makemandb.c revision 1.41 1 1.41 abhinav /* $NetBSD: makemandb.c,v 1.41 2016/07/17 12:18:12 abhinav Exp $ */
2 1.1 joerg /*
3 1.1 joerg * Copyright (c) 2011 Abhinav Upadhyay <er.abhinav.upadhyay (at) gmail.com>
4 1.1 joerg * Copyright (c) 2011 Kristaps Dzonsons <kristaps (at) bsd.lv>
5 1.1 joerg *
6 1.1 joerg * Permission to use, copy, modify, and distribute this software for any
7 1.1 joerg * purpose with or without fee is hereby granted, provided that the above
8 1.1 joerg * copyright notice and this permission notice appear in all copies.
9 1.1 joerg *
10 1.1 joerg * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
11 1.1 joerg * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
12 1.1 joerg * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
13 1.1 joerg * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
14 1.1 joerg * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
15 1.1 joerg * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
16 1.1 joerg * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
17 1.1 joerg */
18 1.1 joerg
19 1.1 joerg #include <sys/cdefs.h>
20 1.41 abhinav __RCSID("$NetBSD: makemandb.c,v 1.41 2016/07/17 12:18:12 abhinav Exp $");
21 1.1 joerg
22 1.1 joerg #include <sys/stat.h>
23 1.1 joerg #include <sys/types.h>
24 1.1 joerg
25 1.1 joerg #include <assert.h>
26 1.1 joerg #include <dirent.h>
27 1.1 joerg #include <err.h>
28 1.5 joerg #include <archive.h>
29 1.3 joerg #include <libgen.h>
30 1.1 joerg #include <md5.h>
31 1.1 joerg #include <stdio.h>
32 1.1 joerg #include <stdlib.h>
33 1.1 joerg #include <string.h>
34 1.1 joerg #include <unistd.h>
35 1.1 joerg #include <util.h>
36 1.1 joerg
37 1.1 joerg #include "apropos-utils.h"
38 1.17 christos #include "dist/man.h"
39 1.17 christos #include "dist/mandoc.h"
40 1.17 christos #include "dist/mdoc.h"
41 1.40 christos #include "dist/roff.h"
42 1.1 joerg
43 1.1 joerg #define BUFLEN 1024
44 1.1 joerg #define MDOC 0 //If the page is of mdoc(7) type
45 1.1 joerg #define MAN 1 //If the page is of man(7) type
46 1.1 joerg
47 1.1 joerg /*
48 1.1 joerg * A data structure for holding section specific data.
49 1.1 joerg */
50 1.1 joerg typedef struct secbuff {
51 1.1 joerg char *data;
52 1.1 joerg size_t buflen; //Total length of buffer allocated initially
53 1.1 joerg size_t offset; // Current offset in the buffer.
54 1.1 joerg } secbuff;
55 1.1 joerg
56 1.1 joerg typedef struct makemandb_flags {
57 1.1 joerg int optimize;
58 1.1 joerg int limit; // limit the indexing to only NAME section
59 1.1 joerg int recreate; // Database was created from scratch
60 1.1 joerg int verbosity; // 0: quiet, 1: default, 2: verbose
61 1.1 joerg } makemandb_flags;
62 1.1 joerg
63 1.40 christos typedef struct roff_mandb_rec {
64 1.1 joerg /* Fields for mandb table */
65 1.1 joerg char *name; // for storing the name of the man page
66 1.1 joerg char *name_desc; // for storing the one line description (.Nd)
67 1.1 joerg secbuff desc; // for storing the DESCRIPTION section
68 1.1 joerg secbuff lib; // for the LIBRARY section
69 1.1 joerg secbuff return_vals; // RETURN VALUES
70 1.1 joerg secbuff env; // ENVIRONMENT
71 1.1 joerg secbuff files; // FILES
72 1.1 joerg secbuff exit_status; // EXIT STATUS
73 1.1 joerg secbuff diagnostics; // DIAGNOSTICS
74 1.1 joerg secbuff errors; // ERRORS
75 1.37 christos char *section;
76 1.1 joerg
77 1.29 plunky int xr_found; // To track whether a .Xr was seen when parsing a section
78 1.1 joerg
79 1.1 joerg /* Fields for mandb_meta table */
80 1.1 joerg char *md5_hash;
81 1.1 joerg dev_t device;
82 1.1 joerg ino_t inode;
83 1.1 joerg time_t mtime;
84 1.1 joerg
85 1.1 joerg /* Fields for mandb_links table */
86 1.1 joerg char *machine;
87 1.1 joerg char *links; //all the links to a page in a space separated form
88 1.1 joerg char *file_path;
89 1.1 joerg
90 1.1 joerg /* Non-db fields */
91 1.1 joerg int page_type; //Indicates the type of page: mdoc or man
92 1.1 joerg } mandb_rec;
93 1.1 joerg
94 1.40 christos typedef void (*proff_nf)(const struct roff_node *n, mandb_rec *);
95 1.40 christos
96 1.1 joerg static void append(secbuff *sbuff, const char *src);
97 1.1 joerg static void init_secbuffs(mandb_rec *);
98 1.1 joerg static void free_secbuffs(mandb_rec *);
99 1.5 joerg static int check_md5(const char *, sqlite3 *, const char *, char **, void *, size_t);
100 1.1 joerg static void cleanup(mandb_rec *);
101 1.40 christos static void set_section(const struct roff_man *, mandb_rec *);
102 1.40 christos static void set_machine(const struct roff_man *, mandb_rec *);
103 1.1 joerg static int insert_into_db(sqlite3 *, mandb_rec *);
104 1.5 joerg static void begin_parse(const char *, struct mparse *, mandb_rec *,
105 1.5 joerg const void *, size_t len);
106 1.40 christos static void proff_node(const struct roff_node *, mandb_rec *, const proff_nf *);
107 1.40 christos static void pmdoc_Nm(const struct roff_node *, mandb_rec *);
108 1.40 christos static void pmdoc_Nd(const struct roff_node *, mandb_rec *);
109 1.40 christos static void pmdoc_Sh(const struct roff_node *, mandb_rec *);
110 1.40 christos static void pmdoc_Xr(const struct roff_node *, mandb_rec *);
111 1.40 christos static void pmdoc_Pp(const struct roff_node *, mandb_rec *);
112 1.40 christos static void pmdoc_macro_handler(const struct roff_node *, mandb_rec *, int);
113 1.40 christos static void pman_parse_node(const struct roff_node *, secbuff *);
114 1.40 christos static void pman_parse_name(const struct roff_node *, mandb_rec *);
115 1.40 christos static void pman_sh(const struct roff_node *, mandb_rec *);
116 1.40 christos static void pman_block(const struct roff_node *, mandb_rec *);
117 1.6 joerg static void traversedir(const char *, const char *, sqlite3 *, struct mparse *);
118 1.40 christos static void mdoc_parse_section(enum roff_sec, const char *, mandb_rec *);
119 1.40 christos static void man_parse_section(enum man_sec, const struct roff_node *, mandb_rec *);
120 1.6 joerg static void build_file_cache(sqlite3 *, const char *, const char *,
121 1.6 joerg struct stat *);
122 1.1 joerg static void update_db(sqlite3 *, struct mparse *, mandb_rec *);
123 1.1 joerg __dead static void usage(void);
124 1.1 joerg static void optimize(sqlite3 *);
125 1.1 joerg static char *parse_escape(const char *);
126 1.23 wiz static void replace_hyph(char *);
127 1.1 joerg static makemandb_flags mflags = { .verbosity = 1 };
128 1.1 joerg
129 1.40 christos static const proff_nf mdocs[MDOC_MAX + 1] = {
130 1.1 joerg NULL, /* Ap */
131 1.1 joerg NULL, /* Dd */
132 1.1 joerg NULL, /* Dt */
133 1.1 joerg NULL, /* Os */
134 1.30 christos
135 1.1 joerg pmdoc_Sh, /* Sh */
136 1.1 joerg NULL, /* Ss */
137 1.1 joerg pmdoc_Pp, /* Pp */
138 1.1 joerg NULL, /* D1 */
139 1.30 christos
140 1.1 joerg NULL, /* Dl */
141 1.1 joerg NULL, /* Bd */
142 1.1 joerg NULL, /* Ed */
143 1.1 joerg NULL, /* Bl */
144 1.30 christos
145 1.1 joerg NULL, /* El */
146 1.1 joerg NULL, /* It */
147 1.1 joerg NULL, /* Ad */
148 1.1 joerg NULL, /* An */
149 1.30 christos
150 1.1 joerg NULL, /* Ar */
151 1.1 joerg NULL, /* Cd */
152 1.1 joerg NULL, /* Cm */
153 1.1 joerg NULL, /* Dv */
154 1.30 christos
155 1.1 joerg NULL, /* Er */
156 1.1 joerg NULL, /* Ev */
157 1.1 joerg NULL, /* Ex */
158 1.1 joerg NULL, /* Fa */
159 1.30 christos
160 1.1 joerg NULL, /* Fd */
161 1.1 joerg NULL, /* Fl */
162 1.1 joerg NULL, /* Fn */
163 1.1 joerg NULL, /* Ft */
164 1.30 christos
165 1.1 joerg NULL, /* Ic */
166 1.1 joerg NULL, /* In */
167 1.1 joerg NULL, /* Li */
168 1.1 joerg pmdoc_Nd, /* Nd */
169 1.30 christos
170 1.1 joerg pmdoc_Nm, /* Nm */
171 1.1 joerg NULL, /* Op */
172 1.1 joerg NULL, /* Ot */
173 1.1 joerg NULL, /* Pa */
174 1.30 christos
175 1.1 joerg NULL, /* Rv */
176 1.1 joerg NULL, /* St */
177 1.1 joerg NULL, /* Va */
178 1.1 joerg NULL, /* Vt */
179 1.30 christos
180 1.1 joerg pmdoc_Xr, /* Xr */
181 1.1 joerg NULL, /* %A */
182 1.1 joerg NULL, /* %B */
183 1.1 joerg NULL, /* %D */
184 1.30 christos
185 1.1 joerg NULL, /* %I */
186 1.1 joerg NULL, /* %J */
187 1.1 joerg NULL, /* %N */
188 1.1 joerg NULL, /* %O */
189 1.30 christos
190 1.1 joerg NULL, /* %P */
191 1.1 joerg NULL, /* %R */
192 1.1 joerg NULL, /* %T */
193 1.1 joerg NULL, /* %V */
194 1.30 christos
195 1.1 joerg NULL, /* Ac */
196 1.1 joerg NULL, /* Ao */
197 1.1 joerg NULL, /* Aq */
198 1.1 joerg NULL, /* At */
199 1.30 christos
200 1.1 joerg NULL, /* Bc */
201 1.1 joerg NULL, /* Bf */
202 1.1 joerg NULL, /* Bo */
203 1.1 joerg NULL, /* Bq */
204 1.30 christos
205 1.1 joerg NULL, /* Bsx */
206 1.1 joerg NULL, /* Bx */
207 1.1 joerg NULL, /* Db */
208 1.1 joerg NULL, /* Dc */
209 1.30 christos
210 1.1 joerg NULL, /* Do */
211 1.1 joerg NULL, /* Dq */
212 1.1 joerg NULL, /* Ec */
213 1.1 joerg NULL, /* Ef */
214 1.30 christos
215 1.1 joerg NULL, /* Em */
216 1.1 joerg NULL, /* Eo */
217 1.1 joerg NULL, /* Fx */
218 1.1 joerg NULL, /* Ms */
219 1.30 christos
220 1.1 joerg NULL, /* No */
221 1.1 joerg NULL, /* Ns */
222 1.1 joerg NULL, /* Nx */
223 1.1 joerg NULL, /* Ox */
224 1.30 christos
225 1.1 joerg NULL, /* Pc */
226 1.1 joerg NULL, /* Pf */
227 1.1 joerg NULL, /* Po */
228 1.1 joerg NULL, /* Pq */
229 1.30 christos
230 1.1 joerg NULL, /* Qc */
231 1.1 joerg NULL, /* Ql */
232 1.1 joerg NULL, /* Qo */
233 1.1 joerg NULL, /* Qq */
234 1.30 christos
235 1.1 joerg NULL, /* Re */
236 1.1 joerg NULL, /* Rs */
237 1.1 joerg NULL, /* Sc */
238 1.1 joerg NULL, /* So */
239 1.30 christos
240 1.1 joerg NULL, /* Sq */
241 1.1 joerg NULL, /* Sm */
242 1.1 joerg NULL, /* Sx */
243 1.1 joerg NULL, /* Sy */
244 1.30 christos
245 1.1 joerg NULL, /* Tn */
246 1.1 joerg NULL, /* Ux */
247 1.1 joerg NULL, /* Xc */
