1 /* $NetBSD: ntfs_subr.c,v 1.38 2008/12/17 20:51:35 cegger Exp $ */ 2 3 /*- 4 * Copyright (c) 1998, 1999 Semen Ustimenko (semenu@FreeBSD.org) 5 * All rights reserved. 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 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 19 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 20 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 26 * SUCH DAMAGE. 27 * 28 * Id: ntfs_subr.c,v 1.4 1999/05/12 09:43:01 semenu Exp 29 */ 30 31 #include <sys/cdefs.h> 32 __KERNEL_RCSID(0, "$NetBSD: ntfs_subr.c,v 1.38 2008/12/17 20:51:35 cegger Exp $"); 33 34 #include <sys/param.h> 35 #include <sys/systm.h> 36 #include <sys/namei.h> 37 #include <sys/proc.h> 38 #include <sys/kernel.h> 39 #include <sys/vnode.h> 40 #include <sys/mount.h> 41 #include <sys/buf.h> 42 #include <sys/file.h> 43 #include <sys/malloc.h> 44 #include <sys/lock.h> 45 #include <sys/kauth.h> 46 47 #include <miscfs/specfs/specdev.h> 48 49 #include <fs/ntfs/ntfs.h> 50 #include <fs/ntfs/ntfsmount.h> 51 #include <fs/ntfs/ntfs_inode.h> 52 #include <fs/ntfs/ntfs_vfsops.h> 53 #include <fs/ntfs/ntfs_subr.h> 54 #include <fs/ntfs/ntfs_compr.h> 55 #include <fs/ntfs/ntfs_ihash.h> 56 57 #ifdef NTFS_DEBUG 58 int ntfs_debug = NTFS_DEBUG; 59 #endif 60 61 MALLOC_JUSTDEFINE(M_NTFSNTVATTR, "NTFS vattr", 62 "NTFS file attribute information"); 63 MALLOC_JUSTDEFINE(M_NTFSRDATA, "NTFS res data", "NTFS resident data"); 64 MALLOC_JUSTDEFINE(M_NTFSRUN, "NTFS vrun", "NTFS vrun storage"); 65 MALLOC_JUSTDEFINE(M_NTFSDECOMP, "NTFS decomp", "NTFS decompression temporary"); 66 67 /* Local struct used in ntfs_ntlookupfile() */ 68 struct ntfs_lookup_ctx { 69 u_int32_t aoff; 70 u_int32_t rdsize; 71 cn_t cn; 72 struct ntfs_lookup_ctx *prev; 73 }; 74 75 static int ntfs_ntlookupattr(struct ntfsmount *, const char *, int, 76 int *, char **); 77 static int ntfs_findvattr(struct ntfsmount *, struct ntnode *, 78 struct ntvattr **, struct ntvattr **, u_int32_t, const char *, 79 size_t, cn_t); 80 static int ntfs_uastricmp(struct ntfsmount *, const wchar *, size_t, 81 const char *, size_t); 82 static int ntfs_uastrcmp(struct ntfsmount *, const wchar *, size_t, 83 const char *, size_t); 84 85 /* table for mapping Unicode chars into uppercase; it's filled upon first 86 * ntfs mount, freed upon last ntfs umount */ 87 static wchar *ntfs_toupper_tab; 88 #define NTFS_U28(ch) ((((ch) & 0xE0) == 0) ? '_' : (ch) & 0xFF) 89 #define NTFS_TOUPPER(ch) (ntfs_toupper_tab[(unsigned char)(ch)]) 90 static kmutex_t ntfs_toupper_lock; 91 static signed int ntfs_toupper_usecount; 92 93 /* support macro for ntfs_ntvattrget() */ 94 #define NTFS_AALPCMP(aalp,type,name,namelen) ( \ 95 (aalp->al_type == type) && (aalp->al_namelen == namelen) && \ 96 !ntfs_uastrcmp(ntmp, aalp->al_name,aalp->al_namelen,name,namelen) ) 97 98 /* 99 * 100 */ 101 int 102 ntfs_ntvattrrele(vap) 103 struct ntvattr * vap; 104 { 105 dprintf(("ntfs_ntvattrrele: ino: %llu, type: 0x%x\n", 106 (unsigned long long)vap->va_ip->i_number, vap->va_type)); 107 108 ntfs_ntrele(vap->va_ip); 109 110 return (0); 111 } 112 113 /* 114 * find the attribute in the ntnode 115 */ 116 static int 117 ntfs_findvattr(ntmp, ip, lvapp, vapp, type, name, namelen, vcn) 118 struct ntfsmount *ntmp; 119 struct ntnode *ip; 120 struct ntvattr **lvapp, **vapp; 121 u_int32_t type; 122 const char *name; 123 size_t namelen; 124 cn_t vcn; 125 { 126 int error; 127 struct ntvattr *vap; 128 129 if((ip->i_flag & IN_LOADED) == 0) { 130 dprintf(("ntfs_findvattr: node not loaded, ino: %llu\n", 131 (unsigned long long)ip->i_number)); 132 error = ntfs_loadntnode(ntmp,ip); 133 if (error) { 134 printf("ntfs_findvattr: FAILED TO LOAD INO: %llu\n", 135 (unsigned long long)ip->i_number); 136 return (error); 137 } 138 } 139 140 *lvapp = NULL; 141 *vapp = NULL; 142 for (vap = ip->i_valist.lh_first; vap; vap = vap->va_list.le_next) { 143 ddprintf(("ntfs_findvattr: type: 0x%x, vcn: %qu - %qu\n", 144 vap->va_type, (long long) vap->va_vcnstart, 145 (long long) vap->va_vcnend)); 146 if ((vap->va_type == type) && 147 (vap->va_vcnstart <= vcn) && (vap->va_vcnend >= vcn) && 148 (vap->va_namelen == namelen) && 149 (strncmp(name, vap->va_name, namelen) == 0)) { 150 *vapp = vap; 151 ntfs_ntref(vap->va_ip); 152 return (0); 153 } 154 if (vap->va_type == NTFS_A_ATTRLIST) 155 *lvapp = vap; 156 } 157 158 return (-1); 159 } 160 161 /* 162 * Search attribute specified in ntnode (load ntnode if necessary). 163 * If not found but ATTR_A_ATTRLIST present, read it in and search through. 164 * VOP_VGET node needed, and lookup through its ntnode (load if nessesary). 165 * 166 * ntnode should be locked 167 */ 168 int 169 ntfs_ntvattrget( 170 struct ntfsmount * ntmp, 171 struct ntnode * ip, 172 u_int32_t type, 173 const char *name, 174 cn_t vcn, 175 struct ntvattr ** vapp) 176 { 177 struct ntvattr *lvap = NULL; 178 struct attr_attrlist *aalp; 179 struct attr_attrlist *nextaalp; 180 struct vnode *newvp; 181 struct ntnode *newip; 182 void * alpool; 183 size_t namelen, len; 184 int error; 185 186 *vapp = NULL; 187 188 if (name) { 189 dprintf(("ntfs_ntvattrget: " 190 "ino: %llu, type: 0x%x, name: %s, vcn: %qu\n", 191 (unsigned long long)ip->i_number, type, name, 192 (long long)vcn)); 193 namelen = strlen(name); 194 } else { 195 dprintf(("ntfs_ntvattrget: " 196 "ino: %llu, type: 0x%x, vcn: %qu\n", 197 (unsigned long long)ip->i_number, type, (long long)vcn)); 198 name = ""; 199 namelen = 0; 200 } 201 202 error = ntfs_findvattr(ntmp, ip, &lvap, vapp, type, name, namelen, vcn); 203 if (error >= 0) 204 return (error); 205 206 if (!lvap) { 207 dprintf(("ntfs_ntvattrget: UNEXISTED ATTRIBUTE: " 208 "ino: %llu, type: 0x%x, name: %s, vcn: %qu\n", 209 (unsigned long long)ip->i_number, type, name, 210 (long long)vcn)); 211 return (ENOENT); 212 } 213 /* Scan $ATTRIBUTE_LIST for requested attribute */ 214 len = lvap->va_datalen; 215 alpool = (void *) malloc(len, M_TEMP, M_WAITOK); 216 error = ntfs_readntvattr_plain(ntmp, ip, lvap, 0, len, alpool, &len, 217 NULL); 218 if (error) 219 goto out; 220 221 aalp = (struct attr_attrlist *) alpool; 222 nextaalp = NULL; 223 224 for(; len > 0; aalp = nextaalp) { 225 KASSERT(aalp != NULL); 226 dprintf(("ntfs_ntvattrget: " 227 "attrlist: ino: %d, attr: 0x%x, vcn: %qu\n", 228 aalp->al_inumber, aalp->al_type, 229 (long long) aalp->al_vcnstart)); 230 231 if (len > aalp->reclen) { 232 nextaalp = NTFS_NEXTREC(aalp, struct attr_attrlist *); 233 } else { 234 nextaalp = NULL; 235 } 236 len -= aalp->reclen; 237 238 if (!NTFS_AALPCMP(aalp, type, name, namelen) || 239 (nextaalp && (nextaalp->al_vcnstart <= vcn) && 240 NTFS_AALPCMP(nextaalp, type, name, namelen))) 241 continue; 242 243 dprintf(("ntfs_ntvattrget: attribute in ino: %d\n", 244 aalp->al_inumber)); 245 246 /* this is not a main record, so we can't use just plain 247 vget() */ 248 error = ntfs_vgetex(ntmp->ntm_mountp, aalp->al_inumber, 249 NTFS_A_DATA, NULL, LK_EXCLUSIVE, 250 VG_EXT, &newvp); 251 if (error) { 252 printf("ntfs_ntvattrget: CAN'T VGET INO: %d\n", 253 aalp->al_inumber); 254 goto out; 255 } 256 newip = VTONT(newvp); 257 /* XXX have to lock ntnode */ 258 error = ntfs_findvattr(ntmp, newip, &lvap, vapp, 259 type, name, namelen, vcn); 260 vput(newvp); 261 if (error == 0) 262 goto out; 263 printf("ntfs_ntvattrget: ATTRLIST ERROR.