mirror of
https://github.com/OMGeeky/google-apis-rs.git
synced 2026-01-01 00:51:17 +01:00
550 lines
24 KiB
Rust
550 lines
24 KiB
Rust
use super::*;
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/// Returns the Analytics data.
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///
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/// A builder for the *batchGet* method supported by a *report* resource.
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/// It is not used directly, but through a [`ReportMethods`] instance.
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///
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/// # Example
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///
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/// Instantiate a resource method builder
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///
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/// ```test_harness,no_run
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/// # extern crate hyper;
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/// # extern crate hyper_rustls;
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/// # extern crate google_analyticsreporting4 as analyticsreporting4;
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/// use analyticsreporting4::api::GetReportsRequest;
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/// use analyticsreporting4::api::enums::*;
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/// # async fn dox() {
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/// # use std::default::Default;
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/// # use analyticsreporting4::{AnalyticsReporting, oauth2, hyper, hyper_rustls, chrono, FieldMask};
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///
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/// # let secret: oauth2::ApplicationSecret = Default::default();
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/// # let auth = oauth2::InstalledFlowAuthenticator::builder(
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/// # secret,
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/// # oauth2::InstalledFlowReturnMethod::HTTPRedirect,
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/// # ).build().await.unwrap();
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/// # let mut hub = AnalyticsReporting::new(hyper::Client::builder().build(hyper_rustls::HttpsConnectorBuilder::new().with_native_roots().unwrap().https_or_http().enable_http1().build()), auth);
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/// // As the method needs a request, you would usually fill it with the desired information
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/// // into the respective structure. Some of the parts shown here might not be applicable !
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/// // Values shown here are possibly random and not representative !
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/// let mut req = GetReportsRequest::default();
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///
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/// // You can configure optional parameters by calling the respective setters at will, and
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/// // execute the final call using `doit()`.
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/// // Values shown here are possibly random and not representative !
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/// let result = hub.reports().batch_get(req)
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/// .doit().await;
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/// # }
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/// ```
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pub struct ReportBatchGetCall<'a, S>
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where S: 'a {
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pub(super) hub: &'a AnalyticsReporting<S>,
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pub(super) _request: GetReportsRequest,
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pub(super) _delegate: Option<&'a mut dyn client::Delegate>,
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pub(super) _additional_params: HashMap<String, String>,
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pub(super) _scopes: BTreeSet<String>
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}
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impl<'a, S> client::CallBuilder for ReportBatchGetCall<'a, S> {}
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impl<'a, S> ReportBatchGetCall<'a, S>
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where
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S: tower_service::Service<http::Uri> + Clone + Send + Sync + 'static,
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S::Response: hyper::client::connect::Connection + AsyncRead + AsyncWrite + Send + Unpin + 'static,
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S::Future: Send + Unpin + 'static,
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S::Error: Into<Box<dyn StdError + Send + Sync>>,
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{
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/// Perform the operation you have build so far.
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pub async fn doit(mut self) -> client::Result<(hyper::Response<hyper::body::Body>, GetReportsResponse)> {
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use std::io::{Read, Seek};
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use hyper::header::{CONTENT_TYPE, CONTENT_LENGTH, AUTHORIZATION, USER_AGENT, LOCATION};
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use client::{ToParts, url::Params};
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use std::borrow::Cow;
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let mut dd = client::DefaultDelegate;
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let mut dlg: &mut dyn client::Delegate = self._delegate.unwrap_or(&mut dd);
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dlg.begin(client::MethodInfo { id: "analyticsreporting.reports.batchGet",
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http_method: hyper::Method::POST });
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for &field in ["alt"].iter() {
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if self._additional_params.contains_key(field) {
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dlg.finished(false);
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return Err(client::Error::FieldClash(field));
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}
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}
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let mut params = Params::with_capacity(3 + self._additional_params.len());
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params.extend(self._additional_params.iter());
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params.push("alt", "json");
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let mut url = self.hub._base_url.clone() + "v4/reports:batchGet";
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if self._scopes.is_empty() {
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self._scopes.insert(Scope::Analytic.as_ref().to_string());
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}
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let url = params.parse_with_url(&url);
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let mut json_mime_type = mime::APPLICATION_JSON;
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let mut request_value_reader =
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{
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let mut value = json::value::to_value(&self._request).expect("serde to work");
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client::remove_json_null_values(&mut value);
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let mut dst = io::Cursor::new(Vec::with_capacity(128));
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json::to_writer(&mut dst, &value).unwrap();
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dst
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};
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let request_size = request_value_reader.seek(io::SeekFrom::End(0)).unwrap();
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request_value_reader.seek(io::SeekFrom::Start(0)).unwrap();
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loop {
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let token = match self.hub.auth.get_token(&self._scopes.iter().map(String::as_str).collect::<Vec<_>>()[..]).await {
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Ok(token) => token,
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Err(e) => {
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match dlg.token(e) {
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Ok(token) => token,
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Err(e) => {
