Struct rusoto_kms::EncryptRequest [−][src]
Fields
encryption_algorithm: Option<String>
Specifies the encryption algorithm that AWS KMS will use to encrypt the plaintext message. The algorithm must be compatible with the CMK that you specify.
This parameter is required only for asymmetric CMKs. The default value, SYMMETRIC_DEFAULT
, is the algorithm used for symmetric CMKs. If you are using an asymmetric CMK, we recommend RSAES_OAEP_SHA_256.
encryption_context: Option<HashMap<String, String>>
Specifies the encryption context that will be used to encrypt the data. An encryption context is valid only for cryptographic operations with a symmetric CMK. The standard asymmetric encryption algorithms that AWS KMS uses do not support an encryption context.
An encryption context is a collection of non-secret key-value pairs that represents additional authenticated data. When you use an encryption context to encrypt data, you must specify the same (an exact case-sensitive match) encryption context to decrypt the data. An encryption context is optional when encrypting with a symmetric CMK, but it is highly recommended.
For more information, see Encryption Context in the AWS Key Management Service Developer Guide.
grant_tokens: Option<Vec<String>>
A list of grant tokens.
For more information, see Grant Tokens in the AWS Key Management Service Developer Guide.
key_id: String
A unique identifier for the customer master key (CMK).
To specify a CMK, use its key ID, Amazon Resource Name (ARN), alias name, or alias ARN. When using an alias name, prefix it with "alias/"
. To specify a CMK in a different AWS account, you must use the key ARN or alias ARN.
For example:
-
Key ID:
1234abcd-12ab-34cd-56ef-1234567890ab
-
Key ARN:
arn:aws:kms:us-east-2:111122223333:key/1234abcd-12ab-34cd-56ef-1234567890ab
-
Alias name:
alias/ExampleAlias
-
Alias ARN:
arn:aws:kms:us-east-2:111122223333:alias/ExampleAlias
To get the key ID and key ARN for a CMK, use ListKeys or DescribeKey. To get the alias name and alias ARN, use ListAliases.
plaintext: Bytes
Data to be encrypted.
Trait Implementations
impl Clone for EncryptRequest
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fn clone(&self) -> EncryptRequest
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pub fn clone_from(&mut self, source: &Self)
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impl Debug for EncryptRequest
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impl Default for EncryptRequest
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fn default() -> EncryptRequest
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impl PartialEq<EncryptRequest> for EncryptRequest
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fn eq(&self, other: &EncryptRequest) -> bool
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fn ne(&self, other: &EncryptRequest) -> bool
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impl Serialize for EncryptRequest
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fn serialize<__S>(&self, __serializer: __S) -> Result<__S::Ok, __S::Error> where
__S: Serializer,
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__S: Serializer,
impl StructuralPartialEq for EncryptRequest
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Auto Trait Implementations
impl RefUnwindSafe for EncryptRequest
impl Send for EncryptRequest
impl Sync for EncryptRequest
impl Unpin for EncryptRequest
impl UnwindSafe for EncryptRequest
Blanket Implementations
impl<T> Any for T where
T: 'static + ?Sized,
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T: 'static + ?Sized,
impl<T> Borrow<T> for T where
T: ?Sized,
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T: ?Sized,
impl<T> BorrowMut<T> for T where
T: ?Sized,
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T: ?Sized,
pub fn borrow_mut(&mut self) -> &mut T
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impl<T> From<T> for T
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impl<T> Instrument for T
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pub fn instrument(self, span: Span) -> Instrumented<Self>
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pub fn in_current_span(self) -> Instrumented<Self>
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impl<T, U> Into<U> for T where
U: From<T>,
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U: From<T>,
impl<T> Same<T> for T
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type Output = T
Should always be Self
impl<T> Sealed<T> for T where
T: ?Sized,
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T: ?Sized,
impl<T> ToOwned for T where
T: Clone,
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T: Clone,
type Owned = T
The resulting type after obtaining ownership.
pub fn to_owned(&self) -> T
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pub fn clone_into(&self, target: &mut T)
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impl<T, U> TryFrom<U> for T where
U: Into<T>,
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U: Into<T>,
type Error = Infallible
The type returned in the event of a conversion error.
pub fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>
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impl<T, U> TryInto<U> for T where
U: TryFrom<T>,
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U: TryFrom<T>,