azure_svc_codesigning 0.17.0

generated REST API bindings
Documentation
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#![allow(unused_mut)]
#![allow(unused_variables)]
#![allow(unused_imports)]
#![allow(clippy::redundant_clone)]
pub mod models;
#[derive(Clone)]
pub struct Client {
    endpoint: String,
    credential: std::sync::Arc<dyn azure_core::auth::TokenCredential>,
    scopes: Vec<String>,
    pipeline: azure_core::Pipeline,
}
#[derive(Clone)]
pub struct ClientBuilder {
    credential: std::sync::Arc<dyn azure_core::auth::TokenCredential>,
    endpoint: Option<String>,
    scopes: Option<Vec<String>>,
    options: azure_core::ClientOptions,
}
pub const DEFAULT_ENDPOINT: &str = azure_core::resource_manager_endpoint::AZURE_PUBLIC_CLOUD;
impl ClientBuilder {
    #[doc = "Create a new instance of `ClientBuilder`."]
    #[must_use]
    pub fn new(credential: std::sync::Arc<dyn azure_core::auth::TokenCredential>) -> Self {
        Self {
            credential,
            endpoint: None,
            scopes: None,
            options: azure_core::ClientOptions::default(),
        }
    }
    #[doc = "Set the endpoint."]
    #[must_use]
    pub fn endpoint(mut self, endpoint: impl Into<String>) -> Self {
        self.endpoint = Some(endpoint.into());
        self
    }
    #[doc = "Set the scopes."]
    #[must_use]
    pub fn scopes(mut self, scopes: &[&str]) -> Self {
        self.scopes = Some(scopes.iter().map(|scope| (*scope).to_owned()).collect());
        self
    }
    #[doc = "Set the retry options."]
    #[must_use]
    pub fn retry(mut self, retry: impl Into<azure_core::RetryOptions>) -> Self {
        self.options = self.options.retry(retry);
        self
    }
    #[doc = "Set the transport options."]
    #[must_use]
    pub fn transport(mut self, transport: impl Into<azure_core::TransportOptions>) -> Self {
        self.options = self.options.transport(transport);
        self
    }
    #[doc = "Convert the builder into a `Client` instance."]
    #[must_use]
    pub fn build(self) -> Client {
        let endpoint = self.endpoint.unwrap_or_else(|| DEFAULT_ENDPOINT.to_owned());
        let scopes = self.scopes.unwrap_or_else(|| vec![format!("{endpoint}/")]);
        Client::new(endpoint, self.credential, scopes, self.options)
    }
}
impl Client {
    pub(crate) fn endpoint(&self) -> &str {
        self.endpoint.as_str()
    }
    pub(crate) fn token_credential(&self) -> &dyn azure_core::auth::TokenCredential {
        self.credential.as_ref()
    }
    pub(crate) fn scopes(&self) -> Vec<&str> {
        self.scopes.iter().map(String::as_str).collect()
    }
    pub(crate) async fn send(&self, request: &mut azure_core::Request) -> azure_core::Result<azure_core::Response> {
        let context = azure_core::Context::default();
        self.pipeline.send(&context, request).await
    }
    #[doc = "Create a new `ClientBuilder`."]
    #[must_use]
    pub fn builder(credential: std::sync::Arc<dyn azure_core::auth::TokenCredential>) -> ClientBuilder {
        ClientBuilder::new(credential)
    }
    #[doc = "Create a new `Client`."]
    #[must_use]
    pub fn new(
        endpoint: impl Into<String>,
        credential: std::sync::Arc<dyn azure_core::auth::TokenCredential>,
        scopes: Vec<String>,
        options: azure_core::ClientOptions,
    ) -> Self {
        let endpoint = endpoint.into();
        let pipeline = azure_core::Pipeline::new(
            option_env!("CARGO_PKG_NAME"),
            option_env!("CARGO_PKG_VERSION"),
            options,
            Vec::new(),
            Vec::new(),
        );
        Self {
            endpoint,
            credential,
            scopes,
            pipeline,
        }
    }
    pub fn certificate_profile_operations_client(&self) -> certificate_profile_operations::Client {
        certificate_profile_operations::Client(self.clone())
    }
}
pub mod certificate_profile_operations {
    use super::models;
    #[cfg(not(target_arch = "wasm32"))]
    use futures::future::BoxFuture;
    #[cfg(target_arch = "wasm32")]
    use futures::future::LocalBoxFuture as BoxFuture;
    pub struct Client(pub(crate) super::Client);
    impl Client {
        #[doc = "Submit a codesign operation."]
