| 1 | // © 2016 and later: Unicode, Inc. and others. | 
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| 2 | // License & terms of use: http://www.unicode.org/copyright.html | 
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| 3 | /* | 
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| 4 | ******************************************************************************* | 
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| 5 | * Copyright (C) 2003-2009,2012,2016 International Business Machines Corporation and | 
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| 6 | * others. All Rights Reserved. | 
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| 7 | ******************************************************************************* | 
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| 8 | * | 
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| 9 | * File JAPANCAL.CPP | 
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| 10 | * | 
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| 11 | * Modification History: | 
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| 12 | *  05/16/2003    srl     copied from buddhcal.cpp | 
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| 13 | * | 
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| 14 | */ | 
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| 15 |  | 
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| 16 | #include "unicode/utypes.h" | 
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| 17 |  | 
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| 18 | #if !UCONFIG_NO_FORMATTING | 
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| 19 | #if U_PLATFORM_HAS_WINUWP_API == 0 | 
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| 20 | #include <stdlib.h> // getenv() is not available in UWP env | 
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| 21 | #else | 
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| 22 | #ifndef WIN32_LEAN_AND_MEAN | 
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| 23 | #   define WIN32_LEAN_AND_MEAN | 
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| 24 | #endif | 
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| 25 | #   define VC_EXTRALEAN | 
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| 26 | #   define NOUSER | 
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| 27 | #   define NOSERVICE | 
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| 28 | #   define NOIME | 
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| 29 | #   define NOMCX | 
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| 30 | #include <windows.h> | 
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| 31 | #endif | 
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| 32 | #include "cmemory.h" | 
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| 33 | #include "erarules.h" | 
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| 34 | #include "japancal.h" | 
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| 35 | #include "unicode/gregocal.h" | 
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| 36 | #include "umutex.h" | 
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| 37 | #include "uassert.h" | 
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| 38 | #include "ucln_in.h" | 
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| 39 | #include "cstring.h" | 
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| 40 |  | 
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| 41 | static icu::EraRules * gJapaneseEraRules = nullptr; | 
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| 42 | static icu::UInitOnce gJapaneseEraRulesInitOnce = U_INITONCE_INITIALIZER; | 
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| 43 | static int32_t gCurrentEra = 0; | 
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| 44 |  | 
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| 45 | U_CDECL_BEGIN | 
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| 46 | static UBool japanese_calendar_cleanup(void) { | 
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| 47 | if (gJapaneseEraRules) { | 
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| 48 | delete gJapaneseEraRules; | 
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| 49 | gJapaneseEraRules = nullptr; | 
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| 50 | } | 
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| 51 | gCurrentEra = 0; | 
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| 52 | gJapaneseEraRulesInitOnce.reset(); | 
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| 53 | return TRUE; | 
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| 54 | } | 
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| 55 | U_CDECL_END | 
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| 56 |  | 
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| 57 | U_NAMESPACE_BEGIN | 
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| 58 |  | 
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| 59 | UOBJECT_DEFINE_RTTI_IMPLEMENTATION(JapaneseCalendar) | 
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| 60 |  | 
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| 61 | static const int32_t kGregorianEpoch = 1970;    // used as the default value of EXTENDED_YEAR | 
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| 62 | static const char* TENTATIVE_ERA_VAR_NAME = "ICU_ENABLE_TENTATIVE_ERA"; | 
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| 63 |  | 
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| 64 |  | 
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| 65 | // Export the following for use by test code. | 
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| 66 | UBool JapaneseCalendar::enableTentativeEra() { | 
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| 67 | // Although start date of next Japanese era is planned ahead, a name of | 
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| 68 | // new era might not be available. This implementation allows tester to | 
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| 69 | // check a new era without era names by settings below (in priority order). | 
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| 70 | // By default, such tentative era is disabled. | 
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| 71 |  | 
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| 72 | // 1. Environment variable ICU_ENABLE_TENTATIVE_ERA=true or false | 
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| 73 |  | 
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| 74 | UBool includeTentativeEra = FALSE; | 
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| 75 |  | 
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| 76 | #if U_PLATFORM_HAS_WINUWP_API == 1 | 
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| 77 | // UWP doesn't allow access to getenv(), but we can call GetEnvironmentVariableW to do the same thing. | 
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| 78 | UChar varName[26] = {}; | 