\n"); 264 break; 265 } 266 error = ENOENT; 267 268 dprintf(("ntfs_ntvattrget: UNEXISTED ATTRIBUTE: " 269 "ino: %llu, type: 0x%x, name: %.*s, vcn: %qu\n", 270 (unsigned long long)ip->i_number, type, (int)namelen, 271 name, (long long)vcn)); 272 out: 273 free(alpool, M_TEMP); 274 return (error); 275 } 276 277 /* 278 * Read ntnode from disk, make ntvattr list. 279 * 280 * ntnode should be locked 281 */ 282 int 283 ntfs_loadntnode( 284 struct ntfsmount * ntmp, 285 struct ntnode * ip) 286 { 287 struct filerec *mfrp; 288 daddr_t bn; 289 int error,off; 290 struct attr *ap; 291 struct ntvattr *nvap; 292 293 dprintf(("ntfs_loadntnode: loading ino: %llu\n", 294 (unsigned long long)ip->i_number)); 295 296 mfrp = (struct filerec *) malloc(ntfs_bntob(ntmp->ntm_bpmftrec), 297 M_TEMP, M_WAITOK); 298 299 if (ip->i_number < NTFS_SYSNODESNUM) { 300 struct buf *bp; 301 302 dprintf(("ntfs_loadntnode: read system node\n")); 303 304 bn = ntfs_cntobn(ntmp->ntm_mftcn) + 305 ntmp->ntm_bpmftrec * ip->i_number; 306 307 error = bread(ntmp->ntm_devvp, 308 bn, ntfs_bntob(ntmp->ntm_bpmftrec), 309 NOCRED, 0, &bp); 310 if (error) { 311 printf("ntfs_loadntnode: BREAD FAILED\n"); 312 brelse(bp, 0); 313 goto out; 314 } 315 memcpy(mfrp, bp->b_data, ntfs_bntob(ntmp->ntm_bpmftrec)); 316 bqrelse(bp); 317 } else { 318 struct vnode *vp; 319 320 vp = ntmp->ntm_sysvn[NTFS_MFTINO]; 321 error = ntfs_readattr(ntmp, VTONT(vp), NTFS_A_DATA, NULL, 322 ip->i_number * ntfs_bntob(ntmp->ntm_bpmftrec), 323 ntfs_bntob(ntmp->ntm_bpmftrec), mfrp, NULL); 324 if (error) { 325 printf("ntfs_loadntnode: ntfs_readattr failed\n"); 326 goto out; 327 } 328 } 329 330 /* Check if magic and fixups are correct */ 331 error = ntfs_procfixups(ntmp, NTFS_FILEMAGIC, (void *)mfrp, 332 ntfs_bntob(ntmp->ntm_bpmftrec)); 333 if (error) { 334 printf("ntfs_loadntnode: BAD MFT RECORD %d\n", 335 (u_int32_t) ip->i_number); 336 goto out; 337 } 338 339 dprintf(("ntfs_loadntnode: load attrs for ino: %llu\n", 340 (unsigned long long)ip->i_number)); 341 off = mfrp->fr_attroff; 342 ap = (struct attr *) ((char *)mfrp + off); 343 344 LIST_INIT(&ip->i_valist); 345 346 while (ap->a_hdr.a_type != -1) { 347 error = ntfs_attrtontvattr(ntmp, &nvap, ap); 348 if (error) 349 break; 350 nvap->va_ip = ip; 351 352 LIST_INSERT_HEAD(&ip->i_valist, nvap, va_list); 353 354 off += ap->a_hdr.reclen; 355 ap = (struct attr *) ((char *)mfrp + off); 356 } 357 if (error) { 358 printf("ntfs_loadntnode: failed to load attr ino: %llu\n", 359 (unsigned long long)ip->i_number); 360 goto out; 361 } 362 363 ip->i_mainrec = mfrp->fr_mainrec; 364 ip->i_nlink = mfrp->fr_nlink; 365 ip->i_frflag = mfrp->fr_flags; 366 367 ip->i_flag |= IN_LOADED; 368 369 out: 370 free(mfrp, M_TEMP); 371 return (error); 372 } 373 374 /* 375 * Routine locks ntnode and increase usecount, just opposite of 376 * ntfs_ntput(). 377 */ 378 int 379 ntfs_ntget(ip) 380 struct ntnode *ip; 381 { 382 dprintf(("ntfs_ntget: get ntnode %llu: %p, usecount: %d\n", 383 (unsigned long long)ip->i_number, ip, ip->i_usecount)); 384 385 mutex_enter(&ip->i_interlock); 386 ip->i_usecount++; 387 while (ip->i_busy != 0) { 388 cv_wait(&ip->i_lock, &ip->i_interlock); 389 } 390 ip->i_busy = 1; 391 mutex_exit(&ip->i_interlock); 392 393 return 0; 394 } 395 396 /* 397 * Routine search ntnode in hash, if found: lock, inc usecount and return. 398 * If not in hash allocate structure for ntnode, prefill it, lock, 399 * inc count and return. 400 * 401 * ntnode returned locked 402 */ 403 int 404 ntfs_ntlookup( 405 struct ntfsmount * ntmp, 406 ino_t ino, 407 struct ntnode ** ipp) 408 { 409 struct ntnode *ip; 410 411 dprintf(("ntfs_ntlookup: looking for ntnode %llu\n", 412 (unsigned long long)ino)); 413 414 if ((*ipp = ntfs_nthashlookup(ntmp->ntm_dev, ino)) != NULL) { 415 ntfs_ntget(*ipp); 416 dprintf(("ntfs_ntlookup: ntnode %llu: %p," 417 " usecount: %d\n", 418 (unsigned long long)ino, *ipp, (*ipp)->i_usecount)); 419 return (0); 420 } 421 422 ip = malloc(sizeof(struct ntnode), M_NTFSNTNODE, M_WAITOK|M_ZERO); 423 ddprintf(("ntfs_ntlookup: allocating ntnode: %llu: %p\n", 424 (unsigned long long)ino, ip)); 425 426 mutex_enter(&ntfs_hashlock); 427 if ((*ipp = ntfs_nthashlookup(ntmp->ntm_dev, ino)) != NULL) { 428 mutex_exit(&ntfs_hashlock); 429 ntfs_ntget(*ipp); 430 free(ip, M_NTFSNTNODE); 431 dprintf(("ntfs_ntlookup: ntnode %llu: %p," 432 " usecount: %d\n", 433 (unsigned long long)ino, *ipp, (*ipp)->i_usecount)); 434 return (0); 435 } 436 437 /* Generic initialization */ 438 ip->i_devvp = ntmp->ntm_devvp; 439 ip->i_dev = ntmp->ntm_dev; 440 ip->i_number = ino; 441 ip->i_mp = ntmp; 442 443 LIST_INIT(&ip->i_fnlist); 444 445 /* init lock and lock the newborn ntnode */ 446 cv_init(&ip->i_lock, "ntfslk"); 447 mutex_init(&ip->i_interlock, MUTEX_DEFAULT, IPL_NONE); 448 ntfs_ntget(ip); 449 450 ntfs_nthashins(ip); 451 452 mutex_exit(&ntfs_hashlock); 453 454 *ipp = ip; 455 456 dprintf(("ntfs_ntlookup: ntnode %llu: %p, usecount: %d\n", 457 (unsigned long long)ino, ip, ip->i_usecount)); 458 459 return (0); 460 } 461 462 /* 463 * Decrement usecount of ntnode and unlock it, if usecount reach zero, 464 * deallocate ntnode. 465 * 466 * ntnode should be locked on entry, and unlocked on return. 467 */ 468 void 469 ntfs_ntput(ip) 470 struct ntnode *ip; 471 { 472 struct ntvattr *vap; 473 474 dprintf(("ntfs_ntput: rele ntnode %llu: %p, usecount: %d\n", 475 (unsigned long long)ip->i_number, ip, ip->i_usecount)); 476 477 mutex_enter(&ip->i_interlock); 478 ip->i_usecount--; 479 480 #ifdef DIAGNOSTIC 481 if (ip->i_usecount < 0) { 482 panic("ntfs_ntput: ino: %llu usecount: %d ", 483 (unsigned long long)ip->i_number, ip->i_usecount); 484 } 485 #endif 486 487 ip->i_busy = 0; 488 cv_signal(&ip->i_lock); 489 mutex_exit(&ip->i_interlock); 490 491 if (ip->i_usecount == 0) { 492 dprintf(("ntfs_ntput: deallocating ntnode: %llu\n", 493 (unsigned long long)ip->i_number)); 494 495 if (ip->i_fnlist.lh_first) 496 panic("ntfs_ntput: ntnode has fnodes"); 497 498 ntfs_nthashrem(ip); 499 500 while (ip->i_valist.lh_first != NULL) { 501 vap = ip->i_valist.lh_first; 502 LIST_REMOVE(vap,va_list); 503 ntfs_freentvattr(vap); 504 } 505 mutex_destroy(&ip->i_interlock); 506 cv_destroy(&ip->i_lock); 507 free(ip, M_NTFSNTNODE); 508 } 509 } 510 511 /* 512 * increment usecount of ntnode 513 */ 514 void 515 ntfs_ntref(ip) 516 struct ntnode *ip; 517 { 518 mutex_enter(&ip->i_interlock); 519 ip->i_usecount++; 520 mutex_exit(&ip->i_interlock); 521 522 dprintf(("ntfs_ntref: ino %llu, usecount: %d\n", 523 (unsigned long long)ip->i_number, ip->i_usecount)); 524 525 } 526 527 /* 528 * Decrement usecount of ntnode. 