netxops/lib/index.js
oliver f7801db296 Mount /netxops RPC on webServer for DSH 0.1.5 (0.1.39).
connection.rpc.handle no longer registers custom channels when webServer is not on the connection ctx, which left the KB settings badge stuck on unconfigured.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-09-16 14:39:55 +08:00

5197 lines
174 KiB
JavaScript
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

import { createRequire } from "node:module";
var __require = /* @__PURE__ */ createRequire(import.meta.url);
// src/index.ts
import { cpSync, existsSync as existsSync5, mkdirSync as mkdirSync2, rmSync as rmSync2, writeFileSync as writeFileSync2 } from "node:fs";
import { homedir as homedir3 } from "node:os";
import { dirname as dirname4, join as join7 } from "node:path";
import { fileURLToPath as fileURLToPath2 } from "node:url";
import z from "@deepseek-ai/schemastery";
import { credentialRef } from "@deepseek-ai/dsh-credentials";
import * as DshSettings from "@deepseek-ai/dsh-settings";
// src/netx/alarm-push-status.ts
var STORE_KEY = Symbol.for("dsh-netxops.alarm-push-status");
function emptyStatus(partial = {}) {
return {
phase: "disabled",
enabled: false,
wsUrl: "",
detail: "",
updatedAt: Date.now(),
lastConnectedAt: null,
lastError: null,
...partial
};
}
function store() {
const root = globalThis;
let current = root[STORE_KEY];
if (current === undefined) {
current = { status: emptyStatus(), listeners: new Set };
root[STORE_KEY] = current;
}
return current;
}
function getAlarmPushStatus() {
return { ...store().status };
}
function publishAlarmPushStatus(next) {
const state = store();
state.status = {
...state.status,
...next,
updatedAt: Date.now()
};
for (const listener of state.listeners)
listener();
}
function resetAlarmPushStatus() {
publishAlarmPushStatus(emptyStatus({ phase: "disabled", enabled: false }));
}
// src/netx/i18n.ts
var ZH = {
"alarm.sessionTitle": "Netx 关键告警",
"alarm.defaultLabel": "关键告警",
"alarm.action.inserted": "告警产生",
"alarm.action.updated": "告警更新",
"alarm.action.deleted": "告警清除",
"alarm.action.fallback": "告警",
"alarm.field.device": "设备",
"alarm.field.object": "对象",
"alarm.field.severity": "级别",
"alarm.field.cause": "原因",
"alarm.field.time": "时间",
"alarm.analyzeHint": "请分析这条关键告警并给出下一步运维建议。"
};
var EN = {
"alarm.sessionTitle": "Netx key alarm",
"alarm.defaultLabel": "Key alarm",
"alarm.action.inserted": "Alarm Raised",
"alarm.action.updated": "Alarm Updated",
"alarm.action.deleted": "Alarm Cleared",
"alarm.action.fallback": "Alarm",
"alarm.field.device": "Device",
"alarm.field.object": "Object",
"alarm.field.severity": "Severity",
"alarm.field.cause": "Cause",
"alarm.field.time": "Time",
"alarm.analyzeHint": "Please analyze this key alarm and suggest next ops steps."
};
var TABLES = {
zh: ZH,
en: EN
};
function normalizeNetxLocale(lang) {
const normalized = String(lang ?? "").trim().toLowerCase();
if (normalized === "english" || /^en(?:[-_].*)?$/u.test(normalized))
return "en";
return "zh";
}
function tHost(key, lang = "zh", vars) {
const locale = normalizeNetxLocale(lang);
const template = TABLES[locale][key] ?? TABLES.zh[key] ?? key;
if (vars === undefined)
return template;
return template.replace(/\{(\w+)\}/g, (match, name) => Object.prototype.hasOwnProperty.call(vars, name) ? String(vars[name]) : match);
}
function alarmActionLabel(action, lang) {
const normalized = String(action ?? "").trim().toLowerCase();
if (normalized === "inserted")
return tHost("alarm.action.inserted", lang);
if (normalized === "updated")
return tHost("alarm.action.updated", lang);
if (normalized === "deleted")
return tHost("alarm.action.deleted", lang);
return normalized || tHost("alarm.action.fallback", lang);
}
// src/netx/alarm-push.ts
function alarmSubscribeUrl(apiUrl) {
const trimmed = apiUrl.trim().replace(/\/$/, "");
if (!trimmed)
return "";
let url;
try {
url = new URL(trimmed);
} catch {
return "";
}
url.protocol = url.protocol === "https:" ? "wss:" : "ws:";
url.pathname = "/v1/integrations/dsh-alarm/ws";
url.search = "";
url.hash = "";
return url.toString();
}
function formatAlarmPrompt(payload, lang = "zh") {
const action = String(payload.action ?? "").trim().toLowerCase();
const ne = payload.ne && typeof payload.ne === "object" ? payload.ne : {};
const host = String(ne.host_name ?? "").trim();
const ip = String(ne.ip_address ?? "").trim();
const neName = String(ne.ne_name ?? ne.user_label ?? "").trim();
let device = host || neName || String(payload.ne_id ?? "").trim() || "-";
if (ip)
device = device === "-" ? ip : `${device} (${ip})`;
