node.c revision 1.18 1 /* $NetBSD: node.c,v 1.18 2007/11/27 11:31:20 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 1.18 2007/11/27 11:31:20 pooka Exp $");
31 #endif /* !lint */
32
33 #include <assert.h>
34 #include <errno.h>
35 #include <puffs.h>
36 #include <stdio.h>
37 #include <stdlib.h>
38
39 #include "ninepuffs.h"
40 #include "nineproto.h"
41
42 static void *
43 nodecmp(struct puffs_usermount *pu, struct puffs_node *pn, void *arg)
44 {
45 struct vattr *vap = &pn->pn_va;
46 struct qid9p *qid = arg;
47
48 if (vap->va_fileid == qid->qidpath)
49 return pn;
50
51 return NULL;
52 }
53
54 static int
55 do_getattr(struct puffs_cc *pcc, struct puffs_node *pn, struct vattr *vap)
56 {
57 AUTOVAR(pcc);
58 struct p9pnode *p9n = pn->pn_data;
59
60 p9pbuf_put_1(pb, P9PROTO_T_STAT);
61 p9pbuf_put_2(pb, tag);
62 p9pbuf_put_4(pb, p9n->fid_base);
63 GETRESPONSE(pb);
64
65 rv = proto_expect_stat(pb, vap);
66
67 out:
68 RETURN(rv);
69 }
70
71 int
72 puffs9p_node_getattr(struct puffs_cc *pcc, void *opc, struct vattr *vap,
73 const struct puffs_cred *pcr)
74 {
75 struct puffs_node *pn = opc;
76 int rv;
77
78 rv = do_getattr(pcc, pn, &pn->pn_va);
79 if (rv == 0)
80 memcpy(vap, &pn->pn_va, sizeof(struct vattr));
81 return rv;
82 }
83
84 int
85 puffs9p_node_lookup(struct puffs_cc *pcc, void *opc, struct puffs_newinfo *pni,
86 const struct puffs_cn *pcn)
87 {
88 AUTOVAR(pcc);
89 struct puffs_usermount *pu = puffs_cc_getusermount(pcc);
90 struct puffs_node *pn, *pn_dir = opc;
91 struct p9pnode *p9n_dir = pn_dir->pn_data;
92 p9ptag_t tfid = NEXTFID(p9p);
93 struct qid9p newqid;
94 uint16_t nqid;
95
96 p9pbuf_put_1(pb, P9PROTO_T_WALK);
97 p9pbuf_put_2(pb, tag);
98 p9pbuf_put_4(pb, p9n_dir->fid_base);
99 p9pbuf_put_4(pb, tfid);
100 p9pbuf_put_2(pb, 1);
101 p9pbuf_put_str(pb, pcn->pcn_name);
102 GETRESPONSE(pb);
103
104 rv = proto_expect_walk_nqids(pb, &nqid);
105 if (rv) {
106 rv = ENOENT;
107 goto out;
108 }
109 if (nqid != 1) {
110 rv = EPROTO;
111 goto out;
112 }
113 if ((rv = proto_getqid(pb, &newqid)))
114 goto out;
115
116 pn = puffs_pn_nodewalk(pu, nodecmp, &newqid);
117 if (pn == NULL)
118 pn = newp9pnode_qid(pu, &newqid, tfid);
119 else
120 proto_cc_clunkfid(pcc, tfid, 0);
121
122 rv = do_getattr(pcc, pn, &pn->pn_va);
123 if (rv) {
124 /* XXX */
125 free(pn->pn_data);
126 puffs_pn_put(pn);
127 goto out;
128 }
129
130 puffs_newinfo_setcookie(pni, pn);
131 puffs_newinfo_setvtype(pni, pn->pn_va.va_type);
132 puffs_newinfo_setsize(pni, pn->pn_va.va_size);
133 puffs_newinfo_setrdev(pni, pn->pn_va.va_rdev);
134
135 out:
136 RETURN(rv);
137 }
138
139 /*
140 * Problem is that 9P doesn't allow seeking into a directory. So we
141 * maintain a list of active fids for any given directory. They
142 * start living at the first read and exist either until the directory
143 * is closed or until they reach the end.
