1 1.2 pgoyette /* $NetBSD: nfs_commonport.c,v 1.2 2016/12/13 22:31:51 pgoyette Exp $ */ 2 1.1 dholland /*- 3 1.1 dholland * Copyright (c) 1989, 1993 4 1.1 dholland * The Regents of the University of California. All rights reserved. 5 1.1 dholland * 6 1.1 dholland * This code is derived from software contributed to Berkeley by 7 1.1 dholland * Rick Macklem at The University of Guelph. 8 1.1 dholland * 9 1.1 dholland * Redistribution and use in source and binary forms, with or without 10 1.1 dholland * modification, are permitted provided that the following conditions 11 1.1 dholland * are met: 12 1.1 dholland * 1. Redistributions of source code must retain the above copyright 13 1.1 dholland * notice, this list of conditions and the following disclaimer. 14 1.1 dholland * 2. Redistributions in binary form must reproduce the above copyright 15 1.1 dholland * notice, this list of conditions and the following disclaimer in the 16 1.1 dholland * documentation and/or other materials provided with the distribution. 17 1.1 dholland * 4. Neither the name of the University nor the names of its contributors 18 1.1 dholland * may be used to endorse or promote products derived from this software 19 1.1 dholland * without specific prior written permission. 20 1.1 dholland * 21 1.1 dholland * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 22 1.1 dholland * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 23 1.1 dholland * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 24 1.1 dholland * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 25 1.1 dholland * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 26 1.1 dholland * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 27 1.1 dholland * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 28 1.1 dholland * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 29 1.1 dholland * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 30 1.1 dholland * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 31 1.1 dholland * SUCH DAMAGE. 32 1.1 dholland * 33 1.1 dholland */ 34 1.1 dholland 35 1.1 dholland #include <sys/cdefs.h> 36 1.2 pgoyette /* __FBSDID("FreeBSD: head/sys/fs/nfs/nfs_commonport.c 304026 2016-08-12 22:44:59Z rmacklem "); */ 37 1.2 pgoyette __RCSID("$NetBSD: nfs_commonport.c,v 1.2 2016/12/13 22:31:51 pgoyette Exp $"); 38 1.1 dholland 39 1.1 dholland /* 40 1.1 dholland * Functions that need to be different for different versions of BSD 41 1.1 dholland * kernel should be kept here, along with any global storage specific 42 1.1 dholland * to this BSD variant. 43 1.1 dholland */ 44 1.2 pgoyette #include <fs/nfs/common/nfsport.h> 45 1.1 dholland #include <sys/sysctl.h> 46 1.1 dholland #include <vm/vm.h> 47 1.1 dholland #include <vm/vm_object.h> 48 1.1 dholland #include <vm/vm_page.h> 49 1.1 dholland #include <vm/vm_param.h> 50 1.1 dholland #include <vm/vm_map.h> 51 1.1 dholland #include <vm/vm_kern.h> 52 1.1 dholland #include <vm/vm_extern.h> 53 1.1 dholland #include <vm/uma.h> 54 1.1 dholland 55 1.1 dholland extern int nfscl_ticks; 56 1.1 dholland extern int nfsrv_nfsuserd; 57 1.1 dholland extern struct nfssockreq nfsrv_nfsuserdsock; 58 1.1 dholland extern void (*nfsd_call_recall)(struct vnode *, int, struct ucred *, 59 1.1 dholland struct thread *); 60 1.1 dholland extern int nfsrv_useacl; 61 1.1 dholland struct mount nfsv4root_mnt; 62 1.1 dholland int newnfs_numnfsd = 0; 63 1.2 pgoyette struct nfsstatsv1 nfsstatsv1; 64 1.1 dholland int nfs_numnfscbd = 0; 65 1.1 dholland int nfscl_debuglevel = 0; 66 1.1 dholland char nfsv4_callbackaddr[INET6_ADDRSTRLEN]; 67 1.1 dholland struct callout newnfsd_callout; 68 1.2 pgoyette int nfsrv_lughashsize = 100; 69 1.1 dholland void (*nfsd_call_servertimer)(void) = NULL; 70 1.1 dholland void (*ncl_call_invalcaches)(struct vnode *) = NULL; 71 1.1 dholland 72 1.1 dholland static int nfs_realign_test; 73 1.1 dholland static int nfs_realign_count; 74 1.2 pgoyette static struct ext_nfsstats oldnfsstats; 75 1.1 dholland 76 1.2 pgoyette SYSCTL_NODE(_vfs, OID_AUTO, nfs, CTLFLAG_RW, 0, "NFS filesystem"); 77 1.1 dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, realign_test, CTLFLAG_RW, &nfs_realign_test, 78 1.1 