1e1f8509d8
X-SVN-Rev: 30505
420 lines
14 KiB
C++
420 lines
14 KiB
C++
/********************************************************************
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* COPYRIGHT:
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* Copyright (c) 2011, International Business Machines Corporation and
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* others. All Rights Reserved.
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********************************************************************/
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//
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// file: alphaindex.cpp
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// Alphabetic Index Tests.
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//
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#include "intltest.h"
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#include "alphaindextst.h"
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#include "unicode/alphaindex.h"
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#include "unicode/coll.h"
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#include "unicode/tblcoll.h"
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#include "unicode/uniset.h"
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#if !UCONFIG_NO_COLLATION && !UCONFIG_NO_NORMALIZATION
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// #include <string>
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// #include <iostream>
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AlphabeticIndexTest::AlphabeticIndexTest() {
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}
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AlphabeticIndexTest::~AlphabeticIndexTest() {
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}
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void AlphabeticIndexTest::runIndexedTest( int32_t index, UBool exec, const char* &name, char* /*par*/ )
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{
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if (exec) logln("TestSuite AlphabeticIndex: ");
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switch (index) {
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case 0: name = "APITest";
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if (exec) APITest();
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break;
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case 1: name = "ManyLocales";
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if (exec) ManyLocalesTest();
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break;
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case 2: name = "HackPinyinTest";
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if (exec) HackPinyinTest();
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break;
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default: name = "";
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break; //needed to end loop
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}
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}
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#define TEST_CHECK_STATUS {if (U_FAILURE(status)) {dataerrln("%s:%d: Test failure. status=%s", \
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__FILE__, __LINE__, u_errorName(status)); return;}}
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#define TEST_ASSERT(expr) {if ((expr)==FALSE) {errln("%s:%d: Test failure \n", __FILE__, __LINE__);};}
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//
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// APITest. Invoke every function at least once, and check that it does something.
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// Does not attempt to check complete functionality.
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//
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void AlphabeticIndexTest::APITest() {
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//
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// Simple constructor and destructor, getBucketCount()
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//
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UErrorCode status = U_ZERO_ERROR;
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int32_t lc = 0;
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int32_t i = 0;
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AlphabeticIndex *index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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lc = index->getBucketCount(status);
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TEST_CHECK_STATUS;
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TEST_ASSERT(28 == lc); // 26 letters plus two under/overflow labels.
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//printf("getBucketCount() == %d\n", lc);
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delete index;
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// addLabels()
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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UnicodeSet additions;
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additions.add((UChar32)0x410).add((UChar32)0x415); // A couple of Cyrillic letters
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index->addLabels(additions, status);
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TEST_CHECK_STATUS;
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lc = index->getBucketCount(status);
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TEST_CHECK_STATUS;
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// TODO: should get 31. Java also gives 30. Needs fixing
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TEST_ASSERT(30 == lc); // 26 Latin letters plus
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// TEST_ASSERT(31 == lc); // 26 Latin letters plus
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// 2 Cyrillic letters plus
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// 1 inflow label plus
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// two under/overflow labels.
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// std::cout << lc << std::endl;
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delete index;
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// addLabels(Locale)
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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AlphabeticIndex &aip = index->addLabels(Locale::getJapanese(), status);
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TEST_ASSERT(&aip == index);
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TEST_CHECK_STATUS;
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lc = index->getBucketCount(status);
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TEST_CHECK_STATUS;
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TEST_ASSERT(35 < lc); // Japanese should add a bunch. Don't rely on the exact value.
