apropos-utils.c revision 1.38 1 1.38 abhinav /* $NetBSD: apropos-utils.c,v 1.38 2017/06/18 16:24:10 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 * All rights reserved.
5 1.1 joerg *
6 1.1 joerg * This code was developed as part of Google's Summer of Code 2011 program.
7 1.1 joerg *
8 1.1 joerg * Redistribution and use in source and binary forms, with or without
9 1.1 joerg * modification, are permitted provided that the following conditions
10 1.1 joerg * are met:
11 1.1 joerg *
12 1.1 joerg * 1. Redistributions of source code must retain the above copyright
13 1.1 joerg * notice, this list of conditions and the following disclaimer.
14 1.1 joerg * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 joerg * notice, this list of conditions and the following disclaimer in
16 1.1 joerg * the documentation and/or other materials provided with the
17 1.1 joerg * distribution.
18 1.1 joerg *
19 1.1 joerg * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
20 1.1 joerg * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
21 1.1 joerg * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
22 1.1 joerg * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
23 1.1 joerg * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
24 1.1 joerg * INCIDENTAL, SPECIAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING,
25 1.1 joerg * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
26 1.1 joerg * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
27 1.1 joerg * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
28 1.1 joerg * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
29 1.1 joerg * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 1.1 joerg * SUCH DAMAGE.
31 1.1 joerg */
32 1.1 joerg
33 1.1 joerg #include <sys/cdefs.h>
34 1.38 abhinav __RCSID("$NetBSD: apropos-utils.c,v 1.38 2017/06/18 16:24:10 abhinav Exp $");
35 1.1 joerg
36 1.7 wiz #include <sys/queue.h>
37 1.1 joerg #include <sys/stat.h>
38 1.1 joerg
39 1.1 joerg #include <assert.h>
40 1.1 joerg #include <ctype.h>
41 1.1 joerg #include <err.h>
42 1.1 joerg #include <math.h>
43 1.1 joerg #include <stdio.h>
44 1.1 joerg #include <stdlib.h>
45 1.1 joerg #include <string.h>
46 1.1 joerg #include <util.h>
47 1.1 joerg #include <zlib.h>
48 1.9 christos #include <term.h>
49 1.30 kamil #include <unistd.h>
50 1.9 christos #undef tab // XXX: manconf.h
51 1.1 joerg
52 1.1 joerg #include "apropos-utils.h"
53 1.38 abhinav #include "custom_apropos_tokenizer.h"
54 1.7 wiz #include "manconf.h"
55 1.38 abhinav #include "fts3_tokenizer.h"
56 1.1 joerg
57 1.1 joerg typedef struct orig_callback_data {
58 1.1 joerg void *data;
59 1.1 joerg int (*callback) (void *, const char *, const char *, const char *,
60 1.1 joerg const char *, size_t);
61 1.1 joerg } orig_callback_data;
62 1.1 joerg
63 1.1 joerg typedef struct inverse_document_frequency {
64 1.1 joerg double value;
65 1.1 joerg int status;
66 1.1 joerg } inverse_document_frequency;
67 1.1 joerg
68 1.1 joerg /* weights for individual columns */
69 1.1 joerg static const double col_weights[] = {
70 1.1 joerg 2.0, // NAME
71 1.1 joerg 2.00, // Name-description
72 1.1 joerg 0.55, // DESCRIPTION
73 1.1 joerg 0.10, // LIBRARY
74 1.1 joerg 0.001, //RETURN VALUES
75 1.1 joerg 0.20, //ENVIRONMENT
76 1.1 joerg 0.01, //FILES
77 1.1 joerg 0.001, //EXIT STATUS
78 1.1 joerg 2.00, //DIAGNOSTICS
79 1.1 joerg 0.05, //ERRORS
80 1.1 joerg 0.00, //md5_hash
81 1.1 joerg 1.00 //machine
82 1.1 joerg };
83 1.1 joerg
84 1.38 abhinav static int
85 1.38 abhinav register_tokenizer(sqlite3 *db)
86 1.38 abhinav {
87 1.38 abhinav int rc;
88 1.38 abhinav sqlite3_stmt *stmt;
89 1.38 abhinav const sqlite3_tokenizer_module *p;
90 1.38 abhinav const char *name = "custom_apropos_tokenizer";
91 1.38 abhinav get_custom_apropos_tokenizer(&p);
92 1.38 abhinav const char *sql = "SELECT fts3_tokenizer(?, ?)";
93 1.38 abhinav
94 1.38 abhinav sqlite3_db_config(db, SQLITE_DBCONFIG_ENABLE_FTS3_TOKENIZER, 1, 0);
95 1.38 abhinav rc = sqlite3_prepare_v2(db, sql, -1, &stmt, 0);
96 1.38 abhinav if (rc != SQLITE_OK)
97 1.38 abhinav return rc;
98 1.38 abhinav
99 1.38 abhinav sqlite3_bind_text(stmt, 1, name, -1, SQLITE_STATIC);
100 1.38 abhinav sqlite3_bind_blob(stmt, 2, &p, sizeof(p), SQLITE_STATIC);
101 1.38 abhinav sqlite3_step(stmt);
102 1.38 abhinav
103 1.38 abhinav return sqlite3_finalize(stmt);
104 1.38 abhinav }
105 1.38 abhinav
106 1.1 joerg /*
107 1.1 joerg * lower --
108 1.1 joerg * Converts the string str to lower case
109 1.1 joerg */
110 1.1 joerg char *
111 1.1 joerg lower(char *str)
112 1.1 joerg {
113 1.1 joerg assert(str);
114 1.1 joerg int i = 0;
115 1.1 joerg char c;
116 1.36 abhinav while ((c = str[i]) != '\0')
117 1.36 abhinav str[i++] = tolower((unsigned char) c);
118 1.1 joerg return str;
119 1.1 joerg }
120 1.1 joerg
121 1.1 joerg /*
122 1.1 joerg * concat--
123 1.10 christos * Utility function. Concatenates together: dst, a space character and src.
124 1.10 christos * dst + " " + src
125 1.1 joerg */
126 1.1 joerg void
127 1.1 joerg concat(char **dst, const char *src)
128 1.1 joerg {
129 1.1 joerg concat2(dst, src, strlen(src));
130 1.1 joerg }
131 1.1 joerg
132 1.1 joerg void
133 1.1 joerg concat2(char **dst, const char *src, size_t srclen)
134 1.1 joerg {
135 1.27 abhinav size_t totallen, dstlen;
136 1.35 abhinav char *mydst = *dst;
137 1.1 joerg assert(src != NULL);
138 1.1 joerg
139 1.24 christos /*
140 1.24 christos * If destination buffer dst is NULL, then simply
141 1.24 christos * strdup the source buffer
142 1.24 christos */
143 1.35 abhinav if (mydst == NULL) {
144 1.35 abhinav mydst = estrndup(src, srclen);
145 1.35 abhinav *dst = mydst;
146 1.1 joerg return;
147 1.1 joerg }
148 1.1 joerg
149 1.35 abhinav dstlen = strlen(mydst);
150 1.1 joerg /*
151 1.1 joerg * NUL Byte and separator space
152 1.1 joerg */
153 1.27 abhinav totallen = dstlen + srclen + 2;
154 1.1 joerg
155 1.35 abhinav mydst = erealloc(mydst, totallen);
156 1.1 joerg
157 1.1 joerg /* Append a space at the end of dst */
158 1.35 abhinav mydst[dstlen++] = ' ';
159 1.1 joerg
160 1.10 christos /* Now, copy src at the end of dst */
161 1.35 abhinav memcpy(mydst + dstlen, src, srclen);
162 1.35 abhinav mydst[dstlen + srclen] = '\0';
163 1.35 abhinav *dst = mydst;
164 1.1 joerg }
165 1.1 joerg
166 1.1 joerg void
167 1.1 joerg close_db(sqlite3 *db)
168 1.1 joerg {
169 1.1 joerg sqlite3_close(db);
170 1.1 joerg sqlite3_shutdown();
171 1.1 joerg }
172 1.1 joerg
173 1.1 joerg /*
174 1.1 joerg * create_db --
175 1.1 joerg * Creates the database schema.