const label = String(payload.rule_label ?? payload.native_probable_cause ?? tHost("alarm.defaultLabel", lang)).trim();
return [
`[NMS ${alarmActionLabel(action, lang)}] ${label}`,
`${tHost("alarm.field.device", lang)}: ${device}`,
`${tHost("alarm.field.object", lang)}: ${String(payload.object_name ?? "-").trim()}`,
`${tHost("alarm.field.severity", lang)}: ${String(payload.perceived_severity ?? "-").trim()}`,
`${tHost("alarm.field.cause", lang)}: ${String(payload.native_probable_cause ?? "-").trim()}`,
`${tHost("alarm.field.time", lang)}: ${String(payload.time_created ?? "-").trim()}`,
`notificationId: ${String(payload.notification_id ?? "-").trim()}`,
`alarm_key: ${String(payload.alarm_key ?? "-").trim()}`,
"",
tHost("alarm.analyzeHint", lang)
].join(`
`);
}
function setPhase(phase, wsUrl, extra = {}) {
publishAlarmPushStatus({
phase,
enabled: true,
wsUrl,
detail: extra.detail ?? "",
lastError: extra.lastError === undefined ? null : extra.lastError,
...extra.lastConnectedAt !== undefined ? { lastConnectedAt: extra.lastConnectedAt } : {}
});
}
function startAlarmPushClient(options) {
const log = options.logger ?? console;
const wsUrl = alarmSubscribeUrl(options.apiUrl);
const token = options.token.trim();
if (!wsUrl || !token) {
log.warn?.("netxops alarm-push: missing apiUrl or token — not connecting");
setPhase("error", wsUrl, {
detail: "missing_url_or_token",
lastError: "missing apiUrl or token"
});
return () => {};
}
const WS = options.WebSocketImpl ?? globalThis.WebSocket;
if (typeof WS !== "function") {
log.error?.("netxops alarm-push: WebSocket is unavailable in this runtime");
setPhase("error", wsUrl, {
detail: "websocket_unavailable",
lastError: "WebSocket unavailable"
});
return () => {};
}
let closed = false;
let haltReconnect = false;
let subscribed = false;
let socket = null;
let reconnectTimer;
let attempt = 0;
const baseDelay = Math.max(500, options.reconnectMs ?? 2000);
const clearReconnect = () => {
if (reconnectTimer !== undefined) {
clearTimeout(reconnectTimer);
reconnectTimer = undefined;
}
};
const scheduleReconnect = (reason) => {
if (closed || haltReconnect)
return;
clearReconnect();
const delay = Math.min(60000, baseDelay * 2 ** Math.min(attempt, 5));
attempt += 1;
setPhase("reconnecting", wsUrl, {
detail: `retry_in_${delay}ms`,
lastError: reason
});
reconnectTimer = setTimeout(() => {
connect();
}, delay);
};
const connect = () => {
if (closed || haltReconnect)
return;
clearReconnect();
subscribed = false;
setPhase(attempt > 0 ? "reconnecting" : "connecting", wsUrl, { detail: "dialing" });
try {
socket = new WS(wsUrl);
} catch (error) {
const message = error instanceof Error ? error.message : String(error);
log.warn?.("netxops alarm-push: connect failed:", error);
scheduleReconnect(message);
return;
}
socket.addEventListener("open", () => {
setPhase("authenticating", wsUrl, { detail: "auth" });
let clientLabel = "netxops";
try {
const env = typeof process !== "undefined" ? process.env : undefined;
const hostname = env?.HOSTNAME || env?.COMPUTERNAME;
if (typeof hostname === "string" && hostname.trim()) {
clientLabel = `netxops@${hostname.trim()}`;
}
} catch {}
socket?.send(JSON.stringify({ type: "auth", token, client: clientLabel }));
});
socket.addEventListener("message", (event) => {
let msg;
try {
msg = JSON.parse(String(event.data));
} catch {
return;
}
const type = String(msg.type ?? "").toLowerCase();
if (type === "auth-ok") {
attempt = 0;
subscribed = true;
const now = Date.now();
setPhase("connected", wsUrl, {
detail: String(msg.user ?? "ok"),
lastError: null,
lastConnectedAt: now
});
log.info?.("netxops alarm-push: subscribed to %s", wsUrl);
return;
}
if (type === "auth-fail") {
const err = String(msg.error ?? "auth_failed");
log.error?.("netxops alarm-push: auth failed (%s) — not reconnecting until settings/token change", err);
subscribed = false;
haltReconnect = true;
clearReconnect();
setPhase("auth_failed", wsUrl, { detail: err, lastError: err });
try {
socket?.close();
} catch {}
return;
}
if (type === "pong")
return;
if (type === "event" && String(msg.event ?? "") === "netx.alarm") {
if (!subscribed) {
log.warn?.("netxops alarm-push: ignoring alarm before auth-ok");
return;
}
const payload = msg.payload && typeof msg.payload === "object" ? msg.payload : {};
Promise.resolve(options.onAlarm(payload)).catch((error) => {
log.warn?.("netxops alarm-push: handler failed:", error);
});
}
});
socket.addEventListener("close", () => {
socket = null;
subscribed = false;
if (!closed && !haltReconnect)
scheduleReconnect("socket_closed");
});
socket.addEventListener("error", () => {});
};
const pingTimer = setInterval(() => {
