Home | History | Annotate | Line # | Download | only in mount_9p
node.c revision 1.3
      1 /*	$NetBSD: node.c,v 1.3 2007/05/04 18:17:34 pooka Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2007  Antti Kantee.  All Rights Reserved.
      5  *
      6  * Redistribution and use in source and binary forms, with or without
      7  * modification, are permitted provided that the following conditions
      8  * are met:
      9  * 1. Redistributions of source code must retain the above copyright
     10  *    notice, this list of conditions and the following disclaimer.
     11  * 2. Redistributions in binary form must reproduce the above copyright
     12  *    notice, this list of conditions and the following disclaimer in the
     13  *    documentation and/or other materials provided with the distribution.
     14  *
     15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     16  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     17  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     18  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     19  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     20  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     21  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     22  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     23  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     24  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     25  * SUCH DAMAGE.
     26  */
     27 
     28 #include <sys/cdefs.h>
     29 #ifndef lint
     30 __RCSID("$NetBSD: node.c,v 1.3 2007/05/04 18:17:34 pooka Exp $");
     31 #endif /* !lint */
     32 
     33 #include <assert.h>
     34 #include <errno.h>
     35 #include <puffs.h>
     36 #include <stdio.h>
     37 
     38 #include "ninepuffs.h"
     39 #include "nineproto.h"
     40 
     41 static void *
     42 nodecmp(struct puffs_usermount *pu, struct puffs_node *pn, void *arg)
     43 {
     44 	struct vattr *vap = &pn->pn_va;
     45 	struct qid9p *qid = arg;
     46 
     47 	if (vap->va_fileid == qid->qidpath)
     48 		return pn;
     49 
     50 	return NULL;
     51 }
     52 
     53 int
     54 puffs9p_node_lookup(struct puffs_cc *pcc, void *opc, void **newnode,
     55 	enum vtype *newtype, voff_t *newsize, dev_t *newrdev,
     56 	const struct puffs_cn *pcn)
     57 {
     58 	AUTOVAR(pcc);
     59 	struct puffs_usermount *pu = puffs_cc_getusermount(pcc);
     60 	struct puffs_node *pn, *pn_dir = opc;
     61 	struct p9pnode *p9n_dir = pn_dir->pn_data;
     62 	p9ptag_t tfid = NEXTFID(p9p);
     63 	struct qid9p newqid;
     64 	uint16_t nqid;
     65 
     66 	p9pbuf_put_1(pb, P9PROTO_T_WALK);
     67 	p9pbuf_put_2(pb, tag);
     68 	p9pbuf_put_4(pb, p9n_dir->fid_base);
     69 	p9pbuf_put_4(pb, tfid);
     70 	p9pbuf_put_2(pb, 1);
     71 	p9pbuf_put_str(pb, pcn->pcn_name);
     72 
     73 	outbuf_enqueue(p9p, pb, pcc, tag);
     74 	puffs_cc_yield(pcc);
     75 
     76 	rv = proto_expect_walk_nqids(pb, &nqid);
     77 	if (rv) {
     78 		rv = ENOENT;
     79 		goto out;
     80 	}
     81 	if (nqid != 1 || !proto_getqid(pb, &newqid)) {
     82 		rv = EPROTO;
     83 		goto out;
     84 	}
     85 
     86 	pn = puffs_pn_nodewalk(pu, nodecmp, &newqid);
     87 	if (pn == NULL)
     88 		pn = newp9pnode_qid(pu, &newqid, tfid);
     89 	else
     90 		proto_cc_clunkfid(pcc, tfid, 0);
     91 
     92 	*newnode = pn;
     93 	*newtype = pn->pn_va.va_type;
     94 	*newsize = pn->pn_va.va_size;
     95 	*newrdev = pn->pn_va.va_rdev;
     96 
     97  out:
     98 	RETURN(rv);
     99 }
    100 
    101 /*
    102  * Problem is that 9P doesn't allow seeking into a directory.  So we
    103  * maintain a list of active fids for any given directory.  They
    104  * start living at the first read and exist either until the directory
    105  * is closed or until they reach the end.