176 1.1 joerg */
177 1.1 joerg static int
178 1.1 joerg create_db(sqlite3 *db)
179 1.1 joerg {
180 1.1 joerg const char *sqlstr = NULL;
181 1.1 joerg char *schemasql;
182 1.1 joerg char *errmsg = NULL;
183 1.10 christos
184 1.1 joerg /*------------------------ Create the tables------------------------------*/
185 1.1 joerg
186 1.1 joerg #if NOTYET
187 1.1 joerg sqlite3_exec(db, "PRAGMA journal_mode = WAL", NULL, NULL, NULL);
188 1.1 joerg #else
189 1.1 joerg sqlite3_exec(db, "PRAGMA journal_mode = DELETE", NULL, NULL, NULL);
190 1.1 joerg #endif
191 1.1 joerg
192 1.1 joerg schemasql = sqlite3_mprintf("PRAGMA user_version = %d",
193 1.1 joerg APROPOS_SCHEMA_VERSION);
194 1.1 joerg sqlite3_exec(db, schemasql, NULL, NULL, &errmsg);
195 1.1 joerg if (errmsg != NULL)
196 1.1 joerg goto out;
197 1.1 joerg sqlite3_free(schemasql);
198 1.1 joerg
199 1.24 christos sqlstr =
200 1.24 christos //mandb
201 1.24 christos "CREATE VIRTUAL TABLE mandb USING fts4(section, name, "
202 1.24 christos "name_desc, desc, lib, return_vals, env, files, "
203 1.24 christos "exit_status, diagnostics, errors, md5_hash UNIQUE, machine, "
204 1.32 abhinav #ifndef DEBUG
205 1.32 abhinav "compress=zip, uncompress=unzip, "
206 1.32 abhinav #endif
207 1.38 abhinav "tokenize=custom_apropos_tokenizer, notindexed=section, notindexed=md5_hash); "
208 1.24 christos //mandb_meta
209 1.24 christos "CREATE TABLE IF NOT EXISTS mandb_meta(device, inode, mtime, "
210 1.24 christos "file UNIQUE, md5_hash UNIQUE, id INTEGER PRIMARY KEY); "
211 1.24 christos //mandb_links
212 1.31 abhinav "CREATE TABLE IF NOT EXISTS mandb_links(link COLLATE NOCASE, target, section, "
213 1.24 christos "machine, md5_hash); ";
214 1.1 joerg
215 1.1 joerg sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
216 1.1 joerg if (errmsg != NULL)
217 1.1 joerg goto out;
218 1.1 joerg
219 1.24 christos sqlstr =
220 1.24 christos "CREATE INDEX IF NOT EXISTS index_mandb_links ON mandb_links "
221 1.24 christos "(link); "
222 1.24 christos "CREATE INDEX IF NOT EXISTS index_mandb_meta_dev ON mandb_meta "
223 1.24 christos "(device, inode); "
224 1.24 christos "CREATE INDEX IF NOT EXISTS index_mandb_links_md5 ON mandb_links "
225 1.24 christos "(md5_hash);";
226 1.1 joerg sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
227 1.1 joerg if (errmsg != NULL)
228 1.1 joerg goto out;
229 1.1 joerg return 0;
230 1.1 joerg
231 1.1 joerg out:
232 1.1 joerg warnx("%s", errmsg);
233 1.1 joerg free(errmsg);
234 1.1 joerg sqlite3_close(db);
235 1.1 joerg sqlite3_shutdown();
236 1.1 joerg return -1;
237 1.1 joerg }
238 1.1 joerg
239 1.1 joerg /*
240 1.1 joerg * zip --
241 1.1 joerg * User defined Sqlite function to compress the FTS table
242 1.1 joerg */
243 1.1 joerg static void
244 1.1 joerg zip(sqlite3_context *pctx, int nval, sqlite3_value **apval)
245 1.10 christos {
246 1.1 joerg int nin;
247 1.1 joerg long int nout;
248 1.1 joerg const unsigned char * inbuf;
249 1.1 joerg unsigned char *outbuf;
250 1.1 joerg
251 1.1 joerg assert(nval == 1);
252 1.1 joerg nin = sqlite3_value_bytes(apval[0]);
253 1.1 joerg inbuf = (const unsigned char *) sqlite3_value_blob(apval[0]);
254 1.1 joerg nout = nin + 13 + (nin + 999) / 1000;
255 1.1 joerg outbuf = emalloc(nout);
256 1.1 joerg compress(outbuf, (unsigned long *) &nout, inbuf, nin);
257 1.1 joerg sqlite3_result_blob(pctx, outbuf, nout, free);
258 1.1 joerg }
259 1.1 joerg
260 1.1 joerg /*
261 1.1 joerg * unzip --
262 1.1 joerg * User defined Sqlite function to uncompress the FTS table.
263 1.1 joerg */
264 1.1 joerg static void
265 1.1 joerg unzip(sqlite3_context *pctx, int nval, sqlite3_value **apval)
266 1.1 joerg {
267 1.1 joerg unsigned int rc;
268 1.1 joerg unsigned char *outbuf;
269 1.1 joerg z_stream stream;
270 1.1 joerg
271 1.1 joerg assert(nval == 1);
272 1.1 joerg stream.next_in = __UNCONST(sqlite3_value_blob(apval[0]));
273 1.1 joerg stream.avail_in = sqlite3_value_bytes(apval[0]);
274 1.1 joerg stream.avail_out = stream.avail_in * 2 + 100;
275 1.1 joerg stream.next_out = outbuf = emalloc(stream.avail_out);
276 1.1 joerg stream.zalloc = NULL;
277 1.1 joerg stream.zfree = NULL;
278 1.1 joerg
279 1.1 joerg if (inflateInit(&stream) != Z_OK) {
280 1.1 joerg free(outbuf);
281 1.1 joerg return;
282 1.1 joerg }
283 1.1 joerg
284 1.1 joerg while ((rc = inflate(&stream, Z_SYNC_FLUSH)) != Z_STREAM_END) {
285 1.1 joerg if (rc != Z_OK ||
286 1.1 joerg (stream.avail_out != 0 && stream.avail_in == 0)) {
287 1.1 joerg free(outbuf);
288 1.1 joerg return;
289 1.1 joerg }
290 1.1 joerg outbuf = erealloc(outbuf, stream.total_out * 2);
291 1.1 joerg stream.next_out = outbuf + stream.total_out;
292 1.1 joerg stream.avail_out = stream.total_out;
293 1.1 joerg }
294 1.1 joerg if (inflateEnd(&stream) != Z_OK) {
295 1.1 joerg free(outbuf);
296 1.1 joerg return;
297 1.1 joerg }
298 1.1 joerg outbuf = erealloc(outbuf, stream.total_out);
299 1.24 christos sqlite3_result_text(pctx, (const char *)outbuf, stream.total_out, free);
300 1.1 joerg }
301 1.1 joerg
302 1.7 wiz /*
303 1.7 wiz * get_dbpath --
304 1.7 wiz * Read the path of the database from man.conf and return.