if (socket && socket.readyState === WS.OPEN) {
try {
socket.send(JSON.stringify({ type: "ping", ts: new Date().toISOString() }));
} catch {}
}
}, 25000);
connect();
return () => {
closed = true;
clearReconnect();
clearInterval(pingTimer);
try {
socket?.close();
} catch {}
socket = null;
};
}
// src/netx/im-targets.ts
function imTargetKey(botId, targetId) {
return `${botId}::${targetId}`;
}
function normalizeImTarget(input) {
if (input === null || typeof input !== "object" || Array.isArray(input))
return null;
const row = input;
const botId = typeof row.botId === "string" ? row.botId.trim() : "";
const targetId = typeof row.targetId === "string" ? row.targetId.trim() : "";
if (!botId || !targetId)
return null;
return { botId, targetId };
}
function parseImTargetsJson(text) {
const trimmed = text.trim();
if (!trimmed)
return [];
let parsed;
try {
parsed = JSON.parse(trimmed);
} catch {
return [];
}
if (!Array.isArray(parsed))
return [];
const out = [];
const seen = new Set;
for (const entry of parsed) {
const target = normalizeImTarget(entry);
if (!target)
continue;
const key = imTargetKey(target.botId, target.targetId);
if (seen.has(key))
continue;
seen.add(key);
out.push(target);
}
return out;
}
function resolveImTargets(settings) {
const fromList = parseImTargetsJson(typeof settings.imTargets === "string" ? settings.imTargets : "");
if (fromList.length > 0)
return fromList;
const legacy = normalizeImTarget({
botId: settings.imBotId,
targetId: settings.imTargetId
});
return legacy ? [legacy] : [];
}
// src/netx/alarm-im.ts
function resolveTargets(options) {
if (options.targets && options.targets.length > 0) {
const out = [];
const seen = new Set;
for (const entry of options.targets) {
const target = normalizeImTarget(entry);
if (!target)
continue;
const key = `${target.botId}::${target.targetId}`;
if (seen.has(key))
continue;
seen.add(key);
out.push(target);
}
return out;
}
return resolveImTargets({
imTargets: options.imTargets,
imBotId: options.botId,
imTargetId: options.targetId
});
}
async function deliverAlarmToIm(ctx, payload, options) {
if (!options.enabled)
return;
const targets = resolveTargets(options);
if (targets.length === 0) {
ctx.logger.warn("netxops alarm-im: enabled but no delivery targets — skip IM delivery (pick one or more targets under Netx Ops → IM)");
return;
}
const im = (typeof ctx.get === "function" ? ctx.get("dshIm") : undefined) ?? ctx.dshIm;
if (!im || typeof im.send !== "function") {
ctx.logger.warn("netxops alarm-im: ctx.dshIm unavailable — install/enable dsh-im-ops to deliver alarms to WhatsApp/IM");
return;
}
const text = formatAlarmPrompt(payload, options.lang);
const results = await Promise.allSettled(targets.map((target) => im.send(target.botId, target.targetId, text)));
results.forEach((result, index) => {
const target = targets[index];
if (result.status === "fulfilled") {
ctx.logger.info("netxops alarm-im: sent to botId=%s targetId=%s", target.botId, target.targetId);
return;
}
ctx.logger.warn("netxops alarm-im: send failed botId=%s targetId=%s: %s", target.botId, target.targetId, result.reason);
});
}
// src/netx/alarm-session.ts
import { homedir } from "node:os";
import { join } from "node:path";
var PRESET_ID = "netxops";
var PERMISSION_PRESET = "default";
var sticky = null;
var deliveryChain = Promise.resolve();
function resolveWorkspacePath() {
const fromEnv = process.env.DSH_HOME?.trim();
const home = fromEnv && fromEnv.length > 0 ? fromEnv : join(homedir(), ".dsh");
return join(home, "workspaces", "netxops-alarms");
}
async function disposeSticky(handle) {
if (!handle)
return;
try {
await handle.dispose?.();
} catch {}
}
async function deliverAlarmToSession(ctx, payload, lang = "zh") {
const run = async () => {
const prompt = formatAlarmPrompt(payload, lang);
const agents = ctx.agents;
if (!agents || typeof agents.create !== "function") {
ctx.logger.warn("netxops alarm-push: ctx.agents unavailable — enable a profile that mounts agents to receive alarms in a DSH session");
return;
}
if (sticky?.agent && typeof sticky.agent.followup === "function") {
try {
await followup(ctx, sticky.agent, prompt);
return;
} catch (error) {
ctx.logger.warn("netxops alarm-push: sticky followup failed, recreating session: %s", error);
const previous = sticky;
sticky = null;
await disposeSticky(previous);
}
}
await createStickySession(ctx, prompt, lang);
};
const next = deliveryChain.then(run, run);
deliveryChain = next.then(() => {
return;
}, () => {
return;
});
await next;
}
async function followup(ctx, agent, prompt) {
let createUserMessage;
try {
