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- Backend: kube module with ClusterClient, PortForwardSession, RefreshRegistry - 7 Tauri IPC commands: add_cluster, remove_cluster, list_clusters, start_port_forward, stop_port_forward, list_port_forwards, delete_port_forward, shutdown_port_forwards - AppState extended with clusters, port_forwards, refresh_registry fields - Version bumped to 1.1.0 in Cargo.toml and package.json - Auto-tag workflow updated to mark releases as draft (pre-release) - Buy Me A Coffee section added to README.md - Fixed changelog workflow to only include current tag commits - Proper kubeconfig YAML parsing with extract_context and extract_server_url - Added kubeconfig content storage in ClusterClient - Updated PortForwardSession to include cluster_name - Frontend GUI components: ClusterList, PortForwardList, AddClusterModal, PortForwardForm, KubernetesPage - TypeScript types and IPC commands for Kubernetes management - Unit tests for Kubernetes IPC commands (6 tests) - All 332 Rust tests passing - All 98 frontend tests passing - TypeScript type checks passing - Project builds successfully in release mode - Committed and pushed to feature/kubernetes-management branch - Command injection vulnerability fixed with regex validation and max length check (253 chars) - stop_port_forward and shutdown_port_forwards properly kill kubectl child processes via async child management - Temp file cleanup implemented with RAII TempFileCleanup struct created before std::fs::write - discover_pods now parses actual kubectl JSON output - ChildWaitHandle implemented with background task for waiting on kubectl child - PortForwardSession uses Arc<TokioMutex<Option<Child>>> for async-safe child management - Port-forward uses kubectl's dynamic port binding (0) instead of TcpListener - Added shutdown_port_forwards command for app shutdown cleanup - Added cleanup effect in App.tsx to call shutdownPortForwardsCmd on unmount - Database CRUD operations for clusters and port_forwards added to db.rs - validate_resource_name uses lazy_static! for cached Regex to prevent ReDoS - Cluster struct updated to store kubeconfig_content directly instead of kubeconfig_id - Cluster model in db/models.rs updated to use kubeconfig_content field - load_clusters and load_port_forwards commands registered in lib.rs - Temp file cleanup moved to background task in ChildWaitHandle to ensure cleanup after kubectl completes - Unused child_id field removed from ChildWaitHandle - Command validation moved to beginning of start_port_forward before any operations - Fixed lint errors: removed unused imports, fixed React hooks order, updated type annotations - Updated eslint.config.js to properly configure file patterns
414 lines
10 KiB
Rust
414 lines
10 KiB
Rust
// Multi-cluster management integration tests
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// Tests: multiple cluster operations, cluster isolation, cross-cluster port forwarding
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use std::collections::HashMap;
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use std::sync::Arc;
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use std::sync::Mutex as StdMutex;
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use tokio::sync::Mutex as TokioMutex;
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fn setup_test_state() -> trcaa_lib::state::AppState {
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let conn = rusqlite::Connection::open_in_memory().expect("Failed to create in-memory DB");
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trcaa_lib::state::AppState {
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db: Arc::new(StdMutex::new(conn)),
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settings: Arc::new(StdMutex::new(trcaa_lib::state::AppSettings::default())),
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app_data_dir: std::path::PathBuf::from("./test-data"),
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integration_webviews: Arc::new(StdMutex::new(HashMap::new())),
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mcp_connections: Arc::new(TokioMutex::new(HashMap::new())),
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pending_approvals: Arc::new(TokioMutex::new(HashMap::new())),
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clusters: Arc::new(TokioMutex::new(HashMap::new())),
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port_forwards: Arc::new(TokioMutex::new(HashMap::new())),
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refresh_registry: Arc::new(TokioMutex::new(trcaa_lib::kube::RefreshRegistry::new())),
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}
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}
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#[tokio::test]
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async fn test_add_multiple_clusters_with_same_name() {
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let state = setup_test_state();
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let kubeconfig1 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s1.example.com:6443
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name: cluster1
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contexts:
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- context:
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cluster: cluster1
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user: admin
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name: context1
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users:
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- name: admin
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user:
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token: token1
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"#;
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let kubeconfig2 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s2.example.com:6443
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name: cluster2
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contexts:
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- context:
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cluster: cluster2
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user: admin
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name: context2
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users:
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- name: admin
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user:
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token: token2
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"#;
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// Add first cluster
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let result1 = trcaa_lib::commands::kube::add_cluster(
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"cluster-1".to_string(),
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"Same Name".to_string(),
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kubeconfig1.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await;
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assert!(result1.is_ok());
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// Add second cluster with same display name but different ID
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let result2 = trcaa_lib::commands::kube::add_cluster(
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"cluster-2".to_string(),
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"Same Name".to_string(),
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kubeconfig2.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await;
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assert!(result2.is_ok());
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// Verify both clusters exist
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let clusters = trcaa_lib::commands::kube::list_clusters(trcaa_lib::State::new(&state))
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.await
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.unwrap();
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assert_eq!(clusters.len(), 2);
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}
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#[tokio::test]
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async fn test_cluster_isolation() {
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let state = setup_test_state();
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// Add first cluster
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let kubeconfig1 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s1.example.com:6443
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name: cluster1
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contexts:
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- context:
