1 /* 2 * CDDL HEADER START 3 * 4 * The contents of this file are subject to the terms of the 5 * Common Development and Distribution License, Version 1.0 only 6 * (the "License"). You may not use this file except in compliance 7 * with the License. 8 * 9 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 10 * or http://www.opensolaris.org/os/licensing. 11 * See the License for the specific language governing permissions 12 * and limitations under the License. 13 * 14 * When distributing Covered Code, include this CDDL HEADER in each 15 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 16 * If applicable, add the following below this CDDL HEADER, with the 17 * fields enclosed by brackets "[]" replaced with your own identifying 18 * information: Portions Copyright [yyyy] [name of copyright owner] 19 * 20 * CDDL HEADER END 21 */ 22 /* 23 * Copyright 2005 Sun Microsystems, Inc. All rights reserved. 24 * Use is subject to license terms. 25 */ 26 27 #pragma ident "%Z%%M% %I% %E% SMI" 28 29 #include <sys/param.h> 30 #include <sys/types.h> 31 #include <sys/systm.h> 32 #include <sys/cred.h> 33 #include <sys/buf.h> 34 #include <sys/vfs.h> 35 #include <sys/vnode.h> 36 #include <sys/uio.h> 37 #include <sys/errno.h> 38 #include <sys/sysmacros.h> 39 #include <sys/statvfs.h> 40 #include <sys/kmem.h> 41 #include <sys/dirent.h> 42 #include <rpc/types.h> 43 #include <rpc/auth.h> 44 #include <rpc/rpcsec_gss.h> 45 #include <rpc/svc.h> 46 #include <sys/strsubr.h> 47 #include <sys/strsun.h> 48 #include <sys/sdt.h> 49 50 #include <nfs/nfs.h> 51 #include <nfs/export.h> 52 #include <nfs/nfs4.h> 53 54 55 /* 56 * RFS4_MINLEN_ENTRY4: XDR-encoded size of smallest possible dirent. 57 * This is used to return NFS4ERR_TOOSMALL when clients specify 58 * maxcount that isn't large enough to hold the smallest possible 59 * XDR encoded dirent. 60 * 61 * sizeof cookie (8 bytes) + 62 * sizeof name_len (4 bytes) + 63 * sizeof smallest (padded) name (4 bytes) + 64 * sizeof bitmap4_len (12 bytes) + NOTE: we always encode len=2 bm4 65 * sizeof attrlist4_len (4 bytes) + 66 * sizeof next boolean (4 bytes) 67 * 68 * RFS4_MINLEN_RDDIR4: XDR-encoded size of READDIR op reply containing 69 * the smallest possible entry4 (assumes no attrs requested). 70 * sizeof nfsstat4 (4 bytes) + 71 * sizeof verifier4 (8 bytes) + 72 * sizeof entsecond_to_ry4list bool (4 bytes) + 73 * sizeof entry4 (36 bytes) + 74 * sizeof eof bool (4 bytes) 75 * 76 * RFS4_MINLEN_RDDIR_BUF: minimum length of buffer server will provide to 77 * VOP_READDIR. Its value is the size of the maximum possible dirent 78 * for solaris. The DIRENT64_RECLEN macro returns the size of dirent 79 * required for a given name length. MAXNAMELEN is the maximum 80 * filename length allowed in Solaris. The first two DIRENT64_RECLEN() 81 * macros are to allow for . and .. entries -- just a minor tweak to try 82 * and guarantee that buffer we give to VOP_READDIR will be large enough 83 * to hold ., .., and the largest possible solaris dirent64. 84 */ 85 #define RFS4_MINLEN_ENTRY4 36 86 #define RFS4_MINLEN_RDDIR4 (4 + NFS4_VERIFIER_SIZE + 4 + RFS4_MINLEN_ENTRY4 + 4) 87 #define RFS4_MINLEN_RDDIR_BUF \ 88 (DIRENT64_RECLEN(1) + DIRENT64_RECLEN(2) + DIRENT64_RECLEN(MAXNAMELEN)) 89 90 91 #ifdef nextdp 92 #undef nextdp 93 #endif 94 #define nextdp(dp) ((struct dirent64 *)((char *)(dp) + (dp)->d_reclen)) 95 96 verifier4 Readdir4verf = 0x0; 97 98 static nfs_ftype4 vt_to_nf4[] = { 99 0, NF4REG, NF4DIR, NF4BLK, NF4CHR, NF4LNK, NF4FIFO, 0, 0, NF4SOCK, 0 100 }; 101 102 103 int 104 nfs4_readdir_getvp(vnode_t *dvp, char *d_name, vnode_t **vpp, 105 struct exportinfo **exi, struct svc_req *req, 106 struct compound_state *cs, int expseudo) 107 { 108 int error; 109 int ismntpt; 110 fid_t fid; 111 vnode_t *vp, *pre_tvp; 112 nfsstat4 status; 113 struct exportinfo *newexi, *saveexi; 114 cred_t *scr; 115 116 *vpp = vp = NULL; 117 118 if (error = VOP_LOOKUP(dvp, d_name, &vp, NULL, 0, NULL, cs->cr)) 119 return (error); 120 121 /* Is this object mounted upon? */ 122 ismntpt = vn_ismntpt(vp); 123 /* 124 * Nothing more to do if object is not a mount point or 125 * a possible LOFS shadow of an LOFS mount (which won't 126 * have v_vfsmountedhere set) 127 */ 128 if (ismntpt == 0 && dvp->v_vfsp == vp->v_vfsp && expseudo == 0) { 129 *vpp = vp; 130 return (0); 131 } 132 133 if (ismntpt) { 134 /* 135 * Something is mounted here. Traverse and manage the 136 * namespace 137 */ 138 pre_tvp = vp; 139 VN_HOLD(pre_tvp); 140 141 if ((error = traverse(&vp)) != 0) { 142 VN_RELE(pre_tvp); 143 return (error); 144 } 145 } 146 147 bzero(&fid, sizeof (fid)); 148 fid.fid_len = MAXFIDSZ; 149 150 /* 151 * If VOP_FID not supported by underlying fs (mntfs, procfs, 152 * etc.), then return attrs for stub instead of VROOT object. 153 * If it fails for any other reason, then return the error. 