/* * This program source code file is part of KiCad, a free EDA CAD application. * * Copyright (C) 2022 Mikolaj Wielgus * Copyright (C) 2022 KiCad Developers, see AUTHORS.txt for contributors. * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public License * as published by the Free Software Foundation; either version 3 * of the License, or (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, you may find one here: * https://www.gnu.org/licenses/gpl-3.0.html * or you may search the http://www.gnu.org website for the version 3 license, * or you may write to the Free Software Foundation, Inc., * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA */ #include using TYPE = SIM_MODEL::TYPE; SIM_MODEL_NGSPICE::SIM_MODEL_NGSPICE( TYPE aType ) : SIM_MODEL( aType ) { const NGSPICE::MODEL_INFO& modelInfo = NGSPICE::ModelInfo( getModelType() ); for( const SIM_MODEL::PARAM::INFO& paramInfo : modelInfo.modelParams ) AddParam( paramInfo, getIsOtherVariant() ); for( const SIM_MODEL::PARAM::INFO& paramInfo : modelInfo.instanceParams ) AddParam( paramInfo, getIsOtherVariant() ); } std::vector SIM_MODEL_NGSPICE::getPinNames() const { return NGSPICE::ModelInfo( getModelType() ).pinNames; } NGSPICE::MODEL_TYPE SIM_MODEL_NGSPICE::getModelType() const { switch( GetType() ) { case TYPE::NONE: return NGSPICE::MODEL_TYPE::NONE; case TYPE::RESISTOR_ADVANCED: return NGSPICE::MODEL_TYPE::RESISTOR; case TYPE::CAPACITOR_ADVANCED: return NGSPICE::MODEL_TYPE::CAPACITOR; case TYPE::INDUCTOR_ADVANCED: return NGSPICE::MODEL_TYPE::INDUCTOR; case TYPE::TLINE_LOSSY: return NGSPICE::MODEL_TYPE::LTRA; case TYPE::TLINE_LOSSLESS: return NGSPICE::MODEL_TYPE::TRANLINE; case TYPE::TLINE_UNIFORM_RC: return NGSPICE::MODEL_TYPE::URC; //case TYPE::TLINE_KSPICE: return NGSPICE::MODEL_TYPE::TRANSLINE; case TYPE::SWITCH_VCTRL: return NGSPICE::MODEL_TYPE::SWITCH; case TYPE::SWITCH_ICTRL: return NGSPICE::MODEL_TYPE::CSWITCH; case TYPE::DIODE: return NGSPICE::MODEL_TYPE::DIODE; case TYPE::NPN_GUMMEL_POON: case TYPE::PNP_GUMMEL_POON: return NGSPICE::MODEL_TYPE::BJT; case TYPE::NPN_VBIC: case TYPE::PNP_VBIC: return NGSPICE::MODEL_TYPE::VBIC; case TYPE::NPN_HICUM_L2: case TYPE::PNP_HICUM_L2: return NGSPICE::MODEL_TYPE::HICUM2; case TYPE::NJF_SHICHMAN_HODGES: case TYPE::PJF_SHICHMAN_HODGES: return NGSPICE::MODEL_TYPE::JFET; case TYPE::NJF_PARKER_SKELLERN: case TYPE::PJF_PARKER_SKELLERN: return NGSPICE::MODEL_TYPE::JFET2; case TYPE::NMES_STATZ: case TYPE::PMES_STATZ: return NGSPICE::MODEL_TYPE::MES; case TYPE::NMES_YTTERDAL: case TYPE::PMES_YTTERDAL: return NGSPICE::MODEL_TYPE::MESA; case TYPE::NMES_HFET1: case TYPE::PMES_HFET1: return NGSPICE::MODEL_TYPE::HFET1; case TYPE::PMES_HFET2: case TYPE::NMES_HFET2: return NGSPICE::MODEL_TYPE::HFET2; case TYPE::NMOS_MOS1: case TYPE::PMOS_MOS1: return NGSPICE::MODEL_TYPE::MOS1; case TYPE::NMOS_MOS2: case TYPE::PMOS_MOS2: return NGSPICE::MODEL_TYPE::MOS2; case TYPE::NMOS_MOS3: case TYPE::PMOS_MOS3: return NGSPICE::MODEL_TYPE::MOS3; case TYPE::NMOS_BSIM1: case TYPE::PMOS_BSIM1: return NGSPICE::MODEL_TYPE::BSIM1; case TYPE::NMOS_BSIM2: case TYPE::PMOS_BSIM2: return NGSPICE::MODEL_TYPE::BSIM2; case TYPE::NMOS_MOS6: case TYPE::PMOS_MOS6: return NGSPICE::MODEL_TYPE::MOS6; case TYPE::NMOS_BSIM3: case TYPE::PMOS_BSIM3: return NGSPICE::MODEL_TYPE::BSIM3; case TYPE::NMOS_MOS9: case TYPE::PMOS_MOS9: return NGSPICE::MODEL_TYPE::MOS9; case TYPE::NMOS_B4SOI: case TYPE::PMOS_B4SOI: return NGSPICE::MODEL_TYPE::B4SOI; case TYPE::NMOS_BSIM4: case TYPE::PMOS_BSIM4: return NGSPICE::MODEL_TYPE::BSIM4; case TYPE::NMOS_B3SOIFD: case TYPE::PMOS_B3SOIFD: return NGSPICE::MODEL_TYPE::B3SOIFD; case TYPE::NMOS_B3SOIDD: case TYPE::PMOS_B3SOIDD: return NGSPICE::MODEL_TYPE::B3SOIDD; case TYPE::NMOS_B3SOIPD: case TYPE::PMOS_B3SOIPD: return NGSPICE::MODEL_TYPE::B3SOIPD; case TYPE::NMOS_HISIM2: case TYPE::PMOS_HISIM2: return NGSPICE::MODEL_TYPE::HISIM2; case TYPE::NMOS_HISIM_HV1: case TYPE::PMOS_HISIM_HV1: return NGSPICE::MODEL_TYPE::HISIMHV1; case TYPE::NMOS_HISIM_HV2: case TYPE::PMOS_HISIM_HV2: return NGSPICE::MODEL_TYPE::HISIMHV2; default: wxFAIL_MSG( "Unhandled SIM_MODEL type in SIM_MODEL_NGSPICE" ); return NGSPICE::MODEL_TYPE::NONE; } } bool SIM_MODEL_NGSPICE::getIsOtherVariant() { switch( GetType() ) { case TYPE::PNP_GUMMEL_POON: case TYPE::PNP_VBIC: case TYPE::PNP_HICUM_L2: case TYPE::PJF_SHICHMAN_HODGES: case TYPE::PJF_PARKER_SKELLERN: case TYPE::PMES_STATZ: case TYPE::PMES_YTTERDAL: case TYPE::PMES_HFET1: case TYPE::PMES_HFET2: case TYPE::PMOS_MOS1: case TYPE::PMOS_MOS2: case TYPE::PMOS_MOS3: case TYPE::PMOS_BSIM1: case TYPE::PMOS_BSIM2: case TYPE::PMOS_MOS6: case TYPE::PMOS_BSIM3: case TYPE::PMOS_MOS9: case TYPE::PMOS_B4SOI: case TYPE::PMOS_BSIM4: case TYPE::PMOS_B3SOIFD: case TYPE::PMOS_B3SOIDD: case TYPE::PMOS_B3SOIPD: case TYPE::PMOS_HISIM2: case TYPE::PMOS_HISIM_HV1: case TYPE::PMOS_HISIM_HV2: return true; default: return false; } }