mod terminal; use base64::{engine::general_purpose::URL_SAFE_NO_PAD, Engine}; use serde::{Deserialize, Serialize}; use sha2::{Digest, Sha256}; use std::collections::{HashMap, HashSet}; use std::fs; use std::io::{BufRead, BufReader, Write}; use std::net::TcpListener; use std::os::unix::fs::PermissionsExt; use std::path::PathBuf; use std::process::Command; use std::time::{Duration, Instant, SystemTime, UNIX_EPOCH}; const CLIENT_ID: &str = "9d1c250a-e61b-44d9-88ed-5944d1962f5e"; const AUTH_URL: &str = "https://claude.ai/oauth/authorize"; const TOKEN_URL: &str = "https://console.anthropic.com/v1/oauth/token"; const SCOPES: &str = "org:create_api_key user:profile user:inference"; /// Feste Dateinamen im Pool-Ordner. Der Pool-Ordner selbst ist das /// CLAUDE_CONFIG_DIR; claude liest die .credentials.json dort direkt. const CREDENTIALS_FILE: &str = ".credentials.json"; const APIKEY_FILE: &str = "apikey"; const POOL_FILE: &str = "pool.json"; const PROJECT_FILE: &str = "ai-control.json"; /// Wurzelpfade; in Tests mit temporärem home instanziierbar. struct Paths { home: PathBuf, } impl Paths { fn real() -> Self { Paths { home: PathBuf::from(std::env::var("HOME").expect("HOME nicht gesetzt")), } } fn projects_dir(&self) -> PathBuf { self.home.join("claude-projects") } fn pools_dir(&self) -> PathBuf { self.home.join(".config").join("ai-control").join("pools") } fn pool_dir(&self, pool: &str) -> PathBuf { self.pools_dir().join(pool) } fn project_config(&self, project: &str) -> PathBuf { self.projects_dir().join(project).join(PROJECT_FILE) } } #[derive(Serialize)] struct Project { name: String, path: String, pool: Option, running: bool, terminal: TerminalConfig, } #[derive(Serialize, Deserialize)] struct Pool { name: String, #[serde(rename = "credentialType")] credential_type: String, } #[derive(Serialize, Deserialize, Default)] struct ProjectConfig { #[serde(default, skip_serializing_if = "Option::is_none")] pool: Option, #[serde(default, skip_serializing_if = "TerminalConfig::is_empty")] terminal: TerminalConfig, } #[derive(Serialize, Deserialize, Default, Clone)] pub struct TerminalConfig { #[serde(default, skip_serializing_if = "Option::is_none")] pub theme: Option, #[serde(default, skip_serializing_if = "Option::is_none")] pub icon: Option, #[serde(default, skip_serializing_if = "Option::is_none")] pub title: Option, } impl TerminalConfig { fn is_empty(&self) -> bool { self.theme.is_none() && self.icon.is_none() && self.title.is_none() } } fn bundle_id(project: &str) -> String { format!("com.mitchellh.ghostty.{project}") } fn is_running(project: &str) -> bool { ghostty_running(project) || !terminal_pids(project).is_empty() } fn ghostty_running(project: &str) -> bool { let out = Command::new("lsappinfo") .args(["find", &format!("bundleid={}", bundle_id(project))]) .output(); match out { Ok(o) => !String::from_utf8_lossy(&o.stdout).trim().is_empty(), Err(_) => false, } } /// PIDs der eingebauten Terminal-Prozesse (`app --terminal `). fn terminal_pids(project: &str) -> Vec { let out = Command::new("pgrep") .args(["-f", "--", &format!("--terminal {project}$")]) .output(); match out { Ok(o) => String::from_utf8_lossy(&o.stdout) .lines() .filter_map(|l| l.trim().parse().ok()) .collect(), Err(_) => Vec::new(), } } fn check_name(name: &str) -> Result<(), String> { if name.trim().is_empty() || name.contains('/') || name.contains("..") { return Err(format!("ungültiger Name: {name}")); } Ok(()) } fn read_pool(paths: &Paths, pool: &str) -> Result { let cfg_path = paths.pool_dir(pool).join(POOL_FILE); let raw = fs::read_to_string(&cfg_path) .map_err(|e| format!("{}: {e}", cfg_path.display()))?; serde_json::from_str(&raw).map_err(|e| format!("{}: {e}", cfg_path.display())) } // ---------- Projekte ---------- fn list_projects_in(paths: &Paths) -> Result, String> { let mut projects = Vec::new(); let entries = fs::read_dir(paths.projects_dir()).map_err(|e| e.to_string())?; for entry in entries { let entry = entry.map_err(|e| e.to_string())?; let path = entry.path(); if !path.join(".claude").is_dir() { continue; } let name = entry.file_name().to_string_lossy().into_owned(); let cfg = read_project_config_in(paths, &name)?; projects.push(Project { running: is_running(&name), path: path.to_string_lossy().into_owned(), pool: cfg.pool, terminal: cfg.terminal, name, }); } projects.sort_by(|a, b| a.name.cmp(&b.name)); Ok(projects) } fn create_project_in(paths: &Paths, name: &str) -> Result<(), String> { check_name(name)?; let dir = paths.projects_dir().join(name); if dir.exists() { return Err(format!("Projekt existiert bereits: {name}")); } fs::create_dir_all(dir.join(".claude")).map_err(|e| e.to_string()) } fn delete_project_in(paths: &Paths, name: &str) -> Result<(), String> { check_name(name)?; let dir = paths.projects_dir().join(name); if !dir.is_dir() { return Err(format!("Projekt nicht gefunden: {name}")); } fs::remove_dir_all(&dir).map_err(|e| e.to_string()) } fn read_project_config_in(paths: &Paths, project: &str) -> Result { let cfg_path = paths.project_config(project); if !cfg_path.is_file() { return Ok(ProjectConfig::default()); } let raw = fs::read_to_string(&cfg_path).map_err(|e| format!("{}: {e}", cfg_path.display()))?; serde_json::from_str(&raw).map_err(|e| format!