529 */ 530 void 531 ntfs_ntrele(ip) 532 struct ntnode *ip; 533 { 534 dprintf(("ntfs_ntrele: rele ntnode %llu: %p, usecount: %d\n", 535 (unsigned long long)ip->i_number, ip, ip->i_usecount)); 536 537 mutex_enter(&ip->i_interlock); 538 ip->i_usecount--; 539 540 if (ip->i_usecount < 0) 541 panic("ntfs_ntrele: ino: %llu usecount: %d ", 542 (unsigned long long)ip->i_number, ip->i_usecount); 543 mutex_exit(&ip->i_interlock); 544 } 545 546 /* 547 * Deallocate all memory allocated for ntvattr 548 */ 549 void 550 ntfs_freentvattr(vap) 551 struct ntvattr * vap; 552 { 553 if (vap->va_flag & NTFS_AF_INRUN) { 554 if (vap->va_vruncn) 555 free(vap->va_vruncn, M_NTFSRUN); 556 if (vap->va_vruncl) 557 free(vap->va_vruncl, M_NTFSRUN); 558 } else { 559 if (vap->va_datap) 560 free(vap->va_datap, M_NTFSRDATA); 561 } 562 free(vap, M_NTFSNTVATTR); 563 } 564 565 /* 566 * Convert disk image of attribute into ntvattr structure, 567 * runs are expanded also. 568 */ 569 int 570 ntfs_attrtontvattr( 571 struct ntfsmount * ntmp, 572 struct ntvattr ** rvapp, 573 struct attr * rap) 574 { 575 int error, i; 576 struct ntvattr *vap; 577 578 error = 0; 579 *rvapp = NULL; 580 581 vap = malloc(sizeof(struct ntvattr), M_NTFSNTVATTR, M_WAITOK|M_ZERO); 582 vap->va_ip = NULL; 583 vap->va_flag = rap->a_hdr.a_flag; 584 vap->va_type = rap->a_hdr.a_type; 585 vap->va_compression = rap->a_hdr.a_compression; 586 vap->va_index = rap->a_hdr.a_index; 587 588 ddprintf(("type: 0x%x, index: %d", vap->va_type, vap->va_index)); 589 590 vap->va_namelen = rap->a_hdr.a_namelen; 591 if (rap->a_hdr.a_namelen) { 592 wchar *unp = (wchar *)((char *)rap + rap->a_hdr.a_nameoff); 593 ddprintf((", name:[")); 594 for (i = 0; i < vap->va_namelen; i++) { 595 vap->va_name[i] = unp[i]; 596 ddprintf(("%c", vap->va_name[i])); 597 } 598 ddprintf(("]")); 599 } 600 if (vap->va_flag & NTFS_AF_INRUN) { 601 ddprintf((", nonres.")); 602 vap->va_datalen = rap->a_nr.a_datalen; 603 vap->va_allocated = rap->a_nr.a_allocated; 604 vap->va_vcnstart = rap->a_nr.a_vcnstart; 605 vap->va_vcnend = rap->a_nr.a_vcnend; 606 vap->va_compressalg = rap->a_nr.a_compressalg; 607 error = ntfs_runtovrun(&(vap->va_vruncn), &(vap->va_vruncl), 608 &(vap->va_vruncnt), 609 (u_int8_t *) rap + rap->a_nr.a_dataoff); 610 } else { 611 vap->va_compressalg = 0; 612 ddprintf((", res.")); 613 vap->va_datalen = rap->a_r.a_datalen; 614 vap->va_allocated = rap->a_r.a_datalen; 615 vap->va_vcnstart = 0; 616 vap->va_vcnend = ntfs_btocn(vap->va_allocated); 617 vap->va_datap = (void *) malloc(vap->va_datalen, 618 M_NTFSRDATA, M_WAITOK); 619 memcpy(vap->va_datap, (char *)rap + rap->a_r.a_dataoff, 620 rap->a_r.a_datalen); 621 } 622 ddprintf((", len: %qu", (long long)vap->va_datalen)); 623 624 if (error) 625 free(vap, M_NTFSNTVATTR); 626 else 627 *rvapp = vap; 628 629 ddprintf(("\n")); 630 631 return (error); 632 } 633 634 /* 635 * Expand run into more utilizable and more memory eating format. 636 */ 637 int 638 ntfs_runtovrun( 639 cn_t ** rcnp, 640 cn_t ** rclp, 641 u_long * rcntp, 642 u_int8_t * run) 643 { 644 u_int32_t off; 645 u_int32_t sz, i; 646 cn_t *cn; 647 cn_t *cl; 648 u_long cnt; 649 cn_t prev; 650 cn_t tmp; 651 652 off = 0; 653 cnt = 0; 654 i = 0; 655 while (run[off]) { 656 off += (run[off] & 0xF) + ((run[off] >> 4) & 0xF) + 1; 657 cnt++; 658 } 659 cn = (cn_t *) malloc(cnt * sizeof(cn_t), M_NTFSRUN, M_WAITOK); 660 cl = (cn_t *) malloc(cnt * sizeof(cn_t), M_NTFSRUN, M_WAITOK); 661 662 off = 0; 663 cnt = 0; 664 prev = 0; 665 while (run[off]) { 666 667 sz = run[off++]; 668 cl[cnt] = 0; 669 670 for (i = 0; i < (sz & 0xF); i++) 671 cl[cnt] += (u_int32_t) run[off++] << (i << 3); 672 673 sz >>= 4; 674 if (run[off + sz - 1] & 0x80) { 675 tmp = ((u_int64_t) - 1) << (sz << 3); 676 for (i = 0; i < sz; i++) 677 tmp |= (u_int64_t) run[off++] << (i << 3); 678 } else { 679 tmp = 0; 680 for (i = 0; i < sz; i++) 681 tmp |= (u_int64_t) run[off++] << (i << 3); 682 } 683 if (tmp) 684 prev = cn[cnt] = prev + tmp; 685 else 686 cn[cnt] = tmp; 687 688 cnt++; 689 } 690 *rcnp = cn; 691 *rclp = cl; 692 *rcntp = cnt; 693 return (0); 694 } 695 696 /* 697 * Compare unicode and ascii string case insens. 698 */ 699 static int 700 ntfs_uastricmp(ntmp, ustr, ustrlen, astr, astrlen) 701 struct ntfsmount *ntmp; 702 const wchar *ustr; 703 size_t ustrlen; 704 const char *astr; 705 size_t astrlen; 706 { 707 size_t i; 708 int res; 709 710 for (i = 0; i < ustrlen && astrlen > 0; i++) { 711 res = (*ntmp->ntm_wcmp)(NTFS_TOUPPER(ustr[i]), 712 NTFS_TOUPPER((*ntmp->ntm_wget)(&astr, &astrlen)) ); 713 if (res) 714 return res; 715 } 716 717 if (i == ustrlen && astrlen == 0) 718 return 0; 719 else if (i == ustrlen) 720 return -1; 721 else 722 return 1; 723 } 724 725 /* 726 * Compare unicode and ascii string case sens. 727 */ 728 static int 729 ntfs_uastrcmp(ntmp, ustr, ustrlen, astr, astrlen) 730 struct ntfsmount *ntmp; 731 const wchar *ustr; 732 size_t ustrlen; 733 const char *astr; 734 size_t astrlen; 735 { 736 size_t i; 737 int res; 738 739 for (i = 0; (i < ustrlen) && astrlen > 0; i++) { 740 res = (*ntmp->ntm_wcmp)(ustr[i], 741 (*ntmp->ntm_wget)(&astr, &astrlen)); 742 if (res) 743 return res; 744 } 745 746 if (i == ustrlen && astrlen == 0) 747 return 0; 748 else if (i == ustrlen) 749 return -1; 750 else 751 return 1; 752 } 753 754 /* 755 * Search fnode in ntnode, if not found allocate and preinitialize. 756 * 757 * ntnode should be locked on entry. 758 */ 759 int 760 ntfs_fget( 761 struct ntfsmount *ntmp, 762 struct ntnode *ip, 763 int attrtype, 764 char *attrname, 765 struct fnode **fpp 766 ) 767 { 768 struct fnode *fp; 769 770 dprintf(("ntfs_fget: ino: %llu, attrtype: 0x%x, attrname: %s\n", 771 (unsigned long long)ip->i_number, attrtype, attrname?attrname:"")); 772 *fpp = NULL; 773 for (fp = ip->i_fnlist.lh_first; fp != NULL; fp = fp->f_fnlist.le_next){ 774 dprintf(("ntfs_fget: fnode: attrtype: %d, attrname: %s\n", 775 fp->f_attrtype, fp->f_attrname?fp->f_attrname:"")); 776 777 if ((attrtype == fp->f_attrtype) && 778 ((!attrname && !fp->f_attrname) || 779 (attrname && fp->f_attrname && 780 !strcmp(attrname,fp->f_attrname)))){ 781 dprintf(("ntfs_fget: found existed: %p\n",fp)); 782 *fpp = fp; 783 } 784 } 785 786 if (*fpp) 787 return (0); 788 789 fp = malloc(sizeof(struct fnode), M_NTFSFNODE, M_WAITOK|M_ZERO); 790 dprintf(("ntfs_fget: allocating fnode: %p\n",fp)); 791 792 fp->f_ip = ip; 793 fp->f_attrname = attrname; 794 if (fp->f_attrname) fp->f_flag |= FN_AATTRNAME; 795 fp->f_attrtype = attrtype; 796 797 ntfs_ntref(ip); 798 799 LIST_INSERT_HEAD(&ip->i_fnlist, fp, f_fnlist); 800 801 *fpp = fp; 802 803 return (0); 804 } 805 806 /* 807 * Deallocate fnode, remove it from ntnode's fnode list. 808 * 809 * ntnode should be locked. 