puffs_msgif.h revision 1.49 1 /* $NetBSD: puffs_msgif.h,v 1.49 2007/08/22 17:54:31 pooka Exp $ */
2
3 /*
4 * Copyright (c) 2005, 2006 Antti Kantee. All Rights Reserved.
5 *
6 * Development of this software was supported by the
7 * Google Summer of Code program and the Ulla Tuominen Foundation.
8 * The Google SoC project was mentored by Bill Studenmund.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
20 * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
21 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
22 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
25 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 */
31
32 #ifndef _FS_PUFFS_PUFFS_MSGIF_H_
33 #define _FS_PUFFS_PUFFS_MSGIF_H_
34
35 #include <sys/param.h>
36 #include <sys/time.h>
37 #include <sys/ioccom.h>
38 #include <sys/uio.h>
39 #include <sys/vnode.h>
40 #include <sys/ucred.h>
41 #include <sys/statvfs.h>
42 #include <sys/dirent.h>
43 #include <sys/fcntl.h>
44
45 #include <uvm/uvm_prot.h>
46
47 #define PUFFSOP_VFS 1
48 #define PUFFSOP_VN 2
49 #define PUFFSOP_CACHE 3
50 #define PUFFSOPFLAG_FAF 0x10 /* fire-and-forget */
51
52 #define PUFFSOP_OPCMASK 0x03
53 #define PUFFSOP_OPCLASS(a) ((a) & PUFFSOP_OPCMASK)
54 #define PUFFSOP_WANTREPLY(a) (((a) & PUFFSOPFLAG_FAF) == 0)
55
56 /* XXX: we don't need everything */
57 enum {
58 PUFFS_VFS_MOUNT, PUFFS_VFS_START, PUFFS_VFS_UNMOUNT,
59 PUFFS_VFS_ROOT, PUFFS_VFS_STATVFS, PUFFS_VFS_SYNC,
60 PUFFS_VFS_VGET, PUFFS_VFS_FHTOVP, PUFFS_VFS_VPTOFH,
61 PUFFS_VFS_INIT, PUFFS_VFS_DONE, PUFFS_VFS_SNAPSHOT,
62 PUFFS_VFS_EXTATTCTL, PUFFS_VFS_SUSPEND
63 };
64 #define PUFFS_VFS_MAX PUFFS_VFS_EXTATTCTL
65
66 /* moreXXX: we don't need everything here either */
67 enum {
68 PUFFS_VN_LOOKUP, PUFFS_VN_CREATE, PUFFS_VN_MKNOD,
69 PUFFS_VN_OPEN, PUFFS_VN_CLOSE, PUFFS_VN_ACCESS,
70 PUFFS_VN_GETATTR, PUFFS_VN_SETATTR, PUFFS_VN_READ,
71 PUFFS_VN_WRITE, PUFFS_VN_IOCTL, PUFFS_VN_FCNTL,
72 PUFFS_VN_POLL, PUFFS_VN_KQFILTER, PUFFS_VN_REVOKE,
73 PUFFS_VN_MMAP, PUFFS_VN_FSYNC, PUFFS_VN_SEEK,
74 PUFFS_VN_REMOVE, PUFFS_VN_LINK, PUFFS_VN_RENAME,
75 PUFFS_VN_MKDIR, PUFFS_VN_RMDIR, PUFFS_VN_SYMLINK,
76 PUFFS_VN_READDIR, PUFFS_VN_READLINK, PUFFS_VN_ABORTOP,
77 PUFFS_VN_INACTIVE, PUFFS_VN_RECLAIM, PUFFS_VN_LOCK,
78 PUFFS_VN_UNLOCK, PUFFS_VN_BMAP, PUFFS_VN_STRATEGY,
79 PUFFS_VN_PRINT, PUFFS_VN_ISLOCKED, PUFFS_VN_PATHCONF,
80 PUFFS_VN_ADVLOCK, PUFFS_VN_LEASE, PUFFS_VN_WHITEOUT,
81 PUFFS_VN_GETPAGES, PUFFS_VN_PUTPAGES, PUFFS_VN_GETEXTATTR,
82 PUFFS_VN_LISTEXTATTR, PUFFS_VN_OPENEXTATTR, PUFFS_VN_DELETEEXTATTR,
83 PUFFS_VN_SETEXTATTR
84 };
85 #define PUFFS_VN_MAX PUFFS_VN_SETEXTATTR
86
87 #define PUFFSDEVELVERS 0x80000000
88 #define PUFFSVERSION 17
89 #define PUFFSNAMESIZE 32
90
91 #define PUFFS_TYPEPREFIX "puffs|"
92
93 #define PUFFS_TYPELEN (_VFS_NAMELEN - (sizeof(PUFFS_TYPEPREFIX)+1))
94 #define PUFFS_NAMELEN (_VFS_MNAMELEN-1)
95
96 struct puffs_kargs {
