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408 lines
14 KiB
C
408 lines
14 KiB
C
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// © 2016 and later: Unicode, Inc. and others.
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// License & terms of use: http://www.unicode.org/copyright.html
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/*
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******************************************************************************
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* Copyright (C) 1997-2014, International Business Machines
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* Corporation and others. All Rights Reserved.
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******************************************************************************
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*/
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/**
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* \file
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* \brief C++ API: Collation Element Iterator.
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*/
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/**
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* File coleitr.h
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*
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* Created by: Helena Shih
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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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*
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* 8/18/97 helena Added internal API documentation.
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* 08/03/98 erm Synched with 1.2 version CollationElementIterator.java
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* 12/10/99 aliu Ported Thai collation support from Java.
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* 01/25/01 swquek Modified into a C++ wrapper calling C APIs (ucoliter.h)
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* 02/19/01 swquek Removed CollationElementsIterator() since it is
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* private constructor and no calls are made to it
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* 2012-2014 markus Rewritten in C++ again.
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*/
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#ifndef COLEITR_H
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#define COLEITR_H
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#include "unicode/utypes.h"
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#if !UCONFIG_NO_COLLATION
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#include "unicode/unistr.h"
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#include "unicode/uobject.h"
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struct UCollationElements;
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struct UHashtable;
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U_NAMESPACE_BEGIN
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struct CollationData;
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class CharacterIterator;
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class CollationIterator;
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class RuleBasedCollator;
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class UCollationPCE;
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class UVector32;
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/**
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* The CollationElementIterator class is used as an iterator to walk through
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* each character of an international string. Use the iterator to return the
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* ordering priority of the positioned character. The ordering priority of a
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* character, which we refer to as a key, defines how a character is collated in
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* the given collation object.
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* For example, consider the following in Slovak and in traditional Spanish collation:
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* <pre>
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* "ca" -> the first key is key('c') and second key is key('a').
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* "cha" -> the first key is key('ch') and second key is key('a').</pre>
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* And in German phonebook collation,
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* <pre> \htmlonly "æb"-> the first key is key('a'), the second key is key('e'), and
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* the third key is key('b'). \endhtmlonly </pre>
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* The key of a character, is an integer composed of primary order(short),
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* secondary order(char), and tertiary order(char). Java strictly defines the
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* size and signedness of its primitive data types. Therefore, the static
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* functions primaryOrder(), secondaryOrder(), and tertiaryOrder() return
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* int32_t to ensure the correctness of the key value.
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* <p>Example of the iterator usage: (without error checking)
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* <pre>
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* \code
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* void CollationElementIterator_Example()
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* {
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* UnicodeString str = "This is a test";
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* UErrorCode success = U_ZERO_ERROR;
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* RuleBasedCollator* rbc =
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* (RuleBasedCollator*) RuleBasedCollator::createInstance(success);
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* CollationElementIterator* c =
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* rbc->createCollationElementIterator( str );
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* int32_t order = c->next(success);
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* c->reset();
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* order = c->previous(success);
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* delete c;
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* delete rbc;
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* }
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* \endcode
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* </pre>
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* <p>
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* The method next() returns the collation order of the next character based on
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* the comparison level of the collator. The method previous() returns the
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* collation order of the previous character based on the comparison level of
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* the collator. The Collation Element Iterator moves only in one direction
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* between calls to reset(), setOffset(), or setText(). That is, next()
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* and previous() can not be inter-used. Whenever previous() is to be called after
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* next() or vice versa, reset(), setOffset() or setText() has to be called first
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* to reset the status, shifting pointers to either the end or the start of
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* the string (reset() or setText()), or the specified position (setOffset()).
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* Hence at the next call of next() or previous(), the first or last collation order,
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* or collation order at the spefcifieid position will be returned. If a change of
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* direction is done without one of these calls, the result is undefined.
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* <p>
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* The result of a forward iterate (next()) and reversed result of the backward
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* iterate (previous()) on the same string are equivalent, if collation orders
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* with the value 0 are ignored.
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* Character based on the comparison level of the collator. A collation order
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* consists of primary order, secondary order and tertiary order. The data
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* type of the collation order is <strong>int32_t</strong>.
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*
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* Note, CollationElementIterator should not be subclassed.