154 */ 155 if (error = VOP_FID(vp, &fid)) { 156 if (ismntpt == 0) { 157 VN_RELE(vp); 158 return (error); 159 } 160 161 if (error != ENOSYS && error != ENOTSUP) { 162 VN_RELE(vp); 163 VN_RELE(pre_tvp); 164 return (error); 165 } 166 /* go back to vnode that is "under" mount */ 167 VN_RELE(vp); 168 *vpp = pre_tvp; 169 return (0); 170 } 171 172 newexi = checkexport4(&vp->v_vfsp->vfs_fsid, &fid, vp); 173 if (newexi == NULL) { 174 if (ismntpt == 0) { 175 *vpp = vp; 176 } else { 177 VN_RELE(vp); 178 *vpp = pre_tvp; 179 } 180 return (0); 181 } 182 183 if (ismntpt) 184 VN_RELE(pre_tvp); 185 186 /* Save the exi and present the new one to checkauth4() */ 187 saveexi = cs->exi; 188 cs->exi = newexi; 189 190 /* Get the right cred like lookup does */ 191 scr = cs->cr; 192 cs->cr = crdup(cs->basecr); 193 194 status = call_checkauth4(cs, req); 195 196 crfree(cs->cr); 197 cs->cr = scr; 198 cs->exi = saveexi; 199 200 /* Reset what call_checkauth4() may have set */ 201 *cs->statusp = NFS4_OK; 202 203 if (status != NFS4_OK) { 204 VN_RELE(vp); 205 if (status == NFS4ERR_DELAY) 206 status = NFS4ERR_ACCESS; 207 return (status); 208 } 209 *vpp = vp; 210 *exi = newexi; 211 212 return (0); 213 } 214 215 /* This is the set of pathconf data for vfs */ 216 typedef struct { 217 uint64_t maxfilesize; 218 uint32_t maxlink; 219 uint32_t maxname; 220 } rfs4_pc_encode_t; 221 222 223 static int 224 rfs4_get_pc_encode(vnode_t *vp, rfs4_pc_encode_t *pce, bitmap4 ar, cred_t *cr) 225 { 226 int error; 227 ulong_t pc_val; 228 229 pce->maxfilesize = 0; 230 pce->maxlink = 0; 231 pce->maxname = 0; 232 233 if (ar & FATTR4_MAXFILESIZE_MASK) { 234 /* Maximum File Size */ 235 if (error = VOP_PATHCONF(vp, _PC_FILESIZEBITS, &pc_val, cr)) 236 return (error); 237 238 if (pc_val >= (sizeof (uint64_t) * 8)) 239 pce->maxfilesize = UINT64_MAX; 240 else 241 pce->maxfilesize = ((1LL << pc_val) - 1); 242 } 243 244 if (ar & FATTR4_MAXLINK_MASK) { 245 /* Maximum Link Count */ 246 if (error = VOP_PATHCONF(vp, _PC_LINK_MAX, &pc_val, cr)) 247 return (error); 248 249 pce->maxlink = pc_val; 250 } 251 252 if (ar & FATTR4_MAXNAME_MASK) { 253 /* Maximum Name Length */ 254 if (error = VOP_PATHCONF(vp, _PC_NAME_MAX, &pc_val, cr)) 255 return (error); 256 257 pce->maxname = pc_val; 258 } 259 260 return (0); 261 } 262 263 /* This is the set of statvfs data that is ready for encoding */ 264 typedef struct { 265 uint64_t space_avail; 266 uint64_t space_free; 267 uint64_t space_total; 268 u_longlong_t fa; 269 u_longlong_t ff; 270 u_longlong_t ft; 271 } rfs4_sb_encode_t; 272 273 static int 274 rfs4_get_sb_encode(vfs_t *vfsp, rfs4_sb_encode_t *psbe) 275 { 276 int error; 277 struct statvfs64 sb; 278 279 /* Grab the per filesystem info */ 280 if (error = VFS_STATVFS(vfsp, &sb)) { 281 return (error); 282 } 283 284 /* Calculate space available */ 285 if (sb.f_bavail != (fsblkcnt64_t)-1) { 286 psbe->space_avail = 287 (fattr4_space_avail) sb.f_frsize * 288 (fattr4_space_avail) sb.f_bavail; 289 } else { 290 psbe->space_avail = 291 (fattr4_space_avail) sb.f_bavail; 292 } 293 294 /* Calculate space free */ 295 if (sb.f_bfree != (fsblkcnt64_t)-1) { 296 psbe->space_free = 297 (fattr4_space_free) sb.f_frsize * 298 (fattr4_space_free) sb.f_bfree; 299 } else { 300 psbe->space_free = 301 (fattr4_space_free) sb.f_bfree; 302 } 303 304 /* Calculate space total */ 305 if (sb.f_blocks != (fsblkcnt64_t)-1) { 306 psbe->space_total = 307 (fattr4_space_total) sb.f_frsize * 308 (fattr4_space_total) sb.f_blocks; 309 } else { 310 psbe->space_total = 311 (fattr4_space_total) sb.f_blocks; 312 } 313 314 /* For use later on attr encode */ 315 psbe->fa = sb.f_favail; 316 psbe->ff = sb.f_ffree; 317 psbe->ft = sb.f_files; 318 319 return (0); 320 } 321 322 /* 323 * Macros to handle if we have don't have enough space for the requested 324 * attributes and this is the first entry and the 325 * requested attributes are more than the minimal useful 326 * set, reset the attributes to the minimal set and 327 * retry the encoding. If the client has asked for both 328 * mounted_on_fileid and fileid, prefer mounted_on_fileid. 329 */ 330 #define MINIMAL_RD_ATTRS \ 331 (FATTR4_MOUNTED_ON_FILEID_MASK| \ 332 FATTR4_FILEID_MASK| \ 333 FATTR4_RDATTR_ERROR_MASK) 334 335 #define MINIMIZE_ATTR_MASK(m) { \ 336 if ((m) & FATTR4_MOUNTED_ON_FILEID_MASK) \ 337 (m) &= FATTR4_RDATTR_ERROR_MASK|FATTR4_MOUNTED_ON_FILEID_MASK;\ 338 else \ 339 (m) &= FATTR4_RDATTR_ERROR_MASK|FATTR4_FILEID_MASK; \ 340 } 341 342 #define IS_MIN_ATTR_MASK(m) (((m) & ~MINIMAL_RD_ATTRS) == 0) 343 /* 344 * If readdir only needs to return FILEID, we can take it from the 345 * dirent struct and save doing the lookup. 