305 1.7 wiz */
306 1.7 wiz char *
307 1.7 wiz get_dbpath(const char *manconf)
308 1.7 wiz {
309 1.7 wiz TAG *tp;
310 1.7 wiz char *dbpath;
311 1.7 wiz
312 1.7 wiz config(manconf);
313 1.7 wiz tp = gettag("_mandb", 1);
314 1.7 wiz if (!tp)
315 1.7 wiz return NULL;
316 1.10 christos
317 1.7 wiz if (TAILQ_EMPTY(&tp->entrylist))
318 1.7 wiz return NULL;
319 1.7 wiz
320 1.7 wiz dbpath = TAILQ_LAST(&tp->entrylist, tqh)->s;
321 1.7 wiz return dbpath;
322 1.7 wiz }
323 1.7 wiz
324 1.1 joerg /* init_db --
325 1.1 joerg * Prepare the database. Register the compress/uncompress functions and the
326 1.1 joerg * stopword tokenizer.
327 1.10 christos * db_flag specifies the mode in which to open the database. 3 options are
328 1.1 joerg * available:
329 1.1 joerg * 1. DB_READONLY: Open in READONLY mode. An error if db does not exist.
330 1.1 joerg * 2. DB_READWRITE: Open in read-write mode. An error if db does not exist.
331 1.1 joerg * 3. DB_CREATE: Open in read-write mode. It will try to create the db if
332 1.1 joerg * it does not exist already.
333 1.1 joerg * RETURN VALUES:
334 1.24 christos * The function will return NULL in case the db does not exist
335 1.24 christos * and DB_CREATE
336 1.10 christos * was not specified. And in case DB_CREATE was specified and yet NULL is
337 1.1 joerg * returned, then there was some other error.
338 1.1 joerg * In normal cases the function should return a handle to the db.
339 1.1 joerg */
340 1.1 joerg sqlite3 *
341 1.23 christos init_db(mandb_access_mode db_flag, const char *manconf)
342 1.1 joerg {
343 1.1 joerg sqlite3 *db = NULL;
344 1.1 joerg sqlite3_stmt *stmt;
345 1.1 joerg struct stat sb;
346 1.1 joerg int rc;
347 1.1 joerg int create_db_flag = 0;
348 1.1 joerg
349 1.7 wiz char *dbpath = get_dbpath(manconf);
350 1.7 wiz if (dbpath == NULL)
351 1.7 wiz errx(EXIT_FAILURE, "_mandb entry not found in man.conf");
352 1.23 christos
353 1.7 wiz if (!(stat(dbpath, &sb) == 0 && S_ISREG(sb.st_mode))) {
354 1.23 christos /* Database does not exist, check if DB_CREATE was specified,
355 1.23 christos * and set flag to create the database schema
356 1.1 joerg */
357 1.1 joerg if (db_flag != (MANDB_CREATE)) {
358 1.1 joerg warnx("Missing apropos database. "
359 1.1 joerg "Please run makemandb to create it.");
360 1.1 joerg return NULL;
361 1.1 joerg }
362 1.1 joerg create_db_flag = 1;
363 1.23 christos } else {
364 1.23 christos /*
365 1.23 christos * Database exists. Check if we have the permissions
366 1.23 christos * to read/write the files
367 1.23 christos */
368 1.23 christos int access_mode = R_OK;
369 1.25 christos switch (db_flag) {
370 1.23 christos case MANDB_CREATE:
371 1.23 christos case MANDB_WRITE:
372 1.23 christos access_mode |= W_OK;
373 1.23 christos break;
374 1.23 christos default:
375 1.23 christos break;
376 1.23 christos }
377 1.23 christos if ((access(dbpath, access_mode)) != 0) {
378 1.23 christos warnx("Unable to access the database, please check"
379 1.23 christos " permissions for `%s'", dbpath);
380 1.23 christos return NULL;
381 1.23 christos }
382 1.1 joerg }
383 1.1 joerg
384 1.1 joerg sqlite3_initialize();
385 1.7 wiz rc = sqlite3_open_v2(dbpath, &db, db_flag, NULL);
386 1.10 christos
387 1.1 joerg if (rc != SQLITE_OK) {
388 1.1 joerg warnx("%s", sqlite3_errmsg(db));
389 1.23 christos goto error;
390 1.1 joerg }
391 1.1 joerg
392 1.38 abhinav sqlite3_extended_result_codes(db, 1);
393 1.38 abhinav
394 1.38 abhinav rc = register_tokenizer(db);
395 1.38 abhinav if (rc != SQLITE_OK) {
396 1.38 abhinav warnx("Unable to register custom tokenizer: %s", sqlite3_errmsg(db));
397 1.38 abhinav goto error;
398 1.38 abhinav }
399 1.38 abhinav
400 1.1 joerg if (create_db_flag && create_db(db) < 0) {
401 1.1 joerg warnx("%s", "Unable to create database schema");
402 1.1 joerg goto error;
403 1.1 joerg }
404 1.1 joerg
405 1.1 joerg rc = sqlite3_prepare_v2(db, "PRAGMA user_version", -1, &stmt, NULL);
406 1.1 joerg if (rc != SQLITE_OK) {
407 1.3 apb warnx("Unable to query schema version: %s",
408 1.3 apb sqlite3_errmsg(db));
409 1.1 joerg goto error;
410 1.1 joerg }
411 1.1 joerg if (sqlite3_step(stmt) != SQLITE_ROW) {
412 1.1 joerg sqlite3_finalize(stmt);
413 1.3 apb warnx("Unable to query schema version: %s",
414 1.3 apb sqlite3_errmsg(db));
415 1.1 joerg goto error;
416 1.1 joerg }
417 1.1 joerg if (sqlite3_column_int(stmt, 0) != APROPOS_SCHEMA_VERSION) {
418 1.1 joerg sqlite3_finalize(stmt);
419 1.1 joerg warnx("Incorrect schema version found. "
420 1.1 joerg "Please run makemandb -f.");
421 1.1 joerg goto error;
422 1.1 joerg }
423 1.1 joerg sqlite3_finalize(stmt);
424 1.1 joerg
425 1.10 christos
426 1.1 joerg /* Register the zip and unzip functions for FTS compression */
427 1.24 christos rc = sqlite3_create_function(db, "zip", 1, SQLITE_ANY, NULL, zip,
428 1.24 christos NULL, NULL);
429 1.1 joerg if (rc != SQLITE_OK) {
430 1.3 apb warnx("Unable to register function: compress: %s",
431 1.3 apb sqlite3_errmsg(db));
432 1.1 joerg goto error;
433 1.1 joerg }
434 1.1 joerg
435 1.10 christos rc = sqlite3_create_function(db, "unzip", 1, SQLITE_ANY, NULL,
436 1.1 joerg unzip, NULL, NULL);
437 1.1 joerg if (rc != SQLITE_OK) {
438 1.3 apb warnx("Unable to register function: uncompress: %s",
439 1.3 apb sqlite3_errmsg(db));
440 1.1 joerg goto error;
441 1.1 joerg }
442 1.1 joerg return db;
443 1.7 wiz
444 1.1 joerg error:
445 1.23 christos close_db(db);
446 1.1 joerg return NULL;
447 1.1 joerg }
448 1.1 joerg
449 1.1 joerg /*
450 1.1 joerg * rank_func --
451 1.1 joerg * Sqlite user defined function for ranking the documents.