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dlg.finished(false);
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return Err(client::Error::MissingToken(e));
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}
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}
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}
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};
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request_value_reader.seek(io::SeekFrom::Start(0)).unwrap();
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let mut req_result = {
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let client = &self.hub.client;
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dlg.pre_request();
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let mut req_builder = hyper::Request::builder()
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.method(hyper::Method::POST)
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.uri(url.as_str())
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.header(USER_AGENT, self.hub._user_agent.clone());
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if let Some(token) = token.as_ref() {
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req_builder = req_builder.header(AUTHORIZATION, format!("Bearer {}", token));
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}
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let request = req_builder
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.header(CONTENT_TYPE, json_mime_type.to_string())
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.header(CONTENT_LENGTH, request_size as u64)
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.body(hyper::body::Body::from(request_value_reader.get_ref().clone()));
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client.request(request.unwrap()).await
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};
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match req_result {
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Err(err) => {
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if let client::Retry::After(d) = dlg.http_error(&err) {
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sleep(d).await;
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continue;
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}
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dlg.finished(false);
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return Err(client::Error::HttpError(err))
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}
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Ok(mut res) => {
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if !res.status().is_success() {
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let res_body_string = client::get_body_as_string(res.body_mut()).await;
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let (parts, _) = res.into_parts();
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let body = hyper::Body::from(res_body_string.clone());
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let restored_response = hyper::Response::from_parts(parts, body);
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let server_response = json::from_str::<serde_json::Value>(&res_body_string).ok();
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if let client::Retry::After(d) = dlg.http_failure(&restored_response, server_response.clone()) {
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sleep(d).await;
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continue;
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}
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dlg.finished(false);
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return match server_response {
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Some(error_value) => Err(client::Error::BadRequest(error_value)),
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None => Err(client::Error::Failure(restored_response)),
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}
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}
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let result_value = {
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let res_body_string = client::get_body_as_string(res.body_mut()).await;
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match json::from_str(&res_body_string) {
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Ok(decoded) => (res, decoded),
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Err(err) => {
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dlg.response_json_decode_error(&res_body_string, &err);
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return Err(client::Error::JsonDecodeError(res_body_string, err));
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}
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}
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};
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dlg.finished(true);
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return Ok(result_value)
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}
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}
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}
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}
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///
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/// Sets the *request* property to the given value.
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///
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/// Even though the property as already been set when instantiating this call,
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/// we provide this method for API completeness.
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pub fn request(mut self, new_value: GetReportsRequest) -> ReportBatchGetCall<'a, S> {
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self._request = new_value;
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self
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}
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/// The delegate implementation is consulted whenever there is an intermediate result, or if something goes wrong
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/// while executing the actual API request.
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///
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/// ````text
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/// It should be used to handle progress information, and to implement a certain level of resilience.
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/// ````
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///
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/// Sets the *delegate* property to the given value.
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pub fn delegate(mut self, new_value: &'a mut dyn client::Delegate) -> ReportBatchGetCall<'a, S> {
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self._delegate = Some(new_value);
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self
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}
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/// Set any additional parameter of the query string used in the request.
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/// It should be used to set parameters which are not yet available through their own
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/// setters.
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///
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/// Please note that this method must not be used to set any of the known parameters
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/// which have their own setter method. If done anyway, the request will fail.
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///
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/// # Additional Parameters
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///
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/// * *$.xgafv* (query-string) - V1 error format.
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/// * *access_token* (query-string) - OAuth access token.
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/// * *alt* (query-string) - Data format for response.
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/// * *callback* (query-string) - JSONP
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/// * *fields* (query-string) - Selector specifying which fields to include in a partial response.
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/// * *key* (query-string) - API key. Your API key identifies your project and provides you with API access, quota, and reports. Required unless you provide an OAuth 2.0 token.
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/// * *oauth_token* (query-string) - OAuth 2.0 token for the current user.
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/// * *prettyPrint* (query-boolean) - Returns response with indentations and line breaks.