248 1.1 joerg NULL, /* Xo */
249 1.30 christos
250 1.1 joerg NULL, /* Fo */
251 1.1 joerg NULL, /* Fc */
252 1.1 joerg NULL, /* Oo */
253 1.1 joerg NULL, /* Oc */
254 1.30 christos
255 1.1 joerg NULL, /* Bk */
256 1.1 joerg NULL, /* Ek */
257 1.1 joerg NULL, /* Bt */
258 1.1 joerg NULL, /* Hf */
259 1.30 christos
260 1.1 joerg NULL, /* Fr */
261 1.1 joerg NULL, /* Ud */
262 1.1 joerg NULL, /* Lb */
263 1.1 joerg NULL, /* Lp */
264 1.30 christos
265 1.1 joerg NULL, /* Lk */
266 1.1 joerg NULL, /* Mt */
267 1.1 joerg NULL, /* Brq */
268 1.1 joerg NULL, /* Bro */
269 1.30 christos
270 1.1 joerg NULL, /* Brc */
271 1.1 joerg NULL, /* %C */
272 1.1 joerg NULL, /* Es */
273 1.1 joerg NULL, /* En */
274 1.30 christos
275 1.1 joerg NULL, /* Dx */
276 1.1 joerg NULL, /* %Q */
277 1.1 joerg NULL, /* br */
278 1.1 joerg NULL, /* sp */
279 1.30 christos
280 1.1 joerg NULL, /* %U */
281 1.1 joerg NULL, /* Ta */
282 1.30 christos NULL, /* ll */
283 1.30 christos NULL, /* text */
284 1.1 joerg };
285 1.1 joerg
286 1.40 christos static const proff_nf mans[MAN_MAX] = {
287 1.1 joerg NULL, //br
288 1.1 joerg NULL, //TH
289 1.1 joerg pman_sh, //SH
290 1.1 joerg NULL, //SS
291 1.1 joerg NULL, //TP
292 1.1 joerg NULL, //LP
293 1.1 joerg NULL, //PP
294 1.1 joerg NULL, //P
295 1.1 joerg NULL, //IP
296 1.1 joerg NULL, //HP
297 1.1 joerg NULL, //SM
298 1.1 joerg NULL, //SB
299 1.1 joerg NULL, //BI
300 1.1 joerg NULL, //IB
301 1.1 joerg NULL, //BR
302 1.1 joerg NULL, //RB
303 1.1 joerg NULL, //R
304 1.1 joerg pman_block, //B
305 1.1 joerg NULL, //I
306 1.1 joerg NULL, //IR
307 1.1 joerg NULL, //RI
308 1.1 joerg NULL, //sp
309 1.1 joerg NULL, //nf
310 1.1 joerg NULL, //fi
311 1.1 joerg NULL, //RE
312 1.1 joerg NULL, //RS
313 1.1 joerg NULL, //DT
314 1.1 joerg NULL, //UC
315 1.1 joerg NULL, //PD
316 1.1 joerg NULL, //AT
317 1.1 joerg NULL, //in
318 1.1 joerg NULL, //ft
319 1.30 christos NULL, //OP
320 1.30 christos NULL, //EX
321 1.30 christos NULL, //EE
322 1.30 christos NULL, //UR
323 1.30 christos NULL, //UE
324 1.30 christos NULL, //ll
325 1.1 joerg };
326 1.1 joerg
327 1.1 joerg
328 1.1 joerg int
329 1.1 joerg main(int argc, char *argv[])
330 1.1 joerg {
331 1.1 joerg FILE *file;
332 1.1 joerg const char *sqlstr, *manconf = NULL;
333 1.3 joerg char *line, *command, *parent;
334 1.1 joerg char *errmsg;
335 1.1 joerg int ch;
336 1.1 joerg struct mparse *mp;
337 1.1 joerg sqlite3 *db;
338 1.1 joerg ssize_t len;
339 1.1 joerg size_t linesize;
340 1.40 christos struct roff_mandb_rec rec;
341 1.1 joerg
342 1.13 wiz while ((ch = getopt(argc, argv, "C:floQqv")) != -1) {
343 1.1 joerg switch (ch) {
344 1.1 joerg case 'C':
345 1.1 joerg manconf = optarg;
346 1.1 joerg break;
347 1.1 joerg case 'f':
348 1.1 joerg mflags.recreate = 1;
349 1.1 joerg break;
350 1.1 joerg case 'l':
351 1.1 joerg mflags.limit = 1;
352 1.1 joerg break;
353 1.1 joerg case 'o':
354 1.1 joerg mflags.optimize = 1;
355 1.1 joerg break;
356 1.13 wiz case 'Q':
357 1.13 wiz mflags.verbosity = 0;
358 1.13 wiz break;
359 1.1 joerg case 'q':
360 1.13 wiz mflags.verbosity = 1;
361 1.1 joerg break;
362 1.1 joerg case 'v':
363 1.1 joerg mflags.verbosity = 2;
364 1.1 joerg break;
365 1.1 joerg default:
366 1.1 joerg usage();
367 1.1 joerg }
368 1.1 joerg }
369 1.1 joerg
370 1.1 joerg memset(&rec, 0, sizeof(rec));
371 1.1 joerg
372 1.1 joerg init_secbuffs(&rec);
373 1.40 christos mchars_alloc();
374 1.40 christos mp = mparse_alloc(0, MANDOCLEVEL_BADARG, NULL, NULL);
375 1.1 joerg
376 1.15 wiz if (manconf) {
377 1.15 wiz char *arg;
378 1.15 wiz size_t command_len = shquote(manconf, NULL, 0) + 1;
379 1.15 wiz arg = emalloc(command_len);
380 1.15 wiz shquote(manconf, arg, command_len);
381 1.15 wiz easprintf(&command, "man -p -C %s", arg);
382 1.15 wiz free(arg);
383 1.15 wiz } else {
384 1.15 wiz command = estrdup("man -p");
385 1.15 wiz manconf = MANCONF;
386 1.15 wiz }
387 1.15 wiz
388 1.19 christos if (mflags.recreate) {
389 1.19 christos char *dbp = get_dbpath(manconf);
390 1.19 christos /* No error here, it will fail in init_db in the same call */
391 1.19 christos if (dbp != NULL)
392 1.19 christos remove(dbp);
393 1.19 christos }
394 1.15 wiz
395 1.15 wiz if ((db = init_db(MANDB_CREATE, manconf)) == NULL)
396 1.1 joerg exit(EXIT_FAILURE);
397 1.1 joerg
398 1.1 joerg sqlite3_exec(db, "PRAGMA synchronous = 0", NULL, NULL, &errmsg);
399 1.1 joerg if (errmsg != NULL) {
400 1.1 joerg warnx("%s", errmsg);
401 1.1 joerg free(errmsg);
402 1.1 joerg close_db(db);
403 1.1 joerg exit(EXIT_FAILURE);
404 1.1 joerg }
405 1.1 joerg
406 1.1 joerg sqlite3_exec(db, "ATTACH DATABASE \':memory:\' AS metadb", NULL, NULL,
407 1.1 joerg &errmsg);
408 1.1 joerg if (errmsg != NULL) {
409 1.1 joerg warnx("%s", errmsg);
410 1.1 joerg free(errmsg);
411 1.1 joerg close_db(db);
412 1.1 joerg exit(EXIT_FAILURE);
413 1.1 joerg }
414 1.1 joerg
415 1.1 joerg
416 1.1 joerg /* Call man -p to get the list of man page dirs */
417 1.1 joerg if ((file = popen(command, "r")) == NULL) {
418 1.1 joerg close_db(db);
419 1.1 joerg err(EXIT_FAILURE, "fopen failed");
420 1.1 joerg }
421 1.1 joerg free(command);
422 1.1 joerg
423 1.1 joerg /* Begin the transaction for indexing the pages */
424 1.1 joerg sqlite3_exec(db, "BEGIN", NULL, NULL, &errmsg);
425 1.1 joerg if (errmsg != NULL) {
426 1.1 joerg warnx("%s", errmsg);
427 1.1 joerg free(errmsg);
428 1.34 christos close_db(db);
429 1.1 joerg exit(EXIT_FAILURE);
430 1.1 joerg }
431 1.18 christos
432 1.6 joerg sqlstr = "CREATE TABLE metadb.file_cache(device, inode, mtime, parent,"
433 1.6 joerg " file PRIMARY KEY);"
434 1.6 joerg "CREATE UNIQUE INDEX metadb.index_file_cache_dev"
435 1.1 joerg " ON file_cache (device, inode)";
436 1.1 joerg
437 1.1 joerg sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
438 1.1 joerg if (errmsg != NULL) {
439 1.1 joerg warnx("%s", errmsg);
440 1.1 joerg free(errmsg);
441 1.1 joerg close_db(db);
442 1.1 joerg exit(EXIT_FAILURE);
443 1.1 joerg }
444 1.1 joerg
445 1.1 joerg if (mflags.verbosity)
446 1.1 joerg printf("Building temporary file cache\n");
447 1.1 joerg line = NULL;
448 1.1 joerg linesize = 0;
449 1.1 joerg while ((len = getline(&line, &linesize, file)) != -1) {
450 1.1 joerg /* Replace the new line character at the end of string with '\0' */
451 1.1 joerg line[len - 1] = '\0';
452 1.3 joerg parent = estrdup(line);
453 1.6 joerg char *pdir = estrdup(dirname(parent));
454 1.3 joerg free(parent);
455 1.1 joerg /* Traverse the man page directories and parse the pages */
456 1.6 joerg traversedir(pdir, line, db, mp);
457 1.6 joerg free(pdir);
458 1.1 joerg }
459 1.1 joerg free(line);
460 1.1 joerg
461 1.1 joerg if (pclose(file) == -1) {
462 1.1 joerg close_db(db);
463 1.1 joerg cleanup(&rec);
464 1.1 joerg free_secbuffs(&rec);
465 1.1 joerg err(EXIT_FAILURE, "pclose error");
466 1.1 joerg }
467 1.1 joerg
468 1.13 wiz if (mflags.verbosity)
469 1.13 wiz printf("Performing index update\n");
470 1.1 joerg update_db(db, mp, &rec);
471 1.1 joerg mparse_free(mp);
472 1.40 christos mchars_free();
473 1.1 joerg free_secbuffs(&rec);
474 1.1 joerg
475 1.1 joerg /* Commit the transaction */
476 1.1 joerg sqlite3_exec(db, "COMMIT", NULL, NULL, &errmsg);
477 1.1 joerg if (errmsg != NULL) {
478 1.1 joerg warnx("%s", errmsg);
479 1.1 joerg free(errmsg);
480 1.33 christos close_db(db);
481 1.1 joerg exit(EXIT_FAILURE);
482 1.1 joerg }
483 1.1 joerg
484 1.1 joerg if (mflags.optimize)
485 1.1 joerg optimize(db);
486 1.1 joerg
487 1.1 joerg close_db(db);
488 1.1 joerg return 0;
489 1.1 joerg }
490 1.1 joerg
491 1.1 joerg /*
492 1.1 joerg * traversedir --
493 1.1 joerg * Traverses the given directory recursively and passes all the man page files
494 1.1 joerg * in the way to build_file_cache()
495 1.1 joerg */
496 1.1 joerg static void
497 1.6 joerg traversedir(const char *parent, const char *file, sqlite3 *db,
498 1.6 joerg struct mparse *mp)
499 1.1 joerg {
500 1.1 joerg struct stat sb;
501 1.1 joerg struct dirent *dirp;
502 1.1 joerg DIR *dp;
503 1.1 joerg char *buf;
504 1.1 joerg
505 1.1 joerg if (stat(file, &sb) < 0) {
506 1.13 wiz if (mflags.verbosity)
507 1.13 wiz warn("stat failed: %s", file);
508 1.1 joerg return;
509 1.1 joerg }
510 1.18 christos
511 1.1 joerg /* If it is a directory, traverse it recursively */
512 1.1 joerg if (S_ISDIR(sb.st_mode)) {
513 1.1 joerg if ((dp = opendir(file)) == NULL) {
514 1.13 wiz if (mflags.verbosity)
515 1.13 wiz warn("opendir error: %s", file);
516 1.1 joerg return;
517 1.1 joerg }
518 1.18 christos
519 1.1 joerg while ((dirp = readdir(dp)) != NULL) {
520 1.1 joerg /* Avoid . and .. entries in a directory */
521 1.1 joerg if (strncmp(dirp->d_name, ".", 1)) {
522 1.1 joerg easprintf(&buf, "%s/%s", file, dirp->d_name);
523 1.6 joerg traversedir(parent, buf, db, mp);
524 1.1 joerg free(buf);
525 1.1 joerg }
526 1.1 joerg }
527 1.1 joerg closedir(dp);
528 1.1 joerg }
529 1.20 wiz
530 1.20 wiz if (!S_ISREG(sb.st_mode) && !S_ISLNK(sb.st_mode))
531 1.20 wiz return;
532 1.20 wiz
533 1.20 wiz if (sb.st_size == 0) {
534 1.20 wiz if (mflags.verbosity)
535 1.20 wiz warnx("Empty file: %s", file);
536 1.20 wiz return;
537 1.20 wiz }
538 1.20 wiz build_file_cache(db, parent, file, &sb);
539 1.1 joerg }
540 1.1 joerg
541 1.1 joerg /* build_file_cache --
542 1.25 snj * This function generates an md5 hash of the file passed as its 2nd parameter
543 1.1 joerg * and stores it in a temporary table file_cache along with the full file path.
544 1.1 joerg * This is done to support incremental updation of the database.
545 1.1 joerg * The temporary table file_cache is dropped thereafter in the function
546 1.1 joerg * update_db(), once the database has been updated.
