polserver/pol-core/bscript/dbl.cpp
turleypol 4dd34a9442
using fmt instead of ostringstream (#873)
* using fmt instead of ostringstream

misc cleanup

* missing external libs for clang tidy check

* added test for cprops ignore while stacking
door descriptor

* use contains instead of count, removed disabled ancient code

* pack/packonto simplification/speedup

instead of using ostream and convert to string, use format and directly
a string
2026-04-06 16:21:50 +02:00

314 lines
7.8 KiB
C++

/** @file
*
* @par History
*/
#include <charconv>
#include <cmath>
#include <iterator>
#include <sstream>
#include <string>
#include <system_error>
#include <fmt/compile.h>
#include "../clib/stlutil.h"
#include "berror.h"
#include "bobject.h"
#include "impstr.h"
namespace Pol::Bscript
{
std::string Double::double_to_string( double val )
{
std::string buff( 100, '\0' );
auto [buffptr, ec] = std::to_chars( buff.data(), buff.data() + buff.size(), val );
if ( ec == std::errc() )
{
buff.resize( buffptr - buff.data() );
return buff;
}
throw std::system_error( std::make_error_code( ec ) );
}
void Double::packonto( std::string& str ) const
{
using namespace fmt::literals;
fmt::format_to( std::back_inserter( str ), "r{}"_cf, double_to_string( dval_ ) );
}
BObjectImp* Double::unpack( std::istream& is )
{
double dv;
#if !__APPLE__ && !__ANDROID__
if ( is >> dv )
#else
// well this (and the pack format) is terrible:
// 1) the pack format depends on operator>>(double) magically reading a whole double,
// but stopping without an error if it's followed by something else
// 2) on osx, operator>>(double) reports an error if the double is followed
// by something else
// 3) the pack format is ambiguous, mostly, if an error follows a double
// 4) fortunately, nobody will probably ever really run a server on osx
// 5) our options are a bit limited in peeking at an iostream, I think
// so:
// 4.5e-16 a double
// 4.5e+16 a double
// 4.5e62... a double, followed by an error with 62 elements
// - note that technically, this could be a double, but it seems
// that the double formatter is being nice and always including - or +
std::string tmp;
tmp.reserve( 16 );
while ( !is.eof() )
{
char ch = is.peek();
if ( std::isdigit( ch ) || ch == '.' || ch == '-' || ch == '+' )
{
tmp.push_back( is.get() );
}
else
{
if ( ch == 'e' ) // might be an exponent, or an error struct following the double (sadface)
{
is.get(); // the 'e'
if ( std::isdigit( is.peek() ) ) // assume it's followed by an error struct
{
is.unget();
}
else // assume it's an exponent
{
tmp.push_back( ch ); // the e
tmp.push_back( is.get() ); // the '+' or '-'
while ( !is.eof() && std::isdigit( is.peek() ) )
{
tmp.push_back( is.get() );
}
}
}
break;
}
}
ISTRINGSTREAM is2( tmp );
if ( is2 >> dv )
#endif
{
return new Double( dv );
}
return new BError( "Error extracting Real value" );
}
size_t Double::sizeEstimate() const
{
return sizeof( Double );
}
bool Double::operator==( const BObjectImp& objimp ) const
{
if ( objimp.isa( OTDouble ) )
{
double diff = dval_ - ( (Double&)objimp ).dval_;
return fabs( diff ) < 0.00000001;
}
if ( objimp.isa( OTLong ) )
{
double diff = dval_ - ( (BLong&)objimp ).value();
return fabs( diff ) < 0.00000001;
}
if ( objimp.isa( OTBoolean ) )
{
return isTrue() == static_cast<const BBoolean&>( objimp ).isTrue();
}
return false;
}
bool Double::operator<( const BObjectImp& objimp ) const
{
if ( objimp.isa( OTDouble ) )
{
return ( dval_ < ( (Double&)objimp ).dval_ );
}
if ( objimp.isa( OTLong ) )
{
return ( dval_ < ( (BLong&)objimp ).value() );
}
return base::operator<( objimp );
}
std::string Double::getStringRep() const
{
return double_to_string( dval_ );
}
BObjectImp* Double::selfPlusObjImp( const BObjectImp& objimp ) const
{
return objimp.selfPlusObj( *this );
}
BObjectImp* Double::selfPlusObj( const BLong& objimp ) const
{
return new Double( dval_ + objimp.value() );
}
BObjectImp* Double::selfPlusObj( const Double& objimp ) const