("{}: {e}", cfg_path.display())) } fn write_project_config_in( paths: &Paths, project: &str, cfg: &ProjectConfig, ) -> Result<(), String> { let raw = serde_json::to_string_pretty(cfg).map_err(|e| e.to_string())?; fs::write(paths.project_config(project), raw + "\n").map_err(|e| e.to_string()) } fn assign_pool_in(paths: &Paths, project: &str, pool: &str) -> Result<(), String> { if !paths.pool_dir(pool).join(POOL_FILE).is_file() { return Err(format!("Pool existiert nicht: {pool}")); } let mut cfg = read_project_config_in(paths, project)?; cfg.pool = Some(pool.to_string()); write_project_config_in(paths, project, &cfg) } /// Nimmt den Pool raus; die Config-Datei bleibt nur, wenn sie noch /// Terminal-Einstellungen trägt. fn unassign_pool_in(paths: &Paths, project: &str) -> Result<(), String> { let mut cfg = read_project_config_in(paths, project)?; cfg.pool = None; if cfg.terminal.is_empty() { let cfg_path = paths.project_config(project); return fs::remove_file(&cfg_path).map_err(|e| format!("{}: {e}", cfg_path.display())); } write_project_config_in(paths, project, &cfg) } fn set_terminal_config_in( paths: &Paths, project: &str, terminal: TerminalConfig, ) -> Result<(), String> { let mut cfg = read_project_config_in(paths, project)?; cfg.terminal = terminal; write_project_config_in(paths, project, &cfg) } /// Terminal-Einstellungen eines Projekts, für den Terminal-Prozess. pub(crate) fn terminal_config(project: &str) -> Result { Ok(read_project_config_in(&Paths::real(), project)?.terminal) } /// Namen aller Projekte, die `pool` zugeordnet haben. fn projects_using_pool(paths: &Paths, pool: &str) -> Result, String> { let mut users = Vec::new(); let entries = fs::read_dir(paths.projects_dir()).map_err(|e| e.to_string())?; for entry in entries { let entry = entry.map_err(|e| e.to_string())?; let cfg_path = entry.path().join(PROJECT_FILE); if !cfg_path.is_file() { continue; } let raw = fs::read_to_string(&cfg_path).map_err(|e| e.to_string())?; let cfg: ProjectConfig = serde_json::from_str(&raw).map_err(|e| e.to_string())?; if cfg.pool.as_deref() == Some(pool) { users.push(entry.file_name().to_string_lossy().into_owned()); } } users.sort(); Ok(users) } // ---------- Pools ---------- #[derive(Serialize)] struct PoolInfo { name: String, #[serde(rename = "credentialType")] credential_type: String, projects: Vec, #[serde(rename = "hasCredentials")] has_credentials: bool, } fn list_pools_in(paths: &Paths) -> Result, String> { let mut pools = Vec::new(); let entries = fs::read_dir(paths.pools_dir()).map_err(|e| e.to_string())?; for entry in entries { let entry = entry.map_err(|e| e.to_string())?; let cfg_path = entry.path().join(POOL_FILE); if !cfg_path.is_file() { continue; } let raw = fs::read_to_string(&cfg_path).map_err(|e| e.to_string())?; let pool: Pool = serde_json::from_str(&raw).map_err(|e| format!("{}: {e}", cfg_path.display()))?; // oauth: Credentials liegen im Keychain, dessen Prüfung wäre ein // security-Aufruf pro Pool im 3-s-Polling — deshalb hier immer true. let has_credentials = match pool.credential_type.as_str() { "apikey" => fs::read_to_string(entry.path().join(APIKEY_FILE)) .map(|s| !s.trim().is_empty()) .unwrap_or(false), _ => true, }; pools.push(PoolInfo { projects: projects_using_pool(paths, &pool.name)?, name: pool.name, credential_type: pool.credential_type, has_credentials, }); } pools.sort_by(|a, b| a.name.cmp(&b.name)); Ok(pools) } fn check_new_pool(paths: &Paths, name: &str) -> Result { check_name(name)?; let dir = paths.pool_dir(name); if dir.exists() { return Err(format!("Pool existiert bereits: {name}")); } Ok(dir) } fn write_pool_json(dir: &PathBuf, name: &str, credential_type: &str) -> Result<(), String> { fs::create_dir_all(dir).map_err(|e| e.to_string())?; let pool = Pool { name: name.to_string(), credential_type: credential_type.to_string(), }; let raw = serde_json::to_string_pretty(&pool).map_err(|e| e.to_string())?; fs::write(dir.join(POOL_FILE), raw + "\n").map_err(|e| e.to_string()) } fn write_secret_file(path: &PathBuf, content: &str) -> Result<(), String> { if let Some(parent) = path.parent() { fs::create_dir_all(parent).map_err(|e| e.to_string())?; } fs::write(path, content).map_err(|e| e.to_string())?; fs::set_permissions(path, fs::Permissions::from_mode(0o600)).map_err(|e| e.to_string()) } /// Legt einen apikey-Pool an: Key-Datei (0600), settings.json mit /// apiKeyHelper auf diese Datei, pool.json. fn create_apikey_pool_in(paths: &Paths, name: &str, key: &str) -> Result<(), String> { let dir = check_new_pool(paths, name)?; let key = key.trim(); if key.is_empty() { return Err("leerer API-Key".into()); } let key_path = dir.join(APIKEY_FILE); write_secret_file(&key_path, &format!("{key}\n"))?; let settings = serde_json::json!({ "apiKeyHelper": format!("cat '{}'", key_path.display()), }); let raw = serde_json::to_string_pretty(&settings).map_err(|e| e.to_string())?; fs::write(dir.join("settings.json"), raw + "\n").map_err(|e| e.to_string())?; write_pool_json(&dir, name, "apikey") } /// Legt einen oauth-Pool an: erst Login (schreibt .credentials.json in den /// Pool-Ordner), dann – nur bei Erfolg – pool.json. fn create_oauth_pool_in( paths: &Paths, name: &str, login: impl FnOnce(&PathBuf) -> Result<(), String>, ) -> Result<(), String> { let dir = check_new_pool(paths, name)?; login(&dir.join(CREDENTIALS_FILE))?; write_pool_json(&dir, name, "oauth") } /// Löscht einen Pool samt Ordner (inkl. Credentials); nur wenn kein Projekt ihn nutzt. /// Löscht den Pool; Projekte, die ihn zugeordnet hatten, verlieren die /// Zuordnung (Terminal-Einstellungen bleiben erhalten). fn delete_pool_in(paths: &Paths, name: &str) -> Result<(), String> { let dir = paths.pool_dir(name); if !dir.join(POOL_FILE).is_file() { return Err(format!