#[allow(clippy::needless_question_mark)]
pub fn de_v_cpu_info(
decoder: &mut ::aws_smithy_xml::decode::ScopedDecoder,
depth: u32,
) -> ::std::result::Result<crate::types::VCpuInfo, ::aws_smithy_xml::decode::XmlDecodeError> {
if depth >= 128u32 {
return Err(::aws_smithy_xml::decode::XmlDecodeError::custom("maximum nesting depth exceeded"));
}
#[allow(unused_mut)]
let mut builder = crate::types::VCpuInfo::builder();
while let Some(mut tag) = decoder.next_tag() {
match tag.start_el() {
s if s.matches("defaultVCpus") => {
let var_1 =
Some(
{
<i32 as ::aws_smithy_types::primitive::Parse>::parse_smithy_primitive(
::aws_smithy_xml::decode::try_data(&mut tag)?.as_ref()
)
.map_err(|_|::aws_smithy_xml::decode::XmlDecodeError::custom("expected (integer: `com.amazonaws.ec2#VCpuCount`)"))
}
?
)
;
builder = builder.set_default_v_cpus(var_1);
}
,
s if s.matches("defaultCores") => {
let var_2 =
Some(
{
<i32 as ::aws_smithy_types::primitive::Parse>::parse_smithy_primitive(
::aws_smithy_xml::decode::try_data(&mut tag)?.as_ref()
)
.map_err(|_|::aws_smithy_xml::decode::XmlDecodeError::custom("expected (integer: `com.amazonaws.ec2#CoreCount`)"))
}
?
)
;
builder = builder.set_default_cores(var_2);
}
,
s if s.matches("defaultThreadsPerCore") => {
let var_3 =
Some(
{
<i32 as ::aws_smithy_types::primitive::Parse>::parse_smithy_primitive(
::aws_smithy_xml::decode::try_data(&mut tag)?.as_ref()
)
.map_err(|_|::aws_smithy_xml::decode::XmlDecodeError::custom("expected (integer: `com.amazonaws.ec2#ThreadsPerCore`)"))
}
?
)
;
builder = builder.set_default_threads_per_core(var_3);
}
,
s if s.matches("validCores") => {
let var_4 =
Some(
crate::protocol_serde::shape_core_count_list::de_core_count_list(&mut tag, depth + 1)
?
)
;
builder = builder.set_valid_cores(var_4);
}
,
s if s.matches("validThreadsPerCore") => {
let var_5 =
Some(
crate::protocol_serde::shape_threads_per_core_list::de_threads_per_core_list(&mut tag, depth + 1)
?
)
;
builder = builder.set_valid_threads_per_core(var_5);
}
,
_ => {}
}
}
Ok(builder.build())
}