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/// * *quotaUser* (query-string) - Available to use for quota purposes for server-side applications. Can be any arbitrary string assigned to a user, but should not exceed 40 characters.
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/// * *uploadType* (query-string) - Legacy upload protocol for media (e.g. "media", "multipart").
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/// * *upload_protocol* (query-string) - Upload protocol for media (e.g. "raw", "multipart").
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pub fn param<T>(mut self, name: T, value: T) -> ReportBatchGetCall<'a, S>
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where T: AsRef<str> {
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self._additional_params.insert(name.as_ref().to_string(), value.as_ref().to_string());
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self
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}
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/// Identifies the authorization scope for the method you are building.
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///
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/// Use this method to actively specify which scope should be used, instead of the default [`Scope`] variant
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/// [`Scope::Analytic`].
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///
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/// The `scope` will be added to a set of scopes. This is important as one can maintain access
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/// tokens for more than one scope.
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///
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/// Usually there is more than one suitable scope to authorize an operation, some of which may
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/// encompass more rights than others. For example, for listing resources, a *read-only* scope will be
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/// sufficient, a read-write scope will do as well.
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pub fn add_scope<St>(mut self, scope: St) -> ReportBatchGetCall<'a, S>
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where St: AsRef<str> {
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self._scopes.insert(String::from(scope.as_ref()));
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self
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}
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/// Identifies the authorization scope(s) for the method you are building.
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///
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/// See [`Self::add_scope()`] for details.
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pub fn add_scopes<I, St>(mut self, scopes: I) -> ReportBatchGetCall<'a, S>
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where I: IntoIterator<Item = St>,
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St: AsRef<str> {
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self._scopes
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.extend(scopes.into_iter().map(|s| String::from(s.as_ref())));
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self
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}
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/// Removes all scopes, and no default scope will be used either.
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/// In this case, you have to specify your API-key using the `key` parameter (see [`Self::param()`]
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/// for details).
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pub fn clear_scopes(mut self) -> ReportBatchGetCall<'a, S> {
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self._scopes.clear();
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self
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}
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}
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/// Returns User Activity data.
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///
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/// A builder for the *search* method supported by a *userActivity* resource.
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/// It is not used directly, but through a [`UserActivityMethods`] instance.
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///
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/// # Example
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///
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/// Instantiate a resource method builder
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///
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/// ```test_harness,no_run
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/// # extern crate hyper;
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/// # extern crate hyper_rustls;
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/// # extern crate google_analyticsreporting4 as analyticsreporting4;
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/// use analyticsreporting4::api::SearchUserActivityRequest;
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/// use analyticsreporting4::api::enums::*;
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/// # async fn dox() {
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/// # use std::default::Default;
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/// # use analyticsreporting4::{AnalyticsReporting, oauth2, hyper, hyper_rustls, chrono, FieldMask};
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///
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/// # let secret: oauth2::ApplicationSecret = Default::default();
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/// # let auth = oauth2::InstalledFlowAuthenticator::builder(
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/// # secret,
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/// # oauth2::InstalledFlowReturnMethod::HTTPRedirect,
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/// # ).build().await.unwrap();
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/// # let mut hub = AnalyticsReporting::new(hyper::Client::builder().build(hyper_rustls::HttpsConnectorBuilder::new().with_native_roots().unwrap().https_or_http().enable_http1().build()), auth);
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/// // As the method needs a request, you would usually fill it with the desired information
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/// // into the respective structure. Some of the parts shown here might not be applicable !
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/// // Values shown here are possibly random and not representative !
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/// let mut req = SearchUserActivityRequest::default();
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///
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/// // You can configure optional parameters by calling the respective setters at will, and
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/// // execute the final call using `doit()`.
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/// // Values shown here are possibly random and not representative !
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/// let result = hub.user_activity().search(req)
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/// .doit().await;
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/// # }
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/// ```
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pub struct UserActivitySearchCall<'a, S>
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where S: 'a {
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pub(super) hub: &'a AnalyticsReporting<S>,
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pub(super) _request: SearchUserActivityRequest,
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pub(super) _delegate: Option<&'a mut dyn client::Delegate>,
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pub(super) _additional_params: HashMap<String, String>,
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pub(super) _scopes: BTreeSet<String>
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}
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impl<'a, S> client::CallBuilder for UserActivitySearchCall<'a, S> {}
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impl<'a, S> UserActivitySearchCall<'a, S>
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where
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S: tower_service::Service<http::Uri> + Clone + Send + Sync + 'static,
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S::Response: hyper::client::connect::Connection + AsyncRead + AsyncWrite + Send + Unpin + 'static,
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S::Future: Send + Unpin + 'static,
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S::Error: Into<Box<dyn StdError + Send + Sync>>,
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{
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/// Perform the operation you have build so far.
