Files
college-C/8/IdanLib.h
2022-02-25 15:33:16 +02:00

1190 lines
38 KiB
C

#include <stdio.h>
#define DAYS_IN_MONTH 30
#define MONTHS_IN_YEAR 12
#define ONE_HUNDRED 100
#define ONE_THOSEND 10000
#define BOOLEAN unsigned short
#define TRUE 1
#define FALSE 0
#define TEN 10
#define TWELVE 12
#define THIRTY 30
#define ZERO 0
#define ONE 1
#define TWO 2
#define THREE 3
#define FOUR 4
#define TAKE_SIGNED(x) (((2 * (x)) + 1) % 2)
#define ABS(x) (x) * (((2 * (x)) + 1) % 2)
#define MAX(x, y) (x > y) ? x : y
#define MIN(x, y) (x < y) ? x : y
//---------------------------------------------------------------------------------------
// ChangeYearsToMonths
// -------------------
//
// General : Change years to months.
//
// Parameters :
// years - number (short)
//
// Return value : years as month.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int ChangeYearsToMonths(short years)
{
int days = years * MONTHS_IN_YEAR;
return days;
}
//---------------------------------------------------------------------------------------
// ChangeMonthsToDays
// ------------------
//
// General : change months to days.
//
// Parameters :
// month - first number (short)
//
// Return value : month as days.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int ChangeMonthsToDays(short months)
{
int days = months * DAYS_IN_MONTH;
return days;
}
//---------------------------------------------------------------------------------------
// ChangeDateToDays
// ----------------
//
// General : change date to days (from ddmmyyyy).
//
// Parameters :
// date - first number (int)
//
// Return value : date as days.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int ChangeDateToDays(int date)
{
short years,
month;
int days;
years = date % ONE_THOSEND;
date /= ONE_THOSEND;
month = date % ONE_HUNDRED;
date /= ONE_HUNDRED;
days = date;
month += ChangeYearsToMonths(years);
days += ChangeMonthsToDays(month);
return days;
}
//---------------------------------------------------------------------------------------
// ChangeDaysToMonths
// ------------------
//
// General : Change days to months.
//
// Parameters :
// days - first number (int)
//
// Return value : Days as months.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int ChangeDaysToMonths(int days)
{
int months = days / DAYS_IN_MONTH;
return months;
}
//---------------------------------------------------------------------------------------
// ChangeMonthsToYears
// -------------------
//
// General : Change months to years.
//
// Parameters :
// month - first number (int)
//
// Return value : months as years.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int ChangeMonthsToYears(int months)
{
int years = months / MONTHS_IN_YEAR;
return years;
}
//---------------------------------------------------------------------------------------
// ChangeDaysToDate
// ----------------
//
// General : Change days to date (format: ddmmyyyy)
//
// Parameters :
// days - first number (int)
//
// Return value : days as date by format ddmmyyyy
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int ChangeDaysToDate(int days)
{
int date,
month = ChangeDaysToMonths(days),
years = ChangeMonthsToYears(month);
date = (days - (month * DAYS_IN_MONTH));
date *= ONE_HUNDRED;
date += (month - (years * MONTHS_IN_YEAR));
date *= ONE_THOSEND;
date += years;
return date;
}
//---------------------------------------------------------------------------------------
// DifferentDates
// ---------------
//
// General : Sub between two dates (ddmmyyyy).