810 */ 811 void 812 ntfs_frele( 813 struct fnode *fp) 814 { 815 struct ntnode *ip = FTONT(fp); 816 817 dprintf(("ntfs_frele: fnode: %p for %llu: %p\n", fp, 818 (unsigned long long)ip->i_number, ip)); 819 820 dprintf(("ntfs_frele: deallocating fnode\n")); 821 LIST_REMOVE(fp,f_fnlist); 822 if (fp->f_flag & FN_AATTRNAME) 823 free(fp->f_attrname, M_TEMP); 824 if (fp->f_dirblbuf) 825 free(fp->f_dirblbuf, M_NTFSDIR); 826 free(fp, M_NTFSFNODE); 827 ntfs_ntrele(ip); 828 } 829 830 /* 831 * Lookup attribute name in format: [[:$ATTR_TYPE]:$ATTR_NAME], 832 * $ATTR_TYPE is searched in attrdefs read from $AttrDefs. 833 * If $ATTR_TYPE not specified, ATTR_A_DATA assumed. 834 */ 835 static int 836 ntfs_ntlookupattr( 837 struct ntfsmount * ntmp, 838 const char * name, 839 int namelen, 840 int *attrtype, 841 char **attrname) 842 { 843 const char *sys; 844 size_t syslen, i; 845 struct ntvattrdef *adp; 846 847 if (namelen == 0) 848 return (0); 849 850 if (name[0] == '$') { 851 sys = name; 852 for (syslen = 0; syslen < namelen; syslen++) { 853 if(sys[syslen] == ':') { 854 name++; 855 namelen--; 856 break; 857 } 858 } 859 name += syslen; 860 namelen -= syslen; 861 862 adp = ntmp->ntm_ad; 863 for (i = 0; i < ntmp->ntm_adnum; i++, adp++){ 864 if (syslen != adp->ad_namelen || 865 strncmp(sys, adp->ad_name, syslen) != 0) 866 continue; 867 868 *attrtype = adp->ad_type; 869 goto out; 870 } 871 return (ENOENT); 872 } 873 874 out: 875 if (namelen) { 876 *attrname = (char *) malloc(namelen, M_TEMP, M_WAITOK); 877 memcpy((*attrname), name, namelen); 878 (*attrname)[namelen] = '\0'; 879 *attrtype = NTFS_A_DATA; 880 } 881 882 return (0); 883 } 884 885 /* 886 * Lookup specified node for filename, matching cnp, 887 * return fnode filled. 888 */ 889 int 890 ntfs_ntlookupfile( 891 struct ntfsmount * ntmp, 892 struct vnode * vp, 893 struct componentname * cnp, 894 struct vnode ** vpp) 895 { 896 struct fnode *fp = VTOF(vp); 897 struct ntnode *ip = FTONT(fp); 898 struct ntvattr *vap; /* Root attribute */ 899 cn_t cn = 0; /* VCN in current attribute */ 900 void * rdbuf; /* Buffer to read directory's blocks */ 901 u_int32_t blsize; 902 u_int32_t rdsize; /* Length of data to read from current block */ 903 struct attr_indexentry *iep; 904 int error, res, anamelen, fnamelen; 905 const char *fname,*aname; 906 u_int32_t aoff; 907 int attrtype = NTFS_A_DATA; 908 char *attrname = NULL; 909 struct fnode *nfp; 910 struct vnode *nvp; 911 enum vtype f_type; 912 int fullscan = 0; 913 struct ntfs_lookup_ctx *lookup_ctx = NULL, *tctx; 914 915 error = ntfs_ntget(ip); 916 if (error) 917 return (error); 918 919 error = ntfs_ntvattrget(ntmp, ip, NTFS_A_INDXROOT, "$I30", 0, &vap); 920 if (error || (vap->va_flag & NTFS_AF_INRUN)) 921 return (ENOTDIR); 922 923 /* 924 * Divide file name into: foofilefoofilefoofile[:attrspec] 925 * Store like this: fname:fnamelen [aname:anamelen] 926 */ 927 fname = cnp->cn_nameptr; 928 aname = NULL; 929 anamelen = 0; 930 for (fnamelen = 0; fnamelen < cnp->cn_namelen; fnamelen++) 931 if(fname[fnamelen] == ':') { 932 aname = fname + fnamelen + 1; 933 anamelen = cnp->cn_namelen - fnamelen - 1; 934 dprintf(("ntfs_ntlookupfile: %s (%d), attr: %s (%d)\n", 935 fname, fnamelen, aname, anamelen)); 936 break; 937 } 938 939 blsize = vap->va_a_iroot->ir_size; 940 dprintf(("ntfs_ntlookupfile: blksz: %d\n", blsize)); 941 942 rdbuf = (void *) malloc(blsize, M_TEMP, M_WAITOK); 943 944 loop: 945 rdsize = vap->va_datalen; 946 dprintf(("ntfs_ntlookupfile: rdsz: %d\n", rdsize)); 947 948 error = ntfs_readattr(ntmp, ip, NTFS_A_INDXROOT, "$I30", 949 0, rdsize, rdbuf, NULL); 950 if (error) 951 goto fail; 952 953 aoff = sizeof(struct attr_indexroot); 954 955 do { 956 iep = (struct attr_indexentry *) ((char *)rdbuf + aoff); 957 958 for (; !(iep->ie_flag & NTFS_IEFLAG_LAST) && (rdsize > aoff); 959 aoff += iep->reclen, 960 iep = (struct attr_indexentry *) ((char *)rdbuf + aoff)) 961 { 962 ddprintf(("scan: %d, %d\n", 963 (u_int32_t) iep->ie_number, 964 (u_int32_t) iep->ie_fnametype)); 965 966 /* check the name - the case-insensitive check 967 * has to come first, to break from this for loop 968 * if needed, so we can dive correctly */ 969 res = ntfs_uastricmp(ntmp, iep->ie_fname, 970 iep->ie_fnamelen, fname, fnamelen); 971 if (!fullscan) { 972 if (res > 0) break; 973 if (res < 0) continue; 974 } 975 976 if (iep->ie_fnametype == 0 || 977 !(ntmp->ntm_flag & NTFS_MFLAG_CASEINS)) 978 { 979 res = ntfs_uastrcmp(ntmp, iep->ie_fname, 980 iep->ie_fnamelen, fname, fnamelen); 981 if (res != 0 && !fullscan) continue; 982 } 983 984 /* if we perform full scan, the file does not match 985 * and this is subnode, dive */ 986 if (fullscan && res != 0) { 987 if (iep->ie_flag & NTFS_IEFLAG_SUBNODE) { 988 tctx = malloc(sizeof(struct ntfs_lookup_ctx), 989 M_TEMP, M_WAITOK); 990 tctx->aoff = aoff + iep->reclen; 991 tctx->rdsize = rdsize; 992 tctx->cn = cn; 993 tctx->prev = lookup_ctx; 994 lookup_ctx = tctx; 995 break; 996 } else 997 continue; 998 } 999 1000 if (aname) { 1001 error = ntfs_ntlookupattr(ntmp, 1002 aname, anamelen, 1003 &attrtype, &attrname); 1004 if (error) 1005 goto fail; 1006 } 1007 1008 /* Check if we've found ourselves */ 1009 if ((iep->ie_number == ip->i_number) && 1010 (attrtype == fp->f_attrtype) && 1011 ((!attrname && !fp->f_attrname) || 1012 (attrname && fp->f_attrname && 1013 !strcmp(attrname, fp->f_attrname)))) 1014 { 1015 VREF(vp); 1016 *vpp = vp; 1017 error = 0; 1018 goto fail; 1019 } 1020 1021 /* free the buffer returned by ntfs_ntlookupattr() */ 1022 if (attrname) { 1023 free(attrname, M_TEMP); 1024 attrname = NULL; 1025 } 1026 1027 /* vget node, but don't load it */ 1028 error = ntfs_vgetex(ntmp->ntm_mountp, 1029 iep->ie_number, attrtype, attrname, 1030 LK_EXCLUSIVE, VG_DONTLOADIN | VG_DONTVALIDFN, 1031 &nvp); 1032 if (error) 1033 goto fail; 1034 1035 nfp = VTOF(nvp); 1036 1037 if (nfp->f_flag & FN_VALID) { 1038 *vpp = nvp; 1039 goto fail; 1040 } 1041 1042 nfp->f_fflag = iep->ie_fflag; 1043 nfp->f_pnumber = iep->ie_fpnumber; 1044 nfp->f_times = iep->ie_ftimes; 1045 1046 if((nfp->f_fflag & NTFS_FFLAG_DIR) && 1047 (nfp->f_attrtype == NTFS_A_DATA) && 1048 (nfp->f_attrname == NULL)) 1049 f_type = VDIR; 1050 else 1051 f_type = VREG; 1052 1053 nvp->v_type = f_type; 1054 1055 if ((nfp->f_attrtype == NTFS_A_DATA) && 1056 (nfp->f_attrname == NULL)) 