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delete index;
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// GetCollator(), Get under/in/over flow labels
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getGerman(), status);
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TEST_CHECK_STATUS;
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Collator *germanCol = Collator::createInstance(Locale::getGerman(), status);
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TEST_CHECK_STATUS;
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const RuleBasedCollator &indexCol = index->getCollator();
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TEST_ASSERT(*germanCol == indexCol);
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delete germanCol;
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UnicodeString ELLIPSIS; ELLIPSIS.append((UChar32)0x2026);
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UnicodeString s = index->getUnderflowLabel();
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TEST_ASSERT(ELLIPSIS == s);
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s = index->getOverflowLabel();
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TEST_ASSERT(ELLIPSIS == s);
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s = index->getInflowLabel();
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TEST_ASSERT(ELLIPSIS == s);
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index->setOverflowLabel(UNICODE_STRING_SIMPLE("O"), status);
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index->setUnderflowLabel(UNICODE_STRING_SIMPLE("U"), status).setInflowLabel(UNICODE_STRING_SIMPLE("I"), status);
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s = index->getUnderflowLabel();
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TEST_ASSERT(UNICODE_STRING_SIMPLE("U") == s);
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s = index->getOverflowLabel();
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TEST_ASSERT(UNICODE_STRING_SIMPLE("O") == s);
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s = index->getInflowLabel();
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TEST_ASSERT(UNICODE_STRING_SIMPLE("I") == s);
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delete index;
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const UnicodeString adam = UNICODE_STRING_SIMPLE("Adam");
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const UnicodeString baker = UNICODE_STRING_SIMPLE("Baker");
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const UnicodeString charlie = UNICODE_STRING_SIMPLE("Charlie");
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const UnicodeString chad = UNICODE_STRING_SIMPLE("Chad");
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const UnicodeString zed = UNICODE_STRING_SIMPLE("Zed");
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const UnicodeString Cyrillic = UNICODE_STRING_SIMPLE("\\u0410\\u0443\\u0435").unescape();
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// addRecord(), verify that it comes back out.
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//
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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index->addRecord(UnicodeString("Adam"), this, status);
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UBool b;
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TEST_CHECK_STATUS;
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index->resetBucketIterator(status);
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TEST_CHECK_STATUS;
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index->nextBucket(status); // Move to underflow label
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index->nextBucket(status); // Move to "A"
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TEST_CHECK_STATUS;
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const UnicodeString &label2 = index->getBucketLabel();
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UnicodeString A_STR = UNICODE_STRING_SIMPLE("A");
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TEST_ASSERT(A_STR == label2);
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b = index->nextRecord(status);
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TEST_CHECK_STATUS;
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TEST_ASSERT(b);
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const UnicodeString &itemName = index->getRecordName();
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TEST_ASSERT(adam == itemName);
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const void *itemContext = index->getRecordData();
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TEST_ASSERT(itemContext == this);
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delete index;
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// clearRecords, addRecord(), Iteration
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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while (index->nextBucket(status)) {
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TEST_CHECK_STATUS;
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while (index->nextRecord(status)) {
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TEST_CHECK_STATUS;
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TEST_ASSERT(FALSE); // No items have been added.
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}
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TEST_CHECK_STATUS;
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}
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index->addRecord(adam, NULL, status);
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index->addRecord(baker, NULL, status);
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index->addRecord(charlie, NULL, status);
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index->addRecord(chad, NULL, status);
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TEST_CHECK_STATUS;
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int itemCount = 0;
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index->resetBucketIterator(status);
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while (index->nextBucket(status)) {
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TEST_CHECK_STATUS;
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while (index->nextRecord(status)) {
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TEST_CHECK_STATUS;
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++itemCount;
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}
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}
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TEST_CHECK_STATUS;
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TEST_ASSERT(itemCount == 4);
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TEST_ASSERT(index->nextBucket(status) == FALSE);
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index->resetBucketIterator(status);
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TEST_CHECK_STATUS;
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TEST_ASSERT(index->nextBucket(status) == TRUE);
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index->clearRecords(status);
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TEST_CHECK_STATUS;
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index->resetBucketIterator(status);
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while (index->nextBucket(status)) {
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TEST_CHECK_STATUS;
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while (index->nextRecord(status)) {
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TEST_ASSERT(FALSE); // No items have been added.
