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buckwalter_conversions.cpp
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#include "rdi_buckwalter_conversions.h"
#include <iostream>
#include <vector>
#include <algorithm>
#include <assert.h>
#include <omp.h>
#include "rdi_buckwalter_transliteration.h"
#include <clocale>
using namespace std;
namespace RDI
{
namespace RDIInternal
{
template <typename T>
bool within_vector(T element, const vector<T> v)
{
auto iterator = std::find (begin(v), end(v), element);
if (iterator != end(v))
return true;
return false;
}
char convert_wspace_to_space(const wchar_t space)
{
assert ( within_vector(space, wspaces) );
return wspace_to_space.at(space);
}
wchar_t convert_space_to_wspace(const char space)
{
assert ( within_vector(space, char_spaces) );
return space_to_wspace.at(space);
}
/// the index is passed by reference because we need to move it to after the unknown characters.
string handle_unknown_char(const wstring &input, size_t &index)
{
assert(index < input.size());
string output;
if (index > 0 && !iswspace(input[index - 1]))
output += " ";
output += "!";// ((! ==<UNK>))
for(; index < input.size(); index++)
{
if(iswspace(input[index]) || within_vector(input[index], _arabic_letters_without_tashkeel))
{
break;
}
}
if (!iswspace(input[index]) && index == input.size() - 1)
output += " ";
index--;
return output;
}
/*
*return one unkown to backwalter "!" and save the opposite countinuous non-arabic chars
*/
string handle_unknown_char(const wstring &input, size_t &index,wstring& continuous_unkowns)
{
assert(index < input.size());
string output;
continuous_unkowns = L"";
output += "!";// ((! ==<UNK>))
for(; index < input.size(); index++)
{
if(iswspace(input[index]) || within_vector(input[index], _arabic_letters_without_tashkeel))
{
break;
}
else
{
continuous_unkowns+=input[index];
}
}
index--;
return output;
}
string handle_spaces(const wstring &input, size_t &index,wstring& continuous_spaces)
{
assert(index < input.size());
string output;
continuous_spaces = L"";
output += " ";// ((! ==<UNK>))
for(; index < input.size(); index++)
{
if(!iswspace(input[index]))
{
break;
}
else
{
continuous_spaces+=input[index];
}
}
index--;
return output;
}
wstring internal_convert_buckwalter_to_arabic(string buckwlater, bool tashkeel)
{
std::setlocale(LC_ALL, "en_US.UTF8"); // needed by the isspace and iswspace functions
wstring arabic;
map<int, wstring> index_arabic;
#pragma omp parallel
{
wstring private_arabic;
int last_index = 0;
#pragma omp for
for (size_t i = 0; i < buckwlater.size(); i++)
{
if (isspace(buckwlater[i]))
{
private_arabic += convert_space_to_wspace(buckwlater[i]);
}
else if (within_vector(buckwlater[i],
tashkeel ? buckwalter_letters_with_tashkeel :
buckwalter_letters_without_tashkeel))
{
private_arabic += buckwalter_to_arabic.at(buckwlater[i]);
}
else if(buckwlater[i]=='!')// '!' == <UNK>
{
private_arabic += L"<UNK>";
}
last_index = i;
}
#pragma omp critical
{
if(private_arabic != L"") // if this condition does not exist some kind of race condition happens
// We don't know why it works this way but it works...
{
index_arabic[last_index] = private_arabic;
}
}
}
for (auto element : index_arabic)
arabic += element.second;
return arabic;
}
wstring internal_convert_buckwalter_to_arabic(string buckwlater, bool tashkeel,const std::vector<wstring>& orignal_unknowns,
const std::vector<wstring>& orignal_wspaces)
{
std::setlocale(LC_ALL, "en_US.UTF8"); // needed by the isspace and iswspace functions
wstring arabic;
int unk_index = 0;
int wspace_index = 0;
for (size_t i = 0; i < buckwlater.size(); i++)
{
if (isspace(buckwlater[i]))
{
arabic += orignal_wspaces[wspace_index++];
}
else if (within_vector(buckwlater[i],
tashkeel ? buckwalter_letters_with_tashkeel :
buckwalter_letters_without_tashkeel))
{
arabic += buckwalter_to_arabic.at(buckwlater[i]);
}
else if(buckwlater[i]=='!')// '!' == <UNK>
{
arabic += orignal_unknowns[unk_index++];
}
}
return arabic;
}
} // namespace RDIInternal
using namespace RDIInternal;
wstring convert_buckwalter_to_arabic(string buckwlater)
{
return internal_convert_buckwalter_to_arabic(buckwlater, true);
}
wstring convert_buckwalter_to_arabic(string buckwlater,const std::vector<wstring>&orignal_unknowns,const std::vector<wstring>& orignal_wspaces)
{
return internal_convert_buckwalter_to_arabic(buckwlater, true,orignal_unknowns,orignal_wspaces);
}
wstring convert_buckwalter_to_arabic_no_tashkeel(string buckwlater)
{
return internal_convert_buckwalter_to_arabic(buckwlater, false);
}
string convert_buckwalter_to_buckwalter_without_tashkeel(string buckwalter)
{
std::setlocale(LC_ALL, "en_US.UTF8"); //needed by the isspace and iswspace functions
string output;
for (size_t i = 0; i < buckwalter.size(); i++)
{
if (iswspace(buckwalter[i]))
{
output += buckwalter[i];
}
else if (within_vector(buckwalter[i], buckwalter_letters_without_tashkeel))
{
output += buckwalter[i];
}
else if(buckwalter[i]=='!') // '!' == <UNK>
{
output += buckwalter[i];
}
}
return output;
}
wstring convert_arabic_to_arabic_without_tashkeel(wstring arabic_with_tashkeel)
{
std::setlocale(LC_ALL, "en_US.UTF8"); //needed by the isspace and iswspace functions
wstring output;
map<int, wstring> index_arabic;
#pragma omp parallel
{
wstring private_output;
int last_index = 0;
#pragma omp for
for (size_t i = 0; i < arabic_with_tashkeel.size(); i++)
{
if (iswspace(arabic_with_tashkeel[i]) ||
within_vector(arabic_with_tashkeel[i], _arabic_letters_without_tashkeel))
{
private_output += arabic_with_tashkeel[i];
}
last_index = i;
}
#pragma omp critical
{
if(private_output != L"") // if this condition does not exist some kind of race condition happens
// We don't know why it works this way but it works...