97 unsigned int pa_vers;
98 int pa_fd;
99 uint32_t pa_flags;
100
101 size_t pa_maxreqlen;
102 int pa_nhashbuckets;
103
104 size_t pa_fhsize;
105 int pa_fhflags;
106
107 void *pa_root_cookie;
108 enum vtype pa_root_vtype;
109 voff_t pa_root_vsize;
110 dev_t pa_root_rdev;
111
112 struct statvfs pa_svfsb;
113
114 char pa_typename[_VFS_NAMELEN];
115 char pa_mntfromname[_VFS_MNAMELEN];
116
117 uint8_t pa_vnopmask[PUFFS_VN_MAX];
118 };
119 #define PUFFS_KFLAG_NOCACHE_NAME 0x01 /* don't use name cache */
120 #define PUFFS_KFLAG_NOCACHE_PAGE 0x02 /* don't use page cache */
121 #define PUFFS_KFLAG_NOCACHE 0x03 /* no cache whatsoever */
122 #define PUFFS_KFLAG_ALLOPS 0x04 /* ignore pa_vnopmask */
123 #define PUFFS_KFLAG_WTCACHE 0x08 /* write-through page cache */
124 #define PUFFS_KFLAG_IAONDEMAND 0x10 /* inactive only on demand */
125 #define PUFFS_KFLAG_LOOKUP_FULLPNBUF 0x20 /* full pnbuf in lookup */
126 #define PUFFS_KFLAG_MASK 0x3f
127
128 #define PUFFS_FHFLAG_DYNAMIC 0x01
129 #define PUFFS_FHFLAG_NFSV2 0x02
130 #define PUFFS_FHFLAG_NFSV3 0x04
131 #define PUFFS_FHFLAG_PROTOMASK 0x06
132
133 #define PUFFS_FHSIZE_MAX 1020 /* XXX: FHANDLE_SIZE_MAX - 4 */
134
135 /*
136 * This is the device minor number for the cloning device. Make it
137 * a high number "just in case", even though we don't want to open
138 * any specific devices currently.
139 */
140 #define PUFFS_CLONER 0x7ffff
141
142 struct puffs_reqh_get {
143 void *phg_buf; /* user buffer */
144 size_t phg_buflen; /* user buffer length */
145
146 int phg_nops; /* max ops user wants / number delivered */
147 int phg_more; /* advisory: more ops available? */
148 };
149
150 struct puffs_reqh_put {
151 int php_nops; /* ops available / ops handled */
152
153 /* these describe the first request */
154 uint64_t php_id; /* request id */
155 void *php_buf; /* user buffer address */
156 size_t php_buflen; /* user buffer length, hdr NOT incl. */
157 };
158
159 /*
160 * The requests work as follows:
161 *
162 * + GETOP: When fetching operations from the kernel, the user server
163 * supplies a flat buffer into which operations are written.
164 * The number of operations written to the buffer is
165 * MIN(prhg_nops, requests waiting, space in buffer).
166 *
167 * Operations follow each other and each one is described
168 * by the puffs_req structure, which is immediately followed
169 * by the aligned request data buffer in preq_buf. The next
170 * puffs_req can be found at preq + preq_buflen.
171 *
172 * Visually, the server should expect:
173 *
174 * |<-- preq_buflen -->|
175 * ---------------------------------------------------------------
176 * |hdr| buffer |align|hdr| buffer |hdr| .... |buffer| |
177 * ---------------------------------------------------------------
178 * ^ start ^ unaligned ^ aligned ^ always aligned
179 *
180 * The server is allowed to modify the contents of the buffers.