346 */ 347 /* ARGSUSED */ 348 void 349 rfs4_op_readdir(nfs_argop4 *argop, nfs_resop4 *resop, 350 struct svc_req *req, struct compound_state *cs) 351 { 352 READDIR4args *args = &argop->nfs_argop4_u.opreaddir; 353 READDIR4res *resp = &resop->nfs_resop4_u.opreaddir; 354 struct exportinfo *newexi = NULL; 355 int error; 356 mblk_t *mp; 357 uint_t mpcount; 358 int alloc_err = 0; 359 vnode_t *dvp = cs->vp; 360 vnode_t *vp; 361 vattr_t va; 362 struct dirent64 *dp; 363 rfs4_sb_encode_t dsbe, sbe; 364 int vfs_different; 365 int rddir_data_len, rddir_result_size; 366 caddr_t rddir_data; 367 offset_t rddir_next_offset; 368 int dircount; 369 int no_space; 370 int iseofdir; 371 uint_t eof; 372 struct iovec iov; 373 struct uio uio; 374 int tsize; 375 int check_visible; 376 int expseudo = 0; 377 378 uint32_t *ptr, *ptr_redzone; 379 uint32_t *beginning_ptr; 380 uint32_t *lastentry_ptr; 381 uint32_t *attrmask_ptr; 382 uint32_t *attr_offset_ptr; 383 uint32_t attr_length; 384 uint32_t rndup; 385 uint32_t namelen; 386 uint32_t rddirattr_error = 0; 387 int nents; 388 bitmap4 ar = args->attr_request & NFS4_SRV_RDDIR_SUPPORTED_ATTRS; 389 bitmap4 ae; 390 rfs4_pc_encode_t dpce, pce; 391 ulong_t pc_val; 392 uint64_t maxread; 393 uint64_t maxwrite; 394 uint_t true = TRUE; 395 uint_t false = FALSE; 396 uid_t lastuid; 397 gid_t lastgid; 398 int lu_set, lg_set; 399 utf8string owner, group; 400 int owner_error, group_error; 401 402 lu_set = lg_set = 0; 403 owner.utf8string_len = group.utf8string_len = 0; 404 owner.utf8string_val = group.utf8string_val = NULL; 405 406 resp->mblk = NULL; 407 408 /* Maximum read and write size */ 409 maxread = maxwrite = rfs4_tsize(req); 410 411 if (dvp == NULL) { 412 *cs->statusp = resp->status = NFS4ERR_NOFILEHANDLE; 413 return; 414 } 415 416 /* 417 * If there is an unshared filesystem mounted on this vnode, 418 * do not allow readdir in this directory. 419 */ 420 if (vn_ismntpt(dvp)) { 421 *cs->statusp = resp->status = NFS4ERR_ACCESS; 422 return; 423 } 424 425 if (dvp->v_type != VDIR) { 426 *cs->statusp = resp->status = NFS4ERR_NOTDIR; 427 return; 428 } 429 430 if (args->maxcount <= RFS4_MINLEN_RDDIR4) { 431 *cs->statusp = resp->status = NFS4ERR_TOOSMALL; 432 return; 433 } 434 435 /* 436 * If write-only attrs are requested, then fail the readdir op 437 */ 438 if (args->attr_request & 439 (FATTR4_TIME_MODIFY_SET_MASK | FATTR4_TIME_ACCESS_SET_MASK)) { 440 *cs->statusp = resp->status = NFS4ERR_INVAL; 441 return; 442 } 443 444 error = VOP_ACCESS(dvp, VREAD, 0, cs->cr); 445 if (error) { 446 *cs->statusp = resp->status = puterrno4(error); 447 return; 448 } 449 450 if (args->cookieverf != Readdir4verf) { 451 *cs->statusp = resp->status = NFS4ERR_NOT_SAME; 452 return; 453 } 454 455 /* Is there pseudo-fs work that is needed for this readdir? */ 456 check_visible = PSEUDO(cs->exi) || 457 ! is_exported_sec(cs->nfsflavor, cs->exi) || 458 cs->access & CS_ACCESS_LIMITED; 459 460 /* Check the requested attributes and only do the work if needed */ 461 462 if (ar & (FATTR4_MAXFILESIZE_MASK | 463 FATTR4_MAXLINK_MASK | 464 FATTR4_MAXNAME_MASK)) { 465 if (error = rfs4_get_pc_encode(cs->vp, &dpce, ar, cs->cr)) { 466 *cs->statusp = resp->status = puterrno4(error); 467 return; 468 } 469 pce = dpce; 470 } 471 472 /* If there is statvfs data requested, pick it up once */ 473 if (ar & 474 (FATTR4_FILES_AVAIL_MASK | 475 FATTR4_FILES_FREE_MASK | 476 FATTR4_FILES_TOTAL_MASK | 477 FATTR4_FILES_AVAIL_MASK | 478 FATTR4_FILES_FREE_MASK | 479 FATTR4_FILES_TOTAL_MASK)) { 480 if (error = rfs4_get_sb_encode(dvp->v_vfsp, &dsbe)) { 481 *cs->statusp = resp->status = puterrno4(error); 482 return; 483 } 484 sbe = dsbe; 485 } 486 487 /* 488 * Max transfer size of the server is the absolute limite. 489 * If the client has decided to max out with something really 490 * tiny, then return toosmall. Otherwise, move forward and 491 * see if a single entry can be encoded. 492 */ 493 tsize = rfs4_tsize(req); 494 if (args->maxcount > tsize) 495 args->maxcount = tsize; 496 else if (args->maxcount < RFS4_MINLEN_RDDIR_BUF) { 497 if (args->maxcount < RFS4_MINLEN_ENTRY4) { 498 *cs->statusp = resp->status = NFS4ERR_TOOSMALL; 499 return; 500 } 501 } 502 503 /* 504 * How large should the mblk be for outgoing encoding. 505 */ 506 if (args->maxcount < MAXBSIZE) 507 mpcount = MAXBSIZE; 508 else 509 mpcount = args->maxcount; 510 511 /* 512 * mp will contain the data to be sent out in the readdir reply. 513 * It will be freed after the reply has been sent. 514 * Let's roundup the data to a BYTES_PER_XDR_UNIX multiple, 515 * so that the call to xdrmblk_putmblk() never fails. 516 */ 517 mp = allocb(RNDUP(mpcount), BPRI_MED); 518 519 if (mp == NULL) { 520 /* 521 * The allocation of the client's requested size has 522 * failed. It may be that the size is too large for 523 * current system utilization; step down to a "common" 524 * size and wait for the allocation to occur. 525 */ 526 if (mpcount > MAXBSIZE) 527 args->maxcount = mpcount = MAXBSIZE; 528 mp = allocb_wait(RNDUP(mpcount), BPRI_MED, 529 STR_NOSIG, &alloc_err); 530 } 531 532 ASSERT(mp != NULL); 533 ASSERT(alloc_err == 0); 534 535 resp->mblk = mp; 536 537 ptr = beginning_ptr = (uint32_t *)mp->b_datap->db_base; 538 539 /* 540 * The "redzone" at the end of the encoding buffer is used 541 * to deal with xdr encoding length. Instead of checking 542 * each encoding of an attribute value before it is done, 543 * make the assumption that it will fit into the buffer and 544 * check occasionally. 