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683 lines
27 KiB
C++
683 lines
27 KiB
C++
/*
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*****************************************************************************************
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* *
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* COPYRIGHT: *
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* (C) Copyright Taligent, Inc., 1997 *
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* (C) Copyright International Business Machines Corporation, 1996 *
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* Licensed Material - Program-Property of IBM - All Rights Reserved. *
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* US Government Users Restricted Rights - Use, duplication, or disclosure *
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* restricted by GSA ADP Schedule Contract with IBM Corp. *
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* *
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*****************************************************************************************
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*
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* FILE NAME : unistring.h
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*
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* Modification History:
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*
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* Date Name Description
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* 02/05/97 aliu Added UnicodeString streamIn and streamOut methods.
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* 03/26/97 aliu Added indexOf(UniChar,).
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* 04/24/97 aliu Numerous changes per code review.
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* 05/06/97 helena Added isBogus().
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*****************************************************************************************
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*/
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#ifndef _UNISTRING
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#define _UNISTRING
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#include <limits.h>
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#include <stdlib.h>
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#include <iostream.h>
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#include <stdio.h>
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#include "ptypes.h"
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class Locale;
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/**
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* Simple Unicode string class. This is a simple class that encapsulates a
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* Unicode string, allowing the user to manipulate it and allowing it to grow
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* and shrink without the user having to worry about this.
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* <P>
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* The char* interfaces on this class work with either the Latin1 (ISO 8859-1)
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* character set or a host character set. The host character set may be any
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* 8-bit character set for which TPlatformUtilities::mapHostTo8859_1() and
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* TPlatformUtilities::map8859_1ToHost() have been defined; the default
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* implementation maps to and from EBCDIC as defined in RFC 1345. If the
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* host character set is used, then incoming characters are mapped to Unicode,
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* and outgoing characters are mapped back to the host character set.
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* <P>
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* All inbound transcoding of char* data is done by zero-extending the incoming
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* characters, and all outbound transcoding is done by truncating the top byte
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* from the characters.
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*/
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#ifdef NLS_MAC
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#pragma export on
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#endif
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class T_UTILITY_API UnicodeString {
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public:
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/**
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* Standard operator new. This function is only provided because the
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* special operator new would otherwise hide it. This function just
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* turns around and calls the global operator new function.
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*/
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void* operator new(size_t size);
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/**
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* Placement new. This version of operator new just returns the "location"
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* parameter unchanged as its result. It ignores the "size" parameter.
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* This function is here only to allow stack allocation of UnicodeStrings
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* through the C wrapper interface. DO NOT CALL THIS FUNCTION FROM C++
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* UNLESS YOU'RE SURE YOU KNOW WHAT YOU'RE DOING!
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* @param size Ignored. There's no way this function can check the size
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* of the block you pass to it. This function trusts you've
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* allocated enough space at that location to hold a Unicode-
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* String object.
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* @param location The location where you want the new UnicodeString to
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* be stored. Typically this will be a local variable on
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* the stack. This function trusts that there's enough
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* location to hold a UnicodeString object.
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* @return Whatever was passed in for "location".
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*/
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void* operator new(size_t size, void* location);
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UnicodeString();
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UnicodeString(const UnicodeString& that);
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UnicodeString(const UniChar* that);
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UnicodeString(const UniChar* that,
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t_int32 thatLength);
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UnicodeString(const char* that); // Must be null-terminated
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/**
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* External-buffer constructor. This constructor allows UnicodeString to
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* use storage provided by the client as its character buffer, rather than
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* allocating its own storage. The client passes a pointer to the storage,
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* along with the number of characters currently stored in it (we don't
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* use null termination to determine the string length, and the string is
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* not ever guaranteed to be null-terminated) and the number of characters
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* the storage is capable of holding.
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* <P>
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* WARNING: Do not change the characters in the buffer during the period
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* that the UnicodeString it active. Doing so may lead to
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* undefined results.
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* <P>
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* WARNING: If the string grows beyond the capacity of the buffer passed
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* to this constructor, UnicodeString will allocate its own storage,
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* and no subsequent changes to the UnicodeString will be reflected
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* in the buffer passed to this constructor (UnicodeString itself
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* will continue to work right, however.