1057 { 1058 /* Opening default attribute */ 1059 nfp->f_size = iep->ie_fsize; 1060 nfp->f_allocated = iep->ie_fallocated; 1061 nfp->f_flag |= FN_PRELOADED; 1062 } else { 1063 error = ntfs_filesize(ntmp, nfp, 1064 &nfp->f_size, &nfp->f_allocated); 1065 if (error) { 1066 vput(nvp); 1067 goto fail; 1068 } 1069 } 1070 1071 nfp->f_flag &= ~FN_VALID; 1072 *vpp = nvp; 1073 goto fail; 1074 } 1075 1076 /* Dive if possible */ 1077 if (iep->ie_flag & NTFS_IEFLAG_SUBNODE) { 1078 dprintf(("ntfs_ntlookupfile: diving\n")); 1079 1080 cn = *(cn_t *) ((char *)rdbuf + aoff + 1081 iep->reclen - sizeof(cn_t)); 1082 rdsize = blsize; 1083 1084 error = ntfs_readattr(ntmp, ip, NTFS_A_INDX, "$I30", 1085 ntfs_cntob(cn), rdsize, rdbuf, NULL); 1086 if (error) 1087 goto fail; 1088 1089 error = ntfs_procfixups(ntmp, NTFS_INDXMAGIC, 1090 rdbuf, rdsize); 1091 if (error) 1092 goto fail; 1093 1094 aoff = (((struct attr_indexalloc *) rdbuf)->ia_hdrsize + 1095 0x18); 1096 } else if (fullscan && lookup_ctx) { 1097 cn = lookup_ctx->cn; 1098 aoff = lookup_ctx->aoff; 1099 rdsize = lookup_ctx->rdsize; 1100 1101 error = ntfs_readattr(ntmp, ip, 1102 (cn == 0) ? NTFS_A_INDXROOT : NTFS_A_INDX, 1103 "$I30", ntfs_cntob(cn), rdsize, rdbuf, NULL); 1104 if (error) 1105 goto fail; 1106 1107 if (cn != 0) { 1108 error = ntfs_procfixups(ntmp, NTFS_INDXMAGIC, 1109 rdbuf, rdsize); 1110 if (error) 1111 goto fail; 1112 } 1113 1114 tctx = lookup_ctx; 1115 lookup_ctx = lookup_ctx->prev; 1116 free(tctx, M_TEMP); 1117 } else { 1118 dprintf(("ntfs_ntlookupfile: nowhere to dive :-(\n")); 1119 error = ENOENT; 1120 break; 1121 } 1122 } while (1); 1123 1124 /* perform full scan if no entry was found */ 1125 if (!fullscan && error == ENOENT) { 1126 fullscan = 1; 1127 cn = 0; /* need zero, used by lookup_ctx */ 1128 1129 ddprintf(("ntfs_ntlookupfile: fullscan performed for: %.*s\n", 1130 (int) fnamelen, fname)); 1131 goto loop; 1132 } 1133 1134 dprintf(("finish\n")); 1135 1136 fail: 1137 if (attrname) 1138 free(attrname, M_TEMP); 1139 if (lookup_ctx) { 1140 while(lookup_ctx) { 1141 tctx = lookup_ctx; 1142 lookup_ctx = lookup_ctx->prev; 1143 free(tctx, M_TEMP); 1144 } 1145 } 1146 ntfs_ntvattrrele(vap); 1147 ntfs_ntput(ip); 1148 free(rdbuf, M_TEMP); 1149 return (error); 1150 } 1151 1152 /* 1153 * Check if name type is permitted to show. 1154 */ 1155 int 1156 ntfs_isnamepermitted( 1157 struct ntfsmount * ntmp, 1158 struct attr_indexentry * iep) 1159 { 1160 if (ntmp->ntm_flag & NTFS_MFLAG_ALLNAMES) 1161 return 1; 1162 1163 switch (iep->ie_fnametype) { 1164 case 2: 1165 ddprintf(("ntfs_isnamepermitted: skipped DOS name\n")); 1166 return 0; 1167 case 0: case 1: case 3: 1168 return 1; 1169 default: 1170 printf("ntfs_isnamepermitted: " 1171 "WARNING! Unknown file name type: %d\n", 1172 iep->ie_fnametype); 1173 break; 1174 } 1175 return 0; 1176 } 1177 1178 /* 1179 * Read ntfs dir like stream of attr_indexentry, not like btree of them. 1180 * This is done by scanning $BITMAP:$I30 for busy clusters and reading them. 1181 * Of course $INDEX_ROOT:$I30 is read before. Last read values are stored in 1182 * fnode, so we can skip toward record number num almost immediately. 1183 * Anyway this is rather slow routine. The problem is that we don't know 1184 * how many records are there in $INDEX_ALLOCATION:$I30 block. 1185 */ 1186 int 1187 ntfs_ntreaddir( 1188 struct ntfsmount * ntmp, 1189 struct fnode * fp, 1190 u_int32_t num, 1191 struct attr_indexentry ** riepp) 1192 { 1193 struct ntnode *ip = FTONT(fp); 1194 struct ntvattr *vap = NULL; /* IndexRoot attribute */ 1195 struct ntvattr *bmvap = NULL; /* BitMap attribute */ 1196 struct ntvattr *iavap = NULL; /* IndexAllocation attribute */ 1197 void * rdbuf; /* Buffer to read directory's blocks */ 1198 u_char *bmp = NULL; /* Bitmap */ 1199 u_int32_t blsize; /* Index allocation size (2048) */ 1200 u_int32_t rdsize; /* Length of data to read */ 1201 u_int32_t attrnum; /* Current attribute type */ 1202 u_int32_t cpbl = 1; /* Clusters per directory block */ 1203 u_int32_t blnum; 1204 struct attr_indexentry *iep; 1205 int error = ENOENT; 1206 u_int32_t aoff, cnum; 1207 1208 dprintf(("ntfs_ntreaddir: read ino: %llu, num: %d\n", 1209 (unsigned long long)ip->i_number, num)); 1210 error = ntfs_ntget(ip); 1211 if (error) 1212 return (error); 1213 1214 error = ntfs_ntvattrget(ntmp, ip, NTFS_A_INDXROOT, "$I30", 0, &vap); 1215 if (error) 1216 return (ENOTDIR); 1217 1218 if (fp->f_dirblbuf == NULL) { 1219 fp->f_dirblsz = vap->va_a_iroot->ir_size; 1220 fp->f_dirblbuf = (void *) malloc( 1221 MAX(vap->va_datalen,fp->f_dirblsz), M_NTFSDIR, M_WAITOK); 1222 } 1223 1224 blsize = fp->f_dirblsz; 1225 rdbuf = fp->f_dirblbuf; 1226 1227 dprintf(("ntfs_ntreaddir: rdbuf: %p, blsize: %d\n", rdbuf, blsize)); 1228 1229 if (vap->va_a_iroot->ir_flag & NTFS_IRFLAG_INDXALLOC) { 1230 error = ntfs_ntvattrget(ntmp, ip, NTFS_A_INDXBITMAP, "$I30", 1231 0, &bmvap); 1232 if (error) { 1233 error = ENOTDIR; 1234 goto fail; 1235 } 1236 bmp = (u_char *) malloc(bmvap->va_datalen, M_TEMP, M_WAITOK); 1237 error = ntfs_readattr(ntmp, ip, NTFS_A_INDXBITMAP, "$I30", 0, 1238 bmvap->va_datalen, bmp, NULL); 1239 if (error) 1240 goto fail; 1241 1242 error = ntfs_ntvattrget(ntmp, ip, NTFS_A_INDX, "$I30", 1243 0, &iavap); 1244 if (error) { 1245 error = ENOTDIR; 1246 goto fail; 1247 } 1248 cpbl = ntfs_btocn(blsize + ntfs_cntob(1) - 1); 1249 dprintf(("ntfs_ntreaddir: indexalloc: %qu, cpbl: %d\n", 1250 (long long)iavap->va_datalen, cpbl)); 1251 } else { 1252 dprintf(("ntfs_ntreadidir: w/o BitMap and IndexAllocation\n")); 1253 iavap = bmvap = NULL; 1254 bmp = NULL; 1255 } 1256 1257 /* Try use previous values */ 1258 if ((fp->f_lastdnum < num) && (fp->f_lastdnum != 0)) { 1259 attrnum = fp->f_lastdattr; 1260 aoff = fp->f_lastdoff; 1261 blnum = fp->f_lastdblnum; 1262 cnum = fp->f_lastdnum; 1263 } else { 1264 attrnum = NTFS_A_INDXROOT; 1265 aoff = sizeof(struct attr_indexroot); 1266 blnum = 0; 1267 cnum = 0; 1268 } 1269 1270 do { 1271 dprintf(("ntfs_ntreaddir: scan: 0x%x, %d, %d, %d, %d\n", 1272 attrnum, (u_int32_t) blnum, cnum, num, aoff)); 1273 rdsize = (attrnum == NTFS_A_INDXROOT) ? vap->va_datalen : blsize; 1274 error = ntfs_readattr(ntmp, ip, attrnum, "$I30", 1275 ntfs_cntob(blnum * cpbl), rdsize, rdbuf, NULL); 1276 if (error) 1277 goto fail; 1278 1279 if (attrnum == NTFS_A_INDX) { 1280 error = ntfs_procfixups(ntmp, NTFS_INDXMAGIC, 1281 rdbuf, rdsize); 1282 if (error) 1283 goto fail; 1284 } 1285 if (aoff == 0) 1286 aoff = (attrnum == NTFS_A_INDX) ? 1287 (0x18 + ((struct attr_indexalloc *) rdbuf)->ia_hdrsize) : 1288 sizeof(struct attr_indexroot); 1289 1290 iep = (struct attr_indexentry *) ((char *)rdbuf + aoff); 1291 for (; !