545 * 546 * The largest block of attributes that are encoded without 547 * checking the redzone is 18 * BYTES_PER_XDR_UNIT (72 bytes) 548 * "round" to 128 as the redzone size. 549 */ 550 if (args->maxcount < (mpcount - 128)) 551 ptr_redzone = 552 (uint32_t *)(((char *)ptr) + RNDUP(args->maxcount)); 553 else 554 ptr_redzone = 555 (uint32_t *)((((char *)ptr) + RNDUP(mpcount)) - 128); 556 557 /* 558 * Set the dircount; this will be used as the size for the 559 * readdir of the underlying filesystem. First make sure 560 * that it is large enough to do a reasonable readdir (client 561 * may have short changed us - it is an advisory number); 562 * then make sure that it isn't too large. 563 * After all of that, if maxcount is "small" then just use 564 * that for the dircount number. 565 */ 566 dircount = (args->dircount < MAXBSIZE) ? MAXBSIZE : args->dircount; 567 dircount = (dircount > tsize) ? tsize : dircount; 568 if (dircount > args->maxcount) 569 dircount = args->maxcount; 570 if (args->maxcount <= MAXBSIZE) { 571 if (args->maxcount < RFS4_MINLEN_RDDIR_BUF) 572 dircount = RFS4_MINLEN_RDDIR_BUF; 573 else 574 dircount = args->maxcount; 575 } 576 577 /* number of entries fully encoded in outgoing buffer */ 578 nents = 0; 579 580 /* ENCODE READDIR4res.cookieverf */ 581 IXDR_PUT_HYPER(ptr, Readdir4verf); 582 583 rddir_data_len = dircount; 584 rddir_data = kmem_alloc(rddir_data_len, KM_NOSLEEP); 585 if (rddir_data == NULL) { 586 /* The allocation failed; downsize and wait for it this time */ 587 if (rddir_data_len > MAXBSIZE) 588 rddir_data_len = dircount = MAXBSIZE; 589 rddir_data = kmem_alloc(rddir_data_len, KM_SLEEP); 590 } 591 592 rddir_next_offset = (offset_t)args->cookie; 593 594 readagain: 595 596 no_space = FALSE; 597 iseofdir = FALSE; 598 599 vp = NULL; 600 601 /* Move on to reading the directory contents */ 602 iov.iov_base = rddir_data; 603 iov.iov_len = rddir_data_len; 604 uio.uio_iov = &iov; 605 uio.uio_iovcnt = 1; 606 uio.uio_segflg = UIO_SYSSPACE; 607 uio.uio_extflg = UIO_COPY_CACHED; 608 uio.uio_loffset = rddir_next_offset; 609 uio.uio_resid = rddir_data_len; 610 611 (void) VOP_RWLOCK(dvp, V_WRITELOCK_FALSE, NULL); 612 613 error = VOP_READDIR(dvp, &uio, cs->cr, &iseofdir); 614 615 VOP_RWUNLOCK(dvp, V_WRITELOCK_FALSE, NULL); 616 617 if (error) { 618 kmem_free((caddr_t)rddir_data, rddir_data_len); 619 freeb(resp->mblk); 620 resp->mblk = NULL; 621 resp->data_len = 0; 622 *cs->statusp = resp->status = puterrno4(error); 623 return; 624 } 625 626 627 rddir_result_size = rddir_data_len - uio.uio_resid; 628 629 /* Reading at the end of the directory */ 630 if (iseofdir && (rddir_result_size == 0)) { 631 /* encode the BOOLEAN marking no further entries */ 632 IXDR_PUT_U_INT32(ptr, false); 633 /* encode the BOOLEAN signifying end of directory */ 634 IXDR_PUT_U_INT32(ptr, true); 635 resp->data_len = (char *)ptr - (char *)beginning_ptr; 636 resp->mblk->b_wptr += resp->data_len; 637 kmem_free((caddr_t)rddir_data, rddir_data_len); 638 *cs->statusp = resp->status = NFS4_OK; 639 return; 640 } 641 642 lastentry_ptr = ptr; 643 no_space = 0; 644 for (dp = (struct dirent64 *)rddir_data; 645 !no_space && rddir_result_size > 0; dp = nextdp(dp)) { 646 647 /* reset expseudo */ 648 expseudo = 0; 649 650 if (vp) { 651 VN_RELE(vp); 652 vp = NULL; 653 } 654 655 if (newexi) 656 newexi = NULL; 657 658 rddir_result_size -= dp->d_reclen; 659 660 /* skip "." and ".." entries */ 661 if (dp->d_ino == 0 || NFS_IS_DOTNAME(dp->d_name)) { 662 rddir_next_offset = dp->d_off; 663 continue; 664 } 665 666 if (check_visible && 667 !nfs_visible_inode(cs->exi, dp->d_ino, &expseudo)) { 668 rddir_next_offset = dp->d_off; 669 continue; 670 } 671 672 /* 673 * Only if the client requested attributes... 674 * If the VOP_LOOKUP fails ENOENT, then skip this entry 675 * for the readdir response. If there was another error, 676 * then set the rddirattr_error and the error will be 677 * encoded later in the "attributes" section. 678 */ 679 ae = ar; 680 if (ar != 0) { 681 error = nfs4_readdir_getvp(dvp, dp->d_name, 682 &vp, &newexi, req, cs, 683 expseudo); 684 if (error == ENOENT) { 685 rddir_next_offset = dp->d_off; 686 continue; 687 } 688 689 rddirattr_error = error; 690 691 /* 692 * The vp obtained from above may be from a 693 * different filesystem mount and the vfs-like 694 * attributes should be obtained from that 695 * different vfs; only do this if appropriate. 