#[non_exhaustive]pub struct CreateEndpointConfigInputBuilder { /* private fields */ }
Expand description
A builder for CreateEndpointConfigInput
.
Implementations§
Source§impl CreateEndpointConfigInputBuilder
impl CreateEndpointConfigInputBuilder
Sourcepub fn endpoint_config_name(self, input: impl Into<String>) -> Self
pub fn endpoint_config_name(self, input: impl Into<String>) -> Self
The name of the endpoint configuration. You specify this name in a CreateEndpoint request.
This field is required.Sourcepub fn set_endpoint_config_name(self, input: Option<String>) -> Self
pub fn set_endpoint_config_name(self, input: Option<String>) -> Self
The name of the endpoint configuration. You specify this name in a CreateEndpoint request.
Sourcepub fn get_endpoint_config_name(&self) -> &Option<String>
pub fn get_endpoint_config_name(&self) -> &Option<String>
The name of the endpoint configuration. You specify this name in a CreateEndpoint request.
Sourcepub fn production_variants(self, input: ProductionVariant) -> Self
pub fn production_variants(self, input: ProductionVariant) -> Self
Appends an item to production_variants
.
To override the contents of this collection use set_production_variants
.
An array of ProductionVariant
objects, one for each model that you want to host at this endpoint.
Sourcepub fn set_production_variants(
self,
input: Option<Vec<ProductionVariant>>,
) -> Self
pub fn set_production_variants( self, input: Option<Vec<ProductionVariant>>, ) -> Self
An array of ProductionVariant
objects, one for each model that you want to host at this endpoint.
Sourcepub fn get_production_variants(&self) -> &Option<Vec<ProductionVariant>>
pub fn get_production_variants(&self) -> &Option<Vec<ProductionVariant>>
An array of ProductionVariant
objects, one for each model that you want to host at this endpoint.
Sourcepub fn data_capture_config(self, input: DataCaptureConfig) -> Self
pub fn data_capture_config(self, input: DataCaptureConfig) -> Self
Configuration to control how SageMaker AI captures inference data.
Sourcepub fn set_data_capture_config(self, input: Option<DataCaptureConfig>) -> Self
pub fn set_data_capture_config(self, input: Option<DataCaptureConfig>) -> Self
Configuration to control how SageMaker AI captures inference data.
Sourcepub fn get_data_capture_config(&self) -> &Option<DataCaptureConfig>
pub fn get_data_capture_config(&self) -> &Option<DataCaptureConfig>
Configuration to control how SageMaker AI captures inference data.
Appends an item to tags
.
To override the contents of this collection use set_tags
.
An array of key-value pairs. You can use tags to categorize your Amazon Web Services resources in different ways, for example, by purpose, owner, or environment. For more information, see Tagging Amazon Web Services Resources.
An array of key-value pairs. You can use tags to categorize your Amazon Web Services resources in different ways, for example, by purpose, owner, or environment. For more information, see Tagging Amazon Web Services Resources.
An array of key-value pairs. You can use tags to categorize your Amazon Web Services resources in different ways, for example, by purpose, owner, or environment. For more information, see Tagging Amazon Web Services Resources.
Sourcepub fn kms_key_id(self, input: impl Into<String>) -> Self
pub fn kms_key_id(self, input: impl Into<String>) -> Self
The Amazon Resource Name (ARN) of a Amazon Web Services Key Management Service key that SageMaker uses to encrypt data on the storage volume attached to the ML compute instance that hosts the endpoint.
The KmsKeyId can be any of the following formats:
-
Key ID:
1234abcd-12ab-34cd-56ef-1234567890ab
-
Key ARN:
arn:aws:kms:us-west-2:111122223333:key/1234abcd-12ab-34cd-56ef-1234567890ab
-
Alias name:
alias/ExampleAlias
-
Alias name ARN:
arn:aws:kms:us-west-2:111122223333:alias/ExampleAlias
The KMS key policy must grant permission to the IAM role that you specify in your CreateEndpoint
, UpdateEndpoint
requests. For more information, refer to the Amazon Web Services Key Management Service section Using Key Policies in Amazon Web Services KMS
Certain Nitro-based instances include local storage, dependent on the instance type. Local storage volumes are encrypted using a hardware module on the instance. You can't request a KmsKeyId
when using an instance type with local storage. If any of the models that you specify in the ProductionVariants
parameter use nitro-based instances with local storage, do not specify a value for the KmsKeyId
parameter. If you specify a value for KmsKeyId
when using any nitro-based instances with local storage, the call to CreateEndpointConfig
fails.