        #[doc = "Submit a codesign operation under the created codesign account and profile name provided."]
        #[doc = ""]
        #[doc = "Arguments:"]
        #[doc = "* `code_signing_account_name`: Azure CodeSigning account name."]
        #[doc = "* `certificate_profile_name`: Azure Codesigning certificate profile name under a codesign account."]
        pub fn sign(
            &self,
            code_signing_account_name: impl Into<String>,
            certificate_profile_name: impl Into<String>,
            body: impl Into<models::CodeSigningSubmissionOptions>,
        ) -> sign::RequestBuilder {
            sign::RequestBuilder {
                client: self.0.clone(),
                code_signing_account_name: code_signing_account_name.into(),
                certificate_profile_name: certificate_profile_name.into(),
                body: body.into(),
            }
        }
        #[doc = "Gets the status of a codesigning operation."]
        #[doc = "This status operation requires that a Sign request has been submitted and the operationId is known."]
        #[doc = ""]
        #[doc = "Arguments:"]
        #[doc = "* `code_signing_account_name`: CodeSigning account name."]
        #[doc = "* `certificate_profile_name`: Certificate profile name."]
        #[doc = "* `operation_id`: The unique ID of the operation."]
        pub fn get_code_signing_status(
            &self,
            code_signing_account_name: impl Into<String>,
            certificate_profile_name: impl Into<String>,
            operation_id: impl Into<String>,
        ) -> get_code_signing_status::RequestBuilder {
            get_code_signing_status::RequestBuilder {
                client: self.0.clone(),
                code_signing_account_name: code_signing_account_name.into(),
                certificate_profile_name: certificate_profile_name.into(),
                operation_id: operation_id.into(),
            }
        }
        #[doc = "Gets a list of extended key usage object identifiers that are allowed for this account and profile combination."]
        #[doc = "The list of extended key usages are used to determine the purpose of the certificate usage as part of the codesigning operation."]
        #[doc = ""]
        #[doc = "Arguments:"]
        #[doc = "* `code_signing_account_name`: Azure CodeSigning account name."]
        #[doc = "* `certificate_profile_name`: Azure Codesigning certificate profile name under a codesign account."]
        pub fn list_sign_ekus(
            &self,
            code_signing_account_name: impl Into<String>,
            certificate_profile_name: impl Into<String>,
        ) -> list_sign_ekus::RequestBuilder {
            list_sign_ekus::RequestBuilder {
                client: self.0.clone(),
                code_signing_account_name: code_signing_account_name.into(),
                certificate_profile_name: certificate_profile_name.into(),
            }
        }
        #[doc = "Gets the codesigning root certificate on the certificate chain for that account and profile name."]
        #[doc = "The root certificate is generated as part of the initial account creation and it is used to sign the bits for the profile provided."]
        #[doc = ""]
        #[doc = "Arguments:"]
        #[doc = "* `code_signing_account_name`: CodeSigning account name."]
        #[doc = "* `certificate_profile_name`: Certificate profile name."]