181 * Since the headers are the same size for both get and put, it
182 * is possible to handle all operations simply by doing in-place
183 * modification. Where more input is expected that what was put
184 * out, the kernel leaves a hole in the buffer. This hole size
185 * is derived from the operational semantics known by the vnode
186 * layer. The hole size is included in preq_buflen. The
187 * amount of relevant information in the buffer is call-specific
188 * and can be deduced by the server from the call type.
189 *
190 * + PUTOP: When returning the results of an operation to the kernel, the
191 * user server is allowed to input results in a scatter-gather
192 * fashion. Each request is made up of a header and the buffer.
193 * The header describes the *NEXT* request for copyin, *NOT* the
194 * current one. The first request is described in puffs_reqh_put
195 * and the last one is left uninterpreted. This is to halve the
196 * amount of copyin's required.
197 *
198 * Fans of my ascii art, rejoice:
199 * /-------------------->| preq_buflen |
200 * ---^----------------------------------------------------------
201 * |hdr|buffer| empty spaces |hdr| buffer | |
202 * --v-----------------------^-v---------------------------------
203 * \------- preq_buf -----/ \------- preq_buf ....
204 *
205 * This scheme also allows for better in-place modification of the
206 * request buffer when handling requests. The vision is that
207 * operations which can be immediately satisfied will be edited
208 * in-place while ones which can't will be left blank. Also,
209 * requests from async operations which have been satisfied
210 * meanwhile can be included.
211 *
212 * The total number of operations is given by the ioctl control
213 * structure puffs_reqh. The values in the header in the final
214 * are not used.
215 */
216 struct puffs_req {
217 uint64_t preq_id; /* get: cur, put: next */
218
219 union u {
220 struct {
221 uint8_t opclass; /* cur */
222 uint8_t optype; /* cur */
223
224 /*
225 * preq_cookie is the node cookie associated with
226 * the request. It always maps 1:1 to a vnode
227 * and could map to a userspace struct puffs_node.
228 * The cookie usually describes the first
229 * vnode argument of the VOP_POP() in question.
230 */
231
232 void *cookie; /* cur */
233 } out;
234 struct {
235 int rv; /* cur */
236 int setbacks; /* cur */
237 void *buf; /* next */
238 } in;
239 } u;
240
241 size_t preq_buflen; /* get: cur, put: next */
242 /*
243 * the following helper pads the struct size to md alignment
244 * multiple (should size_t not cut it). it makes sure that
245 * whatever comes after this struct is aligned
246 */
247 uint8_t preq_buf[0] __aligned(ALIGNBYTES+1);
248 };
249 #define preq_opclass u.out.opclass
250 #define preq_optype u.out.optype
251 #define preq_cookie u.out.cookie
252 #define preq_rv u.in.rv
253 #define preq_setbacks u.in.setbacks
254 #define preq_nextbuf u.in.buf
255
256 #define PUFFS_SETBACK_INACT_N1 0x01 /* set VOP_INACTIVE for node 1 */
257 #define PUFFS_SETBACK_INACT_N2 0x02 /* set VOP_INACTIVE for node 2 */
258 #define PUFFS_SETBACK_NOREF_N1 0x04 /* set pn PN_NOREFS for node 1 */
259 #define PUFFS_SETBACK_NOREF_N2 0x08 /* set pn PN_NOREFS for node 2 */
260 #define PUFFS_SETBACK_MASK 0x0f
261
262 /*
263 * Some operations have unknown size requirements. So as the first
264 * stab at handling it, do an extra bounce between the kernel and
265 * userspace.