dholland 0, "Number of realign tests done"); 79 1.1 dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, realign_count, CTLFLAG_RW, &nfs_realign_count, 80 1.1 dholland 0, "Number of mbuf realignments done"); 81 1.1 dholland SYSCTL_STRING(_vfs_nfs, OID_AUTO, callback_addr, CTLFLAG_RW, 82 1.1 dholland nfsv4_callbackaddr, sizeof(nfsv4_callbackaddr), 83 1.1 dholland "NFSv4 callback addr for server to use"); 84 1.1 dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, debuglevel, CTLFLAG_RW, &nfscl_debuglevel, 85 1.2 pgoyette 0, "Debug level for NFS client"); 86 1.2 pgoyette SYSCTL_INT(_vfs_nfs, OID_AUTO, userhashsize, CTLFLAG_RDTUN, &nfsrv_lughashsize, 87 1.2 pgoyette 0, "Size of hash tables for uid/name mapping"); 88 1.1 dholland 89 1.1 dholland /* 90 1.1 dholland * Defines for malloc 91 1.1 dholland * (Here for FreeBSD, since they allocate storage.) 92 1.1 dholland */ 93 1.1 dholland MALLOC_DEFINE(M_NEWNFSRVCACHE, "NFSD srvcache", "NFSD Server Request Cache"); 94 1.1 dholland MALLOC_DEFINE(M_NEWNFSDCLIENT, "NFSD V4client", "NFSD V4 Client Id"); 95 1.1 dholland MALLOC_DEFINE(M_NEWNFSDSTATE, "NFSD V4state", 96 1.1 dholland "NFSD V4 State (Openowner, Open, Lockowner, Delegation"); 97 1.1 dholland MALLOC_DEFINE(M_NEWNFSDLOCK, "NFSD V4lock", "NFSD V4 byte range lock"); 98 1.1 dholland MALLOC_DEFINE(M_NEWNFSDLOCKFILE, "NFSD lckfile", "NFSD Open/Lock file"); 99 1.1 dholland MALLOC_DEFINE(M_NEWNFSSTRING, "NFSD string", "NFSD V4 long string"); 100 1.1 dholland MALLOC_DEFINE(M_NEWNFSUSERGROUP, "NFSD usrgroup", "NFSD V4 User/group map"); 101 1.1 dholland MALLOC_DEFINE(M_NEWNFSDREQ, "NFS req", "NFS request header"); 102 1.1 dholland MALLOC_DEFINE(M_NEWNFSFH, "NFS fh", "NFS file handle"); 103 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLOWNER, "NFSCL owner", "NFSCL Open Owner"); 104 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLOPEN, "NFSCL open", "NFSCL Open"); 105 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLDELEG, "NFSCL deleg", "NFSCL Delegation"); 106 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLCLIENT, "NFSCL client", "NFSCL Client"); 107 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLLOCKOWNER, "NFSCL lckown", "NFSCL Lock Owner"); 108 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLLOCK, "NFSCL lck", "NFSCL Lock"); 109 1.2 pgoyette MALLOC_DEFINE(M_NEWNFSV4NODE, "NEWNFSnode", "NFS vnode"); 110 1.2 pgoyette MALLOC_DEFINE(M_NEWNFSDIRECTIO, "NEWdirectio", "NFS Direct IO buffer"); 111 1.1 dholland MALLOC_DEFINE(M_NEWNFSDIROFF, "NFSCL diroffdiroff", 112 1.2 pgoyette "NFS directory offset data"); 113 1.1 dholland MALLOC_DEFINE(M_NEWNFSDROLLBACK, "NFSD rollback", 114 1.2 pgoyette "NFS local lock rollback"); 115 1.1 dholland MALLOC_DEFINE(M_NEWNFSLAYOUT, "NFSCL layout", "NFSv4.1 Layout"); 116 1.1 dholland MALLOC_DEFINE(M_NEWNFSFLAYOUT, "NFSCL flayout", "NFSv4.1 File Layout"); 117 1.1 dholland MALLOC_DEFINE(M_NEWNFSDEVINFO, "NFSCL devinfo", "NFSv4.1 Device Info"); 118 1.1 dholland MALLOC_DEFINE(M_NEWNFSSOCKREQ, "NFSCL sockreq", "NFS Sock Req"); 119 1.1 dholland MALLOC_DEFINE(M_NEWNFSCLDS, "NFSCL session", "NFSv4.1 Session"); 120 1.1 dholland MALLOC_DEFINE(M_NEWNFSLAYRECALL, "NFSCL layrecall", "NFSv4.1 Layout Recall"); 121 1.2 pgoyette MALLOC_DEFINE(M_NEWNFSDSESSION, "NFSD session", "NFSD Session for a client"); 122 1.1 dholland 123 1.1 dholland /* 124 1.1 dholland * Definition of mutex locks. 125 1.1 dholland * newnfsd_mtx is used in nfsrvd_nfsd() to protect the nfs socket list 126 1.1 dholland * and assorted other nfsd structures. 127 1.1 dholland */ 128 1.1 dholland struct mtx newnfsd_mtx; 129 1.1 dholland struct mtx nfs_sockl_mutex; 130 1.1 dholland struct mtx nfs_state_mutex; 131 1.1 dholland struct mtx nfs_nameid_mutex; 132 1.1 dholland struct mtx nfs_req_mutex; 133 1.1 dholland struct mtx nfs_slock_mutex; 134 1.1 dholland 135 1.1 dholland /* local functions */ 136 1.1 dholland static int nfssvc_call(struct thread *, struct nfssvc_args *, struct ucred *); 137 1.1 dholland 138 1.1 dholland #ifdef __NO_STRICT_ALIGNMENT 139 1.1 dholland /* 140 1.1 dholland * These architectures don't need re-alignment, so just return. 