("Pool nicht gefunden: {name}")); } for project in projects_using_pool(paths, name)? { unassign_pool_in(paths, &project)?; } fs::remove_dir_all(&dir).map_err(|e| e.to_string()) } /// Schreibt den API-Key eines apikey-Pools neu (0600). fn set_apikey_in(paths: &Paths, pool: &str, key: &str) -> Result<(), String> { let p = read_pool(paths, pool)?; if p.credential_type != "apikey" { return Err(format!("Pool {pool} ist kein apikey-Pool")); } let key = key.trim(); if key.is_empty() { return Err("leerer API-Key".into()); } write_secret_file(&paths.pool_dir(pool).join(APIKEY_FILE), &format!("{key}\n")) } fn oauth_credential_path(paths: &Paths, pool: &str) -> Result { let p = read_pool(paths, pool)?; if p.credential_type != "oauth" { return Err(format!("Pool {pool} ist kein oauth-Pool")); } Ok(paths.pool_dir(pool).join(CREDENTIALS_FILE)) } // ---------- Verbrauch ---------- #[derive(Serialize, Default)] struct UsageTotals { #[serde(rename = "inputTokens")] input_tokens: u64, #[serde(rename = "outputTokens")] output_tokens: u64, #[serde(rename = "cacheCreationTokens")] cache_creation_tokens: u64, #[serde(rename = "cacheReadTokens")] cache_read_tokens: u64, #[serde(rename = "costUsd")] cost_usd: f64, } #[derive(Serialize)] struct UsageRow { pool: String, project: String, #[serde(flatten)] totals: UsageTotals, } /// USD pro MTok (input, output, cache_write, cache_read). /// Cache: write 1.25× / read 0.1× des Input-Preises. fn model_rates(model: &str) -> (f64, f64, f64, f64) { let (input, output) = if model.contains("fable") || model.contains("mythos") { (10.0, 50.0) } else if model.contains("opus") { (5.0, 25.0) } else if model.contains("haiku") { (1.0, 5.0) } else { // sonnet und Unbekanntes (3.0, 15.0) }; (input, output, input * 1.25, input * 0.1) } /// Tage seit Unix-Epoche für ein Kalenderdatum (Howard Hinnant, days_from_civil). fn days_from_civil(y: i64, m: i64, d: i64) -> i64 { let y = if m <= 2 { y - 1 } else { y }; let era = if y >= 0 { y } else { y - 399 } / 400; let yoe = y - era * 400; let mp = (m + 9) % 12; let doy = (153 * mp + 2) / 5 + d - 1; let doe = yoe * 365 + yoe / 4 - yoe / 100 + doy; era * 146097 + doe - 719468 } /// "YYYY-MM-DDTHH:MM:SS(.mmm)Z" (UTC) → Unix-Sekunden. fn parse_ts(ts: &str) -> Option { if ts.len() < 19 { return None; } let num = |r: std::ops::Range| ts.get(r)?.parse::().ok(); let (y, m, d) = (num(0..4)?, num(5..7)?, num(8..10)?); let (h, mi, s) = (num(11..13)?, num(14..16)?, num(17..19)?); Some(days_from_civil(y, m, d) * 86400 + h * 3600 + mi * 60 + s) } /// Projektpfad so kodieren, wie claude die Transcript-Ordner benennt /// (alles außer [a-zA-Z0-9] wird '-'). fn encode_project_path(path: &str) -> String { path .chars() .map(|c| if c.is_ascii_alphanumeric() { c } else { '-' }) .collect() } /// Eine Transcript-Zeile auswerten: nur Zeilen mit message.usage zählen, /// Zeitfilter, Dedup über message.id+requestId (Retries doppeln sonst). fn add_usage_line( line: &str, cutoff: i64, seen: &mut HashSet, totals: &mut UsageTotals, ) { let v: serde_json::Value = match serde_json::from_str(line) { Ok(v) => v, // Nicht-JSON (z. B. angeschnittene letzte Zeile einer laufenden Session) Err(_) => return, }; let usage = &v["message"]["usage"]; if !usage.is_object() { return; } match v["timestamp"].as_str().and_then(parse_ts) { Some(t) if t >= cutoff => {} _ => return, } if let Some(id) = v["message"]["id"].as_str() { let key = format!("{id}:{}", v["requestId"].as_str().unwrap_or("")); if !seen.insert(key) { return; } } let model = v["message"]["model"].as_str().unwrap_or(""); if model == "" { return; } let input = usage["input_tokens"].as_u64().unwrap_or(0); let output = usage["output_tokens"].as_u64().unwrap_or(0); let cache_write = usage["cache_creation_input_tokens"].as_u64().unwrap_or(0); let cache_read = usage["cache_read_input_tokens"].as_u64().unwrap_or(0); let (ri, ro, rw, rr) = model_rates(model); totals.input_tokens += input; totals.output_tokens += output; totals.cache_creation_tokens += cache_write; totals.cache_read_tokens += cache_read; totals.cost_usd += input as f64 / 1e6 * ri + output as f64 / 1e6 * ro + cache_write as f64 / 1e6 * rw + cache_read as f64 / 1e6 * rr; } /// Aggregiert message.usage aus den Transcript-JSONLs aller Pools: /// /projects//*.jsonl → Pool × Projekt. /// Sichtfenster ist, was claude noch nicht weggeräumt hat (cleanupPeriodDays). fn usage_stats_in(paths: &Paths, days: u32) -> Result, String> { let now = SystemTime::now() .duration_since(UNIX_EPOCH) .map_err(|e| e.to_string())? .as_secs() as i64; let cutoff = now - days as i64 * 86400; // kodierter Projektpfad → Projektname let mut names = HashMap::new(); for entry in fs::read_dir(paths.projects_dir()).map_err(|e| e.to_string())? { let entry = entry.map_err(|e| e.to_string())?; if !entry.path().join(".claude").is_dir() { continue; } let name = entry.file_name().to_string_lossy().into_owned(); names.insert(encode_project_path(&entry.path().to_string_lossy()), name); } let mut seen = HashSet::new(); let mut rows: HashMap<(String, String), UsageTotals> = HashMap::new(); for pool_entry in fs::read_dir(paths.pools_dir()).map_err(|e| e.to_string())? { let pool_entry = pool_entry.map_err(|e| e.to_string())?; let