266 */
267 struct puffs_sizeop {
268 uint64_t pso_reqid;
269
270 uint8_t *pso_userbuf;
271 size_t pso_bufsize;
272 };
273
274 /*
275 * Flush operation. This can be used to invalidate:
276 * 1) name cache for one node
277 * 2) name cache for all children
278 * 3) name cache for the entire mount
279 * 4) page cache for a set of ranges in one node
280 * 5) page cache for one entire node
281 *
282 * It can be used to flush:
283 * 1) page cache for a set of ranges in one node
284 * 2) page cache for one entire node
285 */
286
287 /* XXX: needs restructuring */
288 struct puffs_flush {
289 void *pf_cookie;
290
291 int pf_op;
292 off_t pf_start;
293 off_t pf_end;
294 };
295 #define PUFFS_INVAL_NAMECACHE_NODE 0
296 #define PUFFS_INVAL_NAMECACHE_DIR 1
297 #define PUFFS_INVAL_NAMECACHE_ALL 2
298 #define PUFFS_INVAL_PAGECACHE_NODE_RANGE 3
299 #define PUFFS_FLUSH_PAGECACHE_NODE_RANGE 4
300
301
302 /*
303 * Available ioctl operations
304 */
305 #define PUFFSGETOP _IOWR('p', 1, struct puffs_reqh_get)
306 #define PUFFSPUTOP _IOWR('p', 2, struct puffs_reqh_put)
307 #define PUFFSSIZEOP _IOWR('p', 3, struct puffs_sizeop)
308 #define PUFFSFLUSHOP _IOW ('p', 4, struct puffs_flush)
309 #if 0
310 #define PUFFSFLUSHMULTIOP _IOW ('p', 5, struct puffs_flushmulti)
311 #endif
312 #define PUFFSSUSPENDOP _IO ('p', 6)
313 #define PUFFSREQSIZEOP _IOR ('p', 7, size_t)
314
315
316 /*
317 * Credentials for an operation. Can be either struct uucred for
318 * ops called from a credential context or NOCRED/FSCRED for ops
319 * called from within the kernel. It is up to the implementation
320 * if it makes a difference between these two and the super-user.
321 */
322 struct puffs_kcred {
323 struct uucred pkcr_uuc;
324 uint8_t pkcr_type;
325 uint8_t pkcr_internal;
326 };
327 #define PUFFCRED_TYPE_UUC 1
328 #define PUFFCRED_TYPE_INTERNAL 2
329 #define PUFFCRED_CRED_NOCRED 1
330 #define PUFFCRED_CRED_FSCRED 2
331
332 /*
333 * 2*MAXPHYS is the max size the system will attempt to copy,
334 * else treated as garbage
335 */
336 #define PUFFS_REQ_MAXSIZE 2*MAXPHYS
337 #define PUFFS_REQSTRUCT_MAX 4096 /* XXX: approxkludge */
338
339 #define PUFFS_TOMOVE(a,b) (MIN((a), b->pmp_req_maxsize - PUFFS_REQSTRUCT_MAX))
340
341 /* caller id */
342 struct puffs_kcid {
343 int pkcid_type;
344 pid_t pkcid_pid;
345 lwpid_t pkcid_lwpid;
346 };
347 #define PUFFCID_TYPE_REAL 1
348 #define PUFFCID_TYPE_FAKE 2
349
350 /* puffs struct componentname built by kernel */
351 struct puffs_kcn {
352 /* args */
353 uint32_t pkcn_nameiop; /* namei operation */
354 uint32_t pkcn_flags; /* flags */
355
356 char pkcn_name[MAXPATHLEN]; /* nulterminated path component */
357 size_t pkcn_namelen; /* current component length */
358 size_t pkcn_consume; /* IN: extra chars server ate */
359 };
360
361
362 /*
363 * Next come the individual requests. They are all subclassed from
364 * puffs_req and contain request-specific fields in addition. Note
365 * that there are some requests which have to handle arbitrary-length
366 * buffers.
367 *
368 * The division is the following: puffs_req is to be touched only
369 * by generic routines while the other stuff is supposed to be
370 * modified only by specific routines.
371 */
372
373 /*
374 * aux structures for vfs operations.