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* <P>
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* WARNING: The string stored in the client-owned buffer is never guaranteed
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* to be null-terminated.
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* @param charBuffer A pointer to a range of storage that the new UnicodeString
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* should use as its character-storage buffer. The client
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* retains responsibility for deleting this storage after
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* the UnicodeString goes away.
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* @param numCharsInBuffer The number of characters currently stored in charBuffer.
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* @param bufferCapabity The number of characters the buffer if capable of
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* holding. This must be greater than or equal to
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* numCharsInBuffer, but this isn't checked.
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*/
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UnicodeString(UniChar* charBuffer,
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t_int32 numCharsInBuffer,
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t_int32 bufferCapacity);
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/* Creates a UnicodeString from a given const char* buffer and an
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* encoding name.
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* Netscape added method.
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* <P>
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* @param that A null-terminated char buffer in a given encoding
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* @param encoding name for the encoding used for buffer
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*
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*/
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UnicodeString(const char* that,
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const char* encoding);
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~UnicodeString() { if (!fClientOwnsStorage)
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delete [] fChars; }
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UnicodeString& operator=(const UnicodeString& that);
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/**
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* Compares a UnicodeString to something else. All versions of compare()
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* do bitwise comparison; internationally-sensitive comparison requires
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* the Collation library. The offset and length parameters are pinned to
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* permissible values if they are out of range.
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*/
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t_int8 compare(const UnicodeString& that) const;
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t_int8 compare(TextOffset thisOffset,
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t_int32 thisLength,
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const UnicodeString& that,
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TextOffset thatOffset,
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t_int32 thatLength) const;
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t_int8 compare(const UniChar* that) const; // Must be null-terminated
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t_int8 compare(const UniChar* that,
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t_int32 thatLength) const;
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t_int8 compare(const char* that) const;
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/**
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* Compares substrings of two UnicodeStrings. Same as compare(), but
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* takes starting and ending offsets instead of starting offsets and
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* character counts. The characters from the starting offset up to, but
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* not including the ending offset are compared. The start and limit
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* parameters are pinned to permissible values if they are out of range.
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*/
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t_int8 compareBetween( TextOffset thisStart,
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TextOffset thisLimit,
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const UnicodeString& that,
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TextOffset thatStart,
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TextOffset thatLimit) const;
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/**
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* Comparison operators. All of these operators map through to compare().
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*/
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t_bool operator==(const UnicodeString& that) const;
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t_bool operator!=(const UnicodeString& that) const;
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t_bool operator>(const UnicodeString& that) const;
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t_bool operator<(const UnicodeString& that) const;
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t_bool operator>=(const UnicodeString& that) const;
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t_bool operator<=(const UnicodeString& that) const;
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/**
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* Returns the offset within this String of the first occurrence of the
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* specified substring "that". The search begins with the character at fromIndex
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* and examines at most forLength characters. Returns -1 if "that" is not found.
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*/
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TextOffset indexOf(const UnicodeString& that,
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TextOffset fromOffset = 0,
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t_uint32 forLength = -1) const;
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TextOffset indexOf(UniChar character,
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TextOffset fromOffset = 0,
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t_uint32 forLength = -1) const;
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/**
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* Returns the offset within this String of the last occurrence of the
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* specified substring "that". The search begins with the character before fromOffset
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* and examines at most forLength characters (moving backward from fromOffset).
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* Returns -1 if "that" is not found.
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*/
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TextOffset lastIndexOf(const UnicodeString& that,
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TextOffset fromOffset = T_INT32_MAX,
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t_uint32 forLength = -1) const;
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TextOffset lastIndexOf(UniChar character,
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TextOffset fromOffset = T_INT32_MAX,
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t_uint32 forLength = -1) const;
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/**
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* Returns true if "that" appears in its entirety at the beginning of "this"
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*/
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t_bool startsWith(const UnicodeString& that) const;
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/**
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* Returns true if "that" appears in its entirety at the end of "this"
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*/
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t_bool endsWith(const UnicodeString& that) const;
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/**
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* Stores in "that" a copy of "this" that has had leading and trailing whitespace
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* removed from it. "this" itself is unaffected.