//
// Parameters :
// date1 - first date (int)
// date2 - second date (int)
//
// Return value : the different between two dates.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int DifferentDates(int date1, int date2)
{
int new_date = ChangeDateToDays(date1) - ChangeDateToDays(date2);
new_date = ChangeDaysToDate(new_date);
return new_date;
}
//---------------------------------------------------------------------------------------
// EvenNumber
// ----------
//
// General : Check if the num is even
//
// Parameters :
// num - first num (int)
//
// Return value : 0 - FALSE, 0 - TRUE.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
BOOLEAN EvenNumber(int num)
{
BOOLEAN answer = !(num % TWO);
return (answer);
}
//---------------------------------------------------------------------------------------
// OppositeNumber
// --------------
//
// General : Change number order to Opposite. (123 -> 321)
//
// Parameters :
// num - first number (int)
//
// Return value : Number order opposite
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int OppositeNumber(int num)
{
int temp_num = num,
new_num = ZERO;
for (; temp_num; temp_num /= TEN)
{
new_num *= TEN;
new_num += temp_num % TEN;
}
return (new_num);
}
//---------------------------------------------------------------------------------------
// OddDigitsInNumber
// -----------------
//
// General : Take tne odd digits from number and component a
// new number
//
// Parameters :
// num - first number (int)
//
// Return value : A number that consists of odd numbers.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int OddDigitsInNumber(int num)
{
int temp = num,
new_num = ZERO;
short digit = ZERO;
for (; temp; temp /= TEN)
{
digit = temp % TEN;
if (!EvenNumber(digit))
{
new_num *= TEN;
new_num += digit;
}
}
return (new_num);
}
//---------------------------------------------------------------------------------------
// EvenDigitsInNumber
// ------------------
//
// General : Take tne even digits from number and component a
// new number
//
// Parameters :
// num - first number (int)
//
// Return value : A number that consists of even numbers.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int EvenDigitsInNumber(int num)
{
int temp = num,
new_num = ZERO;
short digit = ZERO;
for (; temp; temp /= TEN)
{
digit = temp % TEN;
if (EvenNumber(digit))
{
new_num *= TEN;
new_num += digit;
}
}
return (new_num);
}
//---------------------------------------------------------------------------------------
// SumOfNumberWithPositiveDigitsAndNumberWithNegativeDigits
// --------------------------------------------------------
//
// General : Sum Of Number With Positive Digits And Number With Negative Digits.
//
// Parameters :
// num - first number (int)
//
// Return value : Sum Of Number With Positive Digits And Number With Negative Digits.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int SumOfNumberWithPositiveDigitsAndNumberWithNegativeDigits(int num)
{
int temp_num = OppositeNumber(num);
int new_num = EvenDigitsInNumber(temp_num) +
OddDigitsInNumber(temp_num);
return (num);
}
//---------------------------------------------------------------------------------------
// Power
// -----
//
// General : Power on number.
//
// Parameters :
// num - first number (float)
// pow - first second (short)
//
// Return value : number powerd.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
double Power(float num, short pow)
{
double new_num = ONE;
short sign = ZERO;
for (sign = (TAKE_SIGNED(pow) * -ONE); pow; pow += sign)
{
new_num *= num;
}
new_num = (sign == -ONE) ? (new_num) : ((float)ONE / new_num);
return (new_num);
}
//---------------------------------------------------------------------------------------
// GetRest
// -------
//
// General : Get the rest from double number.
//
// Parameters :
// num - first number (double)
// count_digits - second number (unsigned short)
//
// Return value : The rest of a number like int.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
int GetRest(double num, unsigned short count_digits)
{
int tens = Power((float)TEN, count_digits);
return (int)(((int)(num * tens)) % tens);
}
//---------------------------------------------------------------------------------------
// CountDigits
// -----------
//
// General : COunt digit in number.
//
// Parameters :
// num - first number (int)
//
// Return value : Number of digits count in a number.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
unsigned short CountDigits(int num)
{
unsigned short count;
for (count = ZERO; num; num /= TEN, count++);
return (count);
}
//---------------------------------------------------------------------------------------
// ConvertBaseToDeciaml
// --------------------
//
// General : Convert a number from some base to base 10.
//
// Parameters :
// num - first number (float)
// base - second number (float)
// rest_size - third number (unsigned short)
//
// Return value : A number that converted from some base to number from base 10.
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 26.09.2019
//---------------------------------------------------------------------------------------
float ConvertBaseToDeciaml(float num, float base, unsigned short rest_size)
{
int temp_num = num;
float new_num = ZERO;
int rest = GetRest(num, (rest_size % TEN));
short pow;
float new_rest = ZERO;
float result = ZERO;
for (pow = ZERO; temp_num; temp_num /= TEN)
{
new_num += ((temp_num % TEN) * Power(base, pow));
pow++;
}
for (pow = (CountDigits(rest) * -ONE); rest; rest /= TEN)
{
new_rest += ((rest % TEN) * Power(base, pow));
pow++;
}
return new_num + new_rest;
}
//---------------------------------------------------------------------------------------
// Sum
// ---
//
// General : Sum of two numbers.
//
// Parameters :
// number1 - first number (double)
// number2 - second number (double)
//
// Return value : Sum of two numbers (double).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
double Sum(double number1, double number2)
{
double result = number1 + number2;
return (result);
}
//---------------------------------------------------------------------------------------
// SumOfDigitsNumber
// -----------------
//
// General : Sum digits of number.