375 */
376 struct puffs_vfsreq_unmount {
377 struct puffs_req pvfsr_pr;
378
379 int pvfsr_flags;
380 struct puffs_kcid pvfsr_cid;
381 };
382
383 struct puffs_vfsreq_statvfs {
384 struct puffs_req pvfsr_pr;
385
386 struct statvfs pvfsr_sb;
387 struct puffs_kcid pvfsr_cid;
388 };
389
390 struct puffs_vfsreq_sync {
391 struct puffs_req pvfsr_pr;
392
393 struct puffs_kcred pvfsr_cred;
394 struct puffs_kcid pvfsr_cid;
395 int pvfsr_waitfor;
396 };
397
398 struct puffs_vfsreq_fhtonode {
399 struct puffs_req pvfsr_pr;
400
401 void *pvfsr_fhcookie; /* IN */
402 enum vtype pvfsr_vtype; /* IN */
403 voff_t pvfsr_size; /* IN */
404 dev_t pvfsr_rdev; /* IN */
405
406 size_t pvfsr_dsize; /* OUT */
407 uint8_t pvfsr_data[0] /* OUT, XXX */
408 __aligned(ALIGNBYTES+1);
409 };
410
411 struct puffs_vfsreq_nodetofh {
412 struct puffs_req pvfsr_pr;
413
414 void *pvfsr_fhcookie; /* OUT */
415
416 size_t pvfsr_dsize; /* OUT/IN */
417 uint8_t pvfsr_data[0] /* IN, XXX */
418 __aligned(ALIGNBYTES+1);
419 };
420
421 struct puffs_vfsreq_suspend {
422 struct puffs_req pvfsr_pr;
423
424 int pvfsr_status;
425 };
426 #define PUFFS_SUSPEND_START 0
427 #define PUFFS_SUSPEND_SUSPENDED 1
428 #define PUFFS_SUSPEND_RESUME 2
429 #define PUFFS_SUSPEND_ERROR 3
430
431 /*
432 * aux structures for vnode operations.
433 */
434
435 struct puffs_vnreq_lookup {
436 struct puffs_req pvn_pr;
437
438 struct puffs_kcn pvnr_cn; /* OUT */
439 struct puffs_kcred pvnr_cn_cred; /* OUT */
440 struct puffs_kcid pvnr_cn_cid; /* OUT */
441
442 void *pvnr_newnode; /* IN */
443 enum vtype pvnr_vtype; /* IN */
444 voff_t pvnr_size; /* IN */
445 dev_t pvnr_rdev; /* IN */
446 };
447
448 struct puffs_vnreq_create {
449 struct puffs_req pvn_pr;
450
451 struct puffs_kcn pvnr_cn; /* OUT */
452 struct puffs_kcred pvnr_cn_cred; /* OUT */
453 struct puffs_kcid pvnr_cn_cid; /* OUT */
454
455 struct vattr pvnr_va; /* OUT */
456 void *pvnr_newnode; /* IN */
457 };
458
459 struct puffs_vnreq_mknod {
460 struct puffs_req pvn_pr;
461
462 struct puffs_kcn pvnr_cn; /* OUT */
463 struct puffs_kcred pvnr_cn_cred; /* OUT */
464 struct puffs_kcid pvnr_cn_cid; /* OUT */
465
466 struct vattr pvnr_va; /* OUT */
467 void *pvnr_newnode; /* IN */
468 };
469
470 struct puffs_vnreq_open {
471 struct puffs_req pvn_pr;
472
473 struct puffs_kcred pvnr_cred; /* OUT */
474 struct puffs_kcid pvnr_cid; /* OUT */
475 int pvnr_mode; /* OUT */
476 };
477
478 struct puffs_vnreq_close {
479 struct puffs_req pvn_pr;
480
481 struct puffs_kcred pvnr_cred; /* OUT */
482 struct puffs_kcid pvnr_cid; /* OUT */
483 int pvnr_fflag; /* OUT */
484 };
485
486 struct puffs_vnreq_access {
487 struct puffs_req pvn_pr;
488
489 struct puffs_kcred pvnr_cred; /* OUT */
490 struct puffs_kcid pvnr_cid; /* OUT */
491 int pvnr_mode; /* OUT */
492 };
493
494 #define puffs_vnreq_setattr puffs_vnreq_setgetattr
495 #define puffs_vnreq_getattr puffs_vnreq_setgetattr