141 1.1 dholland */ 142 1.1 dholland int 143 1.1 dholland newnfs_realign(struct mbuf **pm, int how) 144 1.1 dholland { 145 1.1 dholland 146 1.1 dholland return (0); 147 1.1 dholland } 148 1.1 dholland #else /* !__NO_STRICT_ALIGNMENT */ 149 1.1 dholland /* 150 1.1 dholland * newnfs_realign: 151 1.1 dholland * 152 1.1 dholland * Check for badly aligned mbuf data and realign by copying the unaligned 153 1.1 dholland * portion of the data into a new mbuf chain and freeing the portions 154 1.1 dholland * of the old chain that were replaced. 155 1.1 dholland * 156 1.1 dholland * We cannot simply realign the data within the existing mbuf chain 157 1.1 dholland * because the underlying buffers may contain other rpc commands and 158 1.1 dholland * we cannot afford to overwrite them. 159 1.1 dholland * 160 1.1 dholland * We would prefer to avoid this situation entirely. The situation does 161 1.2 pgoyette * not occur with NFS/UDP and is supposed to only occasionally occur 162 1.1 dholland * with TCP. Use vfs.nfs.realign_count and realign_test to check this. 163 1.1 dholland * 164 1.1 dholland */ 165 1.1 dholland int 166 1.1 dholland newnfs_realign(struct mbuf **pm, int how) 167 1.1 dholland { 168 1.1 dholland struct mbuf *m, *n; 169 1.1 dholland int off, space; 170 1.1 dholland 171 1.1 dholland ++nfs_realign_test; 172 1.1 dholland while ((m = *pm) != NULL) { 173 1.1 dholland if ((m->m_len & 0x3) || (mtod(m, intptr_t) & 0x3)) { 174 1.1 dholland /* 175 1.1 dholland * NB: we can't depend on m_pkthdr.len to help us 176 1.1 dholland * decide what to do here. May not be worth doing 177 1.1 dholland * the m_length calculation as m_copyback will 178 1.1 dholland * expand the mbuf chain below as needed. 179 1.1 dholland */ 180 1.1 dholland space = m_length(m, NULL); 181 1.1 dholland if (space >= MINCLSIZE) { 182 1.1 dholland /* NB: m_copyback handles space > MCLBYTES */ 183 1.1 dholland n = m_getcl(how, MT_DATA, 0); 184 1.1 dholland } else 185 1.1 dholland n = m_get(how, MT_DATA); 186 1.1 dholland if (n == NULL) 187 1.1 dholland return (ENOMEM); 188 1.1 dholland /* 189 1.1 dholland * Align the remainder of the mbuf chain. 190 1.1 dholland */ 191 1.1 dholland n->m_len = 0; 192 1.1 dholland off = 0; 193 1.1 dholland while (m != NULL) { 194 1.1 dholland m_copyback(n, off, m->m_len, mtod(m, caddr_t)); 195 1.1 dholland off += m->m_len; 196 1.1 dholland m = m->m_next; 197 1.1 dholland } 198 1.1 dholland m_freem(*pm); 199 1.1 dholland *pm = n; 200 1.1 dholland ++nfs_realign_count; 201 1.1 dholland break; 202 1.1 dholland } 203 1.1 dholland pm = &m->m_next; 204 1.1 dholland } 205 1.1 dholland 206 1.1 dholland return (0); 207 1.1 dholland } 208 1.1 dholland #endif /* __NO_STRICT_ALIGNMENT */ 209 1.1 dholland 210 1.1 dholland #ifdef notdef 211 1.1 dholland static void 212 1.1 dholland nfsrv_object_create(struct vnode *vp, struct thread *td) 213 1.1 dholland { 214 1.1 dholland 215 1.1 dholland if (vp == NULL || vp->v_type != VREG) 216 1.1 dholland return; 217 1.1 dholland (void) vfs_object_create(vp, td, td->td_ucred); 218 1.1 dholland } 219 1.1 dholland #endif 220 1.1 dholland 221 1.1 dholland /* 222 1.1 dholland * Look up a file name. Basically just initialize stuff and call namei(). 223 1.1 dholland */ 224 1.1 dholland int 225 1.1 dholland nfsrv_lookupfilename(struct nameidata *ndp, char *fname, NFSPROC_T *p) 226 1.1 dholland { 227 1.1 dholland int error; 228 1.1 dholland 229 1.1 dholland NDINIT(ndp, LOOKUP, FOLLOW | LOCKLEAF, UIO_USERSPACE, fname, 230 1.1 dholland p); 231 1.1 dholland error = namei(ndp); 232 1.1 dholland if (!error) { 233 1.1 dholland NDFREE(ndp, NDF_ONLY_PNBUF); 234 1.1 dholland } 235 1.1 dholland return (error); 236 1.1 dholland } 237 1.1 dholland 238 1.1 dholland /* 239 1.1 dholland * Copy NFS uid, gids to the cred structure. 240 1.1 dholland */ 241 1.1 dholland void 242 1.1 dholland newnfs_copycred(struct nfscred *nfscr, struct ucred *cr) 243 1.1 dholland { 244 1.1 dholland 245 1.1 dholland KASSERT(nfscr->nfsc_ngroups >= 0, 246 1.1 dholland ("newnfs_copycred: negative nfsc_ngroups")); 247 1.1 dholland cr->cr_uid = nfscr->nfsc_uid; 248 1.1 dholland crsetgroups(cr, nfscr->nfsc_ngroups, nfscr->nfsc_groups); 249 1.1 dholland } 250 1.1 dholland 251 1.1 dholland /* 252 1.1 dholland * Map args from nfsmsleep() to msleep(). 