pub struct TransactionProcessorRunInput {
pub manifest_encoded_instructions: Vec<u8>,
pub global_address_reservations: Vec<GlobalAddressReservation>,
pub references: Vec<Reference>,
pub blobs: IndexMap<Hash, Vec<u8>>,
}
Fields§
§manifest_encoded_instructions: Vec<u8>
§global_address_reservations: Vec<GlobalAddressReservation>
§references: Vec<Reference>
§blobs: IndexMap<Hash, Vec<u8>>
Trait Implementations§
Source§impl Debug for TransactionProcessorRunInput
impl Debug for TransactionProcessorRunInput
Source§impl<D: Decoder<ScryptoCustomValueKind>> Decode<ScryptoCustomValueKind, D> for TransactionProcessorRunInput
impl<D: Decoder<ScryptoCustomValueKind>> Decode<ScryptoCustomValueKind, D> for TransactionProcessorRunInput
Source§fn decode_body_with_value_kind(
decoder: &mut D,
value_kind: ValueKind<ScryptoCustomValueKind>,
) -> Result<Self, DecodeError>
fn decode_body_with_value_kind( decoder: &mut D, value_kind: ValueKind<ScryptoCustomValueKind>, ) -> Result<Self, DecodeError>
Decodes the type from the decoder, which should match a preloaded value kind. Read more
Source§impl Describe<ScryptoCustomTypeKind> for TransactionProcessorRunInput
impl Describe<ScryptoCustomTypeKind> for TransactionProcessorRunInput
Source§const TYPE_ID: RustTypeId
const TYPE_ID: RustTypeId
The
TYPE_ID
should give a unique identifier for its SBOR schema type.
An SBOR schema type capture details about the SBOR payload, how it should be interpreted, validated and displayed. Read moreSource§fn type_data() -> TypeData<ScryptoCustomTypeKind, RustTypeId>
fn type_data() -> TypeData<ScryptoCustomTypeKind, RustTypeId>
Returns the local schema for the given type. Read more
Source§fn add_all_dependencies(aggregator: &mut TypeAggregator<ScryptoCustomTypeKind>)
fn add_all_dependencies(aggregator: &mut TypeAggregator<ScryptoCustomTypeKind>)
For each type referenced in
get_local_type_data
, we need to ensure that the type and all of its own references
get added to the aggregator. Read moreSource§impl<E: Encoder<ScryptoCustomValueKind>> Encode<ScryptoCustomValueKind, E> for TransactionProcessorRunInput
impl<E: Encoder<ScryptoCustomValueKind>> Encode<ScryptoCustomValueKind, E> for TransactionProcessorRunInput
Source§fn encode_value_kind(&self, encoder: &mut E) -> Result<(), EncodeError>
fn encode_value_kind(&self, encoder: &mut E) -> Result<(), EncodeError>
Encodes the SBOR value’s kind to the encoder
Source§fn encode_body(&self, encoder: &mut E) -> Result<(), EncodeError>
fn encode_body(&self, encoder: &mut E) -> Result<(), EncodeError>
Encodes the SBOR body of the type to the encoder. Read more
Source§impl PartialEq for TransactionProcessorRunInput
impl PartialEq for TransactionProcessorRunInput
Source§fn eq(&self, other: &TransactionProcessorRunInput) -> bool
fn eq(&self, other: &TransactionProcessorRunInput) -> bool
Tests for
self
and other
values to be equal, and is used by ==
.Source§impl SborTuple<ScryptoCustomValueKind> for TransactionProcessorRunInput
impl SborTuple<ScryptoCustomValueKind> for TransactionProcessorRunInput
fn get_length(&self) -> usize
impl Eq for TransactionProcessorRunInput
impl StructuralPartialEq for TransactionProcessorRunInput
Auto Trait Implementations§
impl Freeze for TransactionProcessorRunInput
impl RefUnwindSafe for TransactionProcessorRunInput
impl Send for TransactionProcessorRunInput
impl Sync for TransactionProcessorRunInput
impl Unpin for TransactionProcessorRunInput
impl UnwindSafe for TransactionProcessorRunInput
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> ContextualTryInto<U> for Twhere
U: ContextualTryFrom<T>,
impl<T, U> ContextualTryInto<U> for Twhere
U: ContextualTryFrom<T>,
type Error = <U as ContextualTryFrom<T>>::Error
type Context = <U as ContextualTryFrom<T>>::Context
fn contextual_try_into( self, context: &<U as ContextualTryFrom<T>>::Context, ) -> Result<U, <U as ContextualTryFrom<T>>::Error>
Source§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
Source§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
Source§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
Compare self to
key
and return true
if they are equal.