pool = pool_entry.file_name().to_string_lossy().into_owned(); let projects_root = pool_entry.path().join("projects"); if !projects_root.is_dir() { continue; } for proj_entry in fs::read_dir(&projects_root).map_err(|e| e.to_string())? { let proj_entry = proj_entry.map_err(|e| e.to_string())?; if !proj_entry.path().is_dir() { continue; } let encoded = proj_entry.file_name().to_string_lossy().into_owned(); // Unbekannte Ordner (Sessions außerhalb der Projekte) unter dem // kodierten Namen ausweisen statt verschlucken. let project = names.get(&encoded).cloned().unwrap_or(encoded); let totals = rows.entry((pool.clone(), project)).or_default(); for file in fs::read_dir(proj_entry.path()).map_err(|e| e.to_string())? { let file = file.map_err(|e| e.to_string())?; let path = file.path(); if path.extension().and_then(|e| e.to_str()) != Some("jsonl") { continue; } let f = fs::File::open(&path).map_err(|e| format!("{}: {e}", path.display()))?; for line in BufReader::new(f).lines() { let line = line.map_err(|e| format!("{}: {e}", path.display()))?; add_usage_line(&line, cutoff, &mut seen, totals); } } } } let mut out: Vec = rows .into_iter() .map(|((pool, project), totals)| UsageRow { pool, project, totals }) .collect(); out.sort_by(|a, b| { a.pool .cmp(&b.pool) .then(b.totals.cost_usd.total_cmp(&a.totals.cost_usd)) }); Ok(out) } // ---------- Tauri-Commands ---------- #[tauri::command] fn list_projects() -> Result, String> { list_projects_in(&Paths::real()) } #[tauri::command] fn create_project(name: String) -> Result<(), String> { create_project_in(&Paths::real(), &name) } #[tauri::command] fn delete_project(name: String) -> Result<(), String> { delete_project_in(&Paths::real(), &name) } #[tauri::command] fn list_pools() -> Result, String> { list_pools_in(&Paths::real()) } #[tauri::command] fn create_oauth_pool(name: String) -> Result<(), String> { create_oauth_pool_in(&Paths::real(), &name, run_oauth_flow) } #[tauri::command] fn create_apikey_pool(name: String, key: String) -> Result<(), String> { create_apikey_pool_in(&Paths::real(), &name, &key) } #[tauri::command] fn delete_pool(name: String) -> Result<(), String> { delete_pool_in(&Paths::real(), &name) } #[tauri::command] fn assign_pool(project: String, pool: String) -> Result<(), String> { assign_pool_in(&Paths::real(), &project, &pool) } #[tauri::command] fn unassign_pool(project: String) -> Result<(), String> { unassign_pool_in(&Paths::real(), &project) } #[tauri::command] fn usage_stats(days: u32) -> Result, String> { usage_stats_in(&Paths::real(), days) } #[tauri::command] fn set_terminal_config( project: String, theme: Option, icon: Option, title: Option, ) -> Result<(), String> { set_terminal_config_in(&Paths::real(), &project, TerminalConfig { theme, icon, title }) } #[tauri::command] fn set_apikey(pool: String, key: String) -> Result<(), String> { set_apikey_in(&Paths::real(), &pool, &key) } /// Keychain-Service-Name des Pools: claude legt pro CLAUDE_CONFIG_DIR einen /// suffixierten Eintrag an, Suffix = erste 8 Hex-Zeichen von SHA-256 über /// den Pool-Pfad. fn keychain_service(paths: &Paths, pool: &str) -> String { let hash = Sha256::digest(paths.pool_dir(pool).to_string_lossy().as_bytes()); let hex: String = hash.iter().map(|b| format!("{b:02x}")).collect(); format!("Claude Code-credentials-{}", &hex[..8]) } fn keychain_entry_exists(service: &str) -> Result { let out = Command::new("security") .args(["find-generic-password", "-s", service]) .output() .map_err(|e| e.to_string())?; Ok(out.status.success()) } #[tauri::command] fn keychain_status(pool: String) -> Result { keychain_entry_exists(&keychain_service(&Paths::real(), &pool)) } /// Meldet einen oauth-Pool neu an: nur bei ungenutztem Pool. Löscht vorher /// den suffixierten Keychain-Eintrag, damit der neue Login beim nächsten /// Session-Start auch greift (claude importiert die frische /// .credentials.json und legt den Eintrag neu an). #[tauri::command] fn oauth_login(pool: String) -> Result<(), String> { let paths = Paths::real(); let cred_path = oauth_credential_path(&paths, &pool)?; let running: Vec = projects_using_pool(&paths, &pool)? .into_iter() .filter(|p| is_running(p)) .collect(); if !running.is_empty() { return Err(format!( "Neuanmeldung nur bei ungenutztem Pool möglich — läuft: {}", running.join(", ") )); } let service = keychain_service(&paths, &pool); if keychain_entry_exists(&service)? { let out = Command::new("security") .args(["delete-generic-password", "-s", &service]) .output() .map_err(|e| e.to_string())?; if !out.status.success() { return Err(String::from_utf8_lossy(&out.stderr).trim().to_string()); } } run_oauth_flow(&cred_path) } fn open_project(project: &str) -> Result<(), String> { // Läuft die UI selbst in einer Ghostty-App, erbt `open` deren // XDG_CONFIG_HOME und kalt gestartete Apps läsen die falsche Config. let out = Command::new("open") .env_remove("XDG_CONFIG_HOME") .args(["-b", &bundle_id(project)]) .output() .map_err(|e| e.to_string())?; if out.status.success() { Ok(()) } else { Err(String::from_utf8_lossy(&out.stderr).trim().to_string()) } } #[tauri::command] fn start_project(project: String) -> Result<(), String> { open_project(&project) } /// Beendet den laufenden Prozess eines Projekts: das eingebaute Terminal per /// SIGTERM auf die exakte PID (nie über die Bundle-ID — die würde alle /// Instanzen inkl. der Haupt-App treffen), sonst die Ghostty-App per Quit. #[tauri::command] fn stop_project(project: String) -> Result<(), String> { let pids = terminal_pids(&project); if !pids.is_empty() { for pid in pids { let out = Command::new("kill") .arg(pid.to_string()) .output() .map_err(|e| e.to_string())?; if !out.status.success() { return Err(String::from_utf8_lossy(&out.stderr).trim().to_string()); } } return Ok(()); } if ghostty_running(&project) { let out = Command::new("osascript") .args(["-e", &format!