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*/
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UnicodeString& trim(UnicodeString& that) const;
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/**
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* Trims leading and trailing whitespace from this UnicodeString.
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*/
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void trim();
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/**
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* If the string is shorter than targetLength, adds enough copies of padChar to the
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* beginning to make the length targetLength and returns true; otherwise returns false.
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*/
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t_bool padLeading( t_int32 targetLength,
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UniChar padChar = ' ');
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/**
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* If the string is shorter than targetLength, adds enough copies of padChar to the
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* end to make the length targetLength and returns true; otherwise returns false.
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*/
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t_bool padTrailing(t_int32 targetLength,
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UniChar padChar = ' ');
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/**
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* If the string is longer than targetLength, deletes enough characters from the
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* end to make the length targetLength and returns true; otherwise returns false.
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*/
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t_bool truncate(t_int32 targetLength);
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/**
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* Allows UnicodeString to be used with interfaces that use UniChar*.
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* Returns a pointer to the UnicodeString's internal storage. This
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* storage is still owned by the UnicodeString, and the caller is not
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* allowed to change it. The string returned by this function is
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* correctly null-terminated.
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*/
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operator const UniChar*() const;
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/**
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* Extracts the characters from a UnicodeString without copying. Returns
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* a pointer to the UnicodeString's internal storage. The caller
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* acquires ownership of this storage and is responsible for deleting
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* it. The UnicodeString is set to empty by this operation. WARNING: The
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* string returned is not null-terminated unless the caller explicitly
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* adds a null character to the end with operator+=().
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*/
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UniChar* orphanStorage() ;
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/**
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* Extracts a substring. Extracts the specified substring of the
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* UnicodeString into the storage referred to by extractInto. The offset
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* and length parameters are pinned to permissible values if they are
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* out of range.
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* <P>
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* NOTE: No null byte is written to UniChar* extractInto. If you want
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* extractInto to have a null-terminated string you should do
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* extractInto[len]=0, where len is the actual number of characters
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* extracted.
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*/
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UnicodeString& extract( TextOffset thisOffset,
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t_int32 thisLength,
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UnicodeString& extractInto) const;
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void extract( TextOffset thisOffset,
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t_int32 thisLength,
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UniChar* extractInto) const;
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/**
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* This version of extract() extracts into an array of char. The
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* characters are converted from UniChar to char by truncating the
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* high-order byte (in other words, this function assumes the Unicode
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* data being converted is all from the Latin1 character set). The
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* offset and length parameters are pinned to permissible values if they
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* are out of range.
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* <P>
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* NOTE: No null byte is written. If you want extractInto to have a
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* null-terminated string you should do extractInto[len]=0, where len is
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* the actual number of characters extracted.
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*/
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void extract( TextOffset thisOffset,
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t_int32 thisLength,
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char* extractInto) const;
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/**
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* Extract a substring. Same as extract(), but the substring is
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* specified as starting and ending offsets [start, limit). That is,
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* from the starting offset up to, but not including, the ending offset.
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* The start and limit parameters are pinned to permissible values if
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* they are out of range.
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*/
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UnicodeString& extractBetween( TextOffset start,
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TextOffset limit,
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UnicodeString& extractInto) const;
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/**
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* Return the character at the given offset of this string. If the
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* offset is out of range, return 0 (for the const method) or a
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* reference to a UniChar having the value 0 (for the non-const method).
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*/
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UniChar operator[](TextOffset offset) const;
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UniChar& operator[](TextOffset offset);
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/**
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* Append a string or character. The specfied string or character is added
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* to the end of the string.
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*/
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UnicodeString& operator+=(const UnicodeString& that);
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UnicodeString& operator+=(UniChar that);
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/**
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* Insert a string. The contents of "that" are inserted into *this so that
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* the first character from "that" occurs at thisOffset. If thisOffset is out
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* of range, the new characters are added at the end.
