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makemandb.c revision 1.2.2.1
      1  1.2.2.1    riz /*	$NetBSD: makemandb.c,v 1.2.2.1 2012/02/18 18:03:26 riz 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  1.2.2.1    riz __RCSID("$NetBSD: makemandb.c,v 1.2.2.1 2012/02/18 18:03:26 riz 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 <ctype.h>
     27      1.1  joerg #include <dirent.h>
     28      1.1  joerg #include <err.h>
     29  1.2.2.1    riz #include <archive.h>
     30  1.2.2.1    riz #include <libgen.h>
     31      1.1  joerg #include <md5.h>
     32      1.1  joerg #include <stdio.h>
     33      1.1  joerg #include <stdlib.h>
     34      1.1  joerg #include <string.h>
     35      1.1  joerg #include <unistd.h>
     36      1.1  joerg #include <util.h>
     37      1.1  joerg 
     38      1.1  joerg #include "apropos-utils.h"
     39      1.1  joerg #include "man.h"
     40      1.1  joerg #include "mandoc.h"
     41      1.1  joerg #include "mdoc.h"
     42      1.1  joerg #include "sqlite3.h"
     43      1.1  joerg 
     44      1.1  joerg #define BUFLEN 1024
     45      1.1  joerg #define MDOC 0	//If the page is of mdoc(7) type
     46      1.1  joerg #define MAN 1	//If the page  is of man(7) type
     47      1.1  joerg 
     48      1.1  joerg /*
     49      1.1  joerg  * A data structure for holding section specific data.
     50      1.1  joerg  */
     51      1.1  joerg typedef struct secbuff {
     52      1.1  joerg 	char *data;
     53      1.1  joerg 	size_t buflen;	//Total length of buffer allocated initially
     54      1.1  joerg 	size_t offset;	// Current offset in the buffer.
     55      1.1  joerg } secbuff;
     56      1.1  joerg 
     57      1.1  joerg typedef struct makemandb_flags {
     58      1.1  joerg 	int optimize;
     59      1.1  joerg 	int limit;	// limit the indexing to only NAME section
     60      1.1  joerg 	int recreate;	// Database was created from scratch
     61      1.1  joerg 	int verbosity;	// 0: quiet, 1: default, 2: verbose
     62      1.1  joerg } makemandb_flags;
     63      1.1  joerg 
     64      1.1  joerg typedef struct mandb_rec {
     65      1.1  joerg 	/* Fields for mandb table */
     66      1.1  joerg 	char *name;	// for storing the name of the man page
     67      1.1  joerg 	char *name_desc; // for storing the one line description (.Nd)
     68      1.1  joerg 	secbuff desc; // for storing the DESCRIPTION section
     69      1.1  joerg 	secbuff lib; // for the LIBRARY section
     70      1.1  joerg 	secbuff return_vals; // RETURN VALUES
     71      1.1  joerg 	secbuff env; // ENVIRONMENT
     72      1.1  joerg 	secbuff files; // FILES
     73      1.1  joerg 	secbuff exit_status; // EXIT STATUS
     74      1.1  joerg 	secbuff diagnostics; // DIAGNOSTICS
     75      1.1  joerg 	secbuff errors; // ERRORS
     76      1.1  joerg 	char section[2];
     77      1.1  joerg 
     78      1.1  joerg 	int xr_found;
     79      1.1  joerg 
     80      1.1  joerg 	/* Fields for mandb_meta table */
     81      1.1  joerg 	char *md5_hash;
     82      1.1  joerg 	dev_t device;
     83      1.1  joerg 	ino_t inode;
     84      1.1  joerg 	time_t mtime;
     85      1.1  joerg 
     86      1.1  joerg 	/* Fields for mandb_links table */
     87      1.1  joerg 	char *machine;
     88      1.1  joerg 	char *links; //all the links to a page in a space separated form
     89      1.1  joerg 	char *file_path;
     90      1.1  joerg 
     91      1.1  joerg 	/* Non-db fields */
     92      1.1  joerg 	int page_type; //Indicates the type of page: mdoc or man
     93      1.1  joerg } mandb_rec;
     94      1.1  joerg 
     95      1.1  joerg static void append(secbuff *sbuff, const char *src);
     96      1.1  joerg static void init_secbuffs(mandb_rec *);
     97      1.1  joerg static void free_secbuffs(mandb_rec *);
     98  1.2.2.1    riz static int check_md5(const char *, sqlite3 *, const char *, char **, void *, size_t);
     99      1.1  joerg static void cleanup(mandb_rec *);
    100      1.1  joerg static void set_section(const struct mdoc *, const struct man *, mandb_rec *);
    101      1.1  joerg static void set_machine(const struct mdoc *, mandb_rec *);
    102      1.1  joerg static int insert_into_db(sqlite3 *, mandb_rec *);
    103  1.2.2.1    riz static	void begin_parse(const char *, struct mparse *, mandb_rec *,
    104  1.2.2.1    riz 			 const void *, size_t len);
    105      1.1  joerg static void pmdoc_node(const struct mdoc_node *, mandb_rec *);
    106      1.1  joerg static void pmdoc_Nm(const struct mdoc_node *, mandb_rec *);
    107      1.1  joerg static void pmdoc_Nd(const struct mdoc_node *, mandb_rec *);
    108      1.1  joerg static void pmdoc_Sh(const struct mdoc_node *, mandb_rec *);
    109      1.1  joerg static void pmdoc_Xr(const struct mdoc_node *, mandb_rec *);
    110      1.1  joerg static void pmdoc_Pp(const struct mdoc_node *, mandb_rec *);
    111      1.1  joerg static void pmdoc_macro_handler(const struct mdoc_node *, mandb_rec *,
    112      1.1  joerg 				enum mdoct);
    113      1.1  joerg static void pman_node(const struct man_node *n, mandb_rec *);
    114      1.1  joerg static void pman_parse_node(const struct man_node *, secbuff *);
    115      1.1  joerg static void pman_parse_name(const struct man_node *, mandb_rec *);
    116      1.1  joerg static void pman_sh(const struct man_node *, mandb_rec *);
    117      1.1  joerg static void pman_block(const struct man_node *, mandb_rec *);
    118      1.1  joerg static void traversedir(const char *, sqlite3 *, struct mparse *);
    119      1.1  joerg static void mdoc_parse_section(enum mdoc_sec, const char *, mandb_rec *);
    120      1.1  joerg static void man_parse_section(enum man_sec, const struct man_node *, mandb_rec *);
    121      1.1  joerg static void build_file_cache(sqlite3 *, const char *, 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      1.1  joerg static makemandb_flags mflags = { .verbosity = 1 };
    127      1.1  joerg 
    128      1.1  joerg typedef	void (*pman_nf)(const struct man_node *n, mandb_rec *);
    129      1.1  joerg typedef	void (*pmdoc_nf)(const struct mdoc_node *n, mandb_rec *);
    130      1.1  joerg static	const pmdoc_nf mdocs[MDOC_MAX] = {
    131      1.1  joerg 	NULL, /* Ap */
    132      1.1  joerg 	NULL, /* Dd */
    133      1.1  joerg 	NULL, /* Dt */
    134      1.1  joerg 	NULL, /* Os */
    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      1.1  joerg 	NULL, /* Dl */
    140      1.1  joerg 	NULL, /* Bd */
    141      1.1  joerg 	NULL, /* Ed */
    142      1.1  joerg 	NULL, /* Bl */
    143      1.1  joerg 	NULL, /* El */
    144      1.1  joerg 	NULL, /* It */
    145      1.1  joerg 	NULL, /* Ad */
    146      1.1  joerg 	NULL, /* An */
    147      1.1  joerg 	NULL, /* Ar */
    148      1.1  joerg 	NULL, /* Cd */
    149      1.1  joerg 	NULL, /* Cm */
    150      1.1  joerg 	NULL, /* Dv */
    151      1.1  joerg 	NULL, /* Er */
    152      1.1  joerg 	NULL, /* Ev */
    153      1.1  joerg 	NULL, /* Ex */
    154      1.1  joerg 	NULL, /* Fa */
    155      1.1  joerg 	NULL, /* Fd */
    156      1.1  joerg 	NULL, /* Fl */
    157      1.1  joerg 	NULL, /* Fn */
    158      1.1  joerg 	NULL, /* Ft */
    159      1.1  joerg 	NULL, /* Ic */
    160      1.1  joerg 	NULL, /* In */
    161      1.1  joerg 	NULL, /* Li */
    162      1.1  joerg 	pmdoc_Nd, /* Nd */
    163      1.1  joerg 	pmdoc_Nm, /* Nm */
    164      1.1  joerg 	NULL, /* Op */
    165      1.1  joerg 	NULL, /* Ot */
    166      1.1  joerg 	NULL, /* Pa */
    167      1.1  joerg 	NULL, /* Rv */
    168      1.1  joerg 	NULL, /* St */
    169      1.1  joerg 	NULL, /* Va */
    170      1.1  joerg 	NULL, /* Vt */
    171      1.1  joerg 	pmdoc_Xr, /* Xr */
    172      1.1  joerg 	NULL, /* %A */
    173      1.1  joerg 	NULL, /* %B */
    174      1.1  joerg 	NULL, /* %D */
    175      1.1  joerg 	NULL, /* %I */
    176      1.1  joerg 	NULL, /* %J */
    177      1.1  joerg 	NULL, /* %N */
    178      1.1  joerg 	NULL, /* %O */
    179      1.1  joerg 	NULL, /* %P */
    180      1.1  joerg 	NULL, /* %R */
    181      1.1  joerg 	NULL, /* %T */
    182      1.1  joerg 	NULL, /* %V */
    183      1.1  joerg 	NULL, /* Ac */
    184      1.1  joerg 	NULL, /* Ao */
    185      1.1  joerg 	NULL, /* Aq */
    186      1.1  joerg 	NULL, /* At */
    187      1.1  joerg 	NULL, /* Bc */
    188      1.1  joerg 	NULL, /* Bf */
    189      1.1  joerg 	NULL, /* Bo */
    190      1.1  joerg 	NULL, /* Bq */
    191      1.1  joerg 	NULL, /* Bsx */
    192      1.1  joerg 	NULL, /* Bx */
    193      1.1  joerg 	NULL, /* Db */
    194      1.1  joerg 	NULL, /* Dc */
    195      1.1  joerg 	NULL, /* Do */
    196      1.1  joerg 	NULL, /* Dq */
    197      1.1  joerg 	NULL, /* Ec */
    198      1.1  joerg 	NULL, /* Ef */
    199      1.1  joerg 	NULL, /* Em */
    200      1.1  joerg 	NULL, /* Eo */
    201      1.1  joerg 	NULL, /* Fx */
    202      1.1  joerg 	NULL, /* Ms */
    203      1.1  joerg 	NULL, /* No */
    204      1.1  joerg 	NULL, /* Ns */
    205      1.1  joerg 	NULL, /* Nx */
    206      1.1  joerg 	NULL, /* Ox */
    207      1.1  joerg 	NULL, /* Pc */
    208      1.1  joerg 	NULL, /* Pf */
    209      1.1  joerg 	NULL, /* Po */
    210      1.1  joerg 	NULL, /* Pq */
    211      1.1  joerg 	NULL, /* Qc */
    212      1.1  joerg 	NULL, /* Ql */
    213      1.1  joerg 	NULL, /* Qo */
    214      1.1  joerg 	NULL, /* Qq */
    215      1.1  joerg 	NULL, /* Re */
    216      1.1  joerg 	NULL, /* Rs */
    217      1.1  joerg 	NULL, /* Sc */
    218      1.1  joerg 	NULL, /* So */
    219      1.1  joerg 	NULL, /* Sq */
    220      1.1  joerg 	NULL, /* Sm */
    221      1.1  joerg 	NULL, /* Sx */
    222      1.1  joerg 	NULL, /* Sy */
    223      1.1  joerg 	NULL, /* Tn */
    224      1.1  joerg 	NULL, /* Ux */
    225      1.1  joerg 	NULL, /* Xc */
    226      1.1  joerg 	NULL, /* Xo */
    227      1.1  joerg 	NULL, /* Fo */
    228      1.1  joerg 	NULL, /* Fc */
    229      1.1  joerg 	NULL, /* Oo */
    230      1.1  joerg 	NULL, /* Oc */
    231      1.1  joerg 	NULL, /* Bk */
    232      1.1  joerg 	NULL, /* Ek */
    233      1.1  joerg 	NULL, /* Bt */
    234      1.1  joerg 	NULL, /* Hf */
    235      1.1  joerg 	NULL, /* Fr */
    236      1.1  joerg 	NULL, /* Ud */
    237      1.1  joerg 	NULL, /* Lb */
    238      1.1  joerg 	NULL, /* Lp */
    239      1.1  joerg 	NULL, /* Lk */
    240      1.1  joerg 	NULL, /* Mt */
    241      1.1  joerg 	NULL, /* Brq */
    242      1.1  joerg 	NULL, /* Bro */
    243      1.1  joerg 	NULL, /* Brc */
