db.c revision 1.23 1 1.23 lukem /* $NetBSD: db.c,v 1.23 2009/01/18 01:04:34 lukem Exp $ */
2 1.1 lukem
3 1.1 lukem /*-
4 1.17 lukem * Copyright (c) 2002-2008 The NetBSD Foundation, Inc.
5 1.1 lukem * All rights reserved.
6 1.1 lukem *
7 1.1 lukem * This code is derived from software contributed to The NetBSD Foundation
8 1.1 lukem * by Luke Mewburn of Wasabi Systems.
9 1.1 lukem *
10 1.1 lukem * Redistribution and use in source and binary forms, with or without
11 1.1 lukem * modification, are permitted provided that the following conditions
12 1.1 lukem * are met:
13 1.1 lukem * 1. Redistributions of source code must retain the above copyright
14 1.1 lukem * notice, this list of conditions and the following disclaimer.
15 1.1 lukem * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 lukem * notice, this list of conditions and the following disclaimer in the
17 1.1 lukem * documentation and/or other materials provided with the distribution.
18 1.1 lukem *
19 1.1 lukem * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 lukem * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 lukem * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 lukem * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 lukem * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 lukem * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 lukem * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 lukem * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 lukem * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 lukem * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 lukem * POSSIBILITY OF SUCH DAMAGE.
30 1.1 lukem */
31 1.1 lukem
32 1.22 lukem #if HAVE_NBTOOL_CONFIG_H
33 1.22 lukem #include "nbtool_config.h"
34 1.22 lukem #endif
35 1.22 lukem
36 1.1 lukem #include <sys/cdefs.h>
37 1.1 lukem #ifndef lint
38 1.10 aymeric #ifdef __RCSID
39 1.23 lukem __RCSID("$NetBSD: db.c,v 1.23 2009/01/18 01:04:34 lukem Exp $");
40 1.10 aymeric #endif /* __RCSID */
41 1.1 lukem #endif /* not lint */
42 1.1 lukem
43 1.21 lukem #include <ctype.h>
44 1.1 lukem #include <db.h>
45 1.1 lukem #include <err.h>
46 1.1 lukem #include <fcntl.h>
47 1.20 lukem #include <limits.h>
48 1.1 lukem #include <stdio.h>
49 1.1 lukem #include <stdlib.h>
50 1.1 lukem #include <string.h>
51 1.1 lukem #include <unistd.h>
52 1.8 seb #include <vis.h>
53 1.1 lukem
54 1.3 lukem
55 1.1 lukem typedef enum {
56 1.1 lukem F_WRITE = 1<<0,
57 1.1 lukem F_DELETE = 1<<1,
58 1.1 lukem F_SHOW_KEY = 1<<2,
59 1.1 lukem F_SHOW_VALUE = 1<<3,
60 1.1 lukem F_QUIET = 1<<10,
61 1.1 lukem F_IGNORECASE = 1<<11,
62 1.1 lukem F_ENDIAN_BIG = 1<<12,
63 1.1 lukem F_ENDIAN_LITTLE = 1<<13,
64 1.1 lukem F_NO_NUL = 1<<14,
65 1.1 lukem F_CREATENEW = 1<<20,
66 1.1 lukem F_DUPLICATES = 1<<21,
67 1.1 lukem F_REPLACE = 1<<22,
68 1.8 seb F_ENCODE_KEY = 1<<23,
69 1.8 seb F_ENCODE_VAL = 1<<24,
70 1.8 seb F_DECODE_KEY = 1<<25,
71 1.8 seb F_DECODE_VAL = 1<<26,
72 1.1 lukem } flags_t;
73 1.1 lukem
74 1.1 lukem int main(int, char *[]);