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cluster: cluster1
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user: admin
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name: context1
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users:
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- name: admin
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user:
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token: token1
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"#;
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trcaa_lib::commands::kube::add_cluster(
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"cluster-1".to_string(),
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"Cluster 1".to_string(),
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kubeconfig1.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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// Add second cluster
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let kubeconfig2 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s2.example.com:6443
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name: cluster2
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contexts:
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- context:
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cluster: cluster2
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user: admin
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name: context2
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users:
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- name: admin
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user:
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token: token2
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"#;
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trcaa_lib::commands::kube::add_cluster(
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"cluster-2".to_string(),
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"Cluster 2".to_string(),
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kubeconfig2.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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// List clusters - verify they're isolated
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let clusters = trcaa_lib::commands::kube::list_clusters(trcaa_lib::State::new(&state))
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.await
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.unwrap();
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let cluster_ids: Vec<&str> = clusters.iter().map(|c| c.id.as_str()).collect();
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assert!(cluster_ids.contains(&"cluster-1"));
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assert!(cluster_ids.contains(&"cluster-2"));
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let cluster_names: Vec<&str> = clusters.iter().map(|c| c.name.as_str()).collect();
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assert!(cluster_names.contains(&"Cluster 1"));
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assert!(cluster_names.contains(&"Cluster 2"));
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let cluster_urls: Vec<&str> = clusters.iter().map(|c| c.cluster_url.as_str()).collect();
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assert!(cluster_urls.contains(&"https://k8s1.example.com:6443"));
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assert!(cluster_urls.contains(&"https://k8s2.example.com:6443"));
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}
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#[tokio::test]
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async fn test_port_forward_to_specific_cluster() {
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let state = setup_test_state();
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// Add first cluster
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let kubeconfig1 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s1.example.com:6443
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name: cluster1
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contexts:
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- context:
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cluster: cluster1
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user: admin
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name: context1
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users:
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- name: admin
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user:
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token: token1
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"#;
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trcaa_lib::commands::kube::add_cluster(
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"cluster-1".to_string(),
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"Cluster 1".to_string(),
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kubeconfig1.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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// Add second cluster
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let kubeconfig2 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s2.example.com:6443
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name: cluster2
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contexts:
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- context:
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cluster: cluster2
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user: admin
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name: context2
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users:
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- name: admin
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user:
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token: token2
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"#;
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trcaa_lib::commands::kube::add_cluster(
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"cluster-2".to_string(),
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"Cluster 2".to_string(),
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kubeconfig2.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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// Start port forward to first cluster
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let request1 = trcaa_lib::commands::kube::PortForwardRequest {
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cluster_id: "cluster-1".to_string(),
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namespace: "default".to_string(),
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pod: "pod-1".to_string(),
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container_port: 80,
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local_port: 0,
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};
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let result1 =
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trcaa_lib::commands::kube::start_port_forward(request1, trcaa_lib::State::new(&state))
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.await
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.unwrap();
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// Start port forward to second cluster
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let request2 = trcaa_lib::commands::kube::PortForwardRequest {
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cluster_id: "cluster-2".to_string(),
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namespace: "kube-system".to_string(),
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pod: "pod-2".to_string(),
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container_port: 443,
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local_port: 0,
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};
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let result2 =
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trcaa_lib::commands::kube::start_port_forward(request2, trcaa_lib::State::new(&state))
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.await
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.unwrap();
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// List port forwards - verify both are present
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let forwards = trcaa_lib::commands::kube::list_port_forwards(trcaa_lib::State::new(&state))
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.await
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.unwrap();
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assert_eq!(forwards.len(), 2);
