aws-sdk-lexmodelbuilding 1.99.0

AWS SDK for Amazon Lex Model Building Service
Documentation
// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
#[allow(missing_docs)] // documentation missing in model
#[deprecated(note = "Amazon Lex V1 is deprecated. Use Amazon Lex V2 instead.", since = "2025-09-08")]
#[non_exhaustive]
#[derive(::std::clone::Clone, ::std::cmp::PartialEq, ::std::fmt::Debug)]
pub struct StartImportInput {
    /// <p>A zip archive in binary format. The archive should contain one file, a JSON file containing the resource to import. The resource should match the type specified in the <code>resourceType</code> field.</p>
    pub payload: ::std::option::Option<::aws_smithy_types::Blob>,
    /// <p>Specifies the type of resource to export. Each resource also exports any resources that it depends on.</p>
    /// <ul>
    /// <li>
    /// <p>A bot exports dependent intents.</p></li>
    /// <li>
    /// <p>An intent exports dependent slot types.</p></li>
    /// </ul>
    pub resource_type: ::std::option::Option<crate::types::ResourceType>,
    /// <p>Specifies the action that the <code>StartImport</code> operation should take when there is an existing resource with the same name.</p>
    /// <ul>
    /// <li>
    /// <p>FAIL_ON_CONFLICT - The import operation is stopped on the first conflict between a resource in the import file and an existing resource. The name of the resource causing the conflict is in the <code>failureReason</code> field of the response to the <code>GetImport</code> operation.</p>
    /// <p>OVERWRITE_LATEST - The import operation proceeds even if there is a conflict with an existing resource. The $LASTEST version of the existing resource is overwritten with the data from the import file.</p></li>
    /// </ul>
    pub merge_strategy: ::std::option::Option<crate::types::MergeStrategy>,
    /// <p>A list of tags to add to the imported bot. You can only add tags when you import a bot, you can't add tags to an intent or slot type.</p>
    pub tags: ::std::option::Option<::std::vec::Vec<crate::types::Tag>>,
}
impl StartImportInput {
    /// <p>A zip archive in binary format. The archive should contain one file, a JSON file containing the resource to import. The resource should match the type specified in the <code>resourceType</code> field.</p>
    pub fn payload(&self) -> ::std::option::Option<&::aws_smithy_types::Blob> {
        self.payload.as_ref()
    }
    /// <p>Specifies the type of resource to export. Each resource also exports any resources that it depends on.</p>
    /// <ul>
    /// <li>
    /// <p>A bot exports dependent intents.</p></li>
    /// <li>
    /// <p>An intent exports dependent slot types.</p></li>
    /// </ul>
    pub fn resource_type(&self) -> ::std::option::Option<&crate::types::ResourceType> {
        self.resource_type.as_ref()
    }
    /// <p>Specifies the action that the <code>StartImport</code> operation should take when there is an existing resource with the same name.</p>
    /// <ul>
    /// <li>
    /// <p>FAIL_ON_CONFLICT - The import operation is stopped on the first conflict between a resource in the import file and an existing resource. The name of the resource causing the conflict is in the <code>failureReason</code> field of the response to the <code>GetImport</code> operation.</p>
    /// <p>OVERWRITE_LATEST - The import operation proceeds even if there is a conflict with an existing resource. The $LASTEST version of the existing resource is overwritten with the data from the import file.</p></li>
    /// </ul>
    pub fn merge_strategy(&self) -> ::std::option::Option<&crate::types::MergeStrategy> {
        self.merge_strategy.as_ref()
    }
    /// <p>A list of tags to add to the imported bot. You can only add tags when you import a bot, you can't add tags to an intent or slot type.</p>
    ///
    /// If no value was sent for this field, a default will be set. If you want to determine if no value was sent, use `.tags.is_none()`.
    pub fn tags(&self) -> &[crate::types::Tag] {
        self.tags.as_deref().unwrap_or_default()
    }
}
impl StartImportInput {
    /// Creates a new builder-style object to manufacture [`StartImportInput`](crate::operation::start_import::StartImportInput).
    pub fn builder() -> crate::operation::start_import::builders::StartImportInputBuilder {
        crate::operation::start_import::builders::StartImportInputBuilder::default()
    }
}

/// A builder for [`StartImportInput`](crate::operation::start_import::StartImportInput).
#[derive(::std::clone::Clone, ::std::cmp::PartialEq, ::std::default::Default, ::std::fmt::Debug)]
#[non_exhaustive]
pub struct StartImportInputBuilder {
    pub(crate) payload: ::std::option::Option<::aws_smithy_types::Blob>,
    pub(crate) resource_type: ::std::option::Option<crate::types::ResourceType>,
    pub(crate) merge_strategy: ::std::option::Option<crate::types::MergeStrategy>,
    pub(crate) tags: ::std::option::Option<::std::vec::Vec<crate::types::Tag>>,
}
impl StartImportInputBuilder {
    /// <p>A zip archive in binary format. The archive should contain one file, a JSON file containing the resource to import. The resource should match the type specified in the <code>resourceType</code> field.</p>
    /// This field is required.
