAMMER2_VOL_ICRC_SECT0] = 757 hammer2_icrc32((char *)vol + HAMMER2_VOLUME_ICRC0_OFF, 758 HAMMER2_VOLUME_ICRC0_SIZE); 759 vol->icrc_volheader = 760 hammer2_icrc32((char *)vol + HAMMER2_VOLUME_ICRCVH_OFF, 761 HAMMER2_VOLUME_ICRCVH_SIZE); 762 763 /* 764 * Write the volume header and all alternates. 765 */ 766 for (i = 0; i < HAMMER2_NUM_VOLHDRS; ++i) { 767 if (i * HAMMER2_ZONE_BYTES64 >= total_space) 768 break; 769 n = pwrite(fd, buf, HAMMER2_PBUFSIZE, 770 volu_base + i * HAMMER2_ZONE_BYTES64); 771 if (n != HAMMER2_PBUFSIZE) { 772 perror("write"); 773 exit(1); 774 } 775 } 776 777 /* 778 * Cleanup 779 */ 780 free(buf); 781 } 782 783 static void 784 alloc_direct(hammer2_off_t *basep, hammer2_blockref_t *bref, size_t bytes) 785 { 786 int radix; 787 788 radix = 0; 789 assert(bytes); 790 while ((bytes & 1) == 0) { 791 bytes >>= 1; 792 ++radix; 793 } 794 assert(bytes == 1); 795 if (radix < HAMMER2_RADIX_MIN) 796 radix = HAMMER2_RADIX_MIN; 797 798 bzero(bref, sizeof(*bref)); 799 bref->data_off = *basep | radix; 800 bref->vradix = radix; 801 802 *basep += 1U << radix; 803 } 804 805 /* 806 * Borrow HAMMER1's directory hash algorithm #1 with a few modifications. 807 * The filename is split into fields which are hashed separately and then 808 * added together. 809 * 810 * Differences include: bit 63 must be set to 1 for HAMMER2 (HAMMER1 sets 811 * it to 0), this is because bit63=0 is used for hidden hardlinked inodes. 812 * (This means we do not need to do a 0-check/or-with-0x100000000 either). 813 * 814 * Also, the iscsi crc code is used instead of the old crc32 code. 815 */ 816 static hammer2_key_t 817 dirhash(const unsigned char *name, size_t len) 818 { 819 const unsigned char *aname = name; 820 uint32_t crcx; 821 uint64_t key; 822 size_t i; 823 size_t j; 824 825 /* 826 * Filesystem version 6 or better will create directories 827 * using the ALG1 dirhash. This hash breaks the filename 828 * up into domains separated by special characters and 829 * hashes each domain independently. 830 * 831 * We also do a simple sub-sort using the first character 832 * of the filename in the top 5-bits. 833 */ 834 key = 0; 835 836 /* 837 * m32 838 */ 839 crcx = 0; 840 for (i = j = 0; i < len; ++i) { 841 if (aname[i] == '.' || 842 aname[i] == '-' || 843 aname[i] == '_' || 844 aname[i] == '~') { 845 if (i != j) 846 crcx += hammer2_icrc32(aname + j, i - j); 847 j = i + 1; 848 } 849 } 850 if (i != j) 851 crcx += hammer2_icrc32(aname + j, i - j); 852 853 /* 854 * The directory hash utilizes the top 32 bits of the 64-bit key. 855 * Bit 63 must be set to 1. 856 */ 857 crcx |= 0x80000000U; 858 key |= (uint64_t)crcx << 32; 859 860 /* 861 * l16 - crc of entire filename 862 * 863 * This crc reduces degenerate hash collision conditions 864 */ 865 crcx = hammer2_icrc32(aname, len); 866 crcx = crcx ^ (crcx << 16); 867 key |= crcx & 0xFFFF0000U; 868 869 /* 870 * Set bit 15. This allows readdir to strip bit 63 so a positive 871 * 64-bit cookie/offset can always be returned, and still guarantee 872 * that the values 0x0000-0x7FFF are available for artificial entries. 873 * ('.' and '..'). 874 */ 875 key |= 0x8000U; 876 877 return (key); 878 } 879 880 static int 881 blkrefary_cmp(const void *b1, const void *b2) 882 { 883 const hammer2_blockref_t *bref1 = b1; 884 const hammer2_blockref_t *bref2 = b2; 885 if (bref1->key < bref2->key) 886 return(-1); 887 if (bref1->key > bref2->key) 888 return(1); 889 return 0; 890 } 891