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*/
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UnicodeString& insert( TextOffset thisOffset,
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const UnicodeString& that);
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/**
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* Remove part of this string. remove() with no arguments removes all
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* characters of this string. Note: The storage is not removed, but the
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* logical length, and possibly the contents, are altered.
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*/
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UnicodeString& remove();
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UnicodeString& remove( TextOffset offset,
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t_int32 length = T_INT32_MAX);
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/**
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* Delete characters. Same as remove(), but the range of characters to
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* delete is specified as a pair of starting and ending offsets [start,
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* limit), rather than a starting offset and a character count. That is,
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* from the starting offset up to, but not including, the ending offset.
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* The start and limit parameters are pinned to permissible values if
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* they are out of range.
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*/
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UnicodeString& removeBetween( TextOffset start = 0,
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TextOffset limit = T_INT32_MAX);
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/**
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* Replace characters. Replaces the characters in the range specified by
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* thisOffset and thisLength with the characters in "that" (or the specfied
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* subrange of "that"). All parameters are pinned to permissible values
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* if necessary. If the source and replacement text are different lengths,
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* the string will be lengthened or shortened as necessary.
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*/
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UnicodeString& replace( TextOffset thisOffset,
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t_int32 thisLength,
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const UnicodeString& that,
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TextOffset thatOffset = 0,
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t_int32 thatLength = T_INT32_MAX);
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UnicodeString& replace( TextOffset thisOfset,
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t_int32 thisLength,
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const UniChar* that);
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UnicodeString& replace( TextOffset thisOffset,
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t_int32 thisLength,
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const UniChar* that,
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t_int32 thatLength);
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UnicodeString& replace( TextOffset thisOffset,
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t_int32 thisLength,
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const char* that);
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/**
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* Replace characters. Same as replace(), but the affected subranges are
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* specified as pairs of starting and ending offsets [start, limit)
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* rather than starting offsets and lengths. That is, from the starting
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* offset up to, but not including, the ending offset. The start and
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* limit parameters are pinned to permissible values if they are out of
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* range.
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*/
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UnicodeString& replaceBetween( TextOffset thisStart,
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TextOffset thisLimit,
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const UnicodeString& that,
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TextOffset thatStart = 0,
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TextOffset thatLimit = T_INT32_MAX);
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/**
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* Replaces all occurrences of "oldText" in the string in the range defined by
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* fromOffset and forLength with "newText".
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*/
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void findAndReplace( const UnicodeString& oldText,
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const UnicodeString& newText,
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TextOffset fromOffset = 0,
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t_uint32 forLength = -1);
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/**
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* Reverse the characters in this string in place. That is, "abcd"
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* becomes "dcba". Return a reference to this string.
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*/
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UnicodeString& reverse();
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UnicodeString& reverse(TextOffset from,
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TextOffset to);
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/**
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* Convert this string to uppercase or lowercase. The methods which take
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* no arguments use the default Locale. (These methods cannot take a
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* default argument of Locale::getDefault() because that would create a
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* circular class dependency between UnicodeString and Locale.)
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*/
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UnicodeString& toUpper();
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UnicodeString& toUpper(const Locale& locale);
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UnicodeString& toLower();
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UnicodeString& toLower(const Locale& locale);
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/**
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* Return the length of this string. This will always be a non-negative
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* number.
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*/
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t_int32 size() const;
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/**
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* Return the hash code for this string. This is used by hash tables
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* which use this object as a key. The hash code is cached, and
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* recomputed when necessary. For this reason, this method may alter the
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* physical object, even though it is semantically const.
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*/
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t_int32 hashCode() const;
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/**
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* Returns the number of display cells the specified substring takes up.
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* This function is designed for Asian text and properly takes into account
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* halfwidth and fullwidth variants of various CJK characters and the combining
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* behavior of the Hangul Jamo characters (with some limitations; see
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* documentation for Unicode::getCellWidth()).
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* <P>
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* In order to avoid dealing
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* with fractions, this function can either be construed to return twice the
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* actual number of display cells or to treat a "cell" as the width of a halfwidth
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* character rather than the width of a fullwidth character.