    244      1.1  joerg 	NULL, /* %C */
    245      1.1  joerg 	NULL, /* Es */
    246      1.1  joerg 	NULL, /* En */
    247      1.1  joerg 	NULL, /* Dx */
    248      1.1  joerg 	NULL, /* %Q */
    249      1.1  joerg 	NULL, /* br */
    250      1.1  joerg 	NULL, /* sp */
    251      1.1  joerg 	NULL, /* %U */
    252      1.1  joerg 	NULL, /* Ta */
    253      1.1  joerg };
    254      1.1  joerg 
    255      1.1  joerg static	const pman_nf mans[MAN_MAX] = {
    256      1.1  joerg 	NULL,	//br
    257      1.1  joerg 	NULL,	//TH
    258      1.1  joerg 	pman_sh, //SH
    259      1.1  joerg 	NULL,	//SS
    260      1.1  joerg 	NULL,	//TP
    261      1.1  joerg 	NULL,	//LP
    262      1.1  joerg 	NULL,	//PP
    263      1.1  joerg 	NULL,	//P
    264      1.1  joerg 	NULL,	//IP
    265      1.1  joerg 	NULL,	//HP
    266      1.1  joerg 	NULL,	//SM
    267      1.1  joerg 	NULL,	//SB
    268      1.1  joerg 	NULL,	//BI
    269      1.1  joerg 	NULL,	//IB
    270      1.1  joerg 	NULL,	//BR
    271      1.1  joerg 	NULL,	//RB
    272      1.1  joerg 	NULL,	//R
    273      1.1  joerg 	pman_block,	//B
    274      1.1  joerg 	NULL,	//I
    275      1.1  joerg 	NULL,	//IR
    276      1.1  joerg 	NULL,	//RI
    277      1.1  joerg 	NULL,	//na
    278      1.1  joerg 	NULL,	//sp
    279      1.1  joerg 	NULL,	//nf
    280      1.1  joerg 	NULL,	//fi
    281      1.1  joerg 	NULL,	//RE
    282      1.1  joerg 	NULL,	//RS
    283      1.1  joerg 	NULL,	//DT
    284      1.1  joerg 	NULL,	//UC
    285      1.1  joerg 	NULL,	//PD
    286      1.1  joerg 	NULL,	//AT
    287      1.1  joerg 	NULL,	//in
    288      1.1  joerg 	NULL,	//ft
    289      1.1  joerg };
    290      1.1  joerg 
    291      1.1  joerg 
    292      1.1  joerg int
    293      1.1  joerg main(int argc, char *argv[])
    294      1.1  joerg {
    295      1.1  joerg 	FILE *file;
    296      1.1  joerg 	const char *sqlstr, *manconf = NULL;
    297  1.2.2.1    riz 	char *line, *command, *parent;
    298      1.1  joerg 	char *errmsg;
    299      1.1  joerg 	int ch;
    300      1.1  joerg 	struct mparse *mp;
    301      1.1  joerg 	sqlite3 *db;
    302      1.1  joerg 	ssize_t len;
    303      1.1  joerg 	size_t linesize;
    304      1.1  joerg 	struct mandb_rec rec;
    305      1.1  joerg 
    306      1.1  joerg 	while ((ch = getopt(argc, argv, "C:floqv")) != -1) {
    307      1.1  joerg 		switch (ch) {
    308      1.1  joerg 		case 'C':
    309      1.1  joerg 			manconf = optarg;
    310      1.1  joerg 			break;
    311      1.1  joerg 		case 'f':
    312      1.1  joerg 			remove(DBPATH);
    313      1.1  joerg 			mflags.recreate = 1;
    314      1.1  joerg 			break;
    315      1.1  joerg 		case 'l':
    316      1.1  joerg 			mflags.limit = 1;
    317      1.1  joerg 			break;
    318      1.1  joerg 		case 'o':
    319      1.1  joerg 			mflags.optimize = 1;
    320      1.1  joerg 			break;
    321      1.1  joerg 		case 'q':
    322      1.1  joerg 			mflags.verbosity = 0;
    323      1.1  joerg 			break;
    324      1.1  joerg 		case 'v':
    325      1.1  joerg 			mflags.verbosity = 2;
    326      1.1  joerg 			break;
    327      1.1  joerg 		default:
    328      1.1  joerg 			usage();
    329      1.1  joerg 		}
    330      1.1  joerg 	}
    331      1.1  joerg 
    332      1.1  joerg 	memset(&rec, 0, sizeof(rec));
    333      1.1  joerg 
    334      1.1  joerg 	init_secbuffs(&rec);
    335      1.1  joerg 	mp = mparse_alloc(MPARSE_AUTO, MANDOCLEVEL_FATAL, NULL, NULL);
    336      1.1  joerg 
    337      1.1  joerg 	if ((db = init_db(MANDB_CREATE)) == NULL)
    338      1.1  joerg 		exit(EXIT_FAILURE);
    339      1.1  joerg 
    340      1.1  joerg 	sqlite3_exec(db, "PRAGMA synchronous = 0", NULL, NULL, 	&errmsg);
    341      1.1  joerg 	if (errmsg != NULL) {
    342      1.1  joerg 		warnx("%s", errmsg);
    343      1.1  joerg 		free(errmsg);
    344      1.1  joerg 		close_db(db);
    345      1.1  joerg 		exit(EXIT_FAILURE);
    346      1.1  joerg 	}
    347      1.1  joerg 
    348      1.1  joerg 	sqlite3_exec(db, "ATTACH DATABASE \':memory:\' AS metadb", NULL, NULL,
    349      1.1  joerg 	    &errmsg);
    350      1.1  joerg 	if (errmsg != NULL) {
    351      1.1  joerg 		warnx("%s", errmsg);
    352      1.1  joerg 		free(errmsg);
    353      1.1  joerg 		close_db(db);
    354      1.1  joerg 		exit(EXIT_FAILURE);
    355      1.1  joerg 	}
    356      1.1  joerg 
    357      1.1  joerg 	if (manconf) {
    358      1.1  joerg 		char *arg;
    359      1.1  joerg 		size_t command_len = shquote(manconf, NULL, 0) + 1;
    360      1.1  joerg 		arg = malloc(command_len );
    361      1.1  joerg 		shquote(manconf, arg, command_len);
    362      1.1  joerg 		easprintf(&command, "man -p -C %s", arg);
    363      1.1  joerg 		free(arg);
    364      1.1  joerg 	} else {
    365      1.1  joerg 		command = estrdup("man -p");
    366      1.1  joerg 	}
    367      1.1  joerg 
    368      1.1  joerg 	/* Call man -p to get the list of man page dirs */
    369      1.1  joerg 	if ((file = popen(command, "r")) == NULL) {
    370      1.1  joerg 		close_db(db);
    371      1.1  joerg 		err(EXIT_FAILURE, "fopen failed");
    372      1.1  joerg 	}
    373      1.1  joerg 	free(command);
    374      1.1  joerg 
    375      1.1  joerg 	/* Begin the transaction for indexing the pages	*/
    376      1.1  joerg 	sqlite3_exec(db, "BEGIN", NULL, NULL, &errmsg);
    377      1.1  joerg 	if (errmsg != NULL) {
    378      1.1  joerg 		warnx("%s", errmsg);
    379      1.1  joerg 		free(errmsg);
    380      1.1  joerg 		exit(EXIT_FAILURE);
    381      1.1  joerg 	}
    382      1.1  joerg 
    383      1.1  joerg 	sqlstr = "CREATE TABLE IF NOT EXISTS metadb.file_cache(device, inode,"
    384      1.1  joerg 		 " mtime, file PRIMARY KEY);"
    385      1.1  joerg 		 "CREATE UNIQUE INDEX IF NOT EXISTS metadb.index_file_cache_dev"
    386      1.1  joerg 		 " ON file_cache (device, inode)";
    387      1.1  joerg 
    388      1.1  joerg 	sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
    389      1.1  joerg 	if (errmsg != NULL) {
    390      1.1  joerg 		warnx("%s", errmsg);
    391      1.1  joerg 		free(errmsg);
    392      1.1  joerg 		close_db(db);
    393      1.1  joerg 		exit(EXIT_FAILURE);
    394      1.1  joerg 	}
    395      1.1  joerg 
    396      1.1  joerg 	if (mflags.verbosity)
    397      1.1  joerg 		printf("Building temporary file cache\n");
    398      1.1  joerg 	line = NULL;
    399      1.1  joerg 	linesize = 0;
    400      1.1  joerg 	while ((len = getline(&line, &linesize, file)) != -1) {
    401      1.1  joerg 		/* Replace the new line character at the end of string with '\0' */
    402      1.1  joerg 		line[len - 1] = '\0';
    403  1.2.2.1    riz 		parent = estrdup(line);
    404  1.2.2.1    riz 		chdir(dirname(parent));
    405  1.2.2.1    riz 		free(parent);
    406      1.1  joerg 		/* Traverse the man page directories and parse the pages */
    407      1.1  joerg 		traversedir(line, db, mp);
    408      1.1  joerg 	}
    409      1.1  joerg 	free(line);
    410      1.1  joerg 
    411      1.1  joerg 	if (pclose(file) == -1) {
    412      1.1  joerg 		close_db(db);
    413      1.1  joerg 		cleanup(&rec);
    414      1.1  joerg 		free_secbuffs(&rec);
    415      1.1  joerg 		err(EXIT_FAILURE, "pclose error");
    416      1.1  joerg 	}
    417      1.1  joerg 
    418      1.1  joerg 	update_db(db, mp, &rec);
    419      1.1  joerg 	mparse_free(mp);
    420      1.1  joerg 	free_secbuffs(&rec);
    421      1.1  joerg 
    422      1.1  joerg 	/* Commit the transaction */
    423      1.1  joerg 	sqlite3_exec(db, "COMMIT", NULL, NULL, &errmsg);
    424      1.1  joerg 	if (errmsg != NULL) {
    425      1.1  joerg 		warnx("%s", errmsg);
    426      1.1  joerg 		free(errmsg);
    427      1.1  joerg 		exit(EXIT_FAILURE);
    428      1.1  joerg 	}
    429      1.1  joerg 
    430      1.1  joerg 	if (mflags.optimize)
    431      1.1  joerg 		optimize(db);
    432      1.1  joerg 
    433      1.1  joerg 	close_db(db);
    434      1.1  joerg 	return 0;
    435      1.1  joerg }
    436      1.1  joerg 
    437      1.1  joerg /*
    438      1.1  joerg  * traversedir --
    439      1.1  joerg  *  Traverses the given directory recursively and passes all the man page files
    440      1.1  joerg  *  in the way to build_file_cache()
    441      1.1  joerg  */
    442      1.1  joerg static void
    443      1.1  joerg traversedir(const char *file, sqlite3 *db, struct mparse *mp)
    444      1.1  joerg {
    445      1.1  joerg 	struct stat sb;
    446      1.1  joerg 	struct dirent *dirp;
    447      1.1  joerg 	DIR *dp;
    448      1.1  joerg 	char *buf;
    449      1.1  joerg 
    450      1.1  joerg 	if (stat(file, &sb) < 0) {
    451      1.1  joerg 		warn("stat failed: %s", file);
    452      1.1  joerg 		return;
    453      1.1  joerg 	}
    454      1.1  joerg 
    455      1.1  joerg 	/* If it is a regular file or a symlink, pass it to build_cache() */
    456      1.1  joerg 	if (S_ISREG(sb.st_mode) || S_ISLNK(sb.st_mode)) {
    457      1.1  joerg 		build_file_cache(db, file, &sb);
    458      1.1  joerg 		return;
    459      1.1  joerg 	}
    460      1.1  joerg 
    461      1.1  joerg 	/* If it is a directory, traverse it recursively */
    462      1.1  joerg 	if (S_ISDIR(sb.st_mode)) {
    463      1.1  joerg 		if ((dp = opendir(file)) == NULL) {
    464      1.1  joerg 			warn("opendir error: %s", file);
    465      1.1  joerg 			return;
    466      1.1  joerg 		}
    467      1.1  joerg 
    468      1.1  joerg 		while ((dirp = readdir(dp)) != NULL) {
    469      1.1  joerg 			/* Avoid . and .. entries in a directory */
    470      1.1  joerg 			if (strncmp(dirp->d_name, ".", 1)) {
    471      1.1  joerg 				easprintf(&buf, "%s/%s", file, dirp->d_name);
    472      1.1  joerg 				traversedir(buf, db, mp);
    473      1.1  joerg 				free(buf);
    474      1.1  joerg 			}
    475      1.1  joerg 		}
    476      1.1  joerg 		closedir(dp);
    477      1.1  joerg 	}
    478      1.1  joerg }
    479      1.1  joerg 
    480      1.1  joerg /* build_file_cache --
    481      1.1  joerg  *   This function generates an md5 hash of the file passed as it's 2nd parameter
    482      1.1  joerg  *   and stores it in a temporary table file_cache along with the full file path.
    483      1.1  joerg  *   This is done to support incremental updation of the database.
    484      1.1  joerg  *   The temporary table file_cache is dropped thereafter in the function
    485      1.1  joerg  *   update_db(), once the database has been updated.