696 */ 697 if (vp && 698 (vfs_different = (dvp->v_vfsp != vp->v_vfsp))) { 699 if (ar & (FATTR4_FILES_AVAIL_MASK | 700 FATTR4_FILES_FREE_MASK | 701 FATTR4_FILES_TOTAL_MASK | 702 FATTR4_FILES_AVAIL_MASK | 703 FATTR4_FILES_FREE_MASK | 704 FATTR4_FILES_TOTAL_MASK)) { 705 if (error = 706 rfs4_get_sb_encode(dvp->v_vfsp, &sbe)) { 707 /* Remove attrs from encode */ 708 ae &= ~(FATTR4_FILES_AVAIL_MASK | 709 FATTR4_FILES_FREE_MASK | 710 FATTR4_FILES_TOTAL_MASK | 711 FATTR4_FILES_AVAIL_MASK | 712 FATTR4_FILES_FREE_MASK | 713 FATTR4_FILES_TOTAL_MASK); 714 rddirattr_error = error; 715 } 716 } 717 if (ar & (FATTR4_MAXFILESIZE_MASK | 718 FATTR4_MAXLINK_MASK | 719 FATTR4_MAXNAME_MASK)) { 720 if (error = 721 rfs4_get_pc_encode(cs->vp, 722 &pce, ar, cs->cr)) { 723 ar &= ~(FATTR4_MAXFILESIZE_MASK | 724 FATTR4_MAXLINK_MASK | 725 FATTR4_MAXNAME_MASK); 726 rddirattr_error = error; 727 } 728 } 729 } 730 } 731 732 reencode_attrs: 733 /* encode the BOOLEAN for the existence of the next entry */ 734 IXDR_PUT_U_INT32(ptr, true); 735 /* encode the COOKIE for the entry */ 736 IXDR_PUT_U_HYPER(ptr, dp->d_off); 737 738 /* Calculate the dirent name length */ 739 namelen = strlen(dp->d_name); 740 741 rndup = RNDUP(namelen) / BYTES_PER_XDR_UNIT; 742 743 /* room for LENGTH + string ? */ 744 if ((ptr + (1 + rndup)) > ptr_redzone) { 745 no_space = TRUE; 746 continue; 747 } 748 749 /* encode the LENGTH of the name */ 750 IXDR_PUT_U_INT32(ptr, namelen); 751 /* encode the RNDUP FILL first */ 752 ptr[rndup - 1] = 0; 753 /* encode the NAME of the entry */ 754 bcopy(dp->d_name, (char *)ptr, namelen); 755 /* now bump the ptr after... */ 756 ptr += rndup; 757 758 /* 759 * Keep checking on the dircount to see if we have 760 * reached the limit; from the RFC, dircount is to be 761 * the XDR encoded limit of the cookie plus name. 762 * So the count is the name, XDR_UNIT of length for 763 * that name and 2 * XDR_UNIT bytes of cookie; 764 * However, use the regular DIRENT64 to match most 765 * client's APIs. 766 */ 767 dircount -= DIRENT64_RECLEN(namelen); 768 if (nents != 0 && dircount < 0) { 769 no_space = TRUE; 770 continue; 771 } 772 773 /* 774 * Attributes requested? 775 * Gather up the attribute info and the previous VOP_LOOKUP() 776 * succeeded; if an error occurs on the VOP_GETATTR() then 777 * return just the error (again if it is requested). 778 * Note that the previous VOP_LOOKUP() could have failed 779 * itself which leaves this code without anything for 780 * a VOP_GETATTR(). 781 * Also note that the readdir_attr_error is left in the 782 * encoding mask if requested and so is the mounted_on_fileid. 783 */ 784 if (ae != 0) { 785 if (!vp) { 786 ae = ar & (FATTR4_RDATTR_ERROR_MASK | 787 FATTR4_MOUNTED_ON_FILEID_MASK); 788 } else { 789 va.va_mask = AT_ALL; 790 rddirattr_error = 791 VOP_GETATTR(vp, &va, 0, cs->cr); 792 if (rddirattr_error) 793 ae = ar & (FATTR4_RDATTR_ERROR_MASK | 794 FATTR4_MOUNTED_ON_FILEID_MASK); 795 } 796 } 797 798 /* START OF ATTRIBUTE ENCODING */ 799 800 /* encode the LENGTH of the BITMAP4 array */ 801 IXDR_PUT_U_INT32(ptr, 2); 802 /* encode the BITMAP4 */ 803 attrmask_ptr = ptr; 804 IXDR_PUT_HYPER(ptr, ae); 805 attr_offset_ptr = ptr; 806 /* encode the default LENGTH of the attributes for entry */ 807 IXDR_PUT_U_INT32(ptr, 0); 808 809 if (ptr > ptr_redzone) { 810 no_space = TRUE; 811 continue; 812 } 813 814 /* Check if any of the first 32 attributes are being encoded */ 815 if (ae & 0xffffffff00000000) { 816 /* 817 * Redzone check is done at the end of this section. 818 * This particular section will encode a maximum of 819 * 18 * BYTES_PER_XDR_UNIT of data 820 */ 821 if (ae & 822 (FATTR4_SUPPORTED_ATTRS_MASK | 823 FATTR4_TYPE_MASK | 824 FATTR4_FH_EXPIRE_TYPE_MASK | 825 FATTR4_CHANGE_MASK | 826 FATTR4_SIZE_MASK | 827 FATTR4_LINK_SUPPORT_MASK | 828 FATTR4_SYMLINK_SUPPORT_MASK | 829 FATTR4_NAMED_ATTR_MASK | 830 FATTR4_FSID_MASK | 831 FATTR4_UNIQUE_HANDLES_MASK | 832 FATTR4_LEASE_TIME_MASK | 833 FATTR4_RDATTR_ERROR_MASK)) { 834 835 if (ae & FATTR4_SUPPORTED_ATTRS_MASK) { 836 IXDR_PUT_INT32(ptr, 2); 837 IXDR_PUT_HYPER(ptr, 838 rfs4_supported_attrs); 839 } 840 if (ae & FATTR4_TYPE_MASK) { 841 uint_t ftype = vt_to_nf4[va.va_type]; 842 if (dvp->v_flag & V_XATTRDIR) { 843 if (va.va_type == VDIR) 844 ftype = NF4ATTRDIR; 845 else 846 ftype = NF4NAMEDATTR; 847 } 848 IXDR_PUT_U_INT32(ptr, ftype); 849 } 850 if (ae & FATTR4_FH_EXPIRE_TYPE_MASK) { 851 uint_t expire_type = FH4_PERSISTENT; 852 IXDR_PUT_U_INT32(ptr, expire_type); 853 } 854 if (ae & FATTR4_CHANGE_MASK) { 855 u_longlong_t change; 856 NFS4_SET_FATTR4_CHANGE(change, 857 va.va_ctime); 858 IXDR_PUT_HYPER(ptr, change); 859 } 860 if (ae & FATTR4_SIZE_MASK) { 861 u_longlong_t size = va.va_size; 862 IXDR_PUT_HYPER(ptr, size); 863 } 864 if (ae & FATTR4_LINK_SUPPORT_MASK) { 865 IXDR_PUT_U_INT32(ptr, true); 866 } 867 if (ae & FATTR4_SYMLINK_SUPPORT_MASK) { 868 IXDR_PUT_U_INT32(ptr, true); 869 } 870 if (ae & FATTR4_NAMED_ATTR_MASK) { 871 uint_t isit; 872 pc_val = FALSE; 873 874 if (!