Need to compare certain elements of string - c++

Been working on this program which requires the use of a function that compares a string input by the user and gives the user the opportunity to leave the characters that he/she doesn't know out of the input, replacing them with * . The input represents a license-plate of a car that has 6 characters (for instance ABC123) and the user is allowed to leave any of those characters out (for instance AB** 23 or ** C12* etc.). So the function needs to return all objects that match the characters in the right position, but it cannot return if, say, A is in the right position but any of the other characters are not. The user is, however, allowed to only enter A* * * * *, for instance, and the function should return all objects that have A in the first position.
What I did was use a function to remove all the asterisks from the input string, then create sub-strings and send them to the function as a vector.
string removeAsterisk(string &rStr)// Function to remove asterisks from the string, if any.
{
stringstream strStream;
string delimiters = "*";
size_t current;
size_t next = -1;
do
{
current = next + 1;
next = rStr.find_first_of( delimiters, current );
strStream << rStr.substr( current, next - current ) << " ";
}
while (next != string::npos);
return strStream.str();
}
int main()
{
string newLicensePlateIn;
newLicensePlateIn = removeAsterisk(licensePlateIn);
string buf; // Have a buffer string
stringstream ss(newLicensePlateIn); // Insert the string into a stream
vector<string> tokens; // Create vector to hold our words
while (ss >> buf)
tokens.push_back(buf);
myRegister.showAllLicense(tokens);
}
The class function that receives the vector currently looks something like this:
void VehicleRegister::showAllLicense(vector<string>& tokens)//NOT FUNCTIONAL
{
cout << "\nShowing all matching vehicles: " << endl;
for (int i = 0; i < nrOfVehicles; i++)
{
if(tokens[i].compare(vehicles[i]->getLicensePlate()) == 0)
{
cout << vehicles[i]->toString() << endl;
}
}
}
If anyone understand what I'm trying to do and might have some ideas, please feel free to reply, I would appreciate any advice.
Thanks for reading this/ A.

Just iterate through the characters, comparing one at a time. If either character is an asterisk, consider that a match, otherwise compare them for equality. For example:
bool LicensePlateMatch(std::string const & lhs, std::string const & rhs)
{
assert(lhs.size() == 6);
assert(rhs.size() == 6);
for (int i=0; i<6; ++i)
{
if (lhs[i] == '*' || rhs[i] == '*')
continue;
if (lhs[i] != rhs[i])
return false;
}
return true;
}
Actually, you don't have to restrict it to 6 characters. You may want to allow for vanity plates. In that case, just ensure both strings have the same length, then iterate through all the character positions instead of hardcoding 6 in there.