("quit app id \"{}\"", bundle_id(&project))]) .output() .map_err(|e| e.to_string())?; if !out.status.success() { return Err(String::from_utf8_lossy(&out.stderr).trim().to_string()); } return Ok(()); } Err(format!("{project} läuft nicht")) } /// Beendet die Ghostty-App des Projekts (regulärer Quit, Ghostty darf noch /// nachfragen), wartet auf das Prozessende und startet sie neu. #[tauri::command] fn restart_project(project: String) -> Result<(), String> { let out = Command::new("osascript") .args(["-e", &format!("quit app id \"{}\"", bundle_id(&project))]) .output() .map_err(|e| e.to_string())?; if !out.status.success() { return Err(String::from_utf8_lossy(&out.stderr).trim().to_string()); } let deadline = Instant::now() + Duration::from_secs(30); while is_running(&project) { if Instant::now() > deadline { return Err(format!("{project} hat sich nach 30 s nicht beendet")); } std::thread::sleep(Duration::from_millis(250)); } open_project(&project) } // ---------- OAuth-Flow ---------- fn pct(s: &str) -> String { let mut out = String::new(); for b in s.bytes() { match b { b'A'..=b'Z' | b'a'..=b'z' | b'0'..=b'9' | b'-' | b'_' | b'.' | b'~' => { out.push(b as char) } _ => out.push_str(&format!("%{:02X}", b)), } } out } fn random_urlsafe(len: usize) -> String { let mut buf = vec![0u8; len]; getrandom::getrandom(&mut buf).expect("getrandom"); URL_SAFE_NO_PAD.encode(buf) } fn now_ms() -> u64 { SystemTime::now() .duration_since(UNIX_EPOCH) .expect("Systemzeit") .as_millis() as u64 } /// Schreibt die Credential-Datei im Claude-Code-Format (0600). fn write_credentials_file( cred_path: &PathBuf, creds: &serde_json::Value, ) -> Result<(), String> { let raw = serde_json::to_string_pretty(creds).map_err(|e| e.to_string())?; write_secret_file(cred_path, &(raw + "\n")) } /// Tauscht Code/Refresh-Token gegen Tokens und schreibt die Credential-Datei. fn exchange_and_store( body: serde_json::Value, cred_path: &PathBuf, ) -> Result<(), String> { let resp = ureq::post(TOKEN_URL) .set("Content-Type", "application/json") .send_json(body); let resp = match resp { Ok(r) => r, Err(ureq::Error::Status(code, r)) => { let txt = r.into_string().unwrap_or_default(); return Err(format!("Token-Endpoint {code}: {txt}")); } Err(e) => return Err(e.to_string()), }; let v: serde_json::Value = resp.into_json().map_err(|e| e.to_string())?; let access = v["access_token"] .as_str() .ok_or("access_token fehlt in Antwort")?; let refresh = v["refresh_token"] .as_str() .ok_or("refresh_token fehlt in Antwort")?; let expires_in = v["expires_in"].as_u64().unwrap_or(0); let scopes: Vec = v["scope"] .as_str() .unwrap_or(SCOPES) .split_whitespace() .map(|s| s.to_string()) .collect(); let creds = serde_json::json!({ "claudeAiOauth": { "accessToken": access, "refreshToken": refresh, "expiresAt": now_ms() + expires_in * 1000, "scopes": scopes, } }); write_credentials_file(cred_path, &creds) } /// Startet den Authorization-Code-Flow mit PKCE, öffnet den Browser und /// nimmt den Redirect auf einem lokalen Loopback-Port entgegen; schreibt /// die Tokens nach `cred_path`. fn run_oauth_flow(cred_path: &PathBuf) -> Result<(), String> { let listener = TcpListener::bind("127.0.0.1:0").map_err(|e| e.to_string())?; listener.set_nonblocking(true).map_err(|e| e.to_string())?; let port = listener.local_addr().map_err(|e| e.to_string())?.port(); let redirect_uri = format!("http://localhost:{port}/callback"); let verifier = random_urlsafe(32); let challenge = URL_SAFE_NO_PAD.encode(Sha256::digest(verifier.as_bytes())); let state = random_urlsafe(32); let auth_url = format!( "{AUTH_URL}?code=true&client_id={CLIENT_ID}&response_type=code\ &redirect_uri={ru}&scope={sc}&code_challenge={challenge}\ &code_challenge_method=S256&state={st}", ru = pct(&redirect_uri), sc = pct(SCOPES), st = pct(&state), ); Command::new("open") .arg(&auth_url) .status() .map_err(|e| format!("Browser öffnen: {e}"))?; let (code, got_state) = wait_for_callback(&listener)?; if got_state != state { return Err("state stimmt nicht überein".into()); } let body = serde_json::json!({ "grant_type": "authorization_code", "code": code, "state": got_state, "client_id": CLIENT_ID, "redirect_uri": redirect_uri, "code_verifier": verifier, }); exchange_and_store(body, cred_path) } /// Pollt den Loopback-Listener bis zum Redirect mit `code`/`state`. fn wait_for_callback(listener: &TcpListener) -> Result<(String, String), String> { let deadline = Instant::now() + Duration::from_secs(180); loop { if Instant::now() > deadline { return Err("Login-Timeout (kein Redirect nach 180 s)".into()); } match listener.accept() { Ok((mut stream, _)) => { let mut reader = BufReader::new(&stream); let mut line = String::new(); reader.read_line(&mut line).map_err(|e| e.to_string())?; // "GET /callback?code=...