(vp->v_vfsp->vfs_flag & 875 VFS_XATTR)) { 876 isit = FALSE; 877 } else { 878 (void) VOP_PATHCONF(vp, 879 _PC_XATTR_EXISTS, 880 &pc_val, cs->cr); 881 } 882 isit = (pc_val ? TRUE : FALSE); 883 IXDR_PUT_U_INT32(ptr, isit); 884 } 885 if (ae & FATTR4_FSID_MASK) { 886 u_longlong_t major, minor; 887 struct exportinfo *exi; 888 889 exi = newexi ? newexi : cs->exi; 890 if (exi->exi_volatile_dev) { 891 int *pmaj = (int *)&major; 892 893 pmaj[0] = exi->exi_fsid.val[0]; 894 pmaj[1] = exi->exi_fsid.val[1]; 895 minor = 0; 896 } else { 897 major = getmajor(va.va_fsid); 898 minor = getminor(va.va_fsid); 899 } 900 IXDR_PUT_HYPER(ptr, major); 901 IXDR_PUT_HYPER(ptr, minor); 902 } 903 if (ae & FATTR4_UNIQUE_HANDLES_MASK) { 904 IXDR_PUT_U_INT32(ptr, false); 905 } 906 if (ae & FATTR4_LEASE_TIME_MASK) { 907 uint_t lt = rfs4_lease_time; 908 IXDR_PUT_U_INT32(ptr, lt); 909 } 910 if (ae & FATTR4_RDATTR_ERROR_MASK) { 911 rddirattr_error = 912 (rddirattr_error == 0 ? 913 0 : puterrno4(rddirattr_error)); 914 IXDR_PUT_U_INT32(ptr, rddirattr_error); 915 } 916 917 /* Check the redzone boundary */ 918 if (ptr > ptr_redzone) { 919 if (nents || IS_MIN_ATTR_MASK(ar)) { 920 no_space = TRUE; 921 continue; 922 } 923 MINIMIZE_ATTR_MASK(ar); 924 ae = ar; 925 ptr = lastentry_ptr; 926 goto reencode_attrs; 927 } 928 } 929 /* 930 * Redzone check is done at the end of this section. 931 * This particular section will encode a maximum of 932 * 4 * BYTES_PER_XDR_UNIT of data. 933 * NOTE: that if ACLs are supported that the 934 * redzone calculations will need to change. 935 */ 936 if (ae & 937 (FATTR4_ACL_MASK | 938 FATTR4_ACLSUPPORT_MASK | 939 FATTR4_ARCHIVE_MASK | 940 FATTR4_CANSETTIME_MASK | 941 FATTR4_CASE_INSENSITIVE_MASK | 942 FATTR4_CASE_PRESERVING_MASK | 943 FATTR4_CHOWN_RESTRICTED_MASK)) { 944 945 if (ae & FATTR4_ACL_MASK) { 946 ASSERT(0); 947 } 948 if (ae & FATTR4_ACLSUPPORT_MASK) { 949 ASSERT(0); 950 } 951 if (ae & FATTR4_ARCHIVE_MASK) { 952 ASSERT(0); 953 } 954 if (ae & FATTR4_CANSETTIME_MASK) { 955 IXDR_PUT_U_INT32(ptr, true); 956 } 957 if (ae & FATTR4_CASE_INSENSITIVE_MASK) { 958 IXDR_PUT_U_INT32(ptr, false); 959 } 960 if (ae & FATTR4_CASE_PRESERVING_MASK) { 961 IXDR_PUT_U_INT32(ptr, true); 962 } 963 if (ae & FATTR4_CHOWN_RESTRICTED_MASK) { 964 uint_t isit; 965 pc_val = FALSE; 966 (void) VOP_PATHCONF(vp, 967 _PC_CHOWN_RESTRICTED, 968 &pc_val, cs->cr); 969 isit = (pc_val ? TRUE : FALSE); 970 IXDR_PUT_U_INT32(ptr, isit); 971 } 972 /* Check the redzone boundary */ 973 if (ptr > ptr_redzone) { 974 if (nents || IS_MIN_ATTR_MASK(ar)) { 975 no_space = TRUE; 976 continue; 977 } 978 MINIMIZE_ATTR_MASK(ar); 979 ae = ar; 980 ptr = lastentry_ptr; 981 goto reencode_attrs; 982 } 983 } 984 /* 985 * Redzone check is done before the filehandle 986 * is encoded. 987 */ 988 if (ae & 989 (FATTR4_FILEHANDLE_MASK | 990 FATTR4_FILEID_MASK)) { 991 992 if (ae & FATTR4_FILEHANDLE_MASK) { 993 struct { 994 uint_t len; 995 char *val; 996 char fh[NFS_FH4_LEN]; 997 } fh; 998 fh.len = 0; 999 fh.val = fh.fh; 1000 (void) makefh4((nfs_fh4 *)&fh, vp, 1001 (newexi ? newexi : cs->exi)); 1002 1003 if (!xdr_inline_encode_nfs_fh4( 1004 &ptr, ptr_redzone, 1005 (nfs_fh4_fmt_t *)fh.val)) { 1006 if (nents || 1007 IS_MIN_ATTR_MASK(ar)) { 1008 no_space = TRUE; 1009 continue; 1010 } 1011 MINIMIZE_ATTR_MASK(ar); 1012 ae = ar; 1013 ptr = lastentry_ptr; 1014 goto reencode_attrs; 1015 } 1016 } 1017 if (ae & FATTR4_FILEID_MASK) { 1018 IXDR_PUT_HYPER(ptr, va.va_nodeid); 1019 } 1020 /* Check the redzone boundary */ 1021 if (ptr > ptr_redzone) { 1022 if (nents || IS_MIN_ATTR_MASK(ar)) { 1023 no_space = TRUE; 1024 continue; 1025 } 1026 MINIMIZE_ATTR_MASK(ar); 1027 ae = ar; 1028 ptr = lastentry_ptr; 1029 goto reencode_attrs; 1030 } 1031 } 1032 /* 1033 * Redzone check is done at the end of this section. 1034 * This particular section will encode a maximum of 1035 * 15 * BYTES_PER_XDR_UNIT of data. 1036 */ 1037 if (ae & 1038 (FATTR4_FILES_AVAIL_MASK | 1039 FATTR4_FILES_FREE_MASK | 1040 FATTR4_FILES_TOTAL_MASK | 1041 FATTR4_FS_LOCATIONS_MASK | 1042 FATTR4_HIDDEN_MASK | 1043 FATTR4_HOMOGENEOUS_MASK | 1044 FATTR4_MAXFILESIZE_MASK | 1045 FATTR4_MAXLINK_MASK | 1046 FATTR4_MAXNAME_MASK | 1047 FATTR4_MAXREAD_MASK | 1048 FATTR4_MAXWRITE_MASK)) { 1049 1050 if (ae & FATTR4_FILES_AVAIL_MASK) { 1051 IXDR_PUT_HYPER(ptr, sbe.fa); 1052 } 1053 if (ae & FATTR4_FILES_FREE_MASK) { 1054 IXDR_PUT_HYPER(ptr, sbe.ff); 1055 } 1056 if (ae & FATTR4_FILES_TOTAL_MASK) { 1057 IXDR_PUT_HYPER(ptr, sbe.ft); 1058 } 1059 if (ae & FATTR4_FS_LOCATIONS_MASK) { 1060 ASSERT(0); 1061 } 1062 if (ae & FATTR4_HIDDEN_MASK) { 1063 ASSERT(0); 1064 } 1065 if (ae & FATTR4_HOMOGENEOUS_MASK) { 1066 IXDR_PUT_U_INT32(ptr, true); 1067 } 1068 if (ae & FATTR4_MAXFILESIZE_MASK) { 1069 IXDR_PUT_HYPER(ptr, pce.maxfilesize); 1070 } 1071 if (ae & FATTR4_MAXLINK_MASK) { 1072 IXDR_PUT_U_INT32(ptr, pce.maxlink); 1073 } 1074 if (ae & FATTR4_MAXNAME_MASK) { 1075 IXDR_PUT_U_INT32(ptr, pce.maxname); 1076 } 1077 if (ae & FATTR4_MAXREAD_MASK) { 1078 IXDR_PUT_HYPER(ptr, maxread); 1079 } 1080 if (ae & FATTR4_MAXWRITE_MASK) { 1081 IXDR_PUT_HYPER(ptr, maxwrite); 1082 } 1083 /* Check the redzone boundary */ 1084 if (ptr > ptr_redzone) { 1085 if (nents || IS_MIN_ATTR_MASK(ar)) { 1086 no_space = TRUE; 1087 continue; 1088 } 1089 MINIMIZE_ATTR_MASK(ar); 1090 ae = ar; 1091 ptr = lastentry_ptr; 1092 goto reencode_attrs; 1093 } 1094 } 1095 } 1096 if (ae & 0x00000000ffffffff) { 1097 /* 1098 * Redzone check is done at the end of this section. 