mirror of
https://github.com/CloverHackyColor/CloverBootloader.git
synced 2024-12-26 16:47:40 +01:00
290 lines
11 KiB
C++
290 lines
11 KiB
C++
#ifndef __MacOsVersion_H__
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#define __MacOsVersion_H__
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#include "../cpp_foundation/XStringArray.h"
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#include "Utils.h"
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const XString8 getSuffixForMacOsVersion(int LoaderType);
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class AbstractMacOsVersion
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{
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public:
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static const int nbMaxElement = 5; // if you modify, update the initializer/
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XString8 lastError = ""_XS8; // to silence warning effc++
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protected:
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int versionsNumber[nbMaxElement] = { -1, -1, -1, -1, -1 };
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public:
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AbstractMacOsVersion() {};
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AbstractMacOsVersion(int _versionsNumber[nbMaxElement]) {
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size_t idx;
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for ( idx=0 ; idx < nbMaxElement && _versionsNumber[idx] != -1 ; idx++ ) versionsNumber[idx] = _versionsNumber[idx];
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for ( ; idx < nbMaxElement ; idx++ ) if ( _versionsNumber[idx] != -1 ) panic("MacOsVersion::ctor _versionsNumber[%zu] != -1", idx);
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};
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int nbElement() const { int idx; for ( idx=0 ; idx < nbMaxElement && versionsNumber[idx] != -1 ; idx++ ) {}; return idx; }
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int lastElement() const { int idx; for ( idx=1 ; idx < nbMaxElement && versionsNumber[idx] != -1 ; idx++ ) {}; return versionsNumber[idx-1]; }
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void setEmpty() { lastError.setEmpty(); for ( size_t idx=0 ; idx < nbMaxElement ; idx++ ) versionsNumber[idx] = -1; }
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bool isEmpty() const { return versionsNumber[0] == -1; }
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bool notEmpty() const { return !isEmpty(); }
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template<typename IntegralType, enable_if(is_integral(IntegralType))>
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int elementAt(IntegralType i) const {
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if (i < 0) {
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panic("MacOsVersion::elementAt : i < 0. System halted\n");
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}
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if ( (unsigned_type(IntegralType))i >= nbMaxElement ) {
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panic("MacOsVersion::elementAt : i >= nbMaxElement. System halted\n");
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}
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return versionsNumber[(unsigned_type(IntegralType))i];
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}
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template<typename IntegralType, enable_if(is_integral(IntegralType))>
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XString8 asString(IntegralType i) const {
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if (i <= 0) {
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panic("MacOsVersion::asString : i < 0. System halted\n");
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}
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if ( (unsigned_type(IntegralType))i > nbMaxElement ) {
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panic("MacOsVersion::asString : i > nbMaxElement. System halted\n");
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}
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if ( versionsNumber[0] == -1 ) return NullXString8;
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XString8 returnValue;
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if ( versionsNumber[0] == -2 ) {
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returnValue.S8Printf("x");
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}else{
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returnValue.S8Printf("%d", versionsNumber[0]);
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}
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for ( size_t idx=1 ; idx < (unsigned_type(IntegralType))i && versionsNumber[idx] != -1 ; idx++ ) {
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if ( versionsNumber[idx] == -2 ) {
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returnValue.S8Catf(".x");
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}else{
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returnValue.S8Catf(".%d", versionsNumber[idx]);
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}
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}
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return returnValue;
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}
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XString8 asString() const { return asString(nbMaxElement); }
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};
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class MacOsVersionPattern : public AbstractMacOsVersion
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{
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public:
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MacOsVersionPattern() : AbstractMacOsVersion() {};
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MacOsVersionPattern(int _versionsNumber[nbMaxElement]) : AbstractMacOsVersion(_versionsNumber) {};
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template <class XStringClass, enable_if( is___String(XStringClass) || is___LString(XStringClass) ) >
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MacOsVersionPattern(const XStringClass& versionAsString)
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{
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this->takeValueFrom(versionAsString);
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}
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template <class XStringClass, enable_if( is___String(XStringClass) || is___LString(XStringClass) ) >
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// MacOsVersionPattern& operator = ( const XStringClass& versionAsString)
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MacOsVersionPattern& takeValueFrom(const XStringClass& versionAsString)
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{
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setEmpty(); // we call our own setEmpty although we already are empty (this is a ctor). That's because in case of nbMaxElement is increased and there is a missing value in versionsNumber array initializer.