    486      1.1  joerg  */
    487      1.1  joerg static void
    488      1.1  joerg build_file_cache(sqlite3 *db, const char *file, struct stat *sb)
    489      1.1  joerg {
    490      1.1  joerg 	const char *sqlstr;
    491      1.1  joerg 	sqlite3_stmt *stmt = NULL;
    492      1.1  joerg 	int rc, idx;
    493      1.1  joerg 	assert(file != NULL);
    494      1.1  joerg 	dev_t device_cache = sb->st_dev;
    495      1.1  joerg 	ino_t inode_cache = sb->st_ino;
    496      1.1  joerg 	time_t mtime_cache = sb->st_mtime;
    497      1.1  joerg 
    498      1.1  joerg 	sqlstr = "INSERT INTO metadb.file_cache VALUES (:device, :inode,"
    499      1.1  joerg 		 " :mtime, :file)";
    500      1.1  joerg 	rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
    501      1.1  joerg 	if (rc != SQLITE_OK) {
    502      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    503      1.1  joerg 		return;
    504      1.1  joerg 	}
    505      1.1  joerg 
    506      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":device");
    507      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, device_cache);
    508      1.1  joerg 	if (rc != SQLITE_OK) {
    509      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    510      1.1  joerg 		sqlite3_finalize(stmt);
    511      1.1  joerg 		return;
    512      1.1  joerg 	}
    513      1.1  joerg 
    514      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":inode");
    515      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, inode_cache);
    516      1.1  joerg 	if (rc != SQLITE_OK) {
    517      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    518      1.1  joerg 		sqlite3_finalize(stmt);
    519      1.1  joerg 		return;
    520      1.1  joerg 	}
    521      1.1  joerg 
    522      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":mtime");
    523      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, mtime_cache);
    524      1.1  joerg 	if (rc != SQLITE_OK) {
    525      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    526      1.1  joerg 		sqlite3_finalize(stmt);
    527      1.1  joerg 		return;
    528      1.1  joerg 	}
    529      1.1  joerg 
    530      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":file");
    531      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, file, -1, NULL);
    532      1.1  joerg 	if (rc != SQLITE_OK) {
    533      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    534      1.1  joerg 		sqlite3_finalize(stmt);
    535      1.1  joerg 		return;
    536      1.1  joerg 	}
    537      1.1  joerg 
    538      1.1  joerg 	sqlite3_step(stmt);
    539      1.1  joerg 	sqlite3_finalize(stmt);
    540      1.1  joerg }
    541      1.1  joerg 
    542      1.1  joerg static void
    543      1.1  joerg update_existing_entry(sqlite3 *db, const char *file, const char *hash,
    544      1.1  joerg     mandb_rec *rec, int *new_count, int *link_count, int *err_count)
    545      1.1  joerg {
    546      1.1  joerg 	int update_count, rc, idx;
    547      1.1  joerg 	const char *inner_sqlstr;
    548      1.1  joerg 	sqlite3_stmt *inner_stmt;
    549      1.1  joerg 
    550      1.1  joerg 	update_count = sqlite3_total_changes(db);
    551      1.1  joerg 	inner_sqlstr = "UPDATE mandb_meta SET device = :device,"
    552      1.1  joerg 		       " inode = :inode, mtime = :mtime WHERE"
    553      1.1  joerg 		       " md5_hash = :md5 AND file = :file AND"
    554      1.1  joerg 		       " (device <> :device2 OR inode <> "
    555      1.1  joerg 		       "  :inode2 OR mtime <> :mtime2)";
    556      1.1  joerg 	rc = sqlite3_prepare_v2(db, inner_sqlstr, -1, &inner_stmt, NULL);
    557      1.1  joerg 	if (rc != SQLITE_OK) {
    558      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    559      1.1  joerg 		return;
    560      1.1  joerg 	}
    561      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":device");
    562      1.1  joerg 	sqlite3_bind_int64(inner_stmt, idx, rec->device);
    563      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":inode");
    564      1.1  joerg 	sqlite3_bind_int64(inner_stmt, idx, rec->inode);
    565      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":mtime");
    566      1.1  joerg 	sqlite3_bind_int64(inner_stmt, idx, rec->mtime);
    567      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":md5");
    568      1.1  joerg 	sqlite3_bind_text(inner_stmt, idx, hash, -1, NULL);
    569      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":file");
    570      1.1  joerg 	sqlite3_bind_text(inner_stmt, idx, file, -1, NULL);
    571      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":device2");
    572      1.1  joerg 	sqlite3_bind_int64(inner_stmt, idx, rec->device);
    573      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":inode2");
    574      1.1  joerg 	sqlite3_bind_int64(inner_stmt, idx, rec->inode);
    575      1.1  joerg 	idx = sqlite3_bind_parameter_index(inner_stmt, ":mtime2");
    576      1.1  joerg 	sqlite3_bind_int64(inner_stmt, idx, rec->mtime);
    577      1.1  joerg 
    578      1.1  joerg 	rc = sqlite3_step(inner_stmt);
    579      1.1  joerg 	if (rc == SQLITE_DONE) {
    580      1.1  joerg 		/* Check if an update has been performed. */
    581      1.1  joerg 		if (update_count != sqlite3_total_changes(db)) {
    582      1.1  joerg 			if (mflags.verbosity)
    583      1.1  joerg 				printf("Updated %s\n", file);
    584      1.1  joerg 			(*new_count)++;
    585      1.1  joerg 		} else {
    586      1.1  joerg 			/* Otherwise it was a hardlink. */
    587      1.1  joerg 			(*link_count)++;
    588      1.1  joerg 		}
    589      1.1  joerg 	} else {
    590      1.1  joerg 		warnx("Could not update the meta data for %s", file);
    591      1.1  joerg 		(*err_count)++;
    592      1.1  joerg 	}
    593      1.1  joerg 	sqlite3_finalize(inner_stmt);
    594      1.1  joerg }
    595      1.1  joerg 
    596  1.2.2.1    riz /* read_and_decompress --
    597  1.2.2.1    riz  *	Reads the given file into memory. If it is compressed, decompres
    598  1.2.2.1    riz  *	it before returning to the caller.
    599  1.2.2.1    riz  */
    600  1.2.2.1    riz static int
    601  1.2.2.1    riz read_and_decompress(const char *file, void **buf, size_t *len)
    602  1.2.2.1    riz {
    603  1.2.2.1    riz 	size_t off;
    604  1.2.2.1    riz 	ssize_t r;
    605  1.2.2.1    riz 	struct archive *a;
    606  1.2.2.1    riz 	struct archive_entry *ae;
    607  1.2.2.1    riz 
    608  1.2.2.1    riz 	if ((a = archive_read_new()) == NULL)
    609  1.2.2.1    riz 		errx(EXIT_FAILURE, "memory allocation failed");
    610  1.2.2.1    riz 
    611  1.2.2.1    riz 	if (archive_read_support_compression_all(a) != ARCHIVE_OK ||
    612  1.2.2.1    riz 	    archive_read_support_format_raw(a) != ARCHIVE_OK ||
    613  1.2.2.1    riz 	    archive_read_open_filename(a, file, 65536) != ARCHIVE_OK ||
    614  1.2.2.1    riz 	    archive_read_next_header(a, &ae) != ARCHIVE_OK)
    615  1.2.2.1    riz 		goto archive_error;
    616  1.2.2.1    riz 	*len = 65536;
    617  1.2.2.1    riz 	*buf = emalloc(*len);
    618  1.2.2.1    riz 	off = 0;
    619  1.2.2.1    riz 	for (;;) {
    620  1.2.2.1    riz 		r = archive_read_data(a, (char *)*buf + off, *len - off);
    621  1.2.2.1    riz 		if (r == ARCHIVE_OK) {
    622  1.2.2.1    riz 			archive_read_close(a);
    623  1.2.2.1    riz 			*len = off;
    624  1.2.2.1    riz 			return 0;
    625  1.2.2.1    riz 		}
    626  1.2.2.1    riz 		if (r <= 0) {
    627  1.2.2.1    riz 			free(*buf);
    628  1.2.2.1    riz 			break;
    629  1.2.2.1    riz 		}
    630  1.2.2.1    riz 		off += r;
    631  1.2.2.1    riz 		if (off == *len) {
    632  1.2.2.1    riz 			*len *= 2;
    633  1.2.2.1    riz 			if (*len < off) {
    634  1.2.2.1    riz 				warnx("File too large: %s", file);
    635  1.2.2.1    riz 				free(*buf);
    636  1.2.2.1    riz 				archive_read_close(a);
    637  1.2.2.1    riz 				return -1;
    638  1.2.2.1    riz 			}
    639  1.2.2.1    riz 			*buf = erealloc(*buf, *len);
    640  1.2.2.1    riz 		}
    641  1.2.2.1    riz 	}
    642  1.2.2.1    riz 
    643  1.2.2.1    riz archive_error:
    644  1.2.2.1    riz 	warnx("Error while reading `%s': %s", file, archive_error_string(a));
    645  1.2.2.1    riz 	archive_read_close(a);
    646  1.2.2.1    riz 	return -1;
    647  1.2.2.1    riz }
    648  1.2.2.1    riz 
    649      1.1  joerg /* update_db --
    650      1.1  joerg  *	Does an incremental updation of the database by checking the file_cache.
    651      1.1  joerg  *	It parses and adds the pages which are present in file_cache,
    652      1.1  joerg  *	but not in the database.
    653      1.1  joerg  *	It also removes the pages which are present in the databse,
    654      1.1  joerg  *	but not in the file_cache.
    655      1.1  joerg  */
    656      1.1  joerg static void
    657      1.1  joerg update_db(sqlite3 *db, struct mparse *mp, mandb_rec *rec)
    658      1.1  joerg {
    659      1.1  joerg 	const char *sqlstr;
    660      1.1  joerg 	sqlite3_stmt *stmt = NULL;
    661      1.1  joerg 	const char *file;
    662      1.1  joerg 	char *errmsg = NULL;
    663  1.2.2.1    riz 	char *md5sum;
    664  1.2.2.1    riz 	void *buf;
    665  1.2.2.1    riz 	size_t buflen;
    666      1.1  joerg 	int new_count = 0;	/* Counter for newly indexed/updated pages */
    667      1.1  joerg 	int total_count = 0;	/* Counter for total number of pages */
    668      1.1  joerg 	int err_count = 0;	/* Counter for number of failed pages */
    669      1.1  joerg 	int link_count = 0;	/* Counter for number of hard/sym links */
    670      1.1  joerg 	int md5_status;
    671      1.1  joerg 	int rc;
    672      1.1  joerg 
    673      1.1  joerg 	sqlstr = "SELECT device, inode, mtime, file FROM metadb.file_cache"
    674      1.1  joerg 		 " EXCEPT SELECT device, inode, mtime, file from mandb_meta";
    675      1.1  joerg 
    676      1.1  joerg 	rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
    677      1.1  joerg 	if (rc != SQLITE_OK) {
    678      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
    679      1.1  joerg 		close_db(db);
    680      1.1  joerg 		errx(EXIT_FAILURE, "Could not query file cache");
    681      1.1  joerg 	}
    682      1.1  joerg 
    683  1.2.2.1    riz 	buf = NULL;
    684      1.1  joerg 	while (sqlite3_step(stmt) == SQLITE_ROW) {
    685  1.2.2.1    riz 		free(buf);
    686      1.1  joerg 		total_count++;
    687      1.1  joerg 		rec->device = sqlite3_column_int64(stmt, 0);
    688      1.1  joerg 		rec->inode = sqlite3_column_int64(stmt, 1);
    689      1.1  joerg 		rec->mtime = sqlite3_column_int64(stmt, 2);
    690      1.1  joerg 		file = (const char *) sqlite3_column_text(stmt, 3);
    691  1.2.2.1    riz 		if (read_and_decompress(file, &buf, &buflen)) {
    692  1.2.2.1    riz 			err_count++;
    693  1.2.2.1    riz 			buf = NULL;
    694  1.2.2.1    riz 			continue;
    695  1.2.2.1    riz 		}
    696  1.2.2.1    riz 		md5_status = check_md5(file, db, "mandb_meta", &md5sum, buf, buflen);
    697  1.2.2.1    riz 		assert(md5sum != NULL);
    698      1.1  joerg 		if (md5_status == -1) {
    699      1.1  joerg 			warnx("An error occurred in checking md5 value"
    700      1.1  joerg 			      " for file %s", file);
    701      1.1  joerg 			err_count++;
    702      1.1  joerg 			continue;
    703      1.1  joerg 		}
    704      1.1  joerg 
    705      1.1  joerg 		if (md5_status == 0) {
    706      1.1  joerg 			/*
    707      1.1  joerg 			 * The MD5 hash is already present in the database,
    708      1.1  joerg 			 * so simply update the metadata, ignoring symlinks.
    709      1.1  joerg 			 */
    710      1.1  joerg 			struct stat sb;
    711      1.1  joerg 			stat(file, &sb);
    712      1.1  joerg 			if (S_ISLNK(sb.st_mode)) {
    713  1.2.2.1    riz 				free(md5sum);
    714      1.1  joerg 				link_count++;
    715      1.1  joerg 				continue;
    716      1.1  joerg 			}
    717  1.2.2.1    riz 			update_existing_entry(db, file, md5sum, rec,
    718      1.1  joerg 			    &new_count, &link_count, &err_count);
    719  1.2.2.1    riz 			free(md5sum);
    720      1.1  joerg 			continue;
    721      1.1  joerg 		}
    722      1.1  joerg 
    723      1.1  joerg 		if (md5_status == 1) {
    724      1.1  joerg 			/*
    725      1.1  joerg 			 * The MD5 hash was not present in the database.
    726      1.1  joerg 			 * This means is either a new file or an updated file.
    727      1.1  joerg 			 * We should go ahead with parsing.
    728      1.1  joerg 			 */
    729      1.1  joerg 			if (mflags.verbosity > 1)
    730      1.1  joerg 				printf("Parsing: %s\n", file);
    731  1.2.2.1    riz 			rec->md5_hash = md5sum;
    732      1.1  joerg 			rec->file_path = estrdup(file);
    733      1.1  joerg 			// file_path is freed by insert_into_db itself.
    734  1.2.2.1    riz 			begin_parse(file, mp, rec, buf, buflen);
    735      1.1  joerg 			if (insert_into_db(db, rec) < 0) {
    736      1.1  joerg 				warnx("Error in indexing %s", file);
    737      1.1  joerg 				err_count++;
    738      1.1  joerg 			} else {
    739      1.1  joerg 				new_count++;
    740      1.1  joerg 			}
    741      1.1  joerg 		}
    742      1.1  joerg 	}
    743  1.2.2.1    riz 	free(buf);
    744  1.2.2.1    riz 
    745      1.1  joerg 	sqlite3_finalize(stmt);
    746      1.1  joerg 
    747      1.1  joerg 	if (mflags.verbosity) {
    748      1.1  joerg 		printf("Total Number of new or updated pages enountered = %d\n"
    749      1.1  joerg 			"Total number of pages that were successfully"
    750      1.1  joerg 			" indexed/updated = %d\n"
    751      1.1  joerg 			"Total number of (hard or symbolic) links found = %d\n"
    752      1.1  joerg 			"Total number of pages that could not be indexed"
    753      1.1  joerg 			" due to errors = %d\n",
    754      1.1  joerg 			total_count, new_count, link_count, err_count);
    755      1.1  joerg 	}
    756      1.1  joerg 
    757      1.1  joerg 	if (mflags.recreate == 0)
    758      1.1  joerg 		return;
    759      1.1  joerg 
    760      1.1  joerg 	if (mflags.verbosity)
    761      1.1  joerg 		printf("Deleting stale index entries\n");
    762      1.1  joerg 
    763      1.1  joerg 	sqlstr = "DELETE FROM mandb_meta WHERE file NOT IN"
    764      1.1  joerg 		 " (SELECT file FROM metadb.file_cache);"
    765      1.1  joerg 		 "DROP TABLE metadb.file_cache;"
    766      1.1  joerg 		 "DELETE FROM mandb WHERE rowid NOT IN"
    767      1.1  joerg 		 " (SELECT id FROM mandb_meta);";
    768      1.1  joerg 
    769      1.1  joerg 	sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
    770      1.1  joerg 	if (errmsg != NULL) {
    771      1.1  joerg 		warnx("Removing old entries failed: %s", errmsg);
    772      1.1  joerg 		warnx("Please rebuild database from scratch with -f.");
    773      1.1  joerg 		free(errmsg);
    774      1.1  joerg 		return;
    775      1.1  joerg 	}
    776      1.1  joerg }
    777      1.1  joerg 
    778      1.1  joerg /*
    779      1.1  joerg  * begin_parse --
    780      1.1  joerg  *  parses the man page using libmandoc
    781      1.1  joerg  */
    782      1.1  joerg static void
    783  1.2.2.1    riz begin_parse(const char *file, struct mparse *mp, mandb_rec *rec,
    784  1.2.2.1    riz     const void *buf, size_t len)
    785      1.1  joerg {
    786      1.1  joerg 	struct mdoc *mdoc;
    787      1.1  joerg 	struct man *man;
    788      1.1  joerg 	mparse_reset(mp);
    789      1.1  joerg 
    790      1.1  joerg 	rec->xr_found = 0;
    791      1.1  joerg 
    792  1.2.2.1    riz 	if (mparse_readmem(mp, buf, len, file) >= MANDOCLEVEL_FATAL) {
    793      1.1  joerg 		warnx("%s: Parse failure", file);
    794      1.1  joerg 		return;
    795      1.1  joerg 	}
    796      1.1  joerg 
    797      1.1  joerg 	mparse_result(mp, &mdoc, &man);
    798      1.1  joerg 	if (mdoc == NULL && man == NULL) {
    799      1.1  joerg 		warnx("Not a man(7) or mdoc(7) page");
    800      1.1  joerg 		return;
    801      1.1  joerg 	}
    802      1.1  joerg 
    803      1.1  joerg 	set_machine(mdoc, rec);
    804      1.1  joerg 	set_section(mdoc, man, rec);
    805      1.1  joerg 	if (mdoc) {
    806      1.1  joerg 		rec->page_type = MDOC;
    807      1.1  joerg 		pmdoc_node(mdoc_node(mdoc), rec);
    808      1.1  joerg 	} else {
    809      1.1  joerg 		rec->page_type = MAN;
    810      1.1  joerg 		pman_node(man_node(man), rec);
    811      1.1  joerg 	}
    812      1.1  joerg }
    813      1.1  joerg 
    814      1.1  joerg /*
    815      1.1  joerg  * set_section --
    816      1.1  joerg  *  Extracts the section number and normalizes it to only the numeric part
    817      1.1  joerg  *  (Which should be the first character of the string).
