hfs_subr.c revision 1.17 1 1.17 hannken /* $NetBSD: hfs_subr.c,v 1.17 2011/11/14 18:35:13 hannken Exp $ */
2 1.1 dillo
3 1.1 dillo /*-
4 1.1 dillo * Copyright (c) 2005, 2007 The NetBSD Foundation, Inc.
5 1.1 dillo * All rights reserved.
6 1.1 dillo *
7 1.1 dillo * This code is derived from software contributed to The NetBSD Foundation
8 1.1 dillo * by Yevgeny Binder and Dieter Baron.
9 1.1 dillo *
10 1.1 dillo * Redistribution and use in source and binary forms, with or without
11 1.1 dillo * modification, are permitted provided that the following conditions
12 1.1 dillo * are met:
13 1.1 dillo * 1. Redistributions of source code must retain the above copyright
14 1.1 dillo * notice, this list of conditions and the following disclaimer.
15 1.1 dillo * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 dillo * notice, this list of conditions and the following disclaimer in the
17 1.1 dillo * documentation and/or other materials provided with the distribution.
18 1.1 dillo *
19 1.1 dillo * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 dillo * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 dillo * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 dillo * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 dillo * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 dillo * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 dillo * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 dillo * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 dillo * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 dillo * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 dillo * POSSIBILITY OF SUCH DAMAGE.
30 1.1 dillo */
31 1.1 dillo
32 1.1 dillo #include <sys/cdefs.h>
33 1.17 hannken __KERNEL_RCSID(0, "$NetBSD: hfs_subr.c,v 1.17 2011/11/14 18:35:13 hannken Exp $");
34 1.1 dillo
35 1.1 dillo #include <sys/param.h>
36 1.1 dillo #include <sys/systm.h>
37 1.1 dillo #include <sys/time.h>
38 1.1 dillo #include <sys/kernel.h>
39 1.1 dillo #include <sys/proc.h>
40 1.1 dillo #include <sys/vnode.h>
41 1.1 dillo #include <sys/malloc.h>
42 1.1 dillo #include <sys/stat.h>
43 1.1 dillo #include <sys/file.h>
44 1.1 dillo #include <sys/filedesc.h>
45 1.1 dillo #include <sys/mount.h>
46 1.16 christos #include <sys/device.h>
47 1.1 dillo #include <sys/conf.h>
48 1.1 dillo #include <sys/kauth.h>
49 1.11 pooka #include <sys/buf.h>
50 1.1 dillo
51 1.2 dillo #include <fs/hfs/hfs.h>
52 1.1 dillo
53 1.8 ad #include <miscfs/specfs/specdev.h>
54 1.8 ad
55 1.1 dillo /*
56 1.2 dillo * Initialize the vnode associated with a new hfsnode.
57 1.1 dillo */
58 1.1 dillo void
59 1.2 dillo hfs_vinit(struct mount *mp, int (**specops)(void *), int (**fifoops)(void *),
60 1.1 dillo struct vnode **vpp)
61 1.1 dillo {
62 1.2 dillo struct hfsnode *hp;
63 1.1 dillo struct vnode *vp;
64 1.1 dillo
65 1.1 dillo vp = *vpp;
66 1.1 dillo hp = VTOH(vp);
67 1.1 dillo
68 1.2 dillo vp->v_type = hfs_catalog_keyed_record_vtype(
69 1.2 dillo (hfs_catalog_keyed_record_t *)&hp->h_rec);
70 1.1 dillo
71 1.1 dillo switch(vp->v_type) {
72 1.1 dillo case VCHR:
73 1.1 dillo case VBLK:
74 1.1 dillo vp->v_op = specops;
75 1.8 ad spec_node_init(vp,
76 1.8 ad HFS_CONVERT_RDEV(hp->h_rec.file.bsd.special.raw_device));
77 1.1 dillo break;
78 1.1 dillo case VFIFO:
79 1.1 dillo vp->v_op = fifoops;
