#[non_exhaustive]pub struct ReservedCacheNodesOffering {
pub reserved_cache_nodes_offering_id: Option<String>,
pub cache_node_type: Option<String>,
pub duration: Option<i32>,
pub fixed_price: Option<f64>,
pub usage_price: Option<f64>,
pub product_description: Option<String>,
pub offering_type: Option<String>,
pub recurring_charges: Option<Vec<RecurringCharge>>,
}
Expand description
Describes all of the attributes of a reserved cache node offering.
Fields (Non-exhaustive)§
This struct is marked as non-exhaustive
Struct { .. }
syntax; cannot be matched against without a wildcard ..
; and struct update syntax will not work.reserved_cache_nodes_offering_id: Option<String>
A unique identifier for the reserved cache node offering.
cache_node_type: Option<String>
The cache node type for the reserved cache node.
The following node types are supported by ElastiCache. Generally speaking, the current generation types provide more memory and computational power at lower cost when compared to their equivalent previous generation counterparts.
-
General purpose:
-
Current generation:
M7g node types:
cache.m7g.large
,cache.m7g.xlarge
,cache.m7g.2xlarge
,cache.m7g.4xlarge
,cache.m7g.8xlarge
,cache.m7g.12xlarge
,cache.m7g.16xlarge
For region availability, see Supported Node Types
M6g node types (available only for Redis OSS engine version 5.0.6 onward and for Memcached engine version 1.5.16 onward):
cache.m6g.large
,cache.m6g.xlarge
,cache.m6g.2xlarge
,cache.m6g.4xlarge
,cache.m6g.8xlarge
,cache.m6g.12xlarge
,cache.m6g.16xlarge
M5 node types:
cache.m5.large
,cache.m5.xlarge
,cache.m5.2xlarge
,cache.m5.4xlarge
,cache.m5.12xlarge
,cache.m5.24xlarge
M4 node types:
cache.m4.large
,cache.m4.xlarge
,cache.m4.2xlarge
,cache.m4.4xlarge
,cache.m4.10xlarge
T4g node types (available only for Redis OSS engine version 5.0.6 onward and Memcached engine version 1.5.16 onward):
cache.t4g.micro
,cache.t4g.small
,cache.t4g.medium
T3 node types:
cache.t3.micro
,cache.t3.small
,cache.t3.medium
T2 node types:
cache.t2.micro
,cache.t2.small
,cache.t2.medium
-
Previous generation: (not recommended. Existing clusters are still supported but creation of new clusters is not supported for these types.)
T1 node types:
cache.t1.micro
M1 node types:
cache.m1.small
,cache.m1.medium
,cache.m1.large
,cache.m1.xlarge
M3 node types:
cache.m3.medium
,cache.m3.large
,cache.m3.xlarge
,cache.m3.2xlarge
-
-
Compute optimized:
-
Previous generation: (not recommended. Existing clusters are still supported but creation of new clusters is not supported for these types.)
C1 node types:
cache.c1.xlarge
-
-
Memory optimized:
-
Current generation:
R7g node types:
cache.r7g.large
,cache.r7g.xlarge
,cache.r7g.2xlarge
,cache.r7g.4xlarge
,cache.r7g.8xlarge
,cache.r7g.12xlarge
,cache.r7g.16xlarge
For region availability, see Supported Node Types
R6g node types (available only for Redis OSS engine version 5.0.6 onward and for Memcached engine version 1.5.16 onward):
cache.r6g.large
,cache.r6g.xlarge
,cache.r6g.2xlarge
,cache.r6g.4xlarge
,cache.r6g.8xlarge
,cache.r6g.12xlarge
,cache.r6g.16xlarge
R5 node types:
cache.r5.large
,cache.r5.xlarge
,cache.r5.2xlarge
,cache.r5.4xlarge
,cache.r5.12xlarge
,cache.r5.24xlarge
R4 node types:
cache.r4.large
,cache.r4.xlarge
,cache.r4.2xlarge
,cache.r4.4xlarge
,cache.r4.8xlarge
,cache.r4.16xlarge
-
Previous generation: (not recommended. Existing clusters are still supported but creation of new clusters is not supported for these types.)