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}
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}
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TEST_CHECK_STATUS;
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delete index;
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// getBucketLabel(), getBucketType()
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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index->setUnderflowLabel(adam, status).setOverflowLabel(charlie, status);
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TEST_CHECK_STATUS;
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for (i=0; index->nextBucket(status); i++) {
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TEST_CHECK_STATUS;
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UnicodeString label = index->getBucketLabel();
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UAlphabeticIndexLabelType type = index->getBucketLabelType();
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if (i == 0) {
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TEST_ASSERT(type == U_ALPHAINDEX_UNDERFLOW);
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TEST_ASSERT(label == adam);
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} else if (i <= 26) {
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// Labels A - Z for English locale
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TEST_ASSERT(type == U_ALPHAINDEX_NORMAL);
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UnicodeString expectedLabel((UChar)(0x40 + i));
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TEST_ASSERT(expectedLabel == label);
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} else if (i == 27) {
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TEST_ASSERT(type == U_ALPHAINDEX_OVERFLOW);
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TEST_ASSERT(label == charlie);
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} else {
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TEST_ASSERT(FALSE);
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}
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}
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TEST_ASSERT(i==28);
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delete index;
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// getBucketIndex()
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status = U_ZERO_ERROR;
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index = new AlphabeticIndex(Locale::getEnglish(), status);
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TEST_CHECK_STATUS;
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int32_t n = index->getBucketIndex(adam, status);
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TEST_CHECK_STATUS;
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TEST_ASSERT(n == 1); /* Label #0 is underflow, 1 is A, etc. */
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n = index->getBucketIndex(baker, status);
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TEST_ASSERT(n == 2);
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n = index->getBucketIndex(Cyrillic, status);
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TEST_ASSERT(n == 27); // Overflow label
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n = index->getBucketIndex(zed, status);
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TEST_ASSERT(n == 26);
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for (i=0; index->nextBucket(status); i++) {
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n = index->getBucketIndex();
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TEST_ASSERT(n == i);
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UnicodeString label = index->getBucketLabel();
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TEST_ASSERT(n == i);
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}
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TEST_ASSERT(i == 28);
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delete index;
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index = new AlphabeticIndex(Locale::createFromName("ru"), status);
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//Locale loc = Locale::createFromName(localeName);
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TEST_CHECK_STATUS;
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n = index->getBucketIndex(adam, status);
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TEST_CHECK_STATUS;
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TEST_ASSERT(n == 0); // Label #0 is underflow
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n = index->getBucketIndex(baker, status);
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TEST_ASSERT(n == 0);
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n = index->getBucketIndex(Cyrillic, status);
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TEST_ASSERT(n == 1); // Overflow label
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n = index->getBucketIndex(zed, status);
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TEST_ASSERT(n == 0);
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delete index;
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}
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static const char * KEY_LOCALES[] = {
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"en", "es", "de", "fr", "ja", "it", "tr", "pt", "zh", "nl",
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"pl", "ar", "ru", "zh_Hant", "ko", "th", "sv", "fi", "da",
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"he", "nb", "el", "hr", "bg", "sk", "lt", "vi", "lv", "sr",
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"pt_PT", "ro", "hu", "cs", "id", "sl", "fil", "fa", "uk",
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"ca", "hi", "et", "eu", "is", "sw", "ms", "bn", "am", "ta",
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"te", "mr", "ur", "ml", "kn", "gu", "or", ""};
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void AlphabeticIndexTest::ManyLocalesTest() {
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UErrorCode status = U_ZERO_ERROR;
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int32_t lc = 0;
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AlphabeticIndex *index = NULL;
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for (int i=0; ; ++i) {
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status = U_ZERO_ERROR;
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const char *localeName = KEY_LOCALES[i];
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if (localeName[0] == 0) {
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break;
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}
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// std::cout << localeName << " ";
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Locale loc = Locale::createFromName(localeName);
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index = new AlphabeticIndex(loc, status);
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TEST_CHECK_STATUS;
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lc = index->getBucketCount(status);
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TEST_CHECK_STATUS;
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// std::cout << "getBucketCount() == " << lc << std::endl;
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while (index->nextBucket(status)) {
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TEST_CHECK_STATUS;
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const UnicodeString &label = index->getBucketLabel();
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TEST_ASSERT(label.length()>0);
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// std::string ss;
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// std::cout << ":" << label.toUTF8String(ss);
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}
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// std::cout << ":" << std::endl;
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delete index;
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}
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}
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// Test data for Pinyin based indexes.
