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/*
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* Copyright (c) 2002-2005 The TenDRA Project <http://www.tendra.org/>.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. Neither the name of The TenDRA Project nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific, prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS ``AS
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* IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
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* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDERS OR
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* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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* EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* $Id$
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*/
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/*
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Crown Copyright (c) 1997
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This TenDRA(r) Computer Program is subject to Copyright
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owned by the United Kingdom Secretary of State for Defence
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acting through the Defence Evaluation and Research Agency
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(DERA). It is made available to Recipients with a
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royalty-free licence for its use, reproduction, transfer
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to other parties and amendment for any purpose not excluding
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product development provided that any such use et cetera
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shall be deemed to be acceptance of the following conditions:-
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(1) Its Recipients shall ensure that this Notice is
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reproduced upon any copies or amended versions of it;
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(2) Any amended version of it shall be clearly marked to
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show both the nature of and the organisation responsible
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for the relevant amendment or amendments;
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(3) Its onward transfer from a recipient to another
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party shall be deemed to be that party's acceptance of
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these conditions;
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(4) DERA gives no warranty or assurance as to its
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quality or suitability for any purpose and DERA accepts
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no liability whatsoever in relation to any use to which
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it may be put.
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*/
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#include "config.h"
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#include <limits.h>
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#include "c_types.h"
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#include "char.h"
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#include "literal.h"
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/*
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ASCII FLAG
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This flag is true if the native codeset is ASCII. It is initially -1
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indicating that the conversion tables have not been initialised.
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*/
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int is_ascii = -1;
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/*
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CONVERSION TABLES
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These tables give the conversions of ASCII to and from the native
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codeset. The ASCII to native table is deduced for the portable
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codeset from the list of characters in char.h which is given in
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ASCII sequence.
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*/
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static character to_ascii_tab[NO_CHAR + 1];
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static character from_ascii_tab[NO_CHAR + 1] = {
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#define NONE char_illegal
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#define CHAR_DATA(A, B, C, D) (D),
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#include "char.h"
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#undef CHAR_DATA
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NONE /* dummy last element */
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};
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/*
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CONVERT A CHARACTER TO ASCII
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This routine converts the character c from the native codeset to
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ASCII.
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*/
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unsigned long
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to_ascii(unsigned long c, int *ch)
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{
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if (c < NO_CHAR) {
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c = (unsigned long)to_ascii_tab[c];
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*ch = CHAR_ASCII;
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}
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return(c);
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}
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/*
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CONVERT A CHARACTER TO NATIVE CODESET
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This routine converts the character c to the native codeset from
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ASCII.
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*/
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unsigned long
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from_ascii(unsigned long c, int *ch)
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{
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if (c < NO_CHAR) {
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c = (unsigned long)from_ascii_tab[c];
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*ch = CHAR_SIMPLE;
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}
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return(c);
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}
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/*
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TRANSFORM A TABLE FROM ASCII TO NATIVE CODESET
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This routine maps the look-up table p from ASCII to native codeset.
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*/
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void
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map_ascii(unsigned char *p)
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{
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unsigned c;
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int asc = is_ascii;
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if (asc == -1) {
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/* Set up conversion tables */
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asc = 1;
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for (c = 0; c < NO_CHAR; c++) {
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to_ascii_tab[c] = (character)c;
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}
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for (c = 0; c < NO_CHAR; c++) {
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unsigned a = (unsigned)from_ascii_tab[c];
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if (a == NONE) {
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a = c;
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}
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if (a != c) {
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asc = 0;
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}
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from_ascii_tab[c] = (character)a;
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to_ascii_tab[a] = (character)c;
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}
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is_ascii = asc;
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}
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if (asc == 0) {
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/* Map table */
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unsigned char b = p[NONE];
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unsigned char copy[NO_CHAR];
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for (c = 0; c < NO_CHAR; c++) {
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copy[c] = p[c];
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p[c] = b;
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}
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SET(copy);
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for (c = 0; c < NO_CHAR; c++) {
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character a = from_ascii_tab[c];
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p[a] = copy[c];
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}
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}
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return;
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}
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/*
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TABLE OF ALPHABETIC UNICODE CHARACTERS
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This table gives the ranges of the unicode characters which are
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suitable for use in an identifier name in ascending order. It is
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derived from Annex E of the standard (which derives from ISO/IEC
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PDTR 10176) with two misprints corrected. 0e0d should be 0e8d
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and 5e76 should be fe76. Note that the upper and lower case
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English alphabets have been included even though they are not
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valid universal character names.