452 1.1 joerg * For each phrase of the query, it computes the tf and idf and adds them over.
453 1.1 joerg * It computes the final rank, by multiplying tf and idf together.
454 1.10 christos * Weight of term t for document d = (term frequency of t in d *
455 1.10 christos * inverse document frequency of t)
456 1.1 joerg *
457 1.10 christos * Term Frequency of term t in document d = Number of times t occurs in d /
458 1.24 christos * Number of times t appears in all documents
459 1.1 joerg *
460 1.10 christos * Inverse document frequency of t = log(Total number of documents /
461 1.1 joerg * Number of documents in which t occurs)
462 1.1 joerg */
463 1.1 joerg static void
464 1.1 joerg rank_func(sqlite3_context *pctx, int nval, sqlite3_value **apval)
465 1.1 joerg {
466 1.1 joerg inverse_document_frequency *idf = sqlite3_user_data(pctx);
467 1.1 joerg double tf = 0.0;
468 1.1 joerg const unsigned int *matchinfo;
469 1.1 joerg int ncol;
470 1.1 joerg int nphrase;
471 1.1 joerg int iphrase;
472 1.1 joerg int ndoc;
473 1.1 joerg int doclen = 0;
474 1.1 joerg const double k = 3.75;
475 1.24 christos /*
476 1.24 christos * Check that the number of arguments passed to this
477 1.24 christos * function is correct.
478 1.24 christos */
479 1.1 joerg assert(nval == 1);
480 1.1 joerg
481 1.1 joerg matchinfo = (const unsigned int *) sqlite3_value_blob(apval[0]);
482 1.1 joerg nphrase = matchinfo[0];
483 1.1 joerg ncol = matchinfo[1];
484 1.1 joerg ndoc = matchinfo[2 + 3 * ncol * nphrase + ncol];
485 1.1 joerg for (iphrase = 0; iphrase < nphrase; iphrase++) {
486 1.1 joerg int icol;
487 1.24 christos const unsigned int *phraseinfo =
488 1.24 christos &matchinfo[2 + ncol + iphrase * ncol * 3];
489 1.1 joerg for(icol = 1; icol < ncol; icol++) {
490 1.10 christos
491 1.24 christos /* nhitcount: number of times the current phrase occurs
492 1.24 christos * in the current column in the current document.
493 1.24 christos * nglobalhitcount: number of times current phrase
494 1.24 christos * occurs in the current column in all documents.
495 1.24 christos * ndocshitcount: number of documents in which the
496 1.24 christos * current phrase occurs in the current column at
497 1.24 christos * least once.
498 1.1 joerg */
499 1.1 joerg int nhitcount = phraseinfo[3 * icol];
500 1.1 joerg int nglobalhitcount = phraseinfo[3 * icol + 1];
501 1.1 joerg int ndocshitcount = phraseinfo[3 * icol + 2];
502 1.1 joerg doclen = matchinfo[2 + icol ];
503 1.1 joerg double weight = col_weights[icol - 1];
504 1.1 joerg if (idf->status == 0 && ndocshitcount)
505 1.24 christos idf->value +=
506 1.24 christos log(((double)ndoc / ndocshitcount))* weight;
507 1.1 joerg
508 1.24 christos /*
509 1.24 christos * Dividing the tf by document length to normalize
510 1.24 christos * the effect of longer documents.
511 1.1 joerg */
512 1.1 joerg if (nglobalhitcount > 0 && nhitcount)
513 1.24 christos tf += (((double)nhitcount * weight)
514 1.24 christos / (nglobalhitcount * doclen));
515 1.1 joerg }
516 1.1 joerg }
517 1.1 joerg idf->status = 1;
518 1.10 christos
519 1.24 christos /*
520 1.24 christos * Final score: Dividing by k + tf further normalizes the weight
521 1.24 christos * leading to better results. The value of k is experimental
522 1.1 joerg */
523 1.24 christos double score = (tf * idf->value) / (k + tf);
524 1.1 joerg sqlite3_result_double(pctx, score);
525 1.1 joerg return;
526 1.1 joerg }
527 1.1 joerg
528 1.1 joerg /*
529 1.26 abhinav * generates sql query for matching the user entered query
530 1.1 joerg */
531 1.26 abhinav static char *
532 1.26 abhinav generate_search_query(query_args *args, const char *snippet_args[3])
533 1.1 joerg {
534 1.1 joerg const char *default_snippet_args[3];
535 1.1 joerg char *section_clause = NULL;
536 1.1 joerg char *limit_clause = NULL;
537 1.1 joerg char *machine_clause = NULL;
538 1.33 abhinav char *query = NULL;
539 1.1 joerg
540 1.33 abhinav if (args->machine) {
541 1.33 abhinav machine_clause = sqlite3_mprintf("AND mandb.machine=%Q", args->machine);
542 1.33 abhinav if (machine_clause == NULL)
543 1.33 abhinav goto RETURN;
544 1.33 abhinav }
545 1.1 joerg
546 1.33 abhinav if (args->nrec >= 0) {
547 1.33 abhinav /* Use the provided number of records and offset */
548 1.33 abhinav limit_clause = sqlite3_mprintf(" LIMIT %d OFFSET %d",
549 1.33 abhinav args->nrec, args->offset);
550 1.33 abhinav if (limit_clause == NULL)
551 1.33 abhinav goto RETURN;
552 1.33 abhinav }
553 1.10 christos
554 1.1 joerg /* We want to build a query of the form: "select x,y,z from mandb where
555 1.34 abhinav * mandb match :query [AND (section IN ('1', '2')]
556 1.34 abhinav * ORDER BY rank DESC [LIMIT 10 OFFSET 0]"
557 1.24 christos * NOTES:
558 1.34 abhinav * 1. The portion in first pair of square brackets is optional.
559 1.34 abhinav * It will be there only if the user has specified an option
560 1.24 christos * to search in one or more specific sections.
561 1.34 abhinav * 2. The LIMIT portion will be there if the user has specified
562 1.34 abhinav * a limit using the -n option.