Related

Recognize string formatting Debug Assertion

I have a runtime problem with code below.
The purpose is to "recognize" the formats (%s %d etc) within the input string.
To do this, it returns an integer that matches the data type.
Then the extracted types are manipulated/handled in other functions.
I want to clarify that my purpose isn't to write formatted types in a string (snprintf etc.) but only to recognize/extract them.
The problem is the crash of my application with error:
Debug Assertion Failed!
Program:
...ers\Alex\source\repos\TestProgram\Debug\test.exe
File: minkernel\crts\ucrt\appcrt\convert\isctype.cpp
Line: 36
Expression: c >= -1 && c <= 255
My code:
#include <iostream>
#include <cstring>
enum Formats
{
TYPE_INT,
TYPE_FLOAT,
TYPE_STRING,
TYPE_NUM
};
typedef struct Format
{
Formats Type;
char Name[5 + 1];
} SFormat;
SFormat FormatsInfo[TYPE_NUM] =
{
{TYPE_INT, "d"},
{TYPE_FLOAT, "f"},
{TYPE_STRING, "s"},
};
int GetFormatType(const char* formatName)
{
for (const auto& format : FormatsInfo)
{
if (strcmp(format.Name, formatName) == 0)
return format.Type;
}
return -1;
}
bool isValidFormat(const char* formatName)
{
for (const auto& format : FormatsInfo)
{
if (strcmp(format.Name, formatName) == 0)
return true;
}
return false;
}
bool isFindFormat(const char* strBufFormat, size_t stringSize, int& typeFormat)
{
bool foundFormat = false;
std::string stringFormat = "";
for (size_t pos = 0; pos < stringSize; pos++)
{
if (!isalpha(strBufFormat[pos]))
continue;
if (!isdigit(strBufFormat[pos]))
{
stringFormat += strBufFormat[pos];
if (isValidFormat(stringFormat.c_str()))
{
typeFormat = GetFormatType(stringFormat.c_str());
foundFormat = true;
}
}
}
return foundFormat;
}
int main()
{
std::string testString = "some test string with %d arguments"; // crash application
// std::string testString = "%d some test string with arguments"; // not crash application
size_t stringSize = testString.size();
char buf[1024 + 1];
memcpy(buf, testString.c_str(), stringSize);
buf[stringSize] = '\0';
for (size_t pos = 0; pos < stringSize; pos++)
{
if (buf[pos] == '%')
{
if (buf[pos + 1] == '%')
{
pos++;
continue;
}
else
{
char bufFormat[1024 + 1];
memcpy(bufFormat, buf + pos, stringSize);
bufFormat[stringSize] = '\0';
int typeFormat;
if (isFindFormat(bufFormat, stringSize, typeFormat))
{
std::cout << "type = " << typeFormat << "\n";
// ...
}
}
}
}
}
As I commented in the code, with the first string everything works. While with the second, the application crashes.
I also wanted to ask you is there a better/more performing way to recognize types "%d %s etc" within a string? (even not necessarily returning an int to recognize it).
Thanks.
Let's take a look at this else clause:
char bufFormat[1024 + 1];
memcpy(bufFormat, buf + pos, stringSize);
bufFormat[stringSize] = '\0';
The variable stringSize was initialized with the size of the original format string. Let's say it's 30 in this case.
Let's say you found the %d code at offset 20. You're going to copy 30 characters, starting at offset 20, into bufFormat. That means you're copying 20 characters past the end of the original string. You could possibly read off the end of the original buf, but that doesn't happen here because buf is large. The third line sets a NUL into the buffer at position 30, again past the end of the data, but your memcpy copied the NUL from buf into bufFormat, so that's where the string in bufFormat will end.
Now bufFormat contains the string "%d arguments." Inside isFindFormat you search for the first isalpha character. Possibly you meant isalnum here? Because we can only get to the isdigit line if the isalpha check passes, and if it's isalpha, it's not isdigit.
In any case, after isalpha passes, isdigit will definitely return false so we enter that if block. Your code will find the right type here. But, the loop doesn't terminate. Instead, it continues scanning up to stringSize characters, which is the stringSize from main, that is, the size of the original format string. But the string you're passing to isFindFormat only contains the part starting at '%'. So you're going to scan past the end of the string and read whatever's in the buffer, which will probably trigger the assertion error you're seeing.
Theres a lot more going on here. You're mixing and matching std::string and C strings; see if you can use std::string::substr instead of copying. You can use std::string::find to find characters in a string. If you have to use C strings, use strcpy instead of memcpy followed by the addition of a NUL.
You could just demand it to a regexp engine which bourned to search through strings
Since C++11 there's direct support, what you have to do is
#include <regex>
then you can match against strings using various methods, for instance regex_match which gives you the possibility, together with an smatch to find out your target with just few lines of codes using standard library
std::smatch sm;
std::regex_match ( testString.cbegin(), testString.cend(), sm, str_expr);
where str_exp is your regex to find what you want specifically
in the sm you have now every matched string against your regexp, which you can print in this way
for (int i = 0; i < sm.size(); ++i)
{
std::cout << "Match:" << sm[i] << std::endl;
}
EDIT:
to better express the result you would achieve i'll include a simple sample below
// target string to be searched against
string target_string = "simple example no.%d is: %s";
// pattern to look for
regex str_exp("(%[sd])");
// match object
smatch sm;
// iteratively search your pattern on the string, excluding parts of the string already matched
cout << "My format strings extracted:" << endl;
while (regex_search(target_string, sm, str_exp))
{
std::cout << sm[0] << std::endl;
target_string = sm.suffix();
}
you can easily add any format string you want modifying the str_exp regex expression.

