C++ 如何迭代字符串中的单词?

C++ 如何迭代字符串中的单词?,c++,string,split,C++,String,Split,我试图迭代字符串中的单词 可以假定字符串由空格分隔的单词组成 请注意,我对C字符串函数或那种字符操作/访问不感兴趣。另外,请在你的回答中优先考虑优雅而不是效率 我现在拥有的最佳解决方案是: #include <iostream> #include <sstream> #include <string> using namespace std; int main() { string s = "Somewhere down the road";

我试图迭代字符串中的单词

可以假定字符串由空格分隔的单词组成

请注意,我对C字符串函数或那种字符操作/访问不感兴趣。另外,请在你的回答中优先考虑优雅而不是效率

我现在拥有的最佳解决方案是:

#include <iostream>
#include <sstream>
#include <string>

using namespace std;

int main()
{
    string s = "Somewhere down the road";
    istringstream iss(s);

    do
    {
        string subs;
        iss >> subs;
        cout << "Substring: " << subs << endl;
    } while (iss);
}
#包括
#包括
#包括
使用名称空间std;
int main()
{
string s=“沿路的某个地方”;
istringstream iss(s);
做
{
串接头;
iss>>潜艇;

coutSTL还没有这样的方法

但是,您可以通过使用成员使用C的函数,也可以编写自己的函数。下面是我在快速谷歌搜索后发现的一个代码示例(“STL字符串拆分”):

void标记化(常量字符串和str,
向量和代币,
常量字符串和分隔符=”)
{
//跳过开头的分隔符。
字符串::size\u type lastPos=str.find\u first\u not\u of(分隔符,0);
//查找第一个“非分隔符”。
字符串::size\u type pos=str.find\u first\u of(分隔符,lastPos);
while(string::npos!=pos | | string::npos!=lastPos)
{
//找到一个标记,将其添加到向量。
回推(str.substr(lastPos,pos-lastPos));
//跳过分隔符。请注意“not_of”
lastPos=str.find_first_not_of(分隔符,pos);
//查找下一个“非分隔符”
pos=str.find_first_of(分隔符,lastPos);
}
}
摘自:

如果您对代码示例有疑问,请留下评论,我将解释


仅仅因为它没有实现称为迭代器的
typedef
或重载
,STL就没有这样的方法可用

但是,您可以通过使用成员使用C的函数,也可以编写自己的函数。下面是我在快速谷歌搜索后发现的一个代码示例(“STL字符串拆分”):

void标记化(常量字符串和str,
向量和代币,
常量字符串和分隔符=”)
{
//跳过开头的分隔符。
字符串::size\u type lastPos=str.find\u first\u not\u of(分隔符,0);
//查找第一个“非分隔符”。
字符串::size\u type pos=str.find\u first\u of(分隔符,lastPos);
while(string::npos!=pos | | string::npos!=lastPos)
{
//找到一个标记,将其添加到向量。
回推(str.substr(lastPos,pos-lastPos));
//跳过分隔符。请注意“not_of”
lastPos=str.find_first_not_of(分隔符,pos);
//查找下一个“非分隔符”
pos=str.find_first_of(分隔符,lastPos);
}
}
摘自:

如果您对代码示例有疑问,请留下评论,我将解释


因为它没有实现名为迭代器的
typedef
,也没有重载
,所以这是我最喜欢的字符串迭代方式。你可以对每个单词做任何你想做的事情

string line = "a line of text to iterate through";
string word;

istringstream iss(line, istringstream::in);

while( iss >> word )     
{
    // Do something on `word` here...
}

这是我最喜欢的遍历字符串的方法。每个单词你可以做任何你想做的事情

string line = "a line of text to iterate through";
string word;

istringstream iss(line, istringstream::in);

while( iss >> word )     
{
    // Do something on `word` here...
}

使用
std::stringstream
可以很好地工作,并且完全按照您的要求执行。但是,如果您只是在寻找不同的执行方式,您可以使用/and

下面是一个例子:

#include <iostream>
#include <string>

int main()
{
    std::string s("Somewhere down the road");
    std::string::size_type prev_pos = 0, pos = 0;

    while( (pos = s.find(' ', pos)) != std::string::npos )
    {
        std::string substring( s.substr(prev_pos, pos-prev_pos) );

        std::cout << substring << '\n';

        prev_pos = ++pos;
    }

    std::string substring( s.substr(prev_pos, pos-prev_pos) ); // Last word
    std::cout << substring << '\n';

    return 0;
}
#包括
#包括
int main()
{
std::string s(“在路上的某个地方”);
std::string::size\u type prev\u pos=0,pos=0;
while((pos=s.find(“”,pos))!=std::string::npos)
{
std::字符串子字符串(s.substr(prev_pos,pos-prev_pos));

std::cout使用
std::stringstream
可以很好地工作,并且完全按照您的要求进行操作。如果您只是在寻找不同的操作方式,您可以使用/和

下面是一个例子:

#include <iostream>
#include <string>

int main()
{
    std::string s("Somewhere down the road");
    std::string::size_type prev_pos = 0, pos = 0;

    while( (pos = s.find(' ', pos)) != std::string::npos )
    {
        std::string substring( s.substr(prev_pos, pos-prev_pos) );

        std::cout << substring << '\n';

        prev_pos = ++pos;
    }

    std::string substring( s.substr(prev_pos, pos-prev_pos) ); // Last word
    std::cout << substring << '\n';

    return 0;
}
#包括
#包括
int main()
{
std::string s(“在路上的某个地方”);
std::string::size\u type prev\u pos=0,pos=0;
while((pos=s.find(“”,pos))!=std::string::npos)
{
std::字符串子字符串(s.substr(prev_pos,pos-prev_pos));

std::cout我喜欢以下内容,因为它将结果放入向量中,支持字符串作为delim,并控制保留空值

#include <ostream>
#include <string>
#include <vector>
#include <algorithm>
#include <iterator>
using namespace std;

vector<string> split(const string& s, const string& delim, const bool keep_empty = true) {
    vector<string> result;
    if (delim.empty()) {
        result.push_back(s);
        return result;
    }
    string::const_iterator substart = s.begin(), subend;
    while (true) {
        subend = search(substart, s.end(), delim.begin(), delim.end());
        string temp(substart, subend);
        if (keep_empty || !temp.empty()) {
            result.push_back(temp);
        }
        if (subend == s.end()) {
            break;
        }
        substart = subend + delim.size();
    }
    return result;
}

int main() {
    const vector<string> words = split("So close no matter how far", " ");
    copy(words.begin(), words.end(), ostream_iterator<string>(cout, "\n"));
}
#包括
#包括
#包括

#include部分是这样工作的。如果说“空白”,你真的是指任何类型的空白,使用Boost的split和
is_any_of()
效果很好。

我喜欢以下内容,因为它将结果放入向量,支持字符串作为delim,并控制保留空值。但是,它看起来没有那么好

#include <ostream>
#include <string>
#include <vector>
#include <algorithm>
#include <iterator>
using namespace std;

vector<string> split(const string& s, const string& delim, const bool keep_empty = true) {
    vector<string> result;
    if (delim.empty()) {
        result.push_back(s);
        return result;
    }
    string::const_iterator substart = s.begin(), subend;
    while (true) {
        subend = search(substart, s.end(), delim.begin(), delim.end());
        string temp(substart, subend);
        if (keep_empty || !temp.empty()) {
            result.push_back(temp);
        }
        if (subend == s.end()) {
            break;
        }
        substart = subend + delim.size();
    }
    return result;
}

int main() {
    const vector<string> words = split("So close no matter how far", " ");
    copy(words.begin(), words.end(), ostream_iterator<string>(cout, "\n"));
}
#包括
#包括
#包括

