pub struct ExternalModularSha256SignerTop;Expand description
Behavioral production signer with an unresolved external HDL definition.
Simulation delegates to the exact 64-round modular signer, including its
full state and external-lane behavioral model. HDL lowering emits only a
typed reference to BENCHMARK_SIGNER_TOP_MODULE; the Phase-A generator
separately lowers and checksum-binds that production signer skeleton.
Trait Implementations§
Source§impl Clone for ExternalModularSha256SignerTop
impl Clone for ExternalModularSha256SignerTop
Source§fn clone(&self) -> ExternalModularSha256SignerTop
fn clone(&self) -> ExternalModularSha256SignerTop
Returns a duplicate of the value. Read more
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source. Read moreSource§impl Default for ExternalModularSha256SignerTop
impl Default for ExternalModularSha256SignerTop
Source§fn default() -> ExternalModularSha256SignerTop
fn default() -> ExternalModularSha256SignerTop
Returns the “default value” for a type. Read more
Source§impl PartialEq for ExternalModularSha256SignerTop
impl PartialEq for ExternalModularSha256SignerTop
Source§fn eq(&self, other: &ExternalModularSha256SignerTop) -> bool
fn eq(&self, other: &ExternalModularSha256SignerTop) -> bool
Tests for
self and other values to be equal, and is used by ==.Source§impl Synchronous for ExternalModularSha256SignerTop
impl Synchronous for ExternalModularSha256SignerTop
Source§type S = <SignerTop<64, 6, ExternalFullCompressionLane> as Synchronous>::S
type S = <SignerTop<64, 6, ExternalFullCompressionLane> as Synchronous>::S
The simulation state type.
This type is used to represent the internal state of the circuit
during simulation. It must be
PartialEq and Clone. It holds whatever
state is needed to compute the output of the circuit given it’s input.
This state is typically auto-derived by the Synchronous derive macro,
and it’s typically a struct containing the states of all the subcircuits,
along with their last know outputs.Source§fn init(&self) -> Self::S
fn init(&self) -> Self::S
Initialize the simulation state.
This method returns the initial state of the circuit for simulation.
This is typically auto-derived by the
Synchronous derive macro,
and it typically initializes the states of all the subcircuits to their
initial states.Source§fn sim(
&self,
clock_reset: ClockReset,
input: Self::I,
state: &mut Self::S,
) -> Self::O
fn sim( &self, clock_reset: ClockReset, input: Self::I, state: &mut Self::S, ) -> Self::O
Simulate the circuit given it’s input, clock reset, and current state.
Source§fn descriptor(
&self,
scoped_name: ScopedName,
) -> Result<Descriptor<SyncKind>, RHDLError>
fn descriptor( &self, scoped_name: ScopedName, ) -> Result<Descriptor<SyncKind>, RHDLError>
Provides run time reflection of the circuit.
Source§impl SynchronousDQ for ExternalModularSha256SignerTop
impl SynchronousDQ for ExternalModularSha256SignerTop
Source§impl SynchronousIO for ExternalModularSha256SignerTop
impl SynchronousIO for ExternalModularSha256SignerTop
Source§type I = SignerTopInput
type I = SignerTopInput
The type of the input to the circuit.
Source§type O = SignerTopOutput
type O = SignerTopOutput
The type of the output from the circuit.
Source§type Kernel = NoSynchronousKernel<ClockReset, SignerTopInput, (), (SignerTopOutput, ())>
type Kernel = NoSynchronousKernel<ClockReset, SignerTopInput, (), (SignerTopOutput, ())>
The type of the kernel function used to compute the output and feedback.
