ustarfs.c revision 1.4 1 /* $NetBSD: ustarfs.c,v 1.4 1998/10/15 18:01:49 bad Exp $ */
2
3 /* [Notice revision 2.2]
4 * Copyright (c) 1997, 1998 Avalon Computer Systems, Inc.
5 * All rights reserved.
6 *
7 * Author: Ross Harvey
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright and
13 * author notice, this list of conditions, and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 * notice, this list of conditions and the following disclaimer in the
16 * documentation and/or other materials provided with the distribution.
17 * 3. Neither the name of Avalon Computer Systems, Inc. nor the names of
18 * its contributors may be used to endorse or promote products derived
19 * from this software without specific prior written permission.
20 * 4. This copyright will be assigned to The NetBSD Foundation on
21 * 1/1/2000 unless these terms (including possibly the assignment
22 * date) are updated in writing by Avalon prior to the latest specified
23 * assignment date.
24 *
25 * THIS SOFTWARE IS PROVIDED BY AVALON COMPUTER SYSTEMS, INC. AND CONTRIBUTORS
26 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL AVALON OR THE CONTRIBUTORS
29 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 * POSSIBILITY OF SUCH DAMAGE.
36 */
37
38
39 /*
40 ******************************* USTAR FS *******************************
41 */
42
43 /*
44 * Implement an ROFS with an 8K boot area followed by ustar-format data.
45 * The point: minimal FS overhead, and it's easy (well, `possible') to
46 * split files over multiple volumes.
47 *
48 * XXX - TODO LIST
49 * --- - ---- ----
50 * XXX - tag volume numbers and verify that the correct volume is
51 * inserted after volume swaps.
52 *
53 * XXX - stop hardwiring FS metadata for floppies...embed it in a file,
54 * file name, or something. (Remember __SYMDEF? :-)
55 *
56 */
57
58 #include <lib/libkern/libkern.h>
59 #include "stand.h"
60 #include "ustarfs.h"
61
62 #define BBSIZE 8192
63 #define USTAR_NAME_BLOCK 512
64
65 /*
66 * Virtual offset: relative to start of ustar archive
67 * Logical offset: volume-relative
68 * Physical offset: the usual meaning
69 */
70
71 /* virtual offset to volume number */
72
73 #define vda2vn(_v,_volsize) ((_v) / (_volsize))
74
75 /* conversions between the three different levels of disk addresses */
76
77 #define vda2lda(_v,_volsize) ((_v) % (_volsize))
78 #define lda2vda(_v,_volsize,_volnumber) ((_v) + (_volsize) * (_volnumber))
79
80 #define lda2pda(_lda) ((_lda) + ustarfs_mode_offset)
81 #define pda2lda(_pda) ((_pda) - ustarfs_mode_offset)
82 /*
83 * Change this to off_t if you want to support big volumes. If we only use
84 * ustarfs on floppies it can stay int for libsa code density.
85 *
86 * It needs to be signed.
87 */
88 typedef int ustoffs;
89
90 typedef struct ustar_struct {
91 char ust_name[100],
92 ust_mode[8],
93 ust_uid[8],
94 ust_gid[8],
95 ust_size[12],
96 ust_misc[12 + 8 + 1 + 100],
97 ust_magic[6];
98 /* there is more, but we don't care */
99 } ustar_t;
100
101 /*
102 * We buffer one even cylindar of data...it's actually only really one
103 * cyl on a 1.44M floppy, but on other devices it's fast enough with any
104 * kind of block buffering, so we optimize for the slowest device.