253 1.1 dholland */ 254 1.1 dholland int 255 1.1 dholland nfsmsleep(void *chan, void *mutex, int prio, const char *wmesg, 256 1.1 dholland struct timespec *ts) 257 1.1 dholland { 258 1.1 dholland u_int64_t nsecval; 259 1.1 dholland int error, timeo; 260 1.1 dholland 261 1.1 dholland if (ts) { 262 1.1 dholland timeo = hz * ts->tv_sec; 263 1.1 dholland nsecval = (u_int64_t)ts->tv_nsec; 264 1.1 dholland nsecval = ((nsecval * ((u_int64_t)hz)) + 500000000) / 265 1.1 dholland 1000000000; 266 1.1 dholland timeo += (int)nsecval; 267 1.1 dholland } else { 268 1.1 dholland timeo = 0; 269 1.1 dholland } 270 1.1 dholland error = msleep(chan, (struct mtx *)mutex, prio, wmesg, timeo); 271 1.1 dholland return (error); 272 1.1 dholland } 273 1.1 dholland 274 1.1 dholland /* 275 1.1 dholland * Get the file system info for the server. For now, just assume FFS. 276 1.1 dholland */ 277 1.1 dholland void 278 1.1 dholland nfsvno_getfs(struct nfsfsinfo *sip, int isdgram) 279 1.1 dholland { 280 1.1 dholland int pref; 281 1.1 dholland 282 1.1 dholland /* 283 1.1 dholland * XXX 284 1.1 dholland * There should be file system VFS OP(s) to get this information. 285 1.1 dholland * For now, assume ufs. 286 1.1 dholland */ 287 1.1 dholland if (isdgram) 288 1.1 dholland pref = NFS_MAXDGRAMDATA; 289 1.1 dholland else 290 1.2 pgoyette pref = NFS_SRVMAXIO; 291 1.2 pgoyette sip->fs_rtmax = NFS_SRVMAXIO; 292 1.1 dholland sip->fs_rtpref = pref; 293 1.1 dholland sip->fs_rtmult = NFS_FABLKSIZE; 294 1.2 pgoyette sip->fs_wtmax = NFS_SRVMAXIO; 295 1.1 dholland sip->fs_wtpref = pref; 296 1.1 dholland sip->fs_wtmult = NFS_FABLKSIZE; 297 1.1 dholland sip->fs_dtpref = pref; 298 1.1 dholland sip->fs_maxfilesize = 0xffffffffffffffffull; 299 1.1 dholland sip->fs_timedelta.tv_sec = 0; 300 1.1 dholland sip->fs_timedelta.tv_nsec = 1; 301 1.1 dholland sip->fs_properties = (NFSV3FSINFO_LINK | 302 1.1 dholland NFSV3FSINFO_SYMLINK | NFSV3FSINFO_HOMOGENEOUS | 303 1.1 dholland NFSV3FSINFO_CANSETTIME); 304 1.1 dholland } 305 1.1 dholland 306 1.1 dholland /* 307 1.1 dholland * Do the pathconf vnode op. 308 1.1 dholland */ 309 1.1 dholland int 310 1.1 dholland nfsvno_pathconf(struct vnode *vp, int flag, register_t *retf, 311 1.1 dholland struct ucred *cred, struct thread *p) 312 1.1 dholland { 313 1.1 dholland int error; 314 1.1 dholland 315 1.1 dholland error = VOP_PATHCONF(vp, flag, retf); 316 1.1 dholland if (error == EOPNOTSUPP || error == EINVAL) { 317 1.1 dholland /* 318 1.1 dholland * Some file systems return EINVAL for name arguments not 319 1.1 dholland * supported and some return EOPNOTSUPP for this case. 320 1.1 dholland * So the NFSv3 Pathconf RPC doesn't fail for these cases, 321 1.1 dholland * just fake them. 322 1.1 dholland */ 323 1.1 dholland switch (flag) { 324 1.1 dholland case _PC_LINK_MAX: 325 1.1 dholland *retf = LINK_MAX; 326 1.1 dholland break; 327 1.1 dholland case _PC_NAME_MAX: 328 1.1 dholland *retf = NAME_MAX; 329 1.1 dholland break; 330 1.1 dholland case _PC_CHOWN_RESTRICTED: 331 1.1 dholland *retf = 1; 332 1.1 dholland break; 333 1.1 dholland case _PC_NO_TRUNC: 334 1.1 dholland *retf = 1; 335 1.1 dholland break; 336 1.1 dholland default: 337 1.1 dholland /* 338 1.1 dholland * Only happens if a _PC_xxx is added to the server, 339 1.1 dholland * but this isn't updated. 340 1.1 dholland */ 341 1.1 dholland *retf = 0; 342 1.1 dholland printf("nfsrvd pathconf flag=%d not supp\n", flag); 343 1.2 pgoyette } 344 1.1 dholland error = 0; 345 1.1 dholland } 346 1.1 dholland NFSEXITCODE(error); 347 1.1 dholland return (error); 348 1.1 dholland } 349 1.1 dholland 350 1.1 dholland /* Fake nfsrv_atroot. Just return 0 */ 351 1.1 dholland int 352 1.1 dholland nfsrv_atroot(struct vnode *vp, long *retp) 353 1.1 dholland { 354 1.1 dholland 355 1.1 dholland return (0); 356 1.1 dholland } 357 1.1 dholland 358 1.1 dholland /* 359 1.1 dholland * Set the credentials to refer to root. 360 1.1 dholland * If only the various BSDen could agree on whether cr_gid is a separate 361 1.1 dholland * field or cr_groups[0]... 