        pub fn get_sign_root_certificate(
            &self,
            code_signing_account_name: impl Into<String>,
            certificate_profile_name: impl Into<String>,
        ) -> get_sign_root_certificate::RequestBuilder {
            get_sign_root_certificate::RequestBuilder {
                client: self.0.clone(),
                code_signing_account_name: code_signing_account_name.into(),
                certificate_profile_name: certificate_profile_name.into(),
            }
        }
    }
    pub mod sign {
        use super::models;
        #[cfg(not(target_arch = "wasm32"))]
        use futures::future::BoxFuture;
        #[cfg(target_arch = "wasm32")]
        use futures::future::LocalBoxFuture as BoxFuture;
        #[derive(Debug)]
        pub struct Response(azure_core::Response);
        impl Response {
            pub async fn into_body(self) -> azure_core::Result<serde_json::Value> {
                let bytes = self.0.into_body().collect().await?;
                let body: serde_json::Value = serde_json::from_slice(&bytes)?;
                Ok(body)
            }
            pub fn into_raw_response(self) -> azure_core::Response {
                self.0
            }
            pub fn as_raw_response(&self) -> &azure_core::Response {
                &self.0
            }
            pub fn headers(&self) -> Headers {
                Headers(self.0.headers())
            }
        }
        impl From<Response> for azure_core::Response {
            fn from(rsp: Response) -> Self {
                rsp.into_raw_response()
            }
        }
        impl AsRef<azure_core::Response> for Response {
            fn as_ref(&self) -> &azure_core::Response {
                self.as_raw_response()
            }
        }
        pub struct Headers<'a>(&'a azure_core::headers::Headers);
        impl<'a> Headers<'a> {
            #[doc = "The location for monitoring the operation state."]
            pub fn operation_location(&self) -> azure_core::Result<&str> {
                self.0.get_str(&azure_core::headers::HeaderName::from_static("operation-location"))
            }
        }
        #[derive(Clone)]
        #[doc = r" `RequestBuilder` provides a mechanism for setting optional parameters on a request."]
        #[doc = r""]
        #[doc = r" Each `RequestBuilder` parameter method call returns `Self`, so setting of multiple"]
        #[doc = r" parameters can be chained."]
        #[doc = r""]
        #[doc = r" This `RequestBuilder` implements a Long Running Operation"]
        #[doc = r" (LRO)."]
        #[doc = r""]
        #[doc = r" To finalize and submit the request, invoke `.await`, which"]
        #[doc = r" which will convert the `RequestBuilder` into a future"]
        #[doc = r" executes the request and polls the service until the"]
        #[doc = r" operation completes."]
        #[doc = r""]
        #[doc = r" In order to execute the request without polling the service"]
        #[doc = r" until the operation completes, use"]
        #[doc = r" [`RequestBuilder::send()`], which will return a lower-level"]
        #[doc = r" [`Response`] value."]
        pub struct RequestBuilder {
            pub(crate) client: super::super::Client,
            pub(crate) code_signing_account_name: String,
            pub(crate) certificate_profile_name: String,
            pub(crate) body: models::CodeSigningSubmissionOptions,
        }
        impl RequestBuilder {
            #[doc = "Returns a future that sends the request and returns a [`Response`] object that provides low-level access to full response details."]
            #[doc = ""]
            #[doc = "You should typically use `.await` (which implicitly calls `IntoFuture::into_future()`) to finalize and send requests rather than `send()`."]
            #[doc = "However, this function can provide more flexibility when required."]
            pub fn send(self) -> BoxFuture<'static, azure_core::Result<Response>> {
                Box::pin({
                    let this = self.clone();
                    async move {
                        let url = this.url()?;
                        let mut req = azure_core::Request::new(url, azure_core::Method::Post);
                        let credential = this.client.token_credential();
                        let token_response = credential.get_token(&this.client.scopes().join(" ")).await?;
                        req.insert_header(
                            azure_core::headers::AUTHORIZATION,
                            format!("Bearer {}", token_response.token.secret()),
                        );
                        req.insert_header("content-type", "application/json");
                        let req_body = azure_core::to_json(&this.body)?;
                        req.set_body(req_body);
                        Ok(Response(this.client.send(&mut req).await?))
                    }
                })
            }
            fn url(&self) -> azure_core::Result<azure_core::Url> {
                let mut url = azure_core::Url::parse(&format!(
                    "{}/codesigningaccounts/{}/certificateprofiles/{}:sign",
                    self.client.endpoint(),
                    &self.code_signing_account_name,
                    &self.certificate_profile_name
                ))?;
                let has_api_version_already = url.query_pairs().any(|(k, _)| k == azure_core::query_param::API_VERSION);
                if !has_api_version_already {
                    url.query_pairs_mut()
                        .append_pair(azure_core::query_param::API_VERSION, "2023-06-15-preview");
                }
                Ok(url)
            }
        }
        impl std::future::IntoFuture for RequestBuilder {
            type Output = azure_core::Result<serde_json::Value>;
            type IntoFuture = BoxFuture<'static, azure_core::Result<serde_json::Value>>;
            #[doc = "Returns a future that polls the long running operation and checks for the state via `properties.provisioningState` in the response body."]