    106  */
    107 int
    108 puffs9p_node_readdir(struct puffs_cc *pcc, void *opc, struct dirent *dent,
    109 	off_t *readoff, size_t *reslen, const struct puffs_cred *pcr,
    110 	int *eofflag, off_t *cookies, size_t *ncookies)
    111 {
    112 	AUTOVAR(pcc);
    113 	struct puffs_node *pn = opc;
    114 	struct p9pnode *p9n = pn->pn_data;
    115 	struct vattr va;
    116 	struct dirfid *dfp;
    117 	char *name;
    118 	uint32_t count;
    119 	uint16_t statsize;
    120 
    121 	rv = getdfwithoffset(pcc, p9n, *readoff, &dfp);
    122 	if (rv)
    123 		goto out;
    124 
    125 	tag = NEXTTAG(p9p);
    126 	p9pbuf_put_1(pb, P9PROTO_T_READ);
    127 	p9pbuf_put_2(pb, tag);
    128 	p9pbuf_put_4(pb, dfp->fid);
    129 	p9pbuf_put_8(pb, *readoff);
    130 	p9pbuf_put_4(pb, *reslen); /* XXX */
    131 	outbuf_enqueue(p9p, pb, pcc, tag);
    132 
    133 	puffs_cc_yield(pcc);
    134 
    135 	p9pbuf_get_4(pb, &count);
    136 
    137 	/*
    138 	 * if count is 0, assume we at end-of-dir.  dfp is no longer
    139 	 * useful, so nuke it
    140 	 */
    141 	if (count == 0) {
    142 		*eofflag = 1;
    143 		releasedf(pcc, dfp);
    144 		goto out;
    145 	}
    146 
    147 	while (count > 0) {
    148 		if (!proto_getstat(pb, &va, &name, &statsize)) {
    149 			rv = EINVAL;
    150 			goto out;
    151 		}
    152 
    153 		puffs_nextdent(&dent, name, va.va_fileid,
    154 		    puffs_vtype2dt(va.va_type), reslen);
    155 
    156 		count -= statsize;
    157 		*readoff += statsize;
    158 		dfp->seekoff += statsize;
    159 	}
    160 
    161 	storedf(p9n, dfp);
    162 
    163  out:
    164 	RETURN(rv);
    165 }
    166 
    167 int
    168 puffs9p_node_getattr(struct puffs_cc *pcc, void *opc, struct vattr *vap,
    169 	const struct puffs_cred *pcr, pid_t pid)
    170 {
    171 	AUTOVAR(pcc);
    172 	struct puffs_node *pn = opc;
    173 	struct p9pnode *p9n = pn->pn_data;
    174 
    175 	p9pbuf_put_1(pb, P9PROTO_T_STAT);
    176 	p9pbuf_put_2(pb, tag);
    177 	p9pbuf_put_4(pb, p9n->fid_base);
    178 	outbuf_enqueue(p9p, pb, pcc, tag);
    179 	puffs_cc_yield(pcc);
    180 
    181 	rv = proto_expect_stat(pb, &pn->pn_va);
    182 	if (rv)
    183 		goto out;
    184 
    185 	memcpy(vap, &pn->pn_va, sizeof(struct vattr));
    186 
    187  out:
    188 	RETURN(rv);
    189 }
    190 
    191 int
    192 puffs9p_node_setattr(struct puffs_cc *pcc, void *opc,
    193 	const struct vattr *va, const struct puffs_cred *pcr, pid_t pid)
    194 {
    195 	AUTOVAR(pcc);
    196 	struct puffs_node *pn = opc;
    197 	struct p9pnode *p9n = pn->pn_data;
    198 
    199 	p9pbuf_put_1(pb, P9PROTO_T_WSTAT);
    200 	p9pbuf_put_2(pb, tag);
    201 	p9pbuf_put_4(pb, p9n->fid_base);
    202 	proto_make_stat(pb, va, NULL);
    203 	outbuf_enqueue(p9p, pb, pcc, tag);
    204 	puffs_cc_yield(pcc);
    205 
    206 	if (pb->type != P9PROTO_R_WSTAT)
    207 		rv = EPROTO;
    208 
    209 	RETURN(rv);
    210 }
    211 
    212 /*
    213  * Ok, time to get clever.  There are two possible cases: we are
    214  * opening a file or we are opening a directory.
    215  *
    216  * If it's a directory, don't bother opening it here, but rather
    217  * wait until readdir, since it's probable we need to be able to
    218  * open a directory there in any case.
    219  *
    220  * If it's a regular file, open it here with whatever credentials
    221  * we happen to have.   Let the upper layers of the kernel worry
    222  * about permission control.