    818      1.1  joerg  */
    819      1.1  joerg static void
    820      1.1  joerg set_section(const struct mdoc *md, const struct man *m, mandb_rec *rec)
    821      1.1  joerg {
    822      1.1  joerg 	if (md) {
    823      1.1  joerg 		const struct mdoc_meta *md_meta = mdoc_meta(md);
    824      1.1  joerg 		rec->section[0] = md_meta->msec[0];
    825      1.1  joerg 	} else if (m) {
    826      1.1  joerg 		const struct man_meta *m_meta = man_meta(m);
    827      1.1  joerg 		rec->section[0] = m_meta->msec[0];
    828      1.1  joerg 	}
    829      1.1  joerg }
    830      1.1  joerg 
    831      1.1  joerg /*
    832      1.1  joerg  * get_machine --
    833      1.1  joerg  *  Extracts the machine architecture information if available.
    834      1.1  joerg  */
    835      1.1  joerg static void
    836      1.1  joerg set_machine(const struct mdoc *md, mandb_rec *rec)
    837      1.1  joerg {
    838      1.1  joerg 	if (md == NULL)
    839      1.1  joerg 		return;
    840      1.1  joerg 	const struct mdoc_meta *md_meta = mdoc_meta(md);
    841      1.1  joerg 	if (md_meta->arch)
    842      1.1  joerg 		rec->machine = estrdup(md_meta->arch);
    843      1.1  joerg }
    844      1.1  joerg 
    845      1.1  joerg static void
    846      1.1  joerg pmdoc_node(const struct mdoc_node *n, mandb_rec *rec)
    847      1.1  joerg {
    848      1.1  joerg 
    849      1.1  joerg 	if (n == NULL)
    850      1.1  joerg 		return;
    851      1.1  joerg 
    852      1.1  joerg 	switch (n->type) {
    853      1.1  joerg 	case (MDOC_BODY):
    854      1.1  joerg 		/* FALLTHROUGH */
    855      1.1  joerg 	case (MDOC_TAIL):
    856      1.1  joerg 		/* FALLTHROUGH */
    857      1.1  joerg 	case (MDOC_ELEM):
    858      1.1  joerg 		if (mdocs[n->tok] == NULL)
    859      1.1  joerg 			break;
    860      1.1  joerg 		(*mdocs[n->tok])(n, rec);
    861      1.1  joerg 		break;
    862      1.1  joerg 	default:
    863      1.1  joerg 		break;
    864      1.1  joerg 	}
    865      1.1  joerg 
    866      1.1  joerg 	pmdoc_node(n->child, rec);
    867      1.1  joerg 	pmdoc_node(n->next, rec);
    868      1.1  joerg }
    869      1.1  joerg 
    870      1.1  joerg /*
    871      1.1  joerg  * pmdoc_Nm --
    872      1.1  joerg  *  Extracts the Name of the manual page from the .Nm macro
    873      1.1  joerg  */
    874      1.1  joerg static void
    875      1.1  joerg pmdoc_Nm(const struct mdoc_node *n, mandb_rec *rec)
    876      1.1  joerg {
    877      1.1  joerg 	if (n->sec != SEC_NAME)
    878      1.1  joerg 		return;
    879      1.1  joerg 
    880      1.1  joerg 	for (n = n->child; n; n = n->next) {
    881      1.1  joerg 		if (n->type == MDOC_TEXT) {
    882      1.1  joerg 			concat(&rec->name, n->string);
    883      1.1  joerg 		}
    884      1.1  joerg 	}
    885      1.1  joerg }
    886      1.1  joerg 
    887      1.1  joerg /*
    888      1.1  joerg  * pmdoc_Nd --
    889      1.1  joerg  *  Extracts the one line description of the man page from the .Nd macro
    890      1.1  joerg  */
    891      1.1  joerg static void
    892      1.1  joerg pmdoc_Nd(const struct mdoc_node *n, mandb_rec *rec)
    893      1.1  joerg {
    894      1.1  joerg 	/*
    895      1.1  joerg 	 * A static variable for keeping track of whether a Xr macro was seen
    896      1.1  joerg 	 * previously.
    897      1.1  joerg 	 */
    898      1.1  joerg 	char *buf = NULL;
    899      1.1  joerg 	char *temp;
    900      1.1  joerg 
    901      1.1  joerg 	if (n == NULL)
    902      1.1  joerg 		return;
    903      1.1  joerg 
    904      1.1  joerg 	if (n->type == MDOC_TEXT) {
    905      1.1  joerg 		if (rec->xr_found && n->next) {
    906      1.1  joerg 			/*
    907      1.1  joerg 			 * An Xr macro was seen previously, so parse this
    908      1.1  joerg 			 * and the next node.
    909      1.1  joerg 			 */
    910      1.1  joerg 			temp = estrdup(n->string);
    911      1.1  joerg 			n = n->next;
    912      1.1  joerg 			easprintf(&buf, "%s(%s)", temp, n->string);
    913      1.1  joerg 			concat(&rec->name_desc, buf);
    914      1.1  joerg 			free(buf);
    915      1.1  joerg 			free(temp);
    916      1.1  joerg 		} else {
    917      1.1  joerg 			concat(&rec->name_desc, n->string);
    918      1.1  joerg 		}
    919      1.1  joerg 		rec->xr_found = 0;
    920      1.1  joerg 	} else if (mdocs[n->tok] == pmdoc_Xr) {
    921      1.1  joerg 		/* Remember that we have encountered an Xr macro */
    922      1.1  joerg 		rec->xr_found = 1;
    923      1.1  joerg 	}
    924      1.1  joerg 
    925      1.1  joerg 	if (n->child)
    926      1.1  joerg 		pmdoc_Nd(n->child, rec);
    927      1.1  joerg 
    928      1.1  joerg 	if(n->next)
    929      1.1  joerg 		pmdoc_Nd(n->next, rec);
    930      1.1  joerg }
    931      1.1  joerg 
    932      1.1  joerg /*
    933      1.1  joerg  * pmdoc_macro_handler--
    934      1.1  joerg  *  This function is a single point of handling all the special macros that we
    935      1.1  joerg  *  want to handle especially. For example the .Xr macro for properly parsing
    936      1.1  joerg  *  the referenced page name along with the section number, or the .Pp macro
    937      1.1  joerg  *  for adding a new line whenever we encounter it.
    938      1.1  joerg  */
    939      1.1  joerg static void
    940      1.1  joerg pmdoc_macro_handler(const struct mdoc_node *n, mandb_rec *rec, enum mdoct doct)
    941      1.1  joerg {
    942      1.1  joerg 	const struct mdoc_node *sn;
    943      1.1  joerg 	assert(n);
    944      1.1  joerg 
    945      1.1  joerg 	switch (doct) {
    946      1.1  joerg 	/*  Parse the man page references.
    947      1.1  joerg 	 * Basically the .Xr macros are used like:
    948      1.1  joerg 	 *  .Xr ls 1
    949      1.1  joerg  	 *  and formatted like this:
    950      1.1  joerg 	 *  ls(1)
    951      1.1  joerg 	 *  Prepare a buffer to format the data like the above example and call
    952      1.1  joerg 	 *  pmdoc_parse_section to append it.
    953      1.1  joerg 	 */
    954      1.1  joerg 	case MDOC_Xr:
    955      1.1  joerg 		n = n->child;
    956      1.1  joerg 		while (n->type != MDOC_TEXT && n->next)
    957      1.1  joerg 			n = n->next;
    958      1.1  joerg 
    959      1.1  joerg 		if (n && n->type != MDOC_TEXT)
    960      1.1  joerg 			return;
    961      1.1  joerg 		sn = n;
    962      1.1  joerg 		if (n->next)
    963      1.1  joerg 			n = n->next;
    964      1.1  joerg 
    965      1.1  joerg 		while (n->type != MDOC_TEXT && n->next)
    966      1.1  joerg 			n = n->next;
    967      1.1  joerg 
    968      1.1  joerg 		if (n && n->type == MDOC_TEXT) {
    969      1.1  joerg 			size_t len = strlen(sn->string);
    970      1.1  joerg 			char *buf = emalloc(len + 4);
    971      1.1  joerg 			memcpy(buf, sn->string, len);
    972      1.1  joerg 			buf[len] = '(';
    973      1.1  joerg 			buf[len + 1] = n->string[0];
    974      1.1  joerg 			buf[len + 2] = ')';
    975      1.1  joerg 			buf[len + 3] = 0;
    976      1.1  joerg 			mdoc_parse_section(n->sec, buf, rec);
    977      1.1  joerg 			free(buf);
    978      1.1  joerg 		}
    979      1.1  joerg 
    980      1.1  joerg 		break;
    981      1.1  joerg 
    982      1.1  joerg 	/* Parse the .Pp macro to add a new line */
    983      1.1  joerg 	case MDOC_Pp:
    984      1.1  joerg 		if (n->type == MDOC_TEXT)
    985      1.1  joerg 			mdoc_parse_section(n->sec, "\n", rec);
    986      1.1  joerg 		break;
    987      1.1  joerg 	default:
    988      1.1  joerg 		break;
    989      1.1  joerg 	}
    990      1.1  joerg 
    991      1.1  joerg }
    992      1.1  joerg 
    993      1.1  joerg /*
    994      1.1  joerg  * pmdoc_Xr, pmdoc_Pp--
    995      1.1  joerg  *  Empty stubs.
    996      1.1  joerg  *  The parser calls these functions each time it encounters
    997      1.1  joerg  *  a .Xr or .Pp macro. We are parsing all the data from
    998      1.1  joerg  *  the pmdoc_Sh function, so don't do anything here.
    999      1.1  joerg  *  (See if else blocks in pmdoc_Sh.)
   1000      1.1  joerg  */
   1001      1.1  joerg static void
   1002      1.1  joerg pmdoc_Xr(const struct mdoc_node *n, mandb_rec *rec)
   1003      1.1  joerg {
   1004      1.1  joerg }
   1005      1.1  joerg 
   1006      1.1  joerg static void
   1007      1.1  joerg pmdoc_Pp(const struct mdoc_node *n, mandb_rec *rec)
   1008      1.1  joerg {
   1009      1.1  joerg }
   1010      1.1  joerg 
   1011      1.1  joerg /*
   1012      1.1  joerg  * pmdoc_Sh --
   1013      1.1  joerg  *  Called when a .Sh macro is encountered and loops through its body, calling
   1014      1.1  joerg  *  mdoc_parse_section to append the data to the section specific buffer.
   1015      1.1  joerg  *  Two special macros which may occur inside the body of Sh are .Nm and .Xr and
   1016      1.1  joerg  *  they need special handling, thus the separate if branches for them.
   1017      1.1  joerg  */
   1018      1.1  joerg static void
   1019      1.1  joerg pmdoc_Sh(const struct mdoc_node *n, mandb_rec *rec)
   1020      1.1  joerg {
   1021      1.1  joerg 	if (n == NULL)
   1022      1.1  joerg 		return;
   1023      1.1  joerg 	int xr_found = 0;
   1024      1.1  joerg 
   1025      1.1  joerg 	if (n->type == MDOC_TEXT) {
   1026      1.1  joerg 		mdoc_parse_section(n->sec, n->string, rec);
   1027      1.1  joerg 	} else if (mdocs[n->tok] == pmdoc_Nm && rec->name != NULL) {
   1028      1.1  joerg 		/*
   1029      1.1  joerg 		 * When encountering a .Nm macro, substitute it
   1030      1.1  joerg 		 * with its previously cached value of the argument.
   1031      1.1  joerg 		 */
   1032      1.1  joerg 		mdoc_parse_section(n->sec, rec->name, rec);
   1033      1.1  joerg 	} else if (mdocs[n->tok] == pmdoc_Xr) {
   1034      1.1  joerg 		/*
   1035      1.1  joerg 		 * When encountering other inline macros,
   1036      1.1  joerg 		 * call pmdoc_macro_handler.
   1037      1.1  joerg 		 */
   1038      1.1  joerg 		pmdoc_macro_handler(n, rec, MDOC_Xr);
   1039      1.1  joerg 		xr_found = 1;
   1040      1.1  joerg 	} else if (mdocs[n->tok] == pmdoc_Pp) {
   1041      1.1  joerg 		pmdoc_macro_handler(n, rec, MDOC_Pp);
   1042      1.1  joerg 	}
   1043      1.1  joerg 
   1044      1.1  joerg 	/*
   1045      1.1  joerg 	 * If an Xr macro was encountered then the child node has
   1046      1.1  joerg 	 * already been explored by pmdoc_macro_handler.