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pub async fn doit(mut self) -> client::Result<(hyper::Response<hyper::body::Body>, SearchUserActivityResponse)> {
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use std::io::{Read, Seek};
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use hyper::header::{CONTENT_TYPE, CONTENT_LENGTH, AUTHORIZATION, USER_AGENT, LOCATION};
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use client::{ToParts, url::Params};
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use std::borrow::Cow;
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let mut dd = client::DefaultDelegate;
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let mut dlg: &mut dyn client::Delegate = self._delegate.unwrap_or(&mut dd);
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dlg.begin(client::MethodInfo { id: "analyticsreporting.userActivity.search",
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http_method: hyper::Method::POST });
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for &field in ["alt"].iter() {
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if self._additional_params.contains_key(field) {
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dlg.finished(false);
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return Err(client::Error::FieldClash(field));
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}
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}
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let mut params = Params::with_capacity(3 + self._additional_params.len());
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params.extend(self._additional_params.iter());
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params.push("alt", "json");
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let mut url = self.hub._base_url.clone() + "v4/userActivity:search";
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if self._scopes.is_empty() {
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self._scopes.insert(Scope::Analytic.as_ref().to_string());
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}
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let url = params.parse_with_url(&url);
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let mut json_mime_type = mime::APPLICATION_JSON;
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let mut request_value_reader =
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{
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let mut value = json::value::to_value(&self._request).expect("serde to work");
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client::remove_json_null_values(&mut value);
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let mut dst = io::Cursor::new(Vec::with_capacity(128));
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json::to_writer(&mut dst, &value).unwrap();
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dst
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};
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let request_size = request_value_reader.seek(io::SeekFrom::End(0)).unwrap();
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request_value_reader.seek(io::SeekFrom::Start(0)).unwrap();
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loop {
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let token = match self.hub.auth.get_token(&self._scopes.iter().map(String::as_str).collect::<Vec<_>>()[..]).await {
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Ok(token) => token,
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Err(e) => {
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match dlg.token(e) {
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Ok(token) => token,
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Err(e) => {
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dlg.finished(false);
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return Err(client::Error::MissingToken(e));
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}
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}
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}
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};
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request_value_reader.seek(io::SeekFrom::Start(0)).unwrap();
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let mut req_result = {
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let client = &self.hub.client;
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dlg.pre_request();
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let mut req_builder = hyper::Request::builder()
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.method(hyper::Method::POST)
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.uri(url.as_str())
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.header(USER_AGENT, self.hub._user_agent.clone());
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if let Some(token) = token.as_ref() {
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req_builder = req_builder.header(AUTHORIZATION, format!("Bearer {}", token));
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}
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let request = req_builder
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.header(CONTENT_TYPE, json_mime_type.to_string())
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.header(CONTENT_LENGTH, request_size as u64)
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.body(hyper::body::Body::from(request_value_reader.get_ref().clone()));
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client.request(request.unwrap()).await
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};
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match req_result {
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Err(err) => {
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if let client::Retry::After(d) = dlg.http_error(&err) {
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sleep(d).await;
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continue;
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}
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dlg.finished(false);
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return Err(client::Error::HttpError(err))
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}
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Ok(mut res) => {
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if !res.status().is_success() {
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let res_body_string = client::get_body_as_string(res.body_mut()).await;
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let (parts, _) = res.into_parts();
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let body = hyper::Body::from(res_body_string.clone());
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let restored_response = hyper::Response::from_parts(parts, body);
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let server_response = json::from_str::<serde_json::Value>(&res_body_string).ok();
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if let client::Retry::After(d) = dlg.http_failure(&restored_response, server_response.clone()) {
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sleep(d).await;
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continue;
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}
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dlg.finished(false);
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return match server_response {
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Some(error_value) => Err(client::Error::BadRequest(error_value)),
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None => Err(client::Error::Failure(restored_response)),
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}
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}
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let result_value = {
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let res_body_string = client::get_body_as_string(res.body_mut()).await;
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match json::from_str(&res_body_string) {
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Ok(decoded) => (res, decoded),
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Err(err) => {
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dlg.response_json_decode_error(&res_body_string, &err);
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return Err(client::Error::JsonDecodeError(res_body_string, err));
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}
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}
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};
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dlg.finished(true);
|
|
return Ok(result_value)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
///
|
|
/// Sets the *request* property to the given value.
