{"version":3,"file":"main.d.ts","sourceRoot":"","sources":["../src/main.ts"],"names":[],"mappings":"AAAA;;;;;GAKG;AAgCH,OAAO,KAAK,EAAgB,gBAAgB,EAAE,MAAM,4BAA4B,CAAC;AA0iBjF,MAAM,WAAW,WAAW;IAC3B,kBAAkB,CAAC,EAAE,gBAAgB,EAAE,CAAC;CACxC;AAYD,wBAAsB,IAAI,CAAC,IAAI,EAAE,MAAM,EAAE,EAAE,OAAO,CAAC,EAAE,WAAW,iBAigB/D","sourcesContent":["/**\n * Main entry point for the coding agent CLI.\n *\n * This file handles CLI argument parsing and translates them into\n * createAgentSession() options. The SDK does the heavy lifting.\n */\n\nimport { resolve } from \"node:path\";\nimport { createInterface } from \"node:readline\";\nimport { type ImageContent, modelsAreEqual } from \"@kolisachint/hoocode-ai\";\nimport { ProcessTerminal, setKeybindings, TUI } from \"@kolisachint/hoocode-tui\";\nimport chalk from \"chalk\";\nimport { type Args, type Mode, parseArgs, printHelp } from \"./cli/args.js\";\nimport { processFileArguments } from \"./cli/file-processor.js\";\nimport { buildInitialMessage } from \"./cli/initial-message.js\";\nimport { listModels } from \"./cli/list-models.js\";\nimport { selectSession } from \"./cli/session-picker.js\";\nimport { ENV_SESSION_DIR, expandTildePath, getAgentDir, VERSION } from \"./config.js\";\nimport { setAgentCliPaths } from \"./core/agent-manifest-paths.js\";\nimport { type CreateAgentSessionRuntimeFactory, createAgentSessionRuntime } from \"./core/agent-session-runtime.js\";\nimport {\n\ttype AgentSessionRuntimeDiagnostic,\n\tcreateAgentSessionFromServices,\n\tcreateAgentSessionServices,\n} from \"./core/agent-session-services.js\";\nimport { formatNoModelsAvailableMessage } from \"./core/auth-guidance.js\";\nimport { AuthStorage } from \"./core/auth-storage.js\";\nimport { builtinSkillPaths } from \"./core/builtin-skills.js\";\nimport { analyzeDeferral, formatDeferral } from \"./core/capabilities/deferral.js\";\nimport { reportEmbsearchProgress } from \"./core/embsearch/embsearch-progress.js\";\nimport {\n\tEmbsearchService,\n\tregisterEmbsearchService,\n\tunregisterEmbsearchService,\n} from \"./core/embsearch/embsearch-service.js\";\nimport { exportFromFile } from \"./core/export-html/index.js\";\nimport { parsePlatforms, setPlatforms } from \"./core/extensions/plugins/formats/platform-targets.js\";\nimport type { ExtensionAPI, ExtensionFactory } from \"./core/extensions/types.js\";\nimport { KeybindingsManager } from \"./core/keybindings.js\";\nimport {\n\tcreateLightTools,\n\tLIGHT_MODE_ENV,\n\tLIGHT_SYSTEM_PROMPT,\n\tLIGHT_TOOL_NAMES,\n\tmeasurePromptSurface,\n} from \"./core/light.js\";\nimport type { ModelRegistry } from \"./core/model-registry.js\";\nimport { resolveCliModel, resolveModelScope, type ScopedModel } from \"./core/model-resolver.js\";\nimport { restoreStdout, takeOverStdout } from \"./core/output-guard.js\";\nimport type { CreateAgentSessionOptions } from \"./core/sdk.js\";\nimport {\n\tformatMissingSessionCwdPrompt,\n\tgetMissingSessionCwdIssue,\n\tMissingSessionCwdError,\n\ttype SessionCwdIssue,\n} from \"./core/session-cwd.js\";\nimport { SessionManager } from \"./core/session-manager.js\";\nimport { SettingsManager } from \"./core/settings-manager.js\";\nimport {\n\tcanSpawnSubagent,\n\tDEFER_MCP_SCHEMAS_ENV,\n\tDELEGATE_ALLOW_ENV,\n\tNESTED_CONCURRENCY_ENV,\n\tresolveMaxSubagentDepth,\n\tresolveNestedConcurrency,\n\tSUBAGENT_MAX_DEPTH_ENV,\n} from \"./core/subagent-depth.js\";\nimport { printTimings, resetTimings, time } from \"./core/timings.js\";\nimport { createPackagePluginToolDefinition } from \"./core/tools/package-plugin.js\";\nimport { createPluginLifecycleToolDefinitions } from \"./core/tools/plugins.js\";\nimport { createProposePluginToolDefinitions } from \"./core/tools/propose-plugin.js\";\nimport {\n\tbuildTaskMainPrompt,\n\tcreateTaskOutputToolDefinition,\n\tcreateTaskToolDefinition,\n} from \"./core/tools/subagent.js\";\nimport { createTodoWriteToolDefinition } from \"./core/tools/todo.js\";\nimport { WARM_SUBAGENTS_ENV } from \"./core/warm-subagent-pool-instance.js\";\n// Static import (not dynamic) so `bun build --compile` statically reaches\n// hoo-core from the compiled entry chain (src/bun/cli.ts -> src/cli.ts ->\n// main.ts) and bundles it into the standalone binary. The node CLI reaches it\n// via this same path through DEFAULT_EXTENSION_FACTORIES below.\nimport hooCore from \"./extensions/core/hoo-core.js\";\nimport { runMigrations, showDeprecationWarnings } from \"./migrations.js\";\nimport { InteractiveMode, runPrintMode, runRpcMode } from \"./modes/index.js\";\nimport { ExtensionSelectorComponent } from \"./modes/interactive/components/extension-selector.js\";\nimport { initTheme, stopThemeWatcher } from \"./modes/interactive/theme/theme.js\";\nimport { handleConfigCommand, handlePackageCommand } from \"./package-manager-cli.js\";\nimport { handleResourcesCommand } from \"./resources-cli.js\";\nimport { isLocalPath } from \"./utils/paths.js\";\n\n/**\n * Read all content from piped stdin.\n * Returns undefined if stdin is a TTY (interactive terminal).