cc305ed674
X-SVN-Rev: 584
312 lines
7.7 KiB
C++
312 lines
7.7 KiB
C++
/*
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*******************************************************************************
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* Copyright (C) 1996-1999, International Business Machines Corporation and *
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* others. All Rights Reserved. *
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*******************************************************************************
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*/
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// FILE NAME : unicode.cpp
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//
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// CREATED
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// Wednesday, December 11, 1996
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//
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// CHANGES
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// Wednesday, February 4, 1998
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// Changed logic in toUpperCase and toLowerCase in order
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// to avoid 0xFFFF to be returned when receiving
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// confusing Unichar to lowercase or to uppercase
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// (e.g. Letterlike symbols)
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//
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// CHANGES BY
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// Bertramd A. DAMIBA
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//
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// CREATED BY
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// Helena Shih
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//
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// CHANGES
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// Thursday, April 15, 1999
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// Modified the definitions of all the functions
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// C++ Wrappers for Unicode
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// CHANGES BY
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// Madhu Katragadda
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// 5/20/99 Madhu Added the function u_getVersion()
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// 07/09/99 stephen Added definition for {MIN,MAX}_VALUE
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// 11/22/99 aliu Added MIN_RADIX, MAX_RADIX, digit, forDigit
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//********************************************************************************************
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#include "unicode/unicode.h"
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#include "unicode/uchar.h"
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const UChar Unicode::MIN_VALUE = 0x0000;
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const UChar Unicode::MAX_VALUE = 0xFFFF;
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const int8_t Unicode::MIN_RADIX = 2;
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const int8_t Unicode::MAX_RADIX = 36;
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Unicode::Unicode()
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{
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}
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Unicode::Unicode(const Unicode& other)
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{
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}
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Unicode::~Unicode()
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{
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}
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const Unicode&
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Unicode::operator=(const Unicode& other)
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{
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return *this;
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}
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// Checks if ch is a lower case letter.
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bool_t
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Unicode::isLowerCase(UChar ch)
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{
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return (u_islower(ch) );
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}
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// Checks if ch is a upper case letter.
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bool_t
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Unicode::isUpperCase(UChar ch)
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{
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return (u_isupper(ch) );
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}
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// Checks if ch is a title case letter; usually upper case letters.
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bool_t
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Unicode::isTitleCase(UChar ch)
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{
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return (u_istitle(ch) );
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}
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// Checks if ch is a decimal digit.
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bool_t
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Unicode::isDigit(UChar ch)
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{
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return (u_isdigit(ch) );
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}
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// Checks if ch is a unicode character with assigned character type.
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bool_t
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Unicode::isDefined(UChar ch)
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{
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return (u_isdefined(ch) );
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}
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// Gets the character's linguistic directionality.
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Unicode::EDirectionProperty
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Unicode::characterDirection( UChar ch )
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{
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return ((EDirectionProperty)u_charDirection(ch) );
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}
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// Get the script associated with the character
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Unicode::EUnicodeScript
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Unicode::getScript(UChar ch)
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{
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return ((EUnicodeScript) u_charScript(ch) );
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}
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// Checks if the Unicode character is a base form character that can take a diacritic.
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bool_t
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Unicode::isBaseForm(UChar ch)
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{
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return (u_isbase(ch) );
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}
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// Checks if the Unicode character is a control character.
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bool_t
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Unicode::isControl(UChar ch)
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{
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return( u_iscntrl(ch) );
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}
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// Checks if the Unicode character is printable.
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bool_t
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Unicode::isPrintable(UChar ch)
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{
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return( u_isprint(ch) );
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}
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// Checks if the Unicode character is a letter.
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bool_t
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Unicode::isLetter(UChar ch)
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{
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return(u_isalpha(ch) );
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}
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// Checks if the Unicode character can start a Java identifier.
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bool_t
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Unicode::isJavaIdentifierStart(UChar ch)
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{
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return( u_isJavaIDStart(ch) );
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}
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// Checks if the Unicode character can be a Java identifier part other than starting the
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// identifier.
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bool_t
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Unicode::isJavaIdentifierPart(UChar ch)
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{
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return (u_isJavaIDPart(ch) );
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}
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// Checks if the Unicode character can start a Unicode identifier.
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bool_t
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Unicode::isUnicodeIdentifierStart(UChar ch)
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{
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return(u_isIDStart(ch));
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}
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// Checks if the Unicode character can be a Unicode identifier part other than starting the
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// identifier.
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bool_t
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Unicode::isUnicodeIdentifierPart(UChar ch)
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{
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return (u_isIDPart(ch) );
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}
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// Checks if the Unicode character can be ignorable in a Java or Unicode identifier.