75 1.1 lukem void db_print(DBT *, DBT *);
76 1.1 lukem int db_dump(void);
77 1.1 lukem int db_del(char *);
78 1.1 lukem int db_get(char *);
79 1.1 lukem int db_put(char *, char *);
80 1.1 lukem int parseline(FILE *, const char *, char **, char **);
81 1.8 seb int encode_data(size_t, char *, char **);
82 1.8 seb int decode_data(char *, char **);
83 1.8 seb void parse_encode_decode_arg(const char *, int);
84 1.8 seb int parse_encode_option(char **);
85 1.1 lukem void usage(void);
86 1.1 lukem
87 1.20 lukem flags_t flags = 0;
88 1.20 lukem DB *db;
89 1.20 lukem const char *outputsep = "\t";
90 1.20 lukem int visflags = 0;
91 1.20 lukem const char *extra_echars = NULL;
92 1.1 lukem
93 1.1 lukem int
94 1.1 lukem main(int argc, char *argv[])
95 1.1 lukem {
96 1.1 lukem struct {
97 1.20 lukem char *file;
98 1.20 lukem char *type;
99 1.20 lukem DBTYPE dbtype;
100 1.20 lukem void *info;
101 1.20 lukem int flags;
102 1.20 lukem mode_t mode;
103 1.20 lukem unsigned int pagesize;
104 1.1 lukem } oi;
105 1.1 lukem BTREEINFO btreeinfo;
106 1.1 lukem HASHINFO hashinfo;
107 1.1 lukem FILE *infp;
108 1.1 lukem const char *infile, *fieldsep;
109 1.1 lukem char *p, *key, *val;
110 1.1 lukem int ch, rv;
111 1.20 lukem long lval;
112 1.1 lukem
113 1.1 lukem setprogname(argv[0]);
114 1.1 lukem
115 1.1 lukem infile = NULL;
116 1.1 lukem fieldsep = " ";
117 1.1 lukem infp = NULL;
118 1.1 lukem memset(&oi, 0, sizeof(oi));
119 1.1 lukem oi.mode = 0644;
120 1.20 lukem oi.pagesize = 4096;
121 1.1 lukem
122 1.1 lukem /* parse arguments */
123 1.8 seb while ( (ch = getopt(argc, argv,
124 1.20 lukem "CDdE:F:f:iKm:NO:P:qRS:T:U:VwX:")) != -1) {
125 1.1 lukem switch (ch) {
126 1.1 lukem
127 1.1 lukem case 'C':
128 1.1 lukem flags |= F_CREATENEW;
129 1.1 lukem break;
130 1.1 lukem
131 1.1 lukem case 'D':
132 1.1 lukem flags |= F_DUPLICATES;
133 1.1 lukem break;
134 1.1 lukem
135 1.1 lukem case 'd':
136 1.1 lukem flags |= F_DELETE;
137 1.1 lukem break;
138 1.1 lukem
139 1.1 lukem case 'E':
140 1.1 lukem if (! optarg[0] || optarg[1])
141 1.1 lukem goto badendian;
142 1.4 lukem switch (toupper((int)optarg[0])) {
143 1.1 lukem case 'B':
144 1.1 lukem flags |= F_ENDIAN_BIG;
145 1.1 lukem break;
146 1.1 lukem case 'L':
147 1.1 lukem flags |= F_ENDIAN_LITTLE;
148 1.1 lukem break;
149 1.1 lukem case 'H':
150 1.1 lukem flags &= ~(F_ENDIAN_BIG | F_ENDIAN_LITTLE);
151 1.1 lukem break;
152 1.1 lukem default:
153 1.1 lukem badendian:
154 1.1 lukem errx(1, "Bad endian `%s'", optarg);
155 1.1 lukem }
156 1.1 lukem break;
157 1.1 lukem
158 1.1 lukem case 'F':
159 1.14 lukem if (! optarg[0])
160 1.5 seb errx(1, "Invalid field separator `%s'",
161 1.5 seb optarg);
162 1.1 lukem fieldsep = optarg;
163 1.1 lukem break;
164 1.1 lukem
165 1.1 lukem case 'f':
166 1.1 lukem infile = optarg;
167 1.1 lukem break;
168 1.15 lukem
169 1.1 lukem case 'i':
170 1.1 lukem flags |= F_IGNORECASE;
171 1.1 lukem break;
172 1.1 lukem
173 1.1 lukem case 'K':
174 1.1 lukem flags |= F_SHOW_KEY;
175 1.1 lukem break;