\n */\nasync function readPipedStdin(): Promise<string | undefined> {\n\t// If stdin is a TTY, we're running interactively - don't read stdin\n\tif (process.stdin.isTTY) {\n\t\treturn undefined;\n\t}\n\n\treturn new Promise((resolve) => {\n\t\tlet data = \"\";\n\t\tprocess.stdin.setEncoding(\"utf8\");\n\t\tprocess.stdin.on(\"data\", (chunk) => {\n\t\t\tdata += chunk;\n\t\t});\n\t\tprocess.stdin.on(\"end\", () => {\n\t\t\tresolve(data.trim() || undefined);\n\t\t});\n\t\tprocess.stdin.resume();\n\t});\n}\n\nfunction collectSettingsDiagnostics(\n\tsettingsManager: SettingsManager,\n\tcontext: string,\n): AgentSessionRuntimeDiagnostic[] {\n\treturn settingsManager.drainErrors().map(({ scope, error }) => ({\n\t\ttype: \"warning\",\n\t\tmessage: `(${context}, ${scope} settings) ${error.message}`,\n\t}));\n}\n\nfunction reportDiagnostics(diagnostics: readonly AgentSessionRuntimeDiagnostic[]): void {\n\tfor (const diagnostic of diagnostics) {\n\t\tconst color = diagnostic.type === \"error\" ? chalk.red : diagnostic.type === \"warning\" ? chalk.yellow : chalk.dim;\n\t\tconst prefix = diagnostic.type === \"error\" ? \"Error: \" : diagnostic.type === \"warning\" ? \"Warning: \" : \"\";\n\t\tconsole.error(color(`${prefix}${diagnostic.message}`));\n\t}\n}\n\nfunction isTruthyEnvFlag(value: string | undefined): boolean {\n\tif (!value) return false;\n\treturn value === \"1\" || value.toLowerCase() === \"true\" || value.toLowerCase() === \"yes\";\n}\n\ntype AppMode = \"interactive\" | \"print\" | \"json\" | \"rpc\";\n\nfunction resolveAppMode(parsed: Args, stdinIsTTY: boolean): AppMode {\n\tif (parsed.mode === \"rpc\") {\n\t\treturn \"rpc\";\n\t}\n\tif (parsed.mode === \"json\") {\n\t\treturn \"json\";\n\t}\n\tif (parsed.print || !stdinIsTTY) {\n\t\treturn \"print\";\n\t}\n\treturn \"interactive\";\n}\n\nfunction toPrintOutputMode(appMode: AppMode): Exclude<Mode, \"rpc\"> {\n\treturn appMode === \"json\" ? \"json\" : \"text\";\n}\n\nasync function prepareInitialMessage(\n\tparsed: Args,\n\tautoResizeImages: boolean,\n\tstdinContent?: string,\n): Promise<{\n\tinitialMessage?: string;\n\tinitialImages?: ImageContent[];\n}> {\n\tif (parsed.fileArgs.length === 0) {\n\t\treturn buildInitialMessage({ parsed, stdinContent });\n\t}\n\n\tconst { text, images } = await processFileArguments(parsed.fileArgs, { autoResizeImages });\n\treturn buildInitialMessage({\n\t\tparsed,\n\t\tfileText: text,\n\t\tfileImages: images,\n\t\tstdinContent,\n\t});\n}\n\n/** Result from resolving a session argument */\ntype ResolvedSession =\n\t| { type: \"path\"; path: string } // Direct file path\n\t| { type: \"local\"; path: string } // Found in current project\n\t| { type: \"global\"; path: string; cwd: string } // Found in different project\n\t| { type: \"not_found\"; arg: string }; // Not found anywhere\n\n/**\n * Resolve a session argument to a file path.\n * If it looks like a path, use as-is. Otherwise try to match as session ID prefix.\n */\nasync function resolveSessionPath(sessionArg: string, cwd: string, sessionDir?: string): Promise<ResolvedSession> {\n\t// If it looks like a file path, use as-is\n\tif (sessionArg.includes(\"/\") || sessionArg.includes(\"\\\\\") || sessionArg.endsWith(\".jsonl\")) {\n\t\treturn { type: \"path\", path: sessionArg };\n\t}\n\n\t// Try to match as session ID in current project first\n\tconst localSessions = await SessionManager.list(cwd, sessionDir);\n\tconst localMatches = localSessions.filter((s) => s.id.startsWith(sessionArg));\n\n\tif (localMatches.length >= 1) {\n\t\treturn { type: \"local\", path: localMatches[0].path };\n\t}\n\n\t// Try global search across all projects\n\tconst allSessions = await SessionManager.listAll();\n\tconst globalMatches = allSessions.filter((s) => s.id.startsWith(sessionArg));\n\n\tif (globalMatches.length >= 1) {\n\t\tconst match = globalMatches[0];\n\t\treturn { type: \"global\", path: match.path, cwd: match.cwd };\n\t}\n\n\t// Not found anywhere\n\treturn { type: \"not_found\", arg: sessionArg };\n}\n\n/** Prompt user for yes/no confirmation */\nasync function promptConfirm(message: string): Promise<boolean> {\n\treturn new Promise((resolve) => {\n\t\tconst rl = createInterface({\n\t\t\tinput: process.stdin,\n\t\t\toutput: process.stdout,\n\t\t});\n\t\trl.question(`${message} [y/N] `, (answer) => {\n\t\t\trl.close();\n\t\t\tresolve(answer.toLowerCase() === \"y\" || answer.toLowerCase() === \"yes\");\n\t\t});\n\t});\n}\n\nfunction validateForkFlags(parsed: Args): void {\n\tif (!parsed.fork) return;\n\n\tconst conflictingFlags = [\n\t\tparsed.session ? \"--session\" : undefined,\n\t\tparsed.continue ? \"--continue\" : undefined,\n\t\tparsed.resume ? \"--resume\" : undefined,\n\t\tparsed.noSession ? \"--no-session\" : undefined,\n\t].filter((flag): flag is string => flag !== undefined);\n\n\tif (conflictingFlags.length > 0) {\n\t\tconsole.error(chalk.red(`Error: --fork cannot be combined with ${conflictingFlags.join(\", \")}`));\n\t\tprocess.exit(1);\n\t}\n}\n\nfunction forkSessionOrExit(sourcePath: string, cwd: string, sessionDir?: string): SessionManager {\n\ttry {\n\t\treturn SessionManager.forkFrom(sourcePath, cwd, sessionDir);\n\t} catch (error: unknown) {\n\t\tconst message = error instanceof Error ? error.message : String(error);\n\t\tconsole.error(chalk.red(`Error: ${message}`));\n\t\tprocess.exit(1);\n\t}\n}\n\nasync function createSessionManager(\n\tparsed: Args,\n\tcwd: string,\n\tsessionDir: string | undefined,\n\tsettingsManager: SettingsManager,\n): Promise<SessionManager> {\n\tif (parsed.noSession) {\n\t\treturn SessionManager.inMemory();\n\t}\n\n\tif (parsed.fork) {\n\t\tconst resolved = await resolveSessionPath(parsed.fork, cwd, sessionDir);\n\n\t\tswitch (resolved.type) {\n\t\t\tcase \"path\":\n\t\t\tcase \"local\":\n\t\t\tcase \"global\":\n\t\t\t\treturn forkSessionOrExit(resolved.path, cwd, sessionDir);\n\n\t\t\tcase \"not_found\":\n\t\t\t\tconsole.error(chalk.red(`No session found matching '${resolved.arg}'`));\n\t\t\t\tprocess.exit(1);\n\t\t}\n\t}\n\n\tif (parsed.session) {\n\t\tconst resolved = await resolveSessionPath(parsed.session, cwd, sessionDir);\n\n\t\tswitch (resolved.type) {\n\t\t\tcase \"path\":\n\t\t\tcase \"local\":\n\t\t\t\treturn SessionManager.open(resolved.path, sessionDir);\n\n\t\t\tcase \"global\": {\n\t\t\t\tconsole.log(chalk.yellow(`Session found in different project: ${resolved.cwd}`));\n\t\t\t\tconst shouldFork = await promptConfirm(\"Fork this session into current directory?