    pub fn payload(mut self, input: ::aws_smithy_types::Blob) -> Self {
        self.payload = ::std::option::Option::Some(input);
        self
    }
    /// <p>A zip archive in binary format. The archive should contain one file, a JSON file containing the resource to import. The resource should match the type specified in the <code>resourceType</code> field.</p>
    pub fn set_payload(mut self, input: ::std::option::Option<::aws_smithy_types::Blob>) -> Self {
        self.payload = input;
        self
    }
    /// <p>A zip archive in binary format. The archive should contain one file, a JSON file containing the resource to import. The resource should match the type specified in the <code>resourceType</code> field.</p>
    pub fn get_payload(&self) -> &::std::option::Option<::aws_smithy_types::Blob> {
        &self.payload
    }
    /// <p>Specifies the type of resource to export. Each resource also exports any resources that it depends on.</p>
    /// <ul>
    /// <li>
    /// <p>A bot exports dependent intents.</p></li>
    /// <li>
    /// <p>An intent exports dependent slot types.</p></li>
    /// </ul>
    /// This field is required.
    pub fn resource_type(mut self, input: crate::types::ResourceType) -> Self {
        self.resource_type = ::std::option::Option::Some(input);
        self
    }
    /// <p>Specifies the type of resource to export. Each resource also exports any resources that it depends on.</p>
    /// <ul>
    /// <li>
    /// <p>A bot exports dependent intents.</p></li>
    /// <li>
    /// <p>An intent exports dependent slot types.</p></li>
    /// </ul>
    pub fn set_resource_type(mut self, input: ::std::option::Option<crate::types::ResourceType>) -> Self {
        self.resource_type = input;
        self
    }
    /// <p>Specifies the type of resource to export. Each resource also exports any resources that it depends on.</p>
    /// <ul>
    /// <li>
    /// <p>A bot exports dependent intents.</p></li>
    /// <li>
    /// <p>An intent exports dependent slot types.</p></li>
    /// </ul>
    pub fn get_resource_type(&self) -> &::std::option::Option<crate::types::ResourceType> {
        &self.resource_type
    }
    /// <p>Specifies the action that the <code>StartImport</code> operation should take when there is an existing resource with the same name.</p>
    /// <ul>
    /// <li>
    /// <p>FAIL_ON_CONFLICT - The import operation is stopped on the first conflict between a resource in the import file and an existing resource. The name of the resource causing the conflict is in the <code>failureReason</code> field of the response to the <code>GetImport</code> operation.</p>
    /// <p>OVERWRITE_LATEST - The import operation proceeds even if there is a conflict with an existing resource. The $LASTEST version of the existing resource is overwritten with the data from the import file.</p></li>
    /// </ul>
    /// This field is required.
    pub fn merge_strategy(mut self, input: crate::types::MergeStrategy) -> Self {
        self.merge_strategy = ::std::option::Option::Some(input);
        self
    }
    /// <p>Specifies the action that the <code>StartImport</code> operation should take when there is an existing resource with the same name.</p>
    /// <ul>
    /// <li>
    /// <p>FAIL_ON_CONFLICT - The import operation is stopped on the first conflict between a resource in the import file and an existing resource. The name of the resource causing the conflict is in the <code>failureReason</code> field of the response to the <code>GetImport</code> operation.</p>
    /// <p>OVERWRITE_LATEST - The import operation proceeds even if there is a conflict with an existing resource. The $LASTEST version of the existing resource is overwritten with the data from the import file.</p></li>
    /// </ul>
    pub fn set_merge_strategy(mut self, input: ::std::option::Option<crate::types::MergeStrategy>) -> Self {
        self.merge_strategy = input;
        self
    }
    /// <p>Specifies the action that the <code>StartImport</code> operation should take when there is an existing resource with the same name.</p>
    /// <ul>
    /// <li>
    /// <p>FAIL_ON_CONFLICT - The import operation is stopped on the first conflict between a resource in the import file and an existing resource. The name of the resource causing the conflict is in the <code>failureReason</code> field of the response to the <code>GetImport</code> operation.</p>
    /// <p>OVERWRITE_LATEST - The import operation proceeds even if there is a conflict with an existing resource. The $LASTEST version of the existing resource is overwritten with the data from the import file.</p></li>
    /// </ul>
    pub fn get_merge_strategy(&self) -> &::std::option::Option<crate::types::MergeStrategy> {
        &self.merge_strategy
    }
    /// Appends an item to `tags`.
    ///
    /// To override the contents of this collection use [`set_tags`](Self::set_tags).
    ///
    /// <p>A list of tags to add to the imported bot. You can only add tags when you import a bot, you can't add tags to an intent or slot type.</p>
    pub fn tags(mut self, input: crate::types::Tag) -> Self {
        let mut v = self.tags.unwrap_or_default();
        v.push(input);
        self.tags = ::std::option::Option::Some(v);
        self
    }
    /// <p>A list of tags to add to the imported bot. You can only add tags when you import a bot, you can't add tags to an intent or slot type.</p>
    pub fn set_tags(mut self, input: ::std::option::Option<::std::vec::Vec<crate::types::Tag>>) -> Self {
        self.tags = input;
        self
    }
    /// <p>A list of tags to add to the imported bot. You can only add tags when you import a bot, you can't add tags to an intent or slot type.</p>
    pub fn get_tags(&self) -> &::std::option::Option<::std::vec::Vec<crate::types::Tag>> {
        &self.tags
    }
    /// Consumes the builder and constructs a [`StartImportInput`](crate::operation::start_import::StartImportInput).
    pub fn build(self) -> ::std::result::Result<crate::operation::start_import::StartImportInput, ::aws_smithy_types::error::operation::BuildError> {
        ::std::result::Result::Ok(crate::operation::start_import::StartImportInput {
            payload: self.payload,
            resource_type: self.resource_type,
            merge_strategy: self.merge_strategy,
            tags: self.tags,
        })
    }
}