80 1.1 dillo break;
81 1.1 dillo
82 1.1 dillo case VNON:
83 1.1 dillo case VBAD:
84 1.1 dillo case VSOCK:
85 1.1 dillo case VDIR:
86 1.1 dillo case VREG:
87 1.1 dillo case VLNK:
88 1.1 dillo break;
89 1.1 dillo }
90 1.1 dillo
91 1.10 gmcgarry if (hp->h_rec.u.cnid == HFS_CNID_ROOT_FOLDER)
92 1.5 ad vp->v_vflag |= VV_ROOT;
93 1.1 dillo
94 1.1 dillo *vpp = vp;
95 1.1 dillo }
96 1.1 dillo
97 1.1 dillo /*
98 1.2 dillo * Callbacks for libhfs
99 1.1 dillo */
100 1.1 dillo
101 1.1 dillo void
102 1.2 dillo hfs_libcb_error(
103 1.1 dillo const char* format,
104 1.1 dillo const char* file,
105 1.1 dillo int line,
106 1.1 dillo va_list args)
107 1.1 dillo {
108 1.2 dillo #ifdef HFS_DEBUG
109 1.1 dillo if (file != NULL)
110 1.1 dillo printf("%s:%i: ", file, line);
111 1.1 dillo else
112 1.2 dillo printf("hfs: ");
113 1.1 dillo #else
114 1.2 dillo printf("hfs: ");
115 1.1 dillo #endif
116 1.1 dillo
117 1.1 dillo /* XXX Should we really display this if debugging is off? */
118 1.1 dillo vprintf(format, args);
119 1.1 dillo printf("\n");
120 1.1 dillo }
121 1.1 dillo
122 1.1 dillo /* XXX change malloc/realloc/free to use pools */
123 1.1 dillo
124 1.1 dillo void*
125 1.2 dillo hfs_libcb_malloc(size_t size, hfs_callback_args* cbargs)
126 1.1 dillo {
127 1.2 dillo return malloc(size, /*M_HFSMNT*/ M_TEMP, M_WAITOK);
128 1.1 dillo }
129 1.1 dillo
130 1.1 dillo void*
131 1.2 dillo hfs_libcb_realloc(void* ptr, size_t size, hfs_callback_args* cbargs)
132 1.1 dillo {
133 1.2 dillo return realloc(ptr, size, /*M_HFSMNT*/ M_TEMP, M_WAITOK);
134 1.1 dillo }
135 1.1 dillo
136 1.1 dillo void
137 1.2 dillo hfs_libcb_free(void* ptr, hfs_callback_args* cbargs)
138 1.1 dillo {
139 1.2 dillo free(ptr, /*M_HFSMNT*/ M_TEMP);
140 1.1 dillo }
141 1.1 dillo
142 1.1 dillo /*
143 1.2 dillo * hfs_libcb_opendev()
144 1.1 dillo *
145 1.2 dillo * hfslib uses this callback to open a volume's device node by name. However,
146 1.1 dillo * by the time this is called here, the device node has already been opened by
147 1.1 dillo * VFS. So we are passed the vnode to this volume's block device and use that
148 1.1 dillo * instead of the device's name.
149 1.1 dillo */
150 1.1 dillo int
151 1.2 dillo hfs_libcb_opendev(
152 1.2 dillo hfs_volume* vol,
153 1.1 dillo const char* devname,
154 1.2 dillo hfs_callback_args* cbargs)
155 1.1 dillo {
156 1.2 dillo hfs_libcb_data* cbdata = NULL;
157 1.2 dillo hfs_libcb_argsopen* args;
158 1.12 pooka int result, mode;
159 1.16 christos uint64_t psize;
160 1.16 christos unsigned secsize;
161 1.1 dillo
162 1.1 dillo result = 0;
163 1.2 dillo args = (hfs_libcb_argsopen*)(cbargs->openvol);
164 1.1 dillo
165 1.1 dillo if (vol == NULL || devname == NULL) {
166 1.1 dillo result = EINVAL;
167 1.1 dillo goto error;
168 1.1 dillo }
169 1.1 dillo
170 1.2 dillo cbdata = malloc(sizeof(hfs_libcb_data), M_HFSMNT, M_WAITOK);
171 1.1 dillo if (cbdata == NULL) {
172 1.1 dillo result = ENOMEM;
173 1.1 dillo goto error;
174 1.1 dillo }
175 1.1 dillo vol->cbdata = cbdata;
176 1.1 dillo
177 1.1 dillo cbdata->devvp = NULL;
178 1.1 dillo
179 1.1 dillo /* Open the device node. */
180 1.12 pooka mode = vol->readonly ? FREAD : FREAD|FWRITE;
181 1.17 hannken vn_lock(args->devvp, LK_EXCLUSIVE | LK_RETRY);
182 1.17 hannken result = VOP_OPEN(args->devvp, mode, FSCRED);