            #[doc = ""]
            #[doc = "To only submit the request but not monitor the status of the operation until completion, use `send()` instead."]
            #[doc = ""]
            #[doc = "You should not normally call this method directly, simply invoke `.await` which implicitly calls `IntoFuture::into_future`."]
            #[doc = ""]
            #[doc = "See [IntoFuture documentation](https://doc.rust-lang.org/std/future/trait.IntoFuture.html) for more details."]
            fn into_future(self) -> Self::IntoFuture {
                Box::pin(async move {
                    use azure_core::{
                        error::{Error, ErrorKind},
                        lro::{body_content::get_provisioning_state, get_retry_after, LroStatus},
                        sleep::sleep,
                    };
                    use std::time::Duration;
                    loop {
                        let this = self.clone();
                        let response = this.send().await?;
                        let retry_after = get_retry_after(response.as_raw_response().headers());
                        let status = response.as_raw_response().status();
                        let body = response.into_body().await?;
                        let provisioning_state = get_provisioning_state(status, &body)?;
                        log::trace!("current provisioning_state: {provisioning_state:?}");
                        match provisioning_state {
                            LroStatus::Succeeded => return Ok(body),
                            LroStatus::Failed => return Err(Error::message(ErrorKind::Other, "Long running operation failed".to_string())),
                            LroStatus::Canceled => {
                                return Err(Error::message(ErrorKind::Other, "Long running operation canceled".to_string()))
                            }
                            _ => {
                                sleep(retry_after).await;
                            }
                        }
                    }
                })
            }
        }
    }
    pub mod get_code_signing_status {
        use super::models;
        #[cfg(not(target_arch = "wasm32"))]
        use futures::future::BoxFuture;
        #[cfg(target_arch = "wasm32")]
        use futures::future::LocalBoxFuture as BoxFuture;
        #[derive(Debug)]
        pub struct Response(azure_core::Response);
        impl Response {
            pub async fn into_body(self) -> azure_core::Result<serde_json::Value> {
                let bytes = self.0.into_body().collect().await?;
                let body: serde_json::Value = serde_json::from_slice(&bytes)?;
                Ok(body)
            }
            pub fn into_raw_response(self) -> azure_core::Response {
                self.0
            }
            pub fn as_raw_response(&self) -> &azure_core::Response {
                &self.0
            }
        }
        impl From<Response> for azure_core::Response {
            fn from(rsp: Response) -> Self {
                rsp.into_raw_response()
            }
        }
        impl AsRef<azure_core::Response> for Response {
            fn as_ref(&self) -> &azure_core::Response {
                self.as_raw_response()
            }
        }
        #[derive(Clone)]
        #[doc = r" `RequestBuilder` provides a mechanism for setting optional parameters on a request."]
        #[doc = r""]
        #[doc = r" Each `RequestBuilder` parameter method call returns `Self`, so setting of multiple"]
        #[doc = r" parameters can be chained."]
        #[doc = r""]
        #[doc = r" To finalize and submit the request, invoke `.await`, which"]
        #[doc = r" which will convert the [`RequestBuilder`] into a future"]
        #[doc = r" executes the request and returns a `Result` with the parsed"]
        #[doc = r" response."]
        #[doc = r""]
        #[doc = r" In order to execute the request without polling the service"]
        #[doc = r" until the operation completes, use `.send().await` instead."]
        #[doc = r""]
        #[doc = r" If you need lower-level access to the raw response details"]
        #[doc = r" (e.g. to inspect response headers or raw body data) then you"]
        #[doc = r" can finalize the request using the"]
        #[doc = r" [`RequestBuilder::send()`] method which returns a future"]
        #[doc = r" that resolves to a lower-level [`Response`] value."]
        pub struct RequestBuilder {
            pub(crate) client: super::super::Client,
            pub(crate) code_signing_account_name: String,
            pub(crate) certificate_profile_name: String,
            pub(crate) operation_id: String,
        }
        impl RequestBuilder {
            #[doc = "Returns a future that sends the request and returns a [`Response`] object that provides low-level access to full response details."]
