b70227e2c7
X-SVN-Rev: 18788
381 lines
11 KiB
C++
381 lines
11 KiB
C++
/*
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*****************************************************************
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* Copyright (c) 2002-2005, International Business Machines Corporation
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* and others. All Rights Reserved.
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*****************************************************************
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* Date Name Description
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* 06/06/2002 aliu Creation.
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*****************************************************************
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*/
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#include "unicode/utypes.h"
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#if !UCONFIG_NO_TRANSLITERATION
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#include "unicode/uobject.h"
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#include "unicode/uscript.h"
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#include "nultrans.h"
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#include "anytrans.h"
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#include "uvector.h"
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#include "tridpars.h"
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#include "hash.h"
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#include "putilimp.h"
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#include "uinvchar.h"
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//------------------------------------------------------------
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// Constants
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static const UChar TARGET_SEP = 45; // '-'
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static const UChar VARIANT_SEP = 47; // '/'
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static const UChar ANY[] = {65,110,121,0}; // "Any"
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static const UChar NULL_ID[] = {78,117,108,108,0}; // "Null"
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static const UChar LATIN_PIVOT[] = {45,76,97,116,105,110,59,76,97,116,105,110,45,0}; // "-Latin;Latin-"
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//------------------------------------------------------------
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U_CDECL_BEGIN
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/**
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* Deleter function for Transliterator*.
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*/
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static void U_CALLCONV
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_deleteTransliterator(void *obj) {
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delete (Transliterator*) obj;
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}
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U_CDECL_END
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//------------------------------------------------------------
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U_NAMESPACE_BEGIN
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//------------------------------------------------------------
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// ScriptRunIterator
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/**
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* Returns a series of ranges corresponding to scripts. They will be
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* of the form:
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*
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* ccccSScSSccccTTcTcccc - c = common, S = first script, T = second
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* | | - first run (start, limit)
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* | | - second run (start, limit)
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*
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* That is, the runs will overlap. The reason for this is so that a
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* transliterator can consider common characters both before and after
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* the scripts.
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*/
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class ScriptRunIterator : public UMemory {
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private:
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const Replaceable& text;
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int32_t textStart;
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int32_t textLimit;
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public:
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/**
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* The code of the current run, valid after next() returns. May
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* be USCRIPT_INVALID_CODE if and only if the entire text is
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* COMMON/INHERITED.
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*/
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UScriptCode scriptCode;
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/**
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* The start of the run, inclusive, valid after next() returns.
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*/
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int32_t start;
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/**
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* The end of the run, exclusive, valid after next() returns.
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*/
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int32_t limit;
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/**
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* Constructs a run iterator over the given text from start
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* (inclusive) to limit (exclusive).
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*/
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ScriptRunIterator(const Replaceable& text, int32_t start, int32_t limit);
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/**
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* Returns TRUE if there are any more runs. TRUE is always
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* returned at least once. Upon return, the caller should
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* examine scriptCode, start, and limit.
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*/
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UBool next();
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/**
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* Adjusts internal indices for a change in the limit index of the
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* given delta. A positive delta means the limit has increased.
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*/
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void adjustLimit(int32_t delta);
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private:
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ScriptRunIterator(const ScriptRunIterator &other); // forbid copying of this class
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ScriptRunIterator &operator=(const ScriptRunIterator &other); // forbid copying of this class
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};
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ScriptRunIterator::ScriptRunIterator(const Replaceable& theText,
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int32_t myStart, int32_t myLimit) :
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text(theText)
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{
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textStart = myStart;
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textLimit = myLimit;
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limit = myStart;
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}
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UBool ScriptRunIterator::next() {
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UChar32 ch;
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UScriptCode s;
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UErrorCode ec = U_ZERO_ERROR;
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scriptCode = USCRIPT_INVALID_CODE; // don't know script yet
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start = limit;
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// Are we done?
