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ucgendat.c revision 1.1.1.10
      1   1.1.1.9  christos /*	$NetBSD: ucgendat.c,v 1.1.1.10 2025/09/05 21:09:33 christos Exp $	*/
      2   1.1.1.2     lukem 
      3   1.1.1.4      tron /* $OpenLDAP$ */
      4       1.1     lukem /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
      5       1.1     lukem  *
      6  1.1.1.10  christos  * Copyright 1998-2024 The OpenLDAP Foundation.
      7       1.1     lukem  * All rights reserved.
      8       1.1     lukem  *
      9       1.1     lukem  * Redistribution and use in source and binary forms, with or without
     10       1.1     lukem  * modification, are permitted only as authorized by the OpenLDAP
     11       1.1     lukem  * Public License.
     12       1.1     lukem  *
     13       1.1     lukem  * A copy of this license is available in file LICENSE in the
     14       1.1     lukem  * top-level directory of the distribution or, alternatively, at
     15       1.1     lukem  * <http://www.OpenLDAP.org/license.html>.
     16       1.1     lukem  */
     17       1.1     lukem /* Copyright 2001 Computing Research Labs, New Mexico State University
     18       1.1     lukem  *
     19       1.1     lukem  * Permission is hereby granted, free of charge, to any person obtaining a
     20       1.1     lukem  * copy of this software and associated documentation files (the "Software"),
     21       1.1     lukem  * to deal in the Software without restriction, including without limitation
     22       1.1     lukem  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
     23       1.1     lukem  * and/or sell copies of the Software, and to permit persons to whom the
     24       1.1     lukem  * Software is furnished to do so, subject to the following conditions:
     25       1.1     lukem  *
     26       1.1     lukem  * The above copyright notice and this permission notice shall be included in
     27       1.1     lukem  * all copies or substantial portions of the Software.
     28       1.1     lukem  *
     29       1.1     lukem  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
     30       1.1     lukem  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
     31       1.1     lukem  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
     32       1.1     lukem  * THE COMPUTING RESEARCH LAB OR NEW MEXICO STATE UNIVERSITY BE LIABLE FOR ANY
     33       1.1     lukem  * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT
     34       1.1     lukem  * OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR
     35       1.1     lukem  * THE USE OR OTHER DEALINGS IN THE SOFTWARE.
     36       1.1     lukem  */
     37   1.1.1.4      tron /* Id: ucgendat.c,v 1.4 2001/01/02 18:46:20 mleisher Exp " */
     38       1.1     lukem 
     39   1.1.1.5  christos #include <sys/cdefs.h>
     40   1.1.1.9  christos __RCSID("$NetBSD: ucgendat.c,v 1.1.1.10 2025/09/05 21:09:33 christos Exp $");
     41   1.1.1.5  christos 
     42       1.1     lukem #include "portable.h"
     43       1.1     lukem #include "ldap_config.h"
     44       1.1     lukem 
     45       1.1     lukem #include <stdio.h>
     46       1.1     lukem #include <ac/ctype.h>
     47       1.1     lukem #include <ac/stdlib.h>
     48       1.1     lukem #include <ac/string.h>
     49       1.1     lukem #include <ac/unistd.h>
     50       1.1     lukem 
     51       1.1     lukem #include <ac/bytes.h>
     52       1.1     lukem 
     53       1.1     lukem #include <lutil.h>
     54       1.1     lukem 
     55       1.1     lukem #ifndef HARDCODE_DATA
     56       1.1     lukem #define	HARDCODE_DATA	1
     57       1.1     lukem #endif
     58       1.1     lukem 
     59       1.1     lukem #undef ishdigit
     60       1.1     lukem #define ishdigit(cc) (((cc) >= '0' && (cc) <= '9') ||\
     61       1.1     lukem                       ((cc) >= 'A' && (cc) <= 'F') ||\
     62       1.1     lukem                       ((cc) >= 'a' && (cc) <= 'f'))
     63       1.1     lukem 
     64       1.1     lukem /*
     65       1.1     lukem  * A header written to the output file with the byte-order-mark and the number
     66       1.1     lukem  * of property nodes.
     67       1.1     lukem  */
     68       1.1     lukem static ac_uint2 hdr[2] = {0xfeff, 0};
     69       1.1     lukem 
     70       1.1     lukem #define NUMPROPS 50
     71       1.1     lukem #define NEEDPROPS (NUMPROPS + (4 - (NUMPROPS & 3)))
     72       1.1     lukem 
     73       1.1     lukem typedef struct {
     74       1.1     lukem     char *name;
     75       1.1     lukem     int len;
     76       1.1     lukem } _prop_t;
     77       1.1     lukem 
     78       1.1     lukem /*
     79       1.1     lukem  * List of properties expected to be found in the Unicode Character Database
     80       1.1     lukem  * including some implementation specific properties.
     81       1.1     lukem  *
     82       1.1     lukem  * The implementation specific properties are:
     83       1.1     lukem  * Cm = Composed (can be decomposed)
     84       1.1     lukem  * Nb = Non-breaking
     85       1.1     lukem  * Sy = Symmetric (has left and right forms)
     86       1.1     lukem  * Hd = Hex digit
     87       1.1     lukem  * Qm = Quote marks
     88       1.1     lukem  * Mr = Mirroring
     89       1.1     lukem  * Ss = Space, other
     90       1.1     lukem  * Cp = Defined character
     91       1.1     lukem  */
     92       1.1     lukem static _prop_t props[NUMPROPS] = {
     93       1.1     lukem     {"Mn", 2}, {"Mc", 2}, {"Me", 2}, {"Nd", 2}, {"Nl", 2}, {"No", 2},
     94       1.1     lukem     {"Zs", 2}, {"Zl", 2}, {"Zp", 2}, {"Cc", 2}, {"Cf", 2}, {"Cs", 2},
     95       1.1     lukem     {"Co", 2}, {"Cn", 2}, {"Lu", 2}, {"Ll", 2}, {"Lt", 2}, {"Lm", 2},
     96       1.1     lukem     {"Lo", 2}, {"Pc", 2}, {"Pd", 2}, {"Ps", 2}, {"Pe", 2}, {"Po", 2},
     97       1.1     lukem     {"Sm", 2}, {"Sc", 2}, {"Sk", 2}, {"So", 2}, {"L",  1}, {"R",  1},
     98       1.1     lukem     {"EN", 2}, {"ES", 2}, {"ET", 2}, {"AN", 2}, {"CS", 2}, {"B",  1},
     99       1.1     lukem     {"S",  1}, {"WS", 2}, {"ON", 2},
    100       1.1     lukem     {"Cm", 2}, {"Nb", 2}, {"Sy", 2}, {"Hd", 2}, {"Qm", 2}, {"Mr", 2},
    101       1.1     lukem     {"Ss", 2}, {"Cp", 2}, {"Pi", 2}, {"Pf", 2}, {"AL", 2}
    102       1.1     lukem };
    103       1.1     lukem 
    104       1.1     lukem typedef struct {
    105       1.1     lukem     ac_uint4 *ranges;
    106       1.1     lukem     ac_uint2 used;
    107       1.1     lukem     ac_uint2 size;
    108       1.1     lukem } _ranges_t;
    109       1.1     lukem 
    110       1.1     lukem static _ranges_t proptbl[NUMPROPS];
    111       1.1     lukem 
    112       1.1     lukem /*
    113       1.1     lukem  * Make sure this array is sized to be on a 4-byte boundary at compile time.
    114       1.1     lukem  */
    115       1.1     lukem static ac_uint2 propcnt[NEEDPROPS];
    116       1.1     lukem 
    117       1.1     lukem /*
    118       1.1     lukem  * Array used to collect a decomposition before adding it to the decomposition
    119       1.1     lukem  * table.
    120       1.1     lukem  */
    121       1.1     lukem static ac_uint4 dectmp[64];
    122       1.1     lukem static ac_uint4 dectmp_size;
    123       1.1     lukem 
    124       1.1     lukem typedef struct {
    125       1.1     lukem     ac_uint4 code;
    126       1.1     lukem     ac_uint2 size;
    127       1.1     lukem     ac_uint2 used;
    128       1.1     lukem     ac_uint4 *decomp;
    129       1.1     lukem } _decomp_t;
    130       1.1     lukem 
    131       1.1     lukem /*
    132       1.1     lukem  * List of decomposition.  Created and expanded in order as the characters are
    133       1.1     lukem  * encountered. First list contains canonical mappings, second also includes
    134       1.1     lukem  * compatibility mappings.
    135       1.1     lukem  */
    136       1.1     lukem static _decomp_t *decomps;
    137       1.1     lukem static ac_uint4 decomps_used;
    138       1.1     lukem static ac_uint4 decomps_size;
    139       1.1     lukem 
    140       1.1     lukem static _decomp_t *kdecomps;
    141       1.1     lukem static ac_uint4 kdecomps_used;
    142       1.1     lukem static ac_uint4 kdecomps_size;
    143       1.1     lukem 
    144       1.1     lukem /*
    145       1.1     lukem  * Composition exclusion table stuff.
    146       1.1     lukem  */
    147       1.1     lukem #define COMPEX_SET(c) (compexs[(c) >> 5] |= (1 << ((c) & 31)))
    148       1.1     lukem #define COMPEX_TEST(c) (compexs[(c) >> 5] & (1 << ((c) & 31)))
    149       1.1     lukem static ac_uint4 compexs[8192];
    150       1.1     lukem 
    151       1.1     lukem /*
    152       1.1     lukem  * Struct for holding a composition pair, and array of composition pairs
    153       1.1     lukem  */
    154       1.1     lukem typedef struct {
    155       1.1     lukem     ac_uint4 comp;
    156       1.1     lukem     ac_uint4 count;
    157       1.1     lukem     ac_uint4 code1;
    158       1.1     lukem     ac_uint4 code2;
    159       1.1     lukem } _comp_t;
    160       1.1     lukem 
    161       1.1     lukem static _comp_t *comps;
    162       1.1     lukem static ac_uint4 comps_used;
    163       1.1     lukem 
    164       1.1     lukem /*
    165       1.1     lukem  * Types and lists for handling lists of case mappings.
    166       1.1     lukem  */
    167       1.1     lukem typedef struct {
    168       1.1     lukem     ac_uint4 key;
    169       1.1     lukem     ac_uint4 other1;
    170       1.1     lukem     ac_uint4 other2;
    171       1.1     lukem } _case_t;
    172       1.1     lukem 
    173       1.1     lukem static _case_t *upper;
    174       1.1     lukem static _case_t *lower;
    175       1.1     lukem static _case_t *title;
    176       1.1     lukem static ac_uint4 upper_used;
    177       1.1     lukem static ac_uint4 upper_size;
    178       1.1     lukem static ac_uint4 lower_used;
    179       1.1     lukem static ac_uint4 lower_size;
    180       1.1     lukem static ac_uint4 title_used;
    181       1.1     lukem static ac_uint4 title_size;
    182       1.1     lukem 
    183       1.1     lukem /*
    184       1.1     lukem  * Array used to collect case mappings before adding them to a list.
    185       1.1     lukem  */
    186       1.1     lukem static ac_uint4 cases[3];
    187       1.1     lukem 
    188       1.1     lukem /*
    189       1.1     lukem  * An array to hold ranges for combining classes.
    190       1.1     lukem  */
    191       1.1     lukem static ac_uint4 *ccl;
    192       1.1     lukem static ac_uint4 ccl_used;
    193       1.1     lukem static ac_uint4 ccl_size;
    194       1.1     lukem 
    195       1.1     lukem /*
    196       1.1     lukem  * Structures for handling numbers.
    197       1.1     lukem  */
    198       1.1     lukem typedef struct {
    199       1.1     lukem     ac_uint4 code;
    200       1.1     lukem     ac_uint4 idx;
    201       1.1     lukem } _codeidx_t;
    202       1.1     lukem 
    203       1.1     lukem typedef struct {
    204       1.1     lukem     short numerator;
    205       1.1     lukem     short denominator;
    206       1.1     lukem } _num_t;
    207       1.1     lukem 
    208       1.1     lukem /*
    209       1.1     lukem  * Arrays to hold the mapping of codes to numbers.
    210       1.1     lukem  */
    211       1.1     lukem static _codeidx_t *ncodes;
    212       1.1     lukem static ac_uint4 ncodes_used;
    213       1.1     lukem static ac_uint4 ncodes_size;
    214       1.1     lukem 
    215       1.1     lukem static _num_t *nums;
    216       1.1     lukem static ac_uint4 nums_used;
    217       1.1     lukem static ac_uint4 nums_size;
    218       1.1     lukem 
    219       1.1     lukem /*
    220       1.1     lukem  * Array for holding numbers.