const mod = await import("@deepseek-ai/dsh-llm");
createUserMessage = mod.createUserMessage;
if (typeof createUserMessage !== "function")
throw new Error("createUserMessage missing");
const summary = typeof mod.boundContextSummary === "function" ? mod.boundContextSummary("netx key alarm") : "netx key alarm";
await Promise.resolve(agent.followup(createUserMessage({
content: [{ type: "text", text: prompt }],
source: {
kind: "webhook",
provider: "netx",
source: "dsh-alarm-hub",
form: "notice",
summary
}
})));
} catch (error) {
const anyAgent = agent;
if (typeof anyAgent.prompt === "function") {
await anyAgent.prompt(prompt);
return;
}
ctx.logger.warn("netxops alarm-push: cannot build user message (%s)", error);
throw error;
}
}
async function createStickySession(ctx, prompt, lang = "zh") {
const c = ctx;
const agents = c.agents;
const agentPresets = c.agentPresets;
const workspaceRegistry = c.workspaceRegistry;
const permissionPresets = c.permissionPresets;
const sessionTitle = c.sessionTitle;
const agentDefaultModel = c.agentDefaultModel;
if (!agentPresets || typeof agentPresets.resolve !== "function" || !workspaceRegistry || typeof workspaceRegistry.create !== "function") {
ctx.logger.warn("netxops alarm-push: agentPresets/workspaceRegistry unavailable — cannot create a DSH session");
return;
}
if (permissionPresets && typeof permissionPresets.resolve === "function") {
try {
permissionPresets.resolve(PERMISSION_PRESET);
} catch {
ctx.logger.warn("netxops alarm-push: permission preset %s missing", PERMISSION_PRESET);
}
}
const preset = await agentPresets.resolve(PRESET_ID);
if (typeof agentPresets.standingKeyFor === "function") {
await agentPresets.standingKeyFor(preset.id);
}
const selected = typeof agentDefaultModel?.currentSelection === "function" ? agentDefaultModel.currentSelection() : { provider: "deepseek", model: "deepseek-chat" };
const workspacePath = resolveWorkspacePath();
const workspace = await workspaceRegistry.create(workspacePath);
const sessionId = `netxops-alarm-${Date.now().toString(36)}`;
const handle = await agents.create({
sessionId,
meta: { cwd: workspace.path, agentPreset: preset.id },
agentOptions: { provider: selected.provider, model: selected.model },
setup: async (agentCtx) => {
if (typeof agentPresets.mount === "function") {
await agentPresets.mount(agentCtx, preset.id);
}
}
});
try {
if (typeof workspace.attachSession === "function") {
await workspace.attachSession(sessionId);
}
if (permissionPresets && typeof permissionPresets.set === "function") {
permissionPresets.set(handle.agent.session, PERMISSION_PRESET);
}
if (sessionTitle && typeof sessionTitle.rename === "function") {
sessionTitle.rename(handle.agent.session, tHost("alarm.sessionTitle", lang));
}
await followup(ctx, handle.agent, prompt);
sticky = {
sessionId,
agent: handle.agent,
dispose: typeof handle.dispose === "function" ? () => handle.dispose() : undefined
};
ctx.logger.info("netxops alarm-push: opened sticky session %s", sessionId);
} catch (error) {
try {
await handle.dispose?.();
} catch {}
throw error;
}
}
function resetAlarmSession() {
const previous = sticky;
sticky = null;
disposeSticky(previous);
}
// src/netx/alarm-dispatch.ts
async function dispatchAlarmToSinks(ctx, payload, options, sinks = {}) {
const toSession = sinks.toSession ?? deliverAlarmToSession;
const toIm = sinks.toIm ?? deliverAlarmToIm;
const jobs = [];
if (options.deliverDsh) {
jobs.push(toSession(ctx, payload, options.lang));
}
const imOptions = {
enabled: options.deliverIm,
targets: options.imTargets,
lang: options.lang
};
jobs.push(toIm(ctx, payload, imOptions));
const results = await Promise.allSettled(jobs);
for (const result of results) {
if (result.status === "rejected") {
ctx.logger.warn("netxops alarm-push: sink failed: %s", result.reason);
}
}
return results;
}
// src/netx/capability-groups.ts
var DEFAULT_CAPABILITY_GROUPS = Object.freeze({
ops: Object.freeze({ inPreset: true, public: false }),
topology: Object.freeze({ inPreset: false, public: false })
});
var TOOLS_BY_GROUP = Object.freeze({
ops: Object.freeze([
"netx__queryNmsAlarms",
"netx__aggregateNmsAlarms",
"netx__runNmsDiagnostics",
"netx__queryNmsNeInventory",
"netx__getNmsNe",
"netx__queryNmsAlarmsRaw",
"netx__aggregateNmsAlarmsRaw",
"netx__listNmsAlarmFields",
"netx__sqlQueryNms",
"netx__listManagedNe",
"netx__getManagedNe",
"netx__execManagedNe",
"netx__listCliTargets",
"netx__findTopologyPaths"
]),
topology: Object.freeze([
"netx__getTopologyTree",
"netx__getTopologyView",
"netx__createTopologyFolder",
"netx__addTopologyViewNodes",
"netx__removeTopologyViewNodes",
"netx__copyTopologyViewNodes",