144 */
145 int
146 puffs9p_node_readdir(struct puffs_cc *pcc, void *opc, struct dirent *dent,
147 off_t *readoff, size_t *reslen, const struct puffs_cred *pcr,
148 int *eofflag, off_t *cookies, size_t *ncookies)
149 {
150 AUTOVAR(pcc);
151 struct puffs_node *pn = opc;
152 struct p9pnode *p9n = pn->pn_data;
153 struct vattr va;
154 struct dirfid *dfp;
155 char *name;
156 uint32_t count;
157 uint16_t statsize;
158
159 rv = getdfwithoffset(pcc, p9n, *readoff, &dfp);
160 if (rv)
161 goto out;
162
163 tag = NEXTTAG(p9p);
164 p9pbuf_put_1(pb, P9PROTO_T_READ);
165 p9pbuf_put_2(pb, tag);
166 p9pbuf_put_4(pb, dfp->fid);
167 p9pbuf_put_8(pb, *readoff);
168 p9pbuf_put_4(pb, *reslen); /* XXX */
169 GETRESPONSE(pb);
170
171 p9pbuf_get_4(pb, &count);
172
173 /*
174 * if count is 0, assume we at end-of-dir. dfp is no longer
175 * useful, so nuke it
176 */
177 if (count == 0) {
178 *eofflag = 1;
179 releasedf(pcc, dfp);
180 goto out;
181 }
182
183 while (count > 0) {
184 if ((rv = proto_getstat(pb, &va, &name, &statsize))) {
185 /*
186 * If there was an error, it's unlikely we'll be
187 * coming back, so just nuke the dfp. If we do
188 * come back for some strange reason, we'll just
189 * regen it.
190 */
191 releasedf(pcc, dfp);
192 goto out;
193 }
194
195 puffs_nextdent(&dent, name, va.va_fileid,
196 puffs_vtype2dt(va.va_type), reslen);
197
198 count -= statsize;
199 *readoff += statsize;
200 dfp->seekoff += statsize;
201 free(name);
202 }
203
204 storedf(p9n, dfp);
205
206 out:
207 RETURN(rv);
208 }
209
210 int
211 puffs9p_node_setattr(struct puffs_cc *pcc, void *opc,
212 const struct vattr *va, const struct puffs_cred *pcr)
213 {
214 AUTOVAR(pcc);
215 struct puffs_node *pn = opc;
216 struct p9pnode *p9n = pn->pn_data;
217
218 p9pbuf_put_1(pb, P9PROTO_T_WSTAT);
219 p9pbuf_put_2(pb, tag);
220 p9pbuf_put_4(pb, p9n->fid_base);
221 proto_make_stat(pb, va, NULL, pn->pn_va.va_type);
222 GETRESPONSE(pb);
223
224 if (p9pbuf_get_type(pb) != P9PROTO_R_WSTAT)
225 rv = EPROTO;
226
227 out:
228 RETURN(rv);
229 }
230
231 /*
232 * Ok, time to get clever. There are two possible cases: we are
233 * opening a file or we are opening a directory.
234 *
235 * If it's a directory, don't bother opening it here, but rather
236 * wait until readdir, since it's probable we need to be able to
237 * open a directory there in any case.
238 *
239 * If it's a regular file, open it here with whatever credentials
240 * we happen to have. Let the upper layers of the kernel worry
241 * about permission control.