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if (start == textLimit) {
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return FALSE;
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}
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// Move start back to include adjacent COMMON or INHERITED
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// characters
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while (start > textStart) {
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ch = text.char32At(start - 1); // look back
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s = uscript_getScript(ch, &ec);
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if (s == USCRIPT_COMMON || s == USCRIPT_INHERITED) {
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--start;
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} else {
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break;
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}
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}
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// Move limit ahead to include COMMON, INHERITED, and characters
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// of the current script.
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while (limit < textLimit) {
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ch = text.char32At(limit); // look ahead
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s = uscript_getScript(ch, &ec);
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if (s != USCRIPT_COMMON && s != USCRIPT_INHERITED) {
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if (scriptCode == USCRIPT_INVALID_CODE) {
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scriptCode = s;
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} else if (s != scriptCode) {
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break;
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}
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}
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++limit;
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}
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// Return TRUE even if the entire text is COMMON / INHERITED, in
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// which case scriptCode will be USCRIPT_INVALID_CODE.
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return TRUE;
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}
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void ScriptRunIterator::adjustLimit(int32_t delta) {
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limit += delta;
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textLimit += delta;
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}
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//------------------------------------------------------------
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// AnyTransliterator
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UOBJECT_DEFINE_RTTI_IMPLEMENTATION(AnyTransliterator)
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AnyTransliterator::AnyTransliterator(const UnicodeString& id,
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const UnicodeString& theTarget,
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const UnicodeString& theVariant,
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UScriptCode theTargetScript,
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UErrorCode& ec) :
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Transliterator(id, NULL),
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targetScript(theTargetScript)
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{
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cache = uhash_open(uhash_hashLong, uhash_compareLong, NULL, &ec);
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uhash_setValueDeleter(cache, _deleteTransliterator);
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target = theTarget;
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if (theVariant.length() > 0) {
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target.append(VARIANT_SEP).append(theVariant);
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}
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}
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AnyTransliterator::~AnyTransliterator() {
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uhash_close(cache);
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}
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/**
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* Copy constructor.
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*/
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AnyTransliterator::AnyTransliterator(const AnyTransliterator& o) :
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Transliterator(o),
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target(o.target),
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targetScript(o.targetScript)
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{
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// Don't copy the cache contents
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UErrorCode ec = U_ZERO_ERROR;
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cache = uhash_open(uhash_hashLong, uhash_compareLong, NULL, &ec);
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uhash_setValueDeleter(cache, _deleteTransliterator);
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}
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/**
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* Transliterator API.
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*/
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Transliterator* AnyTransliterator::clone() const {
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return new AnyTransliterator(*this);
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}
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/**
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* Implements {@link Transliterator#handleTransliterate}.
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*/
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void AnyTransliterator::handleTransliterate(Replaceable& text, UTransPosition& pos,
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UBool isIncremental) const {
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int32_t allStart = pos.start;
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int32_t allLimit = pos.limit;
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ScriptRunIterator it(text, pos.contextStart, pos.contextLimit);
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while (it.next()) {
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// Ignore runs in the ante context
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if (it.limit <= allStart) continue;
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// Try to instantiate transliterator from it.scriptCode to
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// our target or target/variant
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Transliterator* t = getTransliterator(it.scriptCode);
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if (t == NULL) {
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// We have no transliterator. Do nothing, but keep
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// pos.start up to date.
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pos.start = it.limit;
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continue;
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}
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// If the run end is before the transliteration limit, do
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// a non-incremental transliteration. Otherwise do an
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// incremental one.
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UBool incremental = isIncremental && (it.limit >= allLimit);
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pos.start = uprv_max(allStart, it.start);
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pos.limit = uprv_min(allLimit, it.limit);
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int32_t limit = pos.limit;
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t->filteredTransliterate(text, pos, incremental);
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int32_t delta = pos.limit - limit;
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allLimit += delta;
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it.adjustLimit(delta);
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// We're done if we enter the post context
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if (it.limit >= allLimit) break;
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}
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// Restore limit. pos.start is fine where the last transliterator
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// left it, or at the end of the last run.
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pos.limit = allLimit;
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}
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Transliterator* AnyTransliterator::getTransliterator(UScriptCode source) const {
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if (source == targetScript || source == USCRIPT_INVALID_CODE) {
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return NULL;
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}
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Transliterator* t = (Transliterator*) uhash_iget(cache, (int32_t) source);
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if (t == NULL) {
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UErrorCode ec = U_ZERO_ERROR;
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UnicodeString sourceName(uscript_getName(source), -1, US_INV);
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UnicodeString id(sourceName);
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id.append(TARGET_SEP).append(target);
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t = Transliterator::createInstance(id, UTRANS_FORWARD, ec);
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if (U_FAILURE(ec) || t == NULL) {
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delete t;
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// Try to pivot around Latin, our most common script
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id = sourceName;
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id.append(LATIN_PIVOT).append(target);
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t = Transliterator::createInstance(id, UTRANS_FORWARD, ec);
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if (U_FAILURE(ec) || t == NULL) {
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delete t;
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t = NULL;
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}
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}
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if (t != NULL) {
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uhash_iput(cache, (int32_t) source, t, &ec);
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}
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}
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return t;
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}
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/**
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* Return the script code for a given name, or -1 if not found.
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*/
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static UScriptCode scriptNameToCode(const UnicodeString& name) {
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char buf[128];
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UScriptCode code;
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UErrorCode ec = U_ZERO_ERROR;
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int32_t nameLen = name.length();
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UBool isInvariant = uprv_isInvariantUString(name.getBuffer(), nameLen);
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if (isInvariant) {
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name.extract(0, nameLen, buf, (int32_t)sizeof(buf), US_INV);
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buf[127] = 0; // Make sure that we NULL terminate the string.
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}
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if (!isInvariant || uscript_getCode(buf, &code, 1, &ec) != 1 || U_FAILURE(ec))
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{
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code = USCRIPT_INVALID_CODE;
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}
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return code;
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}
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/**
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* Registers standard transliterators with the system. Called by
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* Transliterator during initialization. Scan all current targets and
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* register those that are scripts T as Any-T/V.
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*/
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void AnyTransliterator::registerIDs() {
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UErrorCode ec = U_ZERO_ERROR;
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Hashtable seen(TRUE, ec);
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int32_t sourceCount = Transliterator::_countAvailableSources();
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for (int32_t s=0; s<sourceCount; ++s) {
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UnicodeString source;
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Transliterator::_getAvailableSource(s, source);
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// Ignore the "Any" source
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if (source.caseCompare(ANY, 0 /*U_FOLD_CASE_DEFAULT*/) == 0) continue;
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int32_t targetCount = Transliterator::_countAvailableTargets(source);
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for (int32_t t=0; t<targetCount; ++t) {
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UnicodeString target;
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Transliterator::_getAvailableTarget(t, source, target);
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// Only process each target once
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if (seen.geti(target) != 0) continue;
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ec = U_ZERO_ERROR;
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seen.puti(target, 1, ec);
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// Get the script code for the target. If not a script, ignore.
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UScriptCode targetScript = scriptNameToCode(target);
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if (targetScript == USCRIPT_INVALID_CODE) continue;
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int32_t variantCount = Transliterator::_countAvailableVariants(source, target);
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// assert(variantCount >= 1);
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for (int32_t v=0; v<variantCount; ++v) {
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UnicodeString variant;
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Transliterator::_getAvailableVariant(v, source, target, variant);
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UnicodeString id;
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TransliteratorIDParser::STVtoID(ANY, target, variant, id);
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ec = U_ZERO_ERROR;
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AnyTransliterator* t = new AnyTransliterator(id, target, variant,
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targetScript, ec);
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if (U_FAILURE(ec)) {
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delete t;
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} else {
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Transliterator::_registerInstance(t);
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Transliterator::_registerSpecialInverse(target, NULL_ID, FALSE);
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}
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}
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}
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}
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}
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U_NAMESPACE_END
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#endif /* #if !UCONFIG_NO_TRANSLITERATION */
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//eof
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