pvjc20/du4/program.c

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5.3 KiB
C
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2020-04-02 21:26:14 +00:00
#include<stdio.h>
#include<stdlib.h>
#include<string.h>
#include<stdbool.h>
#include<ctype.h>
#define SCAN_FIRST_NUMBER 0
#define SCAN_FIRST_OPERATOR 1
#define SCAN_SECOND_NUMBER 2
#define SCAN_SECOND_OPERATOR 3
#define SCAN_RESULT 4
// #define SCAN_END 5
char* scanValue(char *s, float *output);
char* scanOperator(char *s, char *output);
// bool isDigit(char c);
bool isOperator(char c);
// bool isFloatingPoint(char c);
// bool isWhitespace(char c);
bool isNewline(char c);
bool evaluate(float a, float b, float c, char op);
void error();
int main(){
char buffer[2048];
// char str[512];
float a;
float b;
float c;
char operator;
char *retVal = fgets (buffer, sizeof(buffer), stdin);
if (retVal == 0 || isNewline(buffer[0]) == true) {
puts("KONIEC");
return 0;
}
int l = strlen(buffer);
if (isNewline(buffer[l - 1]) == false) {
error();
return 0;
}
int scanStatus = SCAN_FIRST_NUMBER;
char *currentChar = buffer;
char *endChar = buffer + l - 1;
// for (char *i = 0; i < l; i++) {
// // int forward = 0;
// char currentChar = buffer[i];
// if (i == l - 1 && isNewline(currentChar) == false) {
// }
// }
while (currentChar < endChar) {
if (scanStatus == SCAN_FIRST_NUMBER) {
retVal = scanValue(currentChar, &a);
} else if (scanStatus == SCAN_FIRST_OPERATOR) {
retVal = scanOperator(currentChar, &operator);
} else if (scanStatus == SCAN_SECOND_NUMBER) {
retVal = scanValue(currentChar, &b);
} else if (scanStatus == SCAN_SECOND_OPERATOR) {
char eqOp;
retVal = scanOperator(currentChar, &eqOp);
if (eqOp != '=') {
retVal = 0;
}
} else if (scanStatus == SCAN_RESULT) {
retVal = scanValue(currentChar, &c);
} else {
error();
break;
}
if (retVal == 0) {
error();
break;
} else if (scanStatus == SCAN_RESULT) {
bool validResult = evaluate(a, b, c, operator);
if (validResult == true) {
puts("OK");
} else {
puts("ZLE");
}
break;
}
currentChar = retVal;
scanStatus++;
}
return 0;
}
char* scanValue(char *s, float *output) {
char *retVal = 0;
*output = strtof(s, &retVal);
if (retVal == 0 || retVal == s || ((*output) == 0 && *(retVal - 1) != '0')) {
return 0;
}
return retVal;
// int outPosition = 0;
// int l = strlen(s);
// bool hasPoint = false;
// for (int i = 0; i < l - 1; i++) {
// char c = s[i];
// char cNext = s[i+1];
// bool isError = (outPosition == 0 && isDigit(c) == false)
// || (outPosition > 0 && (
// (hasPoint == true && isFloatingPoint(c))
// || (hasPoint == false && isFloatingPoint(c) == true && isDigit(cNext) == false)
// || (isDigit(c) == true && (
// (hasPoint == true && isOperator(cNext) == false && isWhitespace(cNext) == false && isNewline(cNext) == false)
// || (hasPoint == false && isOperator(cNext) == false && isWhitespace(cNext) == false && isNewline(cNext) == false && isFloatingPoint(cNext) == false))
// )
// || (hasPoint == true && isDigit(c) == false)
// || (hasPoint == false && isFloatingPoint(c) == false && isDigit(c) == false)
// ));
// if (isError == true) {
// return 0;
// }
// if (isFloatingPoint(c)) {
// hasPoint = true;
// outPosition++;
// continue;
// }
// bool endsHere = isOperator(cNext) == true || isWhitespace(cNext) == true || isNewline(cNext) == true;
// if (endsHere == true) {
// break;
// }
// outPosition++;
// }
// if (outPosition > 0) {
// *output = strtof(s, s + outPosition - 1);
// }
// return outPosition;
}
char* scanOperator(char *s, char *output) {
char *start = s;
while (isspace(*start) != 0) {
start++;
}
char c = *start;
if (isOperator(c) == false) {
return 0;
}
(*output) = c;
return start + 1;
}
// bool isDigit(char c) {
// return c >= '0' && c <= '9';
// }
bool isOperator(char c) {
return c == '+' || c == '-' || c == '*' || c == '/' || c == '=';
}
// bool isFloatingPoint(char c) {
// return c == '.' || c == ',';
// }
// bool isWhitespace(char c) {
// return c == ' ' || c == '\t';
// }
bool isNewline(char c) {
return c == '\n';
}
bool evaluate(float a, float b, float c, char op) {
float resultL = c - 0.001F;
float resultR = c + 0.001F;
float result;
switch (op)
{
case '+':
result = a + b;
break;
case '-':
result = a - b;
break;
case '*':
result = a * b;
break;
case '/':
result = a / b;
break;
default:
error();
return false;
}
return result == c || (result >= resultL && result <= resultR);
}
void error() {
puts("CHYBA");
}