#include部分是这样工作的。如果说“空白”,你真的是指任何类型的空白,使用Boost的split和
is\u any\u of()
非常有效。

这类似于StackOverflow问题

#包括
#包括
#包括
使用名称空间std;
使用名称空间boost;
int main(int argc,字符**argv)
{
string text=“令牌测试\t字符串”;
字符分隔符sep(“\t”);
标记器标记(文本,sep);
for(常量字符串&t:标记)
{

cout这类似于StackOverflow问题

#包括
#包括
#包括
使用名称空间std;
使用名称空间boost;
int main(int argc,字符**argv)
{
string text=“令牌测试\t字符串”;
字符分隔符sep(“\t”);
标记器标记(文本,sep);
for(常量字符串&t:标记)
{

cout我使用它通过分隔符分割字符串。第一个将结果放入预先构造的向量中,第二个返回一个新向量

#包括
#包括
#包括
#包括
模板
void split(常量std::string&s、char delim、Out结果){
标准:istringstream iss;
std::字符串项;
while(std::getline(iss、item、delim)){
*结果+
#include <iostream>
#include <string>
#include <sstream>
#include <algorithm>
#include <iterator>

int main() {
    using namespace std;
    string sentence = "And I feel fine...";
    istringstream iss(sentence);
    copy(istream_iterator<string>(iss),
         istream_iterator<string>(),
         ostream_iterator<string>(cout, "\n"));
}
vector<string> tokens;
copy(istream_iterator<string>(iss),
     istream_iterator<string>(),
     back_inserter(tokens));
vector<string> tokens{istream_iterator<string>{iss},
                      istream_iterator<string>{}};
template < class ContainerT >
void tokenize(const std::string& str, ContainerT& tokens,
              const std::string& delimiters = " ", bool trimEmpty = false)
{
   std::string::size_type pos, lastPos = 0, length = str.length();

   using value_type = typename ContainerT::value_type;
   using size_type  = typename ContainerT::size_type;

   while(lastPos < length + 1)
   {
      pos = str.find_first_of(delimiters, lastPos);
      if(pos == std::string::npos)
      {
         pos = length;
      }

      if(pos != lastPos || !trimEmpty)
         tokens.push_back(value_type(str.data()+lastPos,
               (size_type)pos-lastPos ));

      lastPos = pos + 1;
   }
}
void split_string(string text,vector<string>& words)
{
  int i=0;
  char ch;
  string word;

  while(ch=text[i++])
  {
    if (isspace(ch))
    {
      if (!word.empty())
      {
        words.push_back(word);
      }
      word = "";
    }
    else
    {
      word += ch;
    }
  }
  if (!word.empty())
  {
    words.push_back(word);
  }
}
template<typename Operator>
void tokenize(Operator& op, const char* input, const char* delimiters) {
  const char* s = input;
  const char* e = s;
  while (*e != 0) {
    e = s;
    while (*e != 0 && strchr(delimiters, *e) == 0) ++e;
    if (e - s > 0) {
      op(s, e - s);
    }
    s = e + 1;
  }
}
template<class ContainerType>
class Appender {
public:
  Appender(ContainerType& container) : container_(container) {;}
  void operator() (const char* s, unsigned length) { 
    container_.push_back(std::string(s,length));
  }
private:
  ContainerType& container_;
};

std::vector<std::string> strVector;
Appender v(strVector);
tokenize(v, "A number of words to be tokenized", " \t");
class WordCounter {
public:
  WordCounter() : noOfWords(0) {}
  void operator() (const char*, unsigned) {
    ++noOfWords;
  }
  unsigned noOfWords;
};

WordCounter wc;
tokenize(wc, "A number of words to be counted", " \t"); 
ASSERT( wc.noOfWords == 7 );
#include<string>
using namespace std;

vector<string> split(char* str,const char* delim)
{
    char* saveptr;
    char* token = strtok_r(str,delim,&saveptr);

    vector<string> result;

    while(token != NULL)
    {
        result.push_back(token);
        token = strtok_r(NULL,delim,&saveptr);
    }
    return result;
}
static void Split(std::vector<std::string>& lst, const std::string& input, const std::string& separators, bool remove_empty = true)
{
    std::ostringstream word;
    for (size_t n = 0; n < input.size(); ++n)
    {
        if (std::string::npos == separators.find(input[n]))
            word << input[n];
        else
        {
            if (!word.str().empty() || !remove_empty)
                lst.push_back(word.str());
            word.str("");
        }
    }
    if (!word.str().empty() || !remove_empty)
        lst.push_back(word.str());
}
#include <vector>
#include <string>
#include <sstream>

int main()
{
    std::string str("Split me by whitespaces");
    std::string buf;                 // Have a buffer string
    std::stringstream ss(str);       // Insert the string into a stream