496 struct puffs_vnreq_setgetattr {
497 struct puffs_req pvn_pr;
498
499 struct puffs_kcred pvnr_cred; /* OUT */
500 struct puffs_kcid pvnr_cid; /* OUT */
501 struct vattr pvnr_va; /* IN/OUT (op depend) */
502 };
503
504 #define puffs_vnreq_read puffs_vnreq_readwrite
505 #define puffs_vnreq_write puffs_vnreq_readwrite
506 struct puffs_vnreq_readwrite {
507 struct puffs_req pvn_pr;
508
509 struct puffs_kcred pvnr_cred; /* OUT */
510 off_t pvnr_offset; /* OUT */
511 size_t pvnr_resid; /* IN/OUT */
512 int pvnr_ioflag; /* OUT */
513
514 uint8_t pvnr_data[0]; /* IN/OUT (wr/rd) */
515 };
516
517 #define puffs_vnreq_ioctl puffs_vnreq_fcnioctl
518 #define puffs_vnreq_fcntl puffs_vnreq_fcnioctl
519 struct puffs_vnreq_fcnioctl {
520 struct puffs_req pvn_pr;
521
522 struct puffs_kcred pvnr_cred;
523 u_long pvnr_command;
524 pid_t pvnr_pid;
525 int pvnr_fflag;
526
527 void *pvnr_data;
528 size_t pvnr_datalen;
529 int pvnr_copyback;
530 };
531
532 struct puffs_vnreq_poll {
533 struct puffs_req pvn_pr;
534
535 int pvnr_events; /* IN/OUT */
536 struct puffs_kcid pvnr_cid; /* OUT */
537 };
538
539 struct puffs_vnreq_fsync {
540 struct puffs_req pvn_pr;
541
542 struct puffs_kcred pvnr_cred; /* OUT */
543 struct puffs_kcid pvnr_cid; /* OUT */
544 off_t pvnr_offlo; /* OUT */
545 off_t pvnr_offhi; /* OUT */
546 int pvnr_flags; /* OUT */
547 };
548
549 struct puffs_vnreq_seek {
550 struct puffs_req pvn_pr;
551
552 struct puffs_kcred pvnr_cred; /* OUT */
553 off_t pvnr_oldoff; /* OUT */
554 off_t pvnr_newoff; /* OUT */
555 };
556
557 struct puffs_vnreq_remove {
558 struct puffs_req pvn_pr;
559
560 struct puffs_kcn pvnr_cn; /* OUT */
561 struct puffs_kcred pvnr_cn_cred; /* OUT */
562 struct puffs_kcid pvnr_cn_cid; /* OUT */
563
564 void *pvnr_cookie_targ; /* OUT */
565 };
566
567 struct puffs_vnreq_mkdir {
568 struct puffs_req pvn_pr;
569
570 struct puffs_kcn pvnr_cn; /* OUT */
571 struct puffs_kcred pvnr_cn_cred; /* OUT */
572 struct puffs_kcid pvnr_cn_cid; /* OUT */
573
574 struct vattr pvnr_va; /* OUT */
575 void *pvnr_newnode; /* IN */
576 };
577
578 struct puffs_vnreq_rmdir {
579 struct puffs_req pvn_pr;
580
581 struct puffs_kcn pvnr_cn; /* OUT */
582 struct puffs_kcred pvnr_cn_cred; /* OUT */
583 struct puffs_kcid pvnr_cn_cid; /* OUT */
584
585 void *pvnr_cookie_targ; /* OUT */
586 };
587
588 struct puffs_vnreq_link {
589 struct puffs_req pvn_pr;
590
591 struct puffs_kcn pvnr_cn; /* OUT */
592 struct puffs_kcred pvnr_cn_cred; /* OUT */
593 struct puffs_kcid pvnr_cn_cid; /* OUT */
594
595 void *pvnr_cookie_targ; /* OUT */
596 };
597
598 struct puffs_vnreq_rename {
599 struct puffs_req pvn_pr;
600
601 struct puffs_kcn pvnr_cn_src; /* OUT */
602 struct puffs_kcred pvnr_cn_src_cred; /* OUT */
603 struct puffs_kcid pvnr_cn_src_cid; /* OUT */
604 struct puffs_kcn pvnr_cn_targ; /* OUT */
605 struct puffs_kcred pvnr_cn_targ_cred; /* OUT */
606 struct puffs_kcid pvnr_cn_targ_cid; /* OUT */