M2 node types:
cache.m2.xlarge
,cache.m2.2xlarge
,cache.m2.4xlarge
R3 node types:
cache.r3.large
,cache.r3.xlarge
,cache.r3.2xlarge
,cache.r3.4xlarge
,cache.r3.8xlarge
-
Additional node type info
-
All current generation instance types are created in Amazon VPC by default.
-
Valkey or Redis OSS append-only files (AOF) are not supported for T1 or T2 instances.
-
Valkey or Redis OSS Multi-AZ with automatic failover is not supported on T1 instances.
-
The configuration variables
appendonly
andappendfsync
are not supported on Valkey, or on Redis OSS version 2.8.22 and later.
duration: Option<i32>
The duration of the offering. in seconds.
fixed_price: Option<f64>
The fixed price charged for this offering.
usage_price: Option<f64>
The hourly price charged for this offering.
product_description: Option<String>
The cache engine used by the offering.
offering_type: Option<String>
The offering type.
recurring_charges: Option<Vec<RecurringCharge>>
The recurring price charged to run this reserved cache node.
Implementations§
Source§impl ReservedCacheNodesOffering
impl ReservedCacheNodesOffering
Sourcepub fn reserved_cache_nodes_offering_id(&self) -> Option<&str>
pub fn reserved_cache_nodes_offering_id(&self) -> Option<&str>
A unique identifier for the reserved cache node offering.
Sourcepub fn cache_node_type(&self) -> Option<&str>
pub fn cache_node_type(&self) -> Option<&str>
The cache node type for the reserved cache node.
The following node types are supported by ElastiCache. Generally speaking, the current generation types provide more memory and computational power at lower cost when compared to their equivalent previous generation counterparts.
-
General purpose:
-
Current generation:
M7g node types:
cache.m7g.large
,cache.m7g.xlarge
,cache.m7g.2xlarge
,cache.m7g.4xlarge
,cache.m7g.8xlarge
,cache.m7g.12xlarge
,cache.m7g.16xlarge
For region availability, see Supported Node Types
M6g node types (available only for Redis OSS engine version 5.0.6 onward and for Memcached engine version 1.5.16 onward):
cache.m6g.large
,cache.m6g.xlarge
,cache.m6g.2xlarge
,cache.m6g.4xlarge
,cache.m6g.8xlarge
,cache.m6g.12xlarge
,cache.m6g.16xlarge
M5 node types:
cache.m5.large
,cache.m5.xlarge
,cache.m5.2xlarge
,cache.m5.4xlarge
,cache.m5.12xlarge
,cache.m5.24xlarge
M4 node types:
cache.m4.large
,cache.m4.xlarge
,cache.m4.2xlarge
,cache.m4.4xlarge
,cache.m4.10xlarge
T4g node types (available only for Redis OSS engine version 5.0.6 onward and Memcached engine version 1.5.16 onward):
cache.t4g.micro
,cache.t4g.small
,cache.t4g.medium
T3 node types:
cache.t3.micro
,cache.t3.small
,cache.t3.medium
T2 node types:
cache.t2.micro
,cache.t2.small
,cache.t2.medium
-
Previous generation: (not recommended. Existing clusters are still supported but creation of new clusters is not supported for these types.)
T1 node types:
cache.t1.micro
M1 node types:
cache.m1.small
,cache.m1.medium
,cache.m1.large
,cache.m1.xlarge
M3 node types:
cache.m3.medium
,cache.m3.large
,cache.m3.xlarge
,cache.m3.2xlarge
-
-
Compute optimized:
-
Previous generation: (not recommended. Existing clusters are still supported but creation of new clusters is not supported for these types.)