    std::vector<std::string> tokens; // Create vector to hold our words

    while (ss >> buf)
        tokens.push_back(buf);

    return 0;
}
#include <iostream>
#include <vector>
#include <boost/algorithm/string.hpp>

template<typename _OutputIterator>
inline void split(
    const std::string& str, 
    const std::string& delim, 
    _OutputIterator result)
{
    using namespace boost::algorithm;
    typedef split_iterator<std::string::const_iterator> It;

    for(It iter=make_split_iterator(str, first_finder(delim, is_equal()));
            iter!=It();
            ++iter)
    {
        *(result++) = boost::copy_range<std::string>(*iter);
    }
}

int main(int argc, char* argv[])
{
    using namespace std;

    vector<string> splitted;
    split("HelloFOOworldFOO!", "FOO", back_inserter(splitted));

    // or directly to console, for example
    split("HelloFOOworldFOO!", "FOO", ostream_iterator<string>(cout, "\n"));
    return 0;
}
#include <iostream>
#include <string>
#include <boost/regex.hpp>

int main() {
    std::string line("A:::line::to:split");
    const boost::regex re(":+"); // one or more colons

    // -1 means find inverse matches aka split
    boost::sregex_token_iterator tokens(line.begin(),line.end(),re,-1);
    boost::sregex_token_iterator end;

    for (; tokens != end; ++tokens)
        std::cout << *tokens << std::endl;
}
#include <string>
#include <vector>

using namespace std;

vector<string> split(string str, const char delim) {
    vector<string> v;
    string tmp;

    for(string::const_iterator i; i = str.begin(); i <= str.end(); ++i) {
        if(*i != delim && i != str.end()) {
            tmp += *i; 
        } else {
            v.push_back(tmp);
            tmp = ""; 
        }   
    }   

    return v;
}
string s = "Name:JAck; Spouse:Susan; ...";
string dummy, name, spouse;

istringstream iss(s);
getline(iss, dummy, ':');
getline(iss, name, ';');
getline(iss, dummy, ':');
getline(iss, spouse, ';')
std::vector<std::string> split(const std::string &text, char sep) {
  std::vector<std::string> tokens;
  std::size_t start = 0, end = 0;
  while ((end = text.find(sep, start)) != std::string::npos) {
    tokens.push_back(text.substr(start, end - start));
    start = end + 1;
  }
  tokens.push_back(text.substr(start));
  return tokens;
}
std::vector<std::string> split(const std::string &text, char sep) {
    std::vector<std::string> tokens;
    std::size_t start = 0, end = 0;
    while ((end = text.find(sep, start)) != std::string::npos) {
        if (end != start) {
          tokens.push_back(text.substr(start, end - start));
        }
        start = end + 1;
    }
    if (end != start) {
       tokens.push_back(text.substr(start));
    }
    return tokens;
}
std::vector<std::string> split(const std::string& text, const std::string& delims)
{
    std::vector<std::string> tokens;
    std::size_t start = text.find_first_not_of(delims), end = 0;

    while((end = text.find_first_of(delims, start)) != std::string::npos)
    {
        tokens.push_back(text.substr(start, end - start));
        start = text.find_first_not_of(delims, end);
    }
    if(start != std::string::npos)
        tokens.push_back(text.substr(start));

    return tokens;
}
#include <string>
#include <list>
#include <locale> // std::isupper

template<class String>
const std::list<String> split_camel_case_string(const String &s)
{
    std::list<String> R;
    String w;

    for (String::const_iterator i = s.begin(); i < s.end(); ++i) {  {
        if (std::isupper(*i)) {
            if (w.length()) {
                R.push_back(w);
                w.clear();
            }
        }
        w += *i;
    }

    if (w.length())
        R.push_back(w);
    return R;
}
template<typename T>
vector<T> 
split(const T & str, const T & delimiters) {
    vector<T> v;
    typename T::size_type start = 0;
    auto pos = str.find_first_of(delimiters, start);
    while(pos != T::npos) {
        if(pos != start) // ignore empty tokens
            v.emplace_back(str, start, pos - start);
        start = pos + 1;
        pos = str.find_first_of(delimiters, start);
    }
    if(start < str.length()) // ignore trailing delimiter
        v.emplace_back(str, start, str.length() - start); // add what's left of the string
    return v;
}
    vector<string> v = split<string>("Hello, there; World", ";,");
    vector<wstring> v = split<wstring>(L"Hello, there; World", L";,");
#include <vector>
#include <iostream>
#include <string.h>