563 1.1 joerg */
564 1.37 abhinav if (args->sections && args->sections[0]) {
565 1.37 abhinav concat(§ion_clause, " AND mandb.section IN (");
566 1.37 abhinav for (size_t i = 0; args->sections[i]; i++) {
567 1.37 abhinav char *temp;
568 1.37 abhinav char c = args->sections[i + 1]? ',': ')';
569 1.37 abhinav if ((temp = sqlite3_mprintf("%Q%c", args->sections[i], c)) == NULL)
570 1.37 abhinav goto RETURN;
571 1.37 abhinav concat(§ion_clause, temp);
572 1.1 joerg free(temp);
573 1.1 joerg }
574 1.1 joerg }
575 1.26 abhinav
576 1.1 joerg if (snippet_args == NULL) {
577 1.1 joerg default_snippet_args[0] = "";
578 1.1 joerg default_snippet_args[1] = "";
579 1.1 joerg default_snippet_args[2] = "...";
580 1.1 joerg snippet_args = default_snippet_args;
581 1.1 joerg }
582 1.26 abhinav
583 1.12 christos if (args->legacy) {
584 1.13 christos char *wild;
585 1.13 christos easprintf(&wild, "%%%s%%", args->search_str);
586 1.26 abhinav query = sqlite3_mprintf("SELECT section, name, name_desc, machine"
587 1.12 christos " FROM mandb"
588 1.13 christos " WHERE name LIKE %Q OR name_desc LIKE %Q "
589 1.12 christos "%s"
590 1.12 christos "%s",
591 1.20 christos wild, wild,
592 1.12 christos section_clause ? section_clause : "",
593 1.12 christos limit_clause ? limit_clause : "");
594 1.13 christos free(wild);
595 1.31 abhinav } else if (strchr(args->search_str, ' ') == NULL) {
596 1.31 abhinav /*
597 1.31 abhinav * If it's a single word query, we want to search in the
598 1.31 abhinav * links table as well. If the link table contains an entry
599 1.31 abhinav * for the queried keyword, we want to use that as the name of
600 1.31 abhinav * the man page.
601 1.31 abhinav * For example, for `apropos realloc` the output should be
602 1.31 abhinav * realloc(3) and not malloc(3).
603 1.31 abhinav */
604 1.31 abhinav query = sqlite3_mprintf(
605 1.31 abhinav "SELECT section, name, name_desc, machine,"
606 1.31 abhinav " snippet(mandb, %Q, %Q, %Q, -1, 40 ),"
607 1.31 abhinav " rank_func(matchinfo(mandb, \"pclxn\")) AS rank"
608 1.31 abhinav " FROM mandb WHERE name NOT IN ("
609 1.31 abhinav " SELECT target FROM mandb_links WHERE link=%Q AND"
610 1.31 abhinav " mandb_links.section=mandb.section) AND mandb MATCH %Q %s %s"
611 1.31 abhinav " UNION"
612 1.31 abhinav " SELECT mandb.section, mandb_links.link AS name, mandb.name_desc,"
613 1.31 abhinav " mandb.machine, '' AS snippet, 100.00 AS rank"
614 1.31 abhinav " FROM mandb JOIN mandb_links ON mandb.name=mandb_links.target and"
615 1.31 abhinav " mandb.section=mandb_links.section WHERE mandb_links.link=%Q"
616 1.31 abhinav " %s %s"
617 1.31 abhinav " ORDER BY rank DESC %s",
618 1.31 abhinav snippet_args[0], snippet_args[1], snippet_args[2],
619 1.31 abhinav args->search_str, args->search_str, section_clause ? section_clause : "",
620 1.31 abhinav machine_clause ? machine_clause : "", args->search_str,
621 1.31 abhinav machine_clause ? machine_clause : "",
622 1.31 abhinav section_clause ? section_clause : "",
623 1.31 abhinav limit_clause ? limit_clause : "");
624 1.12 christos } else {
625 1.12 christos query = sqlite3_mprintf("SELECT section, name, name_desc, machine,"
626 1.12 christos " snippet(mandb, %Q, %Q, %Q, -1, 40 ),"
627 1.12 christos " rank_func(matchinfo(mandb, \"pclxn\")) AS rank"
628 1.12 christos " FROM mandb"
629 1.12 christos " WHERE mandb MATCH %Q %s "
630 1.12 christos "%s"
631 1.12 christos " ORDER BY rank DESC"
632 1.12 christos "%s",
633 1.12 christos snippet_args[0], snippet_args[1], snippet_args[2],
634 1.12 christos args->search_str, machine_clause ? machine_clause : "",
635 1.12 christos section_clause ? section_clause : "",
636 1.12 christos limit_clause ? limit_clause : "");
637 1.12 christos }
638 1.1 joerg
639 1.33 abhinav RETURN:
640 1.1 joerg free(machine_clause);
641 1.1 joerg free(section_clause);
642 1.1 joerg free(limit_clause);
643 1.26 abhinav return query;
644 1.26 abhinav }
645 1.26 abhinav
646 1.26 abhinav /*
647 1.26 abhinav * Execute the full text search query and return the number of results
648 1.26 abhinav * obtained.
649 1.26 abhinav */
650 1.26 abhinav static unsigned int
651 1.26 abhinav execute_search_query(sqlite3 *db, char *query, query_args *args)
652 1.26 abhinav {
653 1.26 abhinav sqlite3_stmt *stmt;
654 1.26 abhinav const char *section;
655 1.26 abhinav char *name;
656 1.26 abhinav char *slash_ptr;
657 1.26 abhinav const char *name_desc;
658 1.26 abhinav const char *machine;
659 1.26 abhinav const char *snippet = "";
660 1.26 abhinav const char *name_temp;
661 1.26 abhinav char *m = NULL;
662 1.26 abhinav int rc;
663 1.26 abhinav inverse_document_frequency idf = {0, 0};
664 1.1 joerg
665 1.26 abhinav if (!args->legacy) {
666 1.26 abhinav /* Register the rank function */
667 1.26 abhinav rc = sqlite3_create_function(db, "rank_func", 1, SQLITE_ANY,
668 1.26 abhinav (void *) &idf, rank_func, NULL, NULL);
669 1.26 abhinav if (rc != SQLITE_OK) {
670 1.26 abhinav warnx("Unable to register the ranking function: %s",
671 1.26 abhinav sqlite3_errmsg(db));
672 1.26 abhinav sqlite3_close(db);
673 1.26 abhinav sqlite3_shutdown();
674 1.26 abhinav exit(EXIT_FAILURE);
675 1.26 abhinav }
676 1.1 joerg }
677 1.26 abhinav
678 1.1 joerg rc = sqlite3_prepare_v2(db, query, -1, &stmt, NULL);
679 1.1 joerg if (rc == SQLITE_IOERR) {
680 1.1 joerg warnx("Corrupt database. Please rerun makemandb");
681 1.1 joerg return -1;
682 1.1 joerg } else if (rc != SQLITE_OK) {
683 1.1 joerg warnx("%s", sqlite3_errmsg(db));
684 1.1 joerg return -1;
685 1.1 joerg }
686 1.1 joerg
687 1.26 abhinav unsigned int nresults = 0;
688 1.1 joerg while (sqlite3_step(stmt) == SQLITE_ROW) {
689 1.26 abhinav nresults++;
690 1.1 joerg section = (const char *) sqlite3_column_text(stmt, 0);
691 1.4 wiz name_temp = (const char *) sqlite3_column_text(stmt, 1);
692 1.1 joerg name_desc = (const char *) sqlite3_column_text(stmt, 2);
693 1.1 joerg machine = (const char *) sqlite3_column_text(stmt, 3);
694 1.26 abhinav if (!args->legacy)
695 1.26 abhinav snippet = (const char *) sqlite3_column_text(stmt, 4);
696 1.4 wiz if ((slash_ptr = strrchr(name_temp, '/')) != NULL)
697 1.4 wiz name_temp = slash_ptr + 1;
698 1.1 joerg if (machine && machine[0]) {
699 1.1 joerg m = estrdup(machine);
700 1.24 christos easprintf(&name, "%s/%s", lower(m), name_temp);
701 1.1 joerg free(m);
702 1.1 joerg } else {
703 1.24 christos name = estrdup((const char *)
704 1.24 christos sqlite3_column_text(stmt, 1));
705 1.1 joerg }
706 1.1 joerg
707 1.24 christos (args->callback)(args->callback_data, section, name,
708 1.26 abhinav name_desc, snippet, args->legacy? 0: strlen(snippet));
709 1.26 abhinav free(name);
710 1.26 abhinav }
711 1.26 abhinav sqlite3_finalize(stmt);
712 1.26 abhinav return nresults;
713 1.26 abhinav }
714 1.1 joerg
715 1.26 abhinav
716 1.26 abhinav /*
717 1.26 abhinav * run_query_internal --
718 1.26 abhinav * Performs the searches for the keywords entered by the user.