    223  *
    224  * XXX: this does not work fully for the mmap case
    225  */
    226 int
    227 puffs9p_node_open(struct puffs_cc *pcc, void *opc, int mode,
    228 	const struct puffs_cred *pcr, pid_t pid)
    229 {
    230 	struct puffs9p *p9p = puffs_cc_getspecific(pcc);
    231 	struct puffs_node *pn = opc;
    232 	struct p9pnode *p9n = pn->pn_data;
    233 	p9pfid_t nfid;
    234 	int error = 0;
    235 
    236 	p9n->opencount++;
    237 	if (pn->pn_va.va_type != VDIR) {
    238 		if (mode & FREAD && p9n->fid_read == P9P_INVALFID) {
    239 			nfid = NEXTFID(p9p);
    240 			error = proto_cc_open(pcc, p9n->fid_base, nfid,
    241 			    P9PROTO_OMODE_READ);
    242 			if (error)
    243 				return error;
    244 			p9n->fid_read = nfid;
    245 		}
    246 		if (mode & FWRITE && p9n->fid_write == P9P_INVALFID) {
    247 			nfid = NEXTFID(p9p);
    248 			error = proto_cc_open(pcc, p9n->fid_base, nfid,
    249 			    P9PROTO_OMODE_WRITE);
    250 			if (error)
    251 				return error;
    252 			p9n->fid_write = nfid;
    253 		}
    254 	}
    255 
    256 	return 0;
    257 }
    258 
    259 int
    260 puffs9p_node_close(struct puffs_cc *pcc, void *opc, int flags,
    261 	const struct puffs_cred *pcr, pid_t pid)
    262 {
    263 	struct puffs_node *pn = opc;
    264 	struct p9pnode *p9n = pn->pn_data;
    265 
    266 	if (--p9n->opencount == 0) {
    267 		if (pn->pn_va.va_type == VDIR) {
    268 			nukealldf(pcc, p9n);
    269 		} else  {
    270 			if (p9n->fid_read != P9P_INVALFID) {
    271 				proto_cc_clunkfid(pcc, p9n->fid_read, 0);
    272 				p9n->fid_read = P9P_INVALFID;
    273 			}
    274 			if (p9n->fid_write != P9P_INVALFID) {
    275 				proto_cc_clunkfid(pcc, p9n->fid_write, 0);
    276 				p9n->fid_write = P9P_INVALFID;
    277 			}
    278 		}
    279 	}
    280 
    281 	return 0;
    282 }
    283 
    284 int
    285 puffs9p_node_read(struct puffs_cc *pcc, void *opc, uint8_t *buf,
    286 	off_t offset, size_t *resid, const struct puffs_cred *pcr,
    287 	int ioflag)
    288 {
    289 	AUTOVAR(pcc);
    290 	struct puffs_node *pn = opc;
    291 	struct p9pnode *p9n = pn->pn_data;
    292 	uint32_t count;
    293 	size_t nread;
    294 
    295 	nread = 0;
    296 	while (*resid > 0) {
    297 		p9pbuf_put_1(pb, P9PROTO_T_READ);
    298 		p9pbuf_put_2(pb, tag);
    299 		p9pbuf_put_4(pb, p9n->fid_read);
    300 		p9pbuf_put_8(pb, offset+nread);
    301 		p9pbuf_put_4(pb, MIN((uint32_t)*resid,p9p->maxreq-24));
    302 		outbuf_enqueue(p9p, pb, pcc, tag);
    303 		puffs_cc_yield(pcc);
    304 
    305 		if (pb->type != P9PROTO_R_READ) {
    306 			rv = EPROTO;
    307 			break;
    308 		}
    309 
    310 		p9pbuf_get_4(pb, &count);
    311 		if (!p9pbuf_read_data(pb, buf + nread, count)) {
    312 			rv = EPROTO;
    313 			break;
    314 		}
    315 
    316 		*resid -= count;
    317 		nread += count;
    318 
    319 		p9pbuf_recycle(pb, P9PB_OUT);
    320 	}
    321 
    322 	RETURN(rv);
    323 }
    324 
    325 int
    326 puffs9p_node_write(struct puffs_cc *pcc, void *opc, uint8_t *buf,
    327 	off_t offset, size_t *resid, const struct puffs_cred *cred,
    328 	int ioflag)
    329 {
    330 	AUTOVAR(pcc);
    331 	struct puffs_node *pn = opc;
    332 	struct p9pnode *p9n = pn->pn_data;
    333 	uint32_t chunk, count;
    334 	size_t nwrite;
    335 
    336 	if (ioflag & PUFFS_IO_APPEND)
    337 		offset = pn->pn_va.va_size;
    338 
    339 	nwrite = 0;
    340 	while (*resid > 0) {
    341 		chunk = MIN(*resid, p9p->maxreq-32);
    342 
    343 		p9pbuf_put_1(pb, P9PROTO_T_WRITE);
    344 		p9pbuf_put_2(pb, tag);