   1047      1.1  joerg 	 */
   1048      1.1  joerg 	if (xr_found == 0)
   1049      1.1  joerg 		pmdoc_Sh(n->child, rec);
   1050      1.1  joerg 	pmdoc_Sh(n->next, rec);
   1051      1.1  joerg }
   1052      1.1  joerg 
   1053      1.1  joerg /*
   1054      1.1  joerg  * mdoc_parse_section--
   1055      1.1  joerg  *  Utility function for parsing sections of the mdoc type pages.
   1056      1.1  joerg  *  Takes two params:
   1057      1.1  joerg  *   1. sec is an enum which indicates the section in which we are present
   1058      1.1  joerg  *   2. string is the string which we need to append to the secbuff for this
   1059      1.1  joerg  *      particular section.
   1060      1.1  joerg  *  The function appends string to the global section buffer and returns.
   1061      1.1  joerg  */
   1062      1.1  joerg static void
   1063      1.1  joerg mdoc_parse_section(enum mdoc_sec sec, const char *string, mandb_rec *rec)
   1064      1.1  joerg {
   1065      1.1  joerg 	/*
   1066      1.1  joerg 	 * If the user specified the 'l' flag, then parse and store only the
   1067      1.1  joerg 	 * NAME section. Ignore the rest.
   1068      1.1  joerg 	 */
   1069      1.1  joerg 	if (mflags.limit)
   1070      1.1  joerg 		return;
   1071      1.1  joerg 
   1072      1.1  joerg 	switch (sec) {
   1073      1.1  joerg 	case SEC_LIBRARY:
   1074      1.1  joerg 		append(&rec->lib, string);
   1075      1.1  joerg 		break;
   1076      1.1  joerg 	case SEC_RETURN_VALUES:
   1077      1.1  joerg 		append(&rec->return_vals, string);
   1078      1.1  joerg 		break;
   1079      1.1  joerg 	case SEC_ENVIRONMENT:
   1080      1.1  joerg 		append(&rec->env, string);
   1081      1.1  joerg 		break;
   1082      1.1  joerg 	case SEC_FILES:
   1083      1.1  joerg 		append(&rec->files, string);
   1084      1.1  joerg 		break;
   1085      1.1  joerg 	case SEC_EXIT_STATUS:
   1086      1.1  joerg 		append(&rec->exit_status, string);
   1087      1.1  joerg 		break;
   1088      1.1  joerg 	case SEC_DIAGNOSTICS:
   1089      1.1  joerg 		append(&rec->diagnostics, string);
   1090      1.1  joerg 		break;
   1091      1.1  joerg 	case SEC_ERRORS:
   1092      1.1  joerg 		append(&rec->errors, string);
   1093      1.1  joerg 		break;
   1094      1.1  joerg 	case SEC_NAME:
   1095      1.1  joerg 	case SEC_SYNOPSIS:
   1096      1.1  joerg 	case SEC_EXAMPLES:
   1097      1.1  joerg 	case SEC_STANDARDS:
   1098      1.1  joerg 	case SEC_HISTORY:
   1099      1.1  joerg 	case SEC_AUTHORS:
   1100      1.1  joerg 	case SEC_BUGS:
   1101      1.1  joerg 		break;
   1102      1.1  joerg 	default:
   1103      1.1  joerg 		append(&rec->desc, string);
   1104      1.1  joerg 		break;
   1105      1.1  joerg 	}
   1106      1.1  joerg }
   1107      1.1  joerg 
   1108      1.1  joerg static void
   1109      1.1  joerg pman_node(const struct man_node *n, mandb_rec *rec)
   1110      1.1  joerg {
   1111      1.1  joerg 	if (n == NULL)
   1112      1.1  joerg 		return;
   1113      1.1  joerg 
   1114      1.1  joerg 	switch (n->type) {
   1115      1.1  joerg 	case (MAN_BODY):
   1116      1.1  joerg 		/* FALLTHROUGH */
   1117      1.1  joerg 	case (MAN_TAIL):
   1118      1.1  joerg 		/* FALLTHROUGH */
   1119      1.1  joerg 	case (MAN_BLOCK):
   1120      1.1  joerg 		/* FALLTHROUGH */
   1121      1.1  joerg 	case (MAN_ELEM):
   1122      1.1  joerg 		if (mans[n->tok] != NULL)
   1123      1.1  joerg 			(*mans[n->tok])(n, rec);
   1124      1.1  joerg 		break;
   1125      1.1  joerg 	default:
   1126      1.1  joerg 		break;
   1127      1.1  joerg 	}
   1128      1.1  joerg 
   1129      1.1  joerg 	pman_node(n->child, rec);
   1130      1.1  joerg 	pman_node(n->next, rec);
   1131      1.1  joerg }
   1132      1.1  joerg 
   1133      1.1  joerg /*
   1134      1.1  joerg  * pman_parse_name --
   1135      1.1  joerg  *  Parses the NAME section and puts the complete content in the name_desc
   1136      1.1  joerg  *  variable.
   1137      1.1  joerg  */
   1138      1.1  joerg static void
   1139      1.1  joerg pman_parse_name(const struct man_node *n, mandb_rec *rec)
   1140      1.1  joerg {
   1141      1.1  joerg 	if (n == NULL)
   1142      1.1  joerg 		return;
   1143      1.1  joerg 
   1144      1.1  joerg 	if (n->type == MAN_TEXT) {
   1145      1.1  joerg 		char *tmp = parse_escape(n->string);
   1146      1.1  joerg 		concat(&rec->name_desc, tmp);
   1147      1.1  joerg 		free(tmp);
   1148      1.1  joerg 	}
   1149      1.1  joerg 
   1150      1.1  joerg 	if (n->child)
   1151      1.1  joerg 		pman_parse_name(n->child, rec);
   1152      1.1  joerg 
   1153      1.1  joerg 	if(n->next)
   1154      1.1  joerg 		pman_parse_name(n->next, rec);
   1155      1.1  joerg }
   1156      1.1  joerg 
   1157      1.1  joerg /*
   1158      1.1  joerg  * A stub function to be able to parse the macros like .B embedded inside
   1159      1.1  joerg  * a section.
   1160      1.1  joerg  */
   1161      1.1  joerg static void
   1162      1.1  joerg pman_block(const struct man_node *n, mandb_rec *rec)
   1163      1.1  joerg {
   1164      1.1  joerg }
   1165      1.1  joerg 
   1166      1.1  joerg /*
   1167      1.1  joerg  * pman_sh --
   1168      1.1  joerg  * This function does one of the two things:
   1169      1.1  joerg  *  1. If the present section is NAME, then it will:
   1170      1.1  joerg  *    (a) Extract the name of the page (in case of multiple comma separated
   1171      1.1  joerg  *        names, it will pick up the first one).
   1172      1.1  joerg  *    (b) Build a space spearated list of all the symlinks/hardlinks to
   1173      1.1  joerg  *        this page and store in the buffer 'links'. These are extracted from
   1174      1.1  joerg  *        the comma separated list of names in the NAME section as well.
   1175      1.1  joerg  *    (c) Move on to the one line description section, which is after the list
   1176      1.1  joerg  *        of names in the NAME section.
   1177      1.1  joerg  *  2. Otherwise, it will check the section name and call the man_parse_section
   1178      1.1  joerg  *     function, passing the enum corresponding that section.
   1179      1.1  joerg  */
   1180      1.1  joerg static void
   1181      1.1  joerg pman_sh(const struct man_node *n, mandb_rec *rec)
   1182      1.1  joerg {
   1183      1.1  joerg 	static const struct {
   1184      1.1  joerg 		enum man_sec section;
   1185      1.1  joerg 		const char *header;
   1186      1.1  joerg 	} mapping[] = {
   1187      1.1  joerg 	    { MANSEC_DESCRIPTION, "DESCRIPTION" },
   1188      1.1  joerg 	    { MANSEC_SYNOPSIS, "SYNOPSIS" },
   1189      1.1  joerg 	    { MANSEC_LIBRARY, "LIBRARY" },
   1190      1.1  joerg 	    { MANSEC_ERRORS, "ERRORS" },
   1191      1.1  joerg 	    { MANSEC_FILES, "FILES" },
   1192      1.1  joerg 	    { MANSEC_RETURN_VALUES, "RETURN VALUE" },
   1193      1.1  joerg 	    { MANSEC_RETURN_VALUES, "RETURN VALUES" },
   1194      1.1  joerg 	    { MANSEC_EXIT_STATUS, "EXIT STATUS" },
   1195      1.1  joerg 	    { MANSEC_EXAMPLES, "EXAMPLES" },
   1196      1.1  joerg 	    { MANSEC_EXAMPLES, "EXAMPLE" },
   1197      1.1  joerg 	    { MANSEC_STANDARDS, "STANDARDS" },
   1198      1.1  joerg 	    { MANSEC_HISTORY, "HISTORY" },
   1199      1.1  joerg 	    { MANSEC_BUGS, "BUGS" },
   1200      1.1  joerg 	    { MANSEC_AUTHORS, "AUTHORS" },
   1201      1.1  joerg 	    { MANSEC_COPYRIGHT, "COPYRIGHT" },
   1202      1.1  joerg 	};
   1203      1.1  joerg 	const struct man_node *head;
   1204      1.1  joerg 	char *name_desc;
   1205      1.1  joerg 	int sz;
   1206      1.1  joerg 	size_t i;
   1207      1.1  joerg 
   1208      1.1  joerg 	if ((head = n->parent->head) == NULL || (head = head->child) == NULL ||
   1209      1.1  joerg 	    head->type != MAN_TEXT)
   1210      1.1  joerg 		return;
   1211      1.1  joerg 
   1212      1.1  joerg 	/*
   1213      1.1  joerg 	 * Check if this section should be extracted and
   1214      1.1  joerg 	 * where it should be stored. Handled the trival cases first.
   1215      1.1  joerg 	 */
   1216      1.1  joerg 	for (i = 0; i < sizeof(mapping) / sizeof(mapping[0]); ++i) {
   1217      1.1  joerg 		if (strcmp(head->string, mapping[i].header) == 0) {
   1218      1.1  joerg 			man_parse_section(mapping[i].section, n, rec);
   1219      1.1  joerg 			return;
   1220      1.1  joerg 		}
   1221      1.1  joerg 	}
   1222      1.1  joerg 
   1223      1.1  joerg 	if (strcmp(head->string, "NAME") == 0) {
   1224      1.1  joerg 		/*
   1225      1.1  joerg 		 * We are in the NAME section.
   1226      1.1  joerg 		 * pman_parse_name will put the complete content in name_desc.
   1227      1.1  joerg 		 */
   1228      1.1  joerg 		pman_parse_name(n, rec);
   1229      1.1  joerg 
   1230      1.1  joerg 		name_desc = rec->name_desc;
   1231      1.1  joerg 
   1232      1.1  joerg 		/* Remove any leading spaces. */
   1233      1.1  joerg 		while (name_desc[0] == ' ')
   1234      1.1  joerg 			name_desc++;
   1235      1.1  joerg 
   1236      1.1  joerg 		/* If the line begins with a "\&", avoid those */
   1237      1.1  joerg 		if (name_desc[0] == '\\' && name_desc[1] == '&')
   1238      1.1  joerg 			name_desc += 2;
   1239      1.1  joerg 
   1240      1.1  joerg 		/* Now name_desc should be left with a comma-space
   1241      1.1  joerg 		 * separated list of names and the one line description
   1242      1.1  joerg 		 * of the page:
   1243      1.1  joerg 		 *     "a, b, c \- sample description"
   1244      1.1  joerg 		 * Take out the first name, before the first comma
   1245      1.1  joerg 		 * (or space) and store it in rec->name.
   1246      1.1  joerg 		 * If the page has aliases then they should be
   1247      1.1  joerg 		 * in the form of a comma separated list.
   1248      1.1  joerg 		 * Keep looping while there is a comma in name_desc,
   1249      1.1  joerg 		 * extract the alias name and store in rec->links.
   1250      1.1  joerg 		 * When there are no more commas left, break out.
   1251      1.1  joerg 		 */
   1252      1.1  joerg 		int has_alias = 0;	// Any more aliases left?
   1253      1.1  joerg 		while (*name_desc) {
   1254      1.1  joerg 			/* Remove any leading spaces. */
   1255      1.1  joerg 			if (name_desc[0] == ' ') {
   1256      1.1  joerg 				name_desc++;
   1257      1.1  joerg 				continue;
   1258      1.1  joerg 			}
   1259      1.1  joerg 			sz = strcspn(name_desc, ", ");
   1260      1.1  joerg 
   1261      1.1  joerg 			/* Extract the first term and store it in rec->name. */
   1262      1.1  joerg 			if (rec->name == NULL) {
   1263      1.1  joerg 				if (name_desc[sz] == ',')
   1264      1.1  joerg 					has_alias = 1;
   1265      1.1  joerg 				name_desc[sz] = 0;
   1266      1.1  joerg 				rec->name = emalloc(sz + 1);
   1267      1.1  joerg 				memcpy(rec->name, name_desc, sz + 1);
   1268      1.1  joerg 				name_desc += sz + 1;
   1269      1.1  joerg 				continue;
   1270      1.1  joerg 			}
   1271      1.1  joerg 
   1272      1.1  joerg 			/*
   1273      1.1  joerg 			 * Once rec->name is set, rest of the names
   1274      1.1  joerg 			 * are to be treated as links or aliases.