362 1.1 dholland */ 363 1.1 dholland void 364 1.1 dholland newnfs_setroot(struct ucred *cred) 365 1.1 dholland { 366 1.1 dholland 367 1.1 dholland cred->cr_uid = 0; 368 1.1 dholland cred->cr_groups[0] = 0; 369 1.1 dholland cred->cr_ngroups = 1; 370 1.1 dholland } 371 1.1 dholland 372 1.1 dholland /* 373 1.1 dholland * Get the client credential. Used for Renew and recovery. 374 1.1 dholland */ 375 1.1 dholland struct ucred * 376 1.1 dholland newnfs_getcred(void) 377 1.1 dholland { 378 1.1 dholland struct ucred *cred; 379 1.1 dholland struct thread *td = curthread; 380 1.1 dholland 381 1.1 dholland cred = crdup(td->td_ucred); 382 1.1 dholland newnfs_setroot(cred); 383 1.1 dholland return (cred); 384 1.1 dholland } 385 1.1 dholland 386 1.1 dholland /* 387 1.1 dholland * Nfs timer routine 388 1.1 dholland * Call the nfsd's timer function once/sec. 389 1.1 dholland */ 390 1.1 dholland void 391 1.1 dholland newnfs_timer(void *arg) 392 1.1 dholland { 393 1.1 dholland static time_t lasttime = 0; 394 1.1 dholland /* 395 1.1 dholland * Call the server timer, if set up. 396 1.1 dholland * The argument indicates if it is the next second and therefore 397 1.1 dholland * leases should be checked. 398 1.1 dholland */ 399 1.1 dholland if (lasttime != NFSD_MONOSEC) { 400 1.1 dholland lasttime = NFSD_MONOSEC; 401 1.1 dholland if (nfsd_call_servertimer != NULL) 402 1.1 dholland (*nfsd_call_servertimer)(); 403 1.1 dholland } 404 1.1 dholland callout_reset(&newnfsd_callout, nfscl_ticks, newnfs_timer, NULL); 405 1.1 dholland } 406 1.1 dholland 407 1.1 dholland 408 1.1 dholland /* 409 1.1 dholland * Sleep for a short period of time unless errval == NFSERR_GRACE, where 410 1.1 dholland * the sleep should be for 5 seconds. 411 1.1 dholland * Since lbolt doesn't exist in FreeBSD-CURRENT, just use a timeout on 412 1.1 dholland * an event that never gets a wakeup. Only return EINTR or 0. 413 1.1 dholland */ 414 1.1 dholland int 415 1.1 dholland nfs_catnap(int prio, int errval, const char *wmesg) 416 1.1 dholland { 417 1.1 dholland static int non_event; 418 1.1 dholland int ret; 419 1.1 dholland 420 1.1 dholland if (errval == NFSERR_GRACE) 421 1.1 dholland ret = tsleep(&non_event, prio, wmesg, 5 * hz); 422 1.1 dholland else 423 1.1 dholland ret = tsleep(&non_event, prio, wmesg, 1); 424 1.1 dholland if (ret != EINTR) 425 1.1 dholland ret = 0; 426 1.1 dholland return (ret); 427 1.1 dholland } 428 1.1 dholland 429 1.1 dholland /* 430 1.1 dholland * Get referral. For now, just fail. 431 1.1 dholland */ 432 1.1 dholland struct nfsreferral * 433 1.1 dholland nfsv4root_getreferral(struct vnode *vp, struct vnode *dvp, u_int32_t fileno) 434 1.1 dholland { 435 1.1 dholland 436 1.1 dholland return (NULL); 437 1.1 dholland } 438 1.1 dholland 439 1.1 dholland static int 440 1.1 dholland nfssvc_nfscommon(struct thread *td, struct nfssvc_args *uap) 441 1.1 dholland { 442 1.1 dholland int error; 443 1.1 dholland 444 1.1 dholland error = nfssvc_call(td, uap, td->td_ucred); 445 1.1 dholland NFSEXITCODE(error); 446 1.1 dholland return (error); 447 1.1 dholland } 448 1.1 dholland 449 1.1 dholland static int 450 1.1 dholland nfssvc_call(struct thread *p, struct nfssvc_args *uap, struct ucred *cred) 451 1.1 dholland { 452 1.2 pgoyette int error = EINVAL, i, j; 453 1.1 dholland struct nfsd_idargs nid; 454 1.2 pgoyette struct nfsd_oidargs onid; 455 1.2 pgoyette struct { 456 1.2 pgoyette int vers; /* Just the first field of nfsstats. */ 457 1.2 pgoyette } nfsstatver; 458 1.1 dholland 459 1.1 dholland if (uap->flag & NFSSVC_IDNAME) { 460 1.2 pgoyette if ((uap->flag & NFSSVC_NEWSTRUCT) != 0) 461 1.2 pgoyette error = copyin(uap->argp, &nid, sizeof(nid)); 462 1.2 pgoyette else { 463 1.2 pgoyette error = copyin(uap->argp, &onid, sizeof(onid)); 464 1.2 pgoyette if (error == 0) { 465 1.2 pgoyette nid.nid_flag = onid.nid_flag; 466 1.2 pgoyette nid.nid_uid = onid.nid_uid; 467 1.2 pgoyette nid.nid_gid = onid.nid_gid; 468 1.2 pgoyette nid.nid_usermax = onid.nid_usermax; 469 1.2 pgoyette nid.nid_usertimeout = onid.nid_usertimeout; 470 1.2 pgoyette nid.nid_name = onid.nid_name; 471 1.2 pgoyette nid.nid_namelen = onid.nid_namelen; 472 1.2 pgoyette nid.nid_ngroup = 0; 473 1.2 pgoyette nid.nid_grps = NULL; 474 1.2 pgoyette } 475 1.2 pgoyette } 476 1.1 