pub struct Ngspice {}
Expand description
ngspice simulator global configuration.
Trait Implementations§
source§impl FromSchema<NoSchema> for Ngspice
impl FromSchema<NoSchema> for Ngspice
source§impl HasSpiceLikeNetlist for Ngspice
impl HasSpiceLikeNetlist for Ngspice
source§fn write_prelude<W: Write>(
&self,
out: &mut W,
_lib: &Library<Self>
) -> Result<()>
fn write_prelude<W: Write>( &self, out: &mut W, _lib: &Library<Self> ) -> Result<()>
Writes a prelude to the beginning of the output stream. Read more
source§fn write_include<W: Write>(&self, out: &mut W, include: &Include) -> Result<()>
fn write_include<W: Write>(&self, out: &mut W, include: &Include) -> Result<()>
Writes an include statement. Read more
source§fn write_start_subckt<W: Write>(
&self,
out: &mut W,
name: &ArcStr,
ports: &[&SignalInfo]
) -> Result<()>
fn write_start_subckt<W: Write>( &self, out: &mut W, name: &ArcStr, ports: &[&SignalInfo] ) -> Result<()>
Writes a begin subcircuit statement. Read more
source§fn write_end_subckt<W: Write>(&self, out: &mut W, name: &ArcStr) -> Result<()>
fn write_end_subckt<W: Write>(&self, out: &mut W, name: &ArcStr) -> Result<()>
Writes an end subcircuit statement. Read more
source§fn write_instance<W: Write>(
&self,
out: &mut W,
name: &ArcStr,
connections: Vec<ArcStr>,
child: &ArcStr
) -> Result<ArcStr>
fn write_instance<W: Write>( &self, out: &mut W, name: &ArcStr, connections: Vec<ArcStr>, child: &ArcStr ) -> Result<ArcStr>
Writes a SCIR instance. Read more
source§fn write_primitive_inst<W: Write>(
&self,
out: &mut W,
name: &ArcStr,
connections: HashMap<ArcStr, Vec<ArcStr>>,
primitive: &<Self as Schema>::Primitive
) -> Result<ArcStr>
fn write_primitive_inst<W: Write>( &self, out: &mut W, name: &ArcStr, connections: HashMap<ArcStr, Vec<ArcStr>>, primitive: &<Self as Schema>::Primitive ) -> Result<ArcStr>
Writes a primitive instantiation. Read more
source§impl Installation for Ngspice
impl Installation for Ngspice
source§fn post_install(&self, ctx: &mut ContextBuilder)
fn post_install(&self, ctx: &mut ContextBuilder)
A post-installation hook for additional context modifications
required by the installation. Read more
source§impl Save<Ngspice, Tran, &ConvertedNodePath> for Current
impl Save<Ngspice, Tran, &ConvertedNodePath> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &ConvertedNodePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &ConvertedNodePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &ConvertedNodePath> for Voltage
impl Save<Ngspice, Tran, &ConvertedNodePath> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &ConvertedNodePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &ConvertedNodePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &NestedNode> for Voltage
impl Save<Ngspice, Tran, &NestedNode> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &NestedNode,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &NestedNode, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &NestedTerminal> for Current
impl Save<Ngspice, Tran, &NestedTerminal> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &NestedTerminal,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &NestedTerminal, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &NestedTerminal> for Voltage
impl Save<Ngspice, Tran, &NestedTerminal> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &NestedTerminal,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &NestedTerminal, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &SliceOnePath> for Current
impl Save<Ngspice, Tran, &SliceOnePath> for Current
source§fn save(
_ctx: &SimulationContext<Ngspice>,
to_save: &SliceOnePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( _ctx: &SimulationContext<Ngspice>, to_save: &SliceOnePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &SliceOnePath> for Voltage
impl Save<Ngspice, Tran, &SliceOnePath> for Voltage
source§fn save(
_ctx: &SimulationContext<Ngspice>,
to_save: &SliceOnePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( _ctx: &SimulationContext<Ngspice>, to_save: &SliceOnePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &TerminalPath> for Current
impl Save<Ngspice, Tran, &TerminalPath> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &TerminalPath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &TerminalPath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, &TerminalPath> for Voltage
impl Save<Ngspice, Tran, &TerminalPath> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: &TerminalPath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: &TerminalPath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, ConvertedNodePath> for Current