176 1.1 lukem
177 1.1 lukem case 'm':
178 1.20 lukem lval = strtol(optarg, &p, 8);
179 1.1 lukem if (p == optarg || *p != '\0')
180 1.1 lukem errx(1, "Invalid octal number `%s'", optarg);
181 1.20 lukem if (lval < 0 || lval > 07777)
182 1.20 lukem errx(1, "Invalid mode `%s'", optarg);
183 1.20 lukem oi.mode = (mode_t)lval;
184 1.1 lukem break;
185 1.1 lukem
186 1.1 lukem case 'N':
187 1.1 lukem flags |= F_NO_NUL;
188 1.1 lukem break;
189 1.1 lukem
190 1.6 seb case 'O':
191 1.6 seb outputsep = optarg;
192 1.6 seb break;
193 1.6 seb
194 1.20 lukem case 'P':
195 1.20 lukem lval = strtol(optarg, &p, 10);
196 1.20 lukem if (p == optarg || *p != '\0')
197 1.20 lukem errx(1, "Invalid pagesize `%s'", optarg);
198 1.23 lukem if (lval < 0 || (unsigned int)lval >= UINT_MAX)
199 1.20 lukem errx(1, "Pagesize `%s' out of range", optarg);
200 1.20 lukem oi.pagesize = (unsigned int)lval;
201 1.20 lukem break;
202 1.20 lukem
203 1.1 lukem case 'q':
204 1.1 lukem flags |= F_QUIET;
205 1.1 lukem break;
206 1.1 lukem
207 1.1 lukem case 'R':
208 1.1 lukem flags |= F_REPLACE;
209 1.1 lukem break;
210 1.1 lukem
211 1.8 seb case 'S':
212 1.8 seb parse_encode_decode_arg(optarg, 1 /* encode */);
213 1.8 seb if (! (flags & (F_ENCODE_KEY | F_ENCODE_VAL)))
214 1.8 seb errx(1, "Invalid encoding argument `%s'",
215 1.8 seb optarg);
216 1.8 seb break;
217 1.8 seb
218 1.8 seb case 'T':
219 1.19 lukem visflags = parse_encode_option(&optarg);
220 1.19 lukem if (! visflags)
221 1.19 lukem errx(1, "Invalid encoding/decoding option `%s'",
222 1.8 seb optarg);
223 1.8 seb break;
224 1.8 seb
225 1.8 seb case 'U':
226 1.8 seb parse_encode_decode_arg(optarg, 0 /* decode */);
227 1.8 seb if (! (flags & (F_DECODE_KEY | F_DECODE_VAL)))
228 1.8 seb errx(1, "Invalid decoding argument `%s'",
229 1.8 seb optarg);
230 1.8 seb break;
231 1.8 seb
232 1.1 lukem case 'V':
233 1.1 lukem flags |= F_SHOW_VALUE;
234 1.1 lukem break;
235 1.1 lukem
236 1.1 lukem case 'w':
237 1.1 lukem flags |= F_WRITE;
238 1.1 lukem break;
239 1.1 lukem
240 1.8 seb case 'X':
241 1.8 seb extra_echars = optarg;
242 1.8 seb break;
243 1.8 seb
244 1.1 lukem default:
245 1.1 lukem usage();
246 1.1 lukem
247 1.1 lukem }
248 1.1 lukem }
249 1.1 lukem argc -= optind;
250 1.1 lukem argv += optind;
251 1.1 lukem
252 1.1 lukem /* validate arguments */
253 1.1 lukem if (argc < 2)
254 1.1 lukem usage();
255 1.1 lukem oi.type = argv[0];
256 1.1 lukem oi.file = argv[1];
257 1.1 lukem argc -= 2;
258 1.1 lukem argv += 2;
259 1.1 lukem
260 1.1 lukem if (flags & F_WRITE) {
261 1.1 lukem if (flags & (F_SHOW_KEY | F_SHOW_VALUE | F_DELETE))
262 1.1 lukem usage();
263 1.1 lukem if ((!infile && argc < 2) || (argc % 2))
264 1.1 lukem usage();
265 1.19 lukem if (0 != (visflags & ~(VIS_HTTPSTYLE)))
266 1.19 lukem errx(1, "Unsupported decoding option provided to -T");
267 1.1 lukem oi.flags = O_RDWR | O_CREAT | O_EXLOCK;
268 1.1 lukem if (flags & F_CREATENEW)
269 1.18 lukem oi.flags |= O_TRUNC;
270 1.1 lukem } else if (flags & F_DELETE) {