(iep->ie_flag & NTFS_IEFLAG_LAST) && (rdsize > aoff); 1292 aoff += iep->reclen, 1293 iep = (struct attr_indexentry *) ((char *)rdbuf + aoff)) 1294 { 1295 if (!ntfs_isnamepermitted(ntmp, iep)) continue; 1296 1297 if (cnum >= num) { 1298 fp->f_lastdnum = cnum; 1299 fp->f_lastdoff = aoff; 1300 fp->f_lastdblnum = blnum; 1301 fp->f_lastdattr = attrnum; 1302 1303 *riepp = iep; 1304 1305 error = 0; 1306 goto fail; 1307 } 1308 cnum++; 1309 } 1310 1311 if (iavap) { 1312 if (attrnum == NTFS_A_INDXROOT) 1313 blnum = 0; 1314 else 1315 blnum++; 1316 1317 while (ntfs_cntob(blnum * cpbl) < iavap->va_datalen) { 1318 if (bmp[blnum >> 3] & (1 << (blnum & 3))) 1319 break; 1320 blnum++; 1321 } 1322 1323 attrnum = NTFS_A_INDX; 1324 aoff = 0; 1325 if (ntfs_cntob(blnum * cpbl) >= iavap->va_datalen) 1326 break; 1327 dprintf(("ntfs_ntreaddir: blnum: %d\n", (u_int32_t) blnum)); 1328 } 1329 } while (iavap); 1330 1331 *riepp = NULL; 1332 fp->f_lastdnum = 0; 1333 1334 fail: 1335 if (vap) 1336 ntfs_ntvattrrele(vap); 1337 if (bmvap) 1338 ntfs_ntvattrrele(bmvap); 1339 if (iavap) 1340 ntfs_ntvattrrele(iavap); 1341 if (bmp) 1342 free(bmp, M_TEMP); 1343 ntfs_ntput(ip); 1344 return (error); 1345 } 1346 1347 /* 1348 * Convert NTFS times that are in 100 ns units and begins from 1349 * 1601 Jan 1 into unix times. 1350 */ 1351 struct timespec 1352 ntfs_nttimetounix( 1353 u_int64_t nt) 1354 { 1355 struct timespec t; 1356 1357 /* WindowNT times are in 100 ns and from 1601 Jan 1 */ 1358 t.tv_nsec = (nt % (1000 * 1000 * 10)) * 100; 1359 t.tv_sec = nt / (1000 * 1000 * 10) - 1360 369LL * 365LL * 24LL * 60LL * 60LL - 1361 89LL * 1LL * 24LL * 60LL * 60LL; 1362 return (t); 1363 } 1364 1365 /* 1366 * Get file times from NTFS_A_NAME attribute. 1367 */ 1368 int 1369 ntfs_times( 1370 struct ntfsmount * ntmp, 1371 struct ntnode * ip, 1372 ntfs_times_t * tm) 1373 { 1374 struct ntvattr *vap; 1375 int error; 1376 1377 dprintf(("ntfs_times: ino: %llu...\n", 1378 (unsigned long long)ip->i_number)); 1379 1380 error = ntfs_ntget(ip); 1381 if (error) 1382 return (error); 1383 1384 error = ntfs_ntvattrget(ntmp, ip, NTFS_A_NAME, NULL, 0, &vap); 1385 if (error) { 1386 ntfs_ntput(ip); 1387 return (error); 1388 } 1389 *tm = vap->va_a_name->n_times; 1390 ntfs_ntvattrrele(vap); 1391 ntfs_ntput(ip); 1392 1393 return (0); 1394 } 1395 1396 /* 1397 * Get file sizes from corresponding attribute. 1398 * 1399 * ntnode under fnode should be locked. 1400 */ 1401 int 1402 ntfs_filesize( 1403 struct ntfsmount * ntmp, 1404 struct fnode * fp, 1405 u_int64_t * size, 1406 u_int64_t * bytes) 1407 { 1408 struct ntvattr *vap; 1409 struct ntnode *ip = FTONT(fp); 1410 u_int64_t sz, bn; 1411 int error; 1412 1413 dprintf(("ntfs_filesize: ino: %llu\n", 1414 (unsigned long long)ip->i_number)); 1415 1416 error = ntfs_ntvattrget(ntmp, ip, 1417 fp->f_attrtype, fp->f_attrname, 0, &vap); 1418 if (error) 1419 return (error); 1420 1421 bn = vap->va_allocated; 1422 sz = vap->va_datalen; 1423 1424 dprintf(("ntfs_filesize: %d bytes (%d bytes allocated)\n", 1425 (u_int32_t) sz, (u_int32_t) bn)); 1426 1427 if (size) 1428 *size = sz; 1429 if (bytes) 1430 *bytes = bn; 1431 1432 ntfs_ntvattrrele(vap); 1433 1434 return (0); 1435 } 1436 1437 /* 1438 * This is one of write routine. 1439 */ 1440 int 1441 ntfs_writeattr_plain( 1442 struct ntfsmount * ntmp, 1443 struct ntnode * ip, 1444 u_int32_t attrnum, 1445 char *attrname, 1446 off_t roff, 1447 size_t rsize, 1448 void *rdata, 1449 size_t * initp, 1450 struct uio *uio) 1451 { 1452 size_t init; 1453 int error = 0; 1454 off_t off = roff, left = rsize, towrite; 1455 void * data = rdata; 1456 struct ntvattr *vap; 1457 *initp = 0; 1458 1459 while (left) { 1460 error = ntfs_ntvattrget(ntmp, ip, attrnum, attrname, 1461 ntfs_btocn(off), &vap); 1462 if (error) 1463 return (error); 1464 towrite = MIN(left, ntfs_cntob(vap->va_vcnend + 1) - off); 1465 ddprintf(("ntfs_writeattr_plain: o: %qd, s: %qd (%qu - %qu)\n", 1466 (long long) off, (long long) towrite, 1467 (long long) vap->va_vcnstart, 1468 (long long) vap->va_vcnend)); 1469 error = ntfs_writentvattr_plain(ntmp, ip, vap, 1470 off - ntfs_cntob(vap->va_vcnstart), 1471 towrite, data, &init, uio); 1472 if (error) { 1473 dprintf(("ntfs_writeattr_plain: " 1474 "ntfs_writentvattr_plain failed: o: %qd, s: %qd\n", 1475 (long long) off, (long long) towrite)); 1476 dprintf(("ntfs_writeattr_plain: attrib: %qu - %qu\n", 1477 (long long) vap->va_vcnstart, 1478 (long long) vap->va_vcnend)); 1479 ntfs_ntvattrrele(vap); 1480 break; 1481 } 1482 ntfs_ntvattrrele(vap); 1483 left -= towrite; 1484 off += towrite; 1485 data = (char *)data + towrite; 1486 *initp += init; 1487 } 1488 1489 return (error); 1490 } 1491 1492 /* 1493 * This is one of write routine. 1494 * 1495 * ntnode should be locked. 1496 */ 1497 int 1498 ntfs_writentvattr_plain( 1499 struct ntfsmount * ntmp, 1500 struct ntnode * ip, 1501 struct ntvattr * vap, 1502 off_t roff, 1503 size_t rsize, 1504 void *rdata, 1505 size_t * initp, 1506 struct uio *uio) 1507 { 1508 int error = 0; 1509 off_t off; 1510 int cnt; 1511 cn_t ccn, ccl, cn, left, cl; 1512 void * data = rdata; 1513 daddr_t lbn; 1514 struct buf *bp; 1515 size_t tocopy; 1516 1517 *initp = 0; 1518 1519 if ((vap->va_flag & NTFS_AF_INRUN) == 0) { 1520 dprintf(("ntfs_writevattr_plain: CAN'T WRITE RES. ATTRIBUTE\n")); 1521 return ENOTTY; 1522 } 1523 1524 ddprintf(("ntfs_writentvattr_plain: data in run: %lu chains\n", 1525 vap->va_vruncnt)); 1526 1527 off = roff; 1528 left = rsize; 1529 ccl = 0; 1530 ccn = 0; 1531 cnt = 0; 1532 for (; left && (cnt < vap->va_vruncnt); cnt++) { 1533 ccn = vap->va_vruncn[cnt]; 1534 ccl = vap->va_vruncl[cnt]; 1535 1536 ddprintf(("ntfs_writentvattr_plain: " 1537 "left %qu, cn: 0x%qx, cl: %qu, off: %qd\n", 1538 (long long) left, (long long) ccn, 1539 (long long) ccl, (long long) off)); 1540 1541 if (ntfs_cntob(ccl) < off) { 1542 off -= ntfs_cntob(ccl); 1543 cnt++; 1544 continue; 1545 } 1546 if (!ccn && ip->i_number != NTFS_BOOTINO) 1547 continue; /* XXX */ 1548 1549 ccl -= ntfs_btocn(off); 1550 cn = ccn + ntfs_btocn(off); 1551 off = ntfs_btocnoff(off); 1552 1553 while (left && ccl) { 1554 /* 1555 * Always read and write single clusters at a time - 1556 * we need to avoid requesting differently-sized 1557 * blocks at the same disk offsets to avoid 1558 * confusing the buffer cache. 