&state=... HTTP/1.1" let target = line.split_whitespace().nth(1).unwrap_or(""); let query = target.split_once('?').map(|(_, q)| q).unwrap_or(""); let mut code = String::new(); let mut state = String::new(); for pair in query.split('&') { if let Some(v) = pair.strip_prefix("code=") { code = pct_decode(v); } else if let Some(v) = pair.strip_prefix("state=") { state = pct_decode(v); } } let ok = !code.is_empty(); let body = if ok { "Anmeldung erfolgreich. Fenster kann geschlossen werden." } else { "Kein Code im Redirect." }; let _ = stream.write_all( format!( "HTTP/1.1 200 OK\r\nContent-Type: text/plain; charset=utf-8\r\n\ Content-Length: {}\r\nConnection: close\r\n\r\n{}", body.len(), body ) .as_bytes(), ); if ok { return Ok((code, state)); } // Nebenanfrage (z. B. favicon) ignorieren und weiter warten. } Err(ref e) if e.kind() == std::io::ErrorKind::WouldBlock => { std::thread::sleep(Duration::from_millis(100)); } Err(e) => return Err(e.to_string()), } } } fn pct_decode(s: &str) -> String { let bytes = s.as_bytes(); let mut out = Vec::new(); let mut i = 0; while i < bytes.len() { match bytes[i] { b'%' if i + 2 < bytes.len() => { let h = u8::from_str_radix(&s[i + 1..i + 3], 16).unwrap_or(b'%'); out.push(h); i += 3; } b'+' => { out.push(b' '); i += 1; } c => { out.push(c); i += 1; } } } String::from_utf8_lossy(&out).into_owned() } #[cfg_attr(mobile, tauri::mobile_entry_point)] pub fn run() { // generate_context! darf pro Crate nur einmal expandieren (_EMBED_INFO_PLIST). let context = tauri::generate_context!(); let mut args = std::env::args().skip(1); match args.next().as_deref() { // `app --terminal `: eigener Prozess pro Terminal-Fenster, // damit jedes Terminal ein eigenes Dock-Icon bekommt. Some("--terminal") => { let project = args.next().expect("--terminal braucht einen Projektnamen"); let icon = terminal_config(&project) .expect("Projekt-Config nicht lesbar") .icon; terminal_builder(project) .build(context) .expect("error while building tauri application") // Das Dock-Icon erst nach dem App-Start setzen: in setup() gesetzt // überschreibt macOS es beim Anlegen des Dock-Tiles wieder. .run(move |_app, event| { if let tauri::RunEvent::Ready = event { if let Some(icon) = icon.as_deref() { terminal::set_dock_icon(icon); } } }); } _ => main_builder() .run(context) .expect("error while running tauri application"), } } /// Haupt-App: reine Tray-App ohne Dock-Eintrag. fn main_builder() -> tauri::Builder { use tauri::Manager; tauri::Builder::default() .plugin(tauri_plugin_autostart::init( tauri_plugin_autostart::MacosLauncher::LaunchAgent, None, )) .plugin(tauri_plugin_dialog::init()) .setup(|app| { if cfg!(debug_assertions) { app.handle().plugin( tauri_plugin_log::Builder::default() .level(log::LevelFilter::Info) .build(), )?; } // Nur Tray-Icon in der Menüleiste, kein Dock-Eintrag. #[cfg(target_os = "macos")] app.set_activation_policy(tauri::ActivationPolicy::Accessory); // Fenster im Code statt in tauri.conf.json, damit der Terminal-Prozess // (gleiches Binary, gleiche Config) kein main-Fenster anlegt. tauri::WebviewWindowBuilder::new(app, "main", tauri::WebviewUrl::default()) .title("ai-control") .inner_size(800.0, 600.0) .visible(false) .build()?; let open = tauri::menu::MenuItem::with_id(app, "open", "Öffnen", true, None::<&str>)?; let quit = tauri::menu::MenuItem::with_id(app, "quit", "Beenden", true, None::<&str>)?; let menu = tauri::menu::Menu::with_items(app, &[&open, &quit])?; tauri::tray::TrayIconBuilder::with_id("main") // include_bytes! statt default_window_icon: cargo trackt die Datei, // neu generierte Icons landen damit sicher im nächsten Build. .icon(tauri::image::Image::from_bytes(include_bytes!( "../icons/128x128.png" ))?) // Template-Icon: macOS färbt es passend zur Menüleiste ein. .icon_as_template(true) .menu(&menu) .on_menu_event(|app, event| match event.id.as_ref() { "open" => { let w = app.get_webview_window("main").unwrap(); w.show().unwrap(); w.set_focus().unwrap(); } "quit" => app.exit(0), _ => {} }) .build(app)?; Ok(()) }) // Hauptfenster schließen versteckt nur; Beenden geht übers Tray-Menü. .on_window_event(|window, event| { if let tauri::WindowEvent::CloseRequested { api, .. } = event { api.prevent_close(); window.hide().unwrap(); } }) .invoke_handler(tauri::generate_handler![ list_projects, create_project, delete_project, list_pools, create_oauth_pool, create_apikey_pool, delete_pool, assign_pool, unassign_pool, set_terminal_config, usage_stats, start_project, stop_project, restart_project, oauth_login, keychain_status, set_apikey, terminal::open_terminal ]) } /// Terminal-Prozess: ein Fenster mit eigener PTY; Activation-Policy bleibt /// Regular, dadurch Dock-Icon und Cmd-Tab-Eintrag pro Terminal. fn terminal_builder(project: String) -> tauri::Builder { tauri::Builder::default() .manage(terminal::Terminals::default()) .setup(move |app| { let cfg = terminal_config(&project)?; terminal::build_window(app.handle(), &project, &cfg)?; Ok(()) }) // Fenster zu → PTY-Session abräumen; danach endet der Prozess. .on_window_event(|window, event| { if let tauri::WindowEvent::Destroyed = event { terminal::close(window); } }) .invoke_handler(tauri::generate_handler![ terminal::term_start, terminal::term_log, terminal::term_write, terminal::term_resize, // Pool-Chip im Terminal-Header braucht die Projektliste auch hier. list_projects ]) } // ---------- Tests ---------- #[cfg(test)] mod tests { use super::*; use std::sync::atomic::{AtomicU32, Ordering}; static N: AtomicU32 = AtomicU32::new(0); /// Frisches Pseudo-Home pro Test; claude-projects existiert wie auf dem /// echten System. fn tmp_paths() -> Paths { let dir = std::env::temp_dir().join(format!