{
return new Double( dval_ + objimp.dval_ );
}
BObjectImp* Double::selfPlusObj( const String& objimp ) const
{
return new String( getStringRep() + objimp.value() );
}
void Double::selfPlusObjImp( BObjectImp& objimp, BObject& obj )
{
objimp.selfPlusObj( *this, obj );
}
void Double::selfPlusObj( BLong& objimp, BObject& obj )
{
obj.setimp( selfPlusObj( objimp ) );
}
void Double::selfPlusObj( Double& objimp, BObject& /*obj*/ )
{
dval_ += objimp.dval_;
}
void Double::selfPlusObj( String& objimp, BObject& obj )
{
obj.setimp( selfPlusObj( objimp ) );
}
BObjectImp* Double::selfMinusObjImp( const BObjectImp& objimp ) const
{
return objimp.selfMinusObj( *this );
}
BObjectImp* Double::selfMinusObj( const BLong& objimp ) const
{
return new Double( dval_ - objimp.value() );
}
BObjectImp* Double::selfMinusObj( const Double& objimp ) const
{
return new Double( dval_ - objimp.dval_ );
}
BObjectImp* Double::selfMinusObj( const String& objimp ) const
{
String s( getStringRep() );
return s.selfMinusObj( objimp );
}
void Double::selfMinusObjImp( BObjectImp& objimp, BObject& obj )
{
objimp.selfMinusObj( *this, obj );
}
void Double::selfMinusObj( BLong& objimp, BObject& /*obj*/ )
{
dval_ -= objimp.value();
}
void Double::selfMinusObj( Double& objimp, BObject& /*obj*/ )
{
dval_ -= objimp.value();
}
void Double::selfMinusObj( String& objimp, BObject& obj )
{
obj.setimp( selfMinusObj( objimp ) );
}
BObjectImp* Double::selfTimesObjImp( const BObjectImp& objimp ) const
{
return objimp.selfTimesObj( *this );
}
BObjectImp* Double::selfTimesObj( const BLong& objimp ) const
{
return new Double( dval_ * objimp.value() );
}
BObjectImp* Double::selfTimesObj( const Double& objimp ) const
{
return new Double( dval_ * objimp.value() );
}
void Double::selfTimesObjImp( BObjectImp& objimp, BObject& obj )
{
objimp.selfTimesObj( *this, obj );
}
void Double::selfTimesObj( BLong& objimp, BObject& /*obj*/ )
{
dval_ *= objimp.value();
}
void Double::selfTimesObj( Double& objimp, BObject& /*obj*/ )
{
dval_ *= objimp.value();
}
BObjectImp* Double::selfDividedByObjImp( const BObjectImp& objimp ) const
{
return objimp.selfDividedByObj( *this );
}
BObjectImp* Double::selfDividedByObj( const BLong& objimp ) const
{
int divisor = objimp.value();
if ( !divisor )
return new BError( "Divide by Zero" );
return new Double( dval_ / divisor );
}
BObjectImp* Double::selfDividedByObj( const Double& objimp ) const
{
double divisor = objimp.value();
if ( divisor == 0.0 )
return new BError( "Divide by Zero" );
return new Double( dval_ / divisor );
}
void Double::selfDividedByObjImp( BObjectImp& objimp, BObject& obj )
{
objimp.selfDividedByObj( *this, obj );
}
void Double::selfDividedByObj( BLong& objimp, BObject& obj )
{
if ( !objimp.value() )
obj.setimp( new BError( "Divide by Zero" ) );
else
dval_ /= objimp.value();
}
void Double::selfDividedByObj( Double& objimp, BObject& obj )
{
if ( !objimp.value() )
obj.setimp( new BError( "Divide by Zero" ) );
else
dval_ /= objimp.value();
}
BObjectImp* Double::selfModulusObjImp( const BObjectImp& objimp ) const
{
return objimp.selfModulusObj( *this );
}
void Double::selfModulusObjImp( BObjectImp& objimp, BObject& obj )
{
objimp.selfModulusObj( *this, obj );
}
BObjectImp* Double::selfModulusObj( const BLong& objimp ) const
{
if ( !objimp.value() )
return new BError( "Divide by Zero" );
return new Double( fmod( dval_, objimp.value() ) );
}
BObjectImp* Double::selfModulusObj( const Double& objimp ) const
{
if ( !objimp.value() )
return new BError( "Divide by Zero" );
return new Double( fmod( dval_, objimp.value() ) );
}
void Double::selfModulusObj( BLong& objimp, BObject& obj )
{
if ( !objimp.value() )
obj.setimp( new BError( "Divide by Zero" ) );
else
dval_ = fmod( dval_, objimp.value() );
}
void Double::selfModulusObj( Double& objimp, BObject& obj )
{
if ( !objimp.value() )
obj.setimp( new BError( "Divide by Zero" ) );
else
dval_ = fmod( dval_, objimp.value() );
}
} // namespace Pol::Bscript