183 1.17 hannken VOP_UNLOCK(args->devvp);
184 1.17 hannken if (result != 0)
185 1.1 dillo goto error;
186 1.1 dillo
187 1.1 dillo /* Flush out any old buffers remaining from a previous use. */
188 1.1 dillo vn_lock(args->devvp, LK_EXCLUSIVE | LK_RETRY);
189 1.1 dillo result = vinvalbuf(args->devvp, V_SAVE, args->cred, args->l, 0, 0);
190 1.14 hannken VOP_UNLOCK(args->devvp);
191 1.12 pooka if (result != 0) {
192 1.12 pooka VOP_CLOSE(args->devvp, mode, FSCRED);
193 1.1 dillo goto error;
194 1.12 pooka }
195 1.1 dillo
196 1.1 dillo cbdata->devvp = args->devvp;
197 1.1 dillo
198 1.1 dillo /* Determine the device's block size. Default to DEV_BSIZE if unavailable.*/
199 1.16 christos if (getdisksize(args->devvp, &psize, &secsize) != 0)
200 1.1 dillo cbdata->devblksz = DEV_BSIZE;
201 1.1 dillo else
202 1.16 christos cbdata->devblksz = secsize;
203 1.1 dillo
204 1.1 dillo return 0;
205 1.1 dillo
206 1.1 dillo error:
207 1.1 dillo if (cbdata != NULL) {
208 1.1 dillo if (cbdata->devvp != NULL) {
209 1.1 dillo vn_lock(cbdata->devvp, LK_EXCLUSIVE | LK_RETRY);
210 1.1 dillo (void)VOP_CLOSE(cbdata->devvp, vol->readonly ? FREAD :
211 1.6 pooka FREAD | FWRITE, NOCRED);
212 1.14 hannken VOP_UNLOCK(cbdata->devvp);
213 1.1 dillo }
214 1.2 dillo free(cbdata, M_HFSMNT);
215 1.1 dillo vol->cbdata = NULL;
216 1.1 dillo }
217 1.1 dillo
218 1.1 dillo return result;
219 1.1 dillo }
220 1.1 dillo
221 1.1 dillo void
222 1.2 dillo hfs_libcb_closedev(hfs_volume* in_vol, hfs_callback_args* cbargs)
223 1.1 dillo {
224 1.1 dillo struct vnode *devvp;
225 1.1 dillo
226 1.1 dillo if (in_vol == NULL)
227 1.1 dillo return;
228 1.1 dillo
229 1.1 dillo if (in_vol->cbdata != NULL) {
230 1.2 dillo devvp = ((hfs_libcb_data*)in_vol->cbdata)->devvp;
231 1.1 dillo if (devvp != NULL) {
232 1.1 dillo vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
233 1.6 pooka (void)VOP_CLOSE(devvp,
234 1.6 pooka in_vol->readonly ? FREAD : FREAD | FWRITE, NOCRED);
235 1.14 hannken VOP_UNLOCK(devvp);
236 1.1 dillo }
237 1.1 dillo
238 1.2 dillo free(in_vol->cbdata, M_HFSMNT);
239 1.1 dillo in_vol->cbdata = NULL;
240 1.1 dillo }
241 1.1 dillo }
242 1.1 dillo
243 1.1 dillo int
244 1.2 dillo hfs_libcb_read(
245 1.2 dillo hfs_volume* vol,
246 1.1 dillo void* outbytes,
247 1.1 dillo uint64_t length,
248 1.1 dillo uint64_t offset,
249 1.2 dillo hfs_callback_args* cbargs)
250 1.1 dillo {
251 1.2 dillo hfs_libcb_data *cbdata;
252 1.2 dillo hfs_libcb_argsread* argsread;
253 1.1 dillo kauth_cred_t cred;
254 1.1 dillo uint64_t physoffset; /* physical offset from start of device(?) */
255 1.1 dillo
256 1.1 dillo if (vol == NULL || outbytes == NULL)
257 1.1 dillo return -1;
258 1.1 dillo
259 1.2 dillo cbdata = (hfs_libcb_data*)vol->cbdata;
260 1.1 dillo
261 1.1 dillo if (cbargs != NULL
262 1.2 dillo && (argsread = (hfs_libcb_argsread*)cbargs->read) != NULL
263 1.1 dillo && argsread->cred != NULL)
264 1.1 dillo cred = argsread->cred;
265 1.1 dillo else
266 1.1 dillo cred = NOCRED;
267 1.1 dillo
268 1.1 dillo /*
269 1.1 dillo * Since bread() only reads data in terms of integral blocks, it may have
270 1.1 dillo * read some data before and/or after our desired offset & length. So when
271 1.1 dillo * copying that data into the outgoing buffer, start at the actual desired
272 1.1 dillo * offset and only copy the desired length.