//
// Parameters :
// number - first number (double)
//
// Return value : Sum digits of number (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
int SumOfDigitsNumber(double number)
{
int new_num = number * Power(TEN, 6);
int sum = 0;
for (; new_num; new_num /= TEN)
{
sum += new_num % TEN;
}
return (sum);
}
//---------------------------------------------------------------------------------------
// SumEvenDigits
// -------------
//
// General : Sum even digits of number.
//
// Parameters :
// number - first number (double)
//
// Return value : Sum even digits of number (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
int SumEvenDigits(double number)
{
int new_num = number * Power(TEN, 6);;
return (SumOfDigitsNumber(EvenDigitsInNumber(new_num)));
}
//---------------------------------------------------------------------------------------
// SumOddDigits
// ------------
//
// General : Sum odd digits of number.
//
// Parameters :
// number - first number (double)
//
// Return value : Sum odd digits of number (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
int SumOddDigits(double number)
{
int new_num = number * Power(TEN, 6);;
return (SumOfDigitsNumber(OddDigitsInNumber(new_num)));
}
//---------------------------------------------------------------------------------------
// CommonDigitsInTwoNumbers
// ------------------------
//
// General : Check if have common digits in two numbers.
//
// Parameters :
// number1 - first number (double)
// number2 - second number (double)
//
// Return value : If have common digits in two numbers (BOOLEAN).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN CommonDigitsInTwoNumbers(double number1, double number2)
{
int new_number1 = number1 * Power(10, 6);
int new_number2 = number2 * Power(10, 6);
short num1_digit;
BOOLEAN answer = FALSE;
for (num1_digit = new_number1 % TEN; new_number1 && !answer; new_number2 /= TEN)
{
if (new_number2)
{
new_number1 /= TEN;
num1_digit = new_number1 % TEN;
new_number2 = number2;
}
answer = (num1_digit == new_number2 % TEN) ? TRUE : FALSE;
}
return(answer);
}
//---------------------------------------------------------------------------------------
// Sqrt
// ----
//
// General : Math sqrt
//
// Parameters :
// number - number (double)
// root - root of sqrt, second number (short)
//
// Return value : Math sqrt on number (double).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
double Sqrt(double number, short root)
{
double max = number,
min = ZERO,
temp_min,
difference = ONE,
power_min;
while(number != Power(min, root))
{
difference = (max - min) / TWO;
temp_min = min + difference;
power_min = Power(temp_min, root);
number = ((float)temp_min == (float)min) ? power_min: number;
min = (power_min <= number) ? temp_min : min;
max = (power_min > number) ? temp_min : max;
}
return min;
}
//---------------------------------------------------------------------------------------
// PrimeNumber
// -----------
//
// General : Check if number is a prime number.
//
// Parameters :
// number - first number (int)
//
// Return value : If the number is a prime (BOOLEAN).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN PrimeNumber(int number)
{
BOOLEAN answer = TRUE;
short counter,
max = Sqrt(number, TWO) + ONE;
for (counter = TWO; counter < max; counter++)
{
answer *= (number % counter != ZERO) ? TRUE : FALSE;
}
return (answer);
}
double Module(double number, double div) // TODO : FIX IT
{
unsigned int count;
double temp_number = number;
for (count = ZERO; temp_number > div; temp_number -= div)
{
count++;
}
return (temp_number);
}
//---------------------------------------------------------------------------------------
// DigitInNumber
// -------------
//
// General : Check if digit in the number.
//
// Parameters :
// number - first number (double)
// digit - second number (unsigned short)
//
// Return value : If the the digit exists in the number (BOOLEAN).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN DigitInNumber(double number, unsigned short digit)
{
int new_num = (number * 6) + GetRest(number, 6);
BOOLEAN answer = FALSE;
for (; new_num && !answer; new_num /= TEN)
{
answer = (new_num % 10 == digit);
}
return (answer);
}
//---------------------------------------------------------------------------------------
// ConcatenationNumbers
// --------------------
//
// General : Concatenation two numbers to one number.
//
// Parameters :
// number1 - first number (short)
// number2 - second number (short)
//
// Return value : Number with two number (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
int ConcatenationNumbers(short number1, short number2)
{
int new_number = number1;
new_number *= Power(TEN, CountDigits(number2));
new_number += number2;
return (new_number);
}
int Multiplication(short number1, short multiply) // TODO : FIX IT
{
int new_number = ZERO;
for (; multiply > ZERO; multiply--)
{
new_number += number1;
}
return (new_number);
}
//---------------------------------------------------------------------------------------
// GetDenominator
// ---------------
//
// General : Calculates the denominator of a number with a decimal point.