            #[doc = ""]
            #[doc = "You should typically use `.await` (which implicitly calls `IntoFuture::into_future()`) to finalize and send requests rather than `send()`."]
            #[doc = "However, this function can provide more flexibility when required."]
            pub fn send(self) -> BoxFuture<'static, azure_core::Result<Response>> {
                Box::pin({
                    let this = self.clone();
                    async move {
                        let url = this.url()?;
                        let mut req = azure_core::Request::new(url, azure_core::Method::Get);
                        let credential = this.client.token_credential();
                        let token_response = credential.get_token(&this.client.scopes().join(" ")).await?;
                        req.insert_header(
                            azure_core::headers::AUTHORIZATION,
                            format!("Bearer {}", token_response.token.secret()),
                        );
                        let req_body = azure_core::EMPTY_BODY;
                        req.set_body(req_body);
                        Ok(Response(this.client.send(&mut req).await?))
                    }
                })
            }
            fn url(&self) -> azure_core::Result<azure_core::Url> {
                let mut url = azure_core::Url::parse(&format!(
                    "{}/codesigningaccounts/{}/certificateprofiles/{}/sign/{}",
                    self.client.endpoint(),
                    &self.code_signing_account_name,
                    &self.certificate_profile_name,
                    &self.operation_id
                ))?;
                let has_api_version_already = url.query_pairs().any(|(k, _)| k == azure_core::query_param::API_VERSION);
                if !has_api_version_already {
                    url.query_pairs_mut()
                        .append_pair(azure_core::query_param::API_VERSION, "2023-06-15-preview");
                }
                Ok(url)
            }
        }
        impl std::future::IntoFuture for RequestBuilder {
            type Output = azure_core::Result<serde_json::Value>;
            type IntoFuture = BoxFuture<'static, azure_core::Result<serde_json::Value>>;
            #[doc = "Returns a future that sends the request and returns the parsed response body."]
            #[doc = ""]
            #[doc = "You should not normally call this method directly, simply invoke `.await` which implicitly calls `IntoFuture::into_future`."]
            #[doc = ""]
            #[doc = "See [IntoFuture documentation](https://doc.rust-lang.org/std/future/trait.IntoFuture.html) for more details."]
            fn into_future(self) -> Self::IntoFuture {
                Box::pin(async move { self.send().await?.into_body().await })
            }
        }
    }
    pub mod list_sign_ekus {
        use super::models;
        #[cfg(not(target_arch = "wasm32"))]
        use futures::future::BoxFuture;
        #[cfg(target_arch = "wasm32")]
        use futures::future::LocalBoxFuture as BoxFuture;
        #[derive(Debug)]
        pub struct Response(azure_core::Response);
        impl Response {
            pub async fn into_body(self) -> azure_core::Result<models::PagedExtendedKeyUsage> {
                let bytes = self.0.into_body().collect().await?;
                let body: models::PagedExtendedKeyUsage = serde_json::from_slice(&bytes)?;
                Ok(body)
            }
            pub fn into_raw_response(self) -> azure_core::Response {
                self.0
            }
            pub fn as_raw_response(&self) -> &azure_core::Response {
                &self.0
            }
        }
        impl From<Response> for azure_core::Response {
            fn from(rsp: Response) -> Self {
                rsp.into_raw_response()
            }
        }
        impl AsRef<azure_core::Response> for Response {
            fn as_ref(&self) -> &azure_core::Response {
                self.as_raw_response()
            }
        }
        #[derive(Clone)]
        #[doc = r" `RequestBuilder` provides a mechanism for setting optional parameters on a request."]
        #[doc = r""]
        #[doc = r" Each `RequestBuilder` parameter method call returns `Self`, so setting of multiple"]
        #[doc = r" parameters can be chained."]
        #[doc = r""]
        #[doc = r" To finalize and submit the request, invoke `.await`, which"]
        #[doc = r" which will convert the [`RequestBuilder`] into a future"]
        #[doc = r" executes the request and returns a `Result` with the parsed"]
        #[doc = r" response."]