dholland if (error) 477 1.1 dholland goto out; 478 1.1 dholland error = nfssvc_idname(&nid); 479 1.1 dholland goto out; 480 1.1 dholland } else if (uap->flag & NFSSVC_GETSTATS) { 481 1.2 pgoyette if ((uap->flag & NFSSVC_NEWSTRUCT) == 0) { 482 1.2 pgoyette /* Copy fields to the old ext_nfsstat structure. */ 483 1.2 pgoyette oldnfsstats.attrcache_hits = 484 1.2 pgoyette nfsstatsv1.attrcache_hits; 485 1.2 pgoyette oldnfsstats.attrcache_misses = 486 1.2 pgoyette nfsstatsv1.attrcache_misses; 487 1.2 pgoyette oldnfsstats.lookupcache_hits = 488 1.2 pgoyette nfsstatsv1.lookupcache_hits; 489 1.2 pgoyette oldnfsstats.lookupcache_misses = 490 1.2 pgoyette nfsstatsv1.lookupcache_misses; 491 1.2 pgoyette oldnfsstats.direofcache_hits = 492 1.2 pgoyette nfsstatsv1.direofcache_hits; 493 1.2 pgoyette oldnfsstats.direofcache_misses = 494 1.2 pgoyette nfsstatsv1.direofcache_misses; 495 1.2 pgoyette oldnfsstats.accesscache_hits = 496 1.2 pgoyette nfsstatsv1.accesscache_hits; 497 1.2 pgoyette oldnfsstats.accesscache_misses = 498 1.2 pgoyette nfsstatsv1.accesscache_misses; 499 1.2 pgoyette oldnfsstats.biocache_reads = 500 1.2 pgoyette nfsstatsv1.biocache_reads; 501 1.2 pgoyette oldnfsstats.read_bios = 502 1.2 pgoyette nfsstatsv1.read_bios; 503 1.2 pgoyette oldnfsstats.read_physios = 504 1.2 pgoyette nfsstatsv1.read_physios; 505 1.2 pgoyette oldnfsstats.biocache_writes = 506 1.2 pgoyette nfsstatsv1.biocache_writes; 507 1.2 pgoyette oldnfsstats.write_bios = 508 1.2 pgoyette nfsstatsv1.write_bios; 509 1.2 pgoyette oldnfsstats.write_physios = 510 1.2 pgoyette nfsstatsv1.write_physios; 511 1.2 pgoyette oldnfsstats.biocache_readlinks = 512 1.2 pgoyette nfsstatsv1.biocache_readlinks; 513 1.2 pgoyette oldnfsstats.readlink_bios = 514 1.2 pgoyette nfsstatsv1.readlink_bios; 515 1.2 pgoyette oldnfsstats.biocache_readdirs = 516 1.2 pgoyette nfsstatsv1.biocache_readdirs; 517 1.2 pgoyette oldnfsstats.readdir_bios = 518 1.2 pgoyette nfsstatsv1.readdir_bios; 519 1.2 pgoyette for (i = 0; i < NFSV4_NPROCS; i++) 520 1.2 pgoyette oldnfsstats.rpccnt[i] = nfsstatsv1.rpccnt[i]; 521 1.2 pgoyette oldnfsstats.rpcretries = nfsstatsv1.rpcretries; 522 1.2 pgoyette for (i = 0; i < NFSV4OP_NOPS; i++) 523 1.2 pgoyette oldnfsstats.srvrpccnt[i] = 524 1.2 pgoyette nfsstatsv1.srvrpccnt[i]; 525 1.2 pgoyette for (i = NFSV42_NOPS, j = NFSV4OP_NOPS; 526 1.2 pgoyette i < NFSV42_NOPS + NFSV4OP_FAKENOPS; i++, j++) 527 1.2 pgoyette oldnfsstats.srvrpccnt[j] = 528 1.2 pgoyette nfsstatsv1.srvrpccnt[i]; 529 1.2 pgoyette oldnfsstats.srvrpc_errs = nfsstatsv1.srvrpc_errs; 530 1.2 pgoyette oldnfsstats.srv_errs = nfsstatsv1.srv_errs; 531 1.2 pgoyette oldnfsstats.rpcrequests = nfsstatsv1.rpcrequests; 532 1.2 pgoyette oldnfsstats.rpctimeouts = nfsstatsv1.rpctimeouts; 533 1.2 pgoyette oldnfsstats.rpcunexpected = nfsstatsv1.rpcunexpected; 534 1.2 pgoyette oldnfsstats.rpcinvalid = nfsstatsv1.rpcinvalid; 535 1.2 pgoyette oldnfsstats.srvcache_inproghits = 536 1.2 pgoyette nfsstatsv1.srvcache_inproghits; 537 1.2 pgoyette oldnfsstats.srvcache_idemdonehits = 538 1.2 pgoyette nfsstatsv1.srvcache_idemdonehits; 539 1.2 pgoyette oldnfsstats.srvcache_nonidemdonehits = 540 1.2 pgoyette nfsstatsv1.srvcache_nonidemdonehits; 541 1.2 pgoyette oldnfsstats.srvcache_misses = 542 1.2 pgoyette nfsstatsv1.srvcache_misses; 543 1.2 pgoyette oldnfsstats.srvcache_tcppeak = 544 1.2 pgoyette nfsstatsv1.srvcache_tcppeak; 545 1.2 pgoyette oldnfsstats.srvcache_size = nfsstatsv1.srvcache_size; 546 1.2 pgoyette oldnfsstats.srvclients = nfsstatsv1.srvclients; 547 1.2 pgoyette oldnfsstats.srvopenowners = nfsstatsv1.srvopenowners; 548 1.2 pgoyette oldnfsstats.srvopens = nfsstatsv1.srvopens; 549 1.2 pgoyette oldnfsstats.srvlockowners = nfsstatsv1.srvlockowners; 550 1.2 pgoyette oldnfsstats.srvlocks = nfsstatsv1.srvlocks; 551 1.2 pgoyette oldnfsstats.srvdelegates = nfsstatsv1.srvdelegates; 552 1.2 pgoyette for (i = 0; i < NFSV4OP_CBNOPS; i++) 553 1.2 pgoyette oldnfsstats.cbrpccnt[i] = 554 1.2 pgoyette nfsstatsv1.cbrpccnt[i]; 555 1.2 pgoyette oldnfsstats.clopenowners = nfsstatsv1.clopenowners; 556 1.2 pgoyette oldnfsstats.clopens = nfsstatsv1.clopens; 557 1.2 pgoyette oldnfsstats.cllockowners = nfsstatsv1.cllockowners; 