719 1.26 abhinav * The 2nd param: snippet_args is an array of strings providing values for the
720 1.26 abhinav * last three parameters to the snippet function of sqlite. (Look at the docs).
721 1.26 abhinav * The 3rd param: args contains rest of the search parameters. Look at
722 1.26 abhinav * arpopos-utils.h for the description of individual fields.
723 1.26 abhinav *
724 1.26 abhinav */
725 1.26 abhinav static int
726 1.26 abhinav run_query_internal(sqlite3 *db, const char *snippet_args[3], query_args *args)
727 1.26 abhinav {
728 1.26 abhinav char *query;
729 1.26 abhinav query = generate_search_query(args, snippet_args);
730 1.26 abhinav if (query == NULL) {
731 1.26 abhinav *args->errmsg = estrdup("malloc failed");
732 1.26 abhinav return -1;
733 1.1 joerg }
734 1.1 joerg
735 1.26 abhinav execute_search_query(db, query, args);
736 1.1 joerg sqlite3_free(query);
737 1.1 joerg return *(args->errmsg) == NULL ? 0 : -1;
738 1.1 joerg }
739 1.1 joerg
740 1.21 christos static char *
741 1.21 christos get_escaped_html_string(const char *src, size_t *slen)
742 1.1 joerg {
743 1.21 christos static const char trouble[] = "<>\"&\002\003";
744 1.21 christos /*
745 1.21 christos * First scan the src to find out the number of occurrences
746 1.21 christos * of {'>', '<' '"', '&'}. Then allocate a new buffer with
747 1.21 christos * sufficient space to be able to store the quoted versions
748 1.21 christos * of the special characters {>, <, ", &}.
749 1.21 christos * Copy over the characters from the original src into
750 1.21 christos * this buffer while replacing the special characters with
751 1.21 christos * their quoted versions.
752 1.21 christos */
753 1.21 christos char *dst, *ddst;
754 1.21 christos size_t count;
755 1.21 christos const char *ssrc;
756 1.21 christos
757 1.21 christos for (count = 0, ssrc = src; *src; count++) {
758 1.21 christos size_t sz = strcspn(src, trouble);
759 1.21 christos src += sz + 1;
760 1.21 christos }
761 1.1 joerg
762 1.1 joerg
763 1.24 christos #define append(a) \
764 1.24 christos do { \
765 1.24 christos memcpy(dst, (a), sizeof(a) - 1); \
766 1.24 christos dst += sizeof(a) - 1; \
767 1.24 christos } while (/*CONSTCOND*/0)
768 1.24 christos
769 1.1 joerg
770 1.21 christos ddst = dst = emalloc(*slen + count * 5 + 1);
771 1.21 christos for (src = ssrc; *src; src++) {
772 1.21 christos switch (*src) {
773 1.1 joerg case '<':
774 1.21 christos append("<");
775 1.1 joerg break;
776 1.1 joerg case '>':
777 1.21 christos append(">");
778 1.1 joerg break;
779 1.1 joerg case '\"':
780 1.21 christos append(""");
781 1.1 joerg break;
782 1.1 joerg case '&':
783 1.21 christos /*
784 1.21 christos * Don't perform the quoting if this & is part of
785 1.21 christos * an mdoc escape sequence, e.g. \&
786 1.1 joerg */
787 1.21 christos if (src != ssrc && src[-1] != '\\')
788 1.21 christos append("&");
789 1.21 christos else
790 1.21 christos append("&");
791 1.1 joerg break;
792 1.1 joerg case '\002':
793 1.21 christos append("<b>");
794 1.1 joerg break;
795 1.1 joerg case '\003':
796 1.21 christos append("</b>");
797 1.1 joerg break;
798 1.1 joerg default:
799 1.21 christos *dst++ = *src;
800 1.1 joerg break;
801 1.1 joerg }
802 1.1 joerg }
803 1.21 christos *dst = '\0';
804 1.21 christos *slen = dst - ddst;
805 1.21 christos return ddst;
806 1.21 christos }
807 1.21 christos
808 1.21 christos
809 1.21 christos /*
810 1.21 christos * callback_html --
811 1.21 christos * Callback function for run_query_html. It builds the html output and then
812 1.21 christos * calls the actual user supplied callback function.
813 1.21 christos */
814 1.21 christos static int
815 1.21 christos callback_html(void *data, const char *section, const char *name,
816 1.21 christos const char *name_desc, const char *snippet, size_t snippet_length)
817 1.21 christos {
818 1.21 christos struct orig_callback_data *orig_data = data;
819 1.21 christos int (*callback)(void *, const char *, const char *, const char *,
820 1.21 christos const char *, size_t) = orig_data->callback;
821 1.21 christos size_t length = snippet_length;
822 1.21 christos size_t name_description_length = strlen(name_desc);
823 1.21 christos char *qsnippet = get_escaped_html_string(snippet, &length);
824 1.21 christos char *qname_description = get_escaped_html_string(name_desc,
825 1.21 christos &name_description_length);
826 1.21 christos
827 1.21 christos (*callback)(orig_data->data, section, name, qname_description,
828 1.21 christos qsnippet, length);
829 1.1 joerg free(qsnippet);
830 1.21 christos free(qname_description);
831 1.1 joerg return 0;
832 1.1 joerg }
833 1.1 joerg
834 1.1 joerg /*
835 1.1 joerg * run_query_html --
836 1.1 joerg * Utility function to output query result in HTML format.
837 1.17 snj * It internally calls run_query only, but it first passes the output to its
838 1.1 joerg * own custom callback function, which preprocess the snippet for quoting
839 1.1 joerg * inline HTML fragments.
