use crate::error::Result;
use crate::provider::{AwsProvider, CloudProvider};
use crate::store::traits::AccessKeyStore;
use crate::wami::credentials::access_key::{
builder as access_key_builder, AccessKey, CreateAccessKeyRequest, ListAccessKeysRequest,
};
use std::sync::{Arc, RwLock};
pub struct AccessKeyService<S> {
store: Arc<RwLock<S>>,
provider: Arc<dyn CloudProvider>,
account_id: String,
}
impl<S: AccessKeyStore> AccessKeyService<S> {
pub fn new(store: Arc<RwLock<S>>, account_id: String) -> Self {
Self {
store,
provider: Arc::new(AwsProvider::new()),
account_id,
}
}
pub fn with_provider(&self, provider: Arc<dyn CloudProvider>) -> Self {
Self {
store: self.store.clone(),
provider,
account_id: self.account_id.clone(),
}
}
pub async fn create_access_key(&self, request: CreateAccessKeyRequest) -> Result<AccessKey> {
let access_key = access_key_builder::build_access_key(
request.user_name,
&*self.provider,
&self.account_id,
);
self.store
.write()
.unwrap()
.create_access_key(access_key)
.await
}
pub async fn get_access_key(&self, access_key_id: &str) -> Result<Option<AccessKey>> {
self.store
.read()
.unwrap()
.get_access_key(access_key_id)
.await
}
pub async fn update_access_key(&self, access_key: AccessKey) -> Result<AccessKey> {
self.store
.write()
.unwrap()
.update_access_key(access_key)
.await
}
pub async fn delete_access_key(&self, access_key_id: &str) -> Result<()> {
self.store
.write()
.unwrap()
.delete_access_key(access_key_id)
.await
}
pub async fn list_access_keys(
&self,
request: ListAccessKeysRequest,
) -> Result<(Vec<AccessKey>, bool, Option<String>)> {
self.store
.read()
.unwrap()
.list_access_keys(&request.user_name, request.pagination.as_ref())
.await
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::store::memory::InMemoryWamiStore;
fn setup_service() -> AccessKeyService<InMemoryWamiStore> {
let store = Arc::new(RwLock::new(InMemoryWamiStore::default()));
AccessKeyService::new(store, "123456789012".to_string())
}
#[tokio::test]
async fn test_create_and_get_access_key() {
let service = setup_service();
let request = CreateAccessKeyRequest {
user_name: "alice".to_string(),
};
let access_key = service.create_access_key(request).await.unwrap();
assert_eq!(access_key.user_name, "alice");
assert!(!access_key.access_key_id.is_empty());
assert!(access_key.secret_access_key.is_some());
let retrieved = service
.get_access_key(&access_key.access_key_id)
.await
.unwrap();
assert!(retrieved.is_some());
assert_eq!(retrieved.unwrap().user_name, "alice");
}
#[tokio::test]
async fn test_delete_access_key() {
let service = setup_service();
let request = CreateAccessKeyRequest {
user_name: "bob".to_string(),
};
let access_key = service.create_access_key(request).await.unwrap();
service
.delete_access_key(&access_key.access_key_id)
.await
.unwrap();
let retrieved = service
.get_access_key(&access_key.access_key_id)
.await
.unwrap();
assert!(retrieved.is_none());
}
#[tokio::test]
async fn test_list_access_keys() {
let service = setup_service();
for _ in 0..3 {
let request = CreateAccessKeyRequest {
user_name: "charlie".to_string(),
};
service.create_access_key(request).await.unwrap();
}
let list_request = ListAccessKeysRequest {
user_name: "charlie".to_string(),
pagination: None,
};
let (keys, _, _) = service.list_access_keys(list_request).await.unwrap();
assert_eq!(keys.len(), 3);
}
}