    345 		p9pbuf_put_4(pb, p9n->fid_write);
    346 		p9pbuf_put_8(pb, offset+nwrite);
    347 		p9pbuf_put_4(pb, chunk);
    348 		p9pbuf_write_data(pb, buf+nwrite, chunk);
    349 		outbuf_enqueue(p9p, pb, pcc, tag);
    350 		puffs_cc_yield(pcc);
    351 
    352 		if (pb->type != P9PROTO_R_WRITE) {
    353 			rv = EPROTO;
    354 			break;
    355 		}
    356 
    357 		p9pbuf_get_4(pb, &count);
    358 		*resid -= count;
    359 		nwrite += count;
    360 
    361 		if (count != chunk) {
    362 			rv = EPROTO;
    363 			break;
    364 		}
    365 
    366 		p9pbuf_recycle(pb, P9PB_OUT);
    367 	}
    368 
    369 	RETURN(rv);
    370 }
    371 
    372 static int
    373 nodecreate(struct puffs_cc *pcc, struct puffs_node *pn, void **newnode,
    374 	const char *name, const struct vattr *vap, uint32_t dirbit)
    375 {
    376 	AUTOVAR(pcc);
    377 	struct puffs_usermount *pu = puffs_cc_getusermount(pcc);
    378 	struct puffs_node *pn_new;
    379 	struct p9pnode *p9n = pn->pn_data;
    380 	p9pfid_t nfid = NEXTFID(p9p);
    381 	struct qid9p nqid;
    382 	int tries = 0;
    383 
    384  again:
    385 	if (++tries > 5) {
    386 		rv = EPROTO;
    387 		goto out;
    388 	}
    389 
    390 	rv = proto_cc_dupfid(pcc, p9n->fid_base, nfid);
    391 	if (rv)
    392 		goto out;
    393 
    394 	p9pbuf_put_1(pb, P9PROTO_T_CREATE);
    395 	p9pbuf_put_2(pb, tag);
    396 	p9pbuf_put_4(pb, nfid);
    397 	p9pbuf_put_str(pb, name);
    398 	p9pbuf_put_4(pb, dirbit | (vap->va_mode & 0777));
    399 	p9pbuf_put_1(pb, 0);
    400 	outbuf_enqueue(p9p, pb, pcc, tag);
    401 	puffs_cc_yield(pcc);
    402 
    403 	rv = proto_expect_qid(pb, P9PROTO_R_CREATE, &nqid);
    404 	if (rv)
    405 		goto out;
    406 
    407 	/*
    408 	 * Now, little problem here: create returns an *open* fid.
    409 	 * So, clunk it and walk the parent directory to get a fid
    410 	 * which is not open for I/O yet.
    411 	 */
    412 	proto_cc_clunkfid(pcc, nfid, 0);
    413 	nfid = NEXTFID(p9p);
    414 
    415 	p9pbuf_recycle(pb, P9PB_OUT);
    416 	p9pbuf_put_1(pb, P9PROTO_T_WALK);
    417 	p9pbuf_put_2(pb, tag);
    418 	p9pbuf_put_4(pb, p9n->fid_base);
    419 	p9pbuf_put_4(pb, nfid);
    420 	p9pbuf_put_2(pb, 1);
    421 	p9pbuf_put_str(pb, name);
    422 
    423 	outbuf_enqueue(p9p, pb, pcc, tag);
    424 	puffs_cc_yield(pcc);
    425 
    426 	/*
    427 	 * someone removed it already? try again
    428 	 * note: this is kind of lose/lose
    429 	 */
    430 	if (pb->type != P9PROTO_R_WALK)
    431 		goto again;
    432 
    433 	pn_new = newp9pnode_va(pu, vap, nfid);
    434 	qid2vattr(&pn_new->pn_va, &nqid);
    435 	*newnode = pn_new;
    436 
    437  out:
    438 	RETURN(rv);
    439 }
    440 
    441 int
    442 puffs9p_node_create(struct puffs_cc *pcc, void *opc, void **newnode,
    443 	const struct puffs_cn *pcn, const struct vattr *va)
    444 {
    445 
    446 	return nodecreate(pcc, opc, newnode, pcn->pcn_name, va, 0);
    447 }
    448 
    449 int
    450 puffs9p_node_mkdir(struct puffs_cc *pcc, void *opc, void **newnode,
    451 	const struct puffs_cn *pcn, const struct vattr *va)
    452 {
    453 
    454 	return nodecreate(pcc, opc, newnode, pcn->pcn_name,
    455 	    va, P9PROTO_CPERM_DIR);
    456 }
    457 
    458 /*
    459  * Need to be a bit clever again: the fid is clunked no matter if
    460  * the remove succeeds or not.  Re-getting a fid would be way too
    461  * difficult in case the remove failed for a valid reason (directory
    462  * not empty etcetc.).  So walk ourselves another fid to prod the
    463  * ice with.