using namespace std;

class StringSplit
{
private:
    void copy_fragment(char*, char*, char*);
    void copy_fragment(char*, char*, char);
    bool match_fragment(char*, char*, int);
    int untilnextdelim(char*, char);
    int untilnextdelim(char*, char*);
    void assimilate(char*, char);
    void assimilate(char*, char*);
    bool string_contains(char*, char*);
    long calc_string_size(char*);
    void copy_string(char*, char*);

public:
    vector<char*> split_cstr(char);
    vector<char*> split_cstr(char*);
    vector<string> split_string(char);
    vector<string> split_string(char*);
    char* String;
    bool do_string;
    bool keep_empty;
    vector<char*> Container;
    vector<string> ContainerS;

    StringSplit(char * in)
    {
        String = in;
    }

    StringSplit(string in)
    {
        size_t len = calc_string_size((char*)in.c_str());
        String = new char[len + 1];
        memset(String, 0, len + 1);
        copy_string(String, (char*)in.c_str());
        do_string = true;
    }

    ~StringSplit()
    {
        for (int i = 0; i < Container.size(); i++)
        {
            if (Container[i] != NULL)
            {
                delete[] Container[i];
            }
        }
        if (do_string)
        {
            delete[] String;
        }
    }
};
#include <string.h>
#include <iostream>
#include <vector>
#include "StringSplit.hpp"

using namespace std;

void StringSplit::assimilate(char*src, char delim)
{
    int until = untilnextdelim(src, delim);
    if (until > 0)
    {
        char * temp = new char[until + 1];
        memset(temp, 0, until + 1);
        copy_fragment(temp, src, delim);
        if (keep_empty || *temp != 0)
        {
            if (!do_string)
            {
                Container.push_back(temp);
            }
            else
            {
                string x = temp;
                ContainerS.push_back(x);
            }

        }
        else
        {
            delete[] temp;
        }
    }
}

void StringSplit::assimilate(char*src, char* delim)
{
    int until = untilnextdelim(src, delim);
    if (until > 0)
    {
        char * temp = new char[until + 1];
        memset(temp, 0, until + 1);
        copy_fragment(temp, src, delim);
        if (keep_empty || *temp != 0)
        {
            if (!do_string)
            {
                Container.push_back(temp);
            }
            else
            {
                string x = temp;
                ContainerS.push_back(x);
            }
        }
        else
        {
            delete[] temp;
        }
    }
}

long StringSplit::calc_string_size(char* _in)
{
    long i = 0;
    while (*_in++)
    {
        i++;
    }
    return i;
}

bool StringSplit::string_contains(char* haystack, char* needle)
{
    size_t len = calc_string_size(needle);
    size_t lenh = calc_string_size(haystack);
    while (lenh--)
    {
        if (match_fragment(haystack + lenh, needle, len))
        {
            return true;
        }
    }
    return false;
}

bool StringSplit::match_fragment(char* _src, char* cmp, int len)
{
    while (len--)
    {
        if (*(_src + len) != *(cmp + len))
        {
            return false;
        }
    }
    return true;
}

int StringSplit::untilnextdelim(char* _in, char delim)
{
    size_t len = calc_string_size(_in);
    if (*_in == delim)
    {
        _in += 1;
        return len - 1;
    }

    int c = 0;
    while (*(_in + c) != delim && c < len)
    {
        c++;
    }

    return c;
}

int StringSplit::untilnextdelim(char* _in, char* delim)
{
    int s = calc_string_size(delim);
    int c = 1 + s;

    if (!string_contains(_in, delim))
    {
        return calc_string_size(_in);
    }
    else if (match_fragment(_in, delim, s))
    {
        _in += s;
        return calc_string_size(_in);
    }

    while (!match_fragment(_in + c, delim, s))
    {
        c++;
    }

    return c;
}

void StringSplit::copy_fragment(char* dest, char* src, char delim)
{
    if (*src == delim)
    {
        src++;
    }