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size_t currentElementIdx = 0;
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int* currentElementPtr = &versionsNumber[currentElementIdx];
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size_t idx;
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for ( idx=0 ; idx < versionAsString.length(); idx++ )
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{
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if ( *currentElementPtr == -2 ) {
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if ( versionAsString[idx] == 'x' || versionAsString[idx] == 'X' ) {
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// ok. we allow multiple following x.
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}else
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if ( versionAsString[idx] == '.' ) {
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currentElementIdx += 1;
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if ( currentElementIdx >= nbMaxElement ) {
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setEmpty();
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lastError.S8Printf("Version number cannot be more than %d numbers.", nbMaxElement);
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return *this;
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}
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currentElementPtr = &versionsNumber[currentElementIdx];
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}else{
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setEmpty();
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lastError.S8Printf("Version number wildcard ('x') must be followed by a dot.");
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return *this;
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}
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}else
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if ( *currentElementPtr == -1 ) {
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if ( versionAsString[idx] == 'x' || versionAsString[idx] == 'X' ) {
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*currentElementPtr = -2;
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}else
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if ( IS_DIGIT(versionAsString[idx]) ) {
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*currentElementPtr = ((int)versionAsString[idx]) - '0'; // safe cast because versionAsString[idx] is a digit.
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}else
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{
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setEmpty();
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lastError.S8Printf("Version number must be numbers separated with one dot.");
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return *this;
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}
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}else{
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if ( versionAsString[idx] == '.' ) {
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currentElementIdx += 1;
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if ( currentElementIdx >= nbMaxElement ) {
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setEmpty();
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lastError.S8Printf("Version number cannot be more than %d numbers.", nbMaxElement);
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return *this;
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}
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currentElementPtr = &versionsNumber[currentElementIdx];
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}else
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if ( IS_DIGIT(versionAsString[idx]) ) {
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*currentElementPtr = *currentElementPtr * 10 + ((int)versionAsString[idx]) - '0'; // safe cast because versionAsString[idx] is a digit.
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}else{
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setEmpty();
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lastError.S8Printf("Version number must be numbers separated with one dot.");
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return *this;
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}
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}
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}
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return *this;
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}
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template<typename CharType, enable_if(is_char(CharType))>
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MacOsVersionPattern& operator = ( const CharType* p) { return *this = LString8(p); }
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MacOsVersionPattern(const MacOsVersionPattern& other)
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{
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lastError = other.lastError;
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memcpy(versionsNumber, other.versionsNumber, sizeof(versionsNumber));
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}
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MacOsVersionPattern& operator = ( const MacOsVersionPattern& other)
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{
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lastError = other.lastError;
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memcpy(versionsNumber, other.versionsNumber, sizeof(versionsNumber));
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return *this;
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}
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};
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class MacOsVersion : public AbstractMacOsVersion
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{
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public:
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MacOsVersion() : AbstractMacOsVersion() {};
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MacOsVersion(int _versionsNumber[nbMaxElement]) : AbstractMacOsVersion(_versionsNumber) {};
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template <class XStringClass, enable_if( is___String(XStringClass) || is___LString(XStringClass) ) >
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MacOsVersion(const XStringClass& versionAsString)
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{
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this->takeValueFrom(versionAsString);
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}
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template <class XStringClass, enable_if( is___String(XStringClass) || is___LString(XStringClass) ) >
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// MacOsVersion& operator = ( const XStringClass& versionAsString)
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MacOsVersion& takeValueFrom(const XStringClass& versionAsString)
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{
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setEmpty(); // we call our own setEmpty although we already are empty (this is a ctor). That's because in case of nbMaxElement is increased and there is a missing value in versionsNumber array initializer.