Trying index characters in strings and create new strings

I'm currently making a quick Hangman game and I'm struggling to take the correctly guessed letters from the word and insert them into the string that I show the user as they play the game. This is my code so far:
std::string word_to_guess = "ataamataesaa";
std::string word_to_fill(word_to_guess.length(), '-');
char user_guess = 'a';
for (auto &character : word_to_guess) {
if (character == user_guess) {
std::size_t index = word_to_guess.find(&character);
word_to_fill[index] = user_guess;
}
}
std::cout << word_to_fill;
This almost works however it ignores the last two As of the string to guess which I cannot understand.
"Find" will return only the first occurrence.
Instead of iterating over characters, iterate simultaneously over the indexes of both word_to_guess and word_to_fill.
for (int i = 0 ; i < word_to_fill.length ; ++i) {
if (word_to_guess[i] == user_guess) {
word_to_fill[i] = user_guess;
}
}

Reading in. file from C++

Let's assume that I have the following file: wow.txt which reads
4 a 1 c
and what I want to do is I would like to output the following:
d 1 a 3
change the integer to the corresponding alphabet (d is 4th letter, a is 1st letter
in the alphabet), and alphabet letter to the corresponding integer
(a is 1st letter in the alphabet, c is the 3rd letter in the alphabet)
I started with the following code in C++.
int main()
{
ifstream inFile;
inFile.open("wow.txt");
ofstream outFile;
outFile.open("sample.txt");
int k, g;
char a, b;
inFile>>k>>a>>g>>b;
outFile<<(char)(k+96)<<(int)a-96<<(char)(g+96)<<(int)b-96
}
inFile.close();
outFile.close();
}
but then here, I could only do it because I knew that the text in wow.txt
goes integer, character, integer, character.
Also, even if I knew the pattern, if the text in wow.txt is super-long, then
there's no way I could've solved the problem using the method I used, manually
typing in each input (Defining k, g as integers, a, b as characters, and
then doing inFile>>k>>a>>g>>b;)
Also, I didn't know know the pattern, there's no way
I could've solved it. I was wondering if there's a C++
function that reads the input from the given text file and determines its type, so
that I could attack the this type of problem in the more general case.
I'm very new to C++ programming language (or programming in general),
so any help about this would be greatly appreciated.
The term you're searching for is parsing. It is the idea of taking in text and transforming it into something meaningful. Your C++ compiler, for example, does exactly that with your program's code -- it reads in text, parses it into a series of internal representations that it does transforms on, then outputs binary code that, when run, carries out the intent of the code you wrote.
In your case, you want to turn the problem on its head -- instead of telling the input stream what to expect next from the file, you simply extract everything as text, and then figure it out yourself (you let the stream tell you what's there). If you think about it, it's text (or rather, binary data, but close enough) all the way down anyway, even when you're asking for, say, an integer to be read from the stream -- the stream does the integer parsing for you in that case, but it's still just text being parsed.
Here's some example code (untested) to get you started:
std::ifstream fin("wow.txt");
// Read everything in (works well for short files; longer
// ones could be read incrementally (streamed), but this
// adds complexity
fin.seekg(0, fin.end);
std::size_t size = fin.tellg();
fin.seekg(0, fin.beg);
std::vector<char> text(size);
fin.read(&size[0], size);
fin.close();
// Now 'tokenize' the text (into words, in this case characters)
enum TokenType { Letter, Number };
struct Token {
const char* pos;
std::size_t length;
TokenType type;
};
std::vector<Token> tokens;
for (const char* pos = &text[0]; pos != &text[0] + text.size(); ++pos) {
if (*pos >= 'a' && *pos <= 'z') {
// Letter! (lowercase)
Token tok = { pos, 1, Letter };
tokens.push_back(tok);
// TODO: Validate that the next character is whitespace (or EOF)
}
else if (*pos >= '0' && *pos <= '9') {
Token tok = { pos, 1, Number };
while (*pos >= '0' && *pos <= '9') {
++pos;
++tok.length;
}
tokens.push_back(tok);
// TODO: Validate that the next character is whitespace (or EOF)
}
else if (*pos == ' ' || *pos == '\t' || *pos == '\r' || *pos == '\n') {
// Whitespace, skip
// Note that newlines are normally tracked in order to give
// the correct line number in error messages
}
else {
std::cerr << "Unexpected character "
<< *pos
<< " at position "
<< (pos - &text[0]) << std::endl;
}
}
// Now that we have tokens, we can transform them into the desired output
std::ofstream fout("sample.txt");
for (auto it = tokens.begin(); it != tokens.end(); ++it) {
if (it->type == Letter) {
fout << static_cast<int>(*(it->pos) - 'a') + 1;
}
else {
int num = 0;
for (int i = 0; i != tok.length; ++i) {
num = num * 10 + (tok.pos[i] - '0');
}
// TODO: Make sure number is within bounds
fout << static_cast<char>(num - 1 + 'a');
}
fout << ' ';
}
fout.close();

