vcpkg/toolsrc/src/vcpkg_Strings.cpp

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#include "vcpkg_Strings.h"
#include <cstdarg>
#include <algorithm>
#include <codecvt>
#include <iterator>
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#include <functional>
#include <cctype>
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namespace vcpkg::Strings::details
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{
// To disambiguate between two overloads
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static const auto isspace = [](const char c)
{
return std::isspace(c);
};
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std::string format_internal(const char* fmtstr, ...)
{
va_list lst;
va_start(lst, fmtstr);
auto sz = _vscprintf(fmtstr, lst);
std::string output(sz, '\0');
_vsnprintf_s(&output[0], output.size() + 1, output.size() + 1, fmtstr, lst);
va_end(lst);
return output;
}
std::wstring wformat_internal(const wchar_t* fmtstr, ...)
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{
va_list lst;
va_start(lst, fmtstr);
auto sz = _vscwprintf(fmtstr, lst);
std::wstring output(sz, '\0');
_vsnwprintf_s(&output[0], output.size() + 1, output.size() + 1, fmtstr, lst);
va_end(lst);
return output;
}
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}
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namespace vcpkg::Strings
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{
std::wstring utf8_to_utf16(const std::string& s)
{
std::wstring_convert<std::codecvt_utf8_utf16<wchar_t>, wchar_t> conversion;
return conversion.from_bytes(s);
}
std::string utf16_to_utf8(const std::wstring& w)
{
std::wstring_convert<std::codecvt_utf8_utf16<wchar_t>, wchar_t> conversion;
return conversion.to_bytes(w);
}
std::string::const_iterator case_insensitive_ascii_find(const std::string& s, const std::string& pattern)
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{
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std::string pattern_as_lower_case;
std::transform(pattern.begin(), pattern.end(), back_inserter(pattern_as_lower_case), tolower);
return search(s.begin(), s.end(), pattern_as_lower_case.begin(), pattern_as_lower_case.end(), [](const char a, const char b)
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{
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return tolower(a) == b;
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});
}
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std::string ascii_to_lowercase(const std::string& input)
{
std::string output = input;
std::transform(output.begin(), output.end(), output.begin(), ::tolower);
return output;
}
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std::string join(const std::vector<std::string>& v, const std::string& delimiter)
{
if (v.empty())
{
return std::string();
}
std::string output;
size_t size = v.size();
output.append(v.at(0));
for (size_t i = 1; i < size; ++i)
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{
output.append(delimiter);
output.append(v.at(i));
}
return output;
}
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void trim(std::string* s)
{
s->erase(std::find_if_not(s->rbegin(), s->rend(), details::isspace).base(), s->end());
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s->erase(s->begin(), std::find_if_not(s->begin(), s->end(), details::isspace));
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}
std::string trimmed(const std::string& s)
{
auto whitespace_back = std::find_if_not(s.rbegin(), s.rend(), details::isspace).base();
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auto whitespace_front = std::find_if_not(s.begin(), whitespace_back, details::isspace);
return std::string(whitespace_front, whitespace_back);
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}
void trim_all_and_remove_whitespace_strings(std::vector<std::string>* strings)
{
for (std::string& s : *strings)
{
trim(&s);
}
strings->erase(std::remove_if(strings->begin(), strings->end(), [](const std::string& s)-> bool
{
return s == "";
}), strings->end());
}
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std::vector<std::string> split(const std::string& s, const std::string& delimiter)
{
std::vector<std::string> output;
size_t i = 0;
size_t pos = s.find(delimiter);
while (pos != std::string::npos)
{
output.push_back(s.substr(i, pos - i));
i = ++pos;
pos = s.find(delimiter, pos);
if (pos == std::string::npos && i != s.length()) // The second check is so no items are added if there is nothing after the last delimiter
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{
output.push_back(s.substr(i, s.length()));
}
}
return output;
}
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}