For a list of instance types that support local instance storage, see Instance Store Volumes.
For more information about local instance storage encryption, see SSD Instance Store Volumes.
Sourcepub fn set_kms_key_id(self, input: Option<String>) -> Self
pub fn set_kms_key_id(self, input: Option<String>) -> Self
The Amazon Resource Name (ARN) of a Amazon Web Services Key Management Service key that SageMaker uses to encrypt data on the storage volume attached to the ML compute instance that hosts the endpoint.
The KmsKeyId can be any of the following formats:
-
Key ID:
1234abcd-12ab-34cd-56ef-1234567890ab
-
Key ARN:
arn:aws:kms:us-west-2:111122223333:key/1234abcd-12ab-34cd-56ef-1234567890ab
-
Alias name:
alias/ExampleAlias
-
Alias name ARN:
arn:aws:kms:us-west-2:111122223333:alias/ExampleAlias
The KMS key policy must grant permission to the IAM role that you specify in your CreateEndpoint
, UpdateEndpoint
requests. For more information, refer to the Amazon Web Services Key Management Service section Using Key Policies in Amazon Web Services KMS
Certain Nitro-based instances include local storage, dependent on the instance type. Local storage volumes are encrypted using a hardware module on the instance. You can't request a KmsKeyId
when using an instance type with local storage. If any of the models that you specify in the ProductionVariants
parameter use nitro-based instances with local storage, do not specify a value for the KmsKeyId
parameter. If you specify a value for KmsKeyId
when using any nitro-based instances with local storage, the call to CreateEndpointConfig
fails.
For a list of instance types that support local instance storage, see Instance Store Volumes.
For more information about local instance storage encryption, see SSD Instance Store Volumes.
Sourcepub fn get_kms_key_id(&self) -> &Option<String>
pub fn get_kms_key_id(&self) -> &Option<String>
The Amazon Resource Name (ARN) of a Amazon Web Services Key Management Service key that SageMaker uses to encrypt data on the storage volume attached to the ML compute instance that hosts the endpoint.
The KmsKeyId can be any of the following formats:
-
Key ID:
1234abcd-12ab-34cd-56ef-1234567890ab
-
Key ARN:
arn:aws:kms:us-west-2:111122223333:key/1234abcd-12ab-34cd-56ef-1234567890ab
-
Alias name:
alias/ExampleAlias
-
Alias name ARN:
arn:aws:kms:us-west-2:111122223333:alias/ExampleAlias
The KMS key policy must grant permission to the IAM role that you specify in your CreateEndpoint
, UpdateEndpoint
requests. For more information, refer to the Amazon Web Services Key Management Service section Using Key Policies in Amazon Web Services KMS
Certain Nitro-based instances include local storage, dependent on the instance type. Local storage volumes are encrypted using a hardware module on the instance. You can't request a KmsKeyId
when using an instance type with local storage. If any of the models that you specify in the ProductionVariants
parameter use nitro-based instances with local storage, do not specify a value for the KmsKeyId
parameter. If you specify a value for KmsKeyId
when using any nitro-based instances with local storage, the call to CreateEndpointConfig
fails.
For a list of instance types that support local instance storage, see Instance Store Volumes.
For more information about local instance storage encryption, see SSD Instance Store Volumes.
Sourcepub fn async_inference_config(self, input: AsyncInferenceConfig) -> Self
pub fn async_inference_config(self, input: AsyncInferenceConfig) -> Self
Specifies configuration for how an endpoint performs asynchronous inference. This is a required field in order for your Endpoint to be invoked using InvokeEndpointAsync.
Sourcepub fn set_async_inference_config(
self,
input: Option<AsyncInferenceConfig>,
) -> Self
pub fn set_async_inference_config( self, input: Option<AsyncInferenceConfig>, ) -> Self
Specifies configuration for how an endpoint performs asynchronous inference. This is a required field in order for your Endpoint to be invoked using InvokeEndpointAsync.
Sourcepub fn get_async_inference_config(&self) -> &Option<AsyncInferenceConfig>
pub fn get_async_inference_config(&self) -> &Option<AsyncInferenceConfig>
Specifies configuration for how an endpoint performs asynchronous inference. This is a required field in order for your Endpoint to be invoked using InvokeEndpointAsync.