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| 79 | u_charsToUChars(TENTATIVE_ERA_VAR_NAME, varName, static_cast<int32_t>(uprv_strlen(TENTATIVE_ERA_VAR_NAME))); | 
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| 80 | WCHAR varValue[5] = {}; | 
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| 81 | DWORD ret = GetEnvironmentVariableW(reinterpret_cast<WCHAR*>(varName), varValue, UPRV_LENGTHOF(varValue)); | 
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| 82 | if ((ret == 4) && (_wcsicmp(varValue, L "true") == 0)) { | 
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| 83 | includeTentativeEra = TRUE; | 
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| 84 | } | 
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| 85 | #else | 
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| 86 | char *envVarVal = getenv(TENTATIVE_ERA_VAR_NAME); | 
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| 87 | if (envVarVal != NULL && uprv_stricmp(envVarVal, "true") == 0) { | 
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| 88 | includeTentativeEra = TRUE; | 
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| 89 | } | 
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| 90 | #endif | 
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| 91 | return includeTentativeEra; | 
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| 92 | } | 
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| 93 |  | 
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| 94 |  | 
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| 95 | // Initialize global Japanese era data | 
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| 96 | static void U_CALLCONV initializeEras(UErrorCode &status) { | 
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| 97 | gJapaneseEraRules = EraRules::createInstance( "japanese", JapaneseCalendar::enableTentativeEra(), status); | 
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| 98 | if (U_FAILURE(status)) { | 
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| 99 | return; | 
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| 100 | } | 
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| 101 | gCurrentEra = gJapaneseEraRules->getCurrentEraIndex(); | 
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| 102 | } | 
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| 103 |  | 
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| 104 | static void init(UErrorCode &status) { | 
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| 105 | umtx_initOnce(gJapaneseEraRulesInitOnce, &initializeEras, status); | 
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| 106 | ucln_i18n_registerCleanup(UCLN_I18N_JAPANESE_CALENDAR, japanese_calendar_cleanup); | 
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| 107 | } | 
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| 108 |  | 
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| 109 | /* Some platforms don't like to export constants, like old Palm OS and some z/OS configurations. */ | 
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| 110 | uint32_t JapaneseCalendar::getCurrentEra() { | 
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| 111 | return gCurrentEra; | 
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| 112 | } | 
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| 113 |  | 
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| 114 | JapaneseCalendar::JapaneseCalendar(const Locale& aLocale, UErrorCode& success) | 
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| 115 | :   GregorianCalendar(aLocale, success) | 
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| 116 | { | 
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| 117 | init(success); | 
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| 118 | setTimeInMillis(getNow(), success); // Call this again now that the vtable is set up properly. | 
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| 119 | } | 
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| 120 |  | 
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| 121 | JapaneseCalendar::~JapaneseCalendar() | 
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| 122 | { | 
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| 123 | } | 
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| 124 |  | 
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| 125 | JapaneseCalendar::JapaneseCalendar(const JapaneseCalendar& source) | 
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| 126 | : GregorianCalendar(source) | 
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| 127 | { | 
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| 128 | UErrorCode status = U_ZERO_ERROR; | 
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| 129 | init(status); | 
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| 130 | U_ASSERT(U_SUCCESS(status)); | 
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| 131 | } | 
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| 132 |  | 
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| 133 | JapaneseCalendar& JapaneseCalendar::operator= ( const JapaneseCalendar& right) | 
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| 134 | { | 
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| 135 | GregorianCalendar::operator=(right); | 
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| 136 | return *this; | 
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| 137 | } | 
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| 138 |  | 
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| 139 | JapaneseCalendar* JapaneseCalendar::clone() const | 
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| 140 | { | 
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| 141 | return new JapaneseCalendar(*this); | 
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| 142 | } | 
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| 143 |  | 
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| 144 | const char *JapaneseCalendar::getType() const | 
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| 145 | { | 
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| 146 | return "japanese"; | 
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| 147 | } | 
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| 148 |  | 
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| 149 | int32_t JapaneseCalendar::getDefaultMonthInYear(int32_t eyear) | 
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| 150 | { | 
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| 151 | int32_t era = internalGetEra(); | 
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| 152 | // TODO do we assume we can trust 'era'?  What if it is denormalized? | 
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| 153 |  | 
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| 154 | int32_t month = 0; | 
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| 155 |  | 
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| 156 | // Find out if we are at the edge of an era | 