    221       1.1     lukem  */
    222       1.1     lukem static _num_t *nums;
    223       1.1     lukem static ac_uint4 nums_used;
    224       1.1     lukem static ac_uint4 nums_size;
    225       1.1     lukem 
    226       1.1     lukem static void
    227       1.1     lukem add_range(ac_uint4 start, ac_uint4 end, char *p1, char *p2)
    228       1.1     lukem {
    229       1.1     lukem     int i, j, k, len;
    230       1.1     lukem     _ranges_t *rlp;
    231       1.1     lukem     char *name;
    232       1.1     lukem 
    233       1.1     lukem     for (k = 0; k < 2; k++) {
    234       1.1     lukem         if (k == 0) {
    235       1.1     lukem             name = p1;
    236       1.1     lukem             len = 2;
    237       1.1     lukem         } else {
    238       1.1     lukem             if (p2 == 0)
    239       1.1     lukem               break;
    240       1.1     lukem 
    241       1.1     lukem             name = p2;
    242       1.1     lukem             len = 1;
    243       1.1     lukem         }
    244       1.1     lukem 
    245       1.1     lukem         for (i = 0; i < NUMPROPS; i++) {
    246       1.1     lukem             if (props[i].len == len && memcmp(props[i].name, name, len) == 0)
    247       1.1     lukem               break;
    248       1.1     lukem         }
    249       1.1     lukem 
    250       1.1     lukem         if (i == NUMPROPS)
    251       1.1     lukem           continue;
    252       1.1     lukem 
    253       1.1     lukem         rlp = &proptbl[i];
    254       1.1     lukem 
    255       1.1     lukem         /*
    256       1.1     lukem          * Resize the range list if necessary.
    257       1.1     lukem          */
    258       1.1     lukem         if (rlp->used == rlp->size) {
    259       1.1     lukem             if (rlp->size == 0)
    260       1.1     lukem               rlp->ranges = (ac_uint4 *)
    261       1.1     lukem                   malloc(sizeof(ac_uint4) << 3);
    262       1.1     lukem             else
    263       1.1     lukem               rlp->ranges = (ac_uint4 *)
    264       1.1     lukem                   realloc((char *) rlp->ranges,
    265       1.1     lukem                           sizeof(ac_uint4) * (rlp->size + 8));
    266       1.1     lukem             rlp->size += 8;
    267       1.1     lukem         }
    268       1.1     lukem 
    269       1.1     lukem         /*
    270       1.1     lukem          * If this is the first code for this property list, just add it
    271       1.1     lukem          * and return.
    272       1.1     lukem          */
    273       1.1     lukem         if (rlp->used == 0) {
    274       1.1     lukem             rlp->ranges[0] = start;
    275       1.1     lukem             rlp->ranges[1] = end;
    276       1.1     lukem             rlp->used += 2;
    277       1.1     lukem             continue;
    278       1.1     lukem         }
    279       1.1     lukem 
    280       1.1     lukem         /*
    281       1.1     lukem          * Optimize the case of adding the range to the end.
    282       1.1     lukem          */
    283       1.1     lukem         j = rlp->used - 1;
    284       1.1     lukem         if (start > rlp->ranges[j]) {
    285       1.1     lukem             j = rlp->used;
    286       1.1     lukem             rlp->ranges[j++] = start;
    287       1.1     lukem             rlp->ranges[j++] = end;
    288       1.1     lukem             rlp->used = j;
    289       1.1     lukem             continue;
    290       1.1     lukem         }
    291       1.1     lukem 
    292       1.1     lukem         /*
    293       1.1     lukem          * Need to locate the insertion point.
    294       1.1     lukem          */
    295       1.1     lukem         for (i = 0;
    296       1.1     lukem              i < rlp->used && start > rlp->ranges[i + 1] + 1; i += 2) ;
    297       1.1     lukem 
    298       1.1     lukem         /*
    299       1.1     lukem          * If the start value lies in the current range, then simply set the
    300       1.1     lukem          * new end point of the range to the end value passed as a parameter.
    301       1.1     lukem          */
    302       1.1     lukem         if (rlp->ranges[i] <= start && start <= rlp->ranges[i + 1] + 1) {
    303       1.1     lukem             rlp->ranges[i + 1] = end;
    304       1.1     lukem             return;
    305       1.1     lukem         }
    306       1.1     lukem 
    307       1.1     lukem         /*
    308       1.1     lukem          * Shift following values up by two.
    309       1.1     lukem          */
    310       1.1     lukem         for (j = rlp->used; j > i; j -= 2) {
    311       1.1     lukem             rlp->ranges[j] = rlp->ranges[j - 2];
    312       1.1     lukem             rlp->ranges[j + 1] = rlp->ranges[j - 1];
    313       1.1     lukem         }
    314       1.1     lukem 
    315       1.1     lukem         /*
    316       1.1     lukem          * Add the new range at the insertion point.
    317       1.1     lukem          */
    318       1.1     lukem         rlp->ranges[i] = start;
    319       1.1     lukem         rlp->ranges[i + 1] = end;
    320       1.1     lukem         rlp->used += 2;
    321       1.1     lukem     }
    322       1.1     lukem }
    323       1.1     lukem 
    324       1.1     lukem static void
    325       1.1     lukem ordered_range_insert(ac_uint4 c, char *name, int len)
    326       1.1     lukem {
    327       1.1     lukem     int i, j;
    328       1.1     lukem     ac_uint4 s, e;
    329       1.1     lukem     _ranges_t *rlp;
    330       1.1     lukem 
    331       1.1     lukem     if (len == 0)
    332       1.1     lukem       return;
    333       1.1     lukem 
    334       1.1     lukem     /*
    335       1.1     lukem      * Deal with directionality codes introduced in Unicode 3.0.
    336       1.1     lukem      */
    337       1.1     lukem     if ((len == 2 && memcmp(name, "BN", 2) == 0) ||
    338       1.1     lukem         (len == 3 &&
    339       1.1     lukem          (memcmp(name, "NSM", 3) == 0 || memcmp(name, "PDF", 3) == 0 ||
    340       1.1     lukem           memcmp(name, "LRE", 3) == 0 || memcmp(name, "LRO", 3) == 0 ||
    341       1.1     lukem           memcmp(name, "RLE", 3) == 0 || memcmp(name, "RLO", 3) == 0))) {
    342       1.1     lukem         /*
    343       1.1     lukem          * Mark all of these as Other Neutral to preserve compatibility with
    344       1.1     lukem          * older versions.
    345       1.1     lukem          */
    346       1.1     lukem         len = 2;
    347       1.1     lukem         name = "ON";
    348       1.1     lukem     }
    349       1.1     lukem 
    350       1.1     lukem     for (i = 0; i < NUMPROPS; i++) {
    351       1.1     lukem         if (props[i].len == len && memcmp(props[i].name, name, len) == 0)
    352       1.1     lukem           break;
    353       1.1     lukem     }
    354       1.1     lukem 
    355       1.1     lukem     if (i == NUMPROPS)
    356       1.1     lukem       return;
    357       1.1     lukem 
    358       1.1     lukem     /*
    359       1.1     lukem      * Have a match, so insert the code in order.
    360       1.1     lukem      */
    361       1.1     lukem     rlp = &proptbl[i];
    362       1.1     lukem 
    363       1.1     lukem     /*
    364       1.1     lukem      * Resize the range list if necessary.
    365       1.1     lukem      */
    366       1.1     lukem     if (rlp->used == rlp->size) {
    367       1.1     lukem         if (rlp->size == 0)
    368       1.1     lukem           rlp->ranges = (ac_uint4 *)
    369       1.1     lukem               malloc(sizeof(ac_uint4) << 3);
    370       1.1     lukem         else
    371       1.1     lukem           rlp->ranges = (ac_uint4 *)
    372       1.1     lukem               realloc((char *) rlp->ranges,
    373       1.1     lukem                       sizeof(ac_uint4) * (rlp->size + 8));
    374       1.1     lukem         rlp->size += 8;
    375       1.1     lukem     }
    376       1.1     lukem 
    377       1.1     lukem     /*
    378       1.1     lukem      * If this is the first code for this property list, just add it
    379       1.1     lukem      * and return.
    380       1.1     lukem      */
    381       1.1     lukem     if (rlp->used == 0) {
    382       1.1     lukem         rlp->ranges[0] = rlp->ranges[1] = c;
    383       1.1     lukem         rlp->used += 2;
    384       1.1     lukem         return;
    385       1.1     lukem     }
    386       1.1     lukem 
    387       1.1     lukem     /*
    388       1.1     lukem      * Optimize the cases of extending the last range and adding new ranges to
    389       1.1     lukem      * the end.
    390       1.1     lukem      */
    391       1.1     lukem     j = rlp->used - 1;
    392       1.1     lukem     e = rlp->ranges[j];
    393       1.1     lukem     s = rlp->ranges[j - 1];
    394       1.1     lukem 
    395       1.1     lukem     if (c == e + 1) {
    396       1.1     lukem         /*
    397       1.1     lukem          * Extend the last range.
    398       1.1     lukem          */
    399       1.1     lukem         rlp->ranges[j] = c;
    400       1.1     lukem         return;
    401       1.1     lukem     }
    402       1.1     lukem 
    403       1.1     lukem     if (c > e + 1) {
    404       1.1     lukem         /*
    405       1.1     lukem          * Start another range on the end.
    406       1.1     lukem          */
    407       1.1     lukem         j = rlp->used;
    408       1.1     lukem         rlp->ranges[j] = rlp->ranges[j + 1] = c;
    409       1.1     lukem         rlp->used += 2;
    410       1.1     lukem         return;
    411       1.1     lukem     }
    412       1.1     lukem 
    413       1.1     lukem     if (c >= s)
    414       1.1     lukem       /*
    415       1.1     lukem        * The code is a duplicate of a code in the last range, so just return.
    416       1.1     lukem        */
    417       1.1     lukem       return;
    418       1.1     lukem 
    419       1.1     lukem     /*
    420       1.1     lukem      * The code should be inserted somewhere before the last range in the
    421       1.1     lukem      * list.  Locate the insertion point.
    422       1.1     lukem      */
    423       1.1     lukem     for (i = 0;
    424       1.1     lukem          i < rlp->used && c > rlp->ranges[i + 1] + 1; i += 2) ;
    425       1.1     lukem 
    426       1.1     lukem     s = rlp->ranges[i];
    427       1.1     lukem     e = rlp->ranges[i + 1];
    428       1.1     lukem 
    429       1.1     lukem     if (c == e + 1)
    430       1.1     lukem       /*
    431       1.1     lukem        * Simply extend the current range.
    432       1.1     lukem        */
    433       1.1     lukem       rlp->ranges[i + 1] = c;
    434       1.1     lukem     else if (c < s) {
    435       1.1     lukem         /*
    436       1.1     lukem          * Add a new entry before the current location.  Shift all entries
    437       1.1     lukem          * before the current one up by one to make room.
    438       1.1     lukem          */
    439       1.1     lukem         for (j = rlp->used; j > i; j -= 2) {
    440       1.1     lukem             rlp->ranges[j] = rlp->ranges[j - 2];
    441       1.1     lukem             rlp->ranges[j + 1] = rlp->ranges[j - 1];
    442       1.1     lukem         }
    443       1.1     lukem         rlp->ranges[i] = rlp->ranges[i + 1] = c;
    444       1.1     lukem 
    445       1.1     lukem         rlp->used += 2;
    446       1.1     lukem     }
    447       1.1     lukem }
    448       1.1     lukem 
    449       1.1     lukem static void
    450       1.1     lukem add_decomp(ac_uint4 code, short compat)
    451       1.1     lukem {
    452       1.1     lukem     ac_uint4 i, j, size;
    453       1.1     lukem     _decomp_t **pdecomps;
    454       1.1     lukem     ac_uint4 *pdecomps_used;
    455       1.1     lukem     ac_uint4 *pdecomps_size;
    456       1.1     lukem 
    457       1.1     lukem     if (compat) {
    458       1.1     lukem 	pdecomps = &kdecomps;
    459       1.1     lukem 	pdecomps_used = &kdecomps_used;
    460       1.1     lukem 	pdecomps_size = &kdecomps_size;
    461       1.1     lukem     } else {
    462       1.1     lukem 	pdecomps = &decomps;
    463       1.1     lukem 	pdecomps_used = &decomps_used;
    464       1.1     lukem 	pdecomps_size = &decomps_size;
    465       1.1     lukem     }
    466       1.1     lukem 
    467       1.1     lukem     /*
    468       1.1     lukem      * Add the code to the composite property.
    469       1.1     lukem      */
    470       1.1     lukem     if (!compat) {
    471       1.1     lukem 	ordered_range_insert(code, "Cm", 2);
    472       1.1     lukem     }
    473       1.1     lukem 
    474       1.1     lukem     /*
    475       1.1     lukem      * Locate the insertion point for the code.
    476       1.1     lukem      */
    477       1.1     lukem     for (i = 0; i < *pdecomps_used && code > (*pdecomps)[i].code; i++) ;
    478       1.1     lukem 
    479       1.1     lukem     /*
    480       1.1     lukem      * Allocate space for a new decomposition.