Sourcepub fn explainer_config(self, input: ExplainerConfig) -> Self
pub fn explainer_config(self, input: ExplainerConfig) -> Self
A member of CreateEndpointConfig
that enables explainers.
Sourcepub fn set_explainer_config(self, input: Option<ExplainerConfig>) -> Self
pub fn set_explainer_config(self, input: Option<ExplainerConfig>) -> Self
A member of CreateEndpointConfig
that enables explainers.
Sourcepub fn get_explainer_config(&self) -> &Option<ExplainerConfig>
pub fn get_explainer_config(&self) -> &Option<ExplainerConfig>
A member of CreateEndpointConfig
that enables explainers.
Sourcepub fn shadow_production_variants(self, input: ProductionVariant) -> Self
pub fn shadow_production_variants(self, input: ProductionVariant) -> Self
Appends an item to shadow_production_variants
.
To override the contents of this collection use set_shadow_production_variants
.
An array of ProductionVariant
objects, one for each model that you want to host at this endpoint in shadow mode with production traffic replicated from the model specified on ProductionVariants
. If you use this field, you can only specify one variant for ProductionVariants
and one variant for ShadowProductionVariants
.
Sourcepub fn set_shadow_production_variants(
self,
input: Option<Vec<ProductionVariant>>,
) -> Self
pub fn set_shadow_production_variants( self, input: Option<Vec<ProductionVariant>>, ) -> Self
An array of ProductionVariant
objects, one for each model that you want to host at this endpoint in shadow mode with production traffic replicated from the model specified on ProductionVariants
. If you use this field, you can only specify one variant for ProductionVariants
and one variant for ShadowProductionVariants
.
Sourcepub fn get_shadow_production_variants(&self) -> &Option<Vec<ProductionVariant>>
pub fn get_shadow_production_variants(&self) -> &Option<Vec<ProductionVariant>>
An array of ProductionVariant
objects, one for each model that you want to host at this endpoint in shadow mode with production traffic replicated from the model specified on ProductionVariants
. If you use this field, you can only specify one variant for ProductionVariants
and one variant for ShadowProductionVariants
.
Sourcepub fn execution_role_arn(self, input: impl Into<String>) -> Self
pub fn execution_role_arn(self, input: impl Into<String>) -> Self
The Amazon Resource Name (ARN) of an IAM role that Amazon SageMaker AI can assume to perform actions on your behalf. For more information, see SageMaker AI Roles.
To be able to pass this role to Amazon SageMaker AI, the caller of this action must have the iam:PassRole
permission.
Sourcepub fn set_execution_role_arn(self, input: Option<String>) -> Self
pub fn set_execution_role_arn(self, input: Option<String>) -> Self
The Amazon Resource Name (ARN) of an IAM role that Amazon SageMaker AI can assume to perform actions on your behalf. For more information, see SageMaker AI Roles.
To be able to pass this role to Amazon SageMaker AI, the caller of this action must have the iam:PassRole
permission.
Sourcepub fn get_execution_role_arn(&self) -> &Option<String>
pub fn get_execution_role_arn(&self) -> &Option<String>
The Amazon Resource Name (ARN) of an IAM role that Amazon SageMaker AI can assume to perform actions on your behalf. For more information, see SageMaker AI Roles.
To be able to pass this role to Amazon SageMaker AI, the caller of this action must have the iam:PassRole
permission.
Sourcepub fn vpc_config(self, input: VpcConfig) -> Self
pub fn vpc_config(self, input: VpcConfig) -> Self
Specifies an Amazon Virtual Private Cloud (VPC) that your SageMaker jobs, hosted models, and compute resources have access to. You can control access to and from your resources by configuring a VPC. For more information, see Give SageMaker Access to Resources in your Amazon VPC.
Sourcepub fn set_vpc_config(self, input: Option<VpcConfig>) -> Self
pub fn set_vpc_config(self, input: Option<VpcConfig>) -> Self
Specifies an Amazon Virtual Private Cloud (VPC) that your SageMaker jobs, hosted models, and compute resources have access to. You can control access to and from your resources by configuring a VPC. For more information, see Give SageMaker Access to Resources in your Amazon VPC.