   1275      1.1  joerg 			 */
   1276      1.1  joerg 			if (rec->name && has_alias) {
   1277      1.1  joerg 				if (name_desc[sz] != ',') {
   1278      1.1  joerg 					/* No more commas left -->
   1279      1.1  joerg 					 * no more aliases to take out
   1280      1.1  joerg 					 */
   1281      1.1  joerg 					has_alias = 0;
   1282      1.1  joerg 				}
   1283      1.1  joerg 				name_desc[sz] = 0;
   1284      1.1  joerg 				concat2(&rec->links, name_desc, sz);
   1285      1.1  joerg 				name_desc += sz + 1;
   1286      1.1  joerg 				continue;
   1287      1.1  joerg 			}
   1288      1.1  joerg 			break;
   1289      1.1  joerg 		}
   1290      1.1  joerg 
   1291      1.1  joerg 		/* Parse any escape sequences that might be there */
   1292      1.1  joerg 		char *temp = parse_escape(name_desc);
   1293      1.1  joerg 		free(rec->name_desc);
   1294      1.1  joerg 		rec->name_desc = temp;
   1295      1.1  joerg 		temp = parse_escape(rec->name);
   1296      1.1  joerg 		free(rec->name);
   1297      1.1  joerg 		rec->name = temp;
   1298      1.1  joerg 		return;
   1299      1.1  joerg 	}
   1300      1.1  joerg 
   1301      1.1  joerg 	/* The RETURN VALUE section might be specified in multiple ways */
   1302      1.1  joerg 	if (strcmp(head->string, "RETURN") == 0 &&
   1303      1.1  joerg 	    head->next != NULL && head->next->type == MAN_TEXT &&
   1304      1.1  joerg 	    (strcmp(head->next->string, "VALUE") == 0 ||
   1305      1.1  joerg 	    strcmp(head->next->string, "VALUES") == 0)) {
   1306      1.1  joerg 		man_parse_section(MANSEC_RETURN_VALUES, n, rec);
   1307      1.1  joerg 		return;
   1308      1.1  joerg 	}
   1309      1.1  joerg 
   1310      1.1  joerg 	/*
   1311      1.1  joerg 	 * EXIT STATUS section can also be specified all on one line or on two
   1312      1.1  joerg 	 * separate lines.
   1313      1.1  joerg 	 */
   1314      1.1  joerg 	if (strcmp(head->string, "EXIT") == 0 &&
   1315      1.1  joerg 	    head->next != NULL && head->next->type == MAN_TEXT &&
   1316      1.1  joerg 	    strcmp(head->next->string, "STATUS") == 0) {
   1317      1.1  joerg 		man_parse_section(MANSEC_EXIT_STATUS, n, rec);
   1318      1.1  joerg 		return;
   1319      1.1  joerg 	}
   1320      1.1  joerg 
   1321      1.1  joerg 	/* Store the rest of the content in desc. */
   1322      1.1  joerg 	man_parse_section(MANSEC_NONE, n, rec);
   1323      1.1  joerg }
   1324      1.1  joerg 
   1325      1.1  joerg /*
   1326      1.1  joerg  * pman_parse_node --
   1327      1.1  joerg  *  Generic function to iterate through a node. Usually called from
   1328      1.1  joerg  *  man_parse_section to parse a particular section of the man page.
   1329      1.1  joerg  */
   1330      1.1  joerg static void
   1331      1.1  joerg pman_parse_node(const struct man_node *n, secbuff *s)
   1332      1.1  joerg {
   1333      1.1  joerg 	if (n == NULL)
   1334      1.1  joerg 		return;
   1335      1.1  joerg 
   1336      1.1  joerg 	if (n->type == MAN_TEXT)
   1337      1.1  joerg 		append(s, n->string);
   1338      1.1  joerg 
   1339      1.1  joerg 	pman_parse_node(n->child, s);
   1340      1.1  joerg 	pman_parse_node(n->next, s);
   1341      1.1  joerg }
   1342      1.1  joerg 
   1343      1.1  joerg /*
   1344      1.1  joerg  * man_parse_section --
   1345      1.1  joerg  *  Takes two parameters:
   1346      1.1  joerg  *   sec: Tells which section we are present in
   1347      1.1  joerg  *   n: Is the present node of the AST.
   1348      1.1  joerg  * Depending on the section, we call pman_parse_node to parse that section and
   1349      1.1  joerg  * concatenate the content from that section into the buffer for that section.
   1350      1.1  joerg  */
   1351      1.1  joerg static void
   1352      1.1  joerg man_parse_section(enum man_sec sec, const struct man_node *n, mandb_rec *rec)
   1353      1.1  joerg {
   1354      1.1  joerg 	/*
   1355      1.1  joerg 	 * If the user sepecified the 'l' flag then just parse
   1356      1.1  joerg 	 * the NAME section, ignore the rest.
   1357      1.1  joerg 	 */
   1358      1.1  joerg 	if (mflags.limit)
   1359      1.1  joerg 		return;
   1360      1.1  joerg 
   1361      1.1  joerg 	switch (sec) {
   1362      1.1  joerg 	case MANSEC_LIBRARY:
   1363      1.1  joerg 		pman_parse_node(n, &rec->lib);
   1364      1.1  joerg 		break;
   1365      1.1  joerg 	case MANSEC_RETURN_VALUES:
   1366      1.1  joerg 		pman_parse_node(n, &rec->return_vals);
   1367      1.1  joerg 		break;
   1368      1.1  joerg 	case MANSEC_ENVIRONMENT:
   1369      1.1  joerg 		pman_parse_node(n, &rec->env);
   1370      1.1  joerg 		break;
   1371      1.1  joerg 	case MANSEC_FILES:
   1372      1.1  joerg 		pman_parse_node(n, &rec->files);
   1373      1.1  joerg 		break;
   1374      1.1  joerg 	case MANSEC_EXIT_STATUS:
   1375      1.1  joerg 		pman_parse_node(n, &rec->exit_status);
   1376      1.1  joerg 		break;
   1377      1.1  joerg 	case MANSEC_DIAGNOSTICS:
   1378      1.1  joerg 		pman_parse_node(n, &rec->diagnostics);
   1379      1.1  joerg 		break;
   1380      1.1  joerg 	case MANSEC_ERRORS:
   1381      1.1  joerg 		pman_parse_node(n, &rec->errors);
   1382      1.1  joerg 		break;
   1383      1.1  joerg 	case MANSEC_NAME:
   1384      1.1  joerg 	case MANSEC_SYNOPSIS:
   1385      1.1  joerg 	case MANSEC_EXAMPLES:
   1386      1.1  joerg 	case MANSEC_STANDARDS:
   1387      1.1  joerg 	case MANSEC_HISTORY:
   1388      1.1  joerg 	case MANSEC_BUGS:
   1389      1.1  joerg 	case MANSEC_AUTHORS:
   1390      1.1  joerg 	case MANSEC_COPYRIGHT:
   1391      1.1  joerg 		break;
   1392      1.1  joerg 	default:
   1393      1.1  joerg 		pman_parse_node(n, &rec->desc);
   1394      1.1  joerg 		break;
   1395      1.1  joerg 	}
   1396      1.1  joerg 
   1397      1.1  joerg }
   1398      1.1  joerg 
   1399      1.1  joerg /*
   1400      1.1  joerg  * insert_into_db --
   1401      1.1  joerg  *  Inserts the parsed data of the man page in the Sqlite databse.
   1402      1.1  joerg  *  If any of the values is NULL, then we cleanup and return -1 indicating
   1403      1.1  joerg  *  an error.
   1404      1.1  joerg  *  Otherwise, store the data in the database and return 0.
   1405      1.1  joerg  */
   1406      1.1  joerg static int
   1407      1.1  joerg insert_into_db(sqlite3 *db, mandb_rec *rec)
   1408      1.1  joerg {
   1409      1.1  joerg 	int rc = 0;
   1410      1.1  joerg 	int idx = -1;
   1411      1.1  joerg 	const char *sqlstr = NULL;
   1412      1.1  joerg 	sqlite3_stmt *stmt = NULL;
   1413      1.1  joerg 	char *ln = NULL;
   1414      1.1  joerg 	char *errmsg = NULL;
   1415      1.1  joerg 	long int mandb_rowid;
   1416      1.1  joerg 
   1417      1.1  joerg 	/*
   1418      1.1  joerg 	 * At the very minimum we want to make sure that we store
   1419      1.1  joerg 	 * the following data:
   1420      1.1  joerg 	 *   Name, one line description, and the MD5 hash
   1421      1.1  joerg 	 */
   1422      1.1  joerg 	if (rec->name == NULL || rec->name_desc == NULL ||
   1423      1.1  joerg 	    rec->md5_hash == NULL) {
   1424      1.1  joerg 		cleanup(rec);
   1425      1.1  joerg 		return -1;
   1426      1.1  joerg 	}
   1427      1.1  joerg 
   1428      1.1  joerg 	/* Write null byte at the end of all the sec_buffs */
   1429      1.1  joerg 	rec->desc.data[rec->desc.offset] = 0;
   1430      1.1  joerg 	rec->lib.data[rec->lib.offset] = 0;
   1431      1.1  joerg 	rec->env.data[rec->env.offset] = 0;
   1432      1.1  joerg 	rec->return_vals.data[rec->return_vals.offset] = 0;
   1433      1.1  joerg 	rec->exit_status.data[rec->exit_status.offset] = 0;
   1434      1.1  joerg 	rec->files.data[rec->files.offset] = 0;
   1435      1.1  joerg 	rec->diagnostics.data[rec->diagnostics.offset] = 0;
   1436      1.1  joerg 	rec->errors.data[rec->errors.offset] = 0;
   1437      1.1  joerg 
   1438      1.1  joerg 	/*
   1439      1.1  joerg 	 * In case of a mdoc page: (sorry, no better place to put this code)
   1440      1.1  joerg 	 * parse the comma separated list of names of man pages,
   1441      1.1  joerg 	 * the first name will be stored in the mandb table, rest will be
   1442      1.1  joerg 	 * treated as links and put in the mandb_links table.
   1443      1.1  joerg 	 */
   1444      1.1  joerg 	if (rec->page_type == MDOC) {
   1445      1.1  joerg 		char *tmp;
   1446      1.1  joerg 		rec->links = estrdup(rec->name);
   1447      1.1  joerg 		free(rec->name);
   1448      1.1  joerg 		int sz = strcspn(rec->links, " \0");
   1449      1.1  joerg 		rec->name = emalloc(sz + 1);
   1450      1.1  joerg 		memcpy(rec->name, rec->links, sz);
   1451      1.1  joerg 		if(rec->name[sz - 1] == ',')
   1452      1.1  joerg 			rec->name[sz - 1] = 0;
   1453      1.1  joerg 		else
   1454      1.1  joerg 			rec->name[sz] = 0;
   1455      1.1  joerg 		while (rec->links[sz] == ' ')
   1456      1.1  joerg 			++sz;
   1457      1.1  joerg 		tmp = estrdup(rec->links + sz);
   1458      1.1  joerg 		free(rec->links);
   1459      1.1  joerg 		rec->links = tmp;
   1460      1.1  joerg 	}
   1461      1.1  joerg 
   1462      1.1  joerg /*------------------------ Populate the mandb table---------------------------*/
   1463      1.1  joerg 	sqlstr = "INSERT INTO mandb VALUES (:section, :name, :name_desc, :desc,"
   1464      1.1  joerg 		 " :lib, :return_vals, :env, :files, :exit_status,"
   1465      1.1  joerg 		 " :diagnostics, :errors, :md5_hash, :machine)";
   1466      1.1  joerg 
   1467      1.1  joerg 	rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
   1468      1.1  joerg 	if (rc != SQLITE_OK)
   1469      1.1  joerg 		goto Out;
   1470      1.1  joerg 
   1471      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":name");
   1472      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->name, -1, NULL);
   1473      1.1  joerg 	if (rc != SQLITE_OK) {
   1474      1.1  joerg 		sqlite3_finalize(stmt);
   1475      1.1  joerg 		goto Out;
   1476      1.1  joerg 	}
   1477      1.1  joerg 
   1478      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":section");
   1479      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->section, -1, NULL);
   1480      1.1  joerg 	if (rc != SQLITE_OK) {
   1481      1.1  joerg 		sqlite3_finalize(stmt);
   1482      1.1  joerg 		goto Out;
   1483      1.1  joerg 	}
   1484      1.1  joerg 
   1485      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":name_desc");
   1486      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->name_desc, -1, NULL);
   1487      1.1  joerg 	if (rc != SQLITE_OK) {
   1488      1.1  joerg 		sqlite3_finalize(stmt);
   1489      1.1  joerg 		goto Out;
   1490      1.1  joerg 	}
   1491      1.1  joerg 
   1492      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":desc");
   1493      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->desc.data,
   1494      1.1  joerg 	                       rec->desc.offset + 1, NULL);
   1495      1.1  joerg 	if (rc != SQLITE_OK) {
   1496      1.1  joerg 		sqlite3_finalize(stmt);
   1497      1.1  joerg 		goto Out;
   1498      1.1  joerg 	}
   1499      1.1  joerg 
   1500      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":lib");
   1501      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->lib.data, rec->lib.offset + 1, NULL);
   1502      1.1  joerg 	if (rc != SQLITE_OK) {
   1503      1.1  joerg 		sqlite3_finalize(stmt);
   1504      1.1  joerg 		goto Out;
   1505      1.1  joerg 	}
   1506      1.1  joerg 
   1507      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":return_vals");
   1508      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->return_vals.data,
   1509      1.1  joerg 	                      rec->return_vals.offset + 1, NULL);
   1510      1.1  joerg 	if (rc != SQLITE_OK) {
   1511      1.1  joerg 		sqlite3_finalize(stmt);
   1512      1.1  joerg 		goto Out;
   1513      1.1  joerg 	}
   1514      1.1  joerg 
   1515      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":env");
   1516      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->env.data, rec->env.offset + 1, NULL);