1559 */ 1560 tocopy = MIN(left, ntfs_cntob(1) - off); 1561 cl = ntfs_btocl(tocopy + off); 1562 KASSERT(cl == 1 && tocopy <= ntfs_cntob(1)); 1563 ddprintf(("ntfs_writentvattr_plain: write: " 1564 "cn: 0x%qx cl: %qu, off: %qd len: %qu, left: %qu\n", 1565 (long long) cn, (long long) cl, 1566 (long long) off, (long long) tocopy, 1567 (long long) left)); 1568 if ((off == 0) && (tocopy == ntfs_cntob(cl))) 1569 { 1570 lbn = ntfs_cntobn(cn); 1571 bp = getblk(ntmp->ntm_devvp, lbn, 1572 ntfs_cntob(cl), 0, 0); 1573 clrbuf(bp); 1574 } else { 1575 error = bread(ntmp->ntm_devvp, ntfs_cntobn(cn), 1576 ntfs_cntob(cl), NOCRED, B_MODIFY, &bp); 1577 if (error) { 1578 brelse(bp, 0); 1579 return (error); 1580 } 1581 } 1582 if (uio) 1583 uiomove((char *)bp->b_data + off, tocopy, uio); 1584 else 1585 memcpy((char *)bp->b_data + off, data, tocopy); 1586 bawrite(bp); 1587 data = (char *)data + tocopy; 1588 *initp += tocopy; 1589 off = 0; 1590 left -= tocopy; 1591 cn += cl; 1592 ccl -= cl; 1593 } 1594 } 1595 1596 if (left) { 1597 printf("ntfs_writentvattr_plain: POSSIBLE RUN ERROR\n"); 1598 error = EINVAL; 1599 } 1600 1601 return (error); 1602 } 1603 1604 /* 1605 * This is one of read routines. 1606 * 1607 * ntnode should be locked. 1608 */ 1609 int 1610 ntfs_readntvattr_plain( 1611 struct ntfsmount * ntmp, 1612 struct ntnode * ip, 1613 struct ntvattr * vap, 1614 off_t roff, 1615 size_t rsize, 1616 void *rdata, 1617 size_t * initp, 1618 struct uio *uio) 1619 { 1620 int error = 0; 1621 off_t off; 1622 1623 *initp = 0; 1624 if (vap->va_flag & NTFS_AF_INRUN) { 1625 int cnt; 1626 cn_t ccn, ccl, cn, left, cl; 1627 void * data = rdata; 1628 struct buf *bp; 1629 size_t tocopy; 1630 1631 ddprintf(("ntfs_readntvattr_plain: data in run: %lu chains\n", 1632 vap->va_vruncnt)); 1633 1634 off = roff; 1635 left = rsize; 1636 ccl = 0; 1637 ccn = 0; 1638 cnt = 0; 1639 while (left && (cnt < vap->va_vruncnt)) { 1640 ccn = vap->va_vruncn[cnt]; 1641 ccl = vap->va_vruncl[cnt]; 1642 1643 ddprintf(("ntfs_readntvattr_plain: " 1644 "left %qu, cn: 0x%qx, cl: %qu, off: %qd\n", 1645 (long long) left, (long long) ccn, 1646 (long long) ccl, (long long) off)); 1647 1648 if (ntfs_cntob(ccl) < off) { 1649 off -= ntfs_cntob(ccl); 1650 cnt++; 1651 continue; 1652 } 1653 if (ccn || ip->i_number == NTFS_BOOTINO) { 1654 ccl -= ntfs_btocn(off); 1655 cn = ccn + ntfs_btocn(off); 1656 off = ntfs_btocnoff(off); 1657 1658 while (left && ccl) { 1659 /* 1660 * Always read single clusters at a 1661 * time - we need to avoid reading 1662 * differently-sized blocks at the 1663 * same disk offsets to avoid 1664 * confusing the buffer cache. 1665 */ 1666 tocopy = MIN(left, 1667 ntfs_cntob(1) - off); 1668 cl = ntfs_btocl(tocopy + off); 1669 KASSERT(cl == 1 && 1670 tocopy <= ntfs_cntob(1)); 1671 1672 ddprintf(("ntfs_readntvattr_plain: " 1673 "read: cn: 0x%qx cl: %qu, " 1674 "off: %qd len: %qu, left: %qu\n", 1675 (long long) cn, 1676 (long long) cl, 1677 (long long) off, 1678 (long long) tocopy, 1679 (long long) left)); 1680 error = bread(ntmp->ntm_devvp, 1681 ntfs_cntobn(cn), 1682 ntfs_cntob(cl), 1683 NOCRED, 0, &bp); 1684 if (error) { 1685 brelse(bp, 0); 1686 return (error); 1687 } 1688 if (uio) { 1689 uiomove((char *)bp->b_data + off, 1690 tocopy, uio); 1691 } else { 1692 memcpy(data, (char *)bp->b_data + off, 1693 tocopy); 1694 } 1695 brelse(bp, 0); 1696 data = (char *)data + tocopy; 1697 *initp += tocopy; 1698 off = 0; 1699 left -= tocopy; 1700 cn += cl; 1701 ccl -= cl; 1702 } 1703 } else { 1704 tocopy = MIN(left, ntfs_cntob(ccl) - off); 1705 ddprintf(("ntfs_readntvattr_plain: " 1706 "hole: ccn: 0x%qx ccl: %qu, off: %qd, " 1707 " len: %qu, left: %qu\n", 1708 (long long) ccn, (long long) ccl, 1709 (long long) off, (long long) tocopy, 1710 (long long) left)); 1711 left -= tocopy; 1712 off = 0; 1713 if (uio) { 1714 char vbuf[] = ""; 1715 size_t remains = tocopy; 1716 for(; remains; remains--) 1717 uiomove(vbuf, 1, uio); 1718 } else 1719 bzero(data, tocopy); 1720 data = (char *)data + tocopy; 1721 } 1722 cnt++; 1723 } 1724 if (left) { 1725 printf("ntfs_readntvattr_plain: POSSIBLE RUN ERROR\n"); 1726 error = E2BIG; 1727 } 1728 } else { 1729 ddprintf(("ntfs_readnvattr_plain: data is in mft record\n")); 1730 if (uio) 1731 uiomove((char *)vap->va_datap + roff, rsize, uio); 1732 else 1733 memcpy(rdata, (char *)vap->va_datap + roff, rsize); 1734 *initp += rsize; 1735 } 1736 1737 return (error); 1738 } 1739 1740 /* 1741 * This is one of read routines. 1742 */ 1743 int 1744 ntfs_readattr_plain( 1745 struct ntfsmount * ntmp, 1746 struct ntnode * ip, 1747 u_int32_t attrnum, 1748 const char *attrname, 1749 off_t roff, 1750 size_t rsize, 1751 void *rdata, 1752 size_t * initp, 1753 struct uio *uio) 1754 { 1755 size_t init; 1756 int error = 0; 1757 off_t off = roff, left = rsize, toread; 1758 void * data = rdata; 1759 struct ntvattr *vap; 1760 *initp = 0; 1761 1762 while (left) { 1763 error = ntfs_ntvattrget(ntmp, ip, attrnum, attrname, 1764 ntfs_btocn(off), &vap); 1765 if (error) 1766 return (error); 1767 toread = MIN(left, ntfs_cntob(vap->va_vcnend + 1) - off); 1768 ddprintf(("ntfs_readattr_plain: o: %qd, s: %qd (%qu - %qu)\n", 1769 (long long) off, (long long) toread, 1770 (long long) vap->va_vcnstart, 1771 (long long) vap->va_vcnend)); 1772 error = ntfs_readntvattr_plain(ntmp, ip, vap, 1773 off - ntfs_cntob(vap->va_vcnstart), 1774 toread, data, &init, uio); 1775 if (error) { 1776 printf("ntfs_readattr_plain: " 1777 "ntfs_readntvattr_plain failed: o: %qd, s: %qd\n", 1778 (long long) off, (long long) toread); 1779 printf("ntfs_readattr_plain: attrib: %qu - %qu\n", 1780 (long long) vap->va_vcnstart, 1781 (long long) vap->va_vcnend); 1782 ntfs_ntvattrrele(vap); 1783 break; 1784 } 1785 ntfs_ntvattrrele(vap); 1786 left -= toread; 1787 off += toread; 1788 data = (char *)data + toread; 1789 *initp += init; 1790 } 1791 1792 return (error); 1793 } 1794 1795 /* 1796 * This is one of read routines. 1797 */ 1798 int 1799 ntfs_readattr( 1800 struct ntfsmount * ntmp, 1801 struct ntnode * ip, 1802 u_int32_t attrnum, 1803 const char *attrname, 1804 off_t roff, 1805 size_t rsize, 1806 void *rdata, 1807 struct uio *uio) 1808 { 1809 int error = 0; 1810 struct ntvattr *vap; 1811 size_t init; 1812 1813 ddprintf(("ntfs_readattr: reading %llu: 0x%x, from %qd size %qu" 1814 " bytes\n", (unsigned long long)ip->i_number, attrnum, 1815 (long long)roff, (long long)rsize)); 1816 1817 error = ntfs_ntvattrget(ntmp, ip, attrnum, attrname, 0, &vap); 1818 if (error) 1819 return (error); 1820 1821 if ((roff > vap->va_datalen) || 1822 (roff + rsize > vap->va_datalen)) { 1823 printf("ntfs_readattr: offset too big: %qd (%qd) > %qu\n", 1824 (long long) roff, (long long) (roff + rsize), 1825 (long long) vap->va_datalen); 1826 ntfs_ntvattrrele(vap); 1827 return (E2BIG); 1828 } 1829 if (vap->va_compression && vap->va_compressalg) { 1830 u_int8_t *cup; 1831 u_int8_t *uup; 1832 off_t off = roff, left = rsize, tocopy; 1833 void * data = rdata; 1834 cn_t cn; 1835 1836 ddprintf(("ntfs_ntreadattr: compression: %d\n", 1837 vap->va_compressalg)); 1838 1839 cup = malloc(ntfs_cntob(NTFS_COMPUNIT_CL), 1840 M_NTFSDECOMP, M_WAITOK); 1841 uup = malloc(ntfs_cntob(NTFS_COMPUNIT_CL), 1842 