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| 157 | int32_t eraStart[3] = { 0,0,0 }; | 
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| 158 | UErrorCode status = U_ZERO_ERROR; | 
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| 159 | gJapaneseEraRules->getStartDate(era, eraStart, status); | 
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| 160 | U_ASSERT(U_SUCCESS(status)); | 
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| 161 | if(eyear == eraStart[0]) { | 
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| 162 | // Yes, we're in the first year of this era. | 
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| 163 | return eraStart[1]  // month | 
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| 164 | -1;         // return 0-based month | 
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| 165 | } | 
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| 166 |  | 
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| 167 | return month; | 
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| 168 | } | 
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| 169 |  | 
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| 170 | int32_t JapaneseCalendar::getDefaultDayInMonth(int32_t eyear, int32_t month) | 
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| 171 | { | 
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| 172 | int32_t era = internalGetEra(); | 
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| 173 | int32_t day = 1; | 
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| 174 |  | 
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| 175 | int32_t eraStart[3] = { 0,0,0 }; | 
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| 176 | UErrorCode status = U_ZERO_ERROR; | 
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| 177 | gJapaneseEraRules->getStartDate(era, eraStart, status); | 
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| 178 | U_ASSERT(U_SUCCESS(status)); | 
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| 179 | if(eyear == eraStart[0]) { | 
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| 180 | if(month == eraStart[1] - 1) { | 
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| 181 | return eraStart[2]; | 
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| 182 | } | 
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| 183 | } | 
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| 184 |  | 
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| 185 | return day; | 
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| 186 | } | 
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| 187 |  | 
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| 188 |  | 
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| 189 | int32_t JapaneseCalendar::internalGetEra() const | 
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| 190 | { | 
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| 191 | return internalGet(UCAL_ERA, gCurrentEra); | 
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| 192 | } | 
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| 193 |  | 
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| 194 | int32_t JapaneseCalendar::handleGetExtendedYear() | 
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| 195 | { | 
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| 196 | // EXTENDED_YEAR in JapaneseCalendar is a Gregorian year | 
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| 197 | // The default value of EXTENDED_YEAR is 1970 (Showa 45) | 
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| 198 | int32_t year; | 
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| 199 |  | 
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| 200 | if (newerField(UCAL_EXTENDED_YEAR, UCAL_YEAR) == UCAL_EXTENDED_YEAR && | 
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| 201 | newerField(UCAL_EXTENDED_YEAR, UCAL_ERA) == UCAL_EXTENDED_YEAR) { | 
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| 202 | year = internalGet(UCAL_EXTENDED_YEAR, kGregorianEpoch); | 
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| 203 | } else { | 
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| 204 | UErrorCode status = U_ZERO_ERROR; | 
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| 205 | int32_t eraStartYear = gJapaneseEraRules->getStartYear(internalGet(UCAL_ERA, gCurrentEra), status); | 
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| 206 | U_ASSERT(U_SUCCESS(status)); | 
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| 207 |  | 
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| 208 | // extended year is a gregorian year, where 1 = 1AD,  0 = 1BC, -1 = 2BC, etc | 
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| 209 | year = internalGet(UCAL_YEAR, 1)    // pin to minimum of year 1 (first year) | 
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| 210 | + eraStartYear                  // add gregorian starting year | 
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| 211 | - 1;                            // Subtract one because year starts at 1 | 
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| 212 | } | 
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| 213 | return year; | 
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| 214 | } | 
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| 215 |  | 
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| 216 |  | 
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| 217 | void JapaneseCalendar::handleComputeFields(int32_t julianDay, UErrorCode& status) | 
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| 218 | { | 
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| 219 | //Calendar::timeToFields(theTime, quick, status); | 
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| 220 | GregorianCalendar::handleComputeFields(julianDay, status); | 
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| 221 | int32_t year = internalGet(UCAL_EXTENDED_YEAR); // Gregorian year | 
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| 222 | int32_t eraIdx = gJapaneseEraRules->getEraIndex(year, internalGet(UCAL_MONTH) + 1, internalGet(UCAL_DAY_OF_MONTH), status); | 
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| 223 |  | 
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| 224 | internalSet(UCAL_ERA, eraIdx); | 
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| 225 | internalSet(UCAL_YEAR, year - gJapaneseEraRules->getStartYear(eraIdx, status) + 1); | 
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| 226 | } | 
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| 227 |  | 
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| 228 | /* | 
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| 229 | Disable pivoting | 
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| 230 | */ | 
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| 231 | UBool JapaneseCalendar::haveDefaultCentury() const | 
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| 232 | { | 