"netx__updateTopologyViewPositions",
"netx__projectTopologyNeighbors",
"netx__queryTopologyFabricNodes",
"netx__classifyTopologyFabricNodes",
"netx__queryTopologyNeighborhood",
"netx__queryTopologyEdges",
"netx__layoutTopologyView",
"netx__suggestSinkHubs",
"netx__analyzeTopologyViewLayout",
"netx__sinkTopologyDualUnits"
])
});
var SKILL_DIR_BY_GROUP = Object.freeze({
ops: "ops",
topology: "topology"
});
var CAPABILITY_GROUP_IDS = Object.freeze([
"ops",
"topology"
]);
function capabilityGroupsFromSettings(fields) {
const src = fields ?? {};
let opsInPreset = true;
if (src.groupOpsInPreset !== undefined) {
opsInPreset = src.groupOpsInPreset !== false;
} else {
const legacy = [
src.groupNmsInPreset,
src.groupCommonInPreset,
src.groupManagedNeInPreset
].filter((v) => v !== undefined);
if (legacy.length > 0) {
opsInPreset = legacy.some((v) => v === true);
}
}
return {
ops: {
inPreset: opsInPreset,
public: src.groupOpsPublic === true || src.groupNmsPublic === true || src.groupCommonPublic === true || src.groupManagedNePublic === true
},
topology: {
inPreset: src.groupTopologyInPreset === true || src.groupTopologyLayoutInPreset === true,
public: src.groupTopologyPublic === true || src.groupTopologyLayoutPublic === true
}
};
}
function groupsForPlane(groups, plane, only) {
const policy = groups ?? DEFAULT_CAPABILITY_GROUPS;
const enabled = CAPABILITY_GROUP_IDS.filter((id) => plane === "preset" ? policy[id].inPreset : policy[id].public);
if (!only || only.length === 0)
return enabled;
const allow = new Set(only);
return enabled.filter((id) => allow.has(id));
}
function toolNamesForGroups(groupIds) {
const names = new Set;
for (const id of groupIds) {
for (const tool of TOOLS_BY_GROUP[id])
names.add(tool);
}
return names;
}
// src/netx/group-skills.ts
import { existsSync } from "node:fs";
import { readdir, readFile, stat } from "node:fs/promises";
import { dirname, join as join2 } from "node:path";
import { fileURLToPath } from "node:url";
function opsSkillsRoot() {
const envRoot = process.env.NETX_SKILLS_ROOT?.trim();
if (envRoot && existsSync(envRoot))
return envRoot;
const here = dirname(fileURLToPath(import.meta.url));
const siblingCandidates = [
join2(here, "..", "..", "..", "netx", "skills"),
join2(here, "..", "..", "netx", "skills")
];
for (const candidate of siblingCandidates) {
if (existsSync(candidate))
return candidate;
}
const packaged = [
join2(here, "..", "presets", "netxops", "skills"),
join2(here, "..", "..", "presets", "netxops", "skills")
];
for (const candidate of packaged) {
if (existsSync(candidate))
return candidate;
}
return packaged[0];
}
function parseFrontmatter(raw) {
if (!raw.startsWith("---"))
return;
const end = raw.indexOf(`
---`, 3);
if (end < 0)
return;
const yaml = raw.slice(3, end).replace(/^\r?\n/, "");
const body = raw.slice(end + 4).replace(/^\r?\n/, "");
const data = {};
const lines = yaml.split(/\r?\n/);
for (let i = 0;i < lines.length; i += 1) {
const line = lines[i];
const nameMatch = /^name\s*:\s*(.+)\s*$/.exec(line);
if (nameMatch) {
data.name = stripQuotes(nameMatch[1].trim());
continue;
}
const descMatch = /^description\s*:\s*(.*)$/.exec(line);
if (!descMatch)
continue;
const head = descMatch[1].trim();
if (head === ">" || head === ">-" || head === "|" || head === "|-") {
const parts = [];
while (i + 1 < lines.length && /^[ \t]+/.test(lines[i + 1])) {
i += 1;
parts.push(lines[i].trim());
}
data.description = parts.filter(Boolean).join(" ");
continue;
}
data.description = stripQuotes(head);
}
return { data, body };
}
function stripQuotes(value) {
if (value.startsWith('"') && value.endsWith('"') || value.startsWith("'") && value.endsWith("'")) {
return value.slice(1, -1);
}
return value;
}
async function loadSkillBundle(dir) {
const skillPath = join2(dir, "SKILL.md");
let raw;
try {
raw = await readFile(skillPath, "utf8");
} catch {
return null;
}
const parsed = parseFrontmatter(raw);
if (!parsed)
return null;
const name = typeof parsed.data.name === "string" ? parsed.data.name.trim() : "";
const description = typeof parsed.data.description === "string" ? parsed.data.description.trim() : "";
if (!name || !description)
return null;
return {
name,
description,
content: parsed.body.trimStart(),
path: skillPath,
directory: dir
};
}
async function loadGroupSkills(skillsRoot, groupId) {
const groupDir = join2(skillsRoot, SKILL_DIR_BY_GROUP[groupId]);
let entries;
try {
entries = await readdir(groupDir);
} catch {
return [];
}
const skills = [];
for (const entry of entries) {
const full = join2(groupDir, entry);
let isDir = false;
try {
isDir = (await stat(full)).isDirectory();