C1 node types:
cache.c1.xlarge
-
-
Memory optimized:
-
Current generation:
R7g node types:
cache.r7g.large
,cache.r7g.xlarge
,cache.r7g.2xlarge
,cache.r7g.4xlarge
,cache.r7g.8xlarge
,cache.r7g.12xlarge
,cache.r7g.16xlarge
For region availability, see Supported Node Types
R6g node types (available only for Redis OSS engine version 5.0.6 onward and for Memcached engine version 1.5.16 onward):
cache.r6g.large
,cache.r6g.xlarge
,cache.r6g.2xlarge
,cache.r6g.4xlarge
,cache.r6g.8xlarge
,cache.r6g.12xlarge
,cache.r6g.16xlarge
R5 node types:
cache.r5.large
,cache.r5.xlarge
,cache.r5.2xlarge
,cache.r5.4xlarge
,cache.r5.12xlarge
,cache.r5.24xlarge
R4 node types:
cache.r4.large
,cache.r4.xlarge
,cache.r4.2xlarge
,cache.r4.4xlarge
,cache.r4.8xlarge
,cache.r4.16xlarge
-
Previous generation: (not recommended. Existing clusters are still supported but creation of new clusters is not supported for these types.)
M2 node types:
cache.m2.xlarge
,cache.m2.2xlarge
,cache.m2.4xlarge
R3 node types:
cache.r3.large
,cache.r3.xlarge
,cache.r3.2xlarge
,cache.r3.4xlarge
,cache.r3.8xlarge
-
Additional node type info
-
All current generation instance types are created in Amazon VPC by default.
-
Valkey or Redis OSS append-only files (AOF) are not supported for T1 or T2 instances.
-
Valkey or Redis OSS Multi-AZ with automatic failover is not supported on T1 instances.
-
The configuration variables
appendonly
andappendfsync
are not supported on Valkey, or on Redis OSS version 2.8.22 and later.
Sourcepub fn fixed_price(&self) -> Option<f64>
pub fn fixed_price(&self) -> Option<f64>
The fixed price charged for this offering.
Sourcepub fn usage_price(&self) -> Option<f64>
pub fn usage_price(&self) -> Option<f64>
The hourly price charged for this offering.
Sourcepub fn product_description(&self) -> Option<&str>
pub fn product_description(&self) -> Option<&str>
The cache engine used by the offering.
Sourcepub fn offering_type(&self) -> Option<&str>
pub fn offering_type(&self) -> Option<&str>
The offering type.
Sourcepub fn recurring_charges(&self) -> &[RecurringCharge]
pub fn recurring_charges(&self) -> &[RecurringCharge]
The recurring price charged to run this reserved cache node.
If no value was sent for this field, a default will be set. If you want to determine if no value was sent, use .recurring_charges.is_none()
.
Source§impl ReservedCacheNodesOffering
impl ReservedCacheNodesOffering
Sourcepub fn builder() -> ReservedCacheNodesOfferingBuilder
pub fn builder() -> ReservedCacheNodesOfferingBuilder
Creates a new builder-style object to manufacture ReservedCacheNodesOffering
.
Trait Implementations§
Source§impl Clone for ReservedCacheNodesOffering
impl Clone for ReservedCacheNodesOffering
Source§fn clone(&self) -> ReservedCacheNodesOffering
fn clone(&self) -> ReservedCacheNodesOffering
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source
. Read moreSource§impl Debug for ReservedCacheNodesOffering
impl Debug for ReservedCacheNodesOffering
impl StructuralPartialEq for ReservedCacheNodesOffering
Auto Trait Implementations§
impl Freeze for ReservedCacheNodesOffering
impl RefUnwindSafe for ReservedCacheNodesOffering
impl Send for ReservedCacheNodesOffering
impl Sync for ReservedCacheNodesOffering
impl Unpin for ReservedCacheNodesOffering
impl UnwindSafe for ReservedCacheNodesOffering
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);