\");\n\t\t\t\tif (!shouldFork) {\n\t\t\t\t\tconsole.log(chalk.dim(\"Aborted.\"));\n\t\t\t\t\tprocess.exit(0);\n\t\t\t\t}\n\t\t\t\treturn forkSessionOrExit(resolved.path, cwd, sessionDir);\n\t\t\t}\n\n\t\t\tcase \"not_found\":\n\t\t\t\tconsole.error(chalk.red(`No session found matching '${resolved.arg}'`));\n\t\t\t\tprocess.exit(1);\n\t\t}\n\t}\n\n\tif (parsed.resume) {\n\t\tinitTheme(settingsManager.getTheme(), true);\n\t\ttry {\n\t\t\tconst selectedPath = await selectSession(\n\t\t\t\t(onProgress) => SessionManager.list(cwd, sessionDir, onProgress),\n\t\t\t\tSessionManager.listAll,\n\t\t\t);\n\t\t\tif (!selectedPath) {\n\t\t\t\tconsole.log(chalk.dim(\"No session selected\"));\n\t\t\t\tprocess.exit(0);\n\t\t\t}\n\t\t\treturn SessionManager.open(selectedPath, sessionDir);\n\t\t} finally {\n\t\t\tstopThemeWatcher();\n\t\t}\n\t}\n\n\tif (parsed.continue) {\n\t\treturn SessionManager.continueRecent(cwd, sessionDir);\n\t}\n\n\treturn SessionManager.create(cwd, sessionDir);\n}\n\nfunction buildSessionOptions(\n\tparsed: Args,\n\tscopedModels: ScopedModel[],\n\thasExistingSession: boolean,\n\tmodelRegistry: ModelRegistry,\n\tsettingsManager: SettingsManager,\n\tlightMode: boolean,\n): {\n\toptions: CreateAgentSessionOptions;\n\tcliThinkingFromModel: boolean;\n\tdiagnostics: AgentSessionRuntimeDiagnostic[];\n} {\n\tconst options: CreateAgentSessionOptions = {};\n\tconst diagnostics: AgentSessionRuntimeDiagnostic[] = [];\n\tlet cliThinkingFromModel = false;\n\n\t// Model from CLI\n\t// - supports --provider <name> --model <pattern>\n\t// - supports --model <provider>/<pattern>\n\tif (parsed.model) {\n\t\tconst resolved = resolveCliModel({\n\t\t\tcliProvider: parsed.provider,\n\t\t\tcliModel: parsed.model,\n\t\t\tmodelRegistry,\n\t\t});\n\t\tif (resolved.warning) {\n\t\t\tdiagnostics.push({ type: \"warning\", message: resolved.warning });\n\t\t}\n\t\tif (resolved.error) {\n\t\t\tdiagnostics.push({ type: \"error\", message: resolved.error });\n\t\t}\n\t\tif (resolved.model) {\n\t\t\toptions.model = resolved.model;\n\t\t\t// Allow \"--model <pattern>:<thinking>\" as a shorthand.\n\t\t\t// Explicit --thinking still takes precedence (applied later).\n\t\t\tif (!parsed.thinking && resolved.thinkingLevel) {\n\t\t\t\toptions.thinkingLevel = resolved.thinkingLevel;\n\t\t\t\tcliThinkingFromModel = true;\n\t\t\t}\n\t\t}\n\t}\n\n\tif (!options.model && scopedModels.length > 0 && !hasExistingSession) {\n\t\t// Check if saved default is in scoped models - use it if so, otherwise first scoped model\n\t\tconst savedProvider = settingsManager.getDefaultProvider();\n\t\tconst savedModelId = settingsManager.getDefaultModel();\n\t\tconst savedModel = savedProvider && savedModelId ? modelRegistry.find(savedProvider, savedModelId) : undefined;\n\t\tconst savedInScope = savedModel ? scopedModels.find((sm) => modelsAreEqual(sm.model, savedModel)) : undefined;\n\n\t\tif (savedInScope) {\n\t\t\toptions.model = savedInScope.model;\n\t\t\t// Use thinking level from scoped model config if explicitly set\n\t\t\tif (!parsed.thinking && savedInScope.thinkingLevel) {\n\t\t\t\toptions.thinkingLevel = savedInScope.thinkingLevel;\n\t\t\t}\n\t\t} else {\n\t\t\toptions.model = scopedModels[0].model;\n\t\t\t// Use thinking level from first scoped model if explicitly set\n\t\t\tif (!parsed.thinking && scopedModels[0].thinkingLevel) {\n\t\t\t\toptions.thinkingLevel = scopedModels[0].thinkingLevel;\n\t\t\t}\n\t\t}\n\t}\n\n\t// Thinking level from CLI (takes precedence over scoped model thinking levels set above)\n\tif (parsed.thinking) {\n\t\toptions.thinkingLevel = parsed.thinking;\n\t}\n\n\t// Scoped models for Ctrl+P cycling\n\t// Keep thinking level undefined when not explicitly set in the model pattern.\n\t// Undefined means \"inherit current session thinking level\" during cycling.\n\tif (scopedModels.length > 0) {\n\t\toptions.scopedModels = scopedModels.map((sm) => ({\n\t\t\tmodel: sm.model,\n\t\t\tthinkingLevel: sm.thinkingLevel,\n\t\t}));\n\t}\n\n\t// API key from CLI - set in authStorage\n\t// (handled by caller before createAgentSession)\n\n\t// Tools\n\tif (parsed.noTools) {\n\t\toptions.noTools = \"all\";\n\t} else if (parsed.noBuiltinTools) {\n\t\toptions.noTools = \"builtin\";\n\t}\n\tif (parsed.tools) {\n\t\toptions.tools = [...parsed.tools];\n\t}\n\tif (parsed.disallowedTools) {\n\t\toptions.disallowedTools = [...parsed.disallowedTools];\n\t}\n\t// Persisted per-tool disables from the TUI (/settings → Tools). These compose\n\t// with any CLI denylist and always subtract from the active tool set: a tool\n\t// listed here stays off even if it also appears in the --tools allowlist.\n\tconst disabledTools = settingsManager.getDisabledTools();\n\tif (disabledTools.length > 0) {\n\t\toptions.disallowedTools = [...new Set([...(options.disallowedTools ?? []), ...disabledTools])];\n\t}\n\t// Light preset: restrict to the four core tools unless the user passed an\n\t// explicit allowlist or suppression flag (explicit flags win over the preset).\n\t// The allowlist also blocks Task/TodoWrite/plugin tools from becoming active.\n\tif (lightMode && !parsed.tools && !parsed.noTools && !parsed.noBuiltinTools) {\n\t\toptions.tools = [...LIGHT_TOOL_NAMES];\n\t}\n\t// Artifact platform targeting: the --platform flag (falls back to the\n\t// `platform` setting, which /settings also writes) picks which vendor\n\t// layout(s) hoocode writes when it produces artifacts — authored plugins\n\t// (ProposePlugin) and the /new-skill //new-agent //new-command scaffolds.\n\t// Stored as process-wide state next to the format registry; readers of every\n\t// format stay unaffected.