pub struct Mapped<Inner, M> {
pub inner: Inner,
pub mapper: M,
}Expand description
Combinator that maps the result of an inner combinator with an isomorphism that implements
Iso.
Fields§
§inner: InnerThe inner combinator.
mapper: MThe isomorphism.
Trait Implementations§
Source§impl<'x, I, O, Inner, M> Combinator<'x, I, O> for Mapped<Inner, M>where
I: VestInput,
O: VestOutput<I>,
Inner: Combinator<'x, I, O>,
Inner::V: SecureSpecCombinator<Type = <Inner::Type as View>::V>,
M: Iso<'x, Src = Inner::Type, RefSrc = Inner::SType>,
M::Dst: From<Inner::Type> + View,
Inner::SType: From<&'x M::Dst> + View,
M::V: SpecIsoProof<Src = <Inner::Type as View>::V, Dst = <M::Dst as View>::V>,
<Inner::Type as View>::V: SpecFrom<<M::Dst as View>::V>,
<M::Dst as View>::V: SpecFrom<<Inner::Type as View>::V>,
impl<'x, I, O, Inner, M> Combinator<'x, I, O> for Mapped<Inner, M>where
I: VestInput,
O: VestOutput<I>,
Inner: Combinator<'x, I, O>,
Inner::V: SecureSpecCombinator<Type = <Inner::Type as View>::V>,
M: Iso<'x, Src = Inner::Type, RefSrc = Inner::SType>,
M::Dst: From<Inner::Type> + View,
Inner::SType: From<&'x M::Dst> + View,
M::V: SpecIsoProof<Src = <Inner::Type as View>::V, Dst = <M::Dst as View>::V>,
<Inner::Type as View>::V: SpecFrom<<M::Dst as View>::V>,
<M::Dst as View>::V: SpecFrom<<Inner::Type as View>::V>,
Source§open spec fn ex_requires(&self) -> bool
open spec fn ex_requires(&self) -> bool
{ self.inner.ex_requires() }Source§exec fn serialize(
&self,
v: Self::SType,
data: &mut O,
pos: usize,
) -> res : Result<usize, SerializeError>
exec fn serialize( &self, v: Self::SType, data: &mut O, pos: usize, ) -> res : Result<usize, SerializeError>
Source§type SType = &'x <M as Iso<'x>>::Dst
type SType = &'x <M as Iso<'x>>::Dst
The input type of serialization, often a reference to
Self::Type.
For “structural” formats though (e.g., crate::regular::sequence::Pair and crate::regular::variant::Choice),
this is the tuple/sum of the corresponding Combinator::SType types.Source§impl<U1, U2, M1, M2> DisjointFrom<Mapped<U2, M2>> for Mapped<U1, M1>
impl<U1, U2, M1, M2> DisjointFrom<Mapped<U2, M2>> for Mapped<U1, M1>
Source§open spec fn disjoint_from(&self, other: &Mapped<U2, M2>) -> bool
open spec fn disjoint_from(&self, other: &Mapped<U2, M2>) -> bool
{ self.inner.disjoint_from(&other.inner) }Source§proof fn parse_disjoint_on(&self, other: &Mapped<U2, M2>, buf: Seq<u8>)
proof fn parse_disjoint_on(&self, other: &Mapped<U2, M2>, buf: Seq<u8>)
Source§impl<Inner, M> SecureSpecCombinator for Mapped<Inner, M>where
Inner: SecureSpecCombinator,
M: SpecIsoProof<Src = Inner::Type>,
Inner::Type: SpecFrom<M::Dst>,
M::Dst: SpecFrom<Inner::Type>,
impl<Inner, M> SecureSpecCombinator for Mapped<Inner, M>where
Inner: SecureSpecCombinator,
M: SpecIsoProof<Src = Inner::Type>,
Inner::Type: SpecFrom<M::Dst>,
M::Dst: SpecFrom<Inner::Type>,