271 1.1 lukem if (flags & (F_SHOW_KEY | F_SHOW_VALUE | F_WRITE))
272 1.1 lukem usage();
273 1.1 lukem if (!infile && argc < 1)
274 1.1 lukem usage();
275 1.19 lukem if (0 != (visflags & ~(VIS_HTTPSTYLE)))
276 1.19 lukem errx(1, "Unsupported decoding option provided to -T");
277 1.1 lukem oi.flags = O_RDWR | O_CREAT | O_EXLOCK;
278 1.1 lukem } else {
279 1.1 lukem if (! (flags & (F_SHOW_KEY | F_SHOW_VALUE)))
280 1.1 lukem flags |= (F_SHOW_KEY | F_SHOW_VALUE);
281 1.1 lukem oi.flags = O_RDONLY | O_SHLOCK;
282 1.1 lukem }
283 1.1 lukem
284 1.1 lukem /* validate oi.type */
285 1.1 lukem if (strcmp(oi.type, "btree") == 0) {
286 1.1 lukem memset(&btreeinfo, 0, sizeof(btreeinfo));
287 1.1 lukem if (flags & F_ENDIAN_BIG)
288 1.1 lukem btreeinfo.lorder = 4321;
289 1.1 lukem else if (flags & F_ENDIAN_LITTLE)
290 1.1 lukem btreeinfo.lorder = 1234;
291 1.1 lukem if (flags & F_DUPLICATES)
292 1.1 lukem btreeinfo.flags = R_DUP;
293 1.20 lukem btreeinfo.psize = oi.pagesize;
294 1.2 lukem btreeinfo.cachesize = 1024 * 1024;
295 1.1 lukem oi.info = &btreeinfo;
296 1.1 lukem oi.dbtype = DB_BTREE;
297 1.1 lukem } else if (strcmp(oi.type, "hash") == 0) {
298 1.1 lukem memset(&hashinfo, 0, sizeof(hashinfo));
299 1.1 lukem if (flags & F_ENDIAN_BIG)
300 1.1 lukem hashinfo.lorder = 4321;
301 1.1 lukem else if (flags & F_ENDIAN_LITTLE)
302 1.1 lukem hashinfo.lorder = 1234;
303 1.20 lukem hashinfo.bsize = oi.pagesize;
304 1.2 lukem hashinfo.cachesize = 1024 * 1024;
305 1.1 lukem oi.info = &hashinfo;
306 1.1 lukem oi.dbtype = DB_HASH;
307 1.1 lukem } else {
308 1.1 lukem warnx("Unknown database type `%s'", oi.type);
309 1.1 lukem usage();
310 1.1 lukem }
311 1.1 lukem
312 1.1 lukem if (infile) {
313 1.1 lukem if (strcmp(infile, "-") == 0)
314 1.1 lukem infp = stdin;
315 1.1 lukem else if ((infp = fopen(infile, "r")) == NULL)
316 1.1 lukem err(1, "Opening input file `%s'", infile);
317 1.1 lukem }
318 1.1 lukem
319 1.1 lukem /* open database */
320 1.1 lukem db = dbopen(oi.file, oi.flags, oi.mode, oi.dbtype, oi.info);
321 1.1 lukem if (db == NULL)
322 1.1 lukem err(1, "Opening database `%s'", oi.file);
323 1.1 lukem
324 1.1 lukem
325 1.1 lukem /* manipulate database */
326 1.1 lukem rv = 0;
327 1.1 lukem if (flags & F_WRITE) { /* write entries */
328 1.1 lukem for (ch = 0; ch < argc; ch += 2)
329 1.1 lukem if ((rv = db_put(argv[ch], argv[ch+1])))
330 1.1 lukem goto cleanup;
331 1.1 lukem if (infp) {
332 1.1 lukem while (parseline(infp, fieldsep, &key, &val)) {
333 1.1 lukem if ((rv = db_put(key, val)))
334 1.1 lukem goto cleanup;
335 1.1 lukem }
336 1.1 lukem if (ferror(infp)) {
337 1.1 lukem warnx("Reading `%s'", infile);
338 1.1 lukem goto cleanup;
339 1.1 lukem }
340 1.1 lukem }
341 1.1 lukem } else if (!infp && argc == 0) { /* read all */
342 1.1 lukem db_dump();
343 1.1 lukem } else { /* read/delete specific */
344 1.1 lukem int (*dbop)(char *);
345 1.1 lukem
346 1.1 lukem if (flags & F_DELETE)
347 1.1 lukem dbop = db_del;
348 1.1 lukem else
349 1.1 lukem dbop = db_get;