105 */
106
107 typedef struct ust_active_struct {
108 ustar_t uas_active;
109 char uas_1cyl[18 * 2 * 512];
110 ustoffs uas_volsize; /* XXX this is hardwired now */
111 ustoffs uas_windowbase; /* relative to volume 0 */
112 ustoffs uas_filestart; /* relative to volume 0 */
113 ustoffs uas_fseek; /* relative to file */
114 ustoffs uas_filesize; /* relative to volume 0 */
115 int uas_init_window; /* data present in window */
116 int uas_init_fs; /* ust FS actually found */
117 int uas_volzerosig; /* ID volume 0 by signature */
118 int uas_offset; /* amount of cylinder below lba 0 */
119 } ust_active_t;
120
121 static const char formatid[] = "USTARFS",
122 metaname[] = "USTAR.volsize.";
123
124 static int ustarfs_mode_offset = BBSIZE;
125
126 static int checksig __P((ust_active_t *));
127 static int convert __P((const char *, int, int));
128 static int get_volume __P((struct open_file *, int));
129 static void setwindow(ust_active_t *, ustoffs, ustoffs);
130 static int ustarfs_cylinder_read __P((struct open_file *, ustoffs, int));
131 static void ustarfs_sscanf __P((const char *, const char *, int *));
132 static int read512block __P((struct open_file *, ustoffs, char block[512]));
133
134 static int
135 convert(f, base, fw)
136 const char *f;
137 int base, fw;
138 {
139 int i, c, result = 0;
140
141 while(fw > 0 && *f == ' ') {
142 --fw;
143 ++f;
144 }
145 for(i = 0; i < fw; ++i) {
146 c = f[i];
147 if ('0' <= c && c < '0' + base) {
148 c -= '0';
149 result = result * base + c;
150 } else break;
151 }
152 return result;
153 }
154
155 static void
156 ustarfs_sscanf(s,f,xi)
157 const char *s,*f;
158 int *xi;
159 {
160 *xi = convert(s, 8, convert(f + 1, 10, 99));
161 }
162
163 static int
164 ustarfs_cylinder_read(f, seek2, forcelabel)
165 struct open_file *f;
166 ustoffs seek2;
167 {
168 int e = 0; /* XXX work around gcc warning */
169 ustoffs lda;
170 char *xferbase;
171 ust_active_t *ustf;
172 size_t xferrqst, xfercount;
173
174 ustf = f->f_fsdata;
175 xferrqst = sizeof ustf->uas_1cyl;
176 xferbase = ustf->uas_1cyl;
177 lda = pda2lda(seek2);
178 if (lda < 0) {
179 lda = -lda;
180 ustf->uas_offset = lda;
181 /*
182 * don't read the label unless we have to. (Preserve
183 * sequential block access so tape boot works.)
184 */
185 if (!forcelabel) {
186 memset(xferbase, 0, lda);
187 xferrqst -= lda;
188 xferbase += lda;
189 seek2 += lda;
190 }
191 } else
192 ustf->uas_offset = 0;
193 while(xferrqst > 0) {
194 e = f->f_dev->dv_strategy(f->f_devdata, F_READ, seek2 / 512,
195 xferrqst, xferbase, &xfercount);
196 if (e)
197 break;
198 if (xfercount != xferrqst)
199 printf("Warning, unexpected short transfer %d/%d\n",
200 (int)xfercount, (int)xferrqst);
201 xferrqst -= xfercount;
202 xferbase += xfercount;
203 }
204 return e;
205 }
206
207 static int
208 checksig(ustf)
209 ust_active_t *ustf;
210 {
211 int i, rcs;
212
213 for(i = rcs = 0; i < sizeof ustf->uas_1cyl; ++i)
214 rcs += ustf->uas_1cyl[i];
215 return rcs;
216 }
217
218 static int
219 get_volume(f, vn)
220 struct open_file *f;
221 int vn;
222 {
223 int e, needvolume, havevolume;
224 ust_active_t *ustf;
225
226 ustf = f->f_fsdata;
227 havevolume = vda2vn(ustf->uas_windowbase, ustf->uas_volsize);
228 needvolume = vn;
229 while(havevolume != needvolume) {
230 printf("\nPlease ");
231 if (havevolume >= 0)
232 printf("remove disk %d, ", havevolume + 1);
233 printf("insert disk %d, and type return...",
234 needvolume + 1);
235 getchar();
236 printf("\n");
237 e = ustarfs_cylinder_read(f, 0, 1);
238 if (e)
239 return e;
240 if(strncmp(formatid, ustf->uas_1cyl, strlen(formatid))) {
241 /* no magic, might be OK if we want volume 0 */
242 if (ustf->uas_volzerosig == checksig(ustf)) {
243 havevolume = 0;
244 continue;
245 }
246 printf("Disk is not from the volume set?!\n");
247 havevolume = -2;
248 continue;
249 }
250 ustarfs_sscanf(ustf->uas_1cyl + strlen(formatid), "%9o",
251 &havevolume);
252 --havevolume;
253 }
254 return 0;
255 }
256
257 static void
258 setwindow(ust_active_t *ustf, ustoffs pda, ustoffs vda)
259 {
260 ustf->uas_windowbase = lda2vda(pda2lda(pda), ustf->uas_volsize,
261 vda2vn(vda, ustf->uas_volsize))
262 + ustf->uas_offset;
263 ustf->uas_init_window = 1;
264 }
265
266 static int
267 read512block(f, vda, block)
268 struct open_file *f;
269 ustoffs vda;
270 char block[512];
271 {
272 ustoffs pda;
273 ssize_t e;
274 int dienow;
275 ust_active_t *ustf;
276
277 dienow = 0;
278 ustf = f->f_fsdata;
279
280 if (!ustf->uas_init_window
281 && ustf->uas_windowbase == 0) {
282 /*
283 * The algorithm doesn't require this, but without it we would
284 * need some trick to get the cylinder zero signature computed.