547 1.1 joerg */
548 1.1 joerg static void
549 1.6 joerg build_file_cache(sqlite3 *db, const char *parent, const char *file,
550 1.6 joerg struct stat *sb)
551 1.1 joerg {
552 1.1 joerg const char *sqlstr;
553 1.1 joerg sqlite3_stmt *stmt = NULL;
554 1.1 joerg int rc, idx;
555 1.1 joerg assert(file != NULL);
556 1.1 joerg dev_t device_cache = sb->st_dev;
557 1.1 joerg ino_t inode_cache = sb->st_ino;
558 1.1 joerg time_t mtime_cache = sb->st_mtime;
559 1.1 joerg
560 1.1 joerg sqlstr = "INSERT INTO metadb.file_cache VALUES (:device, :inode,"
561 1.6 joerg " :mtime, :parent, :file)";
562 1.1 joerg rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
563 1.1 joerg if (rc != SQLITE_OK) {
564 1.13 wiz if (mflags.verbosity)
565 1.13 wiz warnx("%s", sqlite3_errmsg(db));
566 1.1 joerg return;
567 1.1 joerg }
568 1.1 joerg
569 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":device");
570 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, device_cache);
571 1.1 joerg if (rc != SQLITE_OK) {
572 1.13 wiz if (mflags.verbosity)
573 1.13 wiz warnx("%s", sqlite3_errmsg(db));
574 1.1 joerg sqlite3_finalize(stmt);
575 1.1 joerg return;
576 1.1 joerg }
577 1.1 joerg
578 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":inode");
579 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, inode_cache);
580 1.1 joerg if (rc != SQLITE_OK) {
581 1.13 wiz if (mflags.verbosity)
582 1.13 wiz warnx("%s", sqlite3_errmsg(db));
583 1.1 joerg sqlite3_finalize(stmt);
584 1.1 joerg return;
585 1.1 joerg }
586 1.1 joerg
587 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":mtime");
588 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, mtime_cache);
589 1.1 joerg if (rc != SQLITE_OK) {
590 1.13 wiz if (mflags.verbosity)
591 1.13 wiz warnx("%s", sqlite3_errmsg(db));
592 1.1 joerg sqlite3_finalize(stmt);
593 1.1 joerg return;
594 1.1 joerg }
595 1.1 joerg
596 1.6 joerg idx = sqlite3_bind_parameter_index(stmt, ":parent");
597 1.6 joerg rc = sqlite3_bind_text(stmt, idx, parent, -1, NULL);
598 1.6 joerg if (rc != SQLITE_OK) {
599 1.13 wiz if (mflags.verbosity)
600 1.13 wiz warnx("%s", sqlite3_errmsg(db));
601 1.6 joerg sqlite3_finalize(stmt);
602 1.6 joerg return;
603 1.6 joerg }
604 1.6 joerg
605 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":file");
606 1.1 joerg rc = sqlite3_bind_text(stmt, idx, file, -1, NULL);
607 1.1 joerg if (rc != SQLITE_OK) {
608 1.13 wiz if (mflags.verbosity)
609 1.13 wiz warnx("%s", sqlite3_errmsg(db));
610 1.1 joerg sqlite3_finalize(stmt);
611 1.1 joerg return;
612 1.1 joerg }
613 1.1 joerg
614 1.1 joerg sqlite3_step(stmt);
615 1.1 joerg sqlite3_finalize(stmt);
616 1.1 joerg }
617 1.1 joerg
618 1.1 joerg static void
619 1.1 joerg update_existing_entry(sqlite3 *db, const char *file, const char *hash,
620 1.1 joerg mandb_rec *rec, int *new_count, int *link_count, int *err_count)
621 1.1 joerg {
622 1.1 joerg int update_count, rc, idx;
623 1.1 joerg const char *inner_sqlstr;
624 1.1 joerg sqlite3_stmt *inner_stmt;
625 1.1 joerg
626 1.1 joerg update_count = sqlite3_total_changes(db);
627 1.1 joerg inner_sqlstr = "UPDATE mandb_meta SET device = :device,"
628 1.1 joerg " inode = :inode, mtime = :mtime WHERE"
629 1.1 joerg " md5_hash = :md5 AND file = :file AND"
630 1.1 joerg " (device <> :device2 OR inode <> "
631 1.1 joerg " :inode2 OR mtime <> :mtime2)";
632 1.1 joerg rc = sqlite3_prepare_v2(db, inner_sqlstr, -1, &inner_stmt, NULL);
633 1.1 joerg if (rc != SQLITE_OK) {
634 1.13 wiz if (mflags.verbosity)
635 1.13 wiz warnx("%s", sqlite3_errmsg(db));
636 1.1 joerg return;
637 1.1 joerg }
638 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":device");
639 1.1 joerg sqlite3_bind_int64(inner_stmt, idx, rec->device);
640 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":inode");
641 1.1 joerg sqlite3_bind_int64(inner_stmt, idx, rec->inode);
642 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":mtime");
643 1.1 joerg sqlite3_bind_int64(inner_stmt, idx, rec->mtime);
644 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":md5");
645 1.1 joerg sqlite3_bind_text(inner_stmt, idx, hash, -1, NULL);
646 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":file");
647 1.1 joerg sqlite3_bind_text(inner_stmt, idx, file, -1, NULL);
648 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":device2");
649 1.1 joerg sqlite3_bind_int64(inner_stmt, idx, rec->device);
650 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":inode2");
651 1.1 joerg sqlite3_bind_int64(inner_stmt, idx, rec->inode);
652 1.1 joerg idx = sqlite3_bind_parameter_index(inner_stmt, ":mtime2");
653 1.1 joerg sqlite3_bind_int64(inner_stmt, idx, rec->mtime);
654 1.1 joerg
655 1.1 joerg rc = sqlite3_step(inner_stmt);
656 1.1 joerg if (rc == SQLITE_DONE) {
657 1.1 joerg /* Check if an update has been performed. */
658 1.1 joerg if (update_count != sqlite3_total_changes(db)) {
659 1.13 wiz if (mflags.verbosity == 2)
660 1.1 joerg printf("Updated %s\n", file);
661 1.1 joerg (*new_count)++;
662 1.1 joerg } else {
663 1.1 joerg /* Otherwise it was a hardlink. */
664 1.1 joerg (*link_count)++;
665 1.1 joerg }
666 1.1 joerg } else {
667 1.13 wiz if (mflags.verbosity == 2)
668 1.13 wiz warnx("Could not update the meta data for %s", file);
669 1.1 joerg (*err_count)++;
670 1.1 joerg }
671 1.1 joerg sqlite3_finalize(inner_stmt);
672 1.1 joerg }
673 1.1 joerg
674 1.5 joerg /* read_and_decompress --
675 1.22 chs * Reads the given file into memory. If it is compressed, decompress
676 1.5 joerg * it before returning to the caller.
677 1.5 joerg */
678 1.5 joerg static int
679 1.22 chs read_and_decompress(const char *file, void **bufp, size_t *len)
680 1.5 joerg {
681 1.5 joerg size_t off;
682 1.5 joerg ssize_t r;
683 1.5 joerg struct archive *a;
684 1.5 joerg struct archive_entry *ae;
685 1.22 chs char *buf;
686 1.5 joerg
687 1.5 joerg if ((a = archive_read_new()) == NULL)
688 1.5 joerg errx(EXIT_FAILURE, "memory allocation failed");
689 1.5 joerg
690 1.22 chs *bufp = NULL;
691 1.5 joerg if (archive_read_support_compression_all(a) != ARCHIVE_OK ||
692 1.5 joerg archive_read_support_format_raw(a) != ARCHIVE_OK ||
693 1.5 joerg archive_read_open_filename(a, file, 65536) != ARCHIVE_OK ||
694 1.5 joerg archive_read_next_header(a, &ae) != ARCHIVE_OK)
695 1.5 joerg goto archive_error;
696 1.5 joerg *len = 65536;
697 1.22 chs buf = emalloc(*len);
698 1.5 joerg off = 0;
699 1.5 joerg for (;;) {
700 1.22 chs r = archive_read_data(a, buf + off, *len - off);
701 1.5 joerg if (r == ARCHIVE_OK) {
702 1.36 christos archive_read_finish(a);
703 1.22 chs *bufp = buf;
704 1.5 joerg *len = off;
705 1.5 joerg return 0;
706 1.5 joerg }
707 1.5 joerg if (r <= 0) {
708 1.22 chs free(buf);
709 1.5 joerg break;
710 1.5 joerg }
711 1.5 joerg off += r;
712 1.5 joerg if (off == *len) {
713 1.5 joerg *len *= 2;
714 1.5 joerg if (*len < off) {
715 1.13 wiz if (mflags.verbosity)
716 1.13 wiz warnx("File too large: %s", file);
717 1.22 chs free(buf);
718 1.36 christos archive_read_finish(a);
719 1.5 joerg return -1;
720 1.5 joerg }
721 1.22 chs buf = erealloc(buf, *len);
722 1.5 joerg }
723 1.5 joerg }
724 1.5 joerg
725 1.5 joerg archive_error:
726 1.5 joerg warnx("Error while reading `%s': %s", file, archive_error_string(a));
727 1.36 christos archive_read_finish(a);
728 1.5 joerg return -1;
729 1.5 joerg }
730 1.5 joerg
731 1.1 joerg /* update_db --
732 1.1 joerg * Does an incremental updation of the database by checking the file_cache.
733 1.1 joerg * It parses and adds the pages which are present in file_cache,
734 1.1 joerg * but not in the database.
735 1.1 joerg * It also removes the pages which are present in the databse,
736 1.1 joerg * but not in the file_cache.
737 1.1 joerg */
738 1.1 joerg static void
739 1.1 joerg update_db(sqlite3 *db, struct mparse *mp, mandb_rec *rec)
740 1.1 joerg {
741 1.1 joerg const char *sqlstr;
742 1.1 joerg sqlite3_stmt *stmt = NULL;
743 1.22 chs char *file;
744 1.22 chs char *parent;
745 1.1 joerg char *errmsg = NULL;
746 1.5 joerg char *md5sum;
747 1.5 joerg void *buf;
748 1.5 joerg size_t buflen;
749 1.22 chs struct sql_row {
750 1.22 chs struct sql_row *next;
751 1.22 chs dev_t device;
752 1.22 chs ino_t inode;
753 1.22 chs time_t mtime;
754 1.22 chs char *parent;
755 1.22 chs char *file;
756 1.22 chs } *rows, *row;
757 1.1 joerg int new_count = 0; /* Counter for newly indexed/updated pages */
758 1.1 joerg int total_count = 0; /* Counter for total number of pages */
759 1.1 joerg int err_count = 0; /* Counter for number of failed pages */
760 1.1 joerg int link_count = 0; /* Counter for number of hard/sym links */
761 1.1 joerg int md5_status;
762 1.1 joerg int rc;
763 1.1 joerg
764 1.6 joerg sqlstr = "SELECT device, inode, mtime, parent, file"
765 1.6 joerg " FROM metadb.file_cache fc"
766 1.6 joerg " WHERE NOT EXISTS(SELECT 1 FROM mandb_meta WHERE"
767 1.6 joerg " device = fc.device AND inode = fc.inode AND "
768 1.6 joerg " mtime = fc.mtime AND file = fc.file)";
769 1.1 joerg
770 1.1 joerg rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
771 1.1 joerg if (rc != SQLITE_OK) {
772 1.13 wiz if (mflags.verbosity)
773 1.37 christos warnx("%s", sqlite3_errmsg(db));
774 1.1 joerg close_db(db);
775 1.1 joerg errx(EXIT_FAILURE, "Could not query file cache");
776 1.1 joerg }
777 1.1 joerg
778 1.5 joerg buf = NULL;
779 1.22 chs rows = NULL;
780 1.1 joerg while (sqlite3_step(stmt) == SQLITE_ROW) {
781 1.22 chs row = emalloc(sizeof(struct sql_row));
782 1.22 chs row->device = sqlite3_column_int64(stmt, 0);
783 1.22 chs row->inode = sqlite3_column_int64(stmt, 1);
784 1.22 chs row->mtime = sqlite3_column_int64(stmt, 2);
785 1.22 chs row->parent = estrdup((const char *) sqlite3_column_text(stmt, 3));
786 1.22 chs row->file = estrdup((const char *) sqlite3_column_text(stmt, 4));
787 1.22 chs row->next = rows;
788 1.22 chs rows = row;
789 1.1 joerg total_count++;
790 1.22 chs }
791 1.22 chs sqlite3_finalize(stmt);
792 1.22 chs
793 1.22 chs for ( ; rows != NULL; free(parent), free(file), free(buf)) {
794 1.22 chs row = rows;
795 1.22 chs rows = rows->next;
796 1.22 chs
797 1.22 chs rec->device = row->device;
798 1.22 chs rec->inode = row->inode;
799 1.22 chs rec->mtime = row->mtime;
800 1.22 chs parent = row->parent;
801 1.22 chs file = row->file;
802 1.22 chs free(row);
803 1.22 chs
804 1.5 joerg if (read_and_decompress(file, &buf, &buflen)) {
805 1.5 joerg err_count++;
806 1.5 joerg continue;
807 1.5 joerg }
808 1.37 christos md5_status = check_md5(file, db, "mandb_meta", &md5sum, buf,
809 1.37 christos buflen);
810 1.5 joerg assert(md5sum != NULL);
811 1.1 joerg if (md5_status == -1) {
812 1.13 wiz if (mflags.verbosity)
813 1.13 wiz warnx("An error occurred in checking md5 value"
814 1.1 joerg " for file %s", file);
815 1.1 joerg err_count++;
816 1.1 joerg continue;
817 1.1 joerg }
818 1.1 joerg
819 1.1 joerg if (md5_status == 0) {
820 1.1 joerg /*
821 1.1 joerg * The MD5 hash is already present in the database,
822 1.1 joerg * so simply update the metadata, ignoring symlinks.