350 1.1 lukem for (ch = 0; ch < argc; ch++) {
351 1.1 lukem if ((rv = dbop(argv[ch])))
352 1.1 lukem goto cleanup;
353 1.1 lukem }
354 1.1 lukem if (infp) {
355 1.1 lukem while (parseline(infp, fieldsep, &key, NULL)) {
356 1.1 lukem if ((rv = dbop(key)))
357 1.1 lukem goto cleanup;
358 1.1 lukem }
359 1.1 lukem if (ferror(infp)) {
360 1.1 lukem warnx("Reading `%s'", infile);
361 1.1 lukem goto cleanup;
362 1.1 lukem }
363 1.1 lukem }
364 1.1 lukem }
365 1.1 lukem
366 1.1 lukem /* close database */
367 1.1 lukem cleanup:
368 1.1 lukem if (db->close(db) == -1)
369 1.1 lukem err(1, "Closing database `%s'", oi.file);
370 1.1 lukem if (infp)
371 1.1 lukem fclose(infp);
372 1.1 lukem return (rv);
373 1.1 lukem }
374 1.1 lukem
375 1.1 lukem void
376 1.1 lukem db_print(DBT *key, DBT *val)
377 1.1 lukem {
378 1.13 lukem int len;
379 1.13 lukem char *data;
380 1.1 lukem
381 1.13 lukem #define MINUSNUL(x) ((x) > 0 ? (x) - (flags & F_NO_NUL ? 0 : 1) : 0)
382 1.8 seb
383 1.8 seb if (flags & F_SHOW_KEY) {
384 1.13 lukem if (flags & F_ENCODE_KEY) {
385 1.13 lukem len = encode_data(MINUSNUL(key->size),
386 1.13 lukem (char *)key->data, &data);
387 1.13 lukem } else {
388 1.13 lukem len = (int)MINUSNUL(key->size);
389 1.8 seb data = (char *)key->data;
390 1.8 seb }
391 1.8 seb printf("%.*s", len, data);
392 1.8 seb }
393 1.1 lukem if ((flags & F_SHOW_KEY) && (flags & F_SHOW_VALUE))
394 1.5 seb printf("%s", outputsep);
395 1.8 seb if (flags & F_SHOW_VALUE) {
396 1.13 lukem if (flags & F_ENCODE_VAL) {
397 1.13 lukem len = encode_data(MINUSNUL(val->size),
398 1.13 lukem (char *)val->data, &data);
399 1.13 lukem } else {
400 1.13 lukem len = (int)MINUSNUL(val->size);
401 1.8 seb data = (char *)val->data;
402 1.15 lukem }
403 1.8 seb printf("%.*s", len, data);
404 1.8 seb }
405 1.1 lukem printf("\n");
406 1.1 lukem }
407 1.1 lukem
408 1.1 lukem int
409 1.1 lukem db_dump(void)
410 1.1 lukem {
411 1.1 lukem DBT key, val;
412 1.1 lukem int rv;
413 1.1 lukem
414 1.1 lukem while ((rv = db->seq(db, &key, &val, R_NEXT)) == 0)
415 1.1 lukem db_print(&key, &val);
416 1.1 lukem if (rv == -1)
417 1.1 lukem warn("Error dumping database");
418 1.1 lukem return (rv == 1 ? 0 : 1);
419 1.1 lukem }
420 1.1 lukem
421 1.1 lukem static void
422 1.8 seb db_makekey(DBT *key, char *keystr, int downcase, int decode)
423 1.1 lukem {
424 1.8 seb char *p, *ks;
425 1.8 seb int klen;
426 1.1 lukem
427 1.1 lukem memset(key, 0, sizeof(*key));
428 1.8 seb if (decode) {
429 1.8 seb if ((klen = decode_data(keystr, &ks)) == -1)
430 1.15 lukem errx(1, "Invalid escape sequence in `%s'", keystr);
431 1.8 seb } else {
432 1.8 seb klen = strlen(keystr);
433 1.8 seb ks = keystr;
434 1.8 seb }
435 1.8 seb key->data = ks;
436 1.8 seb key->size = klen + (flags & F_NO_NUL ? 0 : 1);
437 1.15 lukem if (downcase && (flags & F_IGNORECASE)) {
438 1.8 seb for (p = ks; *p; p++)
439 1.1 lukem if (isupper((int)*p))
440 1.1 lukem *p = tolower((int)*p);
441 1.1 lukem }
442 1.1 lukem }
443 1.1 lukem