    464  */
    465 static int
    466 noderemove(struct puffs_cc *pcc, struct p9pnode *p9n)
    467 {
    468 	AUTOVAR(pcc);
    469 	p9pfid_t testfid = NEXTFID(p9p);
    470 
    471 	rv = proto_cc_dupfid(pcc, p9n->fid_base, testfid);
    472 
    473 	p9pbuf_put_1(pb, P9PROTO_T_REMOVE);
    474 	p9pbuf_put_2(pb, tag);
    475 	p9pbuf_put_4(pb, testfid);
    476 	outbuf_enqueue(p9p, pb, pcc, tag);
    477 	puffs_cc_yield(pcc);
    478 
    479 	if (pb->type != P9PROTO_R_REMOVE) {
    480 		rv = EPROTO;
    481 	} else {
    482 		proto_cc_clunkfid(pcc, p9n->fid_base, 0);
    483 		p9n->fid_base = P9P_INVALFID;
    484 	}
    485 
    486 	RETURN(rv);
    487 }
    488 
    489 int
    490 puffs9p_node_remove(struct puffs_cc *pcc, void *opc, void *targ,
    491 	const struct puffs_cn *pcn)
    492 {
    493 	struct puffs_node *pn = targ;
    494 
    495 	if (pn->pn_va.va_type == VDIR)
    496 		return EISDIR;
    497 
    498 	return noderemove(pcc, pn->pn_data);
    499 }
    500 
    501 int
    502 puffs9p_node_rmdir(struct puffs_cc *pcc, void *opc, void *targ,
    503 	const struct puffs_cn *pcn)
    504 {
    505 	struct puffs_node *pn = targ;
    506 
    507 	if (pn->pn_va.va_type != VDIR)
    508 		return ENOTDIR;
    509 
    510 	return noderemove(pcc, pn->pn_data);
    511 }
    512 
    513 /*
    514  * 9P supports renames only for regular files within a directory
    515  * from what I could tell.  So just support in-directory renames
    516  * for now.
    517  */
    518 int
    519 puffs9p_node_rename(struct puffs_cc *pcc, void *opc, void *src,
    520 	const struct puffs_cn *pcn_src, void *targ_dir, void *targ,
    521 	const struct puffs_cn *pcn_targ)
    522 {
    523 	AUTOVAR(pcc);
    524 	struct puffs_node *pn_src = src;
    525 	struct p9pnode *p9n_src = pn_src->pn_data;
    526 
    527 	if (opc != targ_dir) {
    528 		rv = EOPNOTSUPP;
    529 		goto out;
    530 	}
    531 
    532 	/* 9P doesn't allow to overwrite in rename */
    533 	if (targ) {
    534 		struct puffs_node *pn_targ = targ;
    535 
    536 		rv = noderemove(pcc, pn_targ->pn_data);
    537 		if (rv)
    538 			goto out;
    539 	}
    540 
    541 	p9pbuf_put_1(pb, P9PROTO_T_WSTAT);
    542 	p9pbuf_put_2(pb, tag);
    543 	p9pbuf_put_4(pb, p9n_src->fid_base);
    544 	proto_make_stat(pb, NULL, pcn_targ->pcn_name);
    545 	outbuf_enqueue(p9p, pb, pcc, tag);
    546 	puffs_cc_yield(pcc);
    547 
    548 	if (pb->type != P9PROTO_R_WSTAT)
    549 		rv = EPROTO;
    550 
    551  out:
    552 	RETURN(rv);
    553 }
    554 
    555 /*
    556  * - "here's one"
    557  * - "9P"
    558  * ~ "i'm not dead"
    559  * - "you're not fooling anyone you know, you'll be stone dead in a minute
    560  * - "he says he's not quite dead"
    561  * - "isn't there anything you could do?"
    562  * - *clunk*!
    563  * - "thanks"
    564  */
    565 int
    566 puffs9p_node_reclaim(struct puffs_cc *pcc, void *opc, pid_t pid)
    567 {
    568 #if 0
    569 	if (p9n->fid_open != P9P_INVALFID)
    570 		proto_cc_clunkfid(pcc, p9n->fid_open, 0);
    571 #endif
    572 
    573 	return 0;
    574 }
    575