273 1.1 dillo */
274 1.3 dillo physoffset = offset + vol->offset;
275 1.1 dillo
276 1.2 dillo return hfs_pread(cbdata->devvp, outbytes, cbdata->devblksz, physoffset,
277 1.1 dillo length, cred);
278 1.1 dillo }
279 1.1 dillo
280 1.1 dillo /*
281 1.1 dillo * So it turns out that bread() is pretty shoddy. It not only requires the size
282 1.1 dillo * parameter to be an integral multiple of the device's block size, but also
283 1.1 dillo * requires the block number to be on a boundary of that same block size -- and
284 1.1 dillo * yet be given as an integral multiple of DEV_BSIZE! So after much toil and
285 1.2 dillo * bloodshed, hfs_pread() was written as a convenience (and a model of how sane
286 1.1 dillo * people take their bread()). Returns 0 on success.
287 1.1 dillo */
288 1.1 dillo int
289 1.2 dillo hfs_pread(struct vnode *vp, void *buf, size_t secsz, uint64_t off,
290 1.1 dillo uint64_t len, kauth_cred_t cred)
291 1.1 dillo {
292 1.1 dillo struct buf *bp;
293 1.1 dillo uint64_t curoff; /* relative to 'start' variable */
294 1.1 dillo uint64_t start;
295 1.1 dillo int error;
296 1.1 dillo
297 1.1 dillo if (vp == NULL || buf == NULL)
298 1.1 dillo return EINVAL;
299 1.1 dillo
300 1.1 dillo if (len == 0)
301 1.1 dillo return 0;
302 1.1 dillo
303 1.1 dillo curoff = 0;
304 1.1 dillo error = 0;
305 1.1 dillo
306 1.1 dillo /* align offset to highest preceding sector boundary */
307 1.1 dillo #define ABSZ(x, bsz) (((x)/(bsz))*(bsz))
308 1.1 dillo
309 1.1 dillo /* round size up to integral # of block sizes */
310 1.1 dillo #define RBSZ(x, bsz) (((x) + (bsz) - 1) & ~((bsz) - 1))
311 1.1 dillo
312 1.1 dillo start = ABSZ(off, secsz);
313 1.1 dillo while (start + curoff < off + len)
314 1.1 dillo {
315 1.1 dillo bp = NULL;
316 1.1 dillo
317 1.1 dillo /* XXX Does the algorithm always do what's intended here when
318 1.1 dillo * XXX start != off? Need to test this. */
319 1.1 dillo
320 1.1 dillo error = bread(vp, (start + curoff) / DEV_BSIZE,/* no rounding involved*/
321 1.9 hannken RBSZ(min(len - curoff + (off - start), MAXBSIZE), secsz),
322 1.9 hannken cred, 0, &bp);
323 1.1 dillo
324 1.1 dillo if (error == 0)
325 1.1 dillo memcpy((uint8_t*)buf + curoff, (uint8_t*)bp->b_data +
326 1.1 dillo (off - start), min(len - curoff, MAXBSIZE - (off - start)));
327 1.1 dillo
328 1.1 dillo if (bp != NULL)
329 1.4 ad brelse(bp, 0);
330 1.1 dillo if (error != 0)
331 1.1 dillo return error;
332 1.1 dillo
333 1.1 dillo curoff += MAXBSIZE;
334 1.1 dillo }
335 1.1 dillo #undef ABSZ
336 1.1 dillo #undef RBSZ
337 1.1 dillo
338 1.1 dillo return 0;
339 1.1 dillo }
340 1.1 dillo
341 1.1 dillo /* XXX Provide a routine to take a catalog record and return its proper BSD file
342 1.1 dillo * XXX or directory mode value */
343 1.1 dillo
344 1.1 dillo
345 1.1 dillo /* Convert from HFS+ time representation to UNIX time since epoch. */
346 1.1 dillo void
347 1.2 dillo hfs_time_to_timespec(uint32_t hfstime, struct timespec *unixtime)
348 1.1 dillo {
349 1.1 dillo /*
350 1.1 dillo * HFS+ time is calculated in seconds since midnight, Jan 1st, 1904.