} catch {
continue;
}
if (!isDir)
continue;
const skill = await loadSkillBundle(full);
if (skill)
skills.push(skill);
}
return skills;
}
async function registerGroupSkills(ctx, groupIds, providerLabel) {
const skillsApi = ctx.skills;
if (!skillsApi || typeof skillsApi.register !== "function") {
return () => {};
}
const root = opsSkillsRoot();
const disposers = [];
const enabled = new Set(groupIds);
for (const groupId of CAPABILITY_GROUP_IDS) {
if (!enabled.has(groupId))
continue;
const skills = await loadGroupSkills(root, groupId);
for (const skill of skills) {
disposers.push(skillsApi.register({
name: skill.name,
description: skill.description,
content: skill.content,
path: skill.path,
resourceBase: { kind: "directory", path: skill.directory },
provider: providerLabel,
source: "custom"
}));
}
}
return () => {
for (const dispose of disposers)
dispose();
};
}
// src/netx/kb-local-path.ts
import { existsSync as existsSync2, realpathSync, statSync } from "node:fs";
import { join as join3, relative, resolve, sep } from "node:path";
var KB_LOCAL_WRITABLE_ROOTS = Object.freeze([
"memories",
"drafts",
"suggestions",
"refs"
]);
var REF_AREAS = Object.freeze([
"inventory",
"devices",
"topology",
"business",
"commands",
"handbooks"
]);
var MEMORY_BUCKET_DIR = Object.freeze({
note: "日常笔记",
rca_review: "排障复盘",
ai_trace: "AI思维链"
});
function resolveKbLocalRoot(snapshot) {
if (snapshot.status !== "configured")
return null;
const rel = snapshot.paths.local?.trim();
if (!rel)
return null;
return resolve(snapshot.realRoot, rel);
}
function kbLocalToolsEnabled(snapshot) {
return resolveKbLocalRoot(snapshot) !== null;
}
function sanitizeSlug(raw, fallback = "entry") {
const cleaned = raw.trim().replace(/[/\\]+/g, "-").replace(/\.\.+/g, "").replace(/[^\w.\u4e00-\u9fff-]+/gu, "-").replace(/-+/g, "-").replace(/^-|-$/g, "");
return cleaned || fallback;
}
function todayIsoDate(now = new Date) {
const y = now.getFullYear();
const m = String(now.getMonth() + 1).padStart(2, "0");
const d = String(now.getDate()).padStart(2, "0");
return `${y}-${m}-${d}`;
}
function toCompactDate(isoOrEmpty, now = new Date) {
const iso = (isoOrEmpty?.trim() || todayIsoDate(now)).replace(/-/g, "");
if (!/^\d{8}$/.test(iso)) {
throw new Error(`invalid date (want YYYY-MM-DD or YYYYMMDD): ${isoOrEmpty}`);
}
return iso;
}
function normalizeIsoDate(raw, now = new Date) {
const t = raw?.trim();
if (!t)
return todayIsoDate(now);
if (/^\d{4}-\d{2}-\d{2}$/.test(t))
return t;
if (/^\d{8}$/.test(t)) {
return `${t.slice(0, 4)}-${t.slice(4, 6)}-${t.slice(6, 8)}`;
}
throw new Error(`invalid date (want YYYY-MM-DD or YYYYMMDD): ${raw}`);
}
function memoryFileName(opts) {
const date = normalizeIsoDate(opts.date, opts.now);
return `${date}-${sanitizeSlug(opts.slug)}.md`;
}
function draftFileName(opts) {
const compact = toCompactDate(opts.date, opts.now);
const slug = sanitizeSlug(opts.slug);
const base = slug.toUpperCase().startsWith("DRAFT-") ? slug : `DRAFT-${compact}-${slug}`;
return base.toLowerCase().endsWith(".md") ? base : `${base}.md`;
}
function suggestionFileName(opts) {
const date = normalizeIsoDate(opts.date, opts.now);
return `${date}-${sanitizeSlug(opts.slug)}.md`;
}
function refFileName(slug) {
const base = sanitizeSlug(slug, "note");
return base.toLowerCase().endsWith(".md") ? base : `${base}.md`;
}
function resolveWritableLocalPath(localRoot, ...segments) {
if (segments.some((s) => s.includes("\x00"))) {
throw new Error("path segment contains NUL");
}
const absolutePath = resolve(localRoot, ...segments);
const rel = relative(localRoot, absolutePath);
if (!rel || rel.startsWith("..") || rel.split(/[/\\]/).includes("..")) {
throw new Error(`path escapes local root: ${absolutePath}`);
}
const top = rel.split(/[/\\]/)[0];
if (!KB_LOCAL_WRITABLE_ROOTS.includes(top)) {
throw new Error(`writes only allowed under ${KB_LOCAL_WRITABLE_ROOTS.join("|")}/ (got ${top}/)`);
}
return {
absolutePath,
relativePath: rel.split(sep).join("/"),
writableRoot: top
};
}
function resolveExistingWritableFile(localRoot, pathArg) {
const trimmed = pathArg.trim();
if (!trimmed)
throw new Error("path is empty");
const candidate = resolve(trimmed);
let absolutePath;
const localResolved = resolve(localRoot);
const underLocal = candidate === localResolved || candidate.startsWith(localResolved + sep);
if (underLocal) {
absolutePath = candidate;
} else {
absolutePath = resolve(localRoot, trimmed);
}
const checked = resolveWritableLocalPath(localRoot, ...relative(localRoot, absolutePath).split(/[/\\]/).filter(Boolean));
try {
if (existsSync2(checked.absolutePath)) {