444 1.1 lukem int
445 1.1 lukem db_del(char *keystr)
446 1.1 lukem {
447 1.1 lukem DBT key;
448 1.21 lukem int r;
449 1.1 lukem
450 1.8 seb db_makekey(&key, keystr, 1, (flags & F_DECODE_KEY ? 1 : 0));
451 1.21 lukem r = db->del(db, &key, 0);
452 1.21 lukem switch (r) {
453 1.1 lukem case -1:
454 1.21 lukem if (! (flags & F_QUIET))
455 1.21 lukem warn("Error deleting key `%s'", keystr);
456 1.8 seb r = 1;
457 1.8 seb break;
458 1.1 lukem case 0:
459 1.1 lukem if (! (flags & F_QUIET))
460 1.1 lukem printf("Deleted key `%s'\n", keystr);
461 1.1 lukem break;
462 1.1 lukem case 1:
463 1.21 lukem if (! (flags & F_QUIET))
464 1.21 lukem warnx("Unknown key `%s'", keystr);
465 1.8 seb break;
466 1.21 lukem default:
467 1.21 lukem abort();
468 1.1 lukem }
469 1.8 seb if (flags & F_DECODE_KEY)
470 1.8 seb free(key.data);
471 1.8 seb return (r);
472 1.1 lukem }
473 1.1 lukem
474 1.1 lukem int
475 1.1 lukem db_get(char *keystr)
476 1.1 lukem {
477 1.1 lukem DBT key, val;
478 1.15 lukem char *wantkey;
479 1.15 lukem int r, found;
480 1.15 lukem u_int seqflags;
481 1.1 lukem
482 1.8 seb db_makekey(&key, keystr, 1, (flags & F_DECODE_KEY ? 1 : 0));
483 1.15 lukem wantkey = strdup(key.data);
484 1.15 lukem if (wantkey == NULL)
485 1.15 lukem err(1, "Cannot allocate key buffer");
486 1.15 lukem
487 1.15 lukem found = 0;
488 1.15 lukem seqflags = R_CURSOR;
489 1.15 lukem while ((r = db->seq(db, &key, &val, seqflags)) == 0) {
490 1.15 lukem if (strcmp((char *)key.data, wantkey) != 0) {
491 1.15 lukem r = 1;
492 1.15 lukem break;
493 1.15 lukem }
494 1.15 lukem seqflags = R_NEXT;
495 1.15 lukem found++;
496 1.15 lukem db_print(&key, &val);
497 1.15 lukem if (! (flags & F_DUPLICATES))
498 1.15 lukem break;
499 1.15 lukem }
500 1.15 lukem
501 1.15 lukem switch (r) {
502 1.1 lukem case -1:
503 1.1 lukem warn("Error reading key `%s'", keystr);
504 1.8 seb r = 1;
505 1.8 seb break;
506 1.1 lukem case 0:
507 1.1 lukem break;
508 1.1 lukem case 1:
509 1.15 lukem if (found) {
510 1.15 lukem r = 0;
511 1.15 lukem break;
512 1.15 lukem }
513 1.1 lukem if (! (flags & F_QUIET)) {
514 1.1 lukem warnx("Unknown key `%s'", keystr);
515 1.1 lukem }
516 1.1 lukem break;
517 1.21 lukem default:
518 1.21 lukem abort();
519 1.1 lukem }
520 1.8 seb if (flags & F_DECODE_KEY)
521 1.8 seb free(key.data);
522 1.15 lukem free(wantkey);
523 1.8 seb return (r);
524 1.1 lukem }
525 1.1 lukem
526 1.1 lukem int
527 1.1 lukem db_put(char *keystr, char *valstr)
528 1.1 lukem {
529 1.1 lukem DBT key, val;
530 1.8 seb int r = 0;
531 1.1 lukem
532 1.8 seb db_makekey(&key, keystr, 1, (flags & F_DECODE_KEY ? 1 : 0));
533 1.8 seb db_makekey(&val, valstr, 0, (flags & F_DECODE_VAL ? 1 : 0));
534 1.21 lukem r = db->put(db, &key, &val, (flags & F_REPLACE) ? 0 : R_NOOVERWRITE);
535 1.21 lukem switch (r) {
536 1.1 lukem case -1:
537 1.1 lukem warn("Error writing key `%s'", keystr);
538 1.8 seb r = 1;
539 1.8 seb break;
540 1.1 lukem case 0:
541 1.1 lukem if (! (flags & F_QUIET))
542 1.1 lukem printf("Added key `%s'\n", keystr);