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| 233 | return FALSE; | 
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| 234 | } | 
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| 235 |  | 
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| 236 | UDate JapaneseCalendar::defaultCenturyStart() const | 
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| 237 | { | 
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| 238 | return 0;// WRONG | 
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| 239 | } | 
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| 240 |  | 
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| 241 | int32_t JapaneseCalendar::defaultCenturyStartYear() const | 
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| 242 | { | 
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| 243 | return 0; | 
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| 244 | } | 
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| 245 |  | 
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| 246 | int32_t JapaneseCalendar::handleGetLimit(UCalendarDateFields field, ELimitType limitType) const | 
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| 247 | { | 
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| 248 | switch(field) { | 
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| 249 | case UCAL_ERA: | 
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| 250 | if (limitType == UCAL_LIMIT_MINIMUM || limitType == UCAL_LIMIT_GREATEST_MINIMUM) { | 
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| 251 | return 0; | 
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| 252 | } | 
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| 253 | return gJapaneseEraRules->getNumberOfEras() - 1; // max known era, not gCurrentEra | 
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| 254 | case UCAL_YEAR: | 
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| 255 | { | 
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| 256 | switch (limitType) { | 
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| 257 | case UCAL_LIMIT_MINIMUM: | 
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| 258 | case UCAL_LIMIT_GREATEST_MINIMUM: | 
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| 259 | return 1; | 
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| 260 | case UCAL_LIMIT_LEAST_MAXIMUM: | 
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| 261 | return 1; | 
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| 262 | case  UCAL_LIMIT_COUNT: //added to avoid warning | 
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| 263 | case UCAL_LIMIT_MAXIMUM: | 
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| 264 | { | 
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| 265 | UErrorCode status = U_ZERO_ERROR; | 
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| 266 | int32_t eraStartYear = gJapaneseEraRules->getStartYear(gCurrentEra, status); | 
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| 267 | U_ASSERT(U_SUCCESS(status)); | 
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| 268 | return GregorianCalendar::handleGetLimit(UCAL_YEAR, UCAL_LIMIT_MAXIMUM) - eraStartYear; | 
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| 269 | } | 
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| 270 | default: | 
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| 271 | return 1;    // Error condition, invalid limitType | 
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| 272 | } | 
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| 273 | } | 
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| 274 | default: | 
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| 275 | return GregorianCalendar::handleGetLimit(field,limitType); | 
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| 276 | } | 
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| 277 | } | 
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| 278 |  | 
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| 279 | int32_t JapaneseCalendar::getActualMaximum(UCalendarDateFields field, UErrorCode& status) const { | 
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| 280 | if (field == UCAL_YEAR) { | 
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| 281 | int32_t era = get(UCAL_ERA, status); | 
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| 282 | if (U_FAILURE(status)) { | 
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| 283 | return 0; // error case... any value | 
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| 284 | } | 
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| 285 | if (era == gJapaneseEraRules->getNumberOfEras() - 1) { // max known era, not gCurrentEra | 
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| 286 | // TODO: Investigate what value should be used here - revisit after 4.0. | 
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| 287 | return handleGetLimit(UCAL_YEAR, UCAL_LIMIT_MAXIMUM); | 
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| 288 | } else { | 
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| 289 | int32_t nextEraStart[3] = { 0,0,0 }; | 
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| 290 | gJapaneseEraRules->getStartDate(era + 1, nextEraStart, status); | 
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| 291 | int32_t nextEraYear = nextEraStart[0]; | 
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| 292 | int32_t nextEraMonth = nextEraStart[1]; // 1-base | 
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| 293 | int32_t nextEraDate = nextEraStart[2]; | 
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| 294 |  | 
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| 295 | int32_t eraStartYear = gJapaneseEraRules->getStartYear(era, status); | 
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| 296 | int32_t maxYear = nextEraYear - eraStartYear + 1;   // 1-base | 
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| 297 | if (nextEraMonth == 1 && nextEraDate == 1) { | 
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| 298 | // Subtract 1, because the next era starts at Jan 1 | 
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| 299 | maxYear--; | 
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| 300 | } | 
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| 301 | return maxYear; | 
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| 302 | } | 
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| 303 | } | 
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| 304 | return GregorianCalendar::getActualMaximum(field, status); | 
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| 305 | } | 
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| 306 |  | 
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| 307 | U_NAMESPACE_END | 
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| 308 |  | 
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| 309 | #endif | 
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| 310 |  | 
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