242 */
243 int
244 puffs9p_node_open(struct puffs_cc *pcc, void *opc, int mode,
245 const struct puffs_cred *pcr)
246 {
247 struct puffs9p *p9p = puffs_cc_getspecific(pcc);
248 struct puffs_node *pn = opc;
249 struct p9pnode *p9n = pn->pn_data;
250 p9pfid_t nfid;
251 int error = 0;
252
253 puffs_setback(pcc, PUFFS_SETBACK_INACT_N1);
254 if (pn->pn_va.va_type != VDIR) {
255 if (mode & FREAD && p9n->fid_read == P9P_INVALFID) {
256 nfid = NEXTFID(p9p);
257 error = proto_cc_open(pcc, p9n->fid_base, nfid,
258 P9PROTO_OMODE_READ);
259 if (error)
260 return error;
261 p9n->fid_read = nfid;
262 }
263 if (mode & FWRITE && p9n->fid_write == P9P_INVALFID) {
264 nfid = NEXTFID(p9p);
265 error = proto_cc_open(pcc, p9n->fid_base, nfid,
266 P9PROTO_OMODE_WRITE);
267 if (error)
268 return error;
269 p9n->fid_write = nfid;
270 }
271 }
272
273 return 0;
274 }
275
276 int
277 puffs9p_node_inactive(struct puffs_cc *pcc, void *opc)
278 {
279 struct puffs_node *pn = opc;
280 struct p9pnode *p9n = pn->pn_data;
281
282 if (pn->pn_va.va_type == VDIR) {
283 nukealldf(pcc, p9n);
284 } else {
285 if (p9n->fid_read != P9P_INVALFID) {
286 proto_cc_clunkfid(pcc, p9n->fid_read, 0);
287 p9n->fid_read = P9P_INVALFID;
288 }
289 if (p9n->fid_write != P9P_INVALFID) {
290 proto_cc_clunkfid(pcc, p9n->fid_write, 0);
291 p9n->fid_write = P9P_INVALFID;
292 }
293 }
294
295 return 0;
296 }
297
298 int
299 puffs9p_node_read(struct puffs_cc *pcc, void *opc, uint8_t *buf,
300 off_t offset, size_t *resid, const struct puffs_cred *pcr,
301 int ioflag)
302 {
303 AUTOVAR(pcc);
304 struct puffs_node *pn = opc;
305 struct p9pnode *p9n = pn->pn_data;
306 uint32_t count;
307 size_t nread;
308
309 nread = 0;
310 while (*resid > 0) {
311 p9pbuf_put_1(pb, P9PROTO_T_READ);
312 p9pbuf_put_2(pb, tag);
313 p9pbuf_put_4(pb, p9n->fid_read);
314 p9pbuf_put_8(pb, offset+nread);
315 p9pbuf_put_4(pb, MIN((uint32_t)*resid,p9p->maxreq-24));
316 GETRESPONSE(pb);
317
318 if (p9pbuf_get_type(pb) != P9PROTO_R_READ) {
319 rv = EPROTO;
320 break;
321 }
322
323 p9pbuf_get_4(pb, &count);
324 if ((rv = p9pbuf_read_data(pb, buf + nread, count)))
325 break;
326
327 *resid -= count;
328 nread += count;
329
330 p9pbuf_recycleout(pb);
331 }
332
333 out:
334 RETURN(rv);
335 }
336
337 int
338 puffs9p_node_write(struct puffs_cc *pcc, void *opc, uint8_t *buf,
339 off_t offset, size_t *resid, const struct puffs_cred *cred,
340 int ioflag)
341 {
342 AUTOVAR(pcc);
343 struct puffs_node *pn = opc;
344 struct p9pnode *p9n = pn->pn_data;
345 uint32_t chunk, count;
346 size_t nwrite;
347
348 if (ioflag & PUFFS_IO_APPEND)
349 offset = pn->pn_va.va_size;
350
351 nwrite = 0;
352 while (*resid > 0) {
353 chunk = MIN(*resid, p9p->maxreq-32);
354
355 p9pbuf_put_1(pb, P9PROTO_T_WRITE);
356 p9pbuf_put_2(pb, tag);
357 p9pbuf_put_4(pb, p9n->fid_write);
358 p9pbuf_put_8(pb, offset+nwrite);