543 1.1 lukem break;
544 1.1 lukem case 1:
545 1.1 lukem if (! (flags & F_QUIET))
546 1.1 lukem warnx("Key `%s' already exists", keystr);
547 1.8 seb break;
548 1.21 lukem default:
549 1.21 lukem abort();
550 1.1 lukem }
551 1.8 seb if (flags & F_DECODE_KEY)
552 1.8 seb free(key.data);
553 1.8 seb if (flags & F_DECODE_VAL)
554 1.8 seb free(val.data);
555 1.8 seb return (r);
556 1.1 lukem }
557 1.1 lukem
558 1.1 lukem int
559 1.1 lukem parseline(FILE *fp, const char *sep, char **kp, char **vp)
560 1.1 lukem {
561 1.1 lukem size_t len;
562 1.1 lukem char *key, *val;
563 1.1 lukem
564 1.1 lukem key = fgetln(fp, &len);
565 1.1 lukem if (key == NULL) /* end of file, or error */
566 1.1 lukem return (0);
567 1.1 lukem
568 1.1 lukem if (key[len-1] == '\n') /* check for \n at EOL */
569 1.1 lukem key[--len] = '\0';
570 1.1 lukem else
571 1.1 lukem return (0);
572 1.1 lukem
573 1.1 lukem *kp = key;
574 1.1 lukem if (vp == NULL) /* don't split if don't want value */
575 1.1 lukem return (1);
576 1.14 lukem if ((val = strstr(key, sep)) == NULL)
577 1.1 lukem val = key + len;
578 1.14 lukem else {
579 1.14 lukem *val = '\0';
580 1.14 lukem val += strlen(sep);
581 1.14 lukem }
582 1.1 lukem *vp = val;
583 1.1 lukem return (1);
584 1.1 lukem }
585 1.1 lukem
586 1.8 seb int
587 1.8 seb encode_data(size_t len, char *data, char **edata)
588 1.8 seb {
589 1.8 seb static char *buf = NULL;
590 1.11 itojun char *nbuf;
591 1.8 seb static size_t buflen = 0;
592 1.8 seb size_t elen;
593 1.8 seb
594 1.8 seb elen = 1 + (len * 4);
595 1.8 seb if (elen > buflen) {
596 1.11 itojun if ((nbuf = realloc(buf, elen)) == NULL)
597 1.8 seb err(1, "Cannot allocate encoding buffer");
598 1.11 itojun buf = nbuf;
599 1.8 seb buflen = elen;
600 1.8 seb }
601 1.8 seb *edata = buf;
602 1.8 seb if (extra_echars) {
603 1.19 lukem return (strsvisx(buf, data, len, visflags, extra_echars));
604 1.8 seb } else {
605 1.19 lukem return (strvisx(buf, data, len, visflags));
606 1.8 seb }
607 1.8 seb }
608 1.8 seb
609 1.8 seb int
610 1.8 seb decode_data(char *data, char **ddata)
611 1.8 seb {
612 1.8 seb char *buf;
613 1.8 seb
614 1.8 seb if ((buf = malloc(strlen(data) + 1)) == NULL)
615 1.8 seb err(1, "Cannot allocate decoding buffer");
616 1.8 seb *ddata = buf;
617 1.19 lukem return (strunvisx(buf, data, (visflags & VIS_HTTPSTYLE)));
618 1.8 seb }
619 1.8 seb
620 1.8 seb void
621 1.8 seb parse_encode_decode_arg(const char *arg, int encode)
622 1.8 seb {
623 1.8 seb if (! arg[0] || arg[1])
624 1.8 seb return;
625 1.8 seb if (arg[0] == 'k' || arg[0] == 'b') {
626 1.8 seb if (encode)
627 1.8 seb flags |= F_ENCODE_KEY;
628 1.8 seb else
629 1.8 seb flags |= F_DECODE_KEY;
630 1.8 seb }
631 1.8 seb if (arg[0] == 'v' || arg[0] == 'b') {
632 1.8 seb if (encode)
633 1.8 seb flags |= F_ENCODE_VAL;
634 1.8 seb else
635 1.8 seb flags |= F_DECODE_VAL;
636 1.8 seb }
637 1.8 seb return;
638 1.8 seb }
639 1.8 seb
640 1.8 seb int
641 1.8 seb parse_encode_option(char **arg)
642 1.8 seb {