    int c = 0;
    while (*(src + c) != delim && *(src + c))
    {
        *(dest + c) = *(src + c);
        c++;
    }
    *(dest + c) = 0;
}

void StringSplit::copy_string(char* dest, char* src)
{
    int i = 0;
    while (*(src + i))
    {
        *(dest + i) = *(src + i);
        i++;
    }
}

void StringSplit::copy_fragment(char* dest, char* src, char* delim)
{
    size_t len = calc_string_size(delim);
    size_t lens = calc_string_size(src);

    if (match_fragment(src, delim, len))
    {
        src += len;
        lens -= len;
    }

    int c = 0;
    while (!match_fragment(src + c, delim, len) && (c < lens))
    {
        *(dest + c) = *(src + c);
        c++;
    }
    *(dest + c) = 0;
}

vector<char*> StringSplit::split_cstr(char Delimiter)
{
    int i = 0;
    while (*String)
    {
        if (*String != Delimiter && i == 0)
        {
            assimilate(String, Delimiter);
        }
        if (*String == Delimiter)
        {
            assimilate(String, Delimiter);
        }
        i++;
        String++;
    }

    String -= i;
    delete[] String;

    return Container;
}

vector<string> StringSplit::split_string(char Delimiter)
{
    do_string = true;

    int i = 0;
    while (*String)
    {
        if (*String != Delimiter && i == 0)
        {
            assimilate(String, Delimiter);
        }
        if (*String == Delimiter)
        {
            assimilate(String, Delimiter);
        }
        i++;
        String++;
    }

    String -= i;
    delete[] String;

    return ContainerS;
}

vector<char*> StringSplit::split_cstr(char* Delimiter)
{
    int i = 0;
    size_t LenDelim = calc_string_size(Delimiter);

    while(*String)
    {
        if (!match_fragment(String, Delimiter, LenDelim) && i == 0)
        {
            assimilate(String, Delimiter);
        }
        if (match_fragment(String, Delimiter, LenDelim))
        {
            assimilate(String,Delimiter);
        }
        i++;
        String++;
    }

    String -= i;
    delete[] String;

    return Container;
}

vector<string> StringSplit::split_string(char* Delimiter)
{
    do_string = true;
    int i = 0;
    size_t LenDelim = calc_string_size(Delimiter);

    while (*String)
    {
        if (!match_fragment(String, Delimiter, LenDelim) && i == 0)
        {
            assimilate(String, Delimiter);
        }
        if (match_fragment(String, Delimiter, LenDelim))
        {
            assimilate(String, Delimiter);
        }
        i++;
        String++;
    }

    String -= i;
    delete[] String;

    return ContainerS;
}
int main(int argc, char*argv[])
{
    StringSplit ss = "This:CUT:is:CUT:an:CUT:example:CUT:cstring";
    vector<char*> Split = ss.split_cstr(":CUT:");

    for (int i = 0; i < Split.size(); i++)
    {
        cout << Split[i] << endl;
    }

    return 0;
}
int main(int argc, char*argv[])
{
    StringSplit ss = "This:is:an:example:cstring";
    vector<char*> Split = ss.split_cstr(':');

    for (int i = 0; i < Split.size(); i++)
    {
        cout << Split[i] << endl;
    }

    return 0;
}

int main(int argc, char*argv[])
{
    string mystring = "This[SPLIT]is[SPLIT]an[SPLIT]example[SPLIT]string";
    StringSplit ss = mystring;
    vector<string> Split = ss.split_string("[SPLIT]");

    for (int i = 0; i < Split.size(); i++)
    {
        cout << Split[i] << endl;
    }

    return 0;
}

int main(int argc, char*argv[])
{
    string mystring = "This|is|an|example|string";
    StringSplit ss = mystring;
    vector<string> Split = ss.split_string('|');

    for (int i = 0; i < Split.size(); i++)
    {
        cout << Split[i] << endl;
    }

    return 0;
}
StringSplit ss = mystring;
ss.keep_empty = true;
vector<string> Split = ss.split_string(":DELIM:");
String[] Split = 
    "Hey:cut:what's:cut:your:cut:name?".Split(new[]{":cut:"}, StringSplitOptions.None);