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size_t currentElementIdx = 0;
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int* currentElementPtr = &versionsNumber[currentElementIdx];
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for ( size_t idx=0 ; idx < versionAsString.length(); idx++ )
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{
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if ( *currentElementPtr == -1 ) {
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if ( !IS_DIGIT(versionAsString[idx]) ) {
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setEmpty();
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lastError.S8Printf("Version number must be numbers separated with one dot.");
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return *this;
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}
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*currentElementPtr = ((int)versionAsString[idx]) - '0'; // safe cast because versionAsString[idx] is a digit.
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}else{
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if ( versionAsString[idx] == '.' ) {
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currentElementIdx += 1;
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if ( currentElementIdx >= nbMaxElement ) {
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setEmpty();
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lastError.S8Printf("Version number cannot be more than %d numbers.", nbMaxElement);
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return *this;
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}
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currentElementPtr = &versionsNumber[currentElementIdx];
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}else
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if ( IS_DIGIT(versionAsString[idx]) ) {
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*currentElementPtr = *currentElementPtr * 10 + ((int)versionAsString[idx]) - '0'; // safe cast because versionAsString[idx] is a digit.
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}else{
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setEmpty();
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lastError.S8Printf("Version number must be numbers separated with one dot.");
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return *this;
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}
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}
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}
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return *this;
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}
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template<typename CharType, enable_if(is_char(CharType))>
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MacOsVersion& operator = ( const CharType* p) { return *this = LString8(p); }
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MacOsVersion(const MacOsVersion& other)
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{
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lastError = other.lastError;
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memcpy(versionsNumber, other.versionsNumber, sizeof(versionsNumber));
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}
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MacOsVersion& operator = ( const MacOsVersion& other)
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{
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lastError = other.lastError;
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memcpy(versionsNumber, other.versionsNumber, sizeof(versionsNumber));
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return *this;
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}
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bool match(const MacOsVersionPattern& pattern) const
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{
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// int nbMax = nbElemen() <= pattern.nbMaxElement ? nbMaxElement : pattern.nbMaxElement;
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int idx;
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for ( idx=0 ; idx < nbMaxElement && versionsNumber[idx] != -1 && pattern.elementAt(idx) != -1 ; idx++ ) {
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if ( pattern.elementAt(idx) == -2 ) continue;
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if ( versionsNumber[idx] == pattern.elementAt(idx) ) continue;
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return false;
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}
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if ( idx >= nbMaxElement ) return true; // the whole pattern was macthed => ok.
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if ( versionsNumber[idx] == -1 ) {
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// self is shorter than pattern
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if ( pattern.elementAt(idx) == -1 ) return true; // pattern and self are the same length, and they matched.
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if ( pattern.nbElement() == idx+1 && pattern.lastElement() == -2 ) return true;
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}else{
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// pattern is short then self
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if ( pattern.lastElement() == -2 ) return true;
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}
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return false;
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}
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bool operator ==(const MacOsVersion &other) const
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{
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for ( size_t idx=0 ; idx < nbMaxElement ; idx++ ) {
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if ( versionsNumber[idx] != other.elementAt(idx) ) return false;
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}
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return true;
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};
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bool operator !=(const MacOsVersion &other) const { return ! ( *this == other); }
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bool operator <(const MacOsVersion &other) const
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{
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for ( size_t idx=0 ; idx < nbMaxElement ; idx++ ) {
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if ( versionsNumber[idx] < other.elementAt(idx) ) return true;
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if ( versionsNumber[idx] > other.elementAt(idx) ) return false;
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}
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return false; // here, means it's equal
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};
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bool operator >=(const MacOsVersion &other) const { return ! ( *this < other); }
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bool operator >(const MacOsVersion &other) const
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{
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for ( size_t idx=0 ; idx < nbMaxElement ; idx++ ) {
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if ( versionsNumber[idx] > other.elementAt(idx) ) return true;
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if ( versionsNumber[idx] < other.elementAt(idx) ) return false;
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}
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return false; // here, means it's equal
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};
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bool operator <=(const MacOsVersion &other) const { return ! ( *this > other); }
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};
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extern MacOsVersion nullMacOsVersion;
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#endif // __MacOsVersion_H__
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