//
// Parameters :
// number - first number (double)
//
// Return value : Denominator (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
int GetDenominator(double number)
{
int denominator;
double temp_number = number;
for (denominator = ONE ; (float)((short)temp_number != (float)temp_number);
temp_number += number)
{
denominator++;
}
return (denominator);
}
//---------------------------------------------------------------------------------------
// GetCounter
// ----------
//
// General : Calculates the numerator of a number with a decimal point.
//
// Parameters :
// number - first number (double)
//
// Return value : Counter (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
short GetCounter(double number)
{
double temp_number = number;
while ((float)((short)temp_number) != (float)temp_number)
{
temp_number += number;
}
return (temp_number);
}
double Divide(double number, double div) // TODO : FIX IT
{
double count_high,
temp_number = number;
for (count_high = ZERO; temp_number >= div; temp_number -= div)
{
count_high++;
}
return (count_high);
}
double MultiplicationFractions(float number1, float number2) // TODO : FIX IT
{
short number1_counter = GetCounter(number1),
number2_counter = GetCounter(number2),
number1_denominator = GetDenominator(number1),
number2_denominator = GetDenominator(number2),
final_counter,
final_denominator;
double result;
printf("%hd\n%hd\n%hd\n%hd\n", number1_counter, number1_denominator, number2_counter, number2_denominator);
final_counter = Multiplication(number1_counter, number2_counter);
final_denominator = Multiplication(number1_denominator, number2_denominator);
result = Divide(final_counter, final_denominator);
return (result);
}
double MultiplicationFloat(float number1, float multiply) // TODO : FIX IT
{
double new_number = ZERO,
temp_number1;
for (; multiply -ONE > ZERO; multiply--)
{
new_number += number1;
}
temp_number1 = number1 - new_number;
new_number += MultiplicationFractions(temp_number1, multiply);
//new_number += Divide(number1, Divide(ONE, multiply));
return (new_number);
}
//---------------------------------------------------------------------------------------
// SumInArray
// ----------
//
// General : Checks if there are two numbers whose sum is equal to
// the number entered as "sum".
//
// Parameters :
// array[] - array (int)
// size - array size (unsigned int)
// sum - The amount required (int)
//
// Return value : Counter (int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN SumInArray(int array[], unsigned int size, int sum)
{
BOOLEAN answer = FALSE;
unsigned int temp_size = size,
count;
double temp_sum;
for (count = ZERO; count < temp_size && !answer;)
{
temp_sum = array[count] + array[temp_size];
answer = (temp_sum == sum) ? TRUE : FALSE;
count += (temp_sum < sum) ? ONE : ZERO;
temp_size -= (temp_sum > sum) ? ONE : ZERO;
}
return (answer);
}
//---------------------------------------------------------------------------------------
// ChangeBool
// ----------
//
// General : Boolean variable inverse.
//
// Parameters :
// bool1 - Boolean variable (BOOLEAN)
//
// Return value : Boolean variable (BOOLEAN).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN ChangeBool(BOOLEAN bool1)
{
BOOLEAN answer = ++bool1 % TWO;
return answer;
}
//---------------------------------------------------------------------------------------
// Equality
// --------
//
// General : Checks whether two numbers are equal in value.
//
// Parameters :
// number1 - first number (int)
// number2 - second number (int)
//
// Return value : If there is an equality between the two numbers (BOOLEAN).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN Equality(int number1, int number2)
{
int sub = number1 - number2;
BOOLEAN answer = (ONE / (ABS(sub) + ONE));
return answer;
}
//---------------------------------------------------------------------------------------
// NumBBiggerThenNumA
// ------------------
//
// General : Checks if the second number (B) is greater than the first number (A).
//
// Parameters :
// number1 - first number (int)
// number2 - second number (int)
//
// Return value : If the second number (B) is greater than the first number (A) (BOOLEAN).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN NumBBiggerThenNumA(int a, int b)
{
int sub = a - b + ONE;
BOOLEAN answer = (ONE / (ABS(sub) + (sub) + ONE));
return answer;
}
//---------------------------------------------------------------------------------------
// SumOfTimesCharsArray1InCharsArray2
// ----------------------------------
//
// General : Checks the number of times the first array values are in the
// second array in the appropriate order.
//
// Parameters :
// array1[] - first array (char[])
// array1_size - size of array1 (unsigned int)
// array2[] - second array (char[])
// array2_size - size of array2 (unsigned int)
//
// Return value : The number of times the first array is in the
// second array (unsigned int).