foreach(String X in Split)
{
    Console.Write(X);
}
char sep = ' ';
std::string s="1 This is an example";

for(size_t p=0, q=0; p!=s.npos; p=q)
  std::cout << s.substr(p+(p!=0), (q=s.find(sep, p+1))-p-(p!=0)) << std::endl;
#include <regex.h>
#include <string.h>
#include <vector.h>

using namespace std;

vector<string> split(string s){
    regex r ("\\w+"); //regex matches whole words, (greedy, so no fragment words)
    regex_iterator<string::iterator> rit ( s.begin(), s.end(), r );
    regex_iterator<string::iterator> rend; //iterators to iterate thru words
    vector<string> result<regex_iterator>(rit, rend);
    return result;  //iterates through the matches to fill the vector
}
#include <iostream>
#include <vector>
#include <string>
#include <strtk.hpp>

const char *whitespace  = " \t\r\n\f";
const char *whitespace_and_punctuation  = " \t\r\n\f;,=";

int main()
{
    {   // normal parsing of a string into a vector of strings
        std::string s("Somewhere down the road");
        std::vector<std::string> result;
        if( strtk::parse( s, whitespace, result ) )
        {
            for(size_t i = 0; i < result.size(); ++i )
                std::cout << result[i] << std::endl;
        }
    }

    {  // parsing a string into a vector of floats with other separators
        // besides spaces

        std::string s("3.0, 3.14; 4.0");
        std::vector<float> values;
        if( strtk::parse( s, whitespace_and_punctuation, values ) )
        {
            for(size_t i = 0; i < values.size(); ++i )
                std::cout << values[i] << std::endl;
        }
    }

    {  // parsing a string into specific variables

        std::string s("angle = 45; radius = 9.9");
        std::string w1, w2;
        float v1, v2;
        if( strtk::parse( s, whitespace_and_punctuation, w1, v1, w2, v2) )
        {
            std::cout << "word " << w1 << ", value " << v1 << std::endl;
            std::cout << "word " << w2 << ", value " << v2 << std::endl;
        }
    }

    return 0;
}
#include <regex>
#include <string>
#include <vector>

std::vector<string> Tokenize( const string str, const std::regex regex )
{
    using namespace std;

    std::vector<string> result;

    sregex_token_iterator it( str.begin(), str.end(), regex, -1 );
    sregex_token_iterator reg_end;

    for ( ; it != reg_end; ++it ) {
        if ( !it->str().empty() ) //token could be empty:check
            result.emplace_back( it->str() );
    }

    return result;
}
std::vector<string> TokenizeDefault( const string str )
{
    using namespace std;

    regex re( "[\\s,]+" );

    return Tokenize( str, re );
}
#include <vector>
#include <string>
using namespace std;

vector<string> split(string data, string token)
{
    vector<string> output;
    size_t pos = string::npos; // size_t to avoid improbable overflow
    do
    {
        pos = data.find(token);
        output.push_back(data.substr(0, pos));
        if (string::npos != pos)
            data = data.substr(pos + token.size());
    } while (string::npos != pos);
    return output;
}
auto a = split("this!!is!!!example!string", "!!");
this
is
!example!string
#include <boost/algorithm/string.hpp>
std::vector<std::string> strs;
boost::split(strs, "string to split", boost::is_any_of("\t "));
#include <iostream>
#include <string>
#include <string_view>
#include "range/v3/view.hpp"
#include "range/v3/algorithm.hpp"

int main() {
    std::string s = "Somewhere down the range v3 library";
    ranges::for_each(s  
        |   ranges::view::split(' ')
        |   ranges::view::transform([](auto &&sub) {
                return std::string_view(&*sub.begin(), ranges::distance(sub));
            }),
        [](auto s) {std::cout << "Substring: " << s << "\n";}
    );
}
#include <iostream>
#include <string>
#include <string_view>
#include "range/v3/view.hpp"

int main()
{
    std::string str = "Somewhere down the range v3 library";
    for (auto s : str | ranges::view::split(' ')
                      | ranges::view::transform([](auto&& sub) { return std::string_view(&*sub.begin(), ranges::distance(sub)); }
                      ))
    {
        std::cout << "Substring: " << s << "\n";
    }
}