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*/
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static struct {
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unsigned long lo;
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unsigned long hi;
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} alpha_range[] = {
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/* Latin */
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{ 0x0041, 0x005a }, { 0x0061, 0x007a }, { 0x00c0, 0x00d6 },
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{ 0x00d8, 0x00f6 }, { 0x00f8, 0x01f5 }, { 0x01fa, 0x0217 },
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{ 0x0250, 0x02a8 },
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/* Greek */
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{ 0x0384, 0x0384 }, { 0x0388, 0x038a }, { 0x038c, 0x038c },
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{ 0x038e, 0x03a1 }, { 0x03a3, 0x03ce }, { 0x03d0, 0x03d6 },
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{ 0x03da, 0x03da }, { 0x03dc, 0x03dc }, { 0x03de, 0x03de },
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{ 0x03e0, 0x03e0 }, { 0x03e2, 0x03f3 },
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/* Cyrilic */
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{ 0x0401, 0x040d }, { 0x040f, 0x044f }, { 0x0451, 0x045c },
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{ 0x045e, 0x0481 }, { 0x0490, 0x04c4 }, { 0x04c7, 0x04c8 },
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{ 0x04cb, 0x04cc }, { 0x04d0, 0x04eb }, { 0x04ee, 0x04f5 },
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{ 0x04f8, 0x04f9 },
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/* Armenian */
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{ 0x0531, 0x0556 }, { 0x0561, 0x0587 },
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/* Hebrew */
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{ 0x05d0, 0x05ea }, { 0x05f0, 0x05f4 },
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/* Arabic */
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{ 0x0621, 0x063a }, { 0x0640, 0x0652 }, { 0x0670, 0x06b7 },
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{ 0x06ba, 0x06be }, { 0x06c0, 0x06ce }, { 0x06e5, 0x06e7 },
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/* Devanagari */
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{ 0x0905, 0x0939 }, { 0x0958, 0x0962 },
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/* Bengali */
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{ 0x0985, 0x098c }, { 0x098f, 0x0990 }, { 0x0993, 0x09a8 },
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{ 0x09aa, 0x09b0 }, { 0x09b2, 0x09b2 }, { 0x09b6, 0x09b9 },
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{ 0x09dc, 0x09dd }, { 0x09df, 0x09e1 }, { 0x09f0, 0x09f1 },
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/* Gurmukhi */
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{ 0x0a05, 0x0a0a }, { 0x0a0f, 0x0a10 }, { 0x0a13, 0x0a28 },
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{ 0x0a2a, 0x0a30 }, { 0x0a32, 0x0a33 }, { 0x0a35, 0x0a36 },
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{ 0x0a38, 0x0a39 }, { 0x0a59, 0x0a5c }, { 0x0a5e, 0x0a5e },
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/* Gujarati */
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{ 0x0a85, 0x0a8b }, { 0x0a8d, 0x0a8d }, { 0x0a8f, 0x0a91 },