        #[doc = r""]
        #[doc = r" In order to execute the request without polling the service"]
        #[doc = r" until the operation completes, use `.send().await` instead."]
        #[doc = r""]
        #[doc = r" If you need lower-level access to the raw response details"]
        #[doc = r" (e.g. to inspect response headers or raw body data) then you"]
        #[doc = r" can finalize the request using the"]
        #[doc = r" [`RequestBuilder::send()`] method which returns a future"]
        #[doc = r" that resolves to a lower-level [`Response`] value."]
        pub struct RequestBuilder {
            pub(crate) client: super::super::Client,
            pub(crate) code_signing_account_name: String,
            pub(crate) certificate_profile_name: String,
        }
        impl RequestBuilder {
            pub fn into_stream(self) -> azure_core::Pageable<models::PagedExtendedKeyUsage, azure_core::error::Error> {
                let make_request = move |continuation: Option<String>| {
                    let this = self.clone();
                    async move {
                        let mut url = this.url()?;
                        let rsp = match continuation {
                            Some(value) => {
                                url.set_path("");
                                url = url.join(&value)?;
                                let mut req = azure_core::Request::new(url, azure_core::Method::Get);
                                let credential = this.client.token_credential();
                                let token_response = credential.get_token(&this.client.scopes().join(" ")).await?;
                                req.insert_header(
                                    azure_core::headers::AUTHORIZATION,
                                    format!("Bearer {}", token_response.token.secret()),
                                );
                                let has_api_version_already =
                                    req.url_mut().query_pairs().any(|(k, _)| k == azure_core::query_param::API_VERSION);
                                if !has_api_version_already {
                                    req.url_mut()
                                        .query_pairs_mut()
                                        .append_pair(azure_core::query_param::API_VERSION, "2023-06-15-preview");
                                }
                                let req_body = azure_core::EMPTY_BODY;
                                req.set_body(req_body);
                                this.client.send(&mut req).await?
                            }
                            None => {
                                let mut req = azure_core::Request::new(url, azure_core::Method::Get);
                                let credential = this.client.token_credential();
                                let token_response = credential.get_token(&this.client.scopes().join(" ")).await?;
                                req.insert_header(
                                    azure_core::headers::AUTHORIZATION,
                                    format!("Bearer {}", token_response.token.secret()),
                                );
                                let req_body = azure_core::EMPTY_BODY;
                                req.set_body(req_body);
                                this.client.send(&mut req).await?
                            }
                        };
                        let rsp = match rsp.status() {
                            azure_core::StatusCode::Ok => Ok(Response(rsp)),
                            status_code => Err(azure_core::error::Error::from(azure_core::error::ErrorKind::HttpResponse {
                                status: status_code,
                                error_code: None,
                            })),
                        };
                        rsp?.into_body().await
                    }
                };
                azure_core::Pageable::new(make_request)
            }
            fn url(&self) -> azure_core::Result<azure_core::Url> {
                let mut url = azure_core::Url::parse(&format!(
                    "{}/codesigningaccounts/{}/certificateprofiles/{}/sign/eku",
                    self.client.endpoint(),
                    &self.code_signing_account_name,
                    &self.certificate_profile_name
                ))?;
                let has_api_version_already = url.query_pairs().any(|(k, _)| k == azure_core::query_param::API_VERSION);
                if !has_api_version_already {
                    url.query_pairs_mut()
                        .append_pair(azure_core::query_param::API_VERSION, "2023-06-15-preview");
                }
                Ok(url)
            }
        }
    }
    pub mod get_sign_root_certificate {
        use super::models;
        #[cfg(not(target_arch = "wasm32"))]
        use futures::future::BoxFuture;
        #[cfg(target_arch = "wasm32")]
        use futures::future::LocalBoxFuture as BoxFuture;
        #[derive(Debug)]
        pub struct Response(azure_core::Response);
        impl Response {
            pub async fn into_body(self) -> azure_core::Result<bytes::Bytes> {
                let bytes = self.0.into_body().collect().await?;
                let body = bytes;
                Ok(body)
            }
            pub fn into_raw_response(self) -> azure_core::Response {
                self.0
            }
            pub fn as_raw_response(&self) -> &azure_core::Response {
                &self.0
            }
        }
        impl From<Response> for azure_core::Response {
            fn from(rsp: Response) -> Self {
                rsp.into_raw_response()
            }
        }
        impl AsRef<azure_core::Response> for Response {
            fn as_ref(&self) -> &azure_core::Response {
                self.as_raw_response()
            }
        }
        #[derive(Clone)]
        #[doc = r" `RequestBuilder` provides a mechanism for setting optional parameters on a request."]