const realFile = realpathSync(checked.absolutePath);
const realLocal = realpathSync(localRoot);
const realRel = relative(realLocal, realFile);
if (!realRel || realRel.startsWith("..") || realRel.split(/[/\\]/).includes("..")) {
throw new Error(`path escapes local root after realpath: ${realFile}`);
}
const top = realRel.split(/[/\\]/)[0];
if (!KB_LOCAL_WRITABLE_ROOTS.includes(top)) {
throw new Error(`path not under writable roots: ${realRel}`);
}
if (!statSync(realFile).isFile()) {
throw new Error(`not a file: ${realFile}`);
}
return {
absolutePath: realFile,
relativePath: realRel.split(sep).join("/"),
writableRoot: top
};
}
} catch (error) {
if (error instanceof Error && /escapes|writable|not a file/.test(error.message)) {
throw error;
}
}
return checked;
}
function memoryDir(bucket) {
return join3("memories", MEMORY_BUCKET_DIR[bucket]);
}
function suggestionDir(kind) {
return join3("suggestions", kind);
}
function draftDir(domain) {
const d = domain?.trim();
if (!d)
return "drafts";
return join3("drafts", sanitizeSlug(d, "misc"));
}
function refDir(area, device) {
if (!REF_AREAS.includes(area)) {
throw new Error(`invalid refs area: ${area}`);
}
if (area === "devices") {
const host = sanitizeSlug(device?.trim() || "", "");
if (!host) {
throw new Error("refs/devices requires device (host_name)");
}
return join3("refs", "devices", host);
}
return join3("refs", area);
}
// src/netx/kb-context-skill.ts
var SKILL_NAME = "kb-context";
function skillBody(snapshot) {
if (snapshot.status === "configured") {
const flags = Object.entries(snapshot.content).filter(([, on]) => on).map(([key]) => key).join(", ") || "(none)";
const localRoot = resolveKbLocalRoot(snapshot);
const localRow = localRoot ? `| kbLocal | \`${localRoot}\` |` : "| kbLocal | (MANIFEST paths.local missing) |";
const localGuide = localRoot ? [
"",
"### Dual plane (mandatory)",
"",
"- **HQ pack = read-only** (formal RCA, theory, packet, `_common`, `_skills`, shared cmdLib).",
`- **Writable evolution core**: \`${localRoot}\` → \`refs/\` | \`memories/\` | \`drafts/\` | \`suggestions/\`.`,
"- **All KB writes via host tools** (workspace Write/bash cannot reach KB):",
" `netx__kbWriteRef` / `netx__kbWriteMemory` / `netx__kbWriteDraft` / `netx__kbWriteSuggestion` /",
" `netx__kbUpdateLocal` / `netx__kbDeleteLocal` / `netx__kbListLocal`.",
"",
"### refs — site product knowledge (evolve every task)",
"- On any NE: **read** `refs/devices/<host_name>/` first; if missing, prove with netx then `kbWriteRef` to create/update.",
"- `area=devices` requires `device=<host_name>` (never UUID); primary file slug=`PROFILE`.",
"- Also: `inventory` (ledger), `topology`, `business`, `commands` (site-only), `handbooks`.",
"- Device facts → refs; episodic experience → memories (do not dump ledgers into diaries).",
"",
"### memories — write immediately when valuable",
"- `bucket=note` | `rca_review` | `ai_trace` — short beats lost.",
"- Open cases → `kbWriteDraft`. HQ pack gaps → `kbWriteSuggestion`."
] : [
"",
"No local write tools until `paths.local` is present in MANIFEST."
];
return {
description: "Operator knowledge-base context for this Host (HQ pack + local evolution under paths.local).",
content: [
"## Knowledge base (configured)",
"",
"When troubleshooting with operator playbooks or docs, **compose paths from this root**.",
"Do not invent another operator or country.",
"",
`| Field | Value |`,
`| --- | --- |`,
`| kbStatus | configured |`,
`| kbRoot | \`${snapshot.realRoot}\` |`,
localRow,
`| kbOperator | ${snapshot.operatorName} |`,
`| kbCountry | ${snapshot.country} |`,
`| kbVersion | ${snapshot.version} |`,
`| kbContent (on) | ${flags} |`,
...localGuide,
"",
"Environment mirrors: KB_ROOT, KB_LOCAL, KB_OPERATOR, KB_COUNTRY, KB_VERSION, KB_CONTENT, KB_STATUS.",
"",
"Business playbooks (kb-troubleshoot, kb-retrieve, …) register from",
`${snapshot.realRoot}/_skills/ (or MANIFEST paths.skills) when hasSkills is true,`,
"plus paths.localSkills when present — use those skills for KB triage;",
"keep netx-ops for live netx evidence only."
].join(`
`)
};
}
const reason = snapshot.status === "error" ? snapshot.errorMessage || "invalid knowledge base" : "kbRoot is empty";
return {
description: "Knowledge-base context is unavailable — stay on pure netx evidence.",
content: [
"## Knowledge base (unavailable)",
"",
`kbStatus=${snapshot.status}. ${reason}`,
"",
"**Do not invent an operator, country, or KB paths.**",
"Use only netx tools / live evidence (alarms, inventory, CLI, topology).",
"Operator-specific playbooks are out of scope until a valid MANIFEST is configured."