|
|
///
|
|
/// Even though the property as already been set when instantiating this call,
|
|
/// we provide this method for API completeness.
|
|
pub fn request(mut self, new_value: SearchUserActivityRequest) -> UserActivitySearchCall<'a, S> {
|
|
self._request = new_value;
|
|
self
|
|
}
|
|
/// The delegate implementation is consulted whenever there is an intermediate result, or if something goes wrong
|
|
/// while executing the actual API request.
|
|
///
|
|
/// ````text
|
|
/// It should be used to handle progress information, and to implement a certain level of resilience.
|
|
/// ````
|
|
///
|
|
/// Sets the *delegate* property to the given value.
|
|
pub fn delegate(mut self, new_value: &'a mut dyn client::Delegate) -> UserActivitySearchCall<'a, S> {
|
|
self._delegate = Some(new_value);
|
|
self
|
|
}
|
|
|
|
/// Set any additional parameter of the query string used in the request.
|
|
/// It should be used to set parameters which are not yet available through their own
|
|
/// setters.
|
|
///
|
|
/// Please note that this method must not be used to set any of the known parameters
|
|
/// which have their own setter method. If done anyway, the request will fail.
|
|
///
|
|
/// # Additional Parameters
|
|
///
|
|
/// * *$.xgafv* (query-string) - V1 error format.
|
|
/// * *access_token* (query-string) - OAuth access token.
|
|
/// * *alt* (query-string) - Data format for response.
|
|
/// * *callback* (query-string) - JSONP
|
|
/// * *fields* (query-string) - Selector specifying which fields to include in a partial response.
|
|
/// * *key* (query-string) - API key. Your API key identifies your project and provides you with API access, quota, and reports. Required unless you provide an OAuth 2.0 token.
|
|
/// * *oauth_token* (query-string) - OAuth 2.0 token for the current user.
|
|
/// * *prettyPrint* (query-boolean) - Returns response with indentations and line breaks.
|
|
/// * *quotaUser* (query-string) - Available to use for quota purposes for server-side applications. Can be any arbitrary string assigned to a user, but should not exceed 40 characters.
|
|
/// * *uploadType* (query-string) - Legacy upload protocol for media (e.g. "media", "multipart").
|
|
/// * *upload_protocol* (query-string) - Upload protocol for media (e.g. "raw", "multipart").
|
|
pub fn param<T>(mut self, name: T, value: T) -> UserActivitySearchCall<'a, S>
|
|
where T: AsRef<str> {
|
|
self._additional_params.insert(name.as_ref().to_string(), value.as_ref().to_string());
|
|
self
|
|
}
|
|
|
|
/// Identifies the authorization scope for the method you are building.
|
|
///
|
|
/// Use this method to actively specify which scope should be used, instead of the default [`Scope`] variant
|
|
/// [`Scope::Analytic`].
|
|
///
|
|
/// The `scope` will be added to a set of scopes. This is important as one can maintain access
|
|
/// tokens for more than one scope.
|
|
///
|
|
/// Usually there is more than one suitable scope to authorize an operation, some of which may
|
|
/// encompass more rights than others. For example, for listing resources, a *read-only* scope will be
|
|
/// sufficient, a read-write scope will do as well.
|
|
pub fn add_scope<St>(mut self, scope: St) -> UserActivitySearchCall<'a, S>
|
|
where St: AsRef<str> {
|
|
self._scopes.insert(String::from(scope.as_ref()));
|
|
self
|
|
}
|
|
/// Identifies the authorization scope(s) for the method you are building.
|
|
///
|
|
/// See [`Self::add_scope()`] for details.
|
|
pub fn add_scopes<I, St>(mut self, scopes: I) -> UserActivitySearchCall<'a, S>
|
|
where I: IntoIterator<Item = St>,
|
|
St: AsRef<str> {
|
|
self._scopes
|
|
.extend(scopes.into_iter().map(|s| String::from(s.as_ref())));
|
|
self
|
|
}
|
|
|
|
/// Removes all scopes, and no default scope will be used either.
|
|
/// In this case, you have to specify your API-key using the `key` parameter (see [`Self::param()`]
|
|
/// for details).
|
|
pub fn clear_scopes(mut self) -> UserActivitySearchCall<'a, S> {
|
|
self._scopes.clear();
|
|
self
|
|
}
|
|
}
|
|
|
|
|