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// The Chinese characters should be distributed under latin labels in
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// an index.
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static const char *pinyinTestData[] = {
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"\\u0101", "\\u5416", "\\u58ba", //
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"b", "\\u516b", "\\u62d4", "\\u8500", //
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"c", "\\u5693", "\\u7938", "\\u9e7e", //
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"d", "\\u5491", "\\u8fcf", "\\u964a", //
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"\\u0113","\\u59b8", "\\u92e8", "\\u834b", //
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"f", "\\u53d1", "\\u9197", "\\u99a5", //
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"g", "\\u7324", "\\u91d3", "\\u8142", //
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"h", "\\u598e", "\\u927f", "\\u593b", //
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"j", "\\u4e0c", "\\u6785", "\\u9d58", //
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"k", "\\u5494", "\\u958b", "\\u7a52", //
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"l", "\\u5783", "\\u62c9", "\\u9ba5", //
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"m", "\\u5638", "\\u9ebb", "\\u65c0", //
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"n", "\\u62ff", "\\u80ad", "\\u685b", //
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"\\u014D", "\\u5662", "\\u6bee", "\\u8bb4", //
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"p", "\\u5991", "\\u8019", "\\u8c31", //
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"q", "\\u4e03", "\\u6053", "\\u7f56", //
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"r", "\\u5465", "\\u72aa", "\\u6e03", //
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"s", "\\u4ee8", "\\u9491", "\\u93c1", //
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"t", "\\u4ed6", "\\u9248", "\\u67dd", //
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"w", "\\u5c72", "\\u5558", "\\u5a7a", //
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"x", "\\u5915", "\\u5438", "\\u6bbe", //
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"y", "\\u4e2b", "\\u82bd", "\\u8574", //
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"z", "\\u5e00", "\\u707d", "\\u5c0a",
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NULL
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};
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void AlphabeticIndexTest::HackPinyinTest() {
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UErrorCode status = U_ZERO_ERROR;
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AlphabeticIndex aindex(Locale::createFromName("zh"), status);
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TEST_CHECK_STATUS;
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UnicodeString names[sizeof(pinyinTestData) / sizeof(pinyinTestData[0])];
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int32_t nameCount;
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for (nameCount=0; pinyinTestData[nameCount] != NULL; nameCount++) {
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names[nameCount] = UnicodeString(pinyinTestData[nameCount], -1, UnicodeString::kInvariant).unescape();
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aindex.addRecord(names[nameCount], &names[nameCount], status);
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TEST_CHECK_STATUS;
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if (U_FAILURE(status)) {
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return;
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}
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}
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TEST_ASSERT(nameCount == aindex.getRecordCount(status));
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// Weak checking: make sure that none of the Chinese names landed in the overflow bucket
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// of the index, and that the names are distributed among several buckets.
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// (Exact expected data would be subject to change with evolution of the collation rules.)
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int32_t bucketCount = 0;
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int32_t filledBucketCount = 0;
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while (aindex.nextBucket(status)) {
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bucketCount++;
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UnicodeString label = aindex.getBucketLabel();
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// std::string s;
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// std::cout << label.toUTF8String(s) << ": ";
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UBool bucketHasContents = FALSE;
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while (aindex.nextRecord(status)) {
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bucketHasContents = TRUE;
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UnicodeString name = aindex.getRecordName();
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if (aindex.getBucketLabelType() != U_ALPHAINDEX_NORMAL) {
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errln("File %s, Line %d, Name \"\\u%x\" is in an under or overflow bucket.",
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__FILE__, __LINE__, name.char32At(0));
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}
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// s.clear();
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// std::cout << aindex.getRecordName().toUTF8String(s) << " ";
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}
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if (bucketHasContents) {
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filledBucketCount++;
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}
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// std::cout << std::endl;
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}
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TEST_ASSERT(bucketCount > 25);
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TEST_ASSERT(filledBucketCount > 15);
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}
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#endif
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