285 * That signature is used to identify volume zero, which we
286 * don't give a USTARFS label to. (It's platform-dependent.)
287 */
288 e = ustarfs_cylinder_read(f, 0, 0);
289 if (e)
290 return e;
291 ustf->uas_volzerosig = checksig(ustf);
292 setwindow(ustf, 0, 0);
293 }
294 /*
295 * if (vda in window)
296 * copy out and return data
297 * if (vda is on some other disk)
298 * do disk swap
299 * get physical disk address
300 * round down to cylinder boundary
301 * read cylindar
302 * set window (in vda space) and try again
303 * [ there is an implicit assumption that windowbase always identifies
304 * the current volume, even if initwindow == 0. This way, a
305 * windowbase of 0 causes the initial volume to be disk 0 ]
306 */
307 tryagain:
308 if(ustf->uas_init_window
309 && ustf->uas_windowbase <= vda && vda <
310 ustf->uas_windowbase + sizeof ustf->uas_1cyl - ustf->uas_offset) {
311 memcpy(block, ustf->uas_1cyl
312 + (vda - ustf->uas_windowbase)
313 + ustf->uas_offset, 512);
314 return 0;
315 }
316 if (dienow++)
317 panic("ustarfs read512block");
318 ustf->uas_init_window = 0;
319 e = get_volume(f, vda2vn(vda, ustf->uas_volsize));
320 if (e)
321 return e;
322 pda = lda2pda(vda2lda(vda, ustf->uas_volsize));
323 pda-= pda % sizeof ustf->uas_1cyl;
324 e = ustarfs_cylinder_read(f, pda, 0);
325 if (e)
326 return e;
327 setwindow(ustf, pda, vda);
328 goto tryagain;
329 }
330
331 int
332 ustarfs_open(path, f)
333 char *path;
334 struct open_file *f;
335
336 {
337 ust_active_t *ustf;
338 ustoffs offset;
339 char block[512];
340 int filesize;
341 int e, e2;
342 int newvolblocks;
343
344 if (*path == '/')
345 ++path;
346 e = EINVAL;
347 f->f_fsdata = ustf = alloc(sizeof *ustf);
348 memset(ustf, 0, sizeof *ustf);
349 offset = 0;
350 /* default to 2880 sector floppy */
351 ustf->uas_volsize = 80 * 2 * 18 * 512 - lda2pda(0);
352 ustf->uas_fseek = 0;
353 for(;;) {
354 ustf->uas_filestart = offset;
355 e2 = read512block(f, offset, block);
356 if (e2) {
357 e = e2;
358 break;
359 }
360 memcpy(&ustf->uas_active, block, sizeof ustf->uas_active);
361 if(strncmp(ustf->uas_active.ust_magic, "ustar", 5))
362 break;
363 e = ENOENT; /* it must be an actual ustarfs */
364 ustf->uas_init_fs = 1;
365 /* if volume metadata is found, use it */
366 if(strncmp(ustf->uas_active.ust_name, metaname,
367 strlen(metaname)) == 0) {
368 ustarfs_sscanf(ustf->uas_active.ust_name
369 + strlen(metaname), "%99o", &newvolblocks);
370 ustf->uas_volsize = newvolblocks * 512
371 - lda2pda(0);
372 }
373 ustarfs_sscanf(ustf->uas_active.ust_size,"%12o",&filesize);
374 if(strncmp(ustf->uas_active.ust_name, path,
375 sizeof ustf->uas_active.ust_name) == 0) {