\n\tconst platformTokens = parsed.platform ?? settingsManager.getPlatform();\n\tif (platformTokens && platformTokens.length > 0) {\n\t\tconst { platforms, invalid } = parsePlatforms(platformTokens);\n\t\tfor (const token of invalid) {\n\t\t\tdiagnostics.push({\n\t\t\t\ttype: \"warning\",\n\t\t\t\tmessage: `Unknown --platform \"${token}\" (valid: claude, copilot|github|gh, agents|native)`,\n\t\t\t});\n\t\t}\n\t\tif (platforms.length > 0) {\n\t\t\tsetPlatforms(platforms);\n\t\t} else {\n\t\t\tdiagnostics.push({\n\t\t\t\ttype: \"warning\",\n\t\t\t\tmessage: \"--platform resolved no valid platforms; using the default targets\",\n\t\t\t});\n\t\t}\n\t}\n\n\t// Web tools (webfetch + websearch): opt-in via --enable-webtools flag or the\n\t// enableWebTools setting. They are registered as base tools but inactive by\n\t// default; this adds them to the default active set.\n\tif (parsed.enableWebTools ?? settingsManager.getEnableWebTools()) {\n\t\toptions.enableWebTools = true;\n\t}\n\t// Ranked code search (search tool, lexical + semantic hybrid). The search tool\n\t// is active by default. The enableSemanticIndex setting controls whether the\n\t// optional semantic index layer starts; when off, search degrades to lexical-only.\n\tif (parsed.enableSemanticIndex ?? settingsManager.getEnableSemanticIndex()) {\n\t\toptions.enableSemanticIndex = true;\n\t}\n\n\t// Optional Task (subagent) tool: opt-in via --enable-subagents flag or the enableSubagent setting.\n\t// Registered as a custom tool; respects --tools/--no-tools allowlists like any other tool.\n\t//\n\t// Nesting is bounded by the tree-wide cap (maxSubagentDepth, default 1). The root\n\t// seeds the cap into the environment so every descendant agrees on one value; the\n\t// Task tool is registered only while this process's depth is below that cap. At the\n\t// default cap this reproduces the original guard exactly: subagents (depth >= 1) get\n\t// no Task tool and cannot recursively dispatch.\n\tconst isSubagentChild = parsed.taskId !== undefined;\n\tif (process.env[SUBAGENT_MAX_DEPTH_ENV] === undefined) {\n\t\t// The root seeds the tree-wide cap; the --max-subagent-depth flag overrides the\n\t\t// setting. resolveMaxSubagentDepth clamps it to the supported range so the seeded\n\t\t// env (and everything that inherits it) carries a sane value. Descendants inherit\n\t\t// it via the environment (env already set => keep it).\n\t\tprocess.env[SUBAGENT_MAX_DEPTH_ENV] = String(\n\t\t\tresolveMaxSubagentDepth(parsed.maxSubagentDepth ?? settingsManager.getMaxSubagentDepth()),\n\t\t);\n\t}\n\tif (process.env[NESTED_CONCURRENCY_ENV] === undefined) {\n\t\t// Seed the nested-pool concurrency from settings so descendants agree on one value.\n\t\tprocess.env[NESTED_CONCURRENCY_ENV] = String(\n\t\t\tresolveNestedConcurrency(settingsManager.getNestedSubagentConcurrency()),\n\t\t);\n\t}\n\t// Scoped delegation: --delegate-allow is the authoritative restriction for this\n\t// process. Set it from the flag, or clear any inherited value so a restricted\n\t// parent's scope never leaks into a child that wasn't given its own.\n\tif (parsed.delegateAllow && parsed.delegateAllow.length > 0) {\n\t\tprocess.env[DELEGATE_ALLOW_ENV] = parsed.delegateAllow.join(\",\");\n\t} else {\n\t\tdelete process.env[DELEGATE_ALLOW_ENV];\n\t}\n\tif (!lightMode && canSpawnSubagent() && (parsed.subagent ?? settingsManager.getEnableSubagent())) {\n\t\toptions.customTools = [\n\t\t\t...(options.customTools ?? []),\n\t\t\tcreateTaskToolDefinition(),\n\t\t\tcreateTaskOutputToolDefinition(),\n\t\t];\n\t\t// Warm subagents (experimental): dispatch eligible foreground subagents on\n\t\t// reused RPC workers to skip the cold-boot. Root-only — the Task tool exists\n\t\t// only where canSpawnSubagent holds and never inside a spawned child — and\n\t\t// carried via env so the Task tool reads it without threading a setting.\n\t\tif (!isSubagentChild && (parsed.warmSubagents ?? settingsManager.getWarmSubagents())) {\n\t\t\tprocess.env[WARM_SUBAGENTS_ENV] = \"1\";\n\t\t}\n\t}\n\n\t// Optional TodoWrite tool: opt-in via --enable-todowrite flag or the\n\t// enableTodoWrite setting. Never registered inside a spawned subagent child —\n\t// its todos would otherwise leak into the parent's \"main\" task group in the pane.\n\tif (!isSubagentChild && !lightMode && (parsed.todoWrite ?? settingsManager.getEnableTodoWrite())) {\n\t\toptions.customTools = [...(options.customTools ?? []), createTodoWriteToolDefinition()];\n\t}\n\n\t// Deferred MCP tool schemas (default on; disable via deferMcpSchemas=false): set\n\t// for the top-level agent only. Subagent\n\t// children clear this env (see subagent-pool) so a child that needs MCP resolves\n\t// its allowlisted tools eagerly at dispatch.\n\tif (!isSubagentChild && settingsManager.getDeferMcpSchemas()) {\n\t\tprocess.env[DEFER_MCP_SCHEMAS_ENV] = \"1\";\n\t}\n\n\t// Plugin lifecycle tools (SearchPlugins, InstallPlugin, ...). Top-level agent\n\t// only: these are capability-acquisition tools and must never be available to\n\t// a spawned subagent child (privilege-amplification guardrail, spec §3).\n\t// `enablePluginTools` is the master switch for the whole autonomous plugin\n\t// system (default off) — it gates both these tools and the runtime reuse\n\t// nudge (see extensions/core/prompt-reactive), so both flip together.\n\tif (!isSubagentChild && !lightMode && (parsed.enablePluginTools ?? settingsManager.getEnablePluginTools())) {\n\t\toptions.customTools = [\n\t\t\t...