impl Save<Ngspice, Tran, ConvertedNodePath> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: ConvertedNodePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: ConvertedNodePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, ConvertedNodePath> for Voltage
impl Save<Ngspice, Tran, ConvertedNodePath> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: ConvertedNodePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: ConvertedNodePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, NestedNode> for Voltage
impl Save<Ngspice, Tran, NestedNode> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: NestedNode,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: NestedNode, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, NestedTerminal> for Current
impl Save<Ngspice, Tran, NestedTerminal> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: NestedTerminal,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: NestedTerminal, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, NestedTerminal> for Voltage
impl Save<Ngspice, Tran, NestedTerminal> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: NestedTerminal,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: NestedTerminal, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, SliceOnePath> for Current
impl Save<Ngspice, Tran, SliceOnePath> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: SliceOnePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: SliceOnePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, SliceOnePath> for Voltage
impl Save<Ngspice, Tran, SliceOnePath> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: SliceOnePath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: SliceOnePath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, TerminalPath> for Current
impl Save<Ngspice, Tran, TerminalPath> for Current
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: TerminalPath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: TerminalPath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Save<Ngspice, Tran, TerminalPath> for Voltage
impl Save<Ngspice, Tran, TerminalPath> for Voltage
source§fn save(
ctx: &SimulationContext<Ngspice>,
to_save: TerminalPath,
opts: &mut <Ngspice as Simulator>::Options
) -> Self::SavedKey
fn save( ctx: &SimulationContext<Ngspice>, to_save: TerminalPath, opts: &mut <Ngspice as Simulator>::Options ) -> Self::SavedKey
Marks the given output for saving, returning a key that can be used to recover
the output once the simulation is complete.
source§impl Schematic<Ngspice> for DcVsource
impl Schematic<Ngspice> for DcVsource
source§fn schematic(
&self,
io: &<<Self as Block>::Io as HardwareType>::Bundle,
cell: &mut CellBuilder<Ngspice>
) -> Result<Self::NestedData>
fn schematic( &self, io: &<<Self as Block>::Io as HardwareType>::Bundle, cell: &mut CellBuilder<Ngspice> ) -> Result<Self::NestedData>
Generates the block’s schematic.
source§impl Schematic<Ngspice> for RawInstance
impl Schematic<Ngspice> for RawInstance
source§fn schematic(
&self,
io: &<<Self as Block>::Io as HardwareType>::Bundle,
cell: &mut CellBuilder<Ngspice>
) -> Result<Self::NestedData>
fn schematic( &self, io: &<<Self as Block>::Io as HardwareType>::Bundle, cell: &mut CellBuilder<Ngspice> ) -> Result<Self::NestedData>
Generates the block’s schematic.
source§impl Schematic<Ngspice> for Resistor
impl Schematic<Ngspice> for Resistor
source§fn schematic(
&self,
io: &<<Self as Block>::Io as HardwareType>::Bundle,
cell: &mut CellBuilder<Ngspice>
) -> Result<Self::NestedData>
fn schematic( &self, io: &<<Self as Block>::Io as HardwareType>::Bundle, cell: &mut CellBuilder<Ngspice> ) -> Result<Self::NestedData>
Generates the block’s schematic.
source§impl Schematic<Ngspice> for Vsource
impl Schematic<Ngspice> for Vsource
source§fn schematic(
&self,
io: &<<Self as Block>::Io as HardwareType>::Bundle,
cell: &mut CellBuilder<Ngspice>
) -> Result<Self::NestedData>
fn schematic( &self, io: &<<Self as Block>::Io as HardwareType>::Bundle, cell: &mut CellBuilder<Ngspice> ) -> Result<Self::NestedData>
Generates the block’s schematic.
source§impl Simulator for Ngspice
impl Simulator for Ngspice
source§fn simulate_inputs(
&self,
config: &SimulationContext<Self>,
options: Self::Options,
input: Vec<Self::Input>
) -> Result<Vec<Self::Output>>
fn simulate_inputs( &self, config: &SimulationContext<Self>, options: Self::Options, input: Vec<Self::Input> ) -> Result<Vec<Self::Output>>
Simulates the given set of analyses.