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* <P>
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* The "asian" parameter controls whether characters considered NEUTRAL by
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* the Unicode class are treated as halfwidth or fullwidth here. If you set
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* "asian" to FALSE, neutrals are treated as halfwidth, and this function returns
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* a close approximation of how many Latin display cells the text will take up
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* in a monospaced font.
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*/
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t_int32 numDisplayCells(TextOffset fromOffset = 0,
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t_int32 forLength = T_INT32_MAX,
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t_bool asian = TRUE) const;
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/**
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* The streamIn and streamOut methods read and write objects of this
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* class as binary, platform-dependent data in the iostream. The stream
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* must be in ios::binary mode for this to work. These methods are not
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* intended for general public use; they are used by the framework to
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* improve performance by storing certain objects in binary files.
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*/
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void streamOut(FILE* os) const;
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void streamIn(FILE* is);
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/**
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* Returns TRUE if the string resize failed. It is very important
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* to check if a unicode string is valid after modification.
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*/
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t_bool isBogus() const;
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/*
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* Additional Netscape routines
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*/
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/** Converts the String to a char* using a target encoding */
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char* toCString(const char* encoding) const;
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/** Compare case insensitive. Still diacrit sensitive. Is not locale sensitive.
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* All versions of compare() do bitwise comparison; internationally-
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* sensitive comparison requires the Collation library. */
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int compareIgnoreCase(const UnicodeString& that) const;
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int compareIgnoreCase(const UniChar* that,
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t_int32 thatLength) const;
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int compareIgnoreCase(const UniChar* that) const;
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int compareIgnoreCase(const char* that,
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const char* encoding) const;
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/* Assumes a LATIN-1 string */
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int
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compareIgnoreCase(const char* that) const;
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private:
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/* Netscape Private */
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char* toCStringTruncate() const;
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static t_int32 lengthOf(const UniChar* chars);
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static t_int32 lengthOf(const char* chars);
|
|
void resize(t_int32 newLength);
|
|
void setToBogus(void);
|
|
static void copy( const UniChar* from,
|
|
UniChar* to,
|
|
t_int32 numChars);
|
|
static void copy( const char* from,
|
|
UniChar* to,
|
|
t_int32 numChars);
|
|
static void copy( const UniChar* from,
|
|
char* to,
|
|
t_int32 numChars);
|
|
|
|
t_int8 doCompare( const UniChar* thiss,
|
|
t_int32 thisLength,
|
|
const UniChar* that,
|
|
t_int32 thatLength) const;
|
|
static const t_int32 kInvalidHashCode;
|
|
static const t_int32 kEmptyHashCode;
|
|
static UniChar fgErrorChar;
|
|
|
|
UniChar* fChars;
|
|
t_int32 fSize;
|
|
t_int32 fCapacity;
|
|
t_int32 fHashCode;
|
|
t_bool fClientOwnsStorage;
|
|
t_bool fBogus;
|
|
};
|
|
|
|
#ifdef NLS_MAC
|
|
#pragma export off
|
|
#endif
|
|
|
|
/**
|
|
* Write the contents of a UnicodeString to an ostream. This functions writes
|
|
* the characters in a UnicodeString to an ostream. The UniChars in the
|
|
* UnicodeString are truncated to char, leading to undefined results with
|
|
* anything not in the Latin1 character set.
|
|
*/
|
|
NLSUNIAPI_PUBLIC(ostream&) operator<<(ostream& stream,
|
|
const UnicodeString& string);
|
|
|
|
//----------------------------------------------------
|
|
// operator new
|
|
//----------------------------------------------------
|
|
|
|
inline void*
|
|
UnicodeString::operator new(size_t size)
|
|
{
|
|
return ::operator new(size);
|
|
}
|
|
|
|
inline void*
|
|
UnicodeString::operator new(size_t size, void* location)
|
|
{
|
|
// WARNING: Do not use this operator unless you're sure you know what you're
|
|
// doing! It just passes "location" through blindly. If there isn't enough
|
|
// free space at "location" to hold a UnicodeString (or if "location" is
|
|
// somehow invalid), you're in trouble!