359 p9pbuf_put_4(pb, chunk);
360 p9pbuf_write_data(pb, buf+nwrite, chunk);
361 GETRESPONSE(pb);
362
363 if (p9pbuf_get_type(pb) != P9PROTO_R_WRITE) {
364 rv = EPROTO;
365 break;
366 }
367
368 p9pbuf_get_4(pb, &count);
369 *resid -= count;
370 nwrite += count;
371
372 if (count != chunk) {
373 rv = EPROTO;
374 break;
375 }
376
377 p9pbuf_recycleout(pb);
378 }
379
380 out:
381 RETURN(rv);
382 }
383
384 static int
385 nodecreate(struct puffs_cc *pcc, struct puffs_node *pn,
386 struct puffs_newinfo *pni, const char *name,
387 const struct vattr *vap, uint32_t dirbit)
388 {
389 AUTOVAR(pcc);
390 struct puffs_usermount *pu = puffs_cc_getusermount(pcc);
391 struct puffs_node *pn_new;
392 struct p9pnode *p9n = pn->pn_data;
393 p9pfid_t nfid = NEXTFID(p9p);
394 struct qid9p nqid;
395 int tries = 0;
396
397 again:
398 if (++tries > 5) {
399 rv = EPROTO;
400 goto out;
401 }
402
403 rv = proto_cc_dupfid(pcc, p9n->fid_base, nfid);
404 if (rv)
405 goto out;
406
407 p9pbuf_put_1(pb, P9PROTO_T_CREATE);
408 p9pbuf_put_2(pb, tag);
409 p9pbuf_put_4(pb, nfid);
410 p9pbuf_put_str(pb, name);
411 p9pbuf_put_4(pb, dirbit | (vap->va_mode & 0777));
412 p9pbuf_put_1(pb, 0);
413 GETRESPONSE(pb);
414
415 rv = proto_expect_qid(pb, P9PROTO_R_CREATE, &nqid);
416 if (rv)
417 goto out;
418
419 /*
420 * Now, little problem here: create returns an *open* fid.
421 * So, clunk it and walk the parent directory to get a fid
422 * which is not open for I/O yet.
423 */
424 proto_cc_clunkfid(pcc, nfid, 0);
425 nfid = NEXTFID(p9p);
426
427 p9pbuf_recycleout(pb);
428 p9pbuf_put_1(pb, P9PROTO_T_WALK);
429 p9pbuf_put_2(pb, tag);
430 p9pbuf_put_4(pb, p9n->fid_base);
431 p9pbuf_put_4(pb, nfid);
432 p9pbuf_put_2(pb, 1);
433 p9pbuf_put_str(pb, name);
434 GETRESPONSE(pb);
435
436 /*
437 * someone removed it already? try again
438 * note: this is kind of lose/lose
439 */
440 if (p9pbuf_get_type(pb) != P9PROTO_R_WALK)
441 goto again;
442
443 pn_new = newp9pnode_va(pu, vap, nfid);
444 qid2vattr(&pn_new->pn_va, &nqid);
445 puffs_newinfo_setcookie(pni, pn_new);
446
447 out:
448 RETURN(rv);
449 }
450
451 int
452 puffs9p_node_create(struct puffs_cc *pcc, void *opc, struct puffs_newinfo *pni,
453 const struct puffs_cn *pcn, const struct vattr *va)
454 {
455
456 return nodecreate(pcc, opc, pni, pcn->pcn_name, va, 0);
457 }
458
459 int
460 puffs9p_node_mkdir(struct puffs_cc *pcc, void *opc, struct puffs_newinfo *pni,
461 const struct puffs_cn *pcn, const struct vattr *va)
462 {
463
464 return nodecreate(pcc, opc, pni, pcn->pcn_name,
465 va, P9PROTO_CPERM_DIR);
466 }
467
468 /*
469 * Need to be a bit clever again: the fid is clunked no matter if
470 * the remove succeeds or not. Re-getting a fid would be way too
471 * difficult in case the remove failed for a valid reason (directory
472 * not empty etcetc.). So walk ourselves another fid to prod the
473 * ice with.