643 1.8 seb int r = 0;
644 1.17 lukem int encmask = ~(VIS_CSTYLE | VIS_HTTPSTYLE | VIS_OCTAL);
645 1.8 seb
646 1.8 seb for(; **arg; (*arg)++) {
647 1.8 seb switch (**arg) {
648 1.8 seb case 'b':
649 1.8 seb r |= VIS_NOSLASH;
650 1.8 seb break;
651 1.8 seb case 'c':
652 1.17 lukem r &= encmask;
653 1.8 seb r |= VIS_CSTYLE;
654 1.8 seb break;
655 1.17 lukem case 'h':
656 1.17 lukem r &= encmask;
657 1.17 lukem r |= VIS_HTTPSTYLE;
658 1.17 lukem break;
659 1.8 seb case 'o':
660 1.17 lukem r &= encmask;
661 1.8 seb r |= VIS_OCTAL;
662 1.8 seb break;
663 1.8 seb case 's':
664 1.8 seb r |= VIS_SAFE;
665 1.8 seb break;
666 1.8 seb case 't':
667 1.8 seb r |= VIS_TAB;
668 1.8 seb break;
669 1.8 seb case 'w':
670 1.8 seb r |= VIS_WHITE;
671 1.8 seb break;
672 1.8 seb default:
673 1.8 seb return (0);
674 1.8 seb break;
675 1.8 seb }
676 1.8 seb }
677 1.8 seb return (r);
678 1.8 seb }
679 1.8 seb
680 1.1 lukem void
681 1.1 lukem usage(void)
682 1.1 lukem {
683 1.1 lukem const char *p = getprogname();
684 1.1 lukem
685 1.1 lukem fprintf(stderr,
686 1.14 lukem "usage: %s [-KiNqV] [-E endian] [-f infile] [-O outsep] [-S visitem]\n"
687 1.14 lukem " [-T visspec] [-X extravis] type dbfile [key [...]]\n"
688 1.19 lukem " %s -d [-iNq] [-E endian] [-f infile] [-T visspec] [-U unvisitem]\n"
689 1.14 lukem " type dbfile [key [...]]\n"
690 1.14 lukem " %s -w [-CDiNqR] [-E endian] [-F isep] [-f infile] [-m mode]\n"
691 1.20 lukem " [-P pagesize] [-T visspec] [-U unvisitem]\n"
692 1.20 lukem " type dbfile [key value [...]]\n"
693 1.1 lukem ,p ,p ,p );
694 1.1 lukem fprintf(stderr,
695 1.14 lukem "Supported modes:\n"
696 1.14 lukem " read keys [default]\n"
697 1.14 lukem " -d delete keys\n"
698 1.14 lukem " -w write (add) keys/values\n"
699 1.14 lukem "Supported options:\n"
700 1.14 lukem " -C create empty (truncated) database\n"
701 1.14 lukem " -D allow duplicates\n"
702 1.14 lukem " -E endian database endian: `B'ig, `L'ittle, `H'ost [default: H]\n"
703 1.20 lukem " -F isep input field separator string [default: a space]\n"
704 1.14 lukem " -f infile file of keys (read|delete) or keys/vals (write)\n"
705 1.14 lukem " -i ignore case of key by converting to lower case\n"
706 1.14 lukem " -K print key\n"
707 1.14 lukem " -m mode mode of created database [default: 0644]\n"
708 1.14 lukem " -N don't NUL terminate key\n"
709 1.20 lukem " -O outsep output field separator string [default: a tab]\n"
710 1.20 lukem " -P pagesize database page size [default: 4096]\n"
711 1.14 lukem " -q quiet operation (missing keys aren't errors)\n"
712 1.14 lukem " -R replace existing keys\n"
713 1.14 lukem " -S visitem items to strvis(3) encode: 'k'ey, 'v'alue, 'b'oth\n"
714 1.19 lukem " -T visspec options to control -S and -U; like vis(1) options\n"
715 1.14 lukem " -U unvisitem items to strunvis(3) decode: 'k'ey, 'v'alue, 'b'oth\n"
716 1.14 lukem " -V print value\n"
717 1.14 lukem " -X extravis extra characters to encode with -S\n"
718 1.1 lukem );
719 1.1 lukem exit(1);
720 1.1 lukem }
721