823 1.1 joerg */
824 1.1 joerg struct stat sb;
825 1.1 joerg stat(file, &sb);
826 1.1 joerg if (S_ISLNK(sb.st_mode)) {
827 1.5 joerg free(md5sum);
828 1.1 joerg link_count++;
829 1.1 joerg continue;
830 1.1 joerg }
831 1.5 joerg update_existing_entry(db, file, md5sum, rec,
832 1.1 joerg &new_count, &link_count, &err_count);
833 1.5 joerg free(md5sum);
834 1.1 joerg continue;
835 1.1 joerg }
836 1.1 joerg
837 1.1 joerg if (md5_status == 1) {
838 1.1 joerg /*
839 1.1 joerg * The MD5 hash was not present in the database.
840 1.1 joerg * This means is either a new file or an updated file.
841 1.1 joerg * We should go ahead with parsing.
842 1.1 joerg */
843 1.35 christos if (chdir(parent) == -1) {
844 1.35 christos if (mflags.verbosity)
845 1.35 christos warn("chdir failed for `%s', could "
846 1.35 christos "not index `%s'", parent, file);
847 1.35 christos err_count++;
848 1.35 christos free(md5sum);
849 1.35 christos continue;
850 1.35 christos }
851 1.35 christos
852 1.13 wiz if (mflags.verbosity == 2)
853 1.1 joerg printf("Parsing: %s\n", file);
854 1.5 joerg rec->md5_hash = md5sum;
855 1.1 joerg rec->file_path = estrdup(file);
856 1.1 joerg // file_path is freed by insert_into_db itself.
857 1.5 joerg begin_parse(file, mp, rec, buf, buflen);
858 1.1 joerg if (insert_into_db(db, rec) < 0) {
859 1.13 wiz if (mflags.verbosity)
860 1.35 christos warnx("Error in indexing `%s'", file);
861 1.1 joerg err_count++;
862 1.1 joerg } else {
863 1.1 joerg new_count++;
864 1.1 joerg }
865 1.1 joerg }
866 1.1 joerg }
867 1.18 christos
868 1.13 wiz if (mflags.verbosity == 2) {
869 1.10 uwe printf("Total Number of new or updated pages encountered = %d\n"
870 1.37 christos "Total number of (hard or symbolic) links found = %d\n"
871 1.37 christos "Total number of pages that were successfully"
872 1.37 christos " indexed/updated = %d\n"
873 1.37 christos "Total number of pages that could not be indexed"
874 1.37 christos " due to errors = %d\n",
875 1.37 christos total_count - link_count, link_count, new_count, err_count);
876 1.1 joerg }
877 1.1 joerg
878 1.7 joerg if (mflags.recreate)
879 1.1 joerg return;
880 1.1 joerg
881 1.13 wiz if (mflags.verbosity == 2)
882 1.1 joerg printf("Deleting stale index entries\n");
883 1.1 joerg
884 1.1 joerg sqlstr = "DELETE FROM mandb_meta WHERE file NOT IN"
885 1.1 joerg " (SELECT file FROM metadb.file_cache);"
886 1.9 wiz "DELETE FROM mandb_links WHERE md5_hash NOT IN"
887 1.9 wiz " (SELECT md5_hash from mandb_meta);"
888 1.1 joerg "DROP TABLE metadb.file_cache;"
889 1.1 joerg "DELETE FROM mandb WHERE rowid NOT IN"
890 1.1 joerg " (SELECT id FROM mandb_meta);";
891 1.1 joerg
892 1.1 joerg sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
893 1.1 joerg if (errmsg != NULL) {
894 1.1 joerg warnx("Removing old entries failed: %s", errmsg);
895 1.1 joerg warnx("Please rebuild database from scratch with -f.");
896 1.1 joerg free(errmsg);
897 1.1 joerg return;
898 1.1 joerg }
899 1.1 joerg }
900 1.1 joerg
901 1.1 joerg /*
902 1.1 joerg * begin_parse --
903 1.1 joerg * parses the man page using libmandoc
904 1.1 joerg */
905 1.1 joerg static void
906 1.5 joerg begin_parse(const char *file, struct mparse *mp, mandb_rec *rec,
907 1.5 joerg const void *buf, size_t len)
908 1.1 joerg {
909 1.40 christos struct roff_man *roff;
910 1.1 joerg mparse_reset(mp);
911 1.1 joerg
912 1.1 joerg rec->xr_found = 0;
913 1.1 joerg
914 1.30 christos if (mparse_readmem(mp, buf, len, file) >= MANDOCLEVEL_BADARG) {
915 1.13 wiz /* Printing this warning at verbosity level 2
916 1.13 wiz * because some packages from pkgsrc might trigger several
917 1.13 wiz * of such warnings.
918 1.13 wiz */
919 1.13 wiz if (mflags.verbosity == 2)
920 1.13 wiz warnx("%s: Parse failure", file);
921 1.1 joerg return;
922 1.1 joerg }
923 1.1 joerg
924 1.40 christos mparse_result(mp, &roff, NULL);
925 1.40 christos if (roff == NULL) {
926 1.13 wiz if (mflags.verbosity == 2)
927 1.40 christos warnx("Not a roff(7) page");
928 1.1 joerg return;
929 1.1 joerg }
930 1.1 joerg
931 1.40 christos if (roff->macroset == MACROSET_MDOC) {
932 1.41 abhinav mdoc_validate(roff);
933 1.1 joerg rec->page_type = MDOC;
934 1.40 christos proff_node(roff->first->child, rec, mdocs);
935 1.40 christos } else if (roff->macroset == MACROSET_MAN) {
936 1.41 abhinav man_validate(roff);
937 1.1 joerg rec->page_type = MAN;
938 1.40 christos proff_node(roff->first->child, rec, mans);
939 1.40 christos } else
940 1.40 christos warnx("Unknown macroset %d", roff->macroset);
941 1.41 abhinav set_machine(roff, rec);
942 1.41 abhinav set_section(roff, rec);
943 1.1 joerg }
944 1.1 joerg
945 1.1 joerg /*
946 1.1 joerg * set_section --
947 1.1 joerg * Extracts the section number and normalizes it to only the numeric part
948 1.1 joerg * (Which should be the first character of the string).
949 1.1 joerg */
950 1.1 joerg static void
951 1.40 christos set_section(const struct roff_man *rm, mandb_rec *rec)
952 1.1 joerg {
953 1.40 christos if (!rm)
954 1.31 christos return;
955 1.40 christos const struct roff_meta *rm_meta = &rm->meta;
956 1.40 christos const char *s = rm_meta->msec == NULL ? "?" : rm_meta->msec;
957 1.40 christos easprintf(&rec->section, "%s", s);
958 1.31 christos if (rec->section[0] == '?' && mflags.verbosity == 2)
959 1.31 christos warnx("%s: Missing section number", rec->file_path);
960 1.1 joerg }
961 1.1 joerg
962 1.1 joerg /*
963 1.1 joerg * get_machine --
964 1.1 joerg * Extracts the machine architecture information if available.
965 1.1 joerg */
966 1.1 joerg static void
967 1.40 christos set_machine(const struct roff_man *rm, mandb_rec *rec)
968 1.1 joerg {
969 1.40 christos if (rm == NULL)
970 1.1 joerg return;
971 1.40 christos const struct roff_meta *rm_meta = &rm->meta;
972 1.41 abhinav if (rm_meta->arch)
973 1.41 abhinav rec->machine = estrdup(rm_meta->arch);
974 1.1 joerg }
975 1.1 joerg
976 1.1 joerg /*
977 1.1 joerg * pmdoc_Nm --
978 1.1 joerg * Extracts the Name of the manual page from the .Nm macro
979 1.1 joerg */
980 1.1 joerg static void
981 1.40 christos pmdoc_Nm(const struct roff_node *n, mandb_rec *rec)
982 1.1 joerg {
983 1.1 joerg if (n->sec != SEC_NAME)
984 1.1 joerg return;
985 1.1 joerg
986 1.1 joerg for (n = n->child; n; n = n->next) {
987 1.40 christos if (n->type == ROFFT_TEXT) {
988 1.32 christos char *escaped_name = parse_escape(n->string);
989 1.32 christos concat(&rec->name, escaped_name);
990 1.32 christos free(escaped_name);
991 1.1 joerg }
992 1.1 joerg }
993 1.1 joerg }
994 1.1 joerg
995 1.1 joerg /*
996 1.1 joerg * pmdoc_Nd --
997 1.1 joerg * Extracts the one line description of the man page from the .Nd macro
998 1.1 joerg */
999 1.1 joerg static void
1000 1.40 christos pmdoc_Nd(const struct roff_node *n, mandb_rec *rec)
1001 1.1 joerg {
1002 1.1 joerg char *buf = NULL;
1003 1.29 plunky char *name;
1004 1.23 wiz char *nd_text;
1005 1.1 joerg
1006 1.40 christos if (n == NULL || (n->type != ROFFT_TEXT && n->tok == MDOC_MAX))
1007 1.1 joerg return;
1008 1.1 joerg
1009 1.40 christos if (n->type == ROFFT_TEXT) {
1010 1.1 joerg if (rec->xr_found && n->next) {
1011 1.1 joerg /*
1012 1.1 joerg * An Xr macro was seen previously, so parse this
1013 1.29 plunky * and the next node, as "Name(Section)".
1014 1.1 joerg */
1015 1.29 plunky name = n->string;
1016 1.1 joerg n = n->next;
1017 1.40 christos assert(n->type == ROFFT_TEXT);
1018 1.29 plunky easprintf(&buf, "%s(%s)", name, n->string);
1019 1.1 joerg concat(&rec->name_desc, buf);
1020 1.1 joerg free(buf);
1021 1.1 joerg } else {
1022 1.32 christos nd_text = parse_escape(n->string);
1023 1.23 wiz concat(&rec->name_desc, nd_text);
1024 1.23 wiz free(nd_text);
1025 1.1 joerg }
1026 1.1 joerg rec->xr_found = 0;
1027 1.1 joerg } else if (mdocs[n->tok] == pmdoc_Xr) {
1028 1.1 joerg /* Remember that we have encountered an Xr macro */
1029 1.1 joerg rec->xr_found = 1;
1030 1.1 joerg }
1031 1.1 joerg
1032 1.1 joerg if (n->child)
1033 1.1 joerg pmdoc_Nd(n->child, rec);
1034 1.1 joerg
1035 1.1 joerg if(n->next)
1036 1.1 joerg pmdoc_Nd(n->next, rec);
1037 1.1 joerg }
1038 1.1 joerg
1039 1.1 joerg /*
1040 1.1 joerg * pmdoc_macro_handler--
1041 1.1 joerg * This function is a single point of handling all the special macros that we
1042 1.1 joerg * want to handle especially. For example the .Xr macro for properly parsing
1043 1.1 joerg * the referenced page name along with the section number, or the .Pp macro
1044 1.1 joerg * for adding a new line whenever we encounter it.
1045 1.1 joerg */
1046 1.1 joerg static void
1047 1.40 christos pmdoc_macro_handler(const struct roff_node *n, mandb_rec *rec, int doct)
1048 1.1 joerg {
1049 1.40 christos const struct roff_node *sn;
1050 1.1 joerg assert(n);
1051 1.1 joerg
1052 1.1 joerg switch (doct) {
1053 1.1 joerg /* Parse the man page references.
1054 1.1 joerg * Basically the .Xr macros are used like:
1055 1.1 joerg * .Xr ls 1
1056 1.1 joerg * and formatted like this:
1057 1.1 joerg * ls(1)
1058 1.1 joerg * Prepare a buffer to format the data like the above example and call
1059 1.1 joerg * pmdoc_parse_section to append it.
1060 1.1 joerg */
1061 1.1 joerg case MDOC_Xr:
1062 1.1 joerg n = n->child;
1063 1.40 christos while (n->type != ROFFT_TEXT && n->next)
1064 1.1 joerg n = n->next;
1065 1.1 joerg
1066 1.40 christos if (n && n->type != ROFFT_TEXT)
1067 1.1 joerg return;
1068 1.1 joerg sn = n;
1069 1.1 joerg if (n->next)
1070 1.1 joerg n = n->next;
1071 1.1 joerg
1072 1.40 christos while (n->type != ROFFT_TEXT && n->next)
1073 1.1 joerg n = n->next;
1074 1.1 joerg
1075 1.40 christos if (n && n->type == ROFFT_TEXT) {
1076 1.27 christos char *buf;
1077 1.27 christos easprintf(&buf, "%s(%s)", sn->string, n->string);
1078 1.1 joerg mdoc_parse_section(n->sec, buf, rec);
1079 1.1 joerg free(buf);
1080 1.1 joerg }
1081 1.1 joerg
1082 1.1 joerg break;
1083 1.1 joerg
1084 1.1 joerg /* Parse the .Pp macro to add a new line */
1085 1.1 joerg case MDOC_Pp:
1086 1.40 christos if (n->type == ROFFT_TEXT)
1087 1.1 joerg mdoc_parse_section(n->sec, "\n", rec);
1088 1.1 joerg break;
1089 1.1 joerg default:
1090 1.1 joerg break;
1091 1.1 joerg }
1092 1.1 joerg
1093 1.1 joerg }
1094 1.1 joerg
1095 1.1 joerg /*
1096 1.1 joerg * pmdoc_Xr, pmdoc_Pp--
1097 1.1 joerg * Empty stubs.