{
index_arabic[last_index] = private_output;
}
}
}
for (auto element : index_arabic)
output += element.second;
return output;
}
string convert_arabic_to_buckwalter_remove_unknown(wstring arabic)
{
std::setlocale(LC_ALL, "en_US.UTF8"); //needed by the isspace and iswspace functions
string buckwalter;
for (size_t i = 0; i < arabic.size(); i++)
{
if (iswspace(arabic[i]))
{
buckwalter += convert_wspace_to_space(arabic[i]);
}
else if (within_vector(arabic[i], _arabic_letters_with_tashkeel))
{
buckwalter += arabic_to_buckwalter.at(arabic[i]);
}
}
return buckwalter;
}
string convert_arabic_to_buckwalter(wstring arabic)
{
std::setlocale(LC_ALL, "en_US.UTF8"); //needed by the isspace and iswspace functions
string buckwalter;
for (size_t i = 0; i < arabic.size(); i++)
{
if (iswspace(arabic[i]))
{
buckwalter += convert_wspace_to_space(arabic[i]);
}
else if (within_vector(arabic[i], _arabic_letters_with_tashkeel))
{
buckwalter += arabic_to_buckwalter.at(arabic[i]);
}
else
{
buckwalter += handle_unknown_char(arabic, i);
}
}
return buckwalter;
}
bool is_arabic_all_letters_fromated(wstring &input,bool keep_orignal_formation)
{
for(int index = 0 ; index < input.size()-1; index++)
{
if(within_vector(input[index], _arabic_letters_without_tashkeel) &&
(!within_vector(input[index+1], _arabic_tashkeel)))
{
return false;
}
}
return (true&&keep_orignal_formation);
}
bool is_vaild_line(wstring &input)
{
if(input.empty()) return false;
for(int index = 0 ; index < input.size(); index++)
{
if(within_vector(input[index], _arabic_letters_without_tashkeel))
{
return true;
}
}
return false;
}
string handle_tashkeel(const wstring &input, size_t &index)
{
assert(index < input.size());
string continuous_tshkeel;
for(; index < input.size(); index++)
{
if( within_vector(input[index], _arabic_tashkeel))
{
continuous_tshkeel+= arabic_to_buckwalter.at(input[index]);
}
else
{
break;
}
}
index--;
return continuous_tshkeel;
}
/*
*return backwlater and for each unkown "!" it saves a list of the opposite countinuous non-arabic chars
*/
string convert_arabic_to_buckwalter_no_tahkeel(wstring arabic,std::vector<wstring>& unkown_chars ,
std::vector<wstring>& spaces , std::vector<string>& orignal_letter_formarion)
{
std::setlocale(LC_ALL, "en_US.UTF8"); //needed by the isspace and iswspace functions
string buckwalter;
size_t sz = arabic.size();
bool my_previous_is_aletter = false;
for (size_t i = 0; i < sz; i++)
{
if (iswspace(arabic[i]))
{
if(my_previous_is_aletter)
{
orignal_letter_formarion.push_back("");//adding tashkeel for the previous letter
my_previous_is_aletter = false;
}
wstring continuous_spaces;
buckwalter += handle_spaces(arabic,i,continuous_spaces);
spaces.push_back(continuous_spaces);
orignal_letter_formarion.push_back("");
}
else if (within_vector(arabic[i], _arabic_letters_without_tashkeel))
{
buckwalter += arabic_to_buckwalter.at(arabic[i]);
if(my_previous_is_aletter)
{
orignal_letter_formarion.push_back("");
}
if(i==sz-1)
{
orignal_letter_formarion.push_back(""); // handel if last element with no tashkeel
}
my_previous_is_aletter = true;
}
else if (within_vector(arabic[i], _arabic_tashkeel)&&my_previous_is_aletter)
{
string letter_tashkeel = handle_tashkeel(arabic,i);
orignal_letter_formarion.push_back(letter_tashkeel);
my_previous_is_aletter = false;
}
else
{
if(my_previous_is_aletter)
{
orignal_letter_formarion.push_back("");
my_previous_is_aletter = false;
}
wstring continuous_unkowns;
buckwalter +=handle_unknown_char(arabic, i,continuous_unkowns);
unkown_chars.push_back(continuous_unkowns);
orignal_letter_formarion.push_back("");
}
}
return buckwalter;
}
} // namespace RDI