840 1.1 joerg * After that it delegates the call the actual user supplied callback function.
841 1.1 joerg */
842 1.15 christos static int
843 1.1 joerg run_query_html(sqlite3 *db, query_args *args)
844 1.1 joerg {
845 1.1 joerg struct orig_callback_data orig_data;
846 1.1 joerg orig_data.callback = args->callback;
847 1.1 joerg orig_data.data = args->callback_data;
848 1.1 joerg const char *snippet_args[] = {"\002", "\003", "..."};
849 1.1 joerg args->callback = &callback_html;
850 1.1 joerg args->callback_data = (void *) &orig_data;
851 1.15 christos return run_query_internal(db, snippet_args, args);
852 1.1 joerg }
853 1.1 joerg
854 1.1 joerg /*
855 1.9 christos * underline a string, pager style.
856 1.9 christos */
857 1.9 christos static char *
858 1.14 christos ul_pager(int ul, const char *s)
859 1.9 christos {
860 1.9 christos size_t len;
861 1.9 christos char *dst, *d;
862 1.9 christos
863 1.14 christos if (!ul)
864 1.14 christos return estrdup(s);
865 1.14 christos
866 1.9 christos // a -> _\ba
867 1.9 christos len = strlen(s) * 3 + 1;
868 1.9 christos
869 1.9 christos d = dst = emalloc(len);
870 1.9 christos while (*s) {
871 1.9 christos *d++ = '_';
872 1.9 christos *d++ = '\b';
873 1.9 christos *d++ = *s++;
874 1.9 christos }
875 1.9 christos *d = '\0';
876 1.9 christos return dst;
877 1.9 christos }
878 1.9 christos
879 1.9 christos /*
880 1.1 joerg * callback_pager --
881 1.1 joerg * A callback similar to callback_html. It overstrikes the matching text in
882 1.1 joerg * the snippet so that it appears emboldened when viewed using a pager like
883 1.1 joerg * more or less.
884 1.1 joerg */
885 1.1 joerg static int
886 1.10 christos callback_pager(void *data, const char *section, const char *name,
887 1.1 joerg const char *name_desc, const char *snippet, size_t snippet_length)
888 1.1 joerg {
889 1.24 christos struct orig_callback_data *orig_data = data;
890 1.1 joerg char *psnippet;
891 1.1 joerg const char *temp = snippet;
892 1.1 joerg int count = 0;
893 1.14 christos int i = 0, did;
894 1.1 joerg size_t sz = 0;
895 1.1 joerg size_t psnippet_length;
896 1.1 joerg
897 1.24 christos /* Count the number of bytes of matching text. For each of these
898 1.24 christos * bytes we will use 2 extra bytes to overstrike it so that it
899 1.24 christos * appears bold when viewed using a pager.
900 1.1 joerg */
901 1.1 joerg while (*temp) {
902 1.1 joerg sz = strcspn(temp, "\002\003");
903 1.1 joerg temp += sz;
904 1.1 joerg if (*temp == '\003') {
905 1.1 joerg count += 2 * (sz);
906 1.1 joerg }
907 1.1 joerg temp++;
908 1.1 joerg }
909 1.1 joerg
910 1.1 joerg psnippet_length = snippet_length + count;
911 1.1 joerg psnippet = emalloc(psnippet_length + 1);
912 1.1 joerg
913 1.1 joerg /* Copy the bytes from snippet to psnippet:
914 1.1 joerg * 1. Copy the bytes before \002 as it is.
915 1.24 christos * 2. The bytes after \002 need to be overstriked till we
916 1.24 christos * encounter \003.
917 1.1 joerg * 3. To overstrike a byte 'A' we need to write 'A\bA'
918 1.1 joerg */
919 1.14 christos did = 0;
920 1.1 joerg while (*snippet) {
921 1.1 joerg sz = strcspn(snippet, "\002");
922 1.1 joerg memcpy(&psnippet[i], snippet, sz);
923 1.1 joerg snippet += sz;
924 1.1 joerg i += sz;
925 1.1 joerg
926 1.1 joerg /* Don't change this. Advancing the pointer without reading the byte
927 1.1 joerg * is causing strange behavior.
928 1.1 joerg */
929 1.1 joerg if (*snippet == '\002')
930 1.1 joerg snippet++;
931 1.1 joerg while (*snippet && *snippet != '\003') {
932 1.14 christos did = 1;
933 1.1 joerg psnippet[i++] = *snippet;
934 1.1 joerg psnippet[i++] = '\b';
935 1.1 joerg psnippet[i++] = *snippet++;
936 1.1 joerg }
937 1.1 joerg if (*snippet)
938 1.1 joerg snippet++;
939 1.1 joerg }
940 1.1 joerg
941 1.1 joerg psnippet[i] = 0;
942 1.14 christos char *ul_section = ul_pager(did, section);
943 1.14 christos char *ul_name = ul_pager(did, name);
944 1.14 christos char *ul_name_desc = ul_pager(did, name_desc);
945 1.9 christos (orig_data->callback)(orig_data->data, ul_section, ul_name,
946 1.9 christos ul_name_desc, psnippet, psnippet_length);
947 1.9 christos free(ul_section);
948 1.9 christos free(ul_name);
949 1.9 christos free(ul_name_desc);
950 1.1 joerg free(psnippet);
951 1.1 joerg return 0;
952 1.1 joerg }
953 1.1 joerg
954 1.9 christos struct term_args {
955 1.9 christos struct orig_callback_data *orig_data;
956 1.9 christos const char *smul;
957 1.9 christos const char *rmul;
958 1.9 christos };
959 1.9 christos
960 1.9 christos /*
961 1.9 christos * underline a string, pager style.
962 1.9 christos */
963 1.9 christos static char *
964 1.9 christos ul_term(const char *s, const struct term_args *ta)
965 1.9 christos {
966 1.9 christos char *dst;
967 1.9 christos
968 1.9 christos easprintf(&dst, "%s%s%s", ta->smul, s, ta->rmul);
969 1.9 christos return dst;
970 1.9 christos }
971 1.9 christos
972 1.9 christos /*
973 1.9 christos * callback_term --
974 1.9 christos * A callback similar to callback_html. It overstrikes the matching text in
975 1.9 christos * the snippet so that it appears emboldened when viewed using a pager like
976 1.9 christos * more or less.
977 1.9 christos */
978 1.9 christos static int
979 1.10 christos callback_term(void *data, const char *section, const char *name,
980 1.9 christos const char *name_desc, const char *snippet, size_t snippet_length)
981 1.9 christos {
982 1.9 christos struct term_args *ta = data;
983 1.9 christos struct orig_callback_data *orig_data = ta->orig_data;
984 1.9 christos
985 1.9 christos char *ul_section = ul_term(section, ta);
986 1.9 christos char *ul_name = ul_term(name, ta);
987 1.9 christos char *ul_name_desc = ul_term(name_desc, ta);
988 1.9 christos (orig_data->callback)(orig_data->data, ul_section, ul_name,
989 1.9 christos ul_name_desc, snippet, snippet_length);
990 1.9 christos free(ul_section);
991 1.9 christos free(ul_name);
992 1.9 christos free(ul_name_desc);
993 1.9 christos return 0;
994 1.9 christos }
995 1.9 christos
996 1.1 joerg /*
997 1.1 joerg * run_query_pager --
998 1.1 joerg * Utility function similar to run_query_html. This function tries to
999 1.1 joerg * pre-process the result assuming it will be piped to a pager.