creating a string split function in C++ [duplicate]

This question already has answers here:
Closed 10 years ago.
Possible Duplicate:
Splitting a string in C++
Im trying to create a function that mimics the behavior of the getline() function, with the option to use a delimiter to split the string into tokens.
The function accepts 2 strings (the second is being passed by reference) and a char type for the delimiter. It loops through each character of the first string, copying it to the second string and stops looping when it reaches the delimiter. It returns true if the first string have more characters after the delimiter and false otherwise. The position of the last character is being saved in a static variable.
for some reason the the program is going into an infinite loop and is not executing anything:
const int LINE_SIZE = 160;
bool strSplit(string sFirst, string & sLast, char cDelim) {
static int iCount = 0;
for(int i = iCount; i < LINE_SIZE; i++) {
if(sFirst[i] != cDelim)
sLast[i-iCount] = sFirst[i];
else {
iCount = i+1;
return true;
}
}
return false;
}
The function is used in the following way:
while(strSplit(sLine, sToken, '|')) {
cout << sToken << endl;
}
Why is it going into an infinite loop, and why is it not working?
I should add that i'm interested in a solution without using istringstream, if that's possible.
It is not exactly what you asked for, but have you considered std::istringstream and std::getline?
// UNTESTED
std::istringstream iss(sLine);
while(std::getline(iss, sToken, '|')) {
std::cout << sToken << "\n";
}
EDIT:
Why is it going into an infinite loop, and why is it not working?
We can't know, you didn't provide enough information. Try to create an SSCCE and post that.
I can tell you that the following line is very suspicious:
sLast[i-iCount] = sFirst[i];
This line will result in undefined behavior (including, perhaps, what you have seen) in any of the following conditions:
i >= sFirst.size()
i-iCount >= sLast.size()
i-iCount < 0
It appears to me likely that all of those conditions are true. If the passed-in string is, for example, shorter than 160 lines, or if iCount ever grows to be bigger than the offset of the first delimiter, then you'll get undefined behavior.
LINE_SIZE is probably larger than the number of characters in the string object, so the code runs off the end of the string's storage, and pretty much anything can happen.
Instead of rolling your own, string::find does what you need.
std::string::size_type pos = 0;
std::string::size_type new_pos = sFirst.find('|', pos);
The call to find finds the first occurrence of '|' that's at or after the position 'pos'. If it succeeds, it returns the index of the '|' that it found. If it fails, it returns std::string::npos. Use it in a loop, and after each match, copy the text from [pos, new_pos) into the target string, and update pos to new_pos + 1.
are you sure it's the strSplit() function that doesn't return or is it your caller while loop that's infinite?
Shouldn't your caller loop be something like:
while(strSplit(sLine, sToken, '|')) {
cout << sToken << endl;
cin >> sLine >> endl;
}
-- edit --
if value of sLine is such that it makes strSplit() to return true then the while loop becomes infinite.. so do something to change the value of sLine for each iteration of the loop.. e.g. put in a cin..
Check this out
std::vector<std::string> spliString(const std::string &str,
const std::string &separator)
{
vector<string> ret;
string::size_type strLen = str.length();
char *buff;
char *pch;
buff = new char[strLen + 1];
buff[strLen] = '\0';
std::copy(str.begin(), str.end(), buff);
pch = strtok(buff, separator.c_str());
while(pch != NULL)
{
ret.push_back(string(pch));
pch = strtok(NULL, separator.c_str());
}
delete[] buff;
return ret;
}