1099 * This particular section will encode a maximum of 1100 * 3 * BYTES_PER_XDR_UNIT of data. 1101 */ 1102 if (ae & 1103 (FATTR4_MIMETYPE_MASK | 1104 FATTR4_MODE_MASK | 1105 FATTR4_NO_TRUNC_MASK | 1106 FATTR4_NUMLINKS_MASK)) { 1107 1108 if (ae & FATTR4_MIMETYPE_MASK) { 1109 ASSERT(0); 1110 } 1111 if (ae & FATTR4_MODE_MASK) { 1112 uint_t m = va.va_mode; 1113 IXDR_PUT_U_INT32(ptr, m); 1114 } 1115 if (ae & FATTR4_NO_TRUNC_MASK) { 1116 IXDR_PUT_U_INT32(ptr, true); 1117 } 1118 if (ae & FATTR4_NUMLINKS_MASK) { 1119 IXDR_PUT_U_INT32(ptr, va.va_nlink); 1120 } 1121 /* Check the redzone boundary */ 1122 if (ptr > ptr_redzone) { 1123 if (nents || IS_MIN_ATTR_MASK(ar)) { 1124 no_space = TRUE; 1125 continue; 1126 } 1127 MINIMIZE_ATTR_MASK(ar); 1128 ae = ar; 1129 ptr = lastentry_ptr; 1130 goto reencode_attrs; 1131 } 1132 } 1133 /* 1134 * Redzone check is done before the encoding of the 1135 * owner string since the length is indeterminate. 1136 */ 1137 if (ae & FATTR4_OWNER_MASK) { 1138 if (!lu_set) { 1139 owner_error = nfs_idmap_uid_str(va.va_uid, 1140 &owner, TRUE); 1141 if (!owner_error) { 1142 lu_set = TRUE; 1143 lastuid = va.va_uid; 1144 } 1145 } else { 1146 if (va.va_uid != lastuid) { 1147 if (owner.utf8string_len != 0) { 1148 kmem_free(owner.utf8string_val, 1149 owner.utf8string_len); 1150 owner.utf8string_len = 0; 1151 owner.utf8string_val = NULL; 1152 } 1153 owner_error = nfs_idmap_uid_str( 1154 va.va_uid, 1155 &owner, TRUE); 1156 if (!owner_error) { 1157 lastuid = va.va_uid; 1158 } else { 1159 lu_set = FALSE; 1160 } 1161 } 1162 } 1163 if (!owner_error) { 1164 if ((ptr + 1165 (owner.utf8string_len / 1166 BYTES_PER_XDR_UNIT) 1167 + 2) > ptr_redzone) { 1168 if (nents || 1169 IS_MIN_ATTR_MASK(ar)) { 1170 no_space = TRUE; 1171 continue; 1172 } 1173 MINIMIZE_ATTR_MASK(ar); 1174 ae = ar; 1175 ptr = lastentry_ptr; 1176 goto reencode_attrs; 1177 } 1178 /* encode the LENGTH of owner string */ 1179 IXDR_PUT_U_INT32(ptr, 1180 owner.utf8string_len); 1181 /* encode the RNDUP FILL first */ 1182 rndup = RNDUP(owner.utf8string_len) / 1183 BYTES_PER_XDR_UNIT; 1184 ptr[rndup - 1] = 0; 1185 /* encode the OWNER */ 1186 bcopy(owner.utf8string_val, ptr, 1187 owner.utf8string_len); 1188 ptr += rndup; 1189 } 1190 } 1191 /* 1192 * Redzone check is done before the encoding of the 1193 * group string since the length is indeterminate. 1194 */ 1195 if (ae & FATTR4_OWNER_GROUP_MASK) { 1196 if (!lg_set) { 1197 group_error = 1198 nfs_idmap_gid_str(va.va_gid, 1199 &group, TRUE); 1200 if (!group_error) { 1201 lg_set = TRUE; 1202 lastgid = va.va_gid; 1203 } 1204 } else { 1205 if (va.va_gid != lastgid) { 1206 if (group.utf8string_len != 0) { 1207 kmem_free(group.utf8string_val, 1208 group.utf8string_len); 1209 group.utf8string_len = 0; 1210 group.utf8string_val = NULL; 1211 } 1212 group_error = 1213 nfs_idmap_gid_str(va.va_gid, 1214 &group, TRUE); 1215 if (!group_error) 1216 lastgid = va.va_gid; 1217 else 1218 lg_set = FALSE; 1219 } 1220 } 1221 if (!group_error) { 1222 if ((ptr + 1223 (group.utf8string_len / 1224 BYTES_PER_XDR_UNIT) 1225 + 2) > ptr_redzone) { 1226 if (nents || 1227 IS_MIN_ATTR_MASK(ar)) { 1228 no_space = TRUE; 1229 continue; 1230 } 1231 MINIMIZE_ATTR_MASK(ar); 1232 ae = ar; 1233 ptr = lastentry_ptr; 1234 goto reencode_attrs; 1235 } 1236 /* encode the LENGTH of owner string */ 1237 IXDR_PUT_U_INT32(ptr, 1238 group.utf8string_len); 1239 /* encode the RNDUP FILL first */ 1240 rndup = RNDUP(group.utf8string_len) / 1241 BYTES_PER_XDR_UNIT; 1242 ptr[rndup - 1] = 0; 1243 /* encode the OWNER */ 1244 bcopy(group.utf8string_val, ptr, 1245 group.utf8string_len); 1246 ptr += rndup; 1247 } 1248 } 1249 if (ae & 1250 (FATTR4_QUOTA_AVAIL_HARD_MASK | 1251 FATTR4_QUOTA_AVAIL_SOFT_MASK | 1252 FATTR4_QUOTA_USED_MASK)) { 1253 if (ae & FATTR4_QUOTA_AVAIL_HARD_MASK) { 1254 ASSERT(0); 1255 } 1256 if (ae & FATTR4_QUOTA_AVAIL_SOFT_MASK) { 1257 ASSERT(0); 1258 } 1259 if (ae & FATTR4_QUOTA_USED_MASK) { 1260 ASSERT(0); 1261 } 1262 } 1263 /* 1264 * Redzone check is done at the end of this section. 1265 * This particular section will encode a maximum of 1266 * 10 * BYTES_PER_XDR_UNIT of data. 1267 */ 1268 if (ae & 1269 (FATTR4_RAWDEV_MASK | 1270 FATTR4_SPACE_AVAIL_MASK | 1271 FATTR4_SPACE_FREE_MASK | 1272 FATTR4_SPACE_TOTAL_MASK | 1273 FATTR4_SPACE_USED_MASK | 1274 FATTR4_SYSTEM_MASK)) { 1275 1276 if (ae & FATTR4_RAWDEV_MASK) { 1277 fattr4_rawdev rd; 1278 rd.specdata1 = 1279 (uint32)getmajor(va.va_rdev); 1280 rd.specdata2 = 1281 (uint32)getminor(va.va_rdev); 1282 IXDR_PUT_U_INT32(ptr, rd.specdata1); 1283 IXDR_PUT_U_INT32(ptr, rd.specdata2); 1284 } 1285 if (ae & FATTR4_SPACE_AVAIL_MASK) { 1286 IXDR_PUT_HYPER(ptr, sbe.space_avail); 1287 } 1288 if (ae & FATTR4_SPACE_FREE_MASK) { 1289 IXDR_PUT_HYPER(ptr, sbe.space_free); 1290 } 1291 if (ae & FATTR4_SPACE_TOTAL_MASK) { 1292 IXDR_PUT_HYPER(ptr, sbe.space_total); 1293 } 1294 if (ae & FATTR4_SPACE_USED_MASK) { 1295 u_longlong_t su; 1296 su = (fattr4_space_used) DEV_BSIZE * 1297 (fattr4_space_used) va.va_nblocks; 1298 IXDR_PUT_HYPER(ptr, su); 1299 } 1300 if (ae & FATTR4_SYSTEM_MASK) { 1301 ASSERT(0); 1302 } 1303 /* Check the redzone boundary */ 1304 if (ptr > ptr_redzone) { 1305 if (nents || IS_MIN_ATTR_MASK(ar)) { 1306 no_space = TRUE; 1307 continue; 1308 } 1309 MINIMIZE_ATTR_MASK(ar); 1310 ae = ar; 1311 ptr = lastentry_ptr; 1312 goto reencode_attrs; 1313 } 1314 } 1315 /* 1316 * Redzone check is done at the end of this section. 