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Unfortunately, Windows headers define a lot of macros for common words, so we had to rename some enums to not collide. We also fix some of the many bugs related to the new simulation architecture and the Spice Model Editor dialog.
151 lines
4.8 KiB
C++
151 lines
4.8 KiB
C++
/*
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* This program source code file is part of KiCad, a free EDA CAD application.
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*
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* Copyright (C) 2022 Mikolaj Wielgus
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* Copyright (C) 2022 KiCad Developers, see AUTHORS.txt for contributors.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 3
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, you may find one here:
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* https://www.gnu.org/licenses/gpl-3.0.html
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* or you may search the http://www.gnu.org website for the version 3 license,
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* or you may write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#include <sim/sim_model_ideal.h>
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using PARAM = SIM_MODEL::PARAM;
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SIM_MODEL_IDEAL::SIM_MODEL_IDEAL( TYPE aType )
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: SIM_MODEL( aType ),
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m_isInferred( false )
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{
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static PARAM::INFO resistor = makeParamInfo( "r", "Resistance", "Ω" );
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static PARAM::INFO capacitor = makeParamInfo( "c", "Capacitance", "F" );
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static PARAM::INFO inductor = makeParamInfo( "l", "Inductance", "H" );
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switch( aType )
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{
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case TYPE::R: AddParam( resistor ); break;
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case TYPE::C: AddParam( capacitor ); break;
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case TYPE::L: AddParam( inductor ); break;
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default:
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wxFAIL_MSG( "Unhandled SIM_MODEL type in SIM_MODEL_IDEAL" );
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}
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}
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void SIM_MODEL_IDEAL::ReadDataSchFields( unsigned aSymbolPinCount,
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const std::vector<SCH_FIELD>* aFields )
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{
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if( GetFieldValue( aFields, PARAMS_FIELD ) != "" )
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SIM_MODEL::ReadDataSchFields( aSymbolPinCount, aFields );
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else
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inferredReadDataFields( aSymbolPinCount, aFields );
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}
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void SIM_MODEL_IDEAL::ReadDataLibFields( unsigned aSymbolPinCount,
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const std::vector<LIB_FIELD>* aFields )
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{
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if( GetFieldValue( aFields, PARAMS_FIELD ) != "" )
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SIM_MODEL::ReadDataLibFields( aSymbolPinCount, aFields );
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else
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inferredReadDataFields( aSymbolPinCount, aFields );
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}
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void SIM_MODEL_IDEAL::WriteDataSchFields( std::vector<SCH_FIELD>& aFields ) const
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{
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SIM_MODEL::WriteDataSchFields( aFields );
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if( m_isInferred )
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inferredWriteDataFields( aFields );
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}
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void SIM_MODEL_IDEAL::WriteDataLibFields( std::vector<LIB_FIELD>& aFields ) const
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{
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SIM_MODEL::WriteDataLibFields( aFields );
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if( m_isInferred )
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inferredWriteDataFields( aFields );
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}
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wxString SIM_MODEL_IDEAL::GenerateSpiceModelLine( const wxString& aModelName ) const
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{
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return "";
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}
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wxString SIM_MODEL_IDEAL::GenerateSpiceItemLine( const wxString& aRefName,
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const wxString& aModelName,
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const std::vector<wxString>& aPinNetNames ) const
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{
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wxString valueStr = GetParam( 0 ).value->ToString( SIM_VALUE::NOTATION::SPICE );
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if( valueStr != "" )
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return SIM_MODEL::GenerateSpiceItemLine( aRefName, valueStr, aPinNetNames );
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else
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return "";
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}
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template <typename T>
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void SIM_MODEL_IDEAL::inferredReadDataFields( unsigned aSymbolPinCount, const std::vector<T>* aFields )
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{
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ParsePinsField( aSymbolPinCount, GetFieldValue( aFields, PINS_FIELD ) );
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if( InferTypeFromRefAndValue( GetFieldValue( aFields, REFERENCE_FIELD ),
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GetFieldValue( aFields, VALUE_FIELD ) ) == GetType() )
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{
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if( !SetParamValue( 0, GetFieldValue( aFields, VALUE_FIELD ) ) )
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THROW_IO_ERROR( wxString::Format( _( "Failed to infer model from Value '%s'" ),
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GetFieldValue( aFields, VALUE_FIELD ) ) );
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m_isInferred = true;
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return;
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}
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if( GetFieldValue( aFields, VALUE_FIELD ) == DeviceTypeInfo( GetDeviceType() ).fieldValue )
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m_isInferred = true;
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}
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template <typename T>
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void SIM_MODEL_IDEAL::inferredWriteDataFields( std::vector<T>& aFields ) const
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{
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wxString value = GetParam( 0 ).value->ToString();
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if( value.IsEmpty() )
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value = DeviceTypeInfo( GetDeviceType() ).fieldValue;
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WriteInferredDataFields( aFields, value );
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}
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PARAM::INFO SIM_MODEL_IDEAL::makeParamInfo( wxString aName, wxString aDescription, wxString aUnit )
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{
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SIM_MODEL::PARAM::INFO paramInfo = {};
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paramInfo.name = aName;
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paramInfo.type = SIM_VALUE::TYPE_FLOAT;
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paramInfo.unit = aUnit;
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paramInfo.category = SIM_MODEL::PARAM::CATEGORY::PRINCIPAL;
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paramInfo.description = aDescription;
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return paramInfo;
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}
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