Write a recursive function that reverses the input string

I've been reading the book C++ For Everyone and one of the exercises said to write a function string reverse(string str) where the return value is the reverse of str.
Can somebody write some basic code and explain it to me? I've been staring at this question since yesterday and can't figure it out. The furthest I've gotten is having the function return the first letter of str (Which I still don't know how it happened)
This is as far as I got (An hour after posting this question):
string reverse(string str)
{
string word = "";
if (str.length() <= 1)
{
return str;
}
else
{
string str_copy = str;
int n = str_copy.length() - 1;
string last_letter = str_copy.substr(n, 1);
str_copy = str_copy.substr(0, n);
word += reverse(str_copy);
return str_copy;
}
return word;
}
If I enter "Wolf", it returns Wol. Somebody help me out here
If I return word instead of return str_copy then I get a w
If I return last_letter then I get an l
I'll instead explain the recursive algorithm itself. Take the example "input" which should produce "tupni". You can reverse the string recursively by
If the string is empty or a single character, return it unchanged.
Otherwise,
Remove the first character.
Reverse the remaining string.
Add the first character above to the reversed string.
Return the new string.
Try this one
string reverse(string &s)
{
if( s.length() == 0 ) // end condtion to stop recursion
return "";
string last(1,s[s.length()-1]); // create string with last character
string reversed = reverse(s.substr(0,s.length()-1));
return last+reversed; // Make he last character first
}
A recursive function must have the following properties
It must call itself again
It must have a condition when the recursion ends. Otherwise you have a function which
will cause a stack overflow.
This recursive function does basically create a string of the last character and then call itself again with the rest of the string excluding the last character. The real switching happens at the last line where last+reversed is returned. If it would be the other way around nothing would happen.
It is very inefficient but it works to show the concept.
Just to suggest a better way of handling recursion:
String reversal using recursion in C++:
#include <iostream>
#include <string>
using namespace std;
string reverseStringRecursively(string str){
if (str.length() == 1) {
return str;
}else{
return reverseStringRecursively(str.substr(1,str.length())) + str.at(0);
}
}
int main()
{
string str;
cout<<"Enter the string to reverse : ";
cin>>str;
cout<<"The reversed string is : "<<reverseStringRecursively(str);
return 0;
}
I won't write a full-blown algorithm for you, but here's a hint:
How about swapping the two outermost characters, and then apply the same to the characters in the middle?
Oh, and if that book really proposed string reverse(string str) as an appropriate function signature for this, throw it away and buy a good book instead.
Here is my version of a recursive function that reverses the input string:
void reverse(char *s, size_t len)
{
if ( len <= 1 || !s )
{
return;
}
std::swap(s[0], s[len-1]);// swap first and last simbols
s++; // move pointer to the following char
reverse(s, len-2); // shorten len of string
}
Shortest and easiest
class Solution {
public:
string reverseString(string s) {
string str;
if(s != "\0"){
str = reverseString(s.substr(1, s.length()));
str += s.substr(0,1);
}
return str;
}
};
1-line recursive solution:
string RecursiveReverse(string str, string prev = "") {
return (str.length() == 0 ? prev : RecursiveReverse(str.substr(0, str.length()-1), prev += str[str.length()-1]));
}
You call it like this:
cout << RecursiveReverse("String to Reverse");