    481       1.1     lukem      */
    482       1.1     lukem     if (*pdecomps_used == *pdecomps_size) {
    483       1.1     lukem         if (*pdecomps_size == 0)
    484       1.1     lukem           *pdecomps = (_decomp_t *) malloc(sizeof(_decomp_t) << 3);
    485       1.1     lukem         else
    486       1.1     lukem           *pdecomps = (_decomp_t *)
    487       1.1     lukem               realloc((char *) *pdecomps,
    488       1.1     lukem                       sizeof(_decomp_t) * (*pdecomps_size + 8));
    489       1.1     lukem         (void) memset((char *) (*pdecomps + *pdecomps_size), '\0',
    490       1.1     lukem                       sizeof(_decomp_t) << 3);
    491       1.1     lukem         *pdecomps_size += 8;
    492       1.1     lukem     }
    493       1.1     lukem 
    494       1.1     lukem     if (i < *pdecomps_used && code != (*pdecomps)[i].code) {
    495       1.1     lukem         /*
    496       1.1     lukem          * Shift the decomps up by one if the codes don't match.
    497       1.1     lukem          */
    498       1.1     lukem         for (j = *pdecomps_used; j > i; j--)
    499       1.1     lukem           (void) AC_MEMCPY((char *) &(*pdecomps)[j], (char *) &(*pdecomps)[j - 1],
    500       1.1     lukem                         sizeof(_decomp_t));
    501       1.1     lukem     }
    502       1.1     lukem 
    503       1.1     lukem     /*
    504       1.1     lukem      * Insert or replace a decomposition.
    505       1.1     lukem      */
    506       1.1     lukem     size = dectmp_size + (4 - (dectmp_size & 3));
    507       1.1     lukem     if ((*pdecomps)[i].size < size) {
    508       1.1     lukem         if ((*pdecomps)[i].size == 0)
    509       1.1     lukem           (*pdecomps)[i].decomp = (ac_uint4 *)
    510       1.1     lukem               malloc(sizeof(ac_uint4) * size);
    511       1.1     lukem         else
    512       1.1     lukem           (*pdecomps)[i].decomp = (ac_uint4 *)
    513       1.1     lukem               realloc((char *) (*pdecomps)[i].decomp,
    514       1.1     lukem                       sizeof(ac_uint4) * size);
    515       1.1     lukem         (*pdecomps)[i].size = size;
    516       1.1     lukem     }
    517       1.1     lukem 
    518       1.1     lukem     if ((*pdecomps)[i].code != code)
    519       1.1     lukem       (*pdecomps_used)++;
    520       1.1     lukem 
    521       1.1     lukem     (*pdecomps)[i].code = code;
    522       1.1     lukem     (*pdecomps)[i].used = dectmp_size;
    523       1.1     lukem     (void) AC_MEMCPY((char *) (*pdecomps)[i].decomp, (char *) dectmp,
    524       1.1     lukem                   sizeof(ac_uint4) * dectmp_size);
    525       1.1     lukem 
    526       1.1     lukem     /*
    527       1.1     lukem      * NOTICE: This needs changing later so it is more general than simply
    528       1.1     lukem      * pairs.  This calculation is done here to simplify allocation elsewhere.
    529       1.1     lukem      */
    530       1.1     lukem     if (!compat && dectmp_size == 2)
    531       1.1     lukem       comps_used++;
    532       1.1     lukem }
    533       1.1     lukem 
    534       1.1     lukem static void
    535       1.1     lukem add_title(ac_uint4 code)
    536       1.1     lukem {
    537       1.1     lukem     ac_uint4 i, j;
    538       1.1     lukem 
    539       1.1     lukem     /*
    540       1.1     lukem      * Always map the code to itself.
    541       1.1     lukem      */
    542       1.1     lukem     cases[2] = code;
    543       1.1     lukem 
    544   1.1.1.7  christos     /*
    545   1.1.1.7  christos      * If the upper case character is not present, then make it the same as
    546   1.1.1.7  christos      * the title case.
    547   1.1.1.7  christos      */
    548   1.1.1.7  christos     if (cases[0] == 0)
    549   1.1.1.7  christos       cases[0] = code;
    550   1.1.1.7  christos 
    551       1.1     lukem     if (title_used == title_size) {
    552       1.1     lukem         if (title_size == 0)
    553       1.1     lukem           title = (_case_t *) malloc(sizeof(_case_t) << 3);
    554       1.1     lukem         else
    555       1.1     lukem           title = (_case_t *) realloc((char *) title,
    556       1.1     lukem                                       sizeof(_case_t) * (title_size + 8));
    557       1.1     lukem         title_size += 8;
    558       1.1     lukem     }
    559       1.1     lukem 
    560       1.1     lukem     /*
    561       1.1     lukem      * Locate the insertion point.
    562       1.1     lukem      */
    563       1.1     lukem     for (i = 0; i < title_used && code > title[i].key; i++) ;
    564       1.1     lukem 
    565       1.1     lukem     if (i < title_used) {
    566       1.1     lukem         /*
    567       1.1     lukem          * Shift the array up by one.
    568       1.1     lukem          */
    569       1.1     lukem         for (j = title_used; j > i; j--)
    570       1.1     lukem           (void) AC_MEMCPY((char *) &title[j], (char *) &title[j - 1],
    571       1.1     lukem                         sizeof(_case_t));
    572       1.1     lukem     }
    573       1.1     lukem 
    574       1.1     lukem     title[i].key = cases[2];    /* Title */
    575       1.1     lukem     title[i].other1 = cases[0]; /* Upper */
    576       1.1     lukem     title[i].other2 = cases[1]; /* Lower */
    577       1.1     lukem 
    578       1.1     lukem     title_used++;
    579       1.1     lukem }
    580       1.1     lukem 
    581       1.1     lukem static void
    582       1.1     lukem add_upper(ac_uint4 code)
    583       1.1     lukem {
    584       1.1     lukem     ac_uint4 i, j;
    585       1.1     lukem 
    586       1.1     lukem     /*
    587       1.1     lukem      * Always map the code to itself.
    588       1.1     lukem      */
    589       1.1     lukem     cases[0] = code;
    590       1.1     lukem 
    591       1.1     lukem     /*
    592       1.1     lukem      * If the title case character is not present, then make it the same as
    593       1.1     lukem      * the upper case.
    594       1.1     lukem      */
    595       1.1     lukem     if (cases[2] == 0)
    596       1.1     lukem       cases[2] = code;
    597       1.1     lukem 
    598       1.1     lukem     if (upper_used == upper_size) {
    599       1.1     lukem         if (upper_size == 0)
    600       1.1     lukem           upper = (_case_t *) malloc(sizeof(_case_t) << 3);
    601       1.1     lukem         else
    602       1.1     lukem           upper = (_case_t *) realloc((char *) upper,
    603       1.1     lukem                                       sizeof(_case_t) * (upper_size + 8));
    604       1.1     lukem         upper_size += 8;
    605       1.1     lukem     }
    606       1.1     lukem 
    607       1.1     lukem     /*
    608       1.1     lukem      * Locate the insertion point.
    609       1.1     lukem      */
    610       1.1     lukem     for (i = 0; i < upper_used && code > upper[i].key; i++) ;
    611       1.1     lukem 
    612       1.1     lukem     if (i < upper_used) {
    613       1.1     lukem         /*
    614       1.1     lukem          * Shift the array up by one.
    615       1.1     lukem          */
    616       1.1     lukem         for (j = upper_used; j > i; j--)
    617       1.1     lukem           (void) AC_MEMCPY((char *) &upper[j], (char *) &upper[j - 1],
    618       1.1     lukem                         sizeof(_case_t));
    619       1.1     lukem     }
    620       1.1     lukem 
    621       1.1     lukem     upper[i].key = cases[0];    /* Upper */
    622       1.1     lukem     upper[i].other1 = cases[1]; /* Lower */
    623       1.1     lukem     upper[i].other2 = cases[2]; /* Title */
    624       1.1     lukem 
    625       1.1     lukem     upper_used++;
    626       1.1     lukem }
    627       1.1     lukem 
    628       1.1     lukem static void
    629       1.1     lukem add_lower(ac_uint4 code)
    630       1.1     lukem {
    631       1.1     lukem     ac_uint4 i, j;
    632       1.1     lukem 
    633       1.1     lukem     /*
    634       1.1     lukem      * Always map the code to itself.
    635       1.1     lukem      */
    636       1.1     lukem     cases[1] = code;
    637       1.1     lukem 
    638       1.1     lukem     /*
    639       1.1     lukem      * If the title case character is empty, then make it the same as the
    640       1.1     lukem      * upper case.
    641       1.1     lukem      */
    642       1.1     lukem     if (cases[2] == 0)
    643       1.1     lukem       cases[2] = cases[0];
    644       1.1     lukem 
    645       1.1     lukem     if (lower_used == lower_size) {
    646       1.1     lukem         if (lower_size == 0)
    647       1.1     lukem           lower = (_case_t *) malloc(sizeof(_case_t) << 3);
    648       1.1     lukem         else
    649       1.1     lukem           lower = (_case_t *) realloc((char *) lower,
    650       1.1     lukem                                       sizeof(_case_t) * (lower_size + 8));
    651       1.1     lukem         lower_size += 8;
    652       1.1     lukem     }
    653       1.1     lukem 
    654       1.1     lukem     /*
    655       1.1     lukem      * Locate the insertion point.
    656       1.1     lukem      */
    657       1.1     lukem     for (i = 0; i < lower_used && code > lower[i].key; i++) ;
    658       1.1     lukem 
    659       1.1     lukem     if (i < lower_used) {
    660       1.1     lukem         /*
    661       1.1     lukem          * Shift the array up by one.
    662       1.1     lukem          */
    663       1.1     lukem         for (j = lower_used; j > i; j--)
    664       1.1     lukem           (void) AC_MEMCPY((char *) &lower[j], (char *) &lower[j - 1],
    665       1.1     lukem                         sizeof(_case_t));
    666       1.1     lukem     }
    667       1.1     lukem 
    668       1.1     lukem     lower[i].key = cases[1];    /* Lower */
    669       1.1     lukem     lower[i].other1 = cases[0]; /* Upper */
    670       1.1     lukem     lower[i].other2 = cases[2]; /* Title */
    671       1.1     lukem 
    672       1.1     lukem     lower_used++;
    673       1.1     lukem }
    674       1.1     lukem 
    675       1.1     lukem static void
    676       1.1     lukem ordered_ccl_insert(ac_uint4 c, ac_uint4 ccl_code)
    677       1.1     lukem {
    678       1.1     lukem     ac_uint4 i, j;
    679       1.1     lukem 
    680       1.1     lukem     if (ccl_used == ccl_size) {
    681       1.1     lukem         if (ccl_size == 0)
    682       1.1     lukem           ccl = (ac_uint4 *) malloc(sizeof(ac_uint4) * 24);
    683       1.1     lukem         else
    684       1.1     lukem           ccl = (ac_uint4 *)
    685       1.1     lukem               realloc((char *) ccl, sizeof(ac_uint4) * (ccl_size + 24));
    686       1.1     lukem         ccl_size += 24;
    687       1.1     lukem     }
    688       1.1     lukem 
    689       1.1     lukem     /*
    690       1.1     lukem      * Optimize adding the first item.
    691       1.1     lukem      */
    692       1.1     lukem     if (ccl_used == 0) {
    693       1.1     lukem         ccl[0] = ccl[1] = c;
    694       1.1     lukem         ccl[2] = ccl_code;
    695       1.1     lukem         ccl_used += 3;
    696       1.1     lukem         return;
    697       1.1     lukem     }
    698       1.1     lukem 
    699       1.1     lukem     /*
    700       1.1     lukem      * Handle the special case of extending the range on the end.  This
    701       1.1     lukem      * requires that the combining class codes are the same.
    702       1.1     lukem      */
    703       1.1     lukem     if (ccl_code == ccl[ccl_used - 1] && c == ccl[ccl_used - 2] + 1) {
    704       1.1     lukem         ccl[ccl_used - 2] = c;
    705       1.1     lukem         return;
    706       1.1     lukem     }
    707       1.1     lukem 
    708       1.1     lukem     /*
    709       1.1     lukem      * Handle the special case of adding another range on the end.
    710       1.1     lukem      */
    711       1.1     lukem     if (c > ccl[ccl_used - 2] + 1 ||
    712       1.1     lukem         (c == ccl[ccl_used - 2] + 1 && ccl_code != ccl[ccl_used - 1])) {
    713       1.1     lukem         ccl[ccl_used++] = c;
    714       1.1     lukem         ccl[ccl_used++] = c;
    715       1.1     lukem         ccl[ccl_used++] = ccl_code;
    716       1.1     lukem         return;
    717       1.1     lukem     }
    718       1.1     lukem 
    719       1.1     lukem     /*
    720       1.1     lukem      * Locate either the insertion point or range for the code.
    721       1.1     lukem      */
    722       1.1     lukem     for (i = 0; i < ccl_used && c > ccl[i + 1] + 1; i += 3) ;
    723       1.1     lukem 
    724       1.1     lukem     if (ccl_code == ccl[i + 2] && c == ccl[i + 1] + 1) {
    725       1.1     lukem         /*
    726       1.1     lukem          * Extend an existing range.
    727       1.1     lukem          */
    728       1.1     lukem         ccl[i + 1] = c;
    729       1.1     lukem         return;
    730       1.1     lukem     } else if (c < ccl[i]) {
    731       1.1     lukem         /*
    732       1.1     lukem          * Start a new range before the current location.