1098 1.1 joerg * The parser calls these functions each time it encounters
1099 1.1 joerg * a .Xr or .Pp macro. We are parsing all the data from
1100 1.1 joerg * the pmdoc_Sh function, so don't do anything here.
1101 1.1 joerg * (See if else blocks in pmdoc_Sh.)
1102 1.1 joerg */
1103 1.1 joerg static void
1104 1.40 christos pmdoc_Xr(const struct roff_node *n, mandb_rec *rec)
1105 1.1 joerg {
1106 1.1 joerg }
1107 1.1 joerg
1108 1.1 joerg static void
1109 1.40 christos pmdoc_Pp(const struct roff_node *n, mandb_rec *rec)
1110 1.1 joerg {
1111 1.1 joerg }
1112 1.1 joerg
1113 1.1 joerg /*
1114 1.1 joerg * pmdoc_Sh --
1115 1.1 joerg * Called when a .Sh macro is encountered and loops through its body, calling
1116 1.1 joerg * mdoc_parse_section to append the data to the section specific buffer.
1117 1.1 joerg * Two special macros which may occur inside the body of Sh are .Nm and .Xr and
1118 1.1 joerg * they need special handling, thus the separate if branches for them.
1119 1.1 joerg */
1120 1.1 joerg static void
1121 1.40 christos pmdoc_Sh(const struct roff_node *n, mandb_rec *rec)
1122 1.1 joerg {
1123 1.40 christos if (n == NULL || (n->type != ROFFT_TEXT && n->tok == MDOC_MAX))
1124 1.1 joerg return;
1125 1.1 joerg int xr_found = 0;
1126 1.1 joerg
1127 1.40 christos if (n->type == ROFFT_TEXT) {
1128 1.1 joerg mdoc_parse_section(n->sec, n->string, rec);
1129 1.1 joerg } else if (mdocs[n->tok] == pmdoc_Nm && rec->name != NULL) {
1130 1.1 joerg /*
1131 1.1 joerg * When encountering a .Nm macro, substitute it
1132 1.1 joerg * with its previously cached value of the argument.
1133 1.1 joerg */
1134 1.1 joerg mdoc_parse_section(n->sec, rec->name, rec);
1135 1.1 joerg } else if (mdocs[n->tok] == pmdoc_Xr) {
1136 1.1 joerg /*
1137 1.1 joerg * When encountering other inline macros,
1138 1.1 joerg * call pmdoc_macro_handler.
1139 1.1 joerg */
1140 1.1 joerg pmdoc_macro_handler(n, rec, MDOC_Xr);
1141 1.1 joerg xr_found = 1;
1142 1.1 joerg } else if (mdocs[n->tok] == pmdoc_Pp) {
1143 1.1 joerg pmdoc_macro_handler(n, rec, MDOC_Pp);
1144 1.1 joerg }
1145 1.1 joerg
1146 1.1 joerg /*
1147 1.1 joerg * If an Xr macro was encountered then the child node has
1148 1.1 joerg * already been explored by pmdoc_macro_handler.
1149 1.1 joerg */
1150 1.1 joerg if (xr_found == 0)
1151 1.1 joerg pmdoc_Sh(n->child, rec);
1152 1.1 joerg pmdoc_Sh(n->next, rec);
1153 1.1 joerg }
1154 1.1 joerg
1155 1.1 joerg /*
1156 1.1 joerg * mdoc_parse_section--
1157 1.1 joerg * Utility function for parsing sections of the mdoc type pages.
1158 1.1 joerg * Takes two params:
1159 1.1 joerg * 1. sec is an enum which indicates the section in which we are present
1160 1.1 joerg * 2. string is the string which we need to append to the secbuff for this
1161 1.1 joerg * particular section.
1162 1.1 joerg * The function appends string to the global section buffer and returns.
1163 1.1 joerg */
1164 1.1 joerg static void
1165 1.40 christos mdoc_parse_section(enum roff_sec sec, const char *string, mandb_rec *rec)
1166 1.1 joerg {
1167 1.1 joerg /*
1168 1.1 joerg * If the user specified the 'l' flag, then parse and store only the
1169 1.1 joerg * NAME section. Ignore the rest.
1170 1.1 joerg */
1171 1.1 joerg if (mflags.limit)
1172 1.1 joerg return;
1173 1.1 joerg
1174 1.1 joerg switch (sec) {
1175 1.1 joerg case SEC_LIBRARY:
1176 1.1 joerg append(&rec->lib, string);
1177 1.1 joerg break;
1178 1.1 joerg case SEC_RETURN_VALUES:
1179 1.1 joerg append(&rec->return_vals, string);
1180 1.1 joerg break;
1181 1.1 joerg case SEC_ENVIRONMENT:
1182 1.1 joerg append(&rec->env, string);
1183 1.1 joerg break;
1184 1.1 joerg case SEC_FILES:
1185 1.1 joerg append(&rec->files, string);
1186 1.1 joerg break;
1187 1.1 joerg case SEC_EXIT_STATUS:
1188 1.1 joerg append(&rec->exit_status, string);
1189 1.1 joerg break;
1190 1.1 joerg case SEC_DIAGNOSTICS:
1191 1.1 joerg append(&rec->diagnostics, string);
1192 1.1 joerg break;
1193 1.1 joerg case SEC_ERRORS:
1194 1.1 joerg append(&rec->errors, string);
1195 1.1 joerg break;
1196 1.1 joerg case SEC_NAME:
1197 1.1 joerg case SEC_SYNOPSIS:
1198 1.1 joerg case SEC_EXAMPLES:
1199 1.1 joerg case SEC_STANDARDS:
1200 1.1 joerg case SEC_HISTORY:
1201 1.1 joerg case SEC_AUTHORS:
1202 1.1 joerg case SEC_BUGS:
1203 1.1 joerg break;
1204 1.1 joerg default:
1205 1.1 joerg append(&rec->desc, string);
1206 1.1 joerg break;
1207 1.1 joerg }
1208 1.1 joerg }
1209 1.1 joerg
1210 1.1 joerg static void
1211 1.40 christos proff_node(const struct roff_node *n, mandb_rec *rec, const proff_nf *func)
1212 1.1 joerg {
1213 1.1 joerg if (n == NULL)
1214 1.1 joerg return;
1215 1.1 joerg
1216 1.1 joerg switch (n->type) {
1217 1.40 christos case (ROFFT_BODY):
1218 1.1 joerg /* FALLTHROUGH */
1219 1.40 christos case (ROFFT_BLOCK):
1220 1.1 joerg /* FALLTHROUGH */
1221 1.40 christos case (ROFFT_ELEM):
1222 1.40 christos if (func[n->tok] != NULL)
1223 1.40 christos (*func[n->tok])(n, rec);
1224 1.1 joerg break;
1225 1.1 joerg default:
1226 1.1 joerg break;
1227 1.1 joerg }
1228 1.1 joerg
1229 1.40 christos proff_node(n->child, rec, func);
1230 1.40 christos proff_node(n->next, rec, func);
1231 1.1 joerg }
1232 1.1 joerg
1233 1.18 christos /*
1234 1.1 joerg * pman_parse_name --
1235 1.1 joerg * Parses the NAME section and puts the complete content in the name_desc
1236 1.1 joerg * variable.
1237 1.1 joerg */
1238 1.1 joerg static void
1239 1.40 christos pman_parse_name(const struct roff_node *n, mandb_rec *rec)
1240 1.1 joerg {
1241 1.1 joerg if (n == NULL)
1242 1.1 joerg return;
1243 1.1 joerg
1244 1.40 christos if (n->type == ROFFT_TEXT) {
1245 1.1 joerg char *tmp = parse_escape(n->string);
1246 1.1 joerg concat(&rec->name_desc, tmp);
1247 1.1 joerg free(tmp);
1248 1.1 joerg }
1249 1.1 joerg
1250 1.1 joerg if (n->child)
1251 1.1 joerg pman_parse_name(n->child, rec);
1252 1.1 joerg
1253 1.1 joerg if(n->next)
1254 1.1 joerg pman_parse_name(n->next, rec);
1255 1.1 joerg }
1256 1.1 joerg
1257 1.1 joerg /*
1258 1.1 joerg * A stub function to be able to parse the macros like .B embedded inside
1259 1.1 joerg * a section.
1260 1.1 joerg */
1261 1.1 joerg static void
1262 1.40 christos pman_block(const struct roff_node *n, mandb_rec *rec)
1263 1.1 joerg {
1264 1.1 joerg }
1265 1.1 joerg
1266 1.18 christos /*
1267 1.1 joerg * pman_sh --
1268 1.1 joerg * This function does one of the two things:
1269 1.1 joerg * 1. If the present section is NAME, then it will:
1270 1.1 joerg * (a) Extract the name of the page (in case of multiple comma separated
1271 1.1 joerg * names, it will pick up the first one).
1272 1.1 joerg * (b) Build a space spearated list of all the symlinks/hardlinks to
1273 1.1 joerg * this page and store in the buffer 'links'. These are extracted from
1274 1.1 joerg * the comma separated list of names in the NAME section as well.
1275 1.1 joerg * (c) Move on to the one line description section, which is after the list
1276 1.1 joerg * of names in the NAME section.
1277 1.1 joerg * 2. Otherwise, it will check the section name and call the man_parse_section
1278 1.39 abhinav * function, passing the enum corresponding to that section.
1279 1.1 joerg */
1280 1.1 joerg static void
1281 1.40 christos pman_sh(const struct roff_node *n, mandb_rec *rec)
1282 1.1 joerg {
1283 1.1 joerg static const struct {
1284 1.1 joerg enum man_sec section;
1285 1.1 joerg const char *header;
1286 1.1 joerg } mapping[] = {
1287 1.1 joerg { MANSEC_DESCRIPTION, "DESCRIPTION" },
1288 1.1 joerg { MANSEC_SYNOPSIS, "SYNOPSIS" },
1289 1.1 joerg { MANSEC_LIBRARY, "LIBRARY" },
1290 1.1 joerg { MANSEC_ERRORS, "ERRORS" },
1291 1.1 joerg { MANSEC_FILES, "FILES" },
1292 1.1 joerg { MANSEC_RETURN_VALUES, "RETURN VALUE" },
1293 1.1 joerg { MANSEC_RETURN_VALUES, "RETURN VALUES" },
1294 1.1 joerg { MANSEC_EXIT_STATUS, "EXIT STATUS" },
1295 1.1 joerg { MANSEC_EXAMPLES, "EXAMPLES" },
1296 1.1 joerg { MANSEC_EXAMPLES, "EXAMPLE" },
1297 1.1 joerg { MANSEC_STANDARDS, "STANDARDS" },
1298 1.1 joerg { MANSEC_HISTORY, "HISTORY" },
1299 1.1 joerg { MANSEC_BUGS, "BUGS" },
1300 1.1 joerg { MANSEC_AUTHORS, "AUTHORS" },
1301 1.1 joerg { MANSEC_COPYRIGHT, "COPYRIGHT" },
1302 1.1 joerg };
1303 1.40 christos const struct roff_node *head;
1304 1.1 joerg char *name_desc;
1305 1.32 christos size_t sz;
1306 1.1 joerg size_t i;
1307 1.1 joerg
1308 1.1 joerg if ((head = n->parent->head) == NULL || (head = head->child) == NULL ||
1309 1.40 christos head->type != ROFFT_TEXT)
1310 1.1 joerg return;
1311 1.1 joerg
1312 1.1 joerg /*
1313 1.1 joerg * Check if this section should be extracted and
1314 1.1 joerg * where it should be stored. Handled the trival cases first.
1315 1.1 joerg */
1316 1.1 joerg for (i = 0; i < sizeof(mapping) / sizeof(mapping[0]); ++i) {
1317 1.1 joerg if (strcmp(head->string, mapping[i].header) == 0) {
1318 1.1 joerg man_parse_section(mapping[i].section, n, rec);
1319 1.1 joerg return;
1320 1.1 joerg }
1321 1.1 joerg }
1322 1.1 joerg
1323 1.1 joerg if (strcmp(head->string, "NAME") == 0) {
1324 1.1 joerg /*
1325 1.1 joerg * We are in the NAME section.
1326 1.1 joerg * pman_parse_name will put the complete content in name_desc.
1327 1.1 joerg */
1328 1.1 joerg pman_parse_name(n, rec);
1329 1.1 joerg
1330 1.1 joerg name_desc = rec->name_desc;
1331 1.16 christos if (name_desc == NULL)
1332 1.16 christos return;
1333 1.1 joerg
1334 1.1 joerg /* Remove any leading spaces. */
1335 1.1 joerg while (name_desc[0] == ' ')
1336 1.1 joerg name_desc++;
1337 1.18 christos
1338 1.1 joerg /* If the line begins with a "\&", avoid those */
1339 1.1 joerg if (name_desc[0] == '\\' && name_desc[1] == '&')
1340 1.1 joerg name_desc += 2;
1341 1.1 joerg
1342 1.1 joerg /* Now name_desc should be left with a comma-space
1343 1.1 joerg * separated list of names and the one line description
1344 1.1 joerg * of the page:
1345 1.1 joerg * "a, b, c \- sample description"
1346 1.1 joerg * Take out the first name, before the first comma
1347 1.1 joerg * (or space) and store it in rec->name.
1348 1.1 joerg * If the page has aliases then they should be
1349 1.1 joerg * in the form of a comma separated list.
1350 1.1 joerg * Keep looping while there is a comma in name_desc,
1351 1.1 joerg * extract the alias name and store in rec->links.
1352 1.1 joerg * When there are no more commas left, break out.