   1517      1.1  joerg 	if (rc != SQLITE_OK) {
   1518      1.1  joerg 		sqlite3_finalize(stmt);
   1519      1.1  joerg 		goto Out;
   1520      1.1  joerg 	}
   1521      1.1  joerg 
   1522      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":files");
   1523      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->files.data,
   1524      1.1  joerg 	                       rec->files.offset + 1, NULL);
   1525      1.1  joerg 	if (rc != SQLITE_OK) {
   1526      1.1  joerg 		sqlite3_finalize(stmt);
   1527      1.1  joerg 		goto Out;
   1528      1.1  joerg 	}
   1529      1.1  joerg 
   1530      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":exit_status");
   1531      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->exit_status.data,
   1532      1.1  joerg 	                       rec->exit_status.offset + 1, NULL);
   1533      1.1  joerg 	if (rc != SQLITE_OK) {
   1534      1.1  joerg 		sqlite3_finalize(stmt);
   1535      1.1  joerg 		goto Out;
   1536      1.1  joerg 	}
   1537      1.1  joerg 
   1538      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":diagnostics");
   1539      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->diagnostics.data,
   1540      1.1  joerg 	                       rec->diagnostics.offset + 1, NULL);
   1541      1.1  joerg 	if (rc != SQLITE_OK) {
   1542      1.1  joerg 		sqlite3_finalize(stmt);
   1543      1.1  joerg 		goto Out;
   1544      1.1  joerg 	}
   1545      1.1  joerg 
   1546      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":errors");
   1547      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->errors.data,
   1548      1.1  joerg 	                       rec->errors.offset + 1, NULL);
   1549      1.1  joerg 	if (rc != SQLITE_OK) {
   1550      1.1  joerg 		sqlite3_finalize(stmt);
   1551      1.1  joerg 		goto Out;
   1552      1.1  joerg 	}
   1553      1.1  joerg 
   1554      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":md5_hash");
   1555      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->md5_hash, -1, NULL);
   1556      1.1  joerg 	if (rc != SQLITE_OK) {
   1557      1.1  joerg 		sqlite3_finalize(stmt);
   1558      1.1  joerg 		goto Out;
   1559      1.1  joerg 	}
   1560      1.1  joerg 
   1561      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":machine");
   1562      1.1  joerg 	if (rec->machine)
   1563      1.1  joerg 		rc = sqlite3_bind_text(stmt, idx, rec->machine, -1, NULL);
   1564      1.1  joerg 	else
   1565      1.1  joerg 		rc = sqlite3_bind_null(stmt, idx);
   1566      1.1  joerg 	if (rc != SQLITE_OK) {
   1567      1.1  joerg 		sqlite3_finalize(stmt);
   1568      1.1  joerg 		goto Out;
   1569      1.1  joerg 	}
   1570      1.1  joerg 
   1571      1.1  joerg 	rc = sqlite3_step(stmt);
   1572      1.1  joerg 	if (rc != SQLITE_DONE) {
   1573      1.1  joerg 		sqlite3_finalize(stmt);
   1574      1.1  joerg 		goto Out;
   1575      1.1  joerg 	}
   1576      1.1  joerg 
   1577      1.1  joerg 	sqlite3_finalize(stmt);
   1578      1.1  joerg 
   1579      1.1  joerg 	/* Get the row id of the last inserted row */
   1580      1.1  joerg 	mandb_rowid = sqlite3_last_insert_rowid(db);
   1581      1.1  joerg 
   1582      1.1  joerg /*------------------------Populate the mandb_meta table-----------------------*/
   1583      1.1  joerg 	sqlstr = "INSERT INTO mandb_meta VALUES (:device, :inode, :mtime,"
   1584      1.1  joerg 		 " :file, :md5_hash, :id)";
   1585      1.1  joerg 	rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
   1586      1.1  joerg 	if (rc != SQLITE_OK)
   1587      1.1  joerg 		goto Out;
   1588      1.1  joerg 
   1589      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":device");
   1590      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, rec->device);
   1591      1.1  joerg 	if (rc != SQLITE_OK) {
   1592      1.1  joerg 		sqlite3_finalize(stmt);
   1593      1.1  joerg 		goto Out;
   1594      1.1  joerg 	}
   1595      1.1  joerg 
   1596      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":inode");
   1597      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, rec->inode);
   1598      1.1  joerg 	if (rc != SQLITE_OK) {
   1599      1.1  joerg 		sqlite3_finalize(stmt);
   1600      1.1  joerg 		goto Out;
   1601      1.1  joerg 	}
   1602      1.1  joerg 
   1603      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":mtime");
   1604      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, rec->mtime);
   1605      1.1  joerg 	if (rc != SQLITE_OK) {
   1606      1.1  joerg 		sqlite3_finalize(stmt);
   1607      1.1  joerg 		goto Out;
   1608      1.1  joerg 	}
   1609      1.1  joerg 
   1610      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":file");
   1611      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->file_path, -1, NULL);
   1612      1.1  joerg 	if (rc != SQLITE_OK) {
   1613      1.1  joerg 		sqlite3_finalize(stmt);
   1614      1.1  joerg 		goto Out;
   1615      1.1  joerg 	}
   1616      1.1  joerg 
   1617      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":md5_hash");
   1618      1.1  joerg 	rc = sqlite3_bind_text(stmt, idx, rec->md5_hash, -1, NULL);
   1619      1.1  joerg 	if (rc != SQLITE_OK) {
   1620      1.1  joerg 		sqlite3_finalize(stmt);
   1621      1.1  joerg 		goto Out;
   1622      1.1  joerg 	}
   1623      1.1  joerg 
   1624      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":id");
   1625      1.1  joerg 	rc = sqlite3_bind_int64(stmt, idx, mandb_rowid);
   1626      1.1  joerg 	if (rc != SQLITE_OK) {
   1627      1.1  joerg 		sqlite3_finalize(stmt);
   1628      1.1  joerg 		goto Out;
   1629      1.1  joerg 	}
   1630      1.1  joerg 
   1631      1.1  joerg 	rc = sqlite3_step(stmt);
   1632      1.1  joerg 	sqlite3_finalize(stmt);
   1633      1.1  joerg 	if (rc == SQLITE_CONSTRAINT) {
   1634      1.1  joerg 		/* The *most* probable reason for reaching here is that
   1635      1.1  joerg 		 * the UNIQUE contraint on the file column of the mandb_meta
   1636      1.1  joerg 		 * table was violated.
   1637      1.1  joerg 		 * This can happen when a file was updated/modified.
   1638      1.1  joerg 		 * To fix this we need to do two things:
   1639      1.1  joerg 		 * 1. Delete the row for the older version of this file
   1640      1.1  joerg 		 *    from mandb table.
   1641      1.1  joerg 		 * 2. Run an UPDATE query to update the row for this file
   1642      1.1  joerg 		 *    in the mandb_meta table.
   1643      1.1  joerg 		 */
   1644      1.1  joerg 		warnx("Trying to update index for %s", rec->file_path);
   1645      1.1  joerg 		char *sql = sqlite3_mprintf("DELETE FROM mandb "
   1646      1.1  joerg 					    "WHERE rowid = (SELECT id"
   1647      1.1  joerg 					    "  FROM mandb_meta"
   1648      1.1  joerg 					    "  WHERE file = %Q)",
   1649      1.1  joerg 					    rec->file_path);
   1650      1.1  joerg 		sqlite3_exec(db, sql, NULL, NULL, &errmsg);
   1651      1.1  joerg 		sqlite3_free(sql);
   1652      1.1  joerg 		if (errmsg != NULL) {
   1653      1.1  joerg 			warnx("%s", errmsg);
   1654      1.1  joerg 			free(errmsg);
   1655      1.1  joerg 		}
   1656      1.1  joerg 		sqlstr = "UPDATE mandb_meta SET device = :device,"
   1657      1.1  joerg 			 " inode = :inode, mtime = :mtime, id = :id,"
   1658      1.1  joerg 			 " md5_hash = :md5 WHERE file = :file";
   1659      1.1  joerg 		rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
   1660      1.1  joerg 		if (rc != SQLITE_OK) {
   1661      1.1  joerg 			warnx("Update failed with error: %s",
   1662      1.1  joerg 			    sqlite3_errmsg(db));
   1663      1.1  joerg 			close_db(db);
   1664      1.1  joerg 			cleanup(rec);
   1665      1.1  joerg 			errx(EXIT_FAILURE,
   1666      1.1  joerg 			    "Consider running makemandb with -f option");
   1667      1.1  joerg 		}
   1668      1.1  joerg 
   1669      1.1  joerg 		idx = sqlite3_bind_parameter_index(stmt, ":device");
   1670      1.1  joerg 		sqlite3_bind_int64(stmt, idx, rec->device);
   1671      1.1  joerg 		idx = sqlite3_bind_parameter_index(stmt, ":inode");
   1672      1.1  joerg 		sqlite3_bind_int64(stmt, idx, rec->inode);
   1673      1.1  joerg 		idx = sqlite3_bind_parameter_index(stmt, ":mtime");
   1674      1.1  joerg 		sqlite3_bind_int64(stmt, idx, rec->mtime);
   1675      1.1  joerg 		idx = sqlite3_bind_parameter_index(stmt, ":id");
   1676      1.1  joerg 		sqlite3_bind_int64(stmt, idx, mandb_rowid);
   1677      1.1  joerg 		idx = sqlite3_bind_parameter_index(stmt, ":md5");
   1678      1.1  joerg 		sqlite3_bind_text(stmt, idx, rec->md5_hash, -1, NULL);
   1679      1.1  joerg 		idx = sqlite3_bind_parameter_index(stmt, ":file");
   1680      1.1  joerg 		sqlite3_bind_text(stmt, idx, rec->file_path, -1, NULL);
   1681      1.1  joerg 		rc = sqlite3_step(stmt);
   1682      1.1  joerg 		sqlite3_finalize(stmt);
   1683      1.1  joerg 
   1684      1.1  joerg 		if (rc != SQLITE_DONE) {
   1685      1.1  joerg 			warnx("%s", sqlite3_errmsg(db));
   1686      1.1  joerg 			close_db(db);
   1687      1.1  joerg 			cleanup(rec);
   1688      1.1  joerg 			errx(EXIT_FAILURE,
   1689      1.1  joerg 			    "Consider running makemandb with -f option");
   1690      1.1  joerg 		}
   1691      1.1  joerg 	} else if (rc != SQLITE_DONE) {
   1692      1.1  joerg 		/* Otherwise make this error fatal */
   1693      1.1  joerg 		warnx("Failed at %s\n%s", rec->file_path, sqlite3_errmsg(db));
   1694      1.1  joerg 		cleanup(rec);
   1695      1.1  joerg 		close_db(db);
   1696      1.1  joerg 		exit(EXIT_FAILURE);
   1697      1.1  joerg 	}
   1698      1.1  joerg 
   1699      1.1  joerg /*------------------------ Populate the mandb_links table---------------------*/
   1700      1.1  joerg 	char *str = NULL;
   1701      1.1  joerg 	char *links;
   1702      1.1  joerg 	if (rec->links && strlen(rec->links)) {
   1703      1.1  joerg 		links = rec->links;
   1704      1.1  joerg 		for(ln = strtok(links, " "); ln; ln = strtok(NULL, " ")) {
   1705      1.1  joerg 			if (ln[0] == ',')
   1706      1.1  joerg 				ln++;
   1707      1.1  joerg 			if(ln[strlen(ln) - 1] == ',')
   1708      1.1  joerg 				ln[strlen(ln) - 1] = 0;
   1709      1.1  joerg 
   1710      1.1  joerg 			str = sqlite3_mprintf("INSERT INTO mandb_links"
   1711      1.1  joerg 					      " VALUES (%Q, %Q, %Q, %Q)",
   1712      1.1  joerg 					      ln, rec->name, rec->section,
   1713      1.1  joerg 					      rec->machine);
   1714      1.1  joerg 			sqlite3_exec(db, str, NULL, NULL, &errmsg);
   1715      1.1  joerg 			sqlite3_free(str);
   1716      1.1  joerg 			if (errmsg != NULL) {
   1717      1.1  joerg 				warnx("%s", errmsg);
   1718      1.1  joerg 				cleanup(rec);
   1719      1.1  joerg 				free(errmsg);
   1720      1.1  joerg 				return -1;
   1721      1.1  joerg 			}
   1722      1.1  joerg 		}
   1723      1.1  joerg 	}
   1724      1.1  joerg 
   1725      1.1  joerg 	cleanup(rec);
   1726      1.1  joerg 	return 0;
   1727      1.1  joerg 
   1728      1.1  joerg   Out:
   1729      1.1  joerg 	warnx("%s", sqlite3_errmsg(db));
   1730      1.1  joerg 	cleanup(rec);
   1731      1.1  joerg 	return -1;
   1732      1.1  joerg }
   1733      1.1  joerg 
   1734      1.1  joerg /*
   1735      1.1  joerg  * check_md5--
   1736      1.1  joerg  *  Generates the md5 hash of the file and checks if it already doesn't exist
   1737      1.1  joerg  *  in the table (passed as the 3rd parameter).
   1738      1.1  joerg  *  This function is being used to avoid hardlinks.
   1739      1.1  joerg  *  On successful completion it will also set the value of the fourth parameter
   1740      1.1  joerg  *  to the md5 hash of the file (computed previously). It is the responsibility
   1741      1.1  joerg  *  of the caller to free this buffer.
   1742      1.1  joerg  *  Return values:
   1743      1.1  joerg  *  -1: If an error occurs somewhere and sets the md5 return buffer to NULL.
   1744      1.1  joerg  *  0: If the md5 hash does not exist in the table.
   1745      1.1  joerg  *  1: If the hash exists in the database.