474 */
475 static int
476 noderemove(struct puffs_cc *pcc, struct puffs_node *pn)
477 {
478 AUTOVAR(pcc);
479 struct p9pnode *p9n = pn->pn_data;
480 p9pfid_t testfid = NEXTFID(p9p);
481
482 rv = proto_cc_dupfid(pcc, p9n->fid_base, testfid);
483 if (rv)
484 goto out;
485
486 p9pbuf_put_1(pb, P9PROTO_T_REMOVE);
487 p9pbuf_put_2(pb, tag);
488 p9pbuf_put_4(pb, testfid);
489
490 /*
491 * XXX: error handling isn't very robust, but doom is impending
492 * anyway, so just accept we're going belly up and play dead
493 */
494 GETRESPONSE(pb);
495
496 if (p9pbuf_get_type(pb) != P9PROTO_R_REMOVE) {
497 rv = EPROTO;
498 } else {
499 proto_cc_clunkfid(pcc, p9n->fid_base, 0);
500 p9n->fid_base = P9P_INVALFID;
501 puffs_pn_remove(pn);
502 }
503
504 out:
505 if (rv == 0)
506 puffs_setback(pcc, PUFFS_SETBACK_NOREF_N2);
507
508 RETURN(rv);
509 }
510
511 int
512 puffs9p_node_remove(struct puffs_cc *pcc, void *opc, void *targ,
513 const struct puffs_cn *pcn)
514 {
515 struct puffs_node *pn = targ;
516
517 if (pn->pn_va.va_type == VDIR)
518 return EISDIR;
519
520 return noderemove(pcc, pn);
521 }
522
523 int
524 puffs9p_node_rmdir(struct puffs_cc *pcc, void *opc, void *targ,
525 const struct puffs_cn *pcn)
526 {
527 struct puffs_node *pn = targ;
528
529 if (pn->pn_va.va_type != VDIR)
530 return ENOTDIR;
531
532 return noderemove(pcc, pn);
533 }
534
535 /*
536 * 9P supports renames only for files within a directory
537 * from what I could tell. So just support in-directory renames
538 * for now.
539 */
540 int
541 puffs9p_node_rename(struct puffs_cc *pcc, void *opc, void *src,
542 const struct puffs_cn *pcn_src, void *targ_dir, void *targ,
543 const struct puffs_cn *pcn_targ)
544 {
545 AUTOVAR(pcc);
546 struct puffs_node *pn_src = src;
547 struct p9pnode *p9n_src = pn_src->pn_data;
548
549 if (opc != targ_dir) {
550 rv = EOPNOTSUPP;
551 goto out;
552 }
553
554 /* 9P doesn't allow to overwrite in rename */
555 if (targ) {
556 struct puffs_node *pn_targ = targ;
557
558 rv = noderemove(pcc, pn_targ->pn_data);
559 if (rv)
560 goto out;
561 }
562
563 p9pbuf_put_1(pb, P9PROTO_T_WSTAT);
564 p9pbuf_put_2(pb, tag);
565 p9pbuf_put_4(pb, p9n_src->fid_base);
566 proto_make_stat(pb, NULL, pcn_targ->pcn_name, pn_src->pn_va.va_type);
567 GETRESPONSE(pb);
568
569 if (p9pbuf_get_type(pb) != P9PROTO_R_WSTAT)
570 rv = EPROTO;
571
572 out:
573 RETURN(rv);
574 }
575
576 /*
577 * - "here's one"
578 * - "9P"
579 * ~ "i'm not dead"
580 * - "you're not fooling anyone you know, you'll be stone dead in a minute
581 * - "he says he's not quite dead"
582 * - "isn't there anything you could do?"
583 * - *clunk*!
584 * - "thanks"
585 */
586 int
587 puffs9p_node_reclaim(struct puffs_cc *pcc, void *opc)
588 {
589 struct puffs_node *pn = opc;
590 struct p9pnode *p9n = pn->pn_data;
591
592 assert(LIST_EMPTY(&p9n->dir_openlist));
593 assert(p9n->fid_read == P9P_INVALFID && p9n->fid_write == P9P_INVALFID);
594
595 proto_cc_clunkfid(pcc, p9n->fid_base, 0);
596 free(p9n);
597 puffs_pn_put(pn);
598
599 return 0;
600 }
601