(options.customTools ?? []),\n\t\t\t...createPluginLifecycleToolDefinitions(),\n\t\t\t...createProposePluginToolDefinitions(),\n\t\t\tcreatePackagePluginToolDefinition(),\n\t\t];\n\t}\n\n\treturn { options, cliThinkingFromModel, diagnostics };\n}\n\nfunction resolveCliPaths(cwd: string, paths: string[] | undefined): string[] | undefined {\n\treturn paths?.map((value) => (isLocalPath(value) ? resolve(cwd, value) : value));\n}\n\nasync function promptForMissingSessionCwd(\n\tissue: SessionCwdIssue,\n\tsettingsManager: SettingsManager,\n): Promise<string | undefined> {\n\tinitTheme(settingsManager.getTheme());\n\tsetKeybindings(KeybindingsManager.create());\n\n\treturn new Promise((resolve) => {\n\t\tconst ui = new TUI(new ProcessTerminal(), settingsManager.getShowHardwareCursor());\n\t\tui.setClearOnShrink(settingsManager.getClearOnShrink());\n\n\t\tlet settled = false;\n\t\tconst finish = (result: string | undefined) => {\n\t\t\tif (settled) {\n\t\t\t\treturn;\n\t\t\t}\n\t\t\tsettled = true;\n\t\t\tui.stop();\n\t\t\tresolve(result);\n\t\t};\n\n\t\tconst selector = new ExtensionSelectorComponent(\n\t\t\tformatMissingSessionCwdPrompt(issue),\n\t\t\t[\"Continue\", \"Cancel\"],\n\t\t\t(option) => finish(option === \"Continue\" ? issue.fallbackCwd : undefined),\n\t\t\t() => finish(undefined),\n\t\t\t{ tui: ui },\n\t\t);\n\t\tui.addChild(selector);\n\t\tui.setFocus(selector);\n\t\tui.start();\n\t});\n}\n\nexport interface MainOptions {\n\textensionFactories?: ExtensionFactory[];\n}\n\n/**\n * Built-in extension factories loaded when the caller supplies none. This is\n * the single source of truth for the app's built-ins (hoo-core: /loop, /plugin,\n * /mode, /cost, scaffold commands, the MCP loader + remote-MCP/OAuth flow).\n * Both entry points — the node CLI (bin/hoocode.js) and the compiled binary\n * (src/cli.ts) — call main() without factories and inherit this default.\n * Downstream embedders that pass their own extensionFactories override it.\n */\nconst DEFAULT_EXTENSION_FACTORIES: ExtensionFactory[] = [hooCore];\n\nexport async function main(args: string[], options?: MainOptions) {\n\tresetTimings();\n\tconst offlineMode = args.includes(\"--offline\") || isTruthyEnvFlag(process.env.HOOCODE_OFFLINE);\n\tif (offlineMode) {\n\t\tprocess.env.HOOCODE_OFFLINE = \"1\";\n\t\tprocess.env.HOOCODE_SKIP_VERSION_CHECK = \"1\";\n\t}\n\n\tif (await handlePackageCommand(args)) {\n\t\treturn;\n\t}\n\n\tif (await handleConfigCommand(args)) {\n\t\treturn;\n\t}\n\n\tif (await handleResourcesCommand(args)) {\n\t\treturn;\n\t}\n\n\tconst parsed = parseArgs(args);\n\tif (parsed.diagnostics.length > 0) {\n\t\tfor (const d of parsed.diagnostics) {\n\t\t\tconst color = d.type === \"error\" ? chalk.red : chalk.yellow;\n\t\t\tconsole.error(color(`${d.type === \"error\" ? \"Error\" : \"Warning\"}: ${d.message}`));\n\t\t}\n\t\tif (parsed.diagnostics.some((d) => d.type === \"error\")) {\n\t\t\tprocess.exit(1);\n\t\t}\n\t}\n\ttime(\"parseArgs\");\n\tlet appMode = resolveAppMode(parsed, process.stdin.isTTY);\n\tconst shouldTakeOverStdout = appMode !== \"interactive\";\n\tif (shouldTakeOverStdout) {\n\t\ttakeOverStdout();\n\t}\n\n\tif (parsed.version) {\n\t\tconsole.log(VERSION);\n\t\tprocess.exit(0);\n\t}\n\n\tif (parsed.export) {\n\t\tlet result: string;\n\t\ttry {\n\t\t\tconst outputPath = parsed.messages.length > 0 ? parsed.messages[0] : undefined;\n\t\t\tresult = await exportFromFile(parsed.export, outputPath);\n\t\t} catch (error: unknown) {\n\t\t\tconst message = error instanceof Error ? error.message : \"Failed to export session\";\n\t\t\tconsole.error(chalk.red(`Error: ${message}`));\n\t\t\tprocess.exit(1);\n\t\t}\n\t\tconsole.log(`Exported to: ${result}`);\n\t\tprocess.exit(0);\n\t}\n\n\tif (parsed.mode === \"rpc\" && parsed.fileArgs.length > 0) {\n\t\tconsole.error(chalk.red(\"Error: @file arguments are not supported in RPC mode\"));\n\t\tprocess.exit(1);\n\t}\n\n\tvalidateForkFlags(parsed);\n\n\t// Run migrations (pass cwd for project-local migrations)\n\tconst { migratedAuthProviders: migratedProviders, deprecationWarnings } = runMigrations(process.cwd());\n\ttime(\"runMigrations\");\n\n\tconst cwd = process.cwd();\n\tconst agentDir = getAgentDir();\n\tconst startupSettingsManager = SettingsManager.create(cwd, agentDir);\n\treportDiagnostics(collectSettingsDiagnostics(startupSettingsManager, \"startup session lookup\"));\n\n\t// Decide the final runtime cwd before creating cwd-bound runtime services.\n\t// --session and --resume may select a session from another project, so project-local\n\t// settings, resources, provider registrations, and models must be resolved only after\n\t// the target session cwd is known. The startup-cwd settings manager is used only for\n\t// sessionDir lookup during session selection.\n\tconst envSessionDir = process.env[ENV_SESSION_DIR];\n\tconst sessionDir =\n\t\tparsed.sessionDir ??\n\t\t(envSessionDir ? expandTildePath(envSessionDir) : undefined) ??\n\t\tstartupSettingsManager.getSessionDir();\n\tlet sessionManager = await createSessionManager(parsed, cwd, sessionDir, startupSettingsManager);\n\tconst missingSessionCwdIssue = getMissingSessionCwdIssue(sessionManager, cwd);\n\tif (missingSessionCwdIssue) {\n\t\tif (appMode === \"interactive\") {\n\t\t\tconst selectedCwd = await promptForMissingSessionCwd(missingSessionCwdIssue, startupSettingsManager);\n\t\t\tif (!selectedCwd) {\n\t\t\t\tprocess.exit(0);\n\t\t\t}\n\t\t\tsessionManager = SessionManager.open(missingSessionCwdIssue.sessionFile!, sessionDir, selectedCwd);\n\t\t} else {\n\t\t\tconsole.error(chalk.red(new MissingSessionCwdError(missingSessionCwdIssue).message));\n\t\t\tprocess.exit(1);\n\t\t}\n\t}\n\ttime(\"createSessionManager\");\n\n\tconst resolvedExtensionPaths = resolveCliPaths(cwd, parsed.extensions);\n\tconst resolvedSkillPaths = resolveCliPaths(cwd, parsed.skills);\n\tconst resolvedAgentPaths = resolveCliPaths(cwd, parsed.agents);\n\tconst resolvedPromptTemplatePaths = resolveCliPaths(cwd, parsed.promptTemplates);\n\tconst resolvedSlashCommandPaths = resolveCliPaths(cwd, parsed.slashCommands);\n\tconst resolvedThemePaths = resolveCliPaths(cwd, parsed.themes);\n\n\t// Populate the module-level CLI agent store before any session is created.