   1746      1.1  joerg  */
   1747      1.1  joerg static int
   1748  1.2.2.1    riz check_md5(const char *file, sqlite3 *db, const char *table, char **md5sum,
   1749  1.2.2.1    riz     void *buf, size_t buflen)
   1750      1.1  joerg {
   1751      1.1  joerg 	int rc = 0;
   1752      1.1  joerg 	int idx = -1;
   1753      1.1  joerg 	char *sqlstr = NULL;
   1754      1.1  joerg 	sqlite3_stmt *stmt = NULL;
   1755      1.1  joerg 
   1756      1.1  joerg 	assert(file != NULL);
   1757  1.2.2.1    riz 	*md5sum = MD5Data(buf, buflen, NULL);
   1758  1.2.2.1    riz 	if (*md5sum == NULL) {
   1759      1.1  joerg 		warn("md5 failed: %s", file);
   1760      1.1  joerg 		return -1;
   1761      1.1  joerg 	}
   1762      1.1  joerg 
   1763      1.1  joerg 	easprintf(&sqlstr, "SELECT * FROM %s WHERE md5_hash = :md5_hash",
   1764      1.1  joerg 	    table);
   1765      1.1  joerg 	rc = sqlite3_prepare_v2(db, sqlstr, -1, &stmt, NULL);
   1766      1.1  joerg 	if (rc != SQLITE_OK) {
   1767      1.1  joerg 		free(sqlstr);
   1768  1.2.2.1    riz 		free(*md5sum);
   1769  1.2.2.1    riz 		*md5sum = NULL;
   1770      1.1  joerg 		return -1;
   1771      1.1  joerg 	}
   1772      1.1  joerg 
   1773      1.1  joerg 	idx = sqlite3_bind_parameter_index(stmt, ":md5_hash");
   1774  1.2.2.1    riz 	rc = sqlite3_bind_text(stmt, idx, *md5sum, -1, NULL);
   1775      1.1  joerg 	if (rc != SQLITE_OK) {
   1776      1.1  joerg 		warnx("%s", sqlite3_errmsg(db));
   1777      1.1  joerg 		sqlite3_finalize(stmt);
   1778      1.1  joerg 		free(sqlstr);
   1779  1.2.2.1    riz 		free(*md5sum);
   1780  1.2.2.1    riz 		*md5sum = NULL;
   1781      1.1  joerg 		return -1;
   1782      1.1  joerg 	}
   1783      1.1  joerg 
   1784      1.1  joerg 	if (sqlite3_step(stmt) == SQLITE_ROW) {
   1785      1.1  joerg 		sqlite3_finalize(stmt);
   1786      1.1  joerg 		free(sqlstr);
   1787      1.1  joerg 		return 0;
   1788      1.1  joerg 	}
   1789      1.1  joerg 
   1790      1.1  joerg 	sqlite3_finalize(stmt);
   1791      1.1  joerg 	free(sqlstr);
   1792      1.1  joerg 	return 1;
   1793      1.1  joerg }
   1794      1.1  joerg 
   1795      1.1  joerg /* Optimize the index for faster search */
   1796      1.1  joerg static void
   1797      1.1  joerg optimize(sqlite3 *db)
   1798      1.1  joerg {
   1799      1.1  joerg 	const char *sqlstr;
   1800      1.1  joerg 	char *errmsg = NULL;
   1801      1.1  joerg 
   1802      1.1  joerg 	if (mflags.verbosity)
   1803      1.1  joerg 		printf("Optimizing the database index\n");
   1804      1.1  joerg 	sqlstr = "INSERT INTO mandb(mandb) VALUES (\'optimize\');"
   1805      1.1  joerg 		 "VACUUM";
   1806      1.1  joerg 	sqlite3_exec(db, sqlstr, NULL, NULL, &errmsg);
   1807      1.1  joerg 	if (errmsg != NULL) {
   1808      1.1  joerg 		warnx("%s", errmsg);
   1809      1.1  joerg 		free(errmsg);
   1810      1.1  joerg 		return;
   1811      1.1  joerg 	}
   1812      1.1  joerg }
   1813      1.1  joerg 
   1814      1.1  joerg /*
   1815      1.1  joerg  * cleanup --
   1816      1.1  joerg  *  cleans up the global buffers
   1817      1.1  joerg  */
   1818      1.1  joerg static void
   1819      1.1  joerg cleanup(mandb_rec *rec)
   1820      1.1  joerg {
   1821      1.1  joerg 	rec->desc.offset = 0;
   1822      1.1  joerg 	rec->lib.offset = 0;
   1823      1.1  joerg 	rec->return_vals.offset = 0;
   1824      1.1  joerg 	rec->env.offset = 0;
   1825      1.1  joerg 	rec->exit_status.offset = 0;
   1826      1.1  joerg 	rec->diagnostics.offset = 0;
   1827      1.1  joerg 	rec->errors.offset = 0;
   1828      1.1  joerg 	rec->files.offset = 0;
   1829      1.1  joerg 
   1830      1.1  joerg 	free(rec->machine);
   1831      1.1  joerg 	rec->machine = NULL;
   1832      1.1  joerg 
   1833      1.1  joerg 	free(rec->links);
   1834      1.1  joerg 	rec->links = NULL;
   1835      1.1  joerg 
   1836      1.1  joerg 	free(rec->file_path);
   1837      1.1  joerg 	rec->file_path = NULL;
   1838      1.1  joerg 
   1839      1.1  joerg 	free(rec->name);
   1840      1.1  joerg 	rec->name = NULL;
   1841      1.1  joerg 
   1842      1.1  joerg 	free(rec->name_desc);
   1843      1.1  joerg 	rec->name_desc = NULL;
   1844      1.1  joerg 
   1845      1.1  joerg 	free(rec->md5_hash);
   1846      1.1  joerg 	rec->md5_hash = NULL;
   1847      1.1  joerg }
   1848      1.1  joerg 
   1849      1.1  joerg /*
   1850      1.1  joerg  * init_secbuffs--
   1851      1.1  joerg  *  Sets the value of buflen for all the sec_buff field of rec. And then
   1852      1.1  joerg  *  allocate memory to each sec_buff member of rec.
   1853      1.1  joerg  */
   1854      1.1  joerg static void
   1855      1.1  joerg init_secbuffs(mandb_rec *rec)
   1856      1.1  joerg {
   1857      1.1  joerg 	/*
   1858      1.1  joerg 	 * Some sec_buff might need more memory, for example desc,
   1859      1.1  joerg 	 * which stores the data of the DESCRIPTION section,
   1860      1.1  joerg 	 * while some might need very small amount of memory.
   1861      1.1  joerg 	 * Therefore explicitly setting the value of buflen field for
   1862      1.1  joerg 	 * each sec_buff.
   1863      1.1  joerg 	 */
   1864      1.1  joerg 	rec->desc.buflen = 10 * BUFLEN;
   1865      1.1  joerg 	rec->desc.data = emalloc(rec->desc.buflen);
   1866      1.1  joerg 	rec->desc.offset = 0;
   1867      1.1  joerg 
   1868      1.1  joerg 	rec->lib.buflen = BUFLEN / 2;
   1869      1.1  joerg 	rec->lib.data = emalloc(rec->lib.buflen);
   1870      1.1  joerg 	rec->lib.offset = 0;
   1871      1.1  joerg 
   1872      1.1  joerg 	rec->return_vals.buflen = BUFLEN;
   1873      1.1  joerg 	rec->return_vals.data = emalloc(rec->return_vals.buflen);
   1874      1.1  joerg 	rec->return_vals.offset = 0;
   1875      1.1  joerg 
   1876      1.1  joerg 	rec->exit_status.buflen = BUFLEN;
   1877      1.1  joerg 	rec->exit_status.data = emalloc(rec->exit_status.buflen);
   1878      1.1  joerg 	rec->exit_status.offset = 0;
   1879      1.1  joerg 
   1880      1.1  joerg 	rec->env.buflen = BUFLEN;
   1881      1.1  joerg 	rec->env.data = emalloc(rec->env.buflen);
   1882      1.1  joerg 	rec->env.offset = 0;
   1883      1.1  joerg 
   1884      1.1  joerg 	rec->files.buflen = BUFLEN;
   1885      1.1  joerg 	rec->files.data = emalloc(rec->files.buflen);
   1886      1.1  joerg 	rec->files.offset = 0;
   1887      1.1  joerg 
   1888      1.1  joerg 	rec->diagnostics.buflen = BUFLEN;
   1889      1.1  joerg 	rec->diagnostics.data = emalloc(rec->diagnostics.buflen);
   1890      1.1  joerg 	rec->diagnostics.offset = 0;
   1891      1.1  joerg 
   1892      1.1  joerg 	rec->errors.buflen = BUFLEN;
   1893      1.1  joerg 	rec->errors.data = emalloc(rec->errors.buflen);
   1894      1.1  joerg 	rec->errors.offset = 0;
   1895      1.1  joerg }
   1896      1.1  joerg 
   1897      1.1  joerg /*
   1898      1.1  joerg  * free_secbuffs--
   1899      1.1  joerg  *  This function should be called at the end, when all the pages have been
   1900      1.1  joerg  *  parsed.
   1901      1.1  joerg  *  It frees the memory allocated to sec_buffs by init_secbuffs in the starting.
   1902      1.1  joerg  */
   1903      1.1  joerg static void
   1904      1.1  joerg free_secbuffs(mandb_rec *rec)
   1905      1.1  joerg {
   1906      1.1  joerg 	free(rec->desc.data);
   1907      1.1  joerg 	free(rec->lib.data);
   1908      1.1  joerg 	free(rec->return_vals.data);
   1909      1.1  joerg 	free(rec->exit_status.data);
   1910      1.1  joerg 	free(rec->env.data);
   1911      1.1  joerg 	free(rec->files.data);
   1912      1.1  joerg 	free(rec->diagnostics.data);
   1913      1.1  joerg 	free(rec->errors.data);
   1914      1.1  joerg }
   1915      1.1  joerg 
   1916  1.2.2.1    riz static void
   1917  1.2.2.1    riz replace_hyph(char *str)
   1918  1.2.2.1    riz {
   1919  1.2.2.1    riz 	char *iter = str;
   1920  1.2.2.1    riz 	while ((iter = strchr(iter, ASCII_HYPH)) != NULL)
   1921  1.2.2.1    riz 		*iter = '-';
   1922  1.2.2.1    riz }
   1923  1.2.2.1    riz 
   1924      1.1  joerg static char *
   1925      1.1  joerg parse_escape(const char *str)
   1926      1.1  joerg {
   1927      1.1  joerg 	const char *backslash, *last_backslash;
   1928      1.1  joerg 	char *result, *iter;
   1929      1.1  joerg 	size_t len;
   1930      1.1  joerg 
   1931      1.1  joerg 	assert(str);
   1932      1.1  joerg 
   1933      1.1  joerg 	last_backslash = str;
   1934      1.1  joerg 	backslash = strchr(str, '\\');
   1935  1.2.2.1    riz 	if (backslash == NULL) {
   1936  1.2.2.1    riz 		result = estrdup(str);
   1937  1.2.2.1    riz 		replace_hyph(result);
   1938  1.2.2.1    riz 		return result;
   1939  1.2.2.1    riz 	}
   1940      1.1  joerg 
   1941      1.1  joerg 	result = emalloc(strlen(str) + 1);
   1942      1.1  joerg 	iter = result;
   1943      1.1  joerg 
   1944      1.1  joerg 	do {
   1945      1.1  joerg 		len = backslash - last_backslash;
   1946      1.1  joerg 		memcpy(iter, last_backslash, len);
   1947      1.1  joerg 		iter += len;
   1948      1.1  joerg 		if (backslash[1] == '-' || backslash[1] == ' ') {
   1949      1.1  joerg 			*iter++ = backslash[1];
   1950      1.1  joerg 			last_backslash = backslash + 2;
   1951      1.1  joerg 			backslash = strchr(backslash + 2, '\\');
   1952      1.1  joerg 		} else {
   1953      1.1  joerg 			++backslash;
   1954      1.1  joerg 			mandoc_escape(&backslash, NULL, NULL);
   1955      1.1  joerg 			last_backslash = backslash;
   1956      1.1  joerg 			if (backslash == NULL)
   1957      1.1  joerg 				break;
   1958      1.1  joerg 			backslash = strchr(last_backslash, '\\');
   1959      1.1  joerg 		}
   1960      1.1  joerg 	} while (backslash != NULL);
   1961      1.1  joerg 	if (last_backslash != NULL)
   1962      1.1  joerg 		strcpy(iter, last_backslash);
   1963  1.2.2.1    riz 
   1964  1.2.2.1    riz 	replace_hyph(result);
   1965      1.1  joerg 	return result;
   1966      1.1  joerg }
   1967      1.1  joerg 
   1968      1.1  joerg /*
   1969      1.1  joerg  * append--
   1970      1.1  joerg  *  Concatenates a space and src at the end of sbuff->data (much like concat in
   1971      1.1  joerg  *  apropos-utils.c).
   1972      1.1  joerg  *  Rather than reallocating space for writing data, it uses the value of the
   1973      1.1  joerg  *  offset field of sec_buff to write new data at the free space left in the
   1974      1.1  joerg  *  buffer.
   1975      1.1  joerg  *  In case the size of the data to be appended exceeds the number of bytes left
   1976      1.1  joerg  *  in the buffer, it reallocates buflen number of bytes and then continues.
   1977      1.1  joerg  *  Value of offset field should be adjusted as new data is written.
   1978      1.1  joerg  *
   1979      1.1  joerg  *  NOTE: This function does not write the null byte at the end of the buffers,
   1980      1.1  joerg  *  write a null byte at the position pointed to by offset before inserting data
   1981      1.1  joerg  *  in the db.
   1982      1.1  joerg  */
   1983      1.1  joerg static void
   1984      1.1  joerg append(secbuff *sbuff, const char *src)
   1985      1.1  joerg {
   1986      1.1  joerg 	short flag = 0;
   1987      1.1  joerg 	size_t srclen, newlen;
   1988      1.1  joerg 	char *temp;
   1989      1.1  joerg 
   1990      1.1  joerg 	assert(src != NULL);
   1991      1.1  joerg 	temp = parse_escape(src);
   1992      1.1  joerg 	srclen = strlen(temp);
   1993      1.1  joerg 
   1994      1.1  joerg 	if (sbuff->data == NULL) {
   1995      1.1  joerg 		sbuff->data = emalloc(sbuff->buflen);
   1996      1.1  joerg 		sbuff->offset = 0;
   1997      1.1  joerg 	}
   1998      1.1  joerg 
   1999      1.1  joerg 	newlen = sbuff->offset + srclen + 2;
   2000      1.1  joerg 	if (newlen >= sbuff->buflen) {
   2001      1.1  joerg 		while (sbuff->buflen < newlen)
   2002      1.1  joerg 			sbuff->buflen += sbuff->buflen;
   2003      1.1  joerg 		sbuff->data = erealloc(sbuff->data, sbuff->buflen);
   2004      1.1  joerg 		flag = 1;
   2005      1.1  joerg 	}
   2006      1.1  joerg 
   2007      1.1  joerg 	/* Append a space at the end of the buffer. */
   2008      1.1  joerg 	if (sbuff->offset || flag)
   2009      1.1  joerg 		sbuff->data[sbuff->offset++] = ' ';
   2010      1.1  joerg 	/* Now, copy src at the end of the buffer. */
   2011      1.1  joerg 	memcpy(sbuff->data + sbuff->offset, temp, srclen);
   2012      1.1  joerg 	sbuff->offset += srclen;
   2013      1.1  joerg 	free(temp);
   2014      1.1  joerg }
   2015      1.1  joerg 
   2016      1.1  joerg static void
   2017      1.1  joerg usage(void)
   2018      1.1  joerg {
   2019      1.1  joerg 	fprintf(stderr, "Usage: %s [-flo]\n", getprogname());
   2020      1.1  joerg 	exit(1);
   2021      1.1  joerg }
   2022