    733       1.1     lukem          */
    734       1.1     lukem         for (j = ccl_used; j > i; j -= 3) {
    735       1.1     lukem             ccl[j] = ccl[j - 3];
    736       1.1     lukem             ccl[j - 1] = ccl[j - 4];
    737       1.1     lukem             ccl[j - 2] = ccl[j - 5];
    738       1.1     lukem         }
    739       1.1     lukem         ccl[i] = ccl[i + 1] = c;
    740       1.1     lukem         ccl[i + 2] = ccl_code;
    741       1.1     lukem     }
    742       1.1     lukem }
    743       1.1     lukem 
    744       1.1     lukem /*
    745       1.1     lukem  * Adds a number if it does not already exist and returns an index value
    746       1.1     lukem  * multiplied by 2.
    747       1.1     lukem  */
    748       1.1     lukem static ac_uint4
    749       1.1     lukem make_number(short num, short denom)
    750       1.1     lukem {
    751       1.1     lukem     ac_uint4 n;
    752       1.1     lukem 
    753       1.1     lukem     /*
    754       1.1     lukem      * Determine if the number already exists.
    755       1.1     lukem      */
    756       1.1     lukem     for (n = 0; n < nums_used; n++) {
    757       1.1     lukem         if (nums[n].numerator == num && nums[n].denominator == denom)
    758       1.1     lukem           return n << 1;
    759       1.1     lukem     }
    760       1.1     lukem 
    761       1.1     lukem     if (nums_used == nums_size) {
    762       1.1     lukem         if (nums_size == 0)
    763       1.1     lukem           nums = (_num_t *) malloc(sizeof(_num_t) << 3);
    764       1.1     lukem         else
    765       1.1     lukem           nums = (_num_t *) realloc((char *) nums,
    766       1.1     lukem                                     sizeof(_num_t) * (nums_size + 8));
    767       1.1     lukem         nums_size += 8;
    768       1.1     lukem     }
    769       1.1     lukem 
    770       1.1     lukem     n = nums_used++;
    771       1.1     lukem     nums[n].numerator = num;
    772       1.1     lukem     nums[n].denominator = denom;
    773       1.1     lukem 
    774       1.1     lukem     return n << 1;
    775       1.1     lukem }
    776       1.1     lukem 
    777       1.1     lukem static void
    778       1.1     lukem add_number(ac_uint4 code, short num, short denom)
    779       1.1     lukem {
    780       1.1     lukem     ac_uint4 i, j;
    781       1.1     lukem 
    782       1.1     lukem     /*
    783       1.1     lukem      * Insert the code in order.
    784       1.1     lukem      */
    785       1.1     lukem     for (i = 0; i < ncodes_used && code > ncodes[i].code; i++) ;
    786       1.1     lukem 
    787       1.1     lukem     /*
    788       1.1     lukem      * Handle the case of the codes matching and simply replace the number
    789       1.1     lukem      * that was there before.
    790       1.1     lukem      */
    791       1.1     lukem     if (i < ncodes_used && code == ncodes[i].code) {
    792       1.1     lukem         ncodes[i].idx = make_number(num, denom);
    793       1.1     lukem         return;
    794       1.1     lukem     }
    795       1.1     lukem 
    796       1.1     lukem     /*
    797       1.1     lukem      * Resize the array if necessary.
    798       1.1     lukem      */
    799       1.1     lukem     if (ncodes_used == ncodes_size) {
    800       1.1     lukem         if (ncodes_size == 0)
    801       1.1     lukem           ncodes = (_codeidx_t *) malloc(sizeof(_codeidx_t) << 3);
    802       1.1     lukem         else
    803       1.1     lukem           ncodes = (_codeidx_t *)
    804       1.1     lukem               realloc((char *) ncodes, sizeof(_codeidx_t) * (ncodes_size + 8));
    805       1.1     lukem 
    806       1.1     lukem         ncodes_size += 8;
    807       1.1     lukem     }
    808       1.1     lukem 
    809       1.1     lukem     /*
    810       1.1     lukem      * Shift things around to insert the code if necessary.
    811       1.1     lukem      */
    812       1.1     lukem     if (i < ncodes_used) {
    813       1.1     lukem         for (j = ncodes_used; j > i; j--) {
    814       1.1     lukem             ncodes[j].code = ncodes[j - 1].code;
    815       1.1     lukem             ncodes[j].idx = ncodes[j - 1].idx;
    816       1.1     lukem         }
    817       1.1     lukem     }
    818       1.1     lukem     ncodes[i].code = code;
    819       1.1     lukem     ncodes[i].idx = make_number(num, denom);
    820       1.1     lukem 
    821       1.1     lukem     ncodes_used++;
    822       1.1     lukem }
    823       1.1     lukem 
    824       1.1     lukem /*
    825       1.1     lukem  * This routine assumes that the line is a valid Unicode Character Database
    826       1.1     lukem  * entry.
    827       1.1     lukem  */
    828       1.1     lukem static void
    829       1.1     lukem read_cdata(FILE *in)
    830       1.1     lukem {
    831       1.1     lukem     ac_uint4 i, lineno, skip, code, ccl_code;
    832       1.1     lukem     short wnum, neg, number[2], compat;
    833   1.1.1.7  christos     char line[512], *s, *e, *first_prop;
    834       1.1     lukem 
    835       1.1     lukem     lineno = skip = 0;
    836       1.1     lukem     while (fgets(line, sizeof(line), in)) {
    837       1.1     lukem 	if( (s=strchr(line, '\n')) ) *s = '\0';
    838       1.1     lukem         lineno++;
    839       1.1     lukem 
    840       1.1     lukem         /*
    841       1.1     lukem          * Skip blank lines and lines that start with a '#'.
    842       1.1     lukem          */
    843       1.1     lukem         if (line[0] == 0 || line[0] == '#')
    844       1.1     lukem           continue;
    845       1.1     lukem 
    846       1.1     lukem         /*
    847       1.1     lukem          * If lines need to be skipped, do it here.
    848       1.1     lukem          */
    849       1.1     lukem         if (skip) {
    850       1.1     lukem             skip--;
    851       1.1     lukem             continue;
    852       1.1     lukem         }
    853       1.1     lukem 
    854       1.1     lukem         /*
    855       1.1     lukem          * Collect the code.  The code can be up to 6 hex digits in length to
    856       1.1     lukem          * allow surrogates to be specified.
    857       1.1     lukem          */
    858       1.1     lukem         for (s = line, i = code = 0; *s != ';' && i < 6; i++, s++) {
    859       1.1     lukem             code <<= 4;
    860       1.1     lukem             if (*s >= '0' && *s <= '9')
    861       1.1     lukem               code += *s - '0';
    862       1.1     lukem             else if (*s >= 'A' && *s <= 'F')
    863       1.1     lukem               code += (*s - 'A') + 10;
    864       1.1     lukem             else if (*s >= 'a' && *s <= 'f')
    865       1.1     lukem               code += (*s - 'a') + 10;
    866       1.1     lukem         }
    867       1.1     lukem 
    868       1.1     lukem         /*
    869       1.1     lukem          * Handle the following special cases:
    870       1.1     lukem          * 1. 4E00-9FA5 CJK Ideographs.
    871       1.1     lukem          * 2. AC00-D7A3 Hangul Syllables.
    872       1.1     lukem          * 3. D800-DFFF Surrogates.
    873       1.1     lukem          * 4. E000-F8FF Private Use Area.
    874       1.1     lukem          * 5. F900-FA2D Han compatibility.
    875       1.1     lukem 	 * ...Plus additional ranges in newer Unicode versions...
    876       1.1     lukem          */
    877       1.1     lukem         switch (code) {
    878       1.1     lukem 	  case 0x3400:
    879       1.1     lukem 	    /* CJK Ideograph Extension A */
    880       1.1     lukem             add_range(0x3400, 0x4db5, "Lo", "L");
    881       1.1     lukem 
    882       1.1     lukem             add_range(0x3400, 0x4db5, "Cp", 0);
    883       1.1     lukem 
    884       1.1     lukem 	    skip = 1;
    885       1.1     lukem 	    break;
    886       1.1     lukem           case 0x4e00:
    887       1.1     lukem             /*
    888       1.1     lukem              * The Han ideographs.
    889       1.1     lukem              */
    890       1.1     lukem             add_range(0x4e00, 0x9fff, "Lo", "L");
    891       1.1     lukem 
    892       1.1     lukem             /*
    893       1.1     lukem              * Add the characters to the defined category.
    894       1.1     lukem              */
    895       1.1     lukem             add_range(0x4e00, 0x9fa5, "Cp", 0);
    896       1.1     lukem 
    897       1.1     lukem             skip = 1;
    898       1.1     lukem             break;
    899       1.1     lukem           case 0xac00:
    900       1.1     lukem             /*
    901       1.1     lukem              * The Hangul syllables.
    902       1.1     lukem              */
    903       1.1     lukem             add_range(0xac00, 0xd7a3, "Lo", "L");
    904       1.1     lukem 
    905       1.1     lukem             /*
    906       1.1     lukem              * Add the characters to the defined category.
    907       1.1     lukem              */
    908       1.1     lukem             add_range(0xac00, 0xd7a3, "Cp", 0);
    909       1.1     lukem 
    910       1.1     lukem             skip = 1;
    911       1.1     lukem             break;
    912       1.1     lukem           case 0xd800:
    913       1.1     lukem             /*
    914       1.1     lukem              * Make a range of all surrogates and assume some default
    915       1.1     lukem              * properties.
    916       1.1     lukem              */
    917       1.1     lukem             add_range(0x010000, 0x10ffff, "Cs", "L");
    918       1.1     lukem             skip = 5;
    919       1.1     lukem             break;
    920       1.1     lukem           case 0xe000:
    921       1.1     lukem             /*
    922       1.1     lukem              * The Private Use area.  Add with a default set of properties.
    923       1.1     lukem              */
    924       1.1     lukem             add_range(0xe000, 0xf8ff, "Co", "L");
    925       1.1     lukem             skip = 1;
    926       1.1     lukem             break;
    927       1.1     lukem           case 0xf900:
    928       1.1     lukem             /*
    929       1.1     lukem              * The CJK compatibility area.
    930       1.1     lukem              */
    931       1.1     lukem             add_range(0xf900, 0xfaff, "Lo", "L");
    932       1.1     lukem 
    933       1.1     lukem             /*
    934       1.1     lukem              * Add the characters to the defined category.
    935       1.1     lukem              */
    936       1.1     lukem             add_range(0xf900, 0xfaff, "Cp", 0);
    937       1.1     lukem 
    938       1.1     lukem             skip = 1;
    939       1.1     lukem 	    break;
    940       1.1     lukem 	  case 0x20000:
    941       1.1     lukem 	    /* CJK Ideograph Extension B */
    942       1.1     lukem             add_range(0x20000, 0x2a6d6, "Lo", "L");
    943       1.1     lukem 
    944       1.1     lukem             add_range(0x20000, 0x2a6d6, "Cp", 0);
    945       1.1     lukem 
    946       1.1     lukem 	    skip = 1;
    947       1.1     lukem 	    break;
    948       1.1     lukem 	  case 0xf0000:
    949       1.1     lukem 	    /* Plane 15 private use */
    950       1.1     lukem 	    add_range(0xf0000, 0xffffd, "Co", "L");
    951       1.1     lukem 	    skip = 1;
    952       1.1     lukem 	    break;
    953       1.1     lukem 
    954       1.1     lukem 	  case 0x100000:
    955       1.1     lukem 	    /* Plane 16 private use */
    956       1.1     lukem 	    add_range(0x100000, 0x10fffd, "Co", "L");
    957       1.1     lukem 	    skip = 1;
    958       1.1     lukem 	    break;
    959       1.1     lukem         }
    960       1.1     lukem 
    961       1.1     lukem         if (skip)
    962       1.1     lukem           continue;
    963       1.1     lukem 
    964       1.1     lukem         /*
    965       1.1     lukem          * Add the code to the defined category.
    966       1.1     lukem          */
    967       1.1     lukem         ordered_range_insert(code, "Cp", 2);
    968       1.1     lukem 
    969       1.1     lukem         /*
    970       1.1     lukem          * Locate the first character property field.
    971       1.1     lukem          */
    972       1.1     lukem         for (i = 0; *s != 0 && i < 2; s++) {
    973       1.1     lukem             if (*s == ';')
    974       1.1     lukem               i++;
    975       1.1     lukem         }
    976       1.1     lukem         for (e = s; *e && *e != ';'; e++) ;
    977   1.1.1.7  christos 
    978   1.1.1.7  christos         first_prop = s;
    979       1.1     lukem 
    980       1.1     lukem         ordered_range_insert(code, s, e - s);
    981       1.1     lukem 
    982       1.1     lukem         /*
    983       1.1     lukem          * Locate the combining class code.
    984       1.1     lukem          */
    985       1.1     lukem         for (s = e; *s != 0 && i < 3; s++) {
    986       1.1     lukem             if (*s == ';')
    987       1.1     lukem               i++;
    988       1.1     lukem         }
    989       1.1     lukem 
    990       1.1     lukem         /*
    991       1.1     lukem          * Convert the combining class code from decimal.
