#[non_exhaustive]pub struct NodegroupUpdateConfigBuilder { /* private fields */ }
Expand description
A builder for NodegroupUpdateConfig
.
Implementations§
Source§impl NodegroupUpdateConfigBuilder
impl NodegroupUpdateConfigBuilder
The maximum number of nodes unavailable at once during a version update. Nodes are updated in parallel. This value or maxUnavailablePercentage
is required to have a value.The maximum number is 100.
The maximum number of nodes unavailable at once during a version update. Nodes are updated in parallel. This value or maxUnavailablePercentage
is required to have a value.The maximum number is 100.
The maximum number of nodes unavailable at once during a version update. Nodes are updated in parallel. This value or maxUnavailablePercentage
is required to have a value.The maximum number is 100.
The maximum percentage of nodes unavailable during a version update. This percentage of nodes are updated in parallel, up to 100 nodes at once. This value or maxUnavailable
is required to have a value.
The maximum percentage of nodes unavailable during a version update. This percentage of nodes are updated in parallel, up to 100 nodes at once. This value or maxUnavailable
is required to have a value.
The maximum percentage of nodes unavailable during a version update. This percentage of nodes are updated in parallel, up to 100 nodes at once. This value or maxUnavailable
is required to have a value.
Sourcepub fn update_strategy(self, input: NodegroupUpdateStrategies) -> Self
pub fn update_strategy(self, input: NodegroupUpdateStrategies) -> Self
The configuration for the behavior to follow during a node group version update of this managed node group. You choose between two possible strategies for replacing nodes during an UpdateNodegroupVersion
action.
An Amazon EKS managed node group updates by replacing nodes with new nodes of newer AMI versions in parallel. The update strategy changes the managed node update behavior of the managed node group for each quantity. The default strategy has guardrails to protect you from misconfiguration and launches the new instances first, before terminating the old instances. The minimal strategy removes the guardrails and terminates the old instances before launching the new instances. This minimal strategy is useful in scenarios where you are constrained to resources or costs (for example, with hardware accelerators such as GPUs).
Sourcepub fn set_update_strategy(
self,
input: Option<NodegroupUpdateStrategies>,
) -> Self
pub fn set_update_strategy( self, input: Option<NodegroupUpdateStrategies>, ) -> Self
The configuration for the behavior to follow during a node group version update of this managed node group. You choose between two possible strategies for replacing nodes during an UpdateNodegroupVersion
action.
An Amazon EKS managed node group updates by replacing nodes with new nodes of newer AMI versions in parallel. The update strategy changes the managed node update behavior of the managed node group for each quantity. The default strategy has guardrails to protect you from misconfiguration and launches the new instances first, before terminating the old instances. The minimal strategy removes the guardrails and terminates the old instances before launching the new instances. This minimal strategy is useful in scenarios where you are constrained to resources or costs (for example, with hardware accelerators such as GPUs).
Sourcepub fn get_update_strategy(&self) -> &Option<NodegroupUpdateStrategies>
pub fn get_update_strategy(&self) -> &Option<NodegroupUpdateStrategies>
The configuration for the behavior to follow during a node group version update of this managed node group. You choose between two possible strategies for replacing nodes during an UpdateNodegroupVersion
action.
An Amazon EKS managed node group updates by replacing nodes with new nodes of newer AMI versions in parallel. The update strategy changes the managed node update behavior of the managed node group for each quantity. The default strategy has guardrails to protect you from misconfiguration and launches the new instances first, before terminating the old instances. The minimal strategy removes the guardrails and terminates the old instances before launching the new instances. This minimal strategy is useful in scenarios where you are constrained to resources or costs (for example, with hardware accelerators such as GPUs).
Sourcepub fn build(self) -> NodegroupUpdateConfig
pub fn build(self) -> NodegroupUpdateConfig
Consumes the builder and constructs a NodegroupUpdateConfig
.
Trait Implementations§
Source§impl Clone for NodegroupUpdateConfigBuilder
impl Clone for NodegroupUpdateConfigBuilder
Source§fn clone(&self) -> NodegroupUpdateConfigBuilder
fn clone(&self) -> NodegroupUpdateConfigBuilder
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source
. Read moreSource§impl Debug for NodegroupUpdateConfigBuilder
impl Debug for NodegroupUpdateConfigBuilder
Source§impl Default for NodegroupUpdateConfigBuilder
impl Default for NodegroupUpdateConfigBuilder
Source§fn default() -> NodegroupUpdateConfigBuilder
fn default() -> NodegroupUpdateConfigBuilder
Source§impl PartialEq for NodegroupUpdateConfigBuilder
impl PartialEq for NodegroupUpdateConfigBuilder
Source§fn eq(&self, other: &NodegroupUpdateConfigBuilder) -> bool
fn eq(&self, other: &NodegroupUpdateConfigBuilder) -> bool
self
and other
values to be equal, and is used by ==
.impl StructuralPartialEq for NodegroupUpdateConfigBuilder
Auto Trait Implementations§
impl Freeze for NodegroupUpdateConfigBuilder
impl RefUnwindSafe for NodegroupUpdateConfigBuilder
impl Send for NodegroupUpdateConfigBuilder
impl Sync for NodegroupUpdateConfigBuilder
impl Unpin for NodegroupUpdateConfigBuilder
impl UnwindSafe for NodegroupUpdateConfigBuilder
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