].join(`
`)
};
}
function registerKbContextSkill(ctx, snapshot) {
const skillsApi = ctx.skills;
if (!skillsApi || typeof skillsApi.register !== "function") {
return () => {};
}
const body = skillBody(snapshot);
return skillsApi.register({
name: SKILL_NAME,
description: body.description,
content: body.content,
provider: "netxops-kb",
source: "custom"
});
}
// src/netx/kb-manifest.ts
import { existsSync as existsSync3, readdirSync, readFileSync, statSync as statSync2 } from "node:fs";
import { basename, dirname as dirname2, join as join4, resolve as resolve2 } from "node:path";
var EMPTY_CONTENT = {
hasRegions: false,
hasTheory: false,
hasPacket: false,
hasCommon: false,
hasSkills: false
};
var LEGACY_CONTENT_KEY = {
regions: "hasRegions",
theory: "hasTheory",
packet: "hasPacket",
skills: "hasSkills",
common: "hasCommon"
};
function unconfiguredKbSnapshot() {
return {
status: "unconfigured",
realRoot: "",
operatorName: "",
country: "",
version: "",
content: { ...EMPTY_CONTENT },
paths: {},
errorMessage: ""
};
}
function errorSnapshot(message) {
return {
status: "error",
realRoot: "",
operatorName: "",
country: "",
version: "",
content: { ...EMPTY_CONTENT },
paths: {},
errorMessage: message
};
}
function findManifest(kbRoot, maxDepth = 3) {
const root = resolve2(kbRoot.trim());
if (!kbRoot.trim()) {
return { paths: [], error: "kbRoot is empty" };
}
let rootStat;
try {
rootStat = statSync2(root);
} catch {
return { paths: [], error: `kbRoot not found: ${root}` };
}
if (!rootStat.isDirectory()) {
return { paths: [], error: `kbRoot is not a directory: ${root}` };
}
const direct = join4(root, "MANIFEST.json");
if (existsSync3(direct)) {
try {
if (statSync2(direct).isFile())
return { paths: [direct] };
} catch {}
}
const found = [];
const walk = (dir, depth) => {
if (depth > maxDepth)
return;
const candidate = join4(dir, "MANIFEST.json");
if (existsSync3(candidate)) {
try {
if (statSync2(candidate).isFile())
found.push(candidate);
} catch {}
}
if (depth === maxDepth)
return;
let entries;
try {
entries = readdirSync(dir);
} catch {
return;
}
for (const name of entries) {
if (name === "node_modules" || name === ".git")
continue;
const full = join4(dir, name);
let st;
try {
st = statSync2(full);
} catch {
continue;
}
if (st.isDirectory())
walk(full, depth + 1);
}
};
let topEntries;
try {
topEntries = readdirSync(root);
} catch {
return { paths: [], error: `cannot read kbRoot: ${root}` };
}
for (const name of topEntries) {
if (name === "node_modules" || name === ".git")
continue;
const full = join4(root, name);
let st;
try {
st = statSync2(full);
} catch {
continue;
}
if (st.isDirectory())
walk(full, 1);
}
return { paths: found };
}
function asNonEmptyString(value, field) {
if (typeof value !== "string" || value.trim() === "") {
throw new Error(`MANIFEST missing required string field: ${field}`);
}
return value.trim();
}
function parseContent(raw) {
const out = { ...EMPTY_CONTENT };
if (raw === undefined || raw === null) {
throw new Error("MANIFEST missing required object field: content");
}
if (typeof raw !== "object" || Array.isArray(raw)) {
throw new Error("MANIFEST content must be an object");
}
const row = raw;
const present = new Set(Object.keys(row));
for (const [key, value] of Object.entries(row)) {
const on = value === true;
const mapped = LEGACY_CONTENT_KEY[key];
if (mapped !== undefined) {
if (on && !present.has(mapped))
out[mapped] = true;
continue;
}
out[key] = on;
}
return out;
}
function parsePaths(raw) {
if (raw === undefined || raw === null)
return {};
if (typeof raw !== "object" || Array.isArray(raw)) {
throw new Error("MANIFEST paths must be an object");
}
const out = {};
for (const [key, value] of Object.entries(raw)) {
if (typeof value !== "string")
continue;
const trimmed = value.trim();
if (!trimmed)
continue;
out[key] = trimmed;
}
return out;
}
function parseManifest(raw) {
let data;
try {
data = JSON.parse(raw);
} catch (error) {
throw new Error(`MANIFEST is not valid JSON: ${error instanceof Error ? error.message : String(error)}`);
}
if (data === null || typeof data !== "object" || Array.isArray(data)) {
throw new Error("MANIFEST root must be an object");
}
const row = data;
if (row.schemaVersion !== "1.0") {
throw new Error(`unsupported schemaVersion (want "1.0", got ${JSON.stringify(row.schemaVersion)})`);
}
if (row.packageType !== "operator-subset") {
throw new Error(`unsupported packageType (want "operator-subset", got ${JSON.stringify(row.packageType)})`);
}
const operator = row.operator;
if (operator === null || typeof operator !== "object" || Array.isArray(operator)) {
throw new Error("MANIFEST missing required object field: operator");
}
const op = operator;
return {
operatorName: asNonEmptyString(op.name, "operator.name"),
country: asNonEmptyString(op.country, "operator.country"),
version: asNonEmptyString(row.version, "version"),
content: parseContent(row.content),
paths: parsePaths(row.paths)
};
}
function resolveKbRoot(kbRoot, maxDepth = 3) {
const trimmed = kbRoot.trim();
if (!trimmed)
return unconfiguredKbSnapshot();
let root = resolve2(trimmed);
try {
const st = statSync2(root);
if (st.isFile()) {
if (basename(root).toLowerCase() === "manifest.json") {
root = dirname2(root);
} else {
return errorSnapshