mirror of https://gitee.com/bigwinds/arangodb
557 lines
17 KiB
C++
557 lines
17 KiB
C++
////////////////////////////////////////////////////////////////////////////////
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/// @brief Utf8/Utf16 Helper class
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///
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/// @file
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///
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/// DISCLAIMER
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///
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/// Copyright 2014 ArangoDB GmbH, Cologne, Germany
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/// Copyright 2004-2014 triAGENS GmbH, Cologne, Germany
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///
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/// Licensed under the Apache License, Version 2.0 (the "License");
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/// you may not use this file except in compliance with the License.
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/// You may obtain a copy of the License at
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///
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/// http://www.apache.org/licenses/LICENSE-2.0
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///
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/// Unless required by applicable law or agreed to in writing, software
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/// distributed under the License is distributed on an "AS IS" BASIS,
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/// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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/// See the License for the specific language governing permissions and
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/// limitations under the License.
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///
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/// Copyright holder is ArangoDB GmbH, Cologne, Germany
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///
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/// @author Frank Celler
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/// @author Achim Brandt
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/// @author Copyright 2014, ArangoDB GmbH, Cologne, Germany
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/// @author Copyright 2010-2013, triAGENS GmbH, Cologne, Germany
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////////////////////////////////////////////////////////////////////////////////
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#include "Utf8Helper.h"
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#include "unicode/normalizer2.h"
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#include "unicode/ucasemap.h"
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#include "unicode/brkiter.h"
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#include "unicode/ustdio.h"
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#include "unicode/uclean.h"
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#include "Basics/logging.h"
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#include "Basics/tri-strings.h"
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#include "Basics/utf8-helper.h"
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#ifdef _WIN32
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#include "Basics/win-utils.h"
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#endif
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using namespace triagens::basics;
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using namespace std;
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Utf8Helper Utf8Helper::DefaultUtf8Helper;
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// -----------------------------------------------------------------------------
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// --SECTION-- constructors and destructors
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// -----------------------------------------------------------------------------
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Utf8Helper::Utf8Helper () : _coll(0) {
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setCollatorLanguage("");
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}
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Utf8Helper::Utf8Helper (std::string const& lang) : _coll(0) {
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setCollatorLanguage(lang);
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}
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Utf8Helper::~Utf8Helper () {
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if (_coll) {
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delete _coll;
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if (this == &DefaultUtf8Helper) {
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u_cleanup();
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}
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}
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}
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int Utf8Helper::compareUtf8 (const char* left, const char* right) {
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if (!_coll) {
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LOG_ERROR("no Collator in Utf8Helper::compareUtf8()!");
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return (strcmp(left, right));
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}
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UErrorCode status = U_ZERO_ERROR;
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int result = _coll->compareUTF8(StringPiece(left), StringPiece(right), status);
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if(U_FAILURE(status)) {
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LOG_ERROR("error in Collator::compareUTF8(...): %s", u_errorName(status));
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return (strcmp(left, right));
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}
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return result;
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}
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int Utf8Helper::compareUtf16 (const uint16_t* left, size_t leftLength, const uint16_t* right, size_t rightLength) {
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if (!_coll) {
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LOG_ERROR("no Collator in Utf8Helper::compareUtf16()!");
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if (leftLength == rightLength) {
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return memcmp((const void*)left, (const void*)right, leftLength * 2);
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}
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int result = memcmp((const void*)left, (const void*)right, leftLength < rightLength ? leftLength * 2 : rightLength * 2);
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if (result == 0) {
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if (leftLength < rightLength) {
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return -1;
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}
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return 1;
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}
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return result;
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}
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// ..........................................................................
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// Take note here: we are assuming that the ICU type UChar is two bytes.
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// There is no guarantee that this will be the case on all platforms and
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// compilers.
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// ..........................................................................
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return _coll->compare((const UChar*) left, (int32_t) leftLength, (const UChar*) right, (int32_t) rightLength);
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}
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bool Utf8Helper::setCollatorLanguage (std::string const& lang) {
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#ifdef _WIN32
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TRI_FixIcuDataEnv();
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#endif
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UErrorCode status = U_ZERO_ERROR;
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if (_coll) {
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ULocDataLocaleType type = ULOC_ACTUAL_LOCALE;
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const Locale& locale = _coll->getLocale(type, status);
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if(U_FAILURE(status)) {
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LOG_ERROR("error in Collator::getLocale(...): %s", u_errorName(status));
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return false;
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}
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if (lang == locale.getName()) {
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return true;
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}
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}
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Collator* coll;
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if (lang == "") {
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// get default collator for empty language
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coll = Collator::createInstance(status);
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}
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else {
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Locale locale(lang.c_str());
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coll = Collator::createInstance(locale, status);
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}
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if(U_FAILURE(status)) {
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LOG_ERROR("error in Collator::createInstance(): %s", u_errorName(status));
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if (coll) {
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delete coll;
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}
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return false;
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}
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// set the default attributes for sorting:
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coll->setAttribute(UCOL_CASE_FIRST, UCOL_UPPER_FIRST, status); // A < a
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coll->setAttribute(UCOL_NORMALIZATION_MODE, UCOL_OFF, status); // no normalization
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coll->setAttribute(UCOL_STRENGTH, UCOL_IDENTICAL, status); // UCOL_IDENTICAL, UCOL_PRIMARY, UCOL_SECONDARY, UCOL_TERTIARY
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if(U_FAILURE(status)) {
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LOG_ERROR("error in Collator::setAttribute(...): %s", u_errorName(status));
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delete coll;
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return false;
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}
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if (_coll) {
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delete _coll;
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}
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_coll = coll;
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return true;
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}
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std::string Utf8Helper::getCollatorLanguage () {
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if (_coll) {
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UErrorCode status = U_ZERO_ERROR;
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ULocDataLocaleType type = ULOC_VALID_LOCALE;
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const Locale& locale = _coll->getLocale(type, status);
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if(U_FAILURE(status)) {
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LOG_ERROR("error in Collator::getLocale(...): %s", u_errorName(status));
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return "";
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}
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return locale.getLanguage();
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}
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return "";
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}
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std::string Utf8Helper::getCollatorCountry () {
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if (_coll) {
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UErrorCode status = U_ZERO_ERROR;
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ULocDataLocaleType type = ULOC_VALID_LOCALE;
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const Locale& locale = _coll->getLocale(type, status);
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if(U_FAILURE(status)) {
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LOG_ERROR("error in Collator::getLocale(...): %s", u_errorName(status));
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return "";
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}
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return locale.getCountry();
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}
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return "";
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Lowercase the characters in a UTF-8 string.
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////////////////////////////////////////////////////////////////////////////////
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std::string Utf8Helper::toLowerCase (std::string const& src) {
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int32_t utf8len = 0;
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char* utf8 = tolower(TRI_UNKNOWN_MEM_ZONE, src.c_str(), (int32_t) src.length(), utf8len);
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if (utf8 == 0) {
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return string("");
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}
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string result(utf8, utf8len);
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, utf8);
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return result;
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Lowercase the characters in a UTF-8 string.
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////////////////////////////////////////////////////////////////////////////////
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char* Utf8Helper::tolower (TRI_memory_zone_t* zone, const char *src, int32_t srcLength, int32_t& dstLength) {
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char* utf8_dest = 0;
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if (src == 0 || srcLength == 0) {
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utf8_dest = (char*) TRI_Allocate(zone, sizeof(char), false);
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if (utf8_dest != 0) {
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utf8_dest[0] = '\0';
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}
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dstLength = 0;
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return utf8_dest;
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}
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uint32_t options = U_FOLD_CASE_DEFAULT;
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UErrorCode status = U_ZERO_ERROR;
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string locale = getCollatorLanguage();
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LocalUCaseMapPointer csm(ucasemap_open(locale.c_str(), options, &status));
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if (U_FAILURE(status)) {
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LOG_ERROR("error in ucasemap_open(...): %s", u_errorName(status));
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}
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else {
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utf8_dest = (char*) TRI_Allocate(zone, (srcLength + 1) * sizeof(char), false);
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if (utf8_dest == 0) {
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return 0;
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}
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dstLength = ucasemap_utf8ToLower(csm.getAlias(),
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utf8_dest,
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srcLength + 1,
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src,
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srcLength,
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&status);
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if (status == U_BUFFER_OVERFLOW_ERROR) {
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status = U_ZERO_ERROR;
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TRI_Free(zone, utf8_dest);
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utf8_dest = (char*) TRI_Allocate(zone, (dstLength + 1) * sizeof(char), false);
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if (utf8_dest == 0) {
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return 0;
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}
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dstLength = ucasemap_utf8ToLower(csm.getAlias(),
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utf8_dest,
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dstLength + 1,
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src,
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srcLength,
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&status);
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}
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if (U_FAILURE(status)) {
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LOG_ERROR("error in ucasemap_utf8ToLower(...): %s", u_errorName(status));
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TRI_Free(zone, utf8_dest);
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}
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else {
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return utf8_dest;
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}
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}
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utf8_dest = TRI_LowerAsciiStringZ(zone, src);
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if (utf8_dest != 0) {
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dstLength = (int32_t) strlen(utf8_dest);
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}
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return utf8_dest;
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Uppercase the characters in a UTF-8 string.
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////////////////////////////////////////////////////////////////////////////////
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std::string Utf8Helper::toUpperCase (std::string const& src) {
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int32_t utf8len = 0;
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char* utf8 = toupper(TRI_UNKNOWN_MEM_ZONE, src.c_str(), (int32_t) src.length(), utf8len);
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if (utf8 == 0) {
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return string("");
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}
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string result(utf8, utf8len);
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, utf8);
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return result;
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Lowercase the characters in a UTF-8 string.
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////////////////////////////////////////////////////////////////////////////////
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char* Utf8Helper::toupper (TRI_memory_zone_t* zone, const char *src, int32_t srcLength, int32_t& dstLength) {
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char* utf8_dest = 0;
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if (src == 0 || srcLength == 0) {
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utf8_dest = (char*) TRI_Allocate(zone, sizeof(char), false);
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if (utf8_dest != 0) {
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utf8_dest[0] = '\0';
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}
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dstLength = 0;
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return utf8_dest;
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}
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uint32_t options = U_FOLD_CASE_DEFAULT;
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UErrorCode status = U_ZERO_ERROR;
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string locale = getCollatorLanguage();
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LocalUCaseMapPointer csm(ucasemap_open(locale.c_str(), options, &status));
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if (U_FAILURE(status)) {
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LOG_ERROR("error in ucasemap_open(...): %s", u_errorName(status));
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}
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else {
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utf8_dest = (char*) TRI_Allocate(zone, (srcLength+1) * sizeof(char), false);
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if (utf8_dest == 0) {
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return 0;
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}
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dstLength = ucasemap_utf8ToUpper(csm.getAlias(),
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utf8_dest,
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srcLength,
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src,
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srcLength,
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&status);
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if (status == U_BUFFER_OVERFLOW_ERROR) {
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status = U_ZERO_ERROR;
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TRI_Free(zone, utf8_dest);
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utf8_dest = (char*) TRI_Allocate(zone, (dstLength + 1) * sizeof(char), false);
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if (utf8_dest == 0) {
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return 0;
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}
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dstLength = ucasemap_utf8ToUpper(csm.getAlias(),
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utf8_dest,
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dstLength + 1,
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src,
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srcLength,
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&status);
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}
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if (U_FAILURE(status)) {
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LOG_ERROR("error in ucasemap_utf8ToUpper(...): %s", u_errorName(status));
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TRI_Free(zone, utf8_dest);
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}
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else {
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return utf8_dest;
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}
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}
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utf8_dest = TRI_UpperAsciiStringZ(zone, src);
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if (utf8_dest != NULL) {
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dstLength = (int32_t) strlen(utf8_dest);
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}
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return utf8_dest;
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Extract the words from a UTF-8 string.
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////////////////////////////////////////////////////////////////////////////////
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TRI_vector_string_t* Utf8Helper::getWords (const char* const text,
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const size_t textLength,
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const size_t minimalLength,
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const size_t maximalLength,
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bool lowerCase) {
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TRI_vector_string_t* words;
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UErrorCode status = U_ZERO_ERROR;
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UnicodeString word;
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if (textLength == 0) {
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// input text is empty
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return NULL;
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}
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if (textLength < minimalLength) {
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// input text is shorter than required minimum length
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return NULL;
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}
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size_t textUtf16Length = 0;
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UChar* textUtf16 = NULL;
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if (lowerCase) {
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// lower case string
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int32_t lowerLength = 0;
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char* lower = tolower(TRI_UNKNOWN_MEM_ZONE, text, (int32_t) textLength, lowerLength);
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if (lower == NULL) {
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// out of memory
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return NULL;
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}
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if (lowerLength == 0) {
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, lower);
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return NULL;
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}
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textUtf16 = TRI_Utf8ToUChar(TRI_UNKNOWN_MEM_ZONE, lower, lowerLength, &textUtf16Length);
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, lower);
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}
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else {
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textUtf16 = TRI_Utf8ToUChar(TRI_UNKNOWN_MEM_ZONE, text, (int32_t) textLength, &textUtf16Length);
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}
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if (textUtf16 == NULL) {
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return NULL;
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}
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ULocDataLocaleType type = ULOC_VALID_LOCALE;
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const Locale& locale = _coll->getLocale(type, status);
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if (U_FAILURE(status)) {
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, textUtf16);
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LOG_ERROR("error in Collator::getLocale(...): %s", u_errorName(status));
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return NULL;
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}
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UChar* tempUtf16 = (UChar *) TRI_Allocate(TRI_UNKNOWN_MEM_ZONE, (textUtf16Length + 1) * sizeof(UChar), false);
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if (tempUtf16 == NULL) {
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, textUtf16);
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return NULL;
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}
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words = (TRI_vector_string_t*) TRI_Allocate(TRI_UNKNOWN_MEM_ZONE, sizeof(TRI_vector_string_t), false);
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if (words == NULL) {
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, textUtf16);
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, tempUtf16);
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return NULL;
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}
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// estimate an initial vector size. this is not accurate, but setting the initial size to some
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// value in the correct order of magnitude will save a lot of vector reallocations later
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size_t initialWordCount = textLength / (2 * (minimalLength + 1));
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if (initialWordCount < 32) {
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// alloc at least 32 pointers (= 256b)
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initialWordCount = 32;
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}
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else if (initialWordCount > 8192) {
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// alloc at most 8192 pointers (= 64kb)
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initialWordCount = 8192;
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}
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TRI_InitVectorString2(words, TRI_UNKNOWN_MEM_ZONE, initialWordCount);
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BreakIterator* wordIterator = BreakIterator::createWordInstance(locale, status);
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UnicodeString utext(textUtf16);
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wordIterator->setText(utext);
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int32_t start = wordIterator->first();
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for(int32_t end = wordIterator->next(); end != BreakIterator::DONE;
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start = end, end = wordIterator->next()) {
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size_t tempUtf16Length = (size_t) (end - start);
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// end - start = word length
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if (tempUtf16Length >= minimalLength) {
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size_t chunkLength = tempUtf16Length;
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if (chunkLength > maximalLength) {
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chunkLength = maximalLength;
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}
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utext.extractBetween(start, (int32_t) (start + chunkLength), tempUtf16, 0);
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size_t utf8WordLength;
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char* utf8Word = TRI_UCharToUtf8(TRI_UNKNOWN_MEM_ZONE, tempUtf16, chunkLength, &utf8WordLength);
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if (utf8Word != 0) {
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TRI_PushBackVectorString(words, utf8Word);
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}
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}
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}
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delete wordIterator;
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, textUtf16);
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TRI_Free(TRI_UNKNOWN_MEM_ZONE, tempUtf16);
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if (words->_length == 0) {
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// no words found
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TRI_FreeVectorString(TRI_UNKNOWN_MEM_ZONE, words);
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return NULL;
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}
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return words;
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief compare two utf16 strings
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////////////////////////////////////////////////////////////////////////////////
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int TRI_compare_utf16 (const uint16_t* left, size_t leftLength, const uint16_t* right, size_t rightLength) {
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return Utf8Helper::DefaultUtf8Helper.compareUtf16(left, leftLength, right, rightLength);
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief compare two utf8 strings
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////////////////////////////////////////////////////////////////////////////////
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int TRI_compare_utf8 (const char* left, const char* right) {
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return Utf8Helper::DefaultUtf8Helper.compareUtf8(left, right);
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}
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Lowercase the characters in a UTF-8 string (implemented in Basic/Utf8Helper.cpp)
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////////////////////////////////////////////////////////////////////////////////
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char* TRI_tolower_utf8 (TRI_memory_zone_t* zone, const char *src, int32_t srcLength, int32_t* dstLength) {
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return Utf8Helper::DefaultUtf8Helper.tolower(zone, src, srcLength, *dstLength);
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}
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|
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////////////////////////////////////////////////////////////////////////////////
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/// @brief Uppercase the characters in a UTF-8 string (implemented in Basic/Utf8Helper.cpp)
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////////////////////////////////////////////////////////////////////////////////
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|
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char* TRI_toupper_utf8 (TRI_memory_zone_t* zone, const char *src, int32_t srcLength, int32_t* dstLength) {
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return Utf8Helper::DefaultUtf8Helper.toupper(zone, src, srcLength, *dstLength);
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|
}
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|
|
|
////////////////////////////////////////////////////////////////////////////////
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|
/// @brief Get words of an UTF-8 string (implemented in Basic/Utf8Helper.cpp)
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|
////////////////////////////////////////////////////////////////////////////////
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|
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|
TRI_vector_string_t* TRI_get_words (const char* const text,
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|
const size_t textLength,
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|
const size_t minimalWordLength,
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|
const size_t maximalWordLength,
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|
bool lowerCase) {
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|
return Utf8Helper::DefaultUtf8Helper.getWords(text, textLength, minimalWordLength, maximalWordLength, lowerCase);
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|
}
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|
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|
// -----------------------------------------------------------------------------
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|
// --SECTION-- END-OF-FILE
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|
// -----------------------------------------------------------------------------
|
|
|
|
// Local Variables:
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|
// mode: outline-minor
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|
// outline-regexp: "/// @brief\\|/// {@inheritDoc}\\|/// @page\\|// --SECTION--\\|/// @\\}"
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|
// End:
|