The kernel function must be a synthesizable function that takes a clock and reset signal,
the input signal, and the feedback signal Q, and produces the output signal and feedback signal D. Read more
impl Copy for ExternalModularSha256SignerTop
impl Eq for ExternalModularSha256SignerTop
impl StructuralPartialEq for ExternalModularSha256SignerTop
Auto Trait Implementations§
impl Freeze for ExternalModularSha256SignerTop
impl RefUnwindSafe for ExternalModularSha256SignerTop
impl Send for ExternalModularSha256SignerTop
impl Sync for ExternalModularSha256SignerTop
impl Unpin for ExternalModularSha256SignerTop
impl UnsafeUnpin for ExternalModularSha256SignerTop
impl UnwindSafe for ExternalModularSha256SignerTop
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> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
Checks if this value is equivalent to the given key. Read more
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
Compare self to
key and return true if they are equal.§impl<D> OwoColorize for D
impl<D> OwoColorize for D
§fn fg<C>(&self) -> FgColorDisplay<'_, C, Self>where
C: Color,
fn fg<C>(&self) -> FgColorDisplay<'_, C, Self>where
C: Color,
Set the foreground color generically Read more
§fn bg<C>(&self) -> BgColorDisplay<'_, C, Self>where
C: Color,
fn bg<C>(&self) -> BgColorDisplay<'_, C, Self>where
C: Color,
Set the background color generically. Read more
§fn on_magenta(&self) -> BgColorDisplay<'_, Magenta, Self>
fn on_magenta(&self) -> BgColorDisplay<'_, Magenta, Self>
Change the background color to magenta
§fn default_color(&self) -> FgColorDisplay<'_, Default, Self>
fn default_color(&self) -> FgColorDisplay<'_, Default, Self>
Change the foreground color to the terminal default
§fn on_default_color(&self) -> BgColorDisplay<'_, Default, Self>
fn on_default_color(&self) -> BgColorDisplay<'_, Default, Self>
Change the background color to the terminal default
§fn bright_black(&self) -> FgColorDisplay<'_, BrightBlack, Self>
fn bright_black(&self) -> FgColorDisplay<'_, BrightBlack, Self>
Change the foreground color to bright black
§fn on_bright_black(&self) -> BgColorDisplay<'_, BrightBlack, Self>
fn on_bright_black(&self) -> BgColorDisplay<'_, BrightBlack, Self>
Change the background color to bright black
§fn bright_red(&self) -> FgColorDisplay<'_, BrightRed, Self>
fn bright_red(&self) -> FgColorDisplay<'_, BrightRed, Self>
Change the foreground color to bright red
§fn on_bright_red(&self) -> BgColorDisplay<'_, BrightRed, Self>
fn on_bright_red(&self) -> BgColorDisplay<'_, BrightRed, Self>
Change the background color to bright red
§fn bright_green(&self) -> FgColorDisplay<'_, BrightGreen, Self>
fn bright_green(&self) -> FgColorDisplay<'_, BrightGreen, Self>
Change the foreground color to bright green
§fn on_bright_green(&self) -> BgColorDisplay<'_, BrightGreen, Self>
fn on_bright_green(&self) -> BgColorDisplay<'_, BrightGreen, Self>
Change the background color to bright green
§fn bright_yellow(&self) -> FgColorDisplay<'_, BrightYellow, Self>
fn bright_yellow(&self) -> FgColorDisplay<'_, BrightYellow, Self>
Change the foreground color to bright yellow
§fn on_bright_yellow(&self) -> BgColorDisplay<'_, BrightYellow, Self>
fn on_bright_yellow(&self) -> BgColorDisplay<'_, BrightYellow, Self>
Change the background color to bright yellow
§fn bright_blue(&self) -> FgColorDisplay<'_, BrightBlue, Self>
fn bright_blue(&self) -> FgColorDisplay<'_, BrightBlue, Self>
Change the foreground color to bright blue
§fn on_bright_blue(&self) -> BgColorDisplay<'_, BrightBlue, Self>
fn on_bright_blue(&self) -> BgColorDisplay<'_, BrightBlue, Self>
Change the background color to bright blue
§fn bright_magenta(&self) -> FgColorDisplay<'_, BrightMagenta, Self>
fn bright_magenta(&self) -> FgColorDisplay<'_, BrightMagenta, Self>
Change the foreground color to bright magenta
§fn on_bright_magenta(&self) -> BgColorDisplay<'_, BrightMagenta, Self>
fn on_bright_magenta(&self) -> BgColorDisplay<'_, BrightMagenta, Self>
Change the background color to bright magenta
§fn bright_purple(&self) -> FgColorDisplay<'_, BrightMagenta, Self>
fn bright_purple(&self) -> FgColorDisplay<'_, BrightMagenta, Self>
Change the foreground color to bright purple
§fn on_bright_purple(&self) -> BgColorDisplay<'_, BrightMagenta, Self>
fn on_bright_purple(&self) -> BgColorDisplay<'_, BrightMagenta, Self>
Change the background color to bright purple
§fn bright_cyan(&self) -> FgColorDisplay<'_, BrightCyan, Self>
fn bright_cyan(&self) -> FgColorDisplay<'_, BrightCyan, Self>
Change the foreground color to bright cyan
§fn on_bright_cyan(&self) -> BgColorDisplay<'_, BrightCyan, Self>
fn on_bright_cyan(&self) -> BgColorDisplay<'_, BrightCyan, Self>
Change the background color to bright cyan
§fn bright_white(&self) -> FgColorDisplay<'_, BrightWhite, Self>
fn bright_white(&self) -> FgColorDisplay<'_, BrightWhite, Self>
Change the foreground color to bright white
§fn on_bright_white(&self) -> BgColorDisplay<'_, BrightWhite, Self>
fn on_bright_white(&self) -> BgColorDisplay<'_, BrightWhite, Self>
Change the background color to bright white
§fn blink_fast(&self) -> BlinkFastDisplay<'_, Self>
fn blink_fast(&self) -> BlinkFastDisplay<'_, Self>
Make the text blink (but fast!)