376 ustf->uas_filesize = filesize;
377 e = 0;
378 break;
379 }
380 offset += USTAR_NAME_BLOCK + filesize;
381 filesize %= 512;
382 if (filesize)
383 offset += 512 - filesize;
384 }
385 if (e) {
386 free(ustf, sizeof *ustf);
387 f->f_fsdata = 0;
388 }
389 return e;
390 }
391
392 int
393 ustarfs_write(f, start, size, resid)
394 struct open_file *f;
395 void *start;
396 size_t size;
397 size_t *resid;
398 {
399 return (EROFS);
400 }
401
402 off_t
403 ustarfs_seek(f, offs, whence)
404 struct open_file *f;
405 off_t offs;
406 int whence;
407 {
408 ust_active_t *ustf;
409
410 ustf = f->f_fsdata;
411 switch (whence) {
412 case SEEK_SET:
413 ustf->uas_fseek = offs;
414 break;
415 case SEEK_CUR:
416 ustf->uas_fseek += offs;
417 break;
418 case SEEK_END:
419 ustf->uas_fseek = ustf->uas_filesize - offs;
420 break;
421 default:
422 return -1;
423 }
424 return ustf->uas_fseek;
425 }
426
427 int
428 ustarfs_read(f, start, size, resid)
429 struct open_file *f;
430 void *start;
431 size_t size;
432 size_t *resid;
433 {
434 ust_active_t *ustf;
435 int e;
436 char *space512;
437 int blkoffs,
438 readoffs,
439 bufferoffset;
440 size_t seg;
441 int infile,
442 inbuffer;
443
444 e = 0;
445 space512 = alloc(512);
446 ustf = f->f_fsdata;
447 while(size != 0) {
448 if (ustf->uas_fseek >= ustf->uas_filesize)
449 break;
450 bufferoffset = ustf->uas_fseek % 512;
451 blkoffs = ustf->uas_fseek - bufferoffset;
452 readoffs = ustf->uas_filestart + 512 + blkoffs;
453 e = read512block(f, readoffs, space512);
454 if (e)
455 break;
456 seg = size;
457 inbuffer = 512 - bufferoffset;
458 if (inbuffer < seg)
459 seg = inbuffer;
460 infile = ustf->uas_filesize - ustf->uas_fseek;
461 if (infile < seg)
462 seg = infile;
463 memcpy(start, space512 + bufferoffset, seg);
464 ustf->uas_fseek += seg;
465 start += seg;
466 size -= seg;
467 }
468 if (resid)
469 *resid = size;
470 free(space512, 512);
471 return e;
472 }
473
474 int
475 ustarfs_stat(f, sb)
476 struct open_file *f;
477 struct stat *sb;
478 {
479 int mode, uid, gid;
480 ust_active_t *ustf;
481
482 if (f == NULL)
483 return EINVAL;
484 ustf = f->f_fsdata;
485 memset(sb, 0, sizeof *sb);
486 ustarfs_sscanf(ustf->uas_active.ust_mode, "%8o", &mode);
487 ustarfs_sscanf(ustf->uas_active.ust_uid, "%8o", &uid);
488 ustarfs_sscanf(ustf->uas_active.ust_gid, "%8o", &gid);
489 sb->st_mode = mode;
490 sb->st_uid = uid;
491 sb->st_gid = gid;
492 sb->st_size = ustf->uas_filesize;
493 return 0;
494 }
495
496 int
497 ustarfs_close(f)
498 struct open_file *f;
499 {
500 if (f == NULL || f->f_fsdata == NULL)
501 return EINVAL;
502 free(f->f_fsdata, sizeof(ust_active_t));
503 f->f_fsdata = 0;
504 return 0;
505 }
506