        #[doc = r""]
        #[doc = r" Each `RequestBuilder` parameter method call returns `Self`, so setting of multiple"]
        #[doc = r" parameters can be chained."]
        #[doc = r""]
        #[doc = r" To finalize and submit the request, invoke `.await`, which"]
        #[doc = r" which will convert the [`RequestBuilder`] into a future"]
        #[doc = r" executes the request and returns a `Result` with the parsed"]
        #[doc = r" response."]
        #[doc = r""]
        #[doc = r" In order to execute the request without polling the service"]
        #[doc = r" until the operation completes, use `.send().await` instead."]
        #[doc = r""]
        #[doc = r" If you need lower-level access to the raw response details"]
        #[doc = r" (e.g. to inspect response headers or raw body data) then you"]
        #[doc = r" can finalize the request using the"]
        #[doc = r" [`RequestBuilder::send()`] method which returns a future"]
        #[doc = r" that resolves to a lower-level [`Response`] value."]
        pub struct RequestBuilder {
            pub(crate) client: super::super::Client,
            pub(crate) code_signing_account_name: String,
            pub(crate) certificate_profile_name: String,
        }
        impl RequestBuilder {
            #[doc = "Returns a future that sends the request and returns a [`Response`] object that provides low-level access to full response details."]
            #[doc = ""]
            #[doc = "You should typically use `.await` (which implicitly calls `IntoFuture::into_future()`) to finalize and send requests rather than `send()`."]
            #[doc = "However, this function can provide more flexibility when required."]
            pub fn send(self) -> BoxFuture<'static, azure_core::Result<Response>> {
                Box::pin({
                    let this = self.clone();
                    async move {
                        let url = this.url()?;
                        let mut req = azure_core::Request::new(url, azure_core::Method::Get);
                        let credential = this.client.token_credential();
                        let token_response = credential.get_token(&this.client.scopes().join(" ")).await?;
                        req.insert_header(
                            azure_core::headers::AUTHORIZATION,
                            format!("Bearer {}", token_response.token.secret()),
                        );
                        let req_body = azure_core::EMPTY_BODY;
                        req.set_body(req_body);
                        Ok(Response(this.client.send(&mut req).await?))
                    }
                })
            }
            fn url(&self) -> azure_core::Result<azure_core::Url> {
                let mut url = azure_core::Url::parse(&format!(
                    "{}/codesigningaccounts/{}/certificateprofiles/{}/sign/rootcert",
                    self.client.endpoint(),
                    &self.code_signing_account_name,
                    &self.certificate_profile_name
                ))?;
                let has_api_version_already = url.query_pairs().any(|(k, _)| k == azure_core::query_param::API_VERSION);
                if !has_api_version_already {
                    url.query_pairs_mut()
                        .append_pair(azure_core::query_param::API_VERSION, "2023-06-15-preview");
                }
                Ok(url)
            }
        }
        impl std::future::IntoFuture for RequestBuilder {
            type Output = azure_core::Result<bytes::Bytes>;
            type IntoFuture = BoxFuture<'static, azure_core::Result<bytes::Bytes>>;
            #[doc = "Returns a future that sends the request and returns the parsed response body."]
            #[doc = ""]
            #[doc = "You should not normally call this method directly, simply invoke `.await` which implicitly calls `IntoFuture::into_future`."]
            #[doc = ""]
            #[doc = "See [IntoFuture documentation](https://doc.rust-lang.org/std/future/trait.IntoFuture.html) for more details."]
            fn into_future(self) -> Self::IntoFuture {
                Box::pin(async move { self.send().await?.into_body().await })
            }
        }
    }
}