Sourcepub fn get_vpc_config(&self) -> &Option<VpcConfig>
pub fn get_vpc_config(&self) -> &Option<VpcConfig>
Specifies an Amazon Virtual Private Cloud (VPC) that your SageMaker jobs, hosted models, and compute resources have access to. You can control access to and from your resources by configuring a VPC. For more information, see Give SageMaker Access to Resources in your Amazon VPC.
Sourcepub fn enable_network_isolation(self, input: bool) -> Self
pub fn enable_network_isolation(self, input: bool) -> Self
Sets whether all model containers deployed to the endpoint are isolated. If they are, no inbound or outbound network calls can be made to or from the model containers.
Sourcepub fn set_enable_network_isolation(self, input: Option<bool>) -> Self
pub fn set_enable_network_isolation(self, input: Option<bool>) -> Self
Sets whether all model containers deployed to the endpoint are isolated. If they are, no inbound or outbound network calls can be made to or from the model containers.
Sourcepub fn get_enable_network_isolation(&self) -> &Option<bool>
pub fn get_enable_network_isolation(&self) -> &Option<bool>
Sets whether all model containers deployed to the endpoint are isolated. If they are, no inbound or outbound network calls can be made to or from the model containers.
Sourcepub fn build(self) -> Result<CreateEndpointConfigInput, BuildError>
pub fn build(self) -> Result<CreateEndpointConfigInput, BuildError>
Consumes the builder and constructs a CreateEndpointConfigInput
.
Source§impl CreateEndpointConfigInputBuilder
impl CreateEndpointConfigInputBuilder
Sourcepub async fn send_with(
self,
client: &Client,
) -> Result<CreateEndpointConfigOutput, SdkError<CreateEndpointConfigError, HttpResponse>>
pub async fn send_with( self, client: &Client, ) -> Result<CreateEndpointConfigOutput, SdkError<CreateEndpointConfigError, HttpResponse>>
Sends a request with this input using the given client.
Trait Implementations§
Source§impl Clone for CreateEndpointConfigInputBuilder
impl Clone for CreateEndpointConfigInputBuilder
Source§fn clone(&self) -> CreateEndpointConfigInputBuilder
fn clone(&self) -> CreateEndpointConfigInputBuilder
1.0.0 · Source§const fn clone_from(&mut self, source: &Self)
const fn clone_from(&mut self, source: &Self)
source
. Read moreSource§impl Default for CreateEndpointConfigInputBuilder
impl Default for CreateEndpointConfigInputBuilder
Source§fn default() -> CreateEndpointConfigInputBuilder
fn default() -> CreateEndpointConfigInputBuilder
Source§impl PartialEq for CreateEndpointConfigInputBuilder
impl PartialEq for CreateEndpointConfigInputBuilder
Source§fn eq(&self, other: &CreateEndpointConfigInputBuilder) -> bool
fn eq(&self, other: &CreateEndpointConfigInputBuilder) -> bool
self
and other
values to be equal, and is used by ==
.impl StructuralPartialEq for CreateEndpointConfigInputBuilder
Auto Trait Implementations§
impl Freeze for CreateEndpointConfigInputBuilder
impl RefUnwindSafe for CreateEndpointConfigInputBuilder
impl Send for CreateEndpointConfigInputBuilder
impl Sync for CreateEndpointConfigInputBuilder
impl Unpin for CreateEndpointConfigInputBuilder
impl UnwindSafe for CreateEndpointConfigInputBuilder
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
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T> Instrument for T
impl<T> Instrument for T
Source§fn instrument(self, span: Span) -> Instrumented<Self>
fn instrument(self, span: Span) -> Instrumented<Self>
Source§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>
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>
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> Paint for Twhere
T: ?Sized,
impl<T> Paint for Twhere
T: ?Sized,
Source§fn fg(&self, value: Color) -> Painted<&T>
fn fg(&self, value: Color) -> Painted<&T>
Returns a styled value derived from self
with the foreground set to
value
.
This method should be used rarely. Instead, prefer to use color-specific
builder methods like red()
and
green()
, which have the same functionality but are
pithier.