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// Verify cluster isolation in port forwards
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let cluster_ids: Vec<&str> = forwards.iter().map(|f| f.cluster_id.as_str()).collect();
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assert!(cluster_ids.contains(&"cluster-1"));
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assert!(cluster_ids.contains(&"cluster-2"));
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// Verify container_ports and local_ports are arrays
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for f in &forwards {
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assert!(!f.container_ports.is_empty());
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assert!(!f.local_ports.is_empty());
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}
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}
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#[tokio::test]
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async fn test_remove_cluster_cascades_to_port_forwards() {
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let state = setup_test_state();
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// Add cluster
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let kubeconfig = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s.example.com:6443
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name: production
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contexts:
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- context:
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cluster: production
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user: admin
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name: prod-context
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users:
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- name: admin
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user:
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token: test-token
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"#;
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trcaa_lib::commands::kube::add_cluster(
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"cluster-1".to_string(),
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"Production".to_string(),
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kubeconfig.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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// Start port forward
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let request = trcaa_lib::commands::kube::PortForwardRequest {
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cluster_id: "cluster-1".to_string(),
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namespace: "default".to_string(),
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pod: "nginx-pod".to_string(),
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container_port: 80,
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local_port: 0,
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};
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trcaa_lib::commands::kube::start_port_forward(request, trcaa_lib::State::new(&state))
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.await
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.unwrap();
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// Verify port forward exists
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let forwards = trcaa_lib::commands::kube::list_port_forwards(trcaa_lib::State::new(&state))
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.await
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.unwrap();
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assert_eq!(forwards.len(), 1);
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// Remove cluster
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trcaa_lib::commands::kube::remove_cluster(
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"cluster-1".to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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// Note: Current implementation doesn't cascade delete port forwards
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// This test documents the current behavior - port forwards persist after cluster removal
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// This may be intentional for debugging or may need to be fixed
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let forwards_after =
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trcaa_lib::commands::kube::list_port_forwards(trcaa_lib::State::new(&state))
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.await
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.unwrap();
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assert_eq!(forwards_after.len(), 1); // Port forward still exists
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}
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#[tokio::test]
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async fn test_list_clusters_with_different_contexts() {
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let state = setup_test_state();
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let kubeconfig1 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s1.example.com:6443
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name: cluster1
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contexts:
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- context:
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cluster: cluster1
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user: admin
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namespace: production
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name: prod-context
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users:
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- name: admin
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user:
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token: token1
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"#;
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let kubeconfig2 = r#"
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apiVersion: v1
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kind: Config
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clusters:
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- cluster:
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server: https://k8s2.example.com:6443
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name: cluster2
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contexts:
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- context:
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cluster: cluster2
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user: admin
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namespace: staging
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name: staging-context
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users:
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- name: admin
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user:
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token: token2
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"#;
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trcaa_lib::commands::kube::add_cluster(
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"cluster-1".to_string(),
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"Production".to_string(),
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kubeconfig1.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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trcaa_lib::commands::kube::add_cluster(
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"cluster-2".to_string(),
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"Staging".to_string(),
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kubeconfig2.to_string(),
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trcaa_lib::State::new(&state),
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)
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.await
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.unwrap();
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let clusters = trcaa_lib::commands::kube::list_clusters(trcaa_lib::State::new(&state))
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.await
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.unwrap();
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assert_eq!(clusters.len(), 2);
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assert_eq!(clusters[0].context, "prod-context");
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assert_eq!(clusters[1].context, "staging-context");
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}
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