    992       1.1     lukem          */
    993       1.1     lukem         for (ccl_code = 0, e = s; *e && *e != ';'; e++)
    994       1.1     lukem           ccl_code = (ccl_code * 10) + (*e - '0');
    995       1.1     lukem 
    996       1.1     lukem         /*
    997       1.1     lukem          * Add the code if it not 0.
    998       1.1     lukem          */
    999       1.1     lukem         if (ccl_code != 0)
   1000       1.1     lukem           ordered_ccl_insert(code, ccl_code);
   1001       1.1     lukem 
   1002       1.1     lukem         /*
   1003       1.1     lukem          * Locate the second character property field.
   1004       1.1     lukem          */
   1005       1.1     lukem         for (s = e; *s != 0 && i < 4; s++) {
   1006       1.1     lukem             if (*s == ';')
   1007       1.1     lukem               i++;
   1008       1.1     lukem         }
   1009       1.1     lukem         for (e = s; *e && *e != ';'; e++) ;
   1010       1.1     lukem 
   1011       1.1     lukem         ordered_range_insert(code, s, e - s);
   1012       1.1     lukem 
   1013       1.1     lukem         /*
   1014       1.1     lukem          * Check for a decomposition.
   1015       1.1     lukem          */
   1016       1.1     lukem         s = ++e;
   1017       1.1     lukem         if (*s != ';') {
   1018       1.1     lukem 	    compat = *s == '<';
   1019       1.1     lukem 	    if (compat) {
   1020       1.1     lukem 		/*
   1021       1.1     lukem 		 * Skip compatibility formatting tag.
   1022       1.1     lukem 		 */
   1023       1.1     lukem 		while (*s++ != '>');
   1024       1.1     lukem 	    }
   1025       1.1     lukem             /*
   1026       1.1     lukem              * Collect the codes of the decomposition.
   1027       1.1     lukem              */
   1028       1.1     lukem             for (dectmp_size = 0; *s != ';'; ) {
   1029       1.1     lukem                 /*
   1030       1.1     lukem                  * Skip all leading non-hex digits.
   1031       1.1     lukem                  */
   1032       1.1     lukem                 while (!ishdigit(*s))
   1033       1.1     lukem  		  s++;
   1034       1.1     lukem 
   1035       1.1     lukem                 for (dectmp[dectmp_size] = 0; ishdigit(*s); s++) {
   1036       1.1     lukem                     dectmp[dectmp_size] <<= 4;
   1037       1.1     lukem                     if (*s >= '0' && *s <= '9')
   1038       1.1     lukem                       dectmp[dectmp_size] += *s - '0';
   1039       1.1     lukem                     else if (*s >= 'A' && *s <= 'F')
   1040       1.1     lukem                       dectmp[dectmp_size] += (*s - 'A') + 10;
   1041       1.1     lukem                     else if (*s >= 'a' && *s <= 'f')
   1042       1.1     lukem                       dectmp[dectmp_size] += (*s - 'a') + 10;
   1043       1.1     lukem                 }
   1044       1.1     lukem                 dectmp_size++;
   1045       1.1     lukem             }
   1046       1.1     lukem 
   1047       1.1     lukem             /*
   1048       1.1     lukem              * If there are any codes in the temporary decomposition array,
   1049       1.1     lukem              * then add the character with its decomposition.
   1050       1.1     lukem              */
   1051       1.1     lukem             if (dectmp_size > 0) {
   1052       1.1     lukem 		if (!compat) {
   1053       1.1     lukem 		    add_decomp(code, 0);
   1054       1.1     lukem 		}
   1055       1.1     lukem 		add_decomp(code, 1);
   1056       1.1     lukem 	    }
   1057       1.1     lukem         }
   1058       1.1     lukem 
   1059       1.1     lukem         /*
   1060       1.1     lukem          * Skip to the number field.
   1061       1.1     lukem          */
   1062       1.1     lukem         for (i = 0; i < 3 && *s; s++) {
   1063       1.1     lukem             if (*s == ';')
   1064       1.1     lukem               i++;
   1065       1.1     lukem         }
   1066       1.1     lukem 
   1067       1.1     lukem         /*
   1068       1.1     lukem          * Scan the number in.
   1069       1.1     lukem          */
   1070       1.1     lukem         number[0] = number[1] = 0;
   1071       1.1     lukem         for (e = s, neg = wnum = 0; *e && *e != ';'; e++) {
   1072       1.1     lukem             if (*e == '-') {
   1073       1.1     lukem                 neg = 1;
   1074       1.1     lukem                 continue;
   1075       1.1     lukem             }
   1076       1.1     lukem 
   1077       1.1     lukem             if (*e == '/') {
   1078       1.1     lukem                 /*
   1079       1.1     lukem                  * Move the the denominator of the fraction.
   1080       1.1     lukem                  */
   1081       1.1     lukem                 if (neg)
   1082       1.1     lukem                   number[wnum] *= -1;
   1083       1.1     lukem                 neg = 0;
   1084       1.1     lukem                 e++;
   1085       1.1     lukem                 wnum++;
   1086       1.1     lukem             }
   1087       1.1     lukem             number[wnum] = (number[wnum] * 10) + (*e - '0');
   1088       1.1     lukem         }
   1089       1.1     lukem 
   1090       1.1     lukem         if (e > s) {
   1091       1.1     lukem             /*
   1092       1.1     lukem              * Adjust the denominator in case of integers and add the number.
   1093       1.1     lukem              */
   1094       1.1     lukem             if (wnum == 0)
   1095       1.1     lukem               number[1] = 1;
   1096       1.1     lukem 
   1097       1.1     lukem             add_number(code, number[0], number[1]);
   1098       1.1     lukem         }
   1099       1.1     lukem 
   1100       1.1     lukem         /*
   1101       1.1     lukem          * Skip to the start of the possible case mappings.
   1102       1.1     lukem          */
   1103       1.1     lukem         for (s = e, i = 0; i < 4 && *s; s++) {
   1104       1.1     lukem             if (*s == ';')
   1105       1.1     lukem               i++;
   1106       1.1     lukem         }
   1107       1.1     lukem 
   1108       1.1     lukem         /*
   1109       1.1     lukem          * Collect the case mappings.
   1110       1.1     lukem          */
   1111       1.1     lukem         cases[0] = cases[1] = cases[2] = 0;
   1112       1.1     lukem         for (i = 0; i < 3; i++) {
   1113       1.1     lukem             while (ishdigit(*s)) {
   1114       1.1     lukem                 cases[i] <<= 4;
   1115       1.1     lukem                 if (*s >= '0' && *s <= '9')
   1116       1.1     lukem                   cases[i] += *s - '0';
   1117       1.1     lukem                 else if (*s >= 'A' && *s <= 'F')
   1118       1.1     lukem                   cases[i] += (*s - 'A') + 10;
   1119       1.1     lukem                 else if (*s >= 'a' && *s <= 'f')
   1120       1.1     lukem                   cases[i] += (*s - 'a') + 10;
   1121       1.1     lukem                 s++;
   1122       1.1     lukem             }
   1123       1.1     lukem             if (*s == ';')
   1124       1.1     lukem               s++;
   1125       1.1     lukem         }
   1126   1.1.1.7  christos         if (!strncmp(first_prop,"Lt",2) && (cases[0] || cases[1]))
   1127       1.1     lukem           /*
   1128       1.1     lukem            * Add the upper and lower mappings for a title case character.
   1129       1.1     lukem            */
   1130       1.1     lukem           add_title(code);
   1131       1.1     lukem         else if (cases[1])
   1132       1.1     lukem           /*
   1133       1.1     lukem            * Add the lower and title case mappings for the upper case
   1134       1.1     lukem            * character.
   1135       1.1     lukem            */
   1136       1.1     lukem           add_upper(code);
   1137       1.1     lukem         else if (cases[0])
   1138       1.1     lukem           /*
   1139       1.1     lukem            * Add the upper and title case mappings for the lower case
   1140       1.1     lukem            * character.
   1141       1.1     lukem            */
   1142       1.1     lukem           add_lower(code);
   1143       1.1     lukem     }
   1144       1.1     lukem }
   1145       1.1     lukem 
   1146       1.1     lukem static _decomp_t *
   1147       1.1     lukem find_decomp(ac_uint4 code, short compat)
   1148       1.1     lukem {
   1149       1.1     lukem     long l, r, m;
   1150       1.1     lukem     _decomp_t *decs;
   1151       1.1     lukem 
   1152       1.1     lukem     l = 0;
   1153       1.1     lukem     r = (compat ? kdecomps_used : decomps_used) - 1;
   1154       1.1     lukem     decs = compat ? kdecomps : decomps;
   1155       1.1     lukem     while (l <= r) {
   1156       1.1     lukem         m = (l + r) >> 1;
   1157       1.1     lukem         if (code > decs[m].code)
   1158       1.1     lukem           l = m + 1;
   1159       1.1     lukem         else if (code < decs[m].code)
   1160       1.1     lukem           r = m - 1;
   1161       1.1     lukem         else
   1162       1.1     lukem           return &decs[m];
   1163       1.1     lukem     }
   1164       1.1     lukem     return 0;
   1165       1.1     lukem }
   1166       1.1     lukem 
   1167       1.1     lukem static void
   1168       1.1     lukem decomp_it(_decomp_t *d, short compat)
   1169       1.1     lukem {
   1170       1.1     lukem     ac_uint4 i;
   1171       1.1     lukem     _decomp_t *dp;
   1172       1.1     lukem 
   1173       1.1     lukem     for (i = 0; i < d->used; i++) {
   1174       1.1     lukem         if ((dp = find_decomp(d->decomp[i], compat)) != 0)
   1175       1.1     lukem           decomp_it(dp, compat);
   1176       1.1     lukem         else
   1177       1.1     lukem           dectmp[dectmp_size++] = d->decomp[i];
   1178       1.1     lukem     }
   1179       1.1     lukem }
   1180       1.1     lukem 
   1181       1.1     lukem /*
   1182       1.1     lukem  * Expand all decompositions by recursively decomposing each character
   1183       1.1     lukem  * in the decomposition.
   1184       1.1     lukem  */
   1185       1.1     lukem static void
   1186       1.1     lukem expand_decomp(void)
   1187       1.1     lukem {
   1188       1.1     lukem     ac_uint4 i;
   1189       1.1     lukem 
   1190       1.1     lukem     for (i = 0; i < decomps_used; i++) {
   1191       1.1     lukem         dectmp_size = 0;
   1192       1.1     lukem         decomp_it(&decomps[i], 0);
   1193       1.1     lukem         if (dectmp_size > 0)
   1194       1.1     lukem           add_decomp(decomps[i].code, 0);
   1195       1.1     lukem     }
   1196       1.1     lukem 
   1197       1.1     lukem     for (i = 0; i < kdecomps_used; i++) {
   1198       1.1     lukem         dectmp_size = 0;
   1199       1.1     lukem         decomp_it(&kdecomps[i], 1);
   1200       1.1     lukem         if (dectmp_size > 0)
   1201       1.1     lukem           add_decomp(kdecomps[i].code, 1);
   1202       1.1     lukem     }
   1203       1.1     lukem }
   1204       1.1     lukem 
   1205       1.1     lukem static int
   1206       1.1     lukem cmpcomps(const void *v_comp1, const void *v_comp2)
   1207       1.1     lukem {
   1208       1.1     lukem 	const _comp_t *comp1 = v_comp1, *comp2 = v_comp2;
   1209       1.1     lukem     long diff = comp1->code1 - comp2->code1;
   1210       1.1     lukem 
   1211       1.1     lukem     if (!diff)
   1212       1.1     lukem 	diff = comp1->code2 - comp2->code2;
   1213       1.1     lukem     return (int) diff;
   1214       1.1     lukem }
   1215       1.1     lukem 
   1216       1.1     lukem /*
   1217       1.1     lukem  * Load composition exclusion data
   1218       1.1     lukem  */
   1219       1.1     lukem static void
   1220       1.1     lukem read_compexdata(FILE *in)
   1221       1.1     lukem {
   1222       1.1     lukem     ac_uint2 i;
   1223       1.1     lukem     ac_uint4 code;
   1224       1.1     lukem     char line[512], *s;
   1225       1.1     lukem 
   1226       1.1     lukem     (void) memset((char *) compexs, 0, sizeof(compexs));
   1227       1.1     lukem 
   1228       1.1     lukem     while (fgets(line, sizeof(line), in)) {
   1229       1.1     lukem 	if( (s=strchr(line, '\n')) ) *s = '\0';
   1230       1.1     lukem         /*
   1231       1.1     lukem          * Skip blank lines and lines that start with a '#'.