607
608 void *pvnr_cookie_src; /* OUT */
609 void *pvnr_cookie_targ; /* OUT */
610 void *pvnr_cookie_targdir; /* OUT */
611 };
612
613 struct puffs_vnreq_symlink {
614 struct puffs_req pvn_pr;
615
616 struct puffs_kcn pvnr_cn; /* OUT */
617 struct puffs_kcred pvnr_cn_cred; /* OUT */
618 struct puffs_kcid pvnr_cn_cid; /* OUT */
619
620 struct vattr pvnr_va; /* OUT */
621 void *pvnr_newnode; /* IN */
622 char pvnr_link[MAXPATHLEN]; /* OUT */
623 };
624
625 struct puffs_vnreq_readdir {
626 struct puffs_req pvn_pr;
627
628 struct puffs_kcred pvnr_cred; /* OUT */
629 off_t pvnr_offset; /* IN/OUT */
630 size_t pvnr_resid; /* IN/OUT */
631 size_t pvnr_ncookies; /* IN/OUT */
632 int pvnr_eofflag; /* IN */
633
634 size_t pvnr_dentoff; /* OUT */
635 uint8_t pvnr_data[0] /* IN */
636 __aligned(ALIGNBYTES+1);
637 };
638
639 struct puffs_vnreq_readlink {
640 struct puffs_req pvn_pr;
641
642 struct puffs_kcred pvnr_cred; /* OUT */
643 size_t pvnr_linklen; /* IN */
644 char pvnr_link[MAXPATHLEN]; /* IN, XXX */
645 };
646
647 struct puffs_vnreq_reclaim {
648 struct puffs_req pvn_pr;
649
650 struct puffs_kcid pvnr_cid; /* OUT */
651 };
652
653 struct puffs_vnreq_inactive {
654 struct puffs_req pvn_pr;
655
656 struct puffs_kcid pvnr_cid; /* OUT */
657 };
658
659 struct puffs_vnreq_print {
660 struct puffs_req pvn_pr;
661
662 /* empty */
663 };
664
665 struct puffs_vnreq_pathconf {
666 struct puffs_req pvn_pr;
667
668 int pvnr_name; /* OUT */
669 int pvnr_retval; /* IN */
670 };
671
672 struct puffs_vnreq_advlock {
673 struct puffs_req pvn_pr;
674
675 struct flock pvnr_fl; /* OUT */
676 void *pvnr_id; /* OUT */
677 int pvnr_op; /* OUT */
678 int pvnr_flags; /* OUT */
679 };
680
681 struct puffs_vnreq_mmap {
682 struct puffs_req pvn_pr;
683
684 vm_prot_t pvnr_prot; /* OUT */
685 struct puffs_kcred pvnr_cred; /* OUT */
686 struct puffs_kcid pvnr_cid; /* OUT */
687 };
688
689
690 /*
691 * For cache reports. Everything is always out-out-out, no replies
692 */
693
694 struct puffs_cacherun {
695 off_t pcache_runstart;
696 off_t pcache_runend;
697 };
698
699 /* cache info. old used for write now */
700 struct puffs_cacheinfo {
701 struct puffs_req pcache_pr;
702
703 int pcache_type;
704 size_t pcache_nruns;
705 struct puffs_cacherun pcache_runs[0];
706 };
707 #define PCACHE_TYPE_READ 0
708 #define PCACHE_TYPE_WRITE 1
709
710 /* notyet */
711 #if 0
712 struct puffs_vnreq_kqfilter { };
713 struct puffs_vnreq_islocked { };
714 #endif
715 struct puffs_vnreq_getextattr { };
716 struct puffs_vnreq_setextattr { };
717 struct puffs_vnreq_listextattr { };
718
719 #ifdef _KERNEL
720 #define PUFFS_VFSREQ(a) \
721 struct puffs_vfsreq_##a a##_arg; \
722 memset(&a##_arg, 0, sizeof(struct puffs_vfsreq_##a))
723
724 #define PUFFS_VNREQ(a) \
725 struct puffs_vnreq_##a a##_arg; \
726 memset(&a##_arg, 0, sizeof(struct puffs_vnreq_##a))
727 #endif
728
729 #endif /* _FS_PUFFS_PUFFS_MSGIF_H_ */
730