558 1.2 pgoyette oldnfsstats.cllocks = nfsstatsv1.cllocks; 559 1.2 pgoyette oldnfsstats.cldelegates = nfsstatsv1.cldelegates; 560 1.2 pgoyette oldnfsstats.cllocalopenowners = 561 1.2 pgoyette nfsstatsv1.cllocalopenowners; 562 1.2 pgoyette oldnfsstats.cllocalopens = nfsstatsv1.cllocalopens; 563 1.2 pgoyette oldnfsstats.cllocallockowners = 564 1.2 pgoyette nfsstatsv1.cllocallockowners; 565 1.2 pgoyette oldnfsstats.cllocallocks = nfsstatsv1.cllocallocks; 566 1.2 pgoyette error = copyout(&oldnfsstats, uap->argp, 567 1.2 pgoyette sizeof (oldnfsstats)); 568 1.2 pgoyette } else { 569 1.2 pgoyette error = copyin(uap->argp, &nfsstatver, 570 1.2 pgoyette sizeof(nfsstatver)); 571 1.2 pgoyette if (error == 0 && nfsstatver.vers != NFSSTATS_V1) 572 1.2 pgoyette error = EPERM; 573 1.2 pgoyette if (error == 0) 574 1.2 pgoyette error = copyout(&nfsstatsv1, uap->argp, 575 1.2 pgoyette sizeof (nfsstatsv1)); 576 1.2 pgoyette } 577 1.1 dholland if (error == 0) { 578 1.1 dholland if ((uap->flag & NFSSVC_ZEROCLTSTATS) != 0) { 579 1.2 pgoyette nfsstatsv1.attrcache_hits = 0; 580 1.2 pgoyette nfsstatsv1.attrcache_misses = 0; 581 1.2 pgoyette nfsstatsv1.lookupcache_hits = 0; 582 1.2 pgoyette nfsstatsv1.lookupcache_misses = 0; 583 1.2 pgoyette nfsstatsv1.direofcache_hits = 0; 584 1.2 pgoyette nfsstatsv1.direofcache_misses = 0; 585 1.2 pgoyette nfsstatsv1.accesscache_hits = 0; 586 1.2 pgoyette nfsstatsv1.accesscache_misses = 0; 587 1.2 pgoyette nfsstatsv1.biocache_reads = 0; 588 1.2 pgoyette nfsstatsv1.read_bios = 0; 589 1.2 pgoyette nfsstatsv1.read_physios = 0; 590 1.2 pgoyette nfsstatsv1.biocache_writes = 0; 591 1.2 pgoyette nfsstatsv1.write_bios = 0; 592 1.2 pgoyette nfsstatsv1.write_physios = 0; 593 1.2 pgoyette nfsstatsv1.biocache_readlinks = 0; 594 1.2 pgoyette nfsstatsv1.readlink_bios = 0; 595 1.2 pgoyette nfsstatsv1.biocache_readdirs = 0; 596 1.2 pgoyette nfsstatsv1.readdir_bios = 0; 597 1.2 pgoyette nfsstatsv1.rpcretries = 0; 598 1.2 pgoyette nfsstatsv1.rpcrequests = 0; 599 1.2 pgoyette nfsstatsv1.rpctimeouts = 0; 600 1.2 pgoyette nfsstatsv1.rpcunexpected = 0; 601 1.2 pgoyette nfsstatsv1.rpcinvalid = 0; 602 1.2 pgoyette bzero(nfsstatsv1.rpccnt, 603 1.2 pgoyette sizeof(nfsstatsv1.rpccnt)); 604 1.1 dholland } 605 1.1 dholland if ((uap->flag & NFSSVC_ZEROSRVSTATS) != 0) { 606 1.2 pgoyette nfsstatsv1.srvrpc_errs = 0; 607 1.2 pgoyette nfsstatsv1.srv_errs = 0; 608 1.2 pgoyette nfsstatsv1.srvcache_inproghits = 0; 609 1.2 pgoyette nfsstatsv1.srvcache_idemdonehits = 0; 610 1.2 pgoyette nfsstatsv1.srvcache_nonidemdonehits = 0; 611 1.2 pgoyette nfsstatsv1.srvcache_misses = 0; 612 1.2 pgoyette nfsstatsv1.srvcache_tcppeak = 0; 613 1.2 pgoyette nfsstatsv1.srvclients = 0; 614 1.2 pgoyette nfsstatsv1.srvopenowners = 0; 615 1.2 pgoyette nfsstatsv1.srvopens = 0; 616 1.2 pgoyette nfsstatsv1.srvlockowners = 0; 617 1.2 pgoyette nfsstatsv1.srvlocks = 0; 618 1.2 pgoyette nfsstatsv1.srvdelegates = 0; 619 1.2 pgoyette nfsstatsv1.clopenowners = 0; 620 1.2 pgoyette nfsstatsv1.clopens = 0; 621 1.2 pgoyette nfsstatsv1.cllockowners = 0; 622 1.2 pgoyette nfsstatsv1.cllocks = 0; 623 1.2 pgoyette nfsstatsv1.cldelegates = 0; 624 1.2 pgoyette nfsstatsv1.cllocalopenowners = 0; 625 1.2 pgoyette nfsstatsv1.cllocalopens = 0; 626 1.2 pgoyette nfsstatsv1.cllocallockowners = 0; 627 1.2 pgoyette nfsstatsv1.cllocallocks = 0; 628 1.2 pgoyette bzero(nfsstatsv1.srvrpccnt, 629 1.2 pgoyette sizeof(nfsstatsv1.srvrpccnt)); 630 1.2 pgoyette bzero(nfsstatsv1.cbrpccnt, 631 1.2 pgoyette sizeof(nfsstatsv1.cbrpccnt)); 632 1.1 dholland } 633 1.1 dholland } 634 1.1 dholland goto out; 635 1.1 dholland } else if (uap->flag & NFSSVC_NFSUSERDPORT) { 636 1.1 dholland u_short sockport; 637 1.1 dholland 638 1.1 dholland error = copyin(uap->argp, (caddr_t)&sockport, 639 1.1 dholland sizeof (u_short)); 640 1.1 dholland if (!error) 641 1.1 dholland error = nfsrv_nfsuserdport(sockport, p); 642 1.1 dholland } else if (uap->flag & NFSSVC_NFSUSERDDELPORT) { 643 1.1 dholland nfsrv_nfsuserddelport(); 644 1.1 dholland error = 0; 645 1.1 dholland } 646 1.1 dholland 647 1.1 dholland out: 648 1.1 dholland NFSEXITCODE(error); 649 1.1 dholland return (error); 650 1.1 dholland } 651 1.1 dholland 652 1.1 dholland /* 653 1.1 dholland * called by all three modevent routines, so that it gets things 654 1.1 dholland * initialized soon enough. 