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* @see Collator
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* @see RuleBasedCollator
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* @version 1.8 Jan 16 2001
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*/
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class U_I18N_API CollationElementIterator U_FINAL : public UObject {
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public:
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// CollationElementIterator public data member ------------------------------
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enum {
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/**
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* NULLORDER indicates that an error has occured while processing
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* @stable ICU 2.0
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*/
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NULLORDER = (int32_t)0xffffffff
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};
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// CollationElementIterator public constructor/destructor -------------------
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/**
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* Copy constructor.
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*
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* @param other the object to be copied from
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* @stable ICU 2.0
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*/
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CollationElementIterator(const CollationElementIterator& other);
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/**
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* Destructor
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* @stable ICU 2.0
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*/
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virtual ~CollationElementIterator();
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// CollationElementIterator public methods ----------------------------------
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/**
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* Returns true if "other" is the same as "this"
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*
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* @param other the object to be compared
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* @return true if "other" is the same as "this"
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* @stable ICU 2.0
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*/
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UBool operator==(const CollationElementIterator& other) const;
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/**
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* Returns true if "other" is not the same as "this".
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*
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* @param other the object to be compared
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* @return true if "other" is not the same as "this"
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* @stable ICU 2.0
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*/
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UBool operator!=(const CollationElementIterator& other) const;
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/**
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* Resets the cursor to the beginning of the string.
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* @stable ICU 2.0
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*/
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void reset(void);
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/**
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* Gets the ordering priority of the next character in the string.
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* @param status the error code status.
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* @return the next character's ordering. otherwise returns NULLORDER if an
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* error has occured or if the end of string has been reached
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* @stable ICU 2.0
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*/
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int32_t next(UErrorCode& status);
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/**
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* Get the ordering priority of the previous collation element in the string.
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* @param status the error code status.
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* @return the previous element's ordering. otherwise returns NULLORDER if an
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* error has occured or if the start of string has been reached
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* @stable ICU 2.0
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*/
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int32_t previous(UErrorCode& status);
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/**
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* Gets the primary order of a collation order.
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* @param order the collation order
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* @return the primary order of a collation order.
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* @stable ICU 2.0
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*/
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static inline int32_t primaryOrder(int32_t order);
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/**
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* Gets the secondary order of a collation order.
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* @param order the collation order
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* @return the secondary order of a collation order.
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* @stable ICU 2.0
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*/
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static inline int32_t secondaryOrder(int32_t order);
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/**
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* Gets the tertiary order of a collation order.
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* @param order the collation order
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* @return the tertiary order of a collation order.
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* @stable ICU 2.0
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*/
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static inline int32_t tertiaryOrder(int32_t order);
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/**
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* Return the maximum length of any expansion sequences that end with the
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* specified comparison order.
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* @param order a collation order returned by previous or next.
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* @return maximum size of the expansion sequences ending with the collation
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* element or 1 if collation element does not occur at the end of any
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* expansion sequence
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* @stable ICU 2.0
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*/
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int32_t getMaxExpansion(int32_t order) const;
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/**
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* Gets the comparison order in the desired strength. Ignore the other
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* differences.
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* @param order The order value
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* @stable ICU 2.0
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*/
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int32_t strengthOrder(int32_t order) const;
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/**
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* Sets the source string.
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* @param str the source string.
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* @param status the error code status.
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* @stable ICU 2.0
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*/
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void setText(const UnicodeString& str, UErrorCode& status);
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/**
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* Sets the source string.
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* @param str the source character iterator.
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* @param status the error code status.
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* @stable ICU 2.0
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*/
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void setText(CharacterIterator& str, UErrorCode& status);
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/**
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* Checks if a comparison order is ignorable.
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* @param order the collation order.
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* @return TRUE if a character is ignorable, FALSE otherwise.
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* @stable ICU 2.0
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*/
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static inline UBool isIgnorable(int32_t order);
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/**
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* Gets the offset of the currently processed character in the source string.
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* @return the offset of the character.
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* @stable ICU 2.0
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*/
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int32_t getOffset(void) const;
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/**
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* Sets the offset of the currently processed character in the source string.
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* @param newOffset the new offset.
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* @param status the error code status.
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* @return the offset of the character.
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* @stable ICU 2.0
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*/
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void setOffset(int32_t newOffset, UErrorCode& status);
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/**
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* ICU "poor man's RTTI", returns a UClassID for the actual class.