\n\tsetAgentCliPaths(resolvedAgentPaths ?? []);\n\n\t// Synthetic factory: feed CLI --mode-path values into the extension runtime\n\t// so hoo-core (and any other extension that reads hoo.getModeSearchPaths)\n\t// sees them alongside extension-registered dirs.\n\tconst cliModePaths = parsed.modePaths ?? [];\n\tconst cliResourcePathFactories: ExtensionFactory[] =\n\t\tcliModePaths.length === 0\n\t\t\t? []\n\t\t\t: [\n\t\t\t\t\tObject.assign(\n\t\t\t\t\t\t(hoo: ExtensionAPI) => {\n\t\t\t\t\t\t\tfor (const p of cliModePaths) hoo.addModeSearchPath(p);\n\t\t\t\t\t\t},\n\t\t\t\t\t\t{ internal: true },\n\t\t\t\t\t),\n\t\t\t\t];\n\t// `??` (not `[...a, ...b]`) so an explicit list — from bin/hoocode.js or a\n\t// downstream embedder — fully replaces the default and hoo-core is never\n\t// registered twice.\n\tconst allExtensionFactories: ExtensionFactory[] = [\n\t\t...cliResourcePathFactories,\n\t\t...(options?.extensionFactories ?? DEFAULT_EXTENSION_FACTORIES),\n\t];\n\tconst authStorage = AuthStorage.create();\n\t// A spawned subagent (run with a task id) is a single-shot, non-interactive\n\t// process: it renders no TUI and its prompt is a plain task, never a slash\n\t// command. Themes, slash commands, and prompt templates are dead weight in that\n\t// path, so skip loading them to trim the child's cold-boot cost. Skills, context\n\t// files, and extensions (which carry the core tools) are kept — they affect the\n\t// subagent's actual work.\n\tconst isSubagentBoot = parsed.taskId !== undefined;\n\tconst createRuntime: CreateAgentSessionRuntimeFactory = async ({\n\t\tcwd,\n\t\tagentDir,\n\t\tsessionManager,\n\t\tsessionStartEvent,\n\t}) => {\n\t\t// Light preset: resolve before services so it can shape resource loading\n\t\t// (no skills/context files, terse system prompt). The env flag tells code\n\t\t// that cannot see flags or settings — the hoo-core modes extension — to\n\t\t// skip its system-prompt appendix.\n\t\tconst earlySettingsManager = SettingsManager.create(cwd, agentDir);\n\t\tconst lightMode = parsed.light ?? earlySettingsManager.getLight();\n\t\tif (lightMode) {\n\t\t\tprocess.env[LIGHT_MODE_ENV] = \"1\";\n\t\t} else {\n\t\t\tdelete process.env[LIGHT_MODE_ENV];\n\t\t}\n\t\t// Skills hoocode ships itself. Contributed as explicit paths rather than a\n\t\t// default directory so `--no-skills` and light mode suppress them the same\n\t\t// way they suppress everything else, and so a gated-off skill is never\n\t\t// materialized at all.\n\t\tconst builtinSkills =\n\t\t\tparsed.noSkills || lightMode\n\t\t\t\t? []\n\t\t\t\t: builtinSkillPaths({ enablePluginTools: earlySettingsManager.getEnablePluginTools() }, agentDir);\n\n\t\tconst services = await createAgentSessionServices({\n\t\t\tcwd,\n\t\t\tagentDir,\n\t\t\tauthStorage,\n\t\t\tsettingsManager: earlySettingsManager,\n\t\t\textensionFlagValues: parsed.unknownFlags,\n\t\t\tresourceLoaderOptions: {\n\t\t\t\tadditionalExtensionPaths: resolvedExtensionPaths,\n\t\t\t\t// Built-ins last. Skill paths are first-wins by name, so anything the\n\t\t\t\t// user pointed at - `--skills`, a settings path, `~/.agents/skills`,\n\t\t\t\t// `.hoocode/skills` - beats a skill hoocode ships under the same name,\n\t\t\t\t// and the collision is still reported as a diagnostic. Left untouched\n\t\t\t\t// when there are no built-ins, so that path is byte for byte what it was.\n\t\t\t\tadditionalSkillPaths:\n\t\t\t\t\tbuiltinSkills.length > 0 ? [...(resolvedSkillPaths ?? []), ...builtinSkills] : resolvedSkillPaths,\n\t\t\t\tadditionalPromptTemplatePaths: resolvedPromptTemplatePaths,\n\t\t\t\tadditionalSlashCommandPaths: resolvedSlashCommandPaths,\n\t\t\t\tadditionalThemePaths: resolvedThemePaths,\n\t\t\t\tnoExtensions: parsed.noExtensions,\n\t\t\t\tnoSkills: parsed.noSkills || lightMode,\n\t\t\t\tnoPromptTemplates: parsed.noPromptTemplates || isSubagentBoot,\n\t\t\t\tnoSlashCommands: parsed.noSlashCommands || isSubagentBoot,\n\t\t\t\tnoThemes: parsed.noThemes || isSubagentBoot,\n\t\t\t\tnoContextFiles: parsed.noContextFiles || lightMode,\n\t\t\t\tsystemPrompt: parsed.systemPrompt ?? (lightMode ? LIGHT_SYSTEM_PROMPT : undefined),\n\t\t\t\textensionFactories: allExtensionFactories,\n\t\t\t},\n\t\t});\n\t\tconst { settingsManager, modelRegistry, resourceLoader } = services;\n\t\tconst diagnostics: AgentSessionRuntimeDiagnostic[] = [\n\t\t\t...services.diagnostics,\n\t\t\t...collectSettingsDiagnostics(settingsManager, \"runtime creation\"),\n\t\t\t// Warnings here describe an extension that loaded with something held back\n\t\t\t// (workspace trust withholding a plugin's hooks and MCP servers). They are\n\t\t\t// reported and stepped over; only real load failures abort startup below.\n\t\t\t...resourceLoader\n\t\t\t\t.getExtensions()\n\t\t\t\t.errors.map(({ path, error, severity }) =>\n\t\t\t\t\tseverity === \"warning\"\n\t\t\t\t\t\t? { type: \"warning\" as const, message: `${error} (${path})` }\n\t\t\t\t\t\t: { type: \"error\" as const, message: `Failed to load extension \"${path}\": ${error}` },\n\t\t\t\t),\n\t\t];\n\n\t\t// When subagent tooling is enabled, append the main session subagent instructions.\n\t\tif (!lightMode && (parsed.subagent ?? settingsManager.getEnableSubagent())) {\n\t\t\tresourceLoader.addAppendSystemPrompt(buildTaskMainPrompt());\n\t\t}\n\n\t\tconst modelPatterns = parsed.models ?? settingsManager.getEnabledModels();\n\t\tconst scopedModels =\n\t\t\tmodelPatterns && modelPatterns.length > 0 ? await resolveModelScope(modelPatterns, modelRegistry) : [];\n\t\tconst {\n\t\t\toptions: sessionOptions,\n\t\t\tcliThinkingFromModel,\n\t\t\tdiagnostics: sessionOptionDiagnostics,\n\t\t} = buildSessionOptions(\n\t\t\tparsed,\n\t\t\tscopedModels,\n\t\t\tsessionManager.buildSessionContext().messages.length > 0,\n\t\t\tmodelRegistry,\n\t\t\tsettingsManager,\n\t\t\tlightMode,\n\t\t);\n\t\tdiagnostics.push(...sessionOptionDiagnostics);\n\t\t// Swap in the short-schema read/write/edit/bash tool variants. Skipped\n\t\t// when the user's own --tools allowlist overrode the light tool set.