- domain: OrchestratorRequest/Command parse-don't-validate + OrchestratorRequestProcessed event - application: OrchestratorService dispatching spawn/stop/update_agent_context - infrastructure: request watcher over .ideai/requests/, writes .response.json - app-tauri: relay OrchestratorRequestProcessed to the frontend DTO Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
285 lines
9.9 KiB
Rust
285 lines
9.9 KiB
Rust
//! [`OrchestratorService`] — dispatches a validated [`OrchestratorCommand`] to the
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//! existing agent/terminal use cases (ARCHITECTURE §14.3).
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//!
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//! The orchestrator agent never spawns a process itself: IdeA is the single source
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//! of truth for the agent lifecycle. This service is the application-layer seam
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//! that turns a request into the *same* calls the UI makes:
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//!
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//! - `spawn_agent` → [`CreateAgentFromScratch`] (if unknown) then [`LaunchAgent`],
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//! - `stop_agent` → resolve the agent's live session, then [`CloseTerminal`],
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//! - `update_agent_context` → [`UpdateAgentContext`].
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//!
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//! It talks **only** to use cases and ports ([`ProfileStore`], [`TerminalSessions`]):
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//! no filesystem watching, no JSON, no process spawning here — those are the
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//! infrastructure adapter's job. That keeps this fully unit-testable with fakes.
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use std::sync::Arc;
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use domain::ports::ProfileStore;
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use domain::{OrchestratorCommand, Project, ProfileId};
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use crate::agent::{
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CreateAgentFromScratch, CreateAgentInput, LaunchAgent, LaunchAgentInput, ListAgents,
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ListAgentsInput, UpdateAgentContext, UpdateAgentContextInput,
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};
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use crate::error::AppError;
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use crate::terminal::{CloseTerminal, CloseTerminalInput, TerminalSessions};
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/// Default terminal geometry for an orchestrator-launched agent cell. The UI
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/// resizes the PTY to the real cell size on attach; these are sane starting rows
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/// /cols so the spawn never fails on a zero-sized terminal.
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const DEFAULT_ROWS: u16 = 24;
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/// See [`DEFAULT_ROWS`].
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const DEFAULT_COLS: u16 = 80;
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/// Dispatches validated orchestrator commands to the agent/terminal use cases.
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pub struct OrchestratorService {
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create_agent: Arc<CreateAgentFromScratch>,
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launch_agent: Arc<LaunchAgent>,
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list_agents: Arc<ListAgents>,
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close_terminal: Arc<CloseTerminal>,
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update_context: Arc<UpdateAgentContext>,
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profiles: Arc<dyn ProfileStore>,
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sessions: Arc<TerminalSessions>,
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}
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/// Outcome of dispatching a command — a short, human-readable success summary the
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/// infrastructure adapter folds into the JSON response file.
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#[derive(Debug, Clone, PartialEq, Eq)]
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pub struct OrchestratorOutcome {
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/// One-line description of what IdeA did (e.g. `"launched agent dev-backend"`).
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pub detail: String,
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}
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impl OrchestratorService {
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/// Builds the service from the use cases and ports it dispatches to.
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#[must_use]
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#[allow(clippy::too_many_arguments)]
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pub fn new(
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create_agent: Arc<CreateAgentFromScratch>,
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launch_agent: Arc<LaunchAgent>,
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list_agents: Arc<ListAgents>,
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close_terminal: Arc<CloseTerminal>,
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update_context: Arc<UpdateAgentContext>,
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profiles: Arc<dyn ProfileStore>,
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sessions: Arc<TerminalSessions>,
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) -> Self {
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Self {
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create_agent,
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launch_agent,
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list_agents,
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close_terminal,
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update_context,
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profiles,
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sessions,
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}
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}
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/// Dispatches a validated command against `project`.
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///
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/// # Errors
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/// Propagates the underlying use-case [`AppError`] (e.g. unknown profile,
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/// unknown agent, PTY failure). For `spawn_agent` a *known* agent is launched
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/// directly; an *unknown* one is created from scratch first.
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pub async fn dispatch(
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&self,
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project: &Project,
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command: OrchestratorCommand,
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) -> Result<OrchestratorOutcome, AppError> {
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match command {
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OrchestratorCommand::SpawnAgent {
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name,
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profile,
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context,
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} => self.spawn_agent(project, name, profile, context).await,
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OrchestratorCommand::StopAgent { name } => self.stop_agent(project, name).await,
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OrchestratorCommand::UpdateAgentContext { name, context } => {
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self.update_agent_context(project, name, context).await
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}
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}
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}
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/// `spawn_agent`: create the agent if the manifest doesn't already hold one by
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/// that name, then launch it (which publishes `AgentLaunched` → the UI opens a
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/// cell + the Agents tab).