Hide the text
§fn strikethrough(&self) -> StrikeThroughDisplay<'_, Self>
fn strikethrough(&self) -> StrikeThroughDisplay<'_, Self>
Cross out the text
§fn color<Color>(&self, color: Color) -> FgDynColorDisplay<'_, Color, Self>where
Color: DynColor,
fn color<Color>(&self, color: Color) -> FgDynColorDisplay<'_, Color, Self>where
Color: DynColor,
Set the foreground color at runtime. Only use if you do not know which color will be used at
compile-time. If the color is constant, use either [
OwoColorize::fg] or
a color-specific method, such as [OwoColorize::green], Read more§fn on_color<Color>(&self, color: Color) -> BgDynColorDisplay<'_, Color, Self>where
Color: DynColor,
fn on_color<Color>(&self, color: Color) -> BgDynColorDisplay<'_, Color, Self>where
Color: DynColor,
Set the background color at runtime. Only use if you do not know what color to use at
compile-time. If the color is constant, use either [
OwoColorize::bg] or
a color-specific method, such as [OwoColorize::on_yellow], Read more§fn fg_rgb<const R: u8, const G: u8, const B: u8>(
&self,
) -> FgColorDisplay<'_, CustomColor<R, G, B>, Self>
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Set the foreground color to a specific RGB value.
§fn bg_rgb<const R: u8, const G: u8, const B: u8>(
&self,
) -> BgColorDisplay<'_, CustomColor<R, G, B>, Self>
fn bg_rgb<const R: u8, const G: u8, const B: u8>( &self, ) -> BgColorDisplay<'_, CustomColor<R, G, B>, Self>
Set the background color to a specific RGB value.
§fn truecolor(&self, r: u8, g: u8, b: u8) -> FgDynColorDisplay<'_, Rgb, Self>
fn truecolor(&self, r: u8, g: u8, b: u8) -> FgDynColorDisplay<'_, Rgb, Self>
Sets the foreground color to an RGB value.
§fn on_truecolor(&self, r: u8, g: u8, b: u8) -> BgDynColorDisplay<'_, Rgb, Self>
fn on_truecolor(&self, r: u8, g: u8, b: u8) -> BgDynColorDisplay<'_, Rgb, Self>
Sets the background color to an RGB value.
§impl<T, I> RunSynchronousExt<I> for Twhere
T: Synchronous,
I: IntoIterator<Item = TimedSample<(ClockReset, <T as SynchronousIO>::I)>>,
impl<T, I> RunSynchronousExt<I> for Twhere
T: Synchronous,
I: IntoIterator<Item = TimedSample<(ClockReset, <T as SynchronousIO>::I)>>,
§fn run(
&self,
iter: I,
) -> RunSynchronous<'_, T, <I as IntoIterator>::IntoIter, <T as Synchronous>::S>
fn run( &self, iter: I, ) -> RunSynchronous<'_, T, <I as IntoIterator>::IntoIter, <T as Synchronous>::S>
Runs the circuit with the given iterator of timed inputs.
§impl<T> RunSynchronousFeedbackExt for Twhere
T: Synchronous,
impl<T> RunSynchronousFeedbackExt for Twhere
T: Synchronous,
§impl<I, P, O> SynchronousProbeExt<I, P, O> for I
impl<I, P, O> SynchronousProbeExt<I, P, O> for I
§fn synchronous_sample(self) -> SynchronousSample<I>where
I: Iterator<Item = TracedSample<(ClockReset, P), O>>,
P: Digital,
O: Digital,
fn synchronous_sample(self) -> SynchronousSample<I>where
I: Iterator<Item = TracedSample<(ClockReset, P), O>>,
P: Digital,
O: Digital,
Create a probe that samples values from the supplied stream
just before a positive edge of the clock