Auto Trait Implementations§
impl RefUnwindSafe for Ngspice
impl Send for Ngspice
impl Sync for Ngspice
impl Unpin for Ngspice
impl UnwindSafe for Ngspice
Blanket Implementations§
source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more
source§impl<T, U> CustomHardwareType<Flipped<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
impl<T, U> CustomHardwareType<Flipped<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
source§fn from_layout_type(other: &Flipped<T>) -> U
fn from_layout_type(other: &Flipped<T>) -> U
Creates this layout type from another layout type.
source§impl<T, U> CustomHardwareType<InOut<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
impl<T, U> CustomHardwareType<InOut<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
source§fn from_layout_type(other: &InOut<T>) -> U
fn from_layout_type(other: &InOut<T>) -> U
Creates this layout type from another layout type.
source§impl<T, U> CustomHardwareType<Input<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
impl<T, U> CustomHardwareType<Input<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
source§fn from_layout_type(other: &Input<T>) -> U
fn from_layout_type(other: &Input<T>) -> U
Creates this layout type from another layout type.
source§impl<T, U> CustomHardwareType<Output<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
impl<T, U> CustomHardwareType<Output<T>> for Uwhere
U: CustomHardwareType<T>,
T: HardwareType,
source§fn from_layout_type(other: &Output<T>) -> U
fn from_layout_type(other: &Output<T>) -> U
Creates this layout type from another layout type.
§impl<T> Downcast for Twhere
T: Any,
impl<T> Downcast for Twhere
T: Any,
§fn into_any(self: Box<T>) -> Box<dyn Any>
fn into_any(self: Box<T>) -> Box<dyn Any>
Convert
Box<dyn Trait>
(where Trait: Downcast
) to Box<dyn Any>
. Box<dyn Any>
can
then be further downcast
into Box<ConcreteType>
where ConcreteType
implements Trait
.§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
Convert
Rc<Trait>
(where Trait: Downcast
) to Rc<Any>
. Rc<Any>
can then be
further downcast
into Rc<ConcreteType>
where ConcreteType
implements Trait
.§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
Convert
&Trait
(where Trait: Downcast
) to &Any
. This is needed since Rust cannot
generate &Any
’s vtable from &Trait
’s.§fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
Convert
&mut Trait
(where Trait: Downcast
) to &Any
. This is needed since Rust cannot
generate &mut Any
’s vtable from &mut Trait
’s.§impl<T> DowncastSync for T
impl<T> DowncastSync for T
source§impl<S> FromSchema<S> for S
impl<S> FromSchema<S> for S
§type Error = Infallible
type Error = Infallible
The conversion error type.
source§fn convert_primitive(
primitive: <S as Schema>::Primitive
) -> Result<<S as Schema>::Primitive, <S as FromSchema<S>>::Error>
fn convert_primitive( primitive: <S as Schema>::Primitive ) -> Result<<S as Schema>::Primitive, <S as FromSchema<S>>::Error>
Converts a primitive of the other schema to a primitive of this schema.
source§fn convert_instance(
_instance: &mut Instance,
_primitive: &<S as Schema>::Primitive
) -> Result<(), <S as FromSchema<S>>::Error>
fn convert_instance( _instance: &mut Instance, _primitive: &<S as Schema>::Primitive ) -> Result<(), <S as FromSchema<S>>::Error>
Converts an instance from the other schema to a new instance
based on its associated primitive.
§impl<T> Instrument for T
impl<T> Instrument for T
§fn instrument(self, span: Span) -> Instrumented<Self>
fn instrument(self, span: Span) -> Instrumented<Self>
§fn in_current_span(self) -> Instrumented<Self>
fn in_current_span(self) -> Instrumented<Self>
source§impl<T> IntoEither for T
impl<T> IntoEither for T
source§fn into_either(self, into_left: bool) -> Either<Self, Self>
fn into_either(self, into_left: bool) -> Either<Self, Self>
Converts
self
into a Left
variant of Either<Self, Self>
if into_left
is true
.
Converts self
into a Right
variant of Either<Self, Self>
otherwise. Read moresource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
Converts
self
into a Left
variant of Either<Self, Self>
if into_left(&self)
returns true
.
Converts self
into a Right
variant of Either<Self, Self>
otherwise. Read moresource§impl<T> IntoRequest<T> for T
impl<T> IntoRequest<T> for T
source§fn into_request(self) -> Request<T>
fn into_request(self) -> Request<T>
Wrap the input message
T
in a tonic::Request