( "ai-control-test-{}-{}", std::process::id(), N.fetch_add(1, Ordering::SeqCst) )); fs::create_dir_all(dir.join("claude-projects")).unwrap(); Paths { home: dir } } fn dummy_creds() -> serde_json::Value { serde_json::json!({ "claudeAiOauth": { "accessToken": "at-test", "refreshToken": "rt-test", "expiresAt": 1_999_999_999_000u64, "scopes": ["user:inference"], } }) } fn make_oauth_pool(p: &Paths, name: &str) { create_oauth_pool_in(p, name, |cred| { write_credentials_file(cred, &dummy_creds()) }) .unwrap(); } fn mode(path: &PathBuf) -> u32 { fs::metadata(path).unwrap().permissions().mode() & 0o777 } // -- Pool anlegen -- #[test] fn apikey_pool_anlegen() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-test-123").unwrap(); let dir = p.pool_dir("kunde"); let pool: Pool = serde_json::from_str(&fs::read_to_string(dir.join(POOL_FILE)).unwrap()).unwrap(); assert_eq!(pool.name, "kunde"); assert_eq!(pool.credential_type, "apikey"); let key_path = dir.join(APIKEY_FILE); assert_eq!(fs::read_to_string(&key_path).unwrap(), "sk-test-123\n"); assert_eq!(mode(&key_path), 0o600); let settings: serde_json::Value = serde_json::from_str(&fs::read_to_string(dir.join("settings.json")).unwrap()) .unwrap(); assert_eq!( settings["apiKeyHelper"].as_str().unwrap(), format!("cat '{}'", key_path.display()) ); } #[test] fn oauth_pool_anlegen() { let p = tmp_paths(); make_oauth_pool(&p, "privat"); let dir = p.pool_dir("privat"); let pool: Pool = serde_json::from_str(&fs::read_to_string(dir.join(POOL_FILE)).unwrap()).unwrap(); assert_eq!(pool.credential_type, "oauth"); let cred_path = dir.join(CREDENTIALS_FILE); let creds: serde_json::Value = serde_json::from_str(&fs::read_to_string(&cred_path).unwrap()).unwrap(); assert_eq!(creds["claudeAiOauth"]["accessToken"], "at-test"); assert_eq!(mode(&cred_path), 0o600); } #[test] fn oauth_pool_login_fehlschlag_legt_nichts_an() { let p = tmp_paths(); let err = create_oauth_pool_in(&p, "privat", |_| Err("Login abgebrochen".into())); assert!(err.is_err()); assert!(!p.pool_dir("privat").exists()); } #[test] fn pool_doppelt_anlegen_scheitert() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); let err = create_apikey_pool_in(&p, "kunde", "sk-2").unwrap_err(); assert!(err.contains("existiert bereits")); } #[test] fn pool_leerer_key_scheitert() { let p = tmp_paths(); assert!(create_apikey_pool_in(&p, "kunde", " ").is_err()); } #[test] fn pool_name_mit_slash_scheitert() { let p = tmp_paths(); assert!(create_apikey_pool_in(&p, "a/b", "sk-1").is_err()); } // -- Pool ändern -- #[test] fn apikey_aendern() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-alt").unwrap(); set_apikey_in(&p, "kunde", "sk-neu").unwrap(); let key_path = p.pool_dir("kunde").join(APIKEY_FILE); assert_eq!(fs::read_to_string(&key_path).unwrap(), "sk-neu\n"); assert_eq!(mode(&key_path), 0o600); } #[test] fn apikey_aendern_auf_oauth_pool_scheitert() { let p = tmp_paths(); make_oauth_pool(&p, "privat"); assert!(set_apikey_in(&p, "privat", "sk-1").is_err()); } #[test] fn oauth_relogin_ueberschreibt_credentials() { let p = tmp_paths(); make_oauth_pool(&p, "privat"); let cred_path = oauth_credential_path(&p, "privat").unwrap(); let mut neu = dummy_creds(); neu["claudeAiOauth"]["accessToken"] = "at-neu".into(); write_credentials_file(&cred_path, &neu).unwrap(); let creds: serde_json::Value = serde_json::from_str(&fs::read_to_string(&cred_path).unwrap()).unwrap(); assert_eq!(creds["claudeAiOauth"]["accessToken"], "at-neu"); } #[test] fn oauth_credential_path_auf_apikey_pool_scheitert() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); assert!(oauth_credential_path(&p, "kunde").is_err()); } // -- Pool löschen -- #[test] fn pool_loeschen() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); delete_pool_in(&p, "kunde").unwrap(); assert!(!p.pool_dir("kunde").exists()); } // -- Verbrauch -- fn usage_line(id: &str, req: &str, ts: &str, model: &str, input: u64, output: u64) -> String { serde_json::json!({ "type": "assistant", "timestamp": ts, "requestId": req, "message": { "id": id, "model": model, "usage": { "input_tokens": input, "output_tokens": output, "cache_creation_input_tokens": 1_000_000, "cache_read_input_tokens": 2_000_000 } } }) .to_string() } #[test] fn verbrauch_aggregation_dedup_und_zeitfilter() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); create_project_in(&p, "proj").unwrap(); let proj_path = p.projects_dir().join("proj"); let encoded = encode_project_path(&proj_path.to_string_lossy()); let dir = p.pool_dir("kunde").join("projects").join(&encoded); fs::create_dir_all(&dir).unwrap(); let lines = [ // Sonnet: 1M in ($3) + 1M out ($15) + 1M cache-write ($3.75) + 2M cache-read ($0.60) usage_line("msg_1", "req_1", "2099-01-01T10:00:00.000Z", "claude-sonnet-5", 1_000_000, 1_000_000), // Retry-Duplikat: gleiche message.id + requestId → zählt nicht usage_line("msg_1", "req_1", "2099-01-01T10:00:01.000Z", "claude-sonnet-5", 1_000_000, 1_000_000), // außerhalb des Zeitfensters → zählt nicht usage_line("msg_2", "req_2", "2020-01-01T00:00:00.000Z", "claude-sonnet-5", 5, 5), // kein usage-Objekt → ignoriert r#"{"type":"user","timestamp":"2099-01-01T10:00:02.000Z"}"#.to_string(), // kaputte Zeile (laufende Session) → ignoriert r#"{"type":"assist"#.to_string(), ]; fs::write(dir.join("session.jsonl"), lines.join("\n")).unwrap(); // Cutoff = jetzt − 365 Tage: schließt 2020 aus, 2099 ein — datumsunabhängig let rows = usage_stats_in(&p, 365).unwrap(); assert_eq!