655 1.1 dholland */ 656 1.1 dholland void 657 1.1 dholland newnfs_portinit(void) 658 1.1 dholland { 659 1.1 dholland static int inited = 0; 660 1.1 dholland 661 1.1 dholland if (inited) 662 1.1 dholland return; 663 1.1 dholland inited = 1; 664 1.1 dholland /* Initialize SMP locks used by both client and server. */ 665 1.1 dholland mtx_init(&newnfsd_mtx, "newnfsd_mtx", NULL, MTX_DEF); 666 1.1 dholland mtx_init(&nfs_state_mutex, "nfs_state_mutex", NULL, MTX_DEF); 667 1.1 dholland } 668 1.1 dholland 669 1.1 dholland /* 670 1.1 dholland * Determine if the file system supports NFSv4 ACLs. 671 1.1 dholland * Return 1 if it does, 0 otherwise. 672 1.1 dholland */ 673 1.1 dholland int 674 1.1 dholland nfs_supportsnfsv4acls(struct vnode *vp) 675 1.1 dholland { 676 1.1 dholland int error; 677 1.1 dholland register_t retval; 678 1.1 dholland 679 1.1 dholland ASSERT_VOP_LOCKED(vp, "nfs supports nfsv4acls"); 680 1.1 dholland 681 1.1 dholland if (nfsrv_useacl == 0) 682 1.1 dholland return (0); 683 1.1 dholland error = VOP_PATHCONF(vp, _PC_ACL_NFS4, &retval); 684 1.1 dholland if (error == 0 && retval != 0) 685 1.1 dholland return (1); 686 1.1 dholland return (0); 687 1.1 dholland } 688 1.1 dholland 689 1.1 dholland extern int (*nfsd_call_nfscommon)(struct thread *, struct nfssvc_args *); 690 1.1 dholland 691 1.1 dholland /* 692 1.1 dholland * Called once to initialize data structures... 693 1.1 dholland */ 694 1.1 dholland static int 695 1.1 dholland nfscommon_modevent(module_t mod, int type, void *data) 696 1.1 dholland { 697 1.1 dholland int error = 0; 698 1.1 dholland static int loaded = 0; 699 1.1 dholland 700 1.1 dholland switch (type) { 701 1.1 dholland case MOD_LOAD: 702 1.1 dholland if (loaded) 703 1.1 dholland goto out; 704 1.1 dholland newnfs_portinit(); 705 1.1 dholland mtx_init(&nfs_nameid_mutex, "nfs_nameid_mutex", NULL, MTX_DEF); 706 1.1 dholland mtx_init(&nfs_sockl_mutex, "nfs_sockl_mutex", NULL, MTX_DEF); 707 1.1 dholland mtx_init(&nfs_slock_mutex, "nfs_slock_mutex", NULL, MTX_DEF); 708 1.1 dholland mtx_init(&nfs_req_mutex, "nfs_req_mutex", NULL, MTX_DEF); 709 1.1 dholland mtx_init(&nfsrv_nfsuserdsock.nr_mtx, "nfsuserd", NULL, 710 1.1 dholland MTX_DEF); 711 1.2 pgoyette callout_init(&newnfsd_callout, 1); 712 1.1 dholland newnfs_init(); 713 1.1 dholland nfsd_call_nfscommon = nfssvc_nfscommon; 714 1.1 dholland loaded = 1; 715 1.1 dholland break; 716 1.1 dholland 717 1.1 dholland case MOD_UNLOAD: 718 1.1 dholland if (newnfs_numnfsd != 0 || nfsrv_nfsuserd != 0 || 719 1.1 dholland nfs_numnfscbd != 0) { 720 1.1 dholland error = EBUSY; 721 1.1 dholland break; 722 1.1 dholland } 723 1.1 dholland 724 1.1 dholland nfsd_call_nfscommon = NULL; 725 1.1 dholland callout_drain(&newnfsd_callout); 726 1.2 pgoyette /* Clean out the name<-->id cache. */ 727 1.2 pgoyette nfsrv_cleanusergroup(); 728 1.1 dholland /* and get rid of the mutexes */ 729 1.1 dholland mtx_destroy(&nfs_nameid_mutex); 730 1.1 dholland mtx_destroy(&newnfsd_mtx); 731 1.1 dholland mtx_destroy(&nfs_state_mutex); 732 1.1 dholland mtx_destroy(&nfs_sockl_mutex); 733 1.1 dholland mtx_destroy(&nfs_slock_mutex); 734 1.1 dholland mtx_destroy(&nfs_req_mutex); 735 1.1 dholland mtx_destroy(&nfsrv_nfsuserdsock.nr_mtx); 736 1.1 dholland loaded = 0; 737 1.1 dholland break; 738 1.1 dholland default: 739 1.1 dholland error = EOPNOTSUPP; 740 1.1 dholland break; 741 1.1 dholland } 742 1.1 dholland 743 1.1 dholland out: 744 1.1 dholland NFSEXITCODE(error); 745 1.1 dholland return error; 746 1.1 dholland } 747 1.1 dholland static moduledata_t nfscommon_mod = { 748 1.1 dholland "nfscommon", 749 1.1 dholland nfscommon_modevent, 750 1.1 dholland NULL, 751 1.1 dholland }; 752 1.1 dholland DECLARE_MODULE(nfscommon, nfscommon_mod, SI_SUB_VFS, SI_ORDER_ANY); 753 1.1 dholland 754 1.1 dholland /* So that loader and kldload(2) can find us, wherever we are.. */ 755 1.1 dholland MODULE_VERSION(nfscommon, 1); 756 1.1 dholland MODULE_DEPEND(nfscommon, nfssvc, 1, 1, 1); 757 1.1 dholland MODULE_DEPEND(nfscommon, krpc, 1, 1, 1); 758 1.1 dholland 759