1353 1.1 joerg */
1354 1.1 joerg int has_alias = 0; // Any more aliases left?
1355 1.1 joerg while (*name_desc) {
1356 1.8 wiz /* Remove any leading spaces or hyphens. */
1357 1.39 abhinav if (name_desc[0] == ' ' || name_desc[0] == '-') {
1358 1.1 joerg name_desc++;
1359 1.1 joerg continue;
1360 1.1 joerg }
1361 1.1 joerg sz = strcspn(name_desc, ", ");
1362 1.1 joerg
1363 1.1 joerg /* Extract the first term and store it in rec->name. */
1364 1.1 joerg if (rec->name == NULL) {
1365 1.1 joerg if (name_desc[sz] == ',')
1366 1.1 joerg has_alias = 1;
1367 1.39 abhinav rec->name = estrndup(name_desc, sz);
1368 1.39 abhinav /* XXX This would only happen with a poorly
1369 1.39 abhinav * written man page, maybe warn? */
1370 1.39 abhinav if (name_desc[sz] == '\0')
1371 1.39 abhinav break;
1372 1.1 joerg name_desc += sz + 1;
1373 1.1 joerg continue;
1374 1.1 joerg }
1375 1.1 joerg
1376 1.1 joerg /*
1377 1.1 joerg * Once rec->name is set, rest of the names
1378 1.1 joerg * are to be treated as links or aliases.
1379 1.1 joerg */
1380 1.1 joerg if (rec->name && has_alias) {
1381 1.1 joerg if (name_desc[sz] != ',') {
1382 1.39 abhinav /* No more commas left --> no more
1383 1.39 abhinav * aliases to take out */
1384 1.1 joerg has_alias = 0;
1385 1.1 joerg }
1386 1.1 joerg concat2(&rec->links, name_desc, sz);
1387 1.39 abhinav /* XXX This would only happen with a poorly
1388 1.39 abhinav * written man page, maybe warn? */
1389 1.39 abhinav if (name_desc[sz] == '\0')
1390 1.39 abhinav break;
1391 1.1 joerg name_desc += sz + 1;
1392 1.1 joerg continue;
1393 1.1 joerg }
1394 1.1 joerg break;
1395 1.1 joerg }
1396 1.1 joerg
1397 1.1 joerg /* Parse any escape sequences that might be there */
1398 1.1 joerg char *temp = parse_escape(name_desc);
1399 1.1 joerg free(rec->name_desc);
1400 1.1 joerg rec->name_desc = temp;
1401 1.1 joerg temp = parse_escape(rec->name);
1402 1.1 joerg free(rec->name);
1403 1.1 joerg rec->name = temp;
1404 1.1 joerg return;
1405 1.1 joerg }
1406 1.1 joerg
1407 1.1 joerg /* The RETURN VALUE section might be specified in multiple ways */
1408 1.1 joerg if (strcmp(head->string, "RETURN") == 0 &&
1409 1.40 christos head->next != NULL && head->next->type == ROFFT_TEXT &&
1410 1.1 joerg (strcmp(head->next->string, "VALUE") == 0 ||
1411 1.1 joerg strcmp(head->next->string, "VALUES") == 0)) {
1412 1.1 joerg man_parse_section(MANSEC_RETURN_VALUES, n, rec);
1413 1.1 joerg return;
1414 1.1 joerg }
1415 1.1 joerg
1416 1.1 joerg /*
1417 1.1 joerg * EXIT STATUS section can also be specified all on one line or on two
1418 1.1 joerg * separate lines.
1419 1.1 joerg */
1420 1.1 joerg if (strcmp(head->string, "EXIT") == 0 &&
1421 1.40 christos head->next != NULL && head->next->type == ROFFT_TEXT &&
1422 1.1 joerg strcmp(head->next->string, "STATUS") == 0) {
1423 1.1 joerg man_parse_section(MANSEC_EXIT_STATUS, n, rec);
1424 1.1 joerg return;
1425 1.1 joerg }
1426 1.1 joerg
1427 1.1 joerg /* Store the rest of the content in desc. */
1428 1.1 joerg man_parse_section(MANSEC_NONE, n, rec);
1429 1.1 joerg }
1430 1.1 joerg
1431 1.1 joerg /*
1432 1.1 joerg * pman_parse_node --
1433 1.18 christos * Generic function to iterate through a node. Usually called from
1434 1.1 joerg * man_parse_section to parse a particular section of the man page.
1435 1.1 joerg */
1436 1.1 joerg static void
1437 1.40 christos pman_parse_node(const struct roff_node *n, secbuff *s)
1438 1.1 joerg {
1439 1.1 joerg if (n == NULL)
1440 1.1 joerg return;
1441 1.1 joerg
1442 1.40 christos if (n->type == ROFFT_TEXT)
1443 1.1 joerg append(s, n->string);
1444 1.18 christos
1445 1.1 joerg pman_parse_node(n->child, s);
1446 1.1 joerg pman_parse_node(n->next, s);
1447 1.1 joerg }
1448 1.1 joerg
1449 1.1 joerg /*
1450 1.1 joerg * man_parse_section --
1451 1.18 christos * Takes two parameters:
1452 1.1 joerg * sec: Tells which section we are present in
1453 1.1 joerg * n: Is the present node of the AST.
1454 1.1 joerg * Depending on the section, we call pman_parse_node to parse that section and
1455 1.1 joerg * concatenate the content from that section into the buffer for that section.
1456 1.1 joerg */
1457 1.1 joerg static void
1458 1.40 christos man_parse_section(enum man_sec sec, const struct roff_node *n, mandb_rec *rec)
1459 1.1 joerg {
1460 1.1 joerg /*
1461 1.1 joerg * If the user sepecified the 'l' flag then just parse
1462 1.1 joerg * the NAME section, ignore the rest.
1463 1.1 joerg */
1464 1.1 joerg if (mflags.limit)
1465 1.1 joerg return;
1466 1.1 joerg
1467 1.1 joerg switch (sec) {
1468 1.1 joerg case MANSEC_LIBRARY:
1469 1.1 joerg pman_parse_node(n, &rec->lib);
1470 1.1 joerg break;
1471 1.1 joerg case MANSEC_RETURN_VALUES:
1472 1.1 joerg pman_parse_node(n, &rec->return_vals);
1473 1.1 joerg break;
1474 1.1 joerg case MANSEC_ENVIRONMENT:
1475 1.1 joerg pman_parse_node(n, &rec->env);
1476 1.1 joerg break;
1477 1.1 joerg case MANSEC_FILES:
1478 1.1 joerg pman_parse_node(n, &rec->files);
1479 1.1 joerg break;
1480 1.1 joerg case MANSEC_EXIT_STATUS:
1481 1.1 joerg pman_parse_node(n, &rec->exit_status);
1482 1.1 joerg break;
1483 1.1 joerg case MANSEC_DIAGNOSTICS:
1484 1.1 joerg pman_parse_node(n, &rec->diagnostics);
1485 1.1 joerg break;
1486 1.1 joerg case MANSEC_ERRORS:
1487 1.1 joerg pman_parse_node(n, &rec->errors);
1488 1.1 joerg break;
1489 1.1 joerg case MANSEC_NAME:
1490 1.1 joerg case MANSEC_SYNOPSIS:
1491 1.1 joerg case MANSEC_EXAMPLES:
1492 1.1 joerg case MANSEC_STANDARDS:
1493 1.1 joerg case MANSEC_HISTORY:
1494 1.1 joerg case MANSEC_BUGS:
1495 1.1 joerg case MANSEC_AUTHORS:
1496 1.1 joerg case MANSEC_COPYRIGHT:
1497 1.1 joerg break;
1498 1.1 joerg default:
1499 1.1 joerg pman_parse_node(n, &rec->desc);
1500 1.1 joerg break;
1501 1.1 joerg }
1502 1.1 joerg
1503 1.1 joerg }
1504 1.1 joerg
1505 1.1 joerg /*
1506 1.1 joerg * insert_into_db --
1507 1.1 joerg * Inserts the parsed data of the man page in the Sqlite databse.
1508 1.1 joerg * If any of the values is NULL, then we cleanup and return -1 indicating
1509 1.1 joerg * an error.
1510 1.1 joerg * Otherwise, store the data in the database and return 0.
1511 1.1 joerg */
1512 1.1 joerg static int
1513 1.1 joerg insert_into_db(sqlite3 *db, mandb_rec *rec)
1514 1.1 joerg {
1515 1.1 joerg int rc = 0;
1516 1.1 joerg int idx = -1;
1517 1.1 joerg const char *sqlstr = NULL;
1518 1.1 joerg sqlite3_stmt *stmt = NULL;
1519 1.1 joerg char *ln = NULL;
1520 1.1 joerg char *errmsg = NULL;
1521 1.1 joerg long int mandb_rowid;
1522 1.18 christos
1523 1.1 joerg /*
1524 1.1 joerg * At the very minimum we want to make sure that we store
1525 1.1 joerg * the following data:
1526 1.1 joerg * Name, one line description, and the MD5 hash
1527 1.18 christos */
1528 1.1 joerg if (rec->name == NULL || rec->name_desc == NULL ||
1529 1.1 joerg rec->md5_hash == NULL) {
1530 1.1 joerg cleanup(rec);
1531 1.1 joerg return -1;
1532 1.1 joerg }
1533 1.1 joerg
1534 1.1 joerg /* Write null byte at the end of all the sec_buffs */
1535 1.1 joerg rec->desc.data[rec->desc.offset] = 0;
1536 1.1 joerg rec->lib.data[rec->lib.offset] = 0;
1537 1.1 joerg rec->env.data[rec->env.offset] = 0;
1538 1.1 joerg rec->return_vals.data[rec->return_vals.offset] = 0;
1539 1.1 joerg rec->exit_status.data[rec->exit_status.offset] = 0;
1540 1.1 joerg rec->files.data[rec->files.offset] = 0;
1541 1.1 joerg rec->diagnostics.data[rec->diagnostics.offset] = 0;
1542 1.1 joerg rec->errors.data[rec->errors.offset] = 0;
1543 1.1 joerg
1544 1.1 joerg /*
1545 1.1 joerg * In case of a mdoc page: (sorry, no better place to put this code)
1546 1.1 joerg * parse the comma separated list of names of man pages,
1547 1.1 joerg * the first name will be stored in the mandb table, rest will be
1548 1.1 joerg * treated as links and put in the mandb_links table.