1317 * This particular section will encode a maximum of 1318 * 14 * BYTES_PER_XDR_UNIT of data. 1319 */ 1320 if (ae & 1321 (FATTR4_TIME_ACCESS_MASK | 1322 FATTR4_TIME_ACCESS_SET_MASK | 1323 FATTR4_TIME_BACKUP_MASK | 1324 FATTR4_TIME_CREATE_MASK | 1325 FATTR4_TIME_DELTA_MASK | 1326 FATTR4_TIME_METADATA_MASK | 1327 FATTR4_TIME_MODIFY_MASK | 1328 FATTR4_TIME_MODIFY_SET_MASK | 1329 FATTR4_MOUNTED_ON_FILEID_MASK)) { 1330 1331 if (ae & FATTR4_TIME_ACCESS_MASK) { 1332 u_longlong_t sec = 1333 (u_longlong_t)va.va_atime.tv_sec; 1334 uint_t nsec = 1335 (uint_t)va.va_atime.tv_nsec; 1336 IXDR_PUT_HYPER(ptr, sec); 1337 IXDR_PUT_INT32(ptr, nsec); 1338 } 1339 if (ae & FATTR4_TIME_ACCESS_SET_MASK) { 1340 ASSERT(0); 1341 } 1342 if (ae & FATTR4_TIME_BACKUP_MASK) { 1343 ASSERT(0); 1344 } 1345 if (ae & FATTR4_TIME_CREATE_MASK) { 1346 ASSERT(0); 1347 } 1348 if (ae & FATTR4_TIME_DELTA_MASK) { 1349 u_longlong_t sec = 0; 1350 uint_t nsec = 1000; 1351 IXDR_PUT_HYPER(ptr, sec); 1352 IXDR_PUT_INT32(ptr, nsec); 1353 } 1354 if (ae & FATTR4_TIME_METADATA_MASK) { 1355 u_longlong_t sec = 1356 (u_longlong_t)va.va_ctime.tv_sec; 1357 uint_t nsec = 1358 (uint_t)va.va_ctime.tv_nsec; 1359 IXDR_PUT_HYPER(ptr, sec); 1360 IXDR_PUT_INT32(ptr, nsec); 1361 } 1362 if (ae & FATTR4_TIME_MODIFY_MASK) { 1363 u_longlong_t sec = 1364 (u_longlong_t)va.va_mtime.tv_sec; 1365 uint_t nsec = 1366 (uint_t)va.va_mtime.tv_nsec; 1367 IXDR_PUT_HYPER(ptr, sec); 1368 IXDR_PUT_INT32(ptr, nsec); 1369 } 1370 if (ae & FATTR4_TIME_MODIFY_SET_MASK) { 1371 ASSERT(0); 1372 } 1373 if (ae & FATTR4_MOUNTED_ON_FILEID_MASK) { 1374 IXDR_PUT_HYPER(ptr, dp->d_ino); 1375 } 1376 /* Check the redzone boundary */ 1377 if (ptr > ptr_redzone) { 1378 if (nents || IS_MIN_ATTR_MASK(ar)) { 1379 no_space = TRUE; 1380 continue; 1381 } 1382 MINIMIZE_ATTR_MASK(ar); 1383 ae = ar; 1384 ptr = lastentry_ptr; 1385 goto reencode_attrs; 1386 } 1387 } 1388 } 1389 1390 /* Reset to directory's vfs info when encoding complete */ 1391 if (vfs_different) { 1392 dsbe = sbe; 1393 dpce = pce; 1394 vfs_different = 0; 1395 } 1396 1397 /* "go back" and encode the attributes' length */ 1398 attr_length = 1399 (char *)ptr - 1400 (char *)attr_offset_ptr - 1401 BYTES_PER_XDR_UNIT; 1402 IXDR_PUT_U_INT32(attr_offset_ptr, attr_length); 1403 1404 /* 1405 * If there was trouble obtaining a mapping for either 1406 * the owner or group attributes, then remove them from 1407 * bitmap4 for this entry and reset the bitmap value 1408 * in the data stream. 1409 */ 1410 if (owner_error || group_error) { 1411 if (owner_error) 1412 ae &= ~FATTR4_OWNER_MASK; 1413 if (group_error) 1414 ae &= ~FATTR4_OWNER_GROUP_MASK; 1415 IXDR_PUT_HYPER(attrmask_ptr, ae); 1416 } 1417 1418 /* END OF ATTRIBUTE ENCODING */ 1419 1420 lastentry_ptr = ptr; 1421 nents++; 1422 rddir_next_offset = dp->d_off; 1423 } 1424 1425 /* 1426 * Check for the case that another VOP_READDIR() has to be done. 1427 * - no space encoding error 1428 * - no entry successfully encoded 1429 * - still more directory to read 1430 */ 1431 if (!no_space && nents == 0 && !iseofdir) 1432 goto readagain; 1433 1434 *cs->statusp = resp->status = NFS4_OK; 1435 1436 /* 1437 * If no_space is set then we terminated prematurely, 1438 * rewind to the last entry and this can never be EOF. 1439 */ 1440 if (no_space) { 1441 ptr = lastentry_ptr; 1442 eof = FALSE; /* ended encoded prematurely */ 1443 } else { 1444 eof = (iseofdir ? TRUE : FALSE); 1445 } 1446 1447 /* 1448 * If we have entries, always return them, otherwise only error 1449 * if we ran out of space. 1450 */ 1451 if (nents || !no_space) { 1452 ASSERT(ptr != NULL); 1453 /* encode the BOOLEAN marking no further entries */ 1454 IXDR_PUT_U_INT32(ptr, false); 1455 /* encode the BOOLEAN signifying end of directory */ 1456 IXDR_PUT_U_INT32(ptr, eof); 1457 1458 resp->data_len = (char *)ptr - (char *)beginning_ptr; 1459 resp->mblk->b_wptr += resp->data_len; 1460 } else { 1461 freeb(mp); 1462 resp->mblk = NULL; 1463 resp->data_len = 0; 1464 *cs->statusp = resp->status = NFS4ERR_TOOSMALL; 1465 } 1466 1467 kmem_free((caddr_t)rddir_data, rddir_data_len); 1468 if (vp) 1469 VN_RELE(vp); 1470 if (owner.utf8string_len != 0) 1471 kmem_free(owner.utf8string_val, owner.utf8string_len); 1472 if (group.utf8string_len != 0) 1473 kmem_free(group.utf8string_val, group.utf8string_len); 1474 } 1475