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async fn spawn_agent(
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&self,
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project: &Project,
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name: String,
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profile: String,
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context: Option<String>,
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) -> Result<OrchestratorOutcome, AppError> {
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let existing = self.find_agent_id_by_name(project, &name).await?;
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let agent_id = match existing {
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Some(id) => id,
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None => {
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let profile_id = self.resolve_profile(&profile).await?;
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let created = self
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.create_agent
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.execute(CreateAgentInput {
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project: project.clone(),
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name: name.clone(),
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profile_id,
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initial_content: context,
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})
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.await?;
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created.agent.id
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}
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};
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self.launch_agent
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.execute(LaunchAgentInput {
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project: project.clone(),
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agent_id,
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rows: DEFAULT_ROWS,
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cols: DEFAULT_COLS,
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node_id: None,
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})
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.await?;
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Ok(OrchestratorOutcome {
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detail: format!("launched agent {name}"),
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})
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}
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/// `stop_agent`: translate the agent name → its live session → `CloseTerminal`.
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async fn stop_agent(
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&self,
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project: &Project,
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name: String,
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) -> Result<OrchestratorOutcome, AppError> {
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let agent_id = self
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.find_agent_id_by_name(project, &name)
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.await?
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.ok_or_else(|| AppError::NotFound(format!("agent {name}")))?;
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let session_id = self
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.sessions
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.session_for_agent(&agent_id)
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.ok_or_else(|| AppError::NotFound(format!("running session for agent {name}")))?;
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self.close_terminal
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.execute(CloseTerminalInput { session_id })
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.await?;
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Ok(OrchestratorOutcome {
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detail: format!("stopped agent {name}"),
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})
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}
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/// `update_agent_context`: overwrite the agent's `.md` body.
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async fn update_agent_context(
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&self,
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project: &Project,
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name: String,
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context: String,
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) -> Result<OrchestratorOutcome, AppError> {
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let agent_id = self
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.find_agent_id_by_name(project, &name)
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.await?
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.ok_or_else(|| AppError::NotFound(format!("agent {name}")))?;
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self.update_context
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.execute(UpdateAgentContextInput {
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project: project.clone(),
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agent_id,
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content: context,
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})
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.await?;
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Ok(OrchestratorOutcome {
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detail: format!("updated context for agent {name}"),
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})
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}
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/// Finds an agent id by display name (case-insensitive) in the project manifest.
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async fn find_agent_id_by_name(
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&self,
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project: &Project,
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name: &str,
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) -> Result<Option<domain::AgentId>, AppError> {
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let listed = self
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.list_agents
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.execute(ListAgentsInput {
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project: project.clone(),
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})
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.await?;
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Ok(listed
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.agents
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.into_iter()
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.find(|a| a.name.eq_ignore_ascii_case(name))
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.map(|a| a.id))
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}
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/// Resolves a human-friendly profile reference (slug like `claude-code`,
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/// command like `claude`, or display name like `Claude Code`) to a configured
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/// [`ProfileId`]. Matching is universal — never hard-coded to one AI — by
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/// scanning the configured profiles' command and name.
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///
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/// # Errors
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/// [`AppError::NotFound`] when no configured profile matches.
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async fn resolve_profile(&self, reference: &str) -> Result<ProfileId, AppError> {
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let needle = normalise(reference);
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let profiles = self.profiles.list().await?;
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profiles
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.into_iter()
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.find(|p| {
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normalise(&p.command) == needle
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|| normalise(&p.name) == needle
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|| p.id.to_string() == reference
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})
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.map(|p| p.id)
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.ok_or_else(|| AppError::NotFound(format!("profile matching '{reference}'")))
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}
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}
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/// Normalises a profile reference for tolerant matching: lowercased, with spaces,
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/// dashes and underscores stripped (`"Claude Code"`, `"claude-code"`, `"claude"`
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/// → comparable forms; `claude` ⊂ ... handled by the command match above).
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fn normalise(s: &str) -> String {
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s.chars()
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.filter(|c| c.is_ascii_alphanumeric())
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.map(|c| c.to_ascii_lowercase())
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.collect()
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use domain::profile::{AgentProfile, ContextInjection};
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use domain::ProfileId;
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fn profile(id: u128, name: &str, command: &str) -> AgentProfile {
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AgentProfile::new(
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ProfileId::from_uuid(uuid::Uuid::from_u128(id)),
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name,
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command,
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Vec::new(),
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ContextInjection::convention_file("CLAUDE.md").unwrap(),
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None,
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"{agentRunDir}",
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)
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.unwrap()
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}
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#[test]
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fn normalise_makes_slug_command_and_name_comparable() {
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assert_eq!(normalise("Claude Code"), "claudecode");
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assert_eq!(normalise("claude-code"), "claudecode");
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assert_eq!(normalise("claude_code"), "claudecode");
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}
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#[test]
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fn resolve_matches_by_command_name_or_id() {
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// We exercise the pure matching predicate the same way `resolve_profile`
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// does, without standing up the whole service/ports.
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let p = profile(1, "Claude Code", "claude");
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let by_command = normalise("claude") == normalise(&p.command);
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let by_name = normalise("claude-code") == normalise(&p.name);
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assert!(by_command);
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assert!(by_name);
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assert_eq!(p.id.to_string(), p.id.to_string());
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}
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}
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