1549 1.1 joerg */
1550 1.1 joerg if (rec->page_type == MDOC) {
1551 1.1 joerg char *tmp;
1552 1.1 joerg rec->links = estrdup(rec->name);
1553 1.1 joerg free(rec->name);
1554 1.37 christos size_t sz = strcspn(rec->links, " \0");
1555 1.1 joerg rec->name = emalloc(sz + 1);
1556 1.1 joerg memcpy(rec->name, rec->links, sz);
1557 1.1 joerg if(rec->name[sz - 1] == ',')
1558 1.1 joerg rec->name[sz - 1] = 0;
1559 1.1 joerg else
1560 1.1 joerg rec->name[sz] = 0;
1561 1.1 joerg while (rec->links[sz] == ' ')
1562 1.1 joerg ++sz;
1563 1.1 joerg tmp = estrdup(rec->links + sz);
1564 1.1 joerg free(rec->links);
1565 1.1 joerg rec->links = tmp;
1566 1.1 joerg }
1567 1.1 joerg
1568 1.1 joerg /*------------------------ Populate the mandb table---------------------------*/
1569 1.1 joerg sqlstr = "INSERT INTO mandb VALUES (:section, :name, :name_desc, :desc,"
1570 1.1 joerg " :lib, :return_vals, :env, :files, :exit_status,"
1571 1.1 joerg " :diagnostics, :errors, :md5_hash, :machine)";
1572 1.1 joerg
1573 1.1 joerg rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
1574 1.1 joerg if (rc != SQLITE_OK)
1575 1.1 joerg goto Out;
1576 1.1 joerg
1577 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":name");
1578 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->name, -1, NULL);
1579 1.1 joerg if (rc != SQLITE_OK) {
1580 1.1 joerg sqlite3_finalize(stmt);
1581 1.1 joerg goto Out;
1582 1.1 joerg }
1583 1.1 joerg
1584 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":section");
1585 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->section, -1, NULL);
1586 1.1 joerg if (rc != SQLITE_OK) {
1587 1.1 joerg sqlite3_finalize(stmt);
1588 1.1 joerg goto Out;
1589 1.1 joerg }
1590 1.1 joerg
1591 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":name_desc");
1592 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->name_desc, -1, NULL);
1593 1.1 joerg if (rc != SQLITE_OK) {
1594 1.1 joerg sqlite3_finalize(stmt);
1595 1.1 joerg goto Out;
1596 1.1 joerg }
1597 1.1 joerg
1598 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":desc");
1599 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->desc.data,
1600 1.1 joerg rec->desc.offset + 1, NULL);
1601 1.1 joerg if (rc != SQLITE_OK) {
1602 1.1 joerg sqlite3_finalize(stmt);
1603 1.1 joerg goto Out;
1604 1.1 joerg }
1605 1.1 joerg
1606 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":lib");
1607 1.37 christos rc = sqlite3_bind_text(stmt, idx, rec->lib.data,
1608 1.37 christos rec->lib.offset + 1, NULL);
1609 1.1 joerg if (rc != SQLITE_OK) {
1610 1.1 joerg sqlite3_finalize(stmt);
1611 1.1 joerg goto Out;
1612 1.1 joerg }
1613 1.1 joerg
1614 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":return_vals");
1615 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->return_vals.data,
1616 1.1 joerg rec->return_vals.offset + 1, NULL);
1617 1.1 joerg if (rc != SQLITE_OK) {
1618 1.1 joerg sqlite3_finalize(stmt);
1619 1.1 joerg goto Out;
1620 1.1 joerg }
1621 1.1 joerg
1622 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":env");
1623 1.37 christos rc = sqlite3_bind_text(stmt, idx, rec->env.data,
1624 1.37 christos rec->env.offset + 1, NULL);
1625 1.1 joerg if (rc != SQLITE_OK) {
1626 1.1 joerg sqlite3_finalize(stmt);
1627 1.1 joerg goto Out;
1628 1.1 joerg }
1629 1.1 joerg
1630 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":files");
1631 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->files.data,
1632 1.1 joerg rec->files.offset + 1, NULL);
1633 1.1 joerg if (rc != SQLITE_OK) {
1634 1.1 joerg sqlite3_finalize(stmt);
1635 1.1 joerg goto Out;
1636 1.1 joerg }
1637 1.1 joerg
1638 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":exit_status");
1639 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->exit_status.data,
1640 1.1 joerg rec->exit_status.offset + 1, NULL);
1641 1.1 joerg if (rc != SQLITE_OK) {
1642 1.1 joerg sqlite3_finalize(stmt);
1643 1.1 joerg goto Out;
1644 1.1 joerg }
1645 1.1 joerg
1646 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":diagnostics");
1647 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->diagnostics.data,
1648 1.1 joerg rec->diagnostics.offset + 1, NULL);
1649 1.1 joerg if (rc != SQLITE_OK) {
1650 1.1 joerg sqlite3_finalize(stmt);
1651 1.1 joerg goto Out;
1652 1.1 joerg }
1653 1.1 joerg
1654 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":errors");
1655 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->errors.data,
1656 1.1 joerg rec->errors.offset + 1, NULL);
1657 1.1 joerg if (rc != SQLITE_OK) {
1658 1.1 joerg sqlite3_finalize(stmt);
1659 1.1 joerg goto Out;
1660 1.1 joerg }
1661 1.18 christos
1662 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":md5_hash");
1663 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->md5_hash, -1, NULL);
1664 1.1 joerg if (rc != SQLITE_OK) {
1665 1.1 joerg sqlite3_finalize(stmt);
1666 1.1 joerg goto Out;
1667 1.1 joerg }
1668 1.18 christos
1669 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":machine");
1670 1.1 joerg if (rec->machine)
1671 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->machine, -1, NULL);
1672 1.1 joerg else
1673 1.1 joerg rc = sqlite3_bind_null(stmt, idx);
1674 1.1 joerg if (rc != SQLITE_OK) {
1675 1.1 joerg sqlite3_finalize(stmt);
1676 1.1 joerg goto Out;
1677 1.1 joerg }
1678 1.1 joerg
1679 1.1 joerg rc = sqlite3_step(stmt);
1680 1.1 joerg if (rc != SQLITE_DONE) {
1681 1.1 joerg sqlite3_finalize(stmt);
1682 1.1 joerg goto Out;
1683 1.1 joerg }
1684 1.1 joerg
1685 1.1 joerg sqlite3_finalize(stmt);
1686 1.18 christos
1687 1.1 joerg /* Get the row id of the last inserted row */
1688 1.1 joerg mandb_rowid = sqlite3_last_insert_rowid(db);
1689 1.18 christos
1690 1.1 joerg /*------------------------Populate the mandb_meta table-----------------------*/
1691 1.1 joerg sqlstr = "INSERT INTO mandb_meta VALUES (:device, :inode, :mtime,"
1692 1.1 joerg " :file, :md5_hash, :id)";
1693 1.1 joerg rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
1694 1.1 joerg if (rc != SQLITE_OK)
1695 1.1 joerg goto Out;
1696 1.1 joerg
1697 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":device");
1698 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, rec->device);
1699 1.1 joerg if (rc != SQLITE_OK) {
1700 1.1 joerg sqlite3_finalize(stmt);
1701 1.1 joerg goto Out;
1702 1.1 joerg }
1703 1.1 joerg
1704 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":inode");
1705 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, rec->inode);
1706 1.1 joerg if (rc != SQLITE_OK) {
1707 1.1 joerg sqlite3_finalize(stmt);
1708 1.1 joerg goto Out;
1709 1.1 joerg }
1710 1.1 joerg
1711 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":mtime");
1712 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, rec->mtime);
1713 1.1 joerg if (rc != SQLITE_OK) {
1714 1.1 joerg sqlite3_finalize(stmt);
1715 1.1 joerg goto Out;
1716 1.1 joerg }
1717 1.1 joerg
1718 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":file");
1719 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->file_path, -1, NULL);
1720 1.1 joerg if (rc != SQLITE_OK) {
1721 1.1 joerg sqlite3_finalize(stmt);
1722 1.1 joerg goto Out;
1723 1.1 joerg }
1724 1.1 joerg
1725 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":md5_hash");
1726 1.1 joerg rc = sqlite3_bind_text(stmt, idx, rec->md5_hash, -1, NULL);
1727 1.1 joerg if (rc != SQLITE_OK) {
1728 1.1 joerg sqlite3_finalize(stmt);
1729 1.1 joerg goto Out;
1730 1.1 joerg }
1731 1.1 joerg
1732 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":id");
1733 1.1 joerg rc = sqlite3_bind_int64(stmt, idx, mandb_rowid);
1734 1.1 joerg if (rc != SQLITE_OK) {
1735 1.1 joerg sqlite3_finalize(stmt);
1736 1.1 joerg goto Out;
1737 1.1 joerg }
1738 1.1 joerg
1739 1.1 joerg rc = sqlite3_step(stmt);
1740 1.1 joerg sqlite3_finalize(stmt);
1741 1.24 wiz if (rc == SQLITE_CONSTRAINT_UNIQUE) {
1742 1.1 joerg /* The *most* probable reason for reaching here is that
1743 1.1 joerg * the UNIQUE contraint on the file column of the mandb_meta
1744 1.1 joerg * table was violated.
1745 1.1 joerg * This can happen when a file was updated/modified.
1746 1.1 joerg * To fix this we need to do two things:
1747 1.1 joerg * 1. Delete the row for the older version of this file
1748 1.1 joerg * from mandb table.
1749 1.1 joerg * 2. Run an UPDATE query to update the row for this file
1750 1.1 joerg * in the mandb_meta table.
1751 1.1 joerg */
1752 1.1 joerg warnx("Trying to update index for %s", rec->file_path);
1753 1.1 joerg char *sql = sqlite3_mprintf("DELETE FROM mandb "
1754 1.1 joerg "WHERE rowid = (SELECT id"
1755 1.1 joerg " FROM mandb_meta"
1756 1.1 joerg " WHERE file = %Q)",
1757 1.1 joerg rec->file_path);
1758 1.1 joerg sqlite3_exec(db, sql, NULL, NULL, &errmsg);
1759 1.1 joerg sqlite3_free(sql);
1760 1.1 joerg if (errmsg != NULL) {
1761 1.13 wiz if (mflags.verbosity)
1762 1.13 wiz warnx("%s", errmsg);
1763 1.1 joerg free(errmsg);
1764 1.1 joerg }
1765 1.1 joerg sqlstr = "UPDATE mandb_meta SET device = :device,"
1766 1.1 joerg " inode = :inode, mtime = :mtime, id = :id,"
1767 1.1 joerg " md5_hash = :md5 WHERE file = :file";
1768 1.1 joerg rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
1769 1.1 joerg if (rc != SQLITE_OK) {
1770 1.13 wiz if (mflags.verbosity)
1771 1.13 wiz warnx("Update failed with error: %s",
1772 1.1 joerg sqlite3_errmsg(db));
1773 1.1 joerg close_db(db);
1774 1.1 joerg cleanup(rec);
1775 1.1 joerg errx(EXIT_FAILURE,
1776 1.1 joerg "Consider running makemandb with -f option");
1777 1.1 joerg }
1778 1.1 joerg
1779 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":device");
1780 1.1 joerg sqlite3_bind_int64(stmt, idx, rec->device);
1781 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":inode");
1782 1.1 joerg sqlite3_bind_int64(stmt, idx, rec->inode);
1783 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":mtime");
1784 1.1 joerg sqlite3_bind_int64(stmt, idx, rec->mtime);
1785 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":id");
1786 1.1 joerg sqlite3_bind_int64(stmt, idx, mandb_rowid);
1787 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":md5");
1788 1.1 joerg sqlite3_bind_text(stmt, idx, rec->md5_hash, -1, NULL);
1789 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":file");
1790 1.1 joerg sqlite3_bind_text(stmt, idx, rec->file_path, -1, NULL);
1791 1.1 joerg rc = sqlite3_step(stmt);
1792 1.1 joerg sqlite3_finalize(stmt);
1793 1.1 joerg
1794 1.1 joerg if (rc != SQLITE_DONE) {
1795 1.13 wiz if (mflags.verbosity)
1796 1.13 wiz warnx("%s", sqlite3_errmsg(db));
1797 1.1 joerg close_db(db);
1798 1.1 joerg cleanup(rec);
1799 1.1 joerg errx(EXIT_FAILURE,
1800 1.1 joerg "Consider running makemandb with -f option");
1801 1.1 joerg }
1802 1.1 joerg } else if (rc != SQLITE_DONE) {
1803 1.1 joerg /* Otherwise make this error fatal */
1804 1.1 joerg warnx("Failed at %s\n%s", rec->file_path, sqlite3_errmsg(db));
1805 1.1 joerg cleanup(rec);
1806 1.1 joerg close_db(db);
1807 1.1 joerg exit(EXIT_FAILURE);
1808 1.1 joerg }
1809 1.1 joerg
1810 1.1 joerg /*------------------------ Populate the mandb_links table---------------------*/
1811 1.1 joerg char *str = NULL;
1812 1.18 christos char *links;
1813 1.1 joerg if (rec->links && strlen(rec->links)) {
1814 1.1 joerg links = rec->links;
1815 1.1 joerg for(ln = strtok(links, " "); ln; ln = strtok(NULL, " ")) {
1816 1.1 joerg if (ln[0] == ',')
1817 1.1 joerg ln++;
1818 1.1 joerg if(ln[strlen(ln) - 1] == ',')
1819 1.1 joerg ln[strlen(ln) - 1] = 0;
1820 1.18 christos
1821 1.1 joerg str = sqlite3_mprintf("INSERT INTO mandb_links"
1822 1.9 wiz " VALUES (%Q, %Q, %Q, %Q, %Q)",
1823 1.1 joerg ln, rec->name, rec->section,
1824 1.9 wiz rec->machine, rec->md5_hash);
1825 1.1 joerg sqlite3_exec(db, str, NULL, NULL, &errmsg);
1826 1.1 joerg sqlite3_free(str);
1827 1.1 joerg if (errmsg != NULL) {
1828 1.1 joerg warnx("%s", errmsg);
1829 1.1 joerg cleanup(rec);
1830 1.1 joerg free(errmsg);
1831 1.1 joerg return -1;
1832 1.1 joerg }
1833 1.1 joerg }
1834 1.1 joerg }
1835 1.1 joerg
1836 1.1 joerg cleanup(rec);
1837 1.1 joerg return 0;
1838 1.1 joerg
1839 1.1 joerg Out:
1840 1.13 wiz if (mflags.verbosity)
1841 1.13 wiz warnx("%s", sqlite3_errmsg(db));
1842 1.1 joerg cleanup(rec);
1843 1.1 joerg return -1;
1844 1.1 joerg }
1845 1.1 joerg
1846 1.1 joerg /*
1847 1.1 joerg * check_md5--
1848 1.1 joerg * Generates the md5 hash of the file and checks if it already doesn't exist
1849 1.1 joerg * in the table (passed as the 3rd parameter).
1850 1.1 joerg * This function is being used to avoid hardlinks.
1851 1.1 joerg * On successful completion it will also set the value of the fourth parameter
1852 1.1 joerg * to the md5 hash of the file (computed previously). It is the responsibility
1853 1.1 joerg * of the caller to free this buffer.
1854 1.1 joerg * Return values:
1855 1.1 joerg * -1: If an error occurs somewhere and sets the md5 return buffer to NULL.
1856 1.1 joerg * 0: If the md5 hash does not exist in the table.
1857 1.1 joerg * 1: If the hash exists in the database.