|
|
return location;
|
|
}
|
|
//----------------------------------------------------
|
|
// Fast append
|
|
//----------------------------------------------------
|
|
|
|
inline UnicodeString&
|
|
UnicodeString::operator+=(UniChar that)
|
|
{
|
|
if (fSize < fCapacity) {
|
|
fChars[fSize++] = that;
|
|
fHashCode = kInvalidHashCode;
|
|
} else {
|
|
resize(fSize + 1);
|
|
if (!fBogus) // change required for HP-UX
|
|
fChars[fSize - 1] = that;
|
|
}
|
|
return *this;
|
|
}
|
|
|
|
//----------------------------------------------------
|
|
// Character access
|
|
//----------------------------------------------------
|
|
|
|
inline UniChar
|
|
UnicodeString::operator[](TextOffset offset) const
|
|
{
|
|
// Cast to unsigned in order to detect negative values.
|
|
// Assume fSize >= 0.
|
|
return ((t_uint32)offset < (t_uint32)fSize) ? fChars[offset] : 0;
|
|
}
|
|
|
|
inline UniChar&
|
|
UnicodeString::operator[](TextOffset offset)
|
|
{
|
|
// Cast to unsigned in order to detect negative values
|
|
// Assume fSize >= 0.
|
|
|
|
UniChar& result = fgErrorChar;
|
|
if ((t_uint32)offset < (t_uint32)fSize)
|
|
{
|
|
fHashCode = kInvalidHashCode;
|
|
result = fChars[offset];
|
|
} else
|
|
{
|
|
fgErrorChar = 0; // Always reset this to zero in case the caller has modified it
|
|
result = fgErrorChar;
|
|
}
|
|
|
|
return result;
|
|
}
|
|
|
|
//----------------------------------------------------
|
|
// Other inline methods
|
|
//----------------------------------------------------
|
|
|
|
inline UnicodeString&
|
|
UnicodeString::remove()
|
|
{
|
|
fSize = 0;
|
|
fBogus = FALSE;
|
|
return *this;
|
|
}
|
|
|
|
inline t_int32
|
|
UnicodeString::size() const
|
|
{
|
|
return fSize;
|
|
}
|
|
|
|
inline t_int8
|
|
UnicodeString::compare(const UnicodeString& that) const
|
|
{
|
|
return doCompare(fChars, fSize, that.fChars, that.fSize);
|
|
}
|
|
|
|
inline t_bool
|
|
UnicodeString::operator==(const UnicodeString& that) const
|
|
{
|
|
// Check fSize first to avoid the call to compare in many cases
|
|
return fSize == that.fSize && compare(that) == 0;
|
|
}
|
|
|
|
|
|
inline t_bool
|
|
UnicodeString::operator!=(const UnicodeString& that) const
|
|
{
|
|
return compare(that) != 0;
|
|
}
|
|
|
|
inline t_bool
|
|
UnicodeString::operator>(const UnicodeString& that) const
|
|
{
|
|
return compare(that) == 1;
|
|
}
|
|
|
|
inline t_bool
|
|
UnicodeString::operator<(const UnicodeString& that) const
|
|
{
|
|
return compare(that) == -1;
|
|
}
|
|
|
|
inline t_bool
|
|
UnicodeString::operator<=(const UnicodeString& that) const
|
|
{
|
|
return compare(that) != 1;
|
|
}
|
|
|
|
inline t_bool
|
|
UnicodeString::operator>=(const UnicodeString& that) const
|
|
{
|
|
return compare(that) != -1;
|
|
}
|
|
|
|
inline t_bool
|
|
UnicodeString::isBogus() const { return fBogus; }
|
|
|
|
/**
|
|
* The arrayCopy() methods copy an array of UnicodeString OBJECTS (not
|
|
* pointers).
|
|
*/
|
|
inline void arrayCopy(const UnicodeString* src, UnicodeString* dst, t_int32 count)
|
|
{ while (count-- > 0) *dst++ = *src++; }
|
|
|
|
inline void arrayCopy(const UnicodeString* src, t_int32 srcStart, UnicodeString* dst, t_int32 dstStart, t_int32 count)
|
|
{ arrayCopy(src+srcStart, dst+dstStart, count); }
|
|
|
|
#endif
|