\n\t\tif (lightMode && !parsed.tools) {\n\t\t\tsessionOptions.baseToolsOverride = createLightTools(cwd);\n\t\t}\n\n\t\tif (parsed.apiKey) {\n\t\t\tif (!sessionOptions.model) {\n\t\t\t\tdiagnostics.push({\n\t\t\t\t\ttype: \"error\",\n\t\t\t\t\tmessage: \"--api-key requires a model to be specified via --model, --provider/--model, or --models\",\n\t\t\t\t});\n\t\t\t} else {\n\t\t\t\tauthStorage.setRuntimeApiKey(sessionOptions.model.provider, parsed.apiKey);\n\t\t\t}\n\t\t}\n\n\t\tconst created = await createAgentSessionFromServices({\n\t\t\tservices,\n\t\t\tsessionManager,\n\t\t\tsessionStartEvent,\n\t\t\tmodel: sessionOptions.model,\n\t\t\tthinkingLevel: sessionOptions.thinkingLevel,\n\t\t\tscopedModels: sessionOptions.scopedModels,\n\t\t\ttools: sessionOptions.tools,\n\t\t\tnoTools: sessionOptions.noTools,\n\t\t\tdisallowedTools: sessionOptions.disallowedTools,\n\t\t\tcustomTools: sessionOptions.customTools,\n\t\t\tenableWebTools: sessionOptions.enableWebTools,\n\t\t\tenableSemanticIndex: sessionOptions.enableSemanticIndex,\n\t\t\tbaseToolsOverride: sessionOptions.baseToolsOverride,\n\t\t});\n\t\tconst cliThinkingOverride = parsed.thinking !== undefined || cliThinkingFromModel;\n\t\tif (created.session.model && cliThinkingOverride) {\n\t\t\tcreated.session.setThinkingLevel(created.session.thinkingLevel);\n\t\t}\n\n\t\treturn {\n\t\t\t...created,\n\t\t\tservices,\n\t\t\tdiagnostics,\n\t\t};\n\t};\n\ttime(\"createRuntime\");\n\tconst runtime = await createAgentSessionRuntime(createRuntime, {\n\t\tcwd: sessionManager.getCwd(),\n\t\tagentDir,\n\t\tsessionManager,\n\t});\n\tconst { services, session, modelFallbackMessage } = runtime;\n\tconst { settingsManager, modelRegistry, resourceLoader } = services;\n\n\tif (parsed.help) {\n\t\tconst extensionFlags = resourceLoader\n\t\t\t.getExtensions()\n\t\t\t.extensions.flatMap((extension) => Array.from(extension.flags.values()));\n\t\tprintHelp(extensionFlags);\n\t\tprocess.exit(0);\n\t}\n\n\tif (parsed.listModels !== undefined) {\n\t\tconst searchPattern = typeof parsed.listModels === \"string\" ? parsed.listModels : undefined;\n\t\tawait listModels(modelRegistry, searchPattern);\n\t\tprocess.exit(0);\n\t}\n\n\tif (parsed.printTokenSurface) {\n\t\tconst surface = measurePromptSurface(session);\n\t\tconsole.log(\"Fixed per-turn surface (chars/4 token estimate):\");\n\t\tconsole.log(`  system prompt: ${surface.systemPromptTokens} tokens`);\n\t\tfor (const tool of surface.tools) {\n\t\t\tconsole.log(`  tool ${tool.name}: ${tool.tokens} tokens`);\n\t\t}\n\t\tconsole.log(`  tool schemas total: ${surface.toolSchemaTokens} tokens`);\n\t\tconsole.log(`  total: ${surface.totalTokens} tokens`);\n\n\t\t// The surface above says what the schemas cost; this says whether\n\t\t// withholding them is worth what a resolve costs (§6.3, §8.6 item 6).\n\t\tconst deferrable = surface.tools.filter((t) => t.name.startsWith(\"mcp_\"));\n\t\tconst deferredTokens = deferrable.reduce((sum, t) => sum + t.tokens, 0);\n\t\tconsole.log(`\\nDeferrable (MCP) tools: ${deferrable.length}, ${deferredTokens} tokens`);\n\t\tif (session.model) {\n\t\t\tconsole.log(\n\t\t\t\tformatDeferral(\n\t\t\t\t\tanalyzeDeferral({\n\t\t\t\t\t\tdeferredTokens,\n\t\t\t\t\t\tprefixTokens: surface.totalTokens,\n\t\t\t\t\t\tprices: session.model.cost,\n\t\t\t\t\t}),\n\t\t\t\t\t{ prefixIsFloor: true },\n\t\t\t\t),\n\t\t\t);\n\t\t} else {\n\t\t\tconsole.log(\"  deferral: no model resolved, so the trade-off cannot be costed\");\n\t\t}\n\t\tprocess.exit(0);\n\t}\n\n\t// Read piped stdin content (if any) - skip for RPC mode which uses stdin for JSON-RPC\n\tlet stdinContent: string | undefined;\n\tif (appMode !== \"rpc\") {\n\t\tstdinContent = await readPipedStdin();\n\t\tif (stdinContent !== undefined && appMode === \"interactive\") {\n\t\t\tappMode = \"print\";\n\t\t}\n\t}\n\ttime(\"readPipedStdin\");\n\n\tconst { initialMessage, initialImages } = await prepareInitialMessage(\n\t\tparsed,\n\t\tsettingsManager.getImageAutoResize(),\n\t\tstdinContent,\n\t);\n\ttime(\"prepareInitialMessage\");\n\tinitTheme(settingsManager.getTheme(), appMode === \"interactive\");\n\ttime(\"initTheme\");\n\n\t// Show deprecation warnings in interactive mode\n\tif (appMode === \"interactive\" && deprecationWarnings.length > 0) {\n\t\tawait showDeprecationWarnings(deprecationWarnings);\n\t}\n\n\tconst scopedModels = [...session.scopedModels];\n\ttime(\"resolveModelScope\");\n\treportDiagnostics(runtime.diagnostics);\n\tif (runtime.diagnostics.some((diagnostic) => diagnostic.type === \"error\")) {\n\t\tprocess.exit(1);\n\t}\n\ttime(\"createAgentSession\");\n\n\tif (appMode !== \"interactive\" && !session.model) {\n\t\tconsole.error(chalk.red(formatNoModelsAvailableMessage()));\n\t\tprocess.exit(1);\n\t}\n\n\tconst startupBenchmark = isTruthyEnvFlag(process.env.HOOCODE_STARTUP_BENCHMARK);\n\tif (startupBenchmark && appMode !== \"interactive\") {\n\t\tconsole.error(chalk.red(\"Error: HOOCODE_STARTUP_BENCHMARK only supports interactive mode\"));\n\t\tprocess.exit(1);\n\t}\n\n\t// Start the optional local embedding index service in the background. The\n\t// `SearchCodebase` tool is always available and runs lexical-only by default; this\n\t// semantic-index layer is completely off unless --enable-semantic-index (or the\n\t// setting) is true. When on, the tool fuses semantic hits once the index\n\t// reports available.