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bool_t
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Unicode::isIdentifierIgnorable(UChar ch)
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{
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return( u_isIDIgnorable(ch) );
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}
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// Transforms the Unicode character to its lower case equivalent.
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UChar
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Unicode::toLowerCase(UChar ch)
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{
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return (u_tolower(ch) );
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}
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// Transforms the Unicode character to its upper case equivalent.
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UChar
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Unicode::toUpperCase(UChar ch)
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{
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return(u_toupper(ch) );
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}
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// Transforms the Unicode character to its title case equivalent.
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UChar
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Unicode::toTitleCase(UChar ch)
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{
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return(u_totitle(ch) );
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}
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// Checks if the Unicode character is a space character.
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bool_t
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Unicode::isSpaceChar(UChar ch)
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{
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return(u_isspace(ch) );
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}
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// Determines if the specified character is white space according to ICU.
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bool_t
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Unicode::isWhitespace(UChar ch) {
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// TODO Move this implementation to C, and make this call the C
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// implementation.
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// TODO Optional -- reimplement in terms of modified category
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// code -- see Mark Davis's note (below). If this is done,
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// the implementation still must conform to the specified
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// semantics. That is, U+00A0 and U+FEFF must return false,
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// and the ranges U+0009 - U+000D and U+001C - U+001F must
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// return true. Characters other than these in Zs, Zl, or Zp
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// must return true.
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int8_t cat = Unicode::getType(ch);
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return
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(cat == SPACE_SEPARATOR && ch != 0x00A0 && ch != 0xFEFF) ||
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(((((int32_t(1) << LINE_SEPARATOR) |
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(int32_t(1) << PARAGRAPH_SEPARATOR)) >> cat) & int32_t(1)) != 0) ||
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(ch <= 0x1F && ((((int32_t(1) << 0x0009) |
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(int32_t(1) << 0x000A) |
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(int32_t(1) << 0x000B) |
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(int32_t(1) << 0x000C) |
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(int32_t(1) << 0x000D) |
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(int32_t(1) << 0x001C) |
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(int32_t(1) << 0x001D) |
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(int32_t(1) << 0x001E) |
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(int32_t(1) << 0x001F)) >> ch) & int32_t(1)) != 0);
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// From Mark Davis:
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//| What we should do is to make sure that the special Cc characters like CR
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//| have either Zs, Zl, or Zp in the property database. We can then just call
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//| the equivalent of:
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//|
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//| public static boolean isWhileSpace(char ch) {
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//| return ((1 << Character.getType(c)) & WHITESPACE_MASK) != 0; }
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//|
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//| where WHITESPACE_MASK = (1 << Zs) | (1 << Zl) | (1 << Zp);
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//|
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//| This is much faster code, since it just looksup the property value and does
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//| a couple of arithmetics to get the right answer.
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//
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// (We still have to make sure U+00A0 and U+FEFF are excluded, so the code
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// might not be as simple as this. - aliu)
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}
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// Gets if the Unicode character's character property.
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int8_t
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Unicode::getType(UChar ch)
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{
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return(u_charType(ch) );
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}
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// Gets table cell width of the Unicode character.
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uint16_t
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Unicode::getCellWidth(UChar ch)
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{
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return (u_charCellWidth(ch) );
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}
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int32_t
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Unicode::digitValue(UChar ch)
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{
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return (u_charDigitValue(ch) );
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}
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int8_t
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Unicode::digit(UChar ch, int8_t radix) {
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int8_t value = -1;
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if (radix >= MIN_RADIX && radix <= MAX_RADIX) {
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value = (int8_t) u_charDigitValue(ch);
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if (value < 0) {
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if (ch >= (UChar)'A' && ch <= (UChar)'Z') {
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value = ch - ((UChar)'A' - 10);
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} else if (ch >= (UChar)'a' && ch <= (UChar)'z') {
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value = ch - ((UChar)'a' - 10);
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}
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}
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}
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return (value < radix) ? value : -1;
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}
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UChar
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Unicode::forDigit(int32_t digit, int8_t radix) {
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if ((radix < MIN_RADIX) || (radix > MAX_RADIX) ||
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(digit < 0) || (digit >= radix)) {
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return (UChar)0;
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}
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return (UChar)(((digit < 10) ? (UChar)'0' : ((UChar)'a' - 10))
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+ digit);
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}
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void
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Unicode::getUnicodeVersion(UVersionInfo versionArray)
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{
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u_getUnicodeVersion(versionArray);
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}
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