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
unsigned int SumOfTimesCharsArray1InCharsArray2(char array1[],
unsigned int array1_size,
char array2[],
unsigned int array2_size)
{
unsigned int count = ZERO,
is_in = TRUE,
count_loop_array1,
count_loop_array2;
for (count_loop_array2 = ZERO; count_loop_array2 < array2_size; count_loop_array2++)
{
for (count_loop_array1 = ZERO;
count_loop_array1 < array1_size && is_in; count_loop_array1++)
{
is_in *= Equality(array1[count_loop_array1],
array2[count_loop_array2 + count_loop_array1]);
}
count += is_in;
}
return (count);
}
//---------------------------------------------------------------------------------------
// CreateMask
// ----------
//
// General : Creates a number with identical digits.
//
// Parameters :
// size - digits count of number (unsigned short)
// digit_of_mask - type of digits (unsigned short)
//
// Return value : A number that all the digits are the same (unsigned int)
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
unsigned int CreateMask(unsigned short size, unsigned short digit_of_mask)
{
unsigned int mask = digit_of_mask;
unsigned short counter;
for (counter = ONE; counter < size; counter++)
{
mask *= TEN;
mask += digit_of_mask;
}
return mask;
}
//---------------------------------------------------------------------------------------
// CountADigitInNumber
// -------------------
//
// General : Count the number of times her story appears in number.
//
// Parameters :
// number - a number (int)
// digit - a digit (unsigned short)
//
// Return value : The number of times the number appears in the number (unsigned short)
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
unsigned short CountADigitInNumber(int number, unsigned short digit)
{
int temp_num = number;
unsigned count = FALSE;
for (; temp_num; temp_num /= TEN)
{
count += Equality(temp_num % TEN, digit);
}
return (count);
}
//---------------------------------------------------------------------------------------
// GetDigit
// --------
//
// General : Takes the digit from the required location.
//
// Parameters :
// number - a number (int)
// location - index of digit (unsigned short)
//
// Return value : The number that is in the number where you want it (short)
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
short GetDigit(int number, unsigned short location)
{
int temp_num = number;
unsigned short digit;
for (; location; location--)
{
temp_num /= TEN;
}
digit = temp_num % TEN;
return (digit);
}
//---------------------------------------------------------------------------------------
// CountOfIdenticalDigitsInSomeIndex
// ---------------------------------
//
// General : Count the number of times there are identical digits between
// two numbers and in the same location.
//
// Parameters :
// number1 - first number (int)
// number2 - second number (int)
//
// Return value : The number of times there are identical
// digits between two numbers and in the same location (unsigned short)
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
unsigned short CountOfIdenticalDigitsInSomeIndex(int number1, int number2)
{
int temp_num1,
temp_num2;
unsigned short count = ZERO;
for (temp_num1 = MIN(number1, number2), temp_num2 = MAX(number1, number2);
temp_num1;
temp_num1 /= TEN, temp_num2 /= TEN)
{
count += Equality(temp_num1 % TEN, temp_num2 % TEN);
}
return (count);
}
//---------------------------------------------------------------------------------------
// CountOfIdenticalDigits
// ----------------------
//
// General : Count the number of times there are identical digits
// between two numbers.
//
// Parameters :
// number1 - first number (int)
// number2 - second number (int)
//
// Return value : The number of times there are identical digits
// between two numbers (unsigned short)
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
unsigned short CountOfIdenticalDigits(int number1, int number2)
{
int temp_num1,
temp_num2;
unsigned short count = ZERO,
digit_num1;
for (temp_num1 = number1; temp_num1; temp_num1 /= TEN)
{
digit_num1 = temp_num1 % TEN;
for (temp_num2 = number2; temp_num2; temp_num2 /= TEN)
{
count += Equality(digit_num1, temp_num2 % TEN);
}
temp_num2 = number2;
}
return (count);
}
//---------------------------------------------------------------------------------------
// ForeignDigits
// -------------
//
// General : Checks whether all digits are foreign to each other by number.
//
// Parameters :
// number - first number (int)
//
// Return value : If all the numbers are foreign to each other in number (BOOLEAN)
//
//---------------------------------------------------------------------------------------
// Programmer : Cohen Idan
// Student No : None
// Date : 21.10.2019
//---------------------------------------------------------------------------------------
BOOLEAN ForeignDigits(int number)
{
int temp_num = number;
BOOLEAN answer = TRUE;
for (; temp_num; temp_num /= TEN)
{
answer *= NumBBiggerThenNumA(CountADigitInNumber(temp_num, temp_num % TEN), TWO);
}
return (answer);
}