\n\tlet embsearchService: EmbsearchService | undefined;\n\tif (parsed.enableSemanticIndex ?? settingsManager.getEnableSemanticIndex()) {\n\t\tconst isInteractive = appMode === \"interactive\";\n\t\tembsearchService = new EmbsearchService({\n\t\t\tcwd: sessionManager.getCwd(),\n\t\t\tbinaryPath: settingsManager.getEmbsearchBinaryPath(),\n\t\t\tthresholdBytes: settingsManager.getEmbsearchThresholdBytes(),\n\t\t\t// Interactive routes to the footer's startupProgress store; non-interactive\n\t\t\t// logs to stderr. See reportEmbsearchProgress for the per-phase mapping.\n\t\t\tonProgress: (state) => reportEmbsearchProgress(state, { interactive: isInteractive }),\n\t\t});\n\t\tregisterEmbsearchService(sessionManager.getCwd(), embsearchService);\n\t\tembsearchService.start().catch(() => {\n\t\t\t// Errors are logged by the onProgress unavailable state; swallow to avoid\n\t\t\t// crashing the session because of an optional background index.\n\t\t});\n\t}\n\n\tif (appMode === \"rpc\") {\n\t\tprintTimings();\n\t\ttry {\n\t\t\tawait runRpcMode(runtime);\n\t\t} finally {\n\t\t\tawait embsearchService?.dispose();\n\t\t\tunregisterEmbsearchService(sessionManager.getCwd());\n\t\t}\n\t} else if (appMode === \"interactive\") {\n\t\tif (scopedModels.length > 0 && (parsed.verbose || !settingsManager.getQuietStartup())) {\n\t\t\tconst modelList = scopedModels\n\t\t\t\t.map((sm) => {\n\t\t\t\t\tconst thinkingStr = sm.thinkingLevel ? `:${sm.thinkingLevel}` : \"\";\n\t\t\t\t\treturn `${sm.model.id}${thinkingStr}`;\n\t\t\t\t})\n\t\t\t\t.join(\", \");\n\t\t\tconsole.log(chalk.dim(`Model scope: ${modelList} ${chalk.gray(\"(Ctrl+P to cycle)\")}`));\n\t\t}\n\n\t\tconst interactiveMode = new InteractiveMode(runtime, {\n\t\t\tmigratedProviders,\n\t\t\tmodelFallbackMessage,\n\t\t\tinitialMessage,\n\t\t\tinitialImages,\n\t\t\tinitialMessages: parsed.messages,\n\t\t\tverbose: parsed.verbose,\n\t\t});\n\n\t\t// Optional hooteams bridge. `--team auto` discovers a config, spawns a\n\t\t// local hooteams child on a free port, and proceeds as if its URL had\n\t\t// been passed; the child is reaped on exit (clean or signal) via a\n\t\t// process \"exit\" hook plus the explicit stop below.\n\t\tlet autoTeam: { url: string; stop(): Promise<void> } | undefined;\n\t\tlet teamUrl = parsed.team;\n\t\tif (teamUrl === \"auto\") {\n\t\t\tconst { startAutoTeam } = await import(\"./core/team-auto.js\");\n\t\t\ttry {\n\t\t\t\tautoTeam = await startAutoTeam(process.cwd(), { log: (message) => console.log(chalk.dim(message)) });\n\t\t\t\tteamUrl = autoTeam.url;\n\t\t\t} catch (error) {\n\t\t\t\tconsole.error(chalk.red(error instanceof Error ? error.message : String(error)));\n\t\t\t\tprocess.exit(1);\n\t\t\t}\n\t\t}\n\n\t\t// Team mirror + client. Fire-and-forget: connect failures and drops warn\n\t\t// in the background and never block the main agent. Warnings go through\n\t\t// the chat, not console.error: a raw stderr write while the TUI owns the\n\t\t// screen scribbles over the render and can leave the editor looking\n\t\t// frozen. The same connection powers team focus / nudge / attach.\n\t\tlet teamView: { stop(): void } | undefined;\n\t\tif (teamUrl) {\n\t\t\tconst { connectTeamView } = await import(\"./core/team-view.js\");\n\t\t\tconst teamClient = connectTeamView(teamUrl, {\n\t\t\t\twarn: (message) => interactiveMode.showWarning(message),\n\t\t\t});\n\t\t\tteamView = teamClient;\n\t\t\tinteractiveMode.attachTeamClient(teamClient);\n\t\t}\n\t\tif (startupBenchmark) {\n\t\t\tawait interactiveMode.init();\n\t\t\ttime(\"interactiveMode.init\");\n\t\t\tprintTimings();\n\t\t\tteamView?.stop();\n\t\t\tawait autoTeam?.stop();\n\t\t\tinteractiveMode.stop();\n\t\t\tstopThemeWatcher();\n\t\t\tif (process.stdout.writableLength > 0) {\n\t\t\t\tawait new Promise<void>((resolve) => process.stdout.once(\"drain\", resolve));\n\t\t\t}\n\t\t\tif (process.stderr.writableLength > 0) {\n\t\t\t\tawait new Promise<void>((resolve) => process.stderr.once(\"drain\", resolve));\n\t\t\t}\n\t\t\treturn;\n\t\t}\n\n\t\tprintTimings();\n\t\ttry {\n\t\t\tawait interactiveMode.run();\n\t\t} finally {\n\t\t\tteamView?.stop();\n\t\t\tawait autoTeam?.stop();\n\t\t\tawait embsearchService?.dispose();\n\t\t\tunregisterEmbsearchService(sessionManager.getCwd());\n\t\t}\n\t} else {\n\t\tprintTimings();\n\t\tconst exitCode = await runPrintMode(runtime, {\n\t\t\tmode: toPrintOutputMode(appMode),\n\t\t\tmessages: parsed.messages,\n\t\t\tinitialMessage,\n\t\t\tinitialImages,\n\t\t\ttaskId: parsed.taskId,\n\t\t\tmaxTurns: parsed.maxTurns,\n\t\t});\n\t\tawait embsearchService?.dispose();\n\t\tunregisterEmbsearchService(sessionManager.getCwd());\n\t\tstopThemeWatcher();\n\t\trestoreStdout();\n\t\tif (exitCode !== 0) {\n\t\t\tprocess.exitCode = exitCode;\n\t\t}\n\t\t// Spawned subagents (run with a task id) must exit promptly once their work is\n\t\t// done and result.json is written. The child's runtime can leave handles open\n\t\t// (e.g. MCP client connections) that keep the event loop alive, so a natural\n\t\t// exit may never happen. When that occurs the parent lifeguard SIGKILLs the idle\n\t\t// child at the 60s heartbeat threshold and misreports an already-completed task\n\t\t// as \"stalled\". Force a clean exit after draining output to avoid that false stall.\n\t\tconst ranAsSubagent = typeof parsed.taskId === \"string\" && parsed.taskId.length > 0;\n\t\tif (ranAsSubagent) {\n\t\t\tif (process.stdout.writableLength > 0) {\n\t\t\t\tawait new Promise<void>((resolve) => process.stdout.once(\"drain\", resolve));\n\t\t\t}\n\t\t\tif (process.stderr.writableLength > 0) {\n\t\t\t\tawait new Promise<void>((resolve) => process.stderr.once(\"drain\", resolve));\n\t\t\t}\n\t\t\tprocess.exit(exitCode);\n\t\t}\n\t\treturn;\n\t}\n}\n"]}