I know I shouldn't give a solution, but since no one mentioned this easy solution I though I should share it. I think the code literally is the algorithm so there is no need for a pseudo-code.
void c_plusplus_recursive_swap_reverse(std::string::iterator start,
std::string::iterator end)
{
if(start >= end) {
return;
}
std::iter_swap(start, end);
c_plusplus_recursive_swap_reverse(++start, --end);
}
To call it use:
c_plusplus_recursive_swap_reverse(temp.begin(), temp.end());
All existing solutions had way too much code that didn't really do anything, so, here's my take at it:
#include <iostream>
#include <string>
std::string
r(std::string s)
{
if (s.empty())
return s;
return r(s.substr(1)) + s[0];
}
int
main()
{
std::cout << r("testing") << std::endl;
}
P.S. I stumbled upon this question trying to find a C++ way for std::string of what s+1 for a char * in C is; without going the whole route of s.substr(1, s.length()-1), which looks too ugly. Turns out, there's std::string::npos, which means until the end of the string, and it's already the default value for the second argument, so, s.substr(1) is enough (plus, it also looks more efficient and on par with the simple s + 1 in C).
Note, however, that recursion in general doesn't scale as the input grows larger, unless the compiler is able to do what is known as tail-recursion optimisation. (Recursion is rarely relied upon in imperative languages.)
However, in order for the tail recursion optimisation to get activated, it is generally required that, (0), the recursion only happens within the return statement, and that, (1), no further operations are performed with the result of the recursive call back in the parent function.
E.g., in the case above, the + s[0] is logically done by the parent after the child call completes (and it probably would be so even if you go the more uglier s[s.length()-1] + route), so, it might as well prevent most compilers from doing a tail-recursion-optimisation, thus making the function very inefficient on large inputs (if not outright broken due to heap exhaustion).
(For what it's worth, I've tried writing a more tail-recursion-friendly solution (making sure to grow the return result through an argument to the function itself), but disassembly of the resulting binary seems to suggest that it's more involved than that in the imperative languages like C++, see gcc: is there no tail recursion if I return std::string in C++?.)
you can implement your own reverse similar to std::reverse.
template <typename BidirIt>
void reverse(BidirIt first, BidirIt last)
{
if((first == last) || (first == --last))
return;
std::iter_swap(first, last);
reverse(++first, last);
}
I did something like this, it did the reversal in place. I took two variables that traverse the string from two extreme end to the centre of the string and when they overlap or equal to each other then reversal terminates.
Take an example: input string str = "abcd" and call the function as
ReverseString(str,0,str.length()-1);
and increment/decrement the variable pointers recursively.
First the pointers points to 'a' and 'd' and swap them, then they point to 'b' and 'c' and swap them. Eventually i >= j which calls for the base case to be true and hence the recursion terminates. The main take away for this question is to pass input string as reference.
string ReverseString(string& str,int i,int j){
if(str.length() < 1 || str == "" || i >= j){
return "";
}
else{
char temp = str[i];
str[i] = str[j];
str[j] = temp;
ReverseString(str,i+1,j-1);
}
return str;
}
String can be reversed in-place. If we start from smallest possible string i.e. one character string, we don't need to do anything. This is where we stop or return from our recursive call and it becomes our base case.