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{ 0x0a93, 0x0aa8 }, { 0x0aaa, 0x0ab0 }, { 0x0ab2, 0x0ab3 },
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{ 0x0ab5, 0x0ab9 }, { 0x0ae0, 0x0ae0 },
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/* Oriya */
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{ 0x0b05, 0x0b0c }, { 0x0b0f, 0x0b10 }, { 0x0b13, 0x0b28 },
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{ 0x0b2a, 0x0b30 }, { 0x0b32, 0x0b33 }, { 0x0b36, 0x0b39 },
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{ 0x0b5c, 0x0b5d }, { 0x0b5f, 0x0b61 },
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/* Tamil */
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{ 0x0b85, 0x0b8a }, { 0x0b8e, 0x0b90 }, { 0x0b92, 0x0b95 },
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{ 0x0b99, 0x0b9a }, { 0x0b9c, 0x0b9c }, { 0x0b9e, 0x0b9f },
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{ 0x0ba3, 0x0ba4 }, { 0x0ba8, 0x0baa }, { 0x0bae, 0x0bb5 },
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{ 0x0bb7, 0x0bb9 },
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/* Telugu */
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{ 0x0c05, 0x0c0c }, { 0x0c0e, 0x0c10 }, { 0x0c12, 0x0c28 },
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{ 0x0c2a, 0x0c33 }, { 0x0c35, 0x0c39 }, { 0x0c60, 0x0c61 },
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/* Kannada */
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{ 0x0c85, 0x0c8c }, { 0x0c8e, 0x0c90 }, { 0x0c92, 0x0ca8 },
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{ 0x0caa, 0x0cb3 }, { 0x0cb5, 0x0cb9 }, { 0x0ce0, 0x0ce1 },
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/* Malayalam */
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{ 0x0d05, 0x0d0c }, { 0x0d0e, 0x0d10 }, { 0x0d12, 0x0d28 },
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{ 0x0d2a, 0x0d39 }, { 0x0d60, 0x0d61 },
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/* Thai */
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{ 0x0e01, 0x0e30 }, { 0x0e32, 0x0e33 }, { 0x0e40, 0x0e46 },
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{ 0x0e4f, 0x0e5b },
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/* Lao */
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{ 0x0e81, 0x0e82 }, { 0x0e84, 0x0e84 }, { 0x0e87, 0x0e87 },
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{ 0x0e88, 0x0e88 }, { 0x0e8a, 0x0e8a }, { 0x0e8d, 0x0e8d },
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{ 0x0e94, 0x0e97 }, { 0x0e99, 0x0e9f }, { 0x0ea1, 0x0ea3 },
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{ 0x0ea5, 0x0ea5 }, { 0x0ea7, 0x0ea7 }, { 0x0eaa, 0x0eaa },
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{ 0x0eab, 0x0eab }, { 0x0ead, 0x0eb0 }, { 0x0eb2, 0x0eb2 },
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{ 0x0eb3, 0x0eb3 }, { 0x0ebd, 0x0ebd }, { 0x0ec0, 0x0ec4 },
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{ 0x0ec6, 0x0ec6 },
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/* Georgian */
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{ 0x10a0, 0x10c5 }, { 0x10d0, 0x10f6 },
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/* Hangul */
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{ 0x1100, 0x1159 }, { 0x1161, 0x11a2 }, { 0x11a8, 0x11f9 },
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/* Latin (continued) */
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{ 0x1e00, 0x1e9a }, { 0x1ea0, 0x1ef9 },
