C_CPP/04_UDEF/MP/main_04_UDEF_e.cpp

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// file main_04_UDEF_e.cpp
#include <iostream>
#include <algorithm>
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const int bitsPerOctet = 8;
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struct BinaryOctet {
public:
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bool evenParity; // set to true if number of '1' in bitsAsDigits is even, false otherwise
char bitsAsDigits[bitsPerOctet]{}; // bit values as chars
BinaryOctet();
BinaryOctet(int x);
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BinaryOctet(const BinaryOctet &) = default;
BinaryOctet &operator=(int const &a);
const BinaryOctet operator--(int);
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const BinaryOctet operator+(BinaryOctet a);
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};
BinaryOctet::BinaryOctet() {
for (char &bitsAsDigit : bitsAsDigits) {
bitsAsDigit = '0';
}
evenParity = true;
}
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BinaryOctet::BinaryOctet(int x) {
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for (int i = 0; i <= bitsPerOctet - 1; i++) {
int tmp = ((x >> i) & 1);
bitsAsDigits[i] = (tmp == 1) ? '1' : '0';
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}
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//FIXME: das sollte eigentlich nicht benötigt werden
std::reverse(std::begin(bitsAsDigits), std::end(bitsAsDigits));
//einsen zählen
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int i = 0;
for (char c : bitsAsDigits) {
if (c == '1') i++;
}
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evenParity = i % 2 == 0;
}
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bool operator!=(BinaryOctet a, BinaryOctet b) {
if (a.evenParity != b.evenParity) return false;
for (int i = 0; i < bitsPerOctet; ++i) {
if (a.bitsAsDigits[i] != b.bitsAsDigits[i]) return false;
}
return true;
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}
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//TODO: this method
const BinaryOctet BinaryOctet::operator--(const int) {
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bool over = false;
for(int i = bitsPerOctet - 1; i >= 0; --i) {
int tmp = bitsAsDigits[i] - '0';
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bitsAsDigits[i] = static_cast<char>(tmp + '0');
}
return *this;
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}
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const BinaryOctet BinaryOctet::operator+(BinaryOctet a) {
BinaryOctet result;
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bool over = false;
for (int i = bitsPerOctet - 1; i >= 0; --i) {
//Arbeitsvariablen anlegen und char in int umwandeln für einfachere Rechnung
int tmp;
int aI = a.bitsAsDigits[i] - '0';
int bI = bitsAsDigits[i] - '0';
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if(over) tmp = aI + bI + 1;
else tmp = aI + bI;
over = false;
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if(tmp >= 2) {
over = true;
if (tmp % 2 == 0) tmp = 0;
else tmp = 1;
}
//Umwandlung in char und ins Ergebnis schreiben
result.bitsAsDigits[i] = static_cast<char>(tmp + '0');
}
return result;
}
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BinaryOctet operator/(BinaryOctet a, BinaryOctet b) {
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BinaryOctet result;
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return result;
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}
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BinaryOctet &BinaryOctet::operator=(int const &a) {
std::string tmp = std::to_string(a);
for (int i = 0; i >= tmp.length(); i++) {
bitsAsDigits[i] = tmp[i];
}
return *this;
}
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BinaryOctet doCalculation(BinaryOctet a, BinaryOctet b) {
BinaryOctet result;
for (; a != b; b--) {
a = a + 1;
a = a / b;
}
result = a + b;
return result;
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}
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// for println();
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std::string as_string(BinaryOctet a) {
std::string result = "(";
for (char c : a.bitsAsDigits) {
result += c;
}
result += ")";
return result;
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}
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std::string as_string(BinaryOctet *a) {
std::string result = "(";
for (char c : a->bitsAsDigits) {
result += c;
}
result += ")";
return result;
}
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// for std::cout
std::ostream &operator<<(std::ostream &os, const BinaryOctet &toBePrinted) {
os << as_string(toBePrinted);
return os;
}
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std::ostream &operator<<(std::ostream &os, BinaryOctet *toBePrinted) {
os << as_string(toBePrinted);
return os;
}
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int main(int argc, char **argv) {
BinaryOctet a = 0b00001111;
std::cout << a << std::endl;
BinaryOctet b = 0b00000110;
std::cout << b << std::endl;
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b--;
std::cout << b << std::endl;
auto *c = new BinaryOctet(5);
std::cout << c << std::endl;
std::cout << a + b << std::endl;
std::cout << "result = " << doCalculation(a, b) << std::endl;
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return 0;
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}