(rows.len(), 1); let r = &rows[0]; assert_eq!(r.pool, "kunde"); assert_eq!(r.project, "proj"); assert_eq!(r.totals.input_tokens, 1_000_000); assert_eq!(r.totals.output_tokens, 1_000_000); assert_eq!(r.totals.cache_creation_tokens, 1_000_000); assert_eq!(r.totals.cache_read_tokens, 2_000_000); assert!((r.totals.cost_usd - 22.35).abs() < 1e-9); } #[test] fn verbrauch_leer_ohne_transcripts() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); assert!(usage_stats_in(&p, 30).unwrap().is_empty()); } #[test] fn parse_ts_referenz() { // 2026-01-01 = 1767225600; +181 Tage bis 01.07. +10 h = 1782900000 assert_eq!(parse_ts("2026-07-01T10:00:00.000Z"), Some(1_782_900_000)); assert_eq!(parse_ts("kein datum"), None); } /// Referenzwert vom echten System: privateDefault → 096c4ef9 /// (verifiziert 2026-07-03 gegen den von claude angelegten Eintrag). #[test] fn keychain_service_suffix() { let p = Paths { home: PathBuf::from("/Users/marcus.hinz") }; assert_eq!( keychain_service(&p, "privateDefault"), "Claude Code-credentials-096c4ef9" ); } #[test] fn pool_key_status() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); make_oauth_pool(&p, "privat"); let pools = list_pools_in(&p).unwrap(); assert!(pools.iter().find(|x| x.name == "kunde").unwrap().has_credentials); // oauth: Keychain wird im Listing bewusst nicht geprüft → immer true. assert!(pools.iter().find(|x| x.name == "privat").unwrap().has_credentials); fs::write(p.pool_dir("kunde").join(APIKEY_FILE), "\n").unwrap(); let pools = list_pools_in(&p).unwrap(); assert!(!pools.iter().find(|x| x.name == "kunde").unwrap().has_credentials); fs::remove_file(p.pool_dir("kunde").join(APIKEY_FILE)).unwrap(); let pools = list_pools_in(&p).unwrap(); assert!(!pools.iter().find(|x| x.name == "kunde").unwrap().has_credentials); } #[test] fn pool_loeschen_loest_zuordnungen() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); create_project_in(&p, "proj").unwrap(); assign_pool_in(&p, "proj", "kunde").unwrap(); delete_pool_in(&p, "kunde").unwrap(); assert!(!p.pool_dir("kunde").exists()); assert!(!p.project_config("proj").exists()); } #[test] fn pool_loeschen_erhaelt_terminal_config() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); create_project_in(&p, "proj").unwrap(); assign_pool_in(&p, "proj", "kunde").unwrap(); set_terminal_config_in( &p, "proj", TerminalConfig { theme: Some("dracula".into()), icon: None, title: None }, ) .unwrap(); delete_pool_in(&p, "kunde").unwrap(); let cfg = read_project_config_in(&p, "proj").unwrap(); assert_eq!(cfg.pool, None); assert_eq!(cfg.terminal.theme.as_deref(), Some("dracula")); } #[test] fn pool_loeschen_unbekannt_scheitert() { let p = tmp_paths(); assert!(delete_pool_in(&p, "gibtsnicht").is_err()); } // -- Projekt zuordnen / rausnehmen / wechseln -- #[test] fn projekt_zuordnen() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); create_project_in(&p, "proj").unwrap(); assign_pool_in(&p, "proj", "kunde").unwrap(); let cfg: ProjectConfig = serde_json::from_str(&fs::read_to_string(p.project_config("proj")).unwrap()) .unwrap(); assert_eq!(cfg.pool.as_deref(), Some("kunde")); let pools = list_pools_in(&p).unwrap(); assert_eq!(pools[0].projects, vec!["proj"]); } #[test] fn projekt_zuordnen_pool_fehlt_scheitert() { let p = tmp_paths(); create_project_in(&p, "proj").unwrap(); assert!(assign_pool_in(&p, "proj", "gibtsnicht").is_err()); } #[test] fn projekt_rausnehmen() { let p = tmp_paths(); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); create_project_in(&p, "proj").unwrap(); assign_pool_in(&p, "proj", "kunde").unwrap(); unassign_pool_in(&p, "proj").unwrap(); assert!(!p.project_config("proj").exists()); } #[test] fn projekt_rausnehmen_ohne_zuordnung_scheitert() { let p = tmp_paths(); create_project_in(&p, "proj").unwrap(); assert!(unassign_pool_in(&p, "proj").is_err()); } /// Wechsel oauth → apikey: das Projekt sieht nur den Pool-Namen, /// der Credential-Typ ist ihm egal. #[test] fn pool_wechseln_typ_ist_projekt_egal() { let p = tmp_paths(); make_oauth_pool(&p, "privat"); create_apikey_pool_in(&p, "kunde", "sk-1").unwrap(); create_project_in(&p, "proj").unwrap(); assign_pool_in(&p, "proj", "privat").unwrap(); assign_pool_in(&p, "proj", "kunde").unwrap(); let raw = fs::read_to_string(p.project_config("proj")).unwrap(); let cfg: serde_json::Value = serde_json::from_str(&raw).unwrap(); assert_eq!(cfg, serde_json::json!({ "pool": "kunde" })); } // -- Projekt anlegen / löschen -- #[test] fn projekt_anlegen() { let p = tmp_paths(); create_project_in(&p, "proj").unwrap(); assert!(p.projects_dir().join("proj").join(".claude").is_dir()); let projects = list_projects_in(&p).unwrap(); assert_eq!(projects.len(), 1); assert_eq!(projects[0].name, "proj"); assert_eq!(projects[0].pool, None); } #[test] fn projekt_doppelt_anlegen_scheitert() { let p = tmp_paths(); create_project_in(&p, "proj").unwrap(); assert!(create_project_in(&p, "proj").is_err()); } #[test] fn projekt_loeschen() { let p = tmp_paths(); create_project_in(&p, "proj").unwrap(); delete_project_in(&p, "proj").unwrap(); assert!(!p.projects_dir().join("proj").exists()); } #[test] fn projekt_loeschen_unbekannt_scheitert() { let p = tmp_paths(); assert!(delete_project_in(&p, "gibtsnicht").is_err()); } }