   1232       1.1     lukem          */
   1233       1.1     lukem         if (line[0] == 0 || line[0] == '#')
   1234       1.1     lukem 	    continue;
   1235       1.1     lukem 
   1236       1.1     lukem 	/*
   1237       1.1     lukem          * Collect the code.  Assume max 6 digits
   1238       1.1     lukem          */
   1239       1.1     lukem 
   1240       1.1     lukem 	for (s = line, i = code = 0; *s != '#' && i < 6; i++, s++) {
   1241       1.1     lukem 	    if (isspace((unsigned char)*s)) break;
   1242       1.1     lukem             code <<= 4;
   1243       1.1     lukem             if (*s >= '0' && *s <= '9')
   1244       1.1     lukem 		code += *s - '0';
   1245       1.1     lukem             else if (*s >= 'A' && *s <= 'F')
   1246       1.1     lukem 		code += (*s - 'A') + 10;
   1247       1.1     lukem             else if (*s >= 'a' && *s <= 'f')
   1248       1.1     lukem 		code += (*s - 'a') + 10;
   1249       1.1     lukem         }
   1250       1.1     lukem         COMPEX_SET(code);
   1251       1.1     lukem     }
   1252       1.1     lukem }
   1253       1.1     lukem 
   1254       1.1     lukem /*
   1255       1.1     lukem  * Creates array of compositions from decomposition array
   1256       1.1     lukem  */
   1257       1.1     lukem static void
   1258       1.1     lukem create_comps(void)
   1259       1.1     lukem {
   1260       1.1     lukem     ac_uint4 i, cu;
   1261       1.1     lukem 
   1262       1.1     lukem     comps = (_comp_t *) malloc(comps_used * sizeof(_comp_t));
   1263       1.1     lukem 
   1264       1.1     lukem     for (i = cu = 0; i < decomps_used; i++) {
   1265       1.1     lukem 	if (decomps[i].used != 2 || COMPEX_TEST(decomps[i].code))
   1266       1.1     lukem 	    continue;
   1267       1.1     lukem 	comps[cu].comp = decomps[i].code;
   1268       1.1     lukem 	comps[cu].count = 2;
   1269       1.1     lukem 	comps[cu].code1 = decomps[i].decomp[0];
   1270       1.1     lukem 	comps[cu].code2 = decomps[i].decomp[1];
   1271       1.1     lukem 	cu++;
   1272       1.1     lukem     }
   1273       1.1     lukem     comps_used = cu;
   1274       1.1     lukem     qsort(comps, comps_used, sizeof(_comp_t), cmpcomps);
   1275       1.1     lukem }
   1276       1.1     lukem 
   1277       1.1     lukem #if HARDCODE_DATA
   1278       1.1     lukem static void
   1279       1.1     lukem write_case(FILE *out, _case_t *tab, int num, int first)
   1280       1.1     lukem {
   1281       1.1     lukem     int i;
   1282       1.1     lukem 
   1283       1.1     lukem     for (i=0; i<num; i++) {
   1284       1.1     lukem 	if (first) first = 0;
   1285       1.1     lukem 	else fprintf(out, ",");
   1286       1.1     lukem 	fprintf(out, "\n\t0x%08lx, 0x%08lx, 0x%08lx",
   1287       1.1     lukem 		(unsigned long) tab[i].key, (unsigned long) tab[i].other1,
   1288       1.1     lukem 		(unsigned long) tab[i].other2);
   1289       1.1     lukem     }
   1290       1.1     lukem }
   1291       1.1     lukem 
   1292       1.1     lukem #define PREF "static const "
   1293       1.1     lukem 
   1294       1.1     lukem #endif
   1295       1.1     lukem 
   1296       1.1     lukem static void
   1297       1.1     lukem write_cdata(char *opath)
   1298       1.1     lukem {
   1299       1.1     lukem     FILE *out;
   1300       1.1     lukem 	ac_uint4 bytes;
   1301       1.1     lukem     ac_uint4 i, idx, nprops;
   1302       1.1     lukem #if !(HARDCODE_DATA)
   1303       1.1     lukem     ac_uint2 casecnt[2];
   1304       1.1     lukem #endif
   1305       1.1     lukem     char path[BUFSIZ];
   1306       1.1     lukem #if HARDCODE_DATA
   1307       1.1     lukem     int j, k;
   1308       1.1     lukem 
   1309       1.1     lukem     /*****************************************************************
   1310       1.1     lukem      *
   1311       1.1     lukem      * Generate the ctype data.
   1312       1.1     lukem      *
   1313       1.1     lukem      *****************************************************************/
   1314       1.1     lukem 
   1315       1.1     lukem     /*
   1316       1.1     lukem      * Open the output file.
   1317       1.1     lukem      */
   1318       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "uctable.h", opath);
   1319       1.1     lukem     if ((out = fopen(path, "w")) == 0)
   1320       1.1     lukem       return;
   1321       1.1     lukem #else
   1322       1.1     lukem     /*
   1323       1.1     lukem      * Open the ctype.dat file.
   1324       1.1     lukem      */
   1325       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "ctype.dat", opath);
   1326       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1327       1.1     lukem       return;
   1328       1.1     lukem #endif
   1329       1.1     lukem 
   1330       1.1     lukem     /*
   1331       1.1     lukem      * Collect the offsets for the properties.  The offsets array is
   1332       1.1     lukem      * on a 4-byte boundary to keep things efficient for architectures
   1333       1.1     lukem      * that need such a thing.
   1334       1.1     lukem      */
   1335       1.1     lukem     for (i = idx = 0; i < NUMPROPS; i++) {
   1336       1.1     lukem         propcnt[i] = (proptbl[i].used != 0) ? idx : 0xffff;
   1337       1.1     lukem         idx += proptbl[i].used;
   1338       1.1     lukem     }
   1339       1.1     lukem 
   1340       1.1     lukem     /*
   1341       1.1     lukem      * Add the sentinel index which is used by the binary search as the upper
   1342       1.1     lukem      * bound for a search.
   1343       1.1     lukem      */
   1344       1.1     lukem     propcnt[i] = idx;
   1345       1.1     lukem 
   1346       1.1     lukem     /*
   1347       1.1     lukem      * Record the actual number of property lists.  This may be different than
   1348       1.1     lukem      * the number of offsets actually written because of aligning on a 4-byte
   1349       1.1     lukem      * boundary.
   1350       1.1     lukem      */
   1351       1.1     lukem     hdr[1] = NUMPROPS;
   1352       1.1     lukem 
   1353       1.1     lukem     /*
   1354       1.1     lukem      * Calculate the byte count needed and pad the property counts array to a
   1355       1.1     lukem      * 4-byte boundary.
   1356       1.1     lukem      */
   1357       1.1     lukem     if ((bytes = sizeof(ac_uint2) * (NUMPROPS + 1)) & 3)
   1358       1.1     lukem       bytes += 4 - (bytes & 3);
   1359       1.1     lukem     nprops = bytes / sizeof(ac_uint2);
   1360       1.1     lukem     bytes += sizeof(ac_uint4) * idx;
   1361       1.1     lukem 
   1362       1.1     lukem #if HARDCODE_DATA
   1363       1.1     lukem     fprintf(out, PREF "ac_uint4 _ucprop_size = %d;\n\n", NUMPROPS);
   1364       1.1     lukem 
   1365       1.1     lukem     fprintf(out, PREF "ac_uint2 _ucprop_offsets[] = {");
   1366       1.1     lukem 
   1367       1.1     lukem     for (i = 0; i<nprops; i++) {
   1368       1.1     lukem        if (i) fprintf(out, ",");
   1369       1.1     lukem        if (!(i&7)) fprintf(out, "\n\t");
   1370       1.1     lukem        else fprintf(out, " ");
   1371       1.1     lukem        fprintf(out, "0x%04x", propcnt[i]);
   1372       1.1     lukem     }
   1373       1.1     lukem     fprintf(out, "\n};\n\n");
   1374       1.1     lukem 
   1375       1.1     lukem     fprintf(out, PREF "ac_uint4 _ucprop_ranges[] = {");
   1376       1.1     lukem 
   1377       1.1     lukem     k = 0;
   1378       1.1     lukem     for (i = 0; i < NUMPROPS; i++) {
   1379       1.1     lukem 	if (proptbl[i].used > 0) {
   1380       1.1     lukem 	  for (j=0; j<proptbl[i].used; j++) {
   1381       1.1     lukem 	    if (k) fprintf(out, ",");
   1382       1.1     lukem 	    if (!(k&3)) fprintf(out,"\n\t");
   1383       1.1     lukem 	    else fprintf(out, " ");
   1384       1.1     lukem 	    k++;
   1385       1.1     lukem 	    fprintf(out, "0x%08lx", (unsigned long) proptbl[i].ranges[j]);
   1386       1.1     lukem 	  }
   1387       1.1     lukem 	}
   1388       1.1     lukem     }
   1389       1.1     lukem     fprintf(out, "\n};\n\n");
   1390       1.1     lukem #else
   1391       1.1     lukem     /*
   1392       1.1     lukem      * Write the header.
   1393       1.1     lukem      */
   1394       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1395       1.1     lukem 
   1396       1.1     lukem     /*
   1397       1.1     lukem      * Write the byte count.
   1398       1.1     lukem      */
   1399       1.1     lukem     fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1400       1.1     lukem 
   1401       1.1     lukem     /*
   1402       1.1     lukem      * Write the property list counts.
   1403       1.1     lukem      */
   1404       1.1     lukem     fwrite((char *) propcnt, sizeof(ac_uint2), nprops, out);
   1405       1.1     lukem 
   1406       1.1     lukem     /*
   1407       1.1     lukem      * Write the property lists.
   1408       1.1     lukem      */
   1409       1.1     lukem     for (i = 0; i < NUMPROPS; i++) {
   1410       1.1     lukem         if (proptbl[i].used > 0)
   1411       1.1     lukem           fwrite((char *) proptbl[i].ranges, sizeof(ac_uint4),
   1412       1.1     lukem                  proptbl[i].used, out);
   1413       1.1     lukem     }
   1414       1.1     lukem 
   1415       1.1     lukem     fclose(out);
   1416       1.1     lukem #endif
   1417       1.1     lukem 
   1418       1.1     lukem     /*****************************************************************
   1419       1.1     lukem      *
   1420       1.1     lukem      * Generate the case mapping data.
   1421       1.1     lukem      *
   1422       1.1     lukem      *****************************************************************/
   1423       1.1     lukem 
   1424       1.1     lukem #if HARDCODE_DATA
   1425       1.1     lukem     fprintf(out, PREF "ac_uint4 _uccase_size = %ld;\n\n",
   1426       1.1     lukem         (long) (upper_used + lower_used + title_used));
   1427       1.1     lukem 
   1428       1.1     lukem     fprintf(out, PREF "ac_uint2 _uccase_len[2] = {%ld, %ld};\n\n",
   1429       1.1     lukem         (long) upper_used, (long) lower_used);
   1430       1.1     lukem     fprintf(out, PREF "ac_uint4 _uccase_map[] = {");
   1431       1.1     lukem 
   1432       1.1     lukem     if (upper_used > 0)
   1433       1.1     lukem       /*
   1434       1.1     lukem        * Write the upper case table.
   1435       1.1     lukem        */
   1436       1.1     lukem       write_case(out, upper, upper_used, 1);
   1437       1.1     lukem 
   1438       1.1     lukem     if (lower_used > 0)
   1439       1.1     lukem       /*
   1440       1.1     lukem        * Write the lower case table.
   1441       1.1     lukem        */
   1442       1.1     lukem       write_case(out, lower, lower_used, !upper_used);
   1443       1.1     lukem 
   1444       1.1     lukem     if (title_used > 0)
   1445       1.1     lukem       /*
   1446       1.1     lukem        * Write the title case table.
   1447       1.1     lukem        */
   1448       1.1     lukem       write_case(out, title, title_used, !(upper_used||lower_used));
   1449       1.1     lukem 
   1450       1.1     lukem     if (!(upper_used || lower_used || title_used))
   1451       1.1     lukem 	fprintf(out, "\t0");
   1452       1.1     lukem 
   1453       1.1     lukem     fprintf(out, "\n};\n\n");
   1454       1.1     lukem #else
   1455       1.1     lukem     /*
   1456       1.1     lukem      * Open the case.dat file.
   1457       1.1     lukem      */
   1458       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "case.dat", opath);
   1459       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1460       1.1     lukem       return;
   1461       1.1     lukem 
   1462       1.1     lukem     /*
   1463       1.1     lukem      * Write the case mapping tables.
   1464       1.1     lukem      */
   1465       1.1     lukem     hdr[1] = upper_used + lower_used + title_used;
   1466       1.1     lukem     casecnt[0] = upper_used;
   1467       1.1     lukem     casecnt[1] = lower_used;
   1468       1.1     lukem 
   1469       1.1     lukem     /*
   1470       1.1     lukem      * Write the header.
   1471       1.1     lukem      */
   1472       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1473       1.1     lukem 
   1474       1.1     lukem     /*
   1475       1.1     lukem      * Write the upper and lower case table sizes.
   1476       1.1     lukem      */
   1477       1.1     lukem     fwrite((char *) casecnt, sizeof(ac_uint2), 2, out);
   1478       1.1     lukem 
   1479       1.1     lukem     if (upper_used > 0)
   1480       1.1     lukem       /*
   1481       1.1     lukem        * Write the upper case table.
   1482       1.1     lukem        */
   1483       1.1     lukem       fwrite((char *) upper, sizeof(_case_t), upper_used, out);
   1484       1.1     lukem 
   1485       1.1     lukem     if (lower_used > 0)
   1486       1.1     lukem       /*
   1487       1.1     lukem        * Write the lower case table.