1000 1.17 snj * For this purpose it first calls its own callback function callback_pager
1001 1.1 joerg * which then delegates the call to the user supplied callback.
1002 1.1 joerg */
1003 1.15 christos static int
1004 1.6 joerg run_query_pager(sqlite3 *db, query_args *args)
1005 1.1 joerg {
1006 1.1 joerg struct orig_callback_data orig_data;
1007 1.1 joerg orig_data.callback = args->callback;
1008 1.1 joerg orig_data.data = args->callback_data;
1009 1.15 christos const char *snippet_args[3] = { "\002", "\003", "..." };
1010 1.1 joerg args->callback = &callback_pager;
1011 1.1 joerg args->callback_data = (void *) &orig_data;
1012 1.15 christos return run_query_internal(db, snippet_args, args);
1013 1.1 joerg }
1014 1.9 christos
1015 1.18 christos struct nv {
1016 1.18 christos char *s;
1017 1.18 christos size_t l;
1018 1.18 christos };
1019 1.18 christos
1020 1.18 christos static int
1021 1.18 christos term_putc(int c, void *p)
1022 1.18 christos {
1023 1.18 christos struct nv *nv = p;
1024 1.18 christos nv->s[nv->l++] = c;
1025 1.18 christos return 0;
1026 1.18 christos }
1027 1.18 christos
1028 1.18 christos static char *
1029 1.18 christos term_fix_seq(TERMINAL *ti, const char *seq)
1030 1.18 christos {
1031 1.18 christos char *res = estrdup(seq);
1032 1.18 christos struct nv nv;
1033 1.18 christos
1034 1.19 christos if (ti == NULL)
1035 1.19 christos return res;
1036 1.19 christos
1037 1.18 christos nv.s = res;
1038 1.18 christos nv.l = 0;
1039 1.18 christos ti_puts(ti, seq, 1, term_putc, &nv);
1040 1.18 christos nv.s[nv.l] = '\0';
1041 1.18 christos
1042 1.18 christos return res;
1043 1.18 christos }
1044 1.18 christos
1045 1.9 christos static void
1046 1.9 christos term_init(int fd, const char *sa[5])
1047 1.9 christos {
1048 1.9 christos TERMINAL *ti;
1049 1.9 christos int error;
1050 1.9 christos const char *bold, *sgr0, *smso, *rmso, *smul, *rmul;
1051 1.9 christos
1052 1.9 christos if (ti_setupterm(&ti, NULL, fd, &error) == -1) {
1053 1.9 christos bold = sgr0 = NULL;
1054 1.9 christos smso = rmso = smul = rmul = "";
1055 1.9 christos ti = NULL;
1056 1.9 christos } else {
1057 1.9 christos bold = ti_getstr(ti, "bold");
1058 1.9 christos sgr0 = ti_getstr(ti, "sgr0");
1059 1.9 christos if (bold == NULL || sgr0 == NULL) {
1060 1.9 christos smso = ti_getstr(ti, "smso");
1061 1.9 christos
1062 1.9 christos if (smso == NULL ||
1063 1.9 christos (rmso = ti_getstr(ti, "rmso")) == NULL)
1064 1.9 christos smso = rmso = "";
1065 1.9 christos bold = sgr0 = NULL;
1066 1.9 christos } else
1067 1.9 christos smso = rmso = "";
1068 1.9 christos
1069 1.9 christos smul = ti_getstr(ti, "smul");
1070 1.9 christos if (smul == NULL || (rmul = ti_getstr(ti, "rmul")) == NULL)
1071 1.9 christos smul = rmul = "";
1072 1.9 christos }
1073 1.9 christos
1074 1.18 christos sa[0] = term_fix_seq(ti, bold ? bold : smso);
1075 1.18 christos sa[1] = term_fix_seq(ti, sgr0 ? sgr0 : rmso);
1076 1.9 christos sa[2] = estrdup("...");
1077 1.18 christos sa[3] = term_fix_seq(ti, smul);
1078 1.18 christos sa[4] = term_fix_seq(ti, rmul);
1079 1.18 christos
1080 1.9 christos if (ti)
1081 1.9 christos del_curterm(ti);
1082 1.9 christos }
1083 1.9 christos
1084 1.9 christos /*
1085 1.9 christos * run_query_term --
1086 1.9 christos * Utility function similar to run_query_html. This function tries to
1087 1.9 christos * pre-process the result assuming it will be displayed on a terminal
1088 1.17 snj * For this purpose it first calls its own callback function callback_pager
1089 1.9 christos * which then delegates the call to the user supplied callback.
1090 1.9 christos */
1091 1.15 christos static int
1092 1.9 christos run_query_term(sqlite3 *db, query_args *args)
1093 1.9 christos {
1094 1.9 christos struct orig_callback_data orig_data;
1095 1.9 christos struct term_args ta;
1096 1.9 christos orig_data.callback = args->callback;
1097 1.9 christos orig_data.data = args->callback_data;
1098 1.9 christos const char *snippet_args[5];
1099 1.15 christos
1100 1.15 christos term_init(STDOUT_FILENO, snippet_args);
1101 1.9 christos ta.smul = snippet_args[3];
1102 1.9 christos ta.rmul = snippet_args[4];
1103 1.9 christos ta.orig_data = (void *) &orig_data;
1104 1.9 christos
1105 1.9 christos args->callback = &callback_term;
1106 1.9 christos args->callback_data = &ta;
1107 1.15 christos return run_query_internal(db, snippet_args, args);
1108 1.15 christos }
1109 1.15 christos
1110 1.15 christos static int
1111 1.15 christos run_query_none(sqlite3 *db, query_args *args)
1112 1.15 christos {
1113 1.15 christos struct orig_callback_data orig_data;
1114 1.15 christos orig_data.callback = args->callback;
1115 1.15 christos orig_data.data = args->callback_data;
1116 1.15 christos const char *snippet_args[3] = { "", "", "..." };
1117 1.15 christos args->callback = &callback_pager;
1118 1.15 christos args->callback_data = (void *) &orig_data;
1119 1.15 christos return run_query_internal(db, snippet_args, args);
1120 1.15 christos }
1121 1.15 christos
1122 1.15 christos int
1123 1.15 christos run_query(sqlite3 *db, query_format fmt, query_args *args)
1124 1.15 christos {
1125 1.15 christos switch (fmt) {
1126 1.15 christos case APROPOS_NONE:
1127 1.15 christos return run_query_none(db, args);
1128 1.15 christos case APROPOS_HTML:
1129 1.15 christos return run_query_html(db, args);
1130 1.15 christos case APROPOS_TERM:
1131 1.15 christos return run_query_term(db, args);
1132 1.15 christos case APROPOS_PAGER:
1133 1.15 christos return run_query_pager(db, args);
1134 1.15 christos default:
1135 1.15 christos warnx("Unknown query format %d", (int)fmt);
1136 1.15 christos return -1;
1137 1.15 christos }
1138 1.9 christos }
1139