M_NTFSDECOMP, M_WAITOK); 1843 1844 cn = (ntfs_btocn(roff)) & (~(NTFS_COMPUNIT_CL - 1)); 1845 off = roff - ntfs_cntob(cn); 1846 1847 while (left) { 1848 error = ntfs_readattr_plain(ntmp, ip, attrnum, 1849 attrname, ntfs_cntob(cn), 1850 ntfs_cntob(NTFS_COMPUNIT_CL), 1851 cup, &init, NULL); 1852 if (error) 1853 break; 1854 1855 tocopy = MIN(left, ntfs_cntob(NTFS_COMPUNIT_CL) - off); 1856 1857 if (init == ntfs_cntob(NTFS_COMPUNIT_CL)) { 1858 if (uio) 1859 uiomove(cup + off, tocopy, uio); 1860 else 1861 memcpy(data, cup + off, tocopy); 1862 } else if (init == 0) { 1863 if (uio) { 1864 char vbuf[] = ""; 1865 size_t remains = tocopy; 1866 for(; remains; remains--) 1867 uiomove(vbuf, 1, uio); 1868 } 1869 else 1870 bzero(data, tocopy); 1871 } else { 1872 error = ntfs_uncompunit(ntmp, uup, cup); 1873 if (error) 1874 break; 1875 if (uio) 1876 uiomove(uup + off, tocopy, uio); 1877 else 1878 memcpy(data, uup + off, tocopy); 1879 } 1880 1881 left -= tocopy; 1882 data = (char *)data + tocopy; 1883 off += tocopy - ntfs_cntob(NTFS_COMPUNIT_CL); 1884 cn += NTFS_COMPUNIT_CL; 1885 } 1886 1887 free(uup, M_NTFSDECOMP); 1888 free(cup, M_NTFSDECOMP); 1889 } else 1890 error = ntfs_readattr_plain(ntmp, ip, attrnum, attrname, 1891 roff, rsize, rdata, &init, uio); 1892 ntfs_ntvattrrele(vap); 1893 return (error); 1894 } 1895 1896 #if UNUSED_CODE 1897 int 1898 ntfs_parserun( 1899 cn_t * cn, 1900 cn_t * cl, 1901 u_int8_t * run, 1902 u_long len, 1903 u_long *off) 1904 { 1905 u_int8_t sz; 1906 int i; 1907 1908 if (NULL == run) { 1909 printf("ntfs_parsetun: run == NULL\n"); 1910 return (EINVAL); 1911 } 1912 sz = run[(*off)++]; 1913 if (0 == sz) { 1914 printf("ntfs_parserun: trying to go out of run\n"); 1915 return (E2BIG); 1916 } 1917 *cl = 0; 1918 if ((sz & 0xF) > 8 || (*off) + (sz & 0xF) > len) { 1919 printf("ntfs_parserun: " 1920 "bad run: length too big: sz: 0x%02x (%ld < %ld + sz)\n", 1921 sz, len, *off); 1922 return (EINVAL); 1923 } 1924 for (i = 0; i < (sz & 0xF); i++) 1925 *cl += (u_int32_t) run[(*off)++] << (i << 3); 1926 1927 sz >>= 4; 1928 if ((sz & 0xF) > 8 || (*off) + (sz & 0xF) > len) { 1929 printf("ntfs_parserun: " 1930 "bad run: length too big: sz: 0x%02x (%ld < %ld + sz)\n", 1931 sz, len, *off); 1932 return (EINVAL); 1933 } 1934 for (i = 0; i < (sz & 0xF); i++) 1935 *cn += (u_int32_t) run[(*off)++] << (i << 3); 1936 1937 return (0); 1938 } 1939 #endif 1940 1941 /* 1942 * Process fixup routine on given buffer. 1943 */ 1944 int 1945 ntfs_procfixups( 1946 struct ntfsmount * ntmp, 1947 u_int32_t magic, 1948 void *xbufv, 1949 size_t len) 1950 { 1951 char *xbuf = xbufv; 1952 struct fixuphdr *fhp = (struct fixuphdr *) xbuf; 1953 int i; 1954 u_int16_t fixup; 1955 u_int16_t *fxp; 1956 u_int16_t *cfxp; 1957 1958 if (fhp->fh_magic != magic) { 1959 printf("ntfs_procfixups: magic doesn't match: %08x != %08x\n", 1960 fhp->fh_magic, magic); 1961 return (EINVAL); 1962 } 1963 if ((fhp->fh_fnum - 1) * ntmp->ntm_bps != len) { 1964 printf("ntfs_procfixups: " 1965 "bad fixups number: %d for %ld bytes block\n", 1966 fhp->fh_fnum, (long)len); /* XXX printf kludge */ 1967 return (EINVAL); 1968 } 1969 if (fhp->fh_foff >= ntmp->ntm_spc * ntmp->ntm_mftrecsz * ntmp->ntm_bps) { 1970 printf("ntfs_procfixups: invalid offset: %x", fhp->fh_foff); 1971 return (EINVAL); 1972 } 1973 fxp = (u_int16_t *) (xbuf + fhp->fh_foff); 1974 cfxp = (u_int16_t *) (xbuf + ntmp->ntm_bps - 2); 1975 fixup = *fxp++; 1976 for (i = 1; i < fhp->fh_fnum; i++, fxp++) { 1977 if (*cfxp != fixup) { 1978 printf("ntfs_procfixups: fixup %d doesn't match\n", i); 1979 return (EINVAL); 1980 } 1981 *cfxp = *fxp; 1982 cfxp = (u_int16_t *)((char *)cfxp + ntmp->ntm_bps); 1983 } 1984 return (0); 1985 } 1986 1987 #if UNUSED_CODE 1988 int 1989 ntfs_runtocn( 1990 cn_t * cn, 1991 struct ntfsmount * ntmp, 1992 u_int8_t * run, 1993 u_long len, 1994 cn_t vcn) 1995 { 1996 cn_t ccn = 0; 1997 cn_t ccl = 0; 1998 u_long off = 0; 1999 int error = 0; 2000 2001 #ifdef NTFS_DEBUG 2002 int i; 2003 printf("ntfs_runtocn: run: %p, %ld bytes, vcn:%ld\n", 2004 run, len, (u_long) vcn); 2005 printf("ntfs_runtocn: run: "); 2006 for (i = 0; i < len; i++) 2007 printf("0x%02x ", run[i]); 2008 printf("\n"); 2009 #endif 2010 2011 if (NULL == run) { 2012 printf("ntfs_runtocn: run == NULL\n"); 2013 return (EINVAL); 2014 } 2015 do { 2016 if (run[off] == 0) { 2017 printf("ntfs_runtocn: vcn too big\n"); 2018 return (E2BIG); 2019 } 2020 vcn -= ccl; 2021 error = ntfs_parserun(&ccn, &ccl, run, len, &off); 2022 if (error) { 2023 printf("ntfs_runtocn: ntfs_parserun failed\n"); 2024 return (error); 2025 } 2026 } while (ccl <= vcn); 2027 *cn = ccn + vcn; 2028 return (0); 2029 } 2030 #endif 2031 2032 /* 2033 * this initializes toupper table & dependant variables to be ready for 2034 * later work 2035 */ 2036 void 2037 ntfs_toupper_init() 2038 { 2039 ntfs_toupper_tab = (wchar *) NULL; 2040 mutex_init(&ntfs_toupper_lock, MUTEX_DEFAULT, IPL_NONE); 2041 ntfs_toupper_usecount = 0; 2042 } 2043 2044 /* 2045 * if the ntfs_toupper_tab[] is filled already, just raise use count; 2046 * otherwise read the data from the filesystem we are currently mounting 2047 */ 2048 int 2049 ntfs_toupper_use(mp, ntmp) 2050 struct mount *mp; 2051 struct ntfsmount *ntmp; 2052 { 2053 int error = 0; 2054 struct vnode *vp; 2055 2056 /* get exclusive access */ 2057 mutex_enter(&ntfs_toupper_lock); 2058 2059 /* only read the translation data from a file if it hasn't been 2060 * read already */ 2061 if (ntfs_toupper_tab) 2062 goto out; 2063 2064 /* 2065 * Read in Unicode lowercase -> uppercase translation file. 2066 * XXX for now, just the first 256 entries are used anyway, 2067 * so don't bother reading more 2068 */ 2069 ntfs_toupper_tab = malloc(256 * 256 * sizeof(wchar), 2070 M_NTFSRDATA, M_WAITOK); 2071 2072 if ((error = VFS_VGET(mp, NTFS_UPCASEINO, &vp))) 2073 goto out; 2074 error = ntfs_readattr(ntmp, VTONT(vp), NTFS_A_DATA, NULL, 2075 0, 256*256*sizeof(wchar), (char *) ntfs_toupper_tab, 2076 NULL); 2077 vput(vp); 2078 2079 out: 2080 ntfs_toupper_usecount++; 2081 mutex_exit(&ntfs_toupper_lock); 2082 return (error); 2083 } 2084 2085 /* 2086 * lower the use count and if it reaches zero, free the memory 2087 * tied by toupper table 2088 */ 2089 void 2090 ntfs_toupper_unuse() 2091 { 2092 /* get exclusive access */ 2093 mutex_enter(&ntfs_toupper_lock); 2094 2095 ntfs_toupper_usecount--; 2096 if (ntfs_toupper_usecount == 0) { 2097 free(ntfs_toupper_tab, M_NTFSRDATA); 2098 ntfs_toupper_tab = NULL; 2099 } 2100 #ifdef DIAGNOSTIC 2101 else if (ntfs_toupper_usecount < 0) { 2102 panic("ntfs_toupper_unuse(): use count negative: %d", 2103 ntfs_toupper_usecount); 2104 } 2105 #endif 2106 2107 /* release the lock */ 2108 mutex_exit(&ntfs_toupper_lock); 2109 } 2110