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/* Greek (continued) */
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{ 0x1f00, 0x1f15 }, { 0x1f18, 0x1f1d }, { 0x1f20, 0x1f45 },
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{ 0x1f48, 0x1f4d }, { 0x1f50, 0x1f57 }, { 0x1f59, 0x1f59 },
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{ 0x1f5b, 0x1f5b }, { 0x1f5d, 0x1f5d }, { 0x1f5f, 0x1f7d },
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{ 0x1f80, 0x1fb4 }, { 0x1fb6, 0x1fbc }, { 0x1fc2, 0x1fc4 },
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{ 0x1fc6, 0x1fcc }, { 0x1fd0, 0x1fd3 }, { 0x1fd6, 0x1fdb },
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{ 0x1fe0, 0x1fec }, { 0x1ff2, 0x1ff4 }, { 0x1ff6, 0x1ffc },
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/* Hiragana */
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{ 0x3041, 0x3094 }, { 0x309b, 0x309e },
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/* Katakana */
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{ 0x30a1, 0x30fe },
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/* Bopmofo */
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|
305 |
{ 0x3105, 0x312c },
|
2 |
7u83 |
306 |
|
7 |
7u83 |
307 |
/* CJK Unified Ideographs */
|
2 |
7u83 |
308 |
#if FS_NUMBER_SUFFIX
|
7 |
7u83 |
309 |
{ 0x4e00UL, 0x9fa5UL }, { 0xf900UL, 0xfa2dUL }, { 0xfb1fUL, 0xfb36UL },
|
|
|
310 |
{ 0xfb38UL, 0xfb3cUL }, { 0xfb3eUL, 0xfb3eUL }, { 0xfb40UL, 0xfb41UL },
|
|
|
311 |
{ 0xfb42UL, 0xfb44UL }, { 0xfb46UL, 0xfbb1UL }, { 0xfbd3UL, 0xfd3fUL },
|
|
|
312 |
{ 0xfd50UL, 0xfd8fUL }, { 0xfd92UL, 0xfdc7UL }, { 0xfdf0UL, 0xfdfbUL },
|
|
|
313 |
{ 0xfe70UL, 0xfe72UL }, { 0xfe74UL, 0xfe74UL }, { 0xfe76UL, 0xfefcUL },
|
|
|
314 |
{ 0xff21UL, 0xff3aUL }, { 0xff41UL, 0xff5aUL }, { 0xff66UL, 0xffbeUL },
|
|
|
315 |
{ 0xffc2UL, 0xffc7UL }, { 0xffcaUL, 0xffcfUL }, { 0xffd2UL, 0xffd7UL },
|
|
|
316 |
{ 0xffdaUL, 0xffdcUL }
|
2 |
7u83 |
317 |
#else
|
7 |
7u83 |
318 |
{ 0x4e00, 0x9fa5 }, { 0xf900, 0xfa2d }, { 0xfb1f, 0xfb36 },
|
|
|
319 |
{ 0xfb38, 0xfb3c }, { 0xfb3e, 0xfb3e }, { 0xfb40, 0xfb41 },
|
|
|
320 |
{ 0xfb42, 0xfb44 }, { 0xfb46, 0xfbb1 }, { 0xfbd3, 0xfd3f },
|
|
|
321 |
{ 0xfd50, 0xfd8f }, { 0xfd92, 0xfdc7 }, { 0xfdf0, 0xfdfb },
|
|
|
322 |
{ 0xfe70, 0xfe72 }, { 0xfe74, 0xfe74 }, { 0xfe76, 0xfefc },
|
|
|
323 |
{ 0xff21, 0xff3a }, { 0xff41, 0xff5a }, { 0xff66, 0xffbe },
|
|
|
324 |
{ 0xffc2, 0xffc7 }, { 0xffca, 0xffcf }, { 0xffd2, 0xffd7 },
|
|
|
325 |
{ 0xffda, 0xffdc }
|
2 |
7u83 |
326 |
#endif
|
7 |
7u83 |
327 |
};
|
2 |
7u83 |
328 |
|
|
|
329 |
|
|
|
330 |
/*
|
|
|
331 |
DOES A UNICODE CHARACTER REPRESENT AN ALPHABETIC VALUE?
|
|
|
332 |
|
|
|
333 |
This routine checks whether the unicode character c represents an
|
|
|
334 |
alphabetic value suitable for use in an identifier name. It
|
|
|
335 |
operates by performing a binary chop on the table above.
|
|
|
336 |
*/
|
|
|
337 |
|
7 |
7u83 |
338 |
int
|
|
|
339 |
unicode_alpha(unsigned long c)
|
2 |
7u83 |
340 |
{
|
7 |
7u83 |
341 |
int i = 0;
|
|
|
342 |
int j = array_size(alpha_range) - 1;
|
|
|
343 |
do {
|
|
|
344 |
int k = (i + j) / 2;
|
|
|
345 |
if (c < alpha_range[k].lo) {
|
|
|
346 |
/* Lower half */
|
|
|
347 |
j = k - 1;
|
|
|
348 |
} else if (c > alpha_range[k].hi) {
|
|
|
349 |
/* Upper half */
|
|
|
350 |
i = k + 1;
|
|
|
351 |
} else {
|
|
|
352 |
/* Match found */
|
|
|
353 |
return(1);
|
|
|
354 |
}
|
|
|
355 |
} while (i <= j);
|
|
|
356 |
return(0);
|
2 |
7u83 |
357 |
}
|