§Example
Set foreground color to white using fg()
:
use yansi::{Paint, Color};
painted.fg(Color::White);
Set foreground color to white using white()
.
use yansi::Paint;
painted.white();
Source§fn bright_black(&self) -> Painted<&T>
fn bright_black(&self) -> Painted<&T>
Source§fn bright_red(&self) -> Painted<&T>
fn bright_red(&self) -> Painted<&T>
Source§fn bright_green(&self) -> Painted<&T>
fn bright_green(&self) -> Painted<&T>
Source§fn bright_yellow(&self) -> Painted<&T>
fn bright_yellow(&self) -> Painted<&T>
Source§fn bright_blue(&self) -> Painted<&T>
fn bright_blue(&self) -> Painted<&T>
Source§fn bright_magenta(&self) -> Painted<&T>
fn bright_magenta(&self) -> Painted<&T>
Source§fn bright_cyan(&self) -> Painted<&T>
fn bright_cyan(&self) -> Painted<&T>
Source§fn bright_white(&self) -> Painted<&T>
fn bright_white(&self) -> Painted<&T>
Source§fn bg(&self, value: Color) -> Painted<&T>
fn bg(&self, value: Color) -> Painted<&T>
Returns a styled value derived from self
with the background set to
value
.
This method should be used rarely. Instead, prefer to use color-specific
builder methods like on_red()
and
on_green()
, which have the same functionality but
are pithier.
§Example
Set background color to red using fg()
:
use yansi::{Paint, Color};
painted.bg(Color::Red);
Set background color to red using on_red()
.
use yansi::Paint;
painted.on_red();
Source§fn on_primary(&self) -> Painted<&T>
fn on_primary(&self) -> Painted<&T>
Source§fn on_magenta(&self) -> Painted<&T>
fn on_magenta(&self) -> Painted<&T>
Source§fn on_bright_black(&self) -> Painted<&T>
fn on_bright_black(&self) -> Painted<&T>
Source§fn on_bright_red(&self) -> Painted<&T>
fn on_bright_red(&self) -> Painted<&T>
Source§fn on_bright_green(&self) -> Painted<&T>
fn on_bright_green(&self) -> Painted<&T>
Source§fn on_bright_yellow(&self) -> Painted<&T>
fn on_bright_yellow(&self) -> Painted<&T>
Source§fn on_bright_blue(&self) -> Painted<&T>
fn on_bright_blue(&self) -> Painted<&T>
Source§fn on_bright_magenta(&self) -> Painted<&T>
fn on_bright_magenta(&self) -> Painted<&T>
Source§fn on_bright_cyan(&self) -> Painted<&T>
fn on_bright_cyan(&self) -> Painted<&T>
Source§fn on_bright_white(&self) -> Painted<&T>
fn on_bright_white(&self) -> Painted<&T>
Source§fn attr(&self, value: Attribute) -> Painted<&T>
fn attr(&self, value: Attribute) -> Painted<&T>
Enables the styling Attribute
value
.
This method should be used rarely. Instead, prefer to use
attribute-specific builder methods like bold()
and
underline()
, which have the same functionality
but are pithier.
§Example
Make text bold using attr()
:
use yansi::{Paint, Attribute};
painted.attr(Attribute::Bold);
Make text bold using using bold()
.
use yansi::Paint;
painted.bold();
Source§fn rapid_blink(&self) -> Painted<&T>
fn rapid_blink(&self) -> Painted<&T>
Source§fn quirk(&self, value: Quirk) -> Painted<&T>
fn quirk(&self, value: Quirk) -> Painted<&T>
Enables the yansi
Quirk
value
.
This method should be used rarely. Instead, prefer to use quirk-specific
builder methods like mask()
and
wrap()
, which have the same functionality but are
pithier.
§Example
Enable wrapping using .quirk()
:
use yansi::{Paint, Quirk};
painted.quirk(Quirk::Wrap);
Enable wrapping using wrap()
.
use yansi::Paint;
painted.wrap();
Source§fn clear(&self) -> Painted<&T>
👎Deprecated since 1.0.1: renamed to resetting()
due to conflicts with Vec::clear()
.
The clear()
method will be removed in a future release.
fn clear(&self) -> Painted<&T>
resetting()
due to conflicts with Vec::clear()
.
The clear()
method will be removed in a future release.Source§fn whenever(&self, value: Condition) -> Painted<&T>
fn whenever(&self, value: Condition) -> Painted<&T>
Conditionally enable styling based on whether the Condition
value
applies. Replaces any previous condition.
See the crate level docs for more details.
§Example
Enable styling painted
only when both stdout
and stderr
are TTYs:
use yansi::{Paint, Condition};
painted.red().on_yellow().whenever(Condition::STDOUTERR_ARE_TTY);