Source§open spec fn is_prefix_secure() -> bool
open spec fn is_prefix_secure() -> bool
{ Inner::is_prefix_secure() }Source§open spec fn is_productive(&self) -> bool
open spec fn is_productive(&self) -> bool
{ self.inner.is_productive() }Source§proof fn theorem_serialize_parse_roundtrip(&self, v: Self::Type)
proof fn theorem_serialize_parse_roundtrip(&self, v: Self::Type)
Source§proof fn theorem_parse_serialize_roundtrip(&self, buf: Seq<u8>)
proof fn theorem_parse_serialize_roundtrip(&self, buf: Seq<u8>)
Source§proof fn lemma_prefix_secure(&self, s1: Seq<u8>, s2: Seq<u8>)
proof fn lemma_prefix_secure(&self, s1: Seq<u8>, s2: Seq<u8>)
Source§proof fn lemma_parse_length(&self, s: Seq<u8>)
proof fn lemma_parse_length(&self, s: Seq<u8>)
Source§proof fn lemma_parse_productive(&self, s: Seq<u8>)
proof fn lemma_parse_productive(&self, s: Seq<u8>)
Source§fn corollary_parse_surjective(&self, v: Self::Type)
fn corollary_parse_surjective(&self, v: Self::Type)
Source§fn corollary_serialize_injective_contraposition(
&self,
v1: Self::Type,
v2: Self::Type,
)
fn corollary_serialize_injective_contraposition( &self, v1: Self::Type, v2: Self::Type, )
Source§fn lemma_serialize_productive(&self, v: Self::Type)
fn lemma_serialize_productive(&self, v: Self::Type)
Source§impl<Inner, M> SpecCombinator for Mapped<Inner, M>
impl<Inner, M> SpecCombinator for Mapped<Inner, M>
Auto Trait Implementations§
impl<Inner, M> Freeze for Mapped<Inner, M>
impl<Inner, M> RefUnwindSafe for Mapped<Inner, M>where
Inner: RefUnwindSafe,
M: RefUnwindSafe,
impl<Inner, M> Send for Mapped<Inner, M>
impl<Inner, M> Sync for Mapped<Inner, M>
impl<Inner, M> Unpin for Mapped<Inner, M>
impl<Inner, M> UnwindSafe for Mapped<Inner, M>where
Inner: UnwindSafe,
M: UnwindSafe,
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
§impl<T, VERUS_SPEC__A> FromSpec<T> for VERUS_SPEC__Awhere
VERUS_SPEC__A: From<T>,
impl<T, VERUS_SPEC__A> FromSpec<T> for VERUS_SPEC__Awhere
VERUS_SPEC__A: From<T>,
fn obeys_from_spec() -> bool
fn from_spec(v: T) -> VERUS_SPEC__A
§impl<T, VERUS_SPEC__A> IntoSpec<T> for VERUS_SPEC__Awhere
VERUS_SPEC__A: Into<T>,
impl<T, VERUS_SPEC__A> IntoSpec<T> for VERUS_SPEC__Awhere
VERUS_SPEC__A: Into<T>,
fn obeys_into_spec() -> bool
fn into_spec(self) -> T
§impl<T, U> IntoSpecImpl<U> for Twhere
U: From<T>,
impl<T, U> IntoSpecImpl<U> for Twhere
U: From<T>,
fn obeys_into_spec() -> bool
fn into_spec(self) -> U
Source§impl<T, U> SpecTryInto<U> for Twhere
U: SpecTryFrom<T>,
impl<T, U> SpecTryInto<U> for Twhere
U: SpecTryFrom<T>,
Source§open spec fn spec_try_into(self) -> Result<U, <U as SpecTryFrom<T>>::Error>
open spec fn spec_try_into(self) -> Result<U, <U as SpecTryFrom<T>>::Error>
{ U::spec_try_from(self) }Source§type Error = <U as SpecTryFrom<T>>::Error
type Error = <U as SpecTryFrom<T>>::Error
The type returned in the event of a conversion error.