   1488       1.1     lukem        */
   1489       1.1     lukem       fwrite((char *) lower, sizeof(_case_t), lower_used, out);
   1490       1.1     lukem 
   1491       1.1     lukem     if (title_used > 0)
   1492       1.1     lukem       /*
   1493       1.1     lukem        * Write the title case table.
   1494       1.1     lukem        */
   1495       1.1     lukem       fwrite((char *) title, sizeof(_case_t), title_used, out);
   1496       1.1     lukem 
   1497       1.1     lukem     fclose(out);
   1498       1.1     lukem #endif
   1499       1.1     lukem 
   1500       1.1     lukem     /*****************************************************************
   1501       1.1     lukem      *
   1502       1.1     lukem      * Generate the composition data.
   1503       1.1     lukem      *
   1504       1.1     lukem      *****************************************************************/
   1505       1.1     lukem 
   1506       1.1     lukem     /*
   1507       1.1     lukem      * Create compositions from decomposition data
   1508       1.1     lukem      */
   1509       1.1     lukem     create_comps();
   1510       1.1     lukem 
   1511       1.1     lukem #if HARDCODE_DATA
   1512       1.1     lukem     fprintf(out, PREF "ac_uint4 _uccomp_size = %ld;\n\n",
   1513       1.1     lukem         comps_used * 4L);
   1514       1.1     lukem 
   1515       1.1     lukem     fprintf(out, PREF "ac_uint4 _uccomp_data[] = {");
   1516       1.1     lukem 
   1517       1.1     lukem      /*
   1518       1.1     lukem       * Now, if comps exist, write them out.
   1519       1.1     lukem       */
   1520       1.1     lukem     if (comps_used > 0) {
   1521       1.1     lukem 	for (i=0; i<comps_used; i++) {
   1522       1.1     lukem 	    if (i) fprintf(out, ",");
   1523       1.1     lukem 	    fprintf(out, "\n\t0x%08lx, 0x%08lx, 0x%08lx, 0x%08lx",
   1524       1.1     lukem 	        (unsigned long) comps[i].comp, (unsigned long) comps[i].count,
   1525       1.1     lukem 	        (unsigned long) comps[i].code1, (unsigned long) comps[i].code2);
   1526       1.1     lukem 	}
   1527       1.1     lukem     } else {
   1528       1.1     lukem 	fprintf(out, "\t0");
   1529       1.1     lukem     }
   1530       1.1     lukem     fprintf(out, "\n};\n\n");
   1531       1.1     lukem #else
   1532       1.1     lukem     /*
   1533       1.1     lukem      * Open the comp.dat file.
   1534       1.1     lukem      */
   1535       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "comp.dat", opath);
   1536       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1537       1.1     lukem 	return;
   1538       1.1     lukem 
   1539       1.1     lukem     /*
   1540       1.1     lukem      * Write the header.
   1541       1.1     lukem      */
   1542       1.1     lukem     hdr[1] = (ac_uint2) comps_used * 4;
   1543       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1544       1.1     lukem 
   1545       1.1     lukem     /*
   1546       1.1     lukem      * Write out the byte count to maintain header size.
   1547       1.1     lukem      */
   1548       1.1     lukem     bytes = comps_used * sizeof(_comp_t);
   1549       1.1     lukem     fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1550       1.1     lukem 
   1551       1.1     lukem     /*
   1552       1.1     lukem      * Now, if comps exist, write them out.
   1553       1.1     lukem      */
   1554       1.1     lukem     if (comps_used > 0)
   1555       1.1     lukem         fwrite((char *) comps, sizeof(_comp_t), comps_used, out);
   1556       1.1     lukem 
   1557       1.1     lukem     fclose(out);
   1558       1.1     lukem #endif
   1559       1.1     lukem 
   1560       1.1     lukem     /*****************************************************************
   1561       1.1     lukem      *
   1562       1.1     lukem      * Generate the decomposition data.
   1563       1.1     lukem      *
   1564       1.1     lukem      *****************************************************************/
   1565       1.1     lukem 
   1566       1.1     lukem     /*
   1567       1.1     lukem      * Fully expand all decompositions before generating the output file.
   1568       1.1     lukem      */
   1569       1.1     lukem     expand_decomp();
   1570       1.1     lukem 
   1571       1.1     lukem #if HARDCODE_DATA
   1572       1.1     lukem     fprintf(out, PREF "ac_uint4 _ucdcmp_size = %ld;\n\n",
   1573       1.1     lukem         decomps_used * 2L);
   1574       1.1     lukem 
   1575       1.1     lukem     fprintf(out, PREF "ac_uint4 _ucdcmp_nodes[] = {");
   1576       1.1     lukem 
   1577       1.1     lukem     if (decomps_used) {
   1578       1.1     lukem 	/*
   1579       1.1     lukem 	 * Write the list of decomp nodes.
   1580       1.1     lukem 	 */
   1581       1.1     lukem 	for (i = idx = 0; i < decomps_used; i++) {
   1582       1.1     lukem 	    fprintf(out, "\n\t0x%08lx, 0x%08lx,",
   1583       1.1     lukem 	        (unsigned long) decomps[i].code, (unsigned long) idx);
   1584       1.1     lukem 	    idx += decomps[i].used;
   1585       1.1     lukem 	}
   1586       1.1     lukem 
   1587       1.1     lukem 	/*
   1588       1.1     lukem 	 * Write the sentinel index as the last decomp node.
   1589       1.1     lukem 	 */
   1590       1.1     lukem 	fprintf(out, "\n\t0x%08lx\n};\n\n", (unsigned long) idx);
   1591       1.1     lukem 
   1592       1.1     lukem 	fprintf(out, PREF "ac_uint4 _ucdcmp_decomp[] = {");
   1593       1.1     lukem 	/*
   1594       1.1     lukem 	 * Write the decompositions themselves.
   1595       1.1     lukem 	 */
   1596       1.1     lukem 	k = 0;
   1597       1.1     lukem 	for (i = 0; i < decomps_used; i++)
   1598       1.1     lukem 	  for (j=0; j<decomps[i].used; j++) {
   1599       1.1     lukem 	    if (k) fprintf(out, ",");
   1600       1.1     lukem 	    if (!(k&3)) fprintf(out,"\n\t");
   1601       1.1     lukem 	    else fprintf(out, " ");
   1602       1.1     lukem 	    k++;
   1603       1.1     lukem 	    fprintf(out, "0x%08lx", (unsigned long) decomps[i].decomp[j]);
   1604       1.1     lukem 	  }
   1605       1.1     lukem 	fprintf(out, "\n};\n\n");
   1606       1.1     lukem     }
   1607       1.1     lukem #else
   1608       1.1     lukem     /*
   1609       1.1     lukem      * Open the decomp.dat file.
   1610       1.1     lukem      */
   1611       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "decomp.dat", opath);
   1612       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1613       1.1     lukem       return;
   1614       1.1     lukem 
   1615       1.1     lukem     hdr[1] = decomps_used;
   1616       1.1     lukem 
   1617       1.1     lukem     /*
   1618       1.1     lukem      * Write the header.
   1619       1.1     lukem      */
   1620       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1621       1.1     lukem 
   1622       1.1     lukem     /*
   1623       1.1     lukem      * Write a temporary byte count which will be calculated as the
   1624       1.1     lukem      * decompositions are written out.
   1625       1.1     lukem      */
   1626       1.1     lukem     bytes = 0;
   1627       1.1     lukem     fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1628       1.1     lukem 
   1629       1.1     lukem     if (decomps_used) {
   1630       1.1     lukem         /*
   1631       1.1     lukem          * Write the list of decomp nodes.
   1632       1.1     lukem          */
   1633       1.1     lukem         for (i = idx = 0; i < decomps_used; i++) {
   1634       1.1     lukem             fwrite((char *) &decomps[i].code, sizeof(ac_uint4), 1, out);
   1635       1.1     lukem             fwrite((char *) &idx, sizeof(ac_uint4), 1, out);
   1636       1.1     lukem             idx += decomps[i].used;
   1637       1.1     lukem         }
   1638       1.1     lukem 
   1639       1.1     lukem         /*
   1640       1.1     lukem          * Write the sentinel index as the last decomp node.
   1641       1.1     lukem          */
   1642       1.1     lukem         fwrite((char *) &idx, sizeof(ac_uint4), 1, out);
   1643       1.1     lukem 
   1644       1.1     lukem         /*
   1645       1.1     lukem          * Write the decompositions themselves.
   1646       1.1     lukem          */
   1647       1.1     lukem         for (i = 0; i < decomps_used; i++)
   1648       1.1     lukem           fwrite((char *) decomps[i].decomp, sizeof(ac_uint4),
   1649       1.1     lukem                  decomps[i].used, out);
   1650       1.1     lukem 
   1651       1.1     lukem         /*
   1652       1.1     lukem          * Seek back to the beginning and write the byte count.
   1653       1.1     lukem          */
   1654       1.1     lukem         bytes = (sizeof(ac_uint4) * idx) +
   1655       1.1     lukem             (sizeof(ac_uint4) * ((hdr[1] << 1) + 1));
   1656       1.1     lukem         fseek(out, sizeof(ac_uint2) << 1, 0L);
   1657       1.1     lukem         fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1658       1.1     lukem 
   1659       1.1     lukem         fclose(out);
   1660       1.1     lukem     }
   1661       1.1     lukem #endif
   1662       1.1     lukem 
   1663  1.1.1.10  christos #if HARDCODE_DATA
   1664       1.1     lukem     fprintf(out, PREF "ac_uint4 _uckdcmp_size = %ld;\n\n",
   1665       1.1     lukem         kdecomps_used * 2L);
   1666       1.1     lukem 
   1667       1.1     lukem     fprintf(out, PREF "ac_uint4 _uckdcmp_nodes[] = {");
   1668       1.1     lukem 
   1669       1.1     lukem     if (kdecomps_used) {
   1670       1.1     lukem 	/*
   1671       1.1     lukem 	 * Write the list of kdecomp nodes.
   1672       1.1     lukem 	 */
   1673       1.1     lukem 	for (i = idx = 0; i < kdecomps_used; i++) {
   1674       1.1     lukem 	    fprintf(out, "\n\t0x%08lx, 0x%08lx,",
   1675       1.1     lukem 	        (unsigned long) kdecomps[i].code, (unsigned long) idx);
   1676       1.1     lukem 	    idx += kdecomps[i].used;
   1677       1.1     lukem 	}
   1678       1.1     lukem 
   1679       1.1     lukem 	/*
   1680       1.1     lukem 	 * Write the sentinel index as the last decomp node.
   1681       1.1     lukem 	 */
   1682       1.1     lukem 	fprintf(out, "\n\t0x%08lx\n};\n\n", (unsigned long) idx);
   1683       1.1     lukem 
   1684       1.1     lukem 	fprintf(out, PREF "ac_uint4 _uckdcmp_decomp[] = {");
   1685       1.1     lukem 
   1686       1.1     lukem 	/*
   1687       1.1     lukem 	 * Write the decompositions themselves.
   1688       1.1     lukem 	 */
   1689       1.1     lukem 	k = 0;
   1690       1.1     lukem 	for (i = 0; i < kdecomps_used; i++)
   1691       1.1     lukem 	  for (j=0; j<kdecomps[i].used; j++) {
   1692       1.1     lukem 	    if (k) fprintf(out, ",");
   1693       1.1     lukem 	    if (!(k&3)) fprintf(out,"\n\t");
   1694       1.1     lukem 	    else fprintf(out, " ");
   1695       1.1     lukem 	    k++;
   1696       1.1     lukem 	    fprintf(out, "0x%08lx", (unsigned long) kdecomps[i].decomp[j]);
   1697       1.1     lukem 	  }
   1698       1.1     lukem 	fprintf(out, "\n};\n\n");
   1699       1.1     lukem     }
   1700       1.1     lukem #else
   1701       1.1     lukem     /*
   1702       1.1     lukem      * Open the kdecomp.dat file.
   1703       1.1     lukem      */
   1704       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "kdecomp.dat", opath);
   1705       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1706       1.1     lukem       return;
   1707       1.1     lukem 
   1708       1.1     lukem     hdr[1] = kdecomps_used;
   1709       1.1     lukem 
   1710       1.1     lukem     /*
   1711       1.1     lukem      * Write the header.
   1712       1.1     lukem      */
   1713       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1714       1.1     lukem 
   1715       1.1     lukem     /*
   1716       1.1     lukem      * Write a temporary byte count which will be calculated as the
   1717       1.1     lukem      * decompositions are written out.
   1718       1.1     lukem      */
   1719       1.1     lukem     bytes = 0;
   1720       1.1     lukem     fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1721       1.1     lukem 
   1722       1.1     lukem     if (kdecomps_used) {
   1723       1.1     lukem         /*
   1724       1.1     lukem          * Write the list of kdecomp nodes.