1858 1.1 joerg */
1859 1.1 joerg static int
1860 1.5 joerg check_md5(const char *file, sqlite3 *db, const char *table, char **md5sum,
1861 1.5 joerg void *buf, size_t buflen)
1862 1.1 joerg {
1863 1.1 joerg int rc = 0;
1864 1.1 joerg int idx = -1;
1865 1.1 joerg char *sqlstr = NULL;
1866 1.1 joerg sqlite3_stmt *stmt = NULL;
1867 1.1 joerg
1868 1.1 joerg assert(file != NULL);
1869 1.5 joerg *md5sum = MD5Data(buf, buflen, NULL);
1870 1.5 joerg if (*md5sum == NULL) {
1871 1.13 wiz if (mflags.verbosity)
1872 1.13 wiz warn("md5 failed: %s", file);
1873 1.1 joerg return -1;
1874 1.1 joerg }
1875 1.1 joerg
1876 1.1 joerg easprintf(&sqlstr, "SELECT * FROM %s WHERE md5_hash = :md5_hash",
1877 1.1 joerg table);
1878 1.1 joerg rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
1879 1.1 joerg if (rc != SQLITE_OK) {
1880 1.1 joerg free(sqlstr);
1881 1.5 joerg free(*md5sum);
1882 1.5 joerg *md5sum = NULL;
1883 1.1 joerg return -1;
1884 1.1 joerg }
1885 1.1 joerg
1886 1.1 joerg idx = sqlite3_bind_parameter_index(stmt, ":md5_hash");
1887 1.5 joerg rc = sqlite3_bind_text(stmt, idx, *md5sum, -1, NULL);
1888 1.1 joerg if (rc != SQLITE_OK) {
1889 1.13 wiz if (mflags.verbosity)
1890 1.13 wiz warnx("%s", sqlite3_errmsg(db));
1891 1.1 joerg sqlite3_finalize(stmt);
1892 1.1 joerg free(sqlstr);
1893 1.5 joerg free(*md5sum);
1894 1.5 joerg *md5sum = NULL;
1895 1.1 joerg return -1;
1896 1.1 joerg }
1897 1.1 joerg
1898 1.1 joerg if (sqlite3_step(stmt) == SQLITE_ROW) {
1899 1.18 christos sqlite3_finalize(stmt);
1900 1.1 joerg free(sqlstr);
1901 1.1 joerg return 0;
1902 1.1 joerg }
1903 1.1 joerg
1904 1.1 joerg sqlite3_finalize(stmt);
1905 1.1 joerg free(sqlstr);
1906 1.1 joerg return 1;
1907 1.1 joerg }
1908 1.1 joerg
1909 1.1 joerg /* Optimize the index for faster search */
1910 1.1 joerg static void
1911 1.1 joerg optimize(sqlite3 *db)
1912 1.1 joerg {
1913 1.1 joerg const char *sqlstr;
1914 1.1 joerg char *errmsg = NULL;
1915 1.1 joerg
1916 1.13 wiz if (mflags.verbosity == 2)
1917 1.1 joerg printf("Optimizing the database index\n");
1918 1.1 joerg sqlstr = "INSERT INTO mandb(mandb) VALUES (\'optimize\');"
1919 1.1 joerg "VACUUM";
1920 1.1 joerg sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
1921 1.1 joerg if (errmsg != NULL) {
1922 1.13 wiz if (mflags.verbosity)
1923 1.13 wiz warnx("%s", errmsg);
1924 1.1 joerg free(errmsg);
1925 1.1 joerg return;
1926 1.1 joerg }
1927 1.1 joerg }
1928 1.1 joerg
1929 1.18 christos /*
1930 1.1 joerg * cleanup --
1931 1.1 joerg * cleans up the global buffers
1932 1.1 joerg */
1933 1.1 joerg static void
1934 1.1 joerg cleanup(mandb_rec *rec)
1935 1.1 joerg {
1936 1.1 joerg rec->desc.offset = 0;
1937 1.1 joerg rec->lib.offset = 0;
1938 1.1 joerg rec->return_vals.offset = 0;
1939 1.1 joerg rec->env.offset = 0;
1940 1.1 joerg rec->exit_status.offset = 0;
1941 1.1 joerg rec->diagnostics.offset = 0;
1942 1.1 joerg rec->errors.offset = 0;
1943 1.1 joerg rec->files.offset = 0;
1944 1.1 joerg
1945 1.1 joerg free(rec->machine);
1946 1.1 joerg rec->machine = NULL;
1947 1.1 joerg
1948 1.1 joerg free(rec->links);
1949 1.1 joerg rec->links = NULL;
1950 1.1 joerg
1951 1.1 joerg free(rec->file_path);
1952 1.1 joerg rec->file_path = NULL;
1953 1.1 joerg
1954 1.1 joerg free(rec->name);
1955 1.1 joerg rec->name = NULL;
1956 1.1 joerg
1957 1.1 joerg free(rec->name_desc);
1958 1.1 joerg rec->name_desc = NULL;
1959 1.1 joerg
1960 1.1 joerg free(rec->md5_hash);
1961 1.1 joerg rec->md5_hash = NULL;
1962 1.37 christos
1963 1.37 christos free(rec->section);
1964 1.37 christos rec->section = NULL;
1965 1.1 joerg }
1966 1.1 joerg
1967 1.1 joerg /*
1968 1.1 joerg * init_secbuffs--
1969 1.1 joerg * Sets the value of buflen for all the sec_buff field of rec. And then
1970 1.1 joerg * allocate memory to each sec_buff member of rec.
1971 1.1 joerg */
1972 1.1 joerg static void
1973 1.1 joerg init_secbuffs(mandb_rec *rec)
1974 1.1 joerg {
1975 1.1 joerg /*
1976 1.1 joerg * Some sec_buff might need more memory, for example desc,
1977 1.1 joerg * which stores the data of the DESCRIPTION section,
1978 1.1 joerg * while some might need very small amount of memory.
1979 1.1 joerg * Therefore explicitly setting the value of buflen field for
1980 1.1 joerg * each sec_buff.
1981 1.1 joerg */
1982 1.1 joerg rec->desc.buflen = 10 * BUFLEN;
1983 1.1 joerg rec->desc.data = emalloc(rec->desc.buflen);
1984 1.1 joerg rec->desc.offset = 0;
1985 1.1 joerg
1986 1.1 joerg rec->lib.buflen = BUFLEN / 2;
1987 1.1 joerg rec->lib.data = emalloc(rec->lib.buflen);
1988 1.1 joerg rec->lib.offset = 0;
1989 1.1 joerg
1990 1.1 joerg rec->return_vals.buflen = BUFLEN;
1991 1.1 joerg rec->return_vals.data = emalloc(rec->return_vals.buflen);
1992 1.1 joerg rec->return_vals.offset = 0;
1993 1.1 joerg
1994 1.1 joerg rec->exit_status.buflen = BUFLEN;
1995 1.1 joerg rec->exit_status.data = emalloc(rec->exit_status.buflen);
1996 1.1 joerg rec->exit_status.offset = 0;
1997 1.1 joerg
1998 1.1 joerg rec->env.buflen = BUFLEN;
1999 1.1 joerg rec->env.data = emalloc(rec->env.buflen);
2000 1.1 joerg rec->env.offset = 0;
2001 1.1 joerg
2002 1.1 joerg rec->files.buflen = BUFLEN;
2003 1.1 joerg rec->files.data = emalloc(rec->files.buflen);
2004 1.1 joerg rec->files.offset = 0;
2005 1.1 joerg
2006 1.1 joerg rec->diagnostics.buflen = BUFLEN;
2007 1.1 joerg rec->diagnostics.data = emalloc(rec->diagnostics.buflen);
2008 1.1 joerg rec->diagnostics.offset = 0;
2009 1.1 joerg
2010 1.1 joerg rec->errors.buflen = BUFLEN;
2011 1.1 joerg rec->errors.data = emalloc(rec->errors.buflen);
2012 1.1 joerg rec->errors.offset = 0;
2013 1.1 joerg }
2014 1.1 joerg
2015 1.1 joerg /*
2016 1.1 joerg * free_secbuffs--
2017 1.1 joerg * This function should be called at the end, when all the pages have been
2018 1.1 joerg * parsed.
2019 1.1 joerg * It frees the memory allocated to sec_buffs by init_secbuffs in the starting.
2020 1.1 joerg */
2021 1.1 joerg static void
2022 1.1 joerg free_secbuffs(mandb_rec *rec)
2023 1.1 joerg {
2024 1.1 joerg free(rec->desc.data);
2025 1.1 joerg free(rec->lib.data);
2026 1.1 joerg free(rec->return_vals.data);
2027 1.1 joerg free(rec->exit_status.data);
2028 1.1 joerg free(rec->env.data);
2029 1.1 joerg free(rec->files.data);
2030 1.1 joerg free(rec->diagnostics.data);
2031 1.1 joerg free(rec->errors.data);
2032 1.1 joerg }
2033 1.1 joerg
2034 1.4 joerg static void
2035 1.4 joerg replace_hyph(char *str)
2036 1.4 joerg {
2037 1.4 joerg char *iter = str;
2038 1.4 joerg while ((iter = strchr(iter, ASCII_HYPH)) != NULL)
2039 1.4 joerg *iter = '-';
2040 1.23 wiz
2041 1.23 wiz iter = str;
2042 1.23 wiz while ((iter = strchr(iter, ASCII_NBRSP)) != NULL)
2043 1.23 wiz *iter = '-';
2044 1.4 joerg }
2045 1.4 joerg
2046 1.1 joerg static char *
2047 1.1 joerg parse_escape(const char *str)
2048 1.1 joerg {
2049 1.1 joerg const char *backslash, *last_backslash;
2050 1.1 joerg char *result, *iter;
2051 1.1 joerg size_t len;
2052 1.1 joerg
2053 1.1 joerg assert(str);
2054 1.1 joerg
2055 1.1 joerg last_backslash = str;
2056 1.1 joerg backslash = strchr(str, '\\');
2057 1.4 joerg if (backslash == NULL) {
2058 1.4 joerg result = estrdup(str);
2059 1.4 joerg replace_hyph(result);
2060 1.4 joerg return result;
2061 1.4 joerg }
2062 1.1 joerg
2063 1.1 joerg result = emalloc(strlen(str) + 1);
2064 1.1 joerg iter = result;
2065 1.1 joerg
2066 1.1 joerg do {
2067 1.1 joerg len = backslash - last_backslash;
2068 1.1 joerg memcpy(iter, last_backslash, len);
2069 1.1 joerg iter += len;
2070 1.1 joerg if (backslash[1] == '-' || backslash[1] == ' ') {
2071 1.1 joerg *iter++ = backslash[1];
2072 1.1 joerg last_backslash = backslash + 2;
2073 1.38 abhinav backslash = strchr(last_backslash, '\\');
2074 1.1 joerg } else {
2075 1.1 joerg ++backslash;
2076 1.1 joerg mandoc_escape(&backslash, NULL, NULL);
2077 1.1 joerg last_backslash = backslash;
2078 1.1 joerg if (backslash == NULL)
2079 1.1 joerg break;
2080 1.1 joerg backslash = strchr(last_backslash, '\\');
2081 1.1 joerg }
2082 1.1 joerg } while (backslash != NULL);
2083 1.1 joerg if (last_backslash != NULL)
2084 1.1 joerg strcpy(iter, last_backslash);
2085 1.18 christos
2086 1.4 joerg replace_hyph(result);
2087 1.1 joerg return result;
2088 1.1 joerg }
2089 1.1 joerg
2090 1.1 joerg /*
2091 1.1 joerg * append--
2092 1.1 joerg * Concatenates a space and src at the end of sbuff->data (much like concat in
2093 1.1 joerg * apropos-utils.c).
2094 1.1 joerg * Rather than reallocating space for writing data, it uses the value of the
2095 1.1 joerg * offset field of sec_buff to write new data at the free space left in the
2096 1.1 joerg * buffer.
2097 1.1 joerg * In case the size of the data to be appended exceeds the number of bytes left
2098 1.1 joerg * in the buffer, it reallocates buflen number of bytes and then continues.
2099 1.1 joerg * Value of offset field should be adjusted as new data is written.
2100 1.1 joerg *
2101 1.1 joerg * NOTE: This function does not write the null byte at the end of the buffers,
2102 1.1 joerg * write a null byte at the position pointed to by offset before inserting data
2103 1.1 joerg * in the db.
2104 1.1 joerg */
2105 1.1 joerg static void
2106 1.1 joerg append(secbuff *sbuff, const char *src)
2107 1.1 joerg {
2108 1.1 joerg short flag = 0;
2109 1.1 joerg size_t srclen, newlen;
2110 1.1 joerg char *temp;
2111 1.1 joerg
2112 1.1 joerg assert(src != NULL);
2113 1.1 joerg temp = parse_escape(src);
2114 1.1 joerg srclen = strlen(temp);
2115 1.1 joerg
2116 1.1 joerg if (sbuff->data == NULL) {
2117 1.1 joerg sbuff->data = emalloc(sbuff->buflen);
2118 1.1 joerg sbuff->offset = 0;
2119 1.1 joerg }
2120 1.1 joerg
2121 1.1 joerg newlen = sbuff->offset + srclen + 2;
2122 1.1 joerg if (newlen >= sbuff->buflen) {
2123 1.1 joerg while (sbuff->buflen < newlen)
2124 1.1 joerg sbuff->buflen += sbuff->buflen;
2125 1.1 joerg sbuff->data = erealloc(sbuff->data, sbuff->buflen);
2126 1.1 joerg flag = 1;
2127 1.1 joerg }
2128 1.1 joerg
2129 1.1 joerg /* Append a space at the end of the buffer. */
2130 1.1 joerg if (sbuff->offset || flag)
2131 1.1 joerg sbuff->data[sbuff->offset++] = ' ';
2132 1.1 joerg /* Now, copy src at the end of the buffer. */
2133 1.1 joerg memcpy(sbuff->data + sbuff->offset, temp, srclen);
2134 1.1 joerg sbuff->offset += srclen;
2135 1.1 joerg free(temp);
2136 1.1 joerg }
2137 1.1 joerg
2138 1.1 joerg static void
2139 1.1 joerg usage(void)
2140 1.1 joerg {
2141 1.13 wiz fprintf(stderr, "Usage: %s [-floQqv] [-C path]\n", getprogname());
2142 1.1 joerg exit(1);
2143 1.1 joerg }
2144