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*
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* @stable ICU 2.2
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*/
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virtual UClassID getDynamicClassID() const;
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/**
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* ICU "poor man's RTTI", returns a UClassID for this class.
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*
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* @stable ICU 2.2
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*/
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static UClassID U_EXPORT2 getStaticClassID();
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#ifndef U_HIDE_INTERNAL_API
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/** @internal */
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static inline CollationElementIterator *fromUCollationElements(UCollationElements *uc) {
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return reinterpret_cast<CollationElementIterator *>(uc);
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}
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/** @internal */
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static inline const CollationElementIterator *fromUCollationElements(const UCollationElements *uc) {
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return reinterpret_cast<const CollationElementIterator *>(uc);
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}
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/** @internal */
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inline UCollationElements *toUCollationElements() {
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return reinterpret_cast<UCollationElements *>(this);
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}
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/** @internal */
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inline const UCollationElements *toUCollationElements() const {
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return reinterpret_cast<const UCollationElements *>(this);
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}
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#endif // U_HIDE_INTERNAL_API
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private:
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friend class RuleBasedCollator;
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friend class UCollationPCE;
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/**
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* CollationElementIterator constructor. This takes the source string and the
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* collation object. The cursor will walk thru the source string based on the
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* predefined collation rules. If the source string is empty, NULLORDER will
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* be returned on the calls to next().
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* @param sourceText the source string.
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* @param order the collation object.
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* @param status the error code status.
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*/
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CollationElementIterator(const UnicodeString& sourceText,
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const RuleBasedCollator* order, UErrorCode& status);
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// Note: The constructors should take settings & tailoring, not a collator,
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// to avoid circular dependencies.
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// However, for operator==() we would need to be able to compare tailoring data for equality
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// without making CollationData or CollationTailoring depend on TailoredSet.
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// (See the implementation of RuleBasedCollator::operator==().)
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// That might require creating an intermediate class that would be used
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// by both CollationElementIterator and RuleBasedCollator
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// but only contain the part of RBC== related to data and rules.
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/**
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* CollationElementIterator constructor. This takes the source string and the
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* collation object. The cursor will walk thru the source string based on the
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* predefined collation rules. If the source string is empty, NULLORDER will
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* be returned on the calls to next().
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* @param sourceText the source string.
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* @param order the collation object.
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* @param status the error code status.
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*/
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CollationElementIterator(const CharacterIterator& sourceText,
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const RuleBasedCollator* order, UErrorCode& status);
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/**
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* Assignment operator
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*
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* @param other the object to be copied
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*/
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const CollationElementIterator&
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operator=(const CollationElementIterator& other);
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CollationElementIterator(); // default constructor not implemented
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/** Normalizes dir_=1 (just after setOffset()) to dir_=0 (just after reset()). */
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inline int8_t normalizeDir() const { return dir_ == 1 ? 0 : dir_; }
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static UHashtable *computeMaxExpansions(const CollationData *data, UErrorCode &errorCode);
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static int32_t getMaxExpansion(const UHashtable *maxExpansions, int32_t order);
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// CollationElementIterator private data members ----------------------------
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CollationIterator *iter_; // owned
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const RuleBasedCollator *rbc_; // aliased
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uint32_t otherHalf_;
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/**
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* <0: backwards; 0: just after reset() (previous() begins from end);
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* 1: just after setOffset(); >1: forward
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*/
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int8_t dir_;
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/**
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* Stores offsets from expansions and from unsafe-backwards iteration,
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* so that getOffset() returns intermediate offsets for the CEs
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* that are consistent with forward iteration.
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*/
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UVector32 *offsets_;
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UnicodeString string_;
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};
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// CollationElementIterator inline method definitions --------------------------
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inline int32_t CollationElementIterator::primaryOrder(int32_t order)
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{
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return (order >> 16) & 0xffff;
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}
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inline int32_t CollationElementIterator::secondaryOrder(int32_t order)
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{
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return (order >> 8) & 0xff;
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}
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inline int32_t CollationElementIterator::tertiaryOrder(int32_t order)
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{
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return order & 0xff;
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}
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inline UBool CollationElementIterator::isIgnorable(int32_t order)
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{
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return (order & 0xffff0000) == 0;
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}
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U_NAMESPACE_END
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#endif /* #if !UCONFIG_NO_COLLATION */
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#endif
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