Next, we have to think of a generic way to swap the smallest string i.e. two characters or more. Simplest logic is to swap the current character str[current_index] with character on the opposite side str[str_length-1 - current_index].
In the end, call the reverse function again for next index.
#include <iostream>
using namespace std;
void reverse_string(std::string& str, int index, int length) {
// Base case: if its a single element, no need to swap
// stop swapping as soon as we reach the mid, hence index*2
// otherwise we will reverse the already reversed string
if( (length - index*2) <= 1 ) {
return;
}
// Reverse logic and recursion:
// swap current and opposite index
std::swap(str[index], str[length-1 - index]);
// do the same for next character (index+1)
reverse_string(str, index+1, length);
}
int main() {
std::string s = "World";
reverse_string(s, 0, s.length());
std::cout << s << endl;
}
There are already some good answer but I want to add my approach with full working Recursive reversing string.
#include <iostream>
#include <string>
using namespace std;
char * reverse_s(char *, char*, int,int);
int main(int argc, char** argv) {
if(argc != 2) {
cout << "\n ERROR! Input String";
cout << "\n\t " << argv[0] << "STRING" << endl;
return 1;
}
char* str = new char[strlen(argv[1])+1];
strcpy(str,argv[1]);
char* rev_str = new char[strlen(str)+1];
cout<<"\n\nFinal Reverse of '" << str << "' is --> "<< reverse_s(str, rev_str, 0, strlen(str)) << endl;
cin.ignore();
delete rev_str, str;
return 0;
}
char* reverse_s(char* str, char* rev_str, int str_index, int rev_index ) {
if(strlen(str) == 1)
return str;
if(str[str_index] == '\0' ) {
rev_str[str_index] = '\0';
return rev_str;
}
str_index += 1;
rev_index -=1;
rev_str = reverse_s(str, rev_str, str_index, rev_index);
if(rev_index >= 0) {
cout << "\n Now the str value is " << str[str_index-1] << " -- Index " << str_in
dex << " Rev Index: " << rev_index;
rev_str[rev_index] = str[str_index-1];
cout << "\nReversed Value: " << rev_str << endl;
}
return rev_str;
}
void reverse(string &s, int &m) {
if (m == s.size()-1)
return;
int going_to = s.size() - 1 - m;
string leader = s.substr(1,going_to);
string rest = s.substr(going_to+1,s.size());
s = leader + s.substr(0,1) + rest;
reverse(s,++m);
}
int main ()
{
string y = "oprah";
int sz = 0;
reverse(y,sz);
cout << y << endl;
return 0;
}
void ClassName::strgRevese(char *str)
{
if (*str=='\0')
return;
else
strgRevese(str+1);
cout <<*str;
}
here is my 3 line string revers
std::string stringRevers(std::string s)
{
if(s.length()<=1)return s;
string word=s.at(s.length()-1)+stringRevers(s.substr(0,s.length()-1));//copy the last one at the beginning and do the same with the rest
return word;
}
The question is to write a recursive function. Here is one approach. Not a neat code, but does what is required.
/* string reversal through recursion */
#include <stdio.h>
#include <string.h>
#define size 1000
char rev(char []);
char new_line[size];
int j = 0;
int i =0;
int main ()
{
char string[]="Game On";
rev(string);
printf("Reversed rev string is %s\n",new_line);
return 0;
}
char rev(char line[])
{
while(line[i]!='\0')
{
i++;
rev(line);
i--;
new_line[j] = line[i];
j++;
return line[i];
}
return line[i];
}
It will reverse Original string recursively
void swap(string &str1, string &str2)
{
string temp = str1;
str1 = str2;
str2 = str1;
}
void ReverseOriginalString(string &str, int p, int sizeOfStr)
{
static int i = 0;
if (p == sizeOfStr)
return;
ReverseOriginalString(str, s + 1, sizeOfStr);
if (i <= p)
swap(&str[i++], &str[p])
}
int main()
{
string st = "Rizwan Haider";
ReverseOriginalString(st, 0, st.length());
std::cout << "Original String is Reversed: " << st << std::endl;
return 0;
}