351 1.1 dillo * struct timespec counts from midnight, Jan 1st, 1970. Thus, there is
352 1.1 dillo * precisely a 66 year difference between them, which is equal to
353 1.1 dillo * 2,082,844,800 seconds. No, I didn't count them by hand.
354 1.1 dillo */
355 1.1 dillo
356 1.1 dillo if (hfstime < 2082844800)
357 1.1 dillo unixtime->tv_sec = 0; /* dates before 1970 are bs anyway, so use epoch*/
358 1.1 dillo else
359 1.1 dillo unixtime->tv_sec = hfstime - 2082844800;
360 1.1 dillo
361 1.1 dillo unixtime->tv_nsec = 0; /* we don't have nanosecond resolution */
362 1.1 dillo }
363 1.1 dillo
364 1.1 dillo /*
365 1.1 dillo * Endian conversion with automatic pointer incrementation.
366 1.1 dillo */
367 1.1 dillo
368 1.1 dillo uint16_t be16tohp(void** inout_ptr)
369 1.1 dillo {
370 1.1 dillo uint16_t result;
371 1.1 dillo
372 1.15 christos if(inout_ptr == NULL)
373 1.1 dillo return 0;
374 1.1 dillo
375 1.15 christos memcpy(&result, *inout_ptr, sizeof(result));
376 1.15 christos *inout_ptr = (char *)*inout_ptr + sizeof(result);
377 1.1 dillo
378 1.15 christos return be16toh(result);
379 1.1 dillo }
380 1.1 dillo
381 1.1 dillo uint32_t be32tohp(void** inout_ptr)
382 1.1 dillo {
383 1.1 dillo uint32_t result;
384 1.1 dillo
385 1.15 christos if(inout_ptr == NULL)
386 1.1 dillo return 0;
387 1.1 dillo
388 1.15 christos memcpy(&result, *inout_ptr, sizeof(result));
389 1.15 christos *inout_ptr = (char *)*inout_ptr + sizeof(result);
390 1.15 christos return be32toh(result);
391 1.1 dillo }
392 1.1 dillo
393 1.1 dillo uint64_t be64tohp(void** inout_ptr)
394 1.1 dillo {
395 1.1 dillo uint64_t result;
396 1.1 dillo
397 1.15 christos if(inout_ptr == NULL)
398 1.1 dillo return 0;
399 1.1 dillo
400 1.15 christos memcpy(&result, *inout_ptr, sizeof(result));
401 1.15 christos *inout_ptr = (char *)*inout_ptr + sizeof(result);
402 1.15 christos return be64toh(result);
403 1.1 dillo }
404 1.1 dillo
405 1.1 dillo enum vtype
406 1.2 dillo hfs_catalog_keyed_record_vtype(const hfs_catalog_keyed_record_t *rec)
407 1.1 dillo {
408 1.2 dillo if (rec->type == HFS_REC_FILE) {
409 1.1 dillo uint32_t mode;
410 1.1 dillo
411 1.2 dillo mode = ((const hfs_file_record_t *)rec)->bsd.file_mode;
412 1.1 dillo if (mode != 0)
413 1.1 dillo return IFTOVT(mode);
414 1.1 dillo else
415 1.1 dillo return VREG;
416 1.1 dillo }
417 1.1 dillo else
418 1.1 dillo return VDIR;
419 1.1 dillo }
420