   1725       1.1     lukem          */
   1726       1.1     lukem         for (i = idx = 0; i < kdecomps_used; i++) {
   1727       1.1     lukem             fwrite((char *) &kdecomps[i].code, sizeof(ac_uint4), 1, out);
   1728       1.1     lukem             fwrite((char *) &idx, sizeof(ac_uint4), 1, out);
   1729       1.1     lukem             idx += kdecomps[i].used;
   1730       1.1     lukem         }
   1731       1.1     lukem 
   1732       1.1     lukem         /*
   1733       1.1     lukem          * Write the sentinel index as the last decomp node.
   1734       1.1     lukem          */
   1735       1.1     lukem         fwrite((char *) &idx, sizeof(ac_uint4), 1, out);
   1736       1.1     lukem 
   1737       1.1     lukem         /*
   1738       1.1     lukem          * Write the decompositions themselves.
   1739       1.1     lukem          */
   1740       1.1     lukem         for (i = 0; i < kdecomps_used; i++)
   1741       1.1     lukem           fwrite((char *) kdecomps[i].decomp, sizeof(ac_uint4),
   1742       1.1     lukem                  kdecomps[i].used, out);
   1743       1.1     lukem 
   1744       1.1     lukem         /*
   1745       1.1     lukem          * Seek back to the beginning and write the byte count.
   1746       1.1     lukem          */
   1747       1.1     lukem         bytes = (sizeof(ac_uint4) * idx) +
   1748       1.1     lukem             (sizeof(ac_uint4) * ((hdr[1] << 1) + 1));
   1749       1.1     lukem         fseek(out, sizeof(ac_uint2) << 1, 0L);
   1750       1.1     lukem         fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1751       1.1     lukem 
   1752       1.1     lukem         fclose(out);
   1753       1.1     lukem     }
   1754       1.1     lukem #endif
   1755       1.1     lukem 
   1756       1.1     lukem     /*****************************************************************
   1757       1.1     lukem      *
   1758       1.1     lukem      * Generate the combining class data.
   1759       1.1     lukem      *
   1760       1.1     lukem      *****************************************************************/
   1761  1.1.1.10  christos #if HARDCODE_DATA
   1762       1.1     lukem     fprintf(out, PREF "ac_uint4 _uccmcl_size = %ld;\n\n", (long) ccl_used);
   1763       1.1     lukem 
   1764       1.1     lukem     fprintf(out, PREF "ac_uint4 _uccmcl_nodes[] = {");
   1765       1.1     lukem 
   1766       1.1     lukem     if (ccl_used > 0) {
   1767       1.1     lukem 	/*
   1768       1.1     lukem 	 * Write the combining class ranges out.
   1769       1.1     lukem 	 */
   1770       1.1     lukem 	for (i = 0; i<ccl_used; i++) {
   1771       1.1     lukem 	    if (i) fprintf(out, ",");
   1772       1.1     lukem 	    if (!(i&3)) fprintf(out, "\n\t");
   1773       1.1     lukem 	    else fprintf(out, " ");
   1774       1.1     lukem 	    fprintf(out, "0x%08lx", (unsigned long) ccl[i]);
   1775       1.1     lukem 	}
   1776       1.1     lukem     } else {
   1777       1.1     lukem 	fprintf(out, "\t0");
   1778       1.1     lukem     }
   1779       1.1     lukem     fprintf(out, "\n};\n\n");
   1780       1.1     lukem #else
   1781       1.1     lukem     /*
   1782       1.1     lukem      * Open the cmbcl.dat file.
   1783       1.1     lukem      */
   1784       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "cmbcl.dat", opath);
   1785       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1786       1.1     lukem       return;
   1787       1.1     lukem 
   1788       1.1     lukem     /*
   1789       1.1     lukem      * Set the number of ranges used.  Each range has a combining class which
   1790       1.1     lukem      * means each entry is a 3-tuple.
   1791       1.1     lukem      */
   1792       1.1     lukem     hdr[1] = ccl_used / 3;
   1793       1.1     lukem 
   1794       1.1     lukem     /*
   1795       1.1     lukem      * Write the header.
   1796       1.1     lukem      */
   1797       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1798       1.1     lukem 
   1799       1.1     lukem     /*
   1800       1.1     lukem      * Write out the byte count to maintain header size.
   1801       1.1     lukem      */
   1802       1.1     lukem     bytes = ccl_used * sizeof(ac_uint4);
   1803       1.1     lukem     fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1804       1.1     lukem 
   1805       1.1     lukem     if (ccl_used > 0)
   1806       1.1     lukem       /*
   1807       1.1     lukem        * Write the combining class ranges out.
   1808       1.1     lukem        */
   1809       1.1     lukem       fwrite((char *) ccl, sizeof(ac_uint4), ccl_used, out);
   1810       1.1     lukem 
   1811       1.1     lukem     fclose(out);
   1812       1.1     lukem #endif
   1813       1.1     lukem 
   1814       1.1     lukem     /*****************************************************************
   1815       1.1     lukem      *
   1816       1.1     lukem      * Generate the number data.
   1817       1.1     lukem      *
   1818       1.1     lukem      *****************************************************************/
   1819       1.1     lukem 
   1820       1.1     lukem #if HARDCODE_DATA
   1821       1.1     lukem     fprintf(out, PREF "ac_uint4 _ucnum_size = %lu;\n\n",
   1822       1.1     lukem         (unsigned long)ncodes_used<<1);
   1823       1.1     lukem 
   1824       1.1     lukem     fprintf(out, PREF "ac_uint4 _ucnum_nodes[] = {");
   1825       1.1     lukem 
   1826       1.1     lukem     /*
   1827       1.1     lukem      * Now, if number mappings exist, write them out.
   1828       1.1     lukem      */
   1829       1.1     lukem     if (ncodes_used > 0) {
   1830       1.1     lukem 	for (i = 0; i<ncodes_used; i++) {
   1831       1.1     lukem 	    if (i) fprintf(out, ",");
   1832       1.1     lukem 	    if (!(i&1)) fprintf(out, "\n\t");
   1833       1.1     lukem 	    else fprintf(out, " ");
   1834       1.1     lukem 	    fprintf(out, "0x%08lx, 0x%08lx",
   1835       1.1     lukem 	        (unsigned long) ncodes[i].code, (unsigned long) ncodes[i].idx);
   1836       1.1     lukem 	}
   1837       1.1     lukem 	fprintf(out, "\n};\n\n");
   1838       1.1     lukem 
   1839       1.1     lukem 	fprintf(out, PREF "short _ucnum_vals[] = {");
   1840       1.1     lukem 	for (i = 0; i<nums_used; i++) {
   1841       1.1     lukem 	    if (i) fprintf(out, ",");
   1842       1.1     lukem 	    if (!(i&3)) fprintf(out, "\n\t");
   1843       1.1     lukem 	    else fprintf(out, " ");
   1844       1.1     lukem 	    if (nums[i].numerator < 0) {
   1845       1.1     lukem 		fprintf(out, "%6d, 0x%04x",
   1846       1.1     lukem 		  nums[i].numerator, nums[i].denominator);
   1847       1.1     lukem 	    } else {
   1848       1.1     lukem 		fprintf(out, "0x%04x, 0x%04x",
   1849       1.1     lukem 		  nums[i].numerator, nums[i].denominator);
   1850       1.1     lukem 	    }
   1851       1.1     lukem 	}
   1852       1.1     lukem 	fprintf(out, "\n};\n\n");
   1853       1.1     lukem     }
   1854       1.1     lukem #else
   1855       1.1     lukem     /*
   1856       1.1     lukem      * Open the num.dat file.
   1857       1.1     lukem      */
   1858       1.1     lukem     snprintf(path, sizeof path, "%s" LDAP_DIRSEP "num.dat", opath);
   1859       1.1     lukem     if ((out = fopen(path, "wb")) == 0)
   1860       1.1     lukem       return;
   1861       1.1     lukem 
   1862       1.1     lukem     /*
   1863       1.1     lukem      * The count part of the header will be the total number of codes that
   1864       1.1     lukem      * have numbers.
   1865       1.1     lukem      */
   1866       1.1     lukem     hdr[1] = (ac_uint2) (ncodes_used << 1);
   1867       1.1     lukem     bytes = (ncodes_used * sizeof(_codeidx_t)) + (nums_used * sizeof(_num_t));
   1868       1.1     lukem 
   1869       1.1     lukem     /*
   1870       1.1     lukem      * Write the header.
   1871       1.1     lukem      */
   1872       1.1     lukem     fwrite((char *) hdr, sizeof(ac_uint2), 2, out);
   1873       1.1     lukem 
   1874       1.1     lukem     /*
   1875       1.1     lukem      * Write out the byte count to maintain header size.
   1876       1.1     lukem      */
   1877       1.1     lukem     fwrite((char *) &bytes, sizeof(ac_uint4), 1, out);
   1878       1.1     lukem 
   1879       1.1     lukem     /*
   1880       1.1     lukem      * Now, if number mappings exist, write them out.
   1881       1.1     lukem      */
   1882       1.1     lukem     if (ncodes_used > 0) {
   1883       1.1     lukem         fwrite((char *) ncodes, sizeof(_codeidx_t), ncodes_used, out);
   1884       1.1     lukem         fwrite((char *) nums, sizeof(_num_t), nums_used, out);
   1885       1.1     lukem     }
   1886       1.1     lukem #endif
   1887       1.1     lukem 
   1888       1.1     lukem     fclose(out);
   1889       1.1     lukem }
   1890       1.1     lukem 
   1891       1.1     lukem static void
   1892       1.1     lukem usage(char *prog)
   1893       1.1     lukem {
   1894       1.1     lukem     fprintf(stderr,
   1895       1.1     lukem             "Usage: %s [-o output-directory|-x composition-exclusions]", prog);
   1896       1.1     lukem     fprintf(stderr, " datafile1 datafile2 ...\n\n");
   1897       1.1     lukem     fprintf(stderr,
   1898       1.1     lukem             "-o output-directory\n\t\tWrite the output files to a different");
   1899       1.1     lukem     fprintf(stderr, " directory (default: .).\n");
   1900       1.1     lukem     fprintf(stderr,
   1901       1.1     lukem             "-x composition-exclusion\n\t\tFile of composition codes");
   1902       1.1     lukem     fprintf(stderr, " that should be excluded.\n");
   1903       1.1     lukem     exit(1);
   1904       1.1     lukem }
   1905       1.1     lukem 
   1906       1.1     lukem int
   1907       1.1     lukem main(int argc, char *argv[])
   1908       1.1     lukem {
   1909       1.1     lukem     FILE *in;
   1910       1.1     lukem     char *prog, *opath;
   1911       1.1     lukem 
   1912       1.1     lukem     prog = lutil_progname( "ucgendat", argc, argv );
   1913       1.1     lukem 
   1914       1.1     lukem     opath = 0;
   1915       1.1     lukem     in = stdin;
   1916       1.1     lukem 
   1917       1.1     lukem     argc--;
   1918       1.1     lukem     argv++;
   1919       1.1     lukem 
   1920       1.1     lukem     while (argc > 0) {
   1921       1.1     lukem         if (argv[0][0] == '-') {
   1922       1.1     lukem             switch (argv[0][1]) {
   1923       1.1     lukem               case 'o':
   1924       1.1     lukem                 argc--;
   1925       1.1     lukem                 argv++;
   1926       1.1     lukem                 opath = argv[0];
   1927       1.1     lukem                 break;
   1928       1.1     lukem               case 'x':
   1929       1.1     lukem                 argc--;
   1930       1.1     lukem                 argv++;
   1931       1.1     lukem                 if ((in = fopen(argv[0], "r")) == 0)
   1932       1.1     lukem                   fprintf(stderr,
   1933       1.1     lukem                           "%s: unable to open composition exclusion file %s\n",
   1934       1.1     lukem                           prog, argv[0]);
   1935       1.1     lukem                 else {
   1936       1.1     lukem                     read_compexdata(in);
   1937       1.1     lukem                     fclose(in);
   1938       1.1     lukem                     in = 0;
   1939       1.1     lukem                 }
   1940       1.1     lukem                 break;
   1941       1.1     lukem               default:
   1942       1.1     lukem                 usage(prog);
   1943       1.1     lukem             }
   1944       1.1     lukem         } else {
   1945       1.1     lukem             if (in != stdin && in != NULL)
   1946       1.1     lukem               fclose(in);
   1947       1.1     lukem             if ((in = fopen(argv[0], "r")) == 0)
   1948       1.1     lukem               fprintf(stderr, "%s: unable to open ctype file %s\n",
   1949       1.1     lukem                       prog, argv[0]);
   1950       1.1     lukem             else {
   1951       1.1     lukem                 read_cdata(in);
   1952       1.1     lukem                 fclose(in);
   1953       1.1     lukem                 in = 0;
   1954       1.1     lukem 	    }
   1955       1.1     lukem         }
   1956       1.1     lukem         argc--;
   1957       1.1     lukem         argv++;
   1958       1.1     lukem     }
   1959       1.1     lukem 
   1960       1.1     lukem     if (opath == 0)
   1961       1.1     lukem       opath = ".";
   1962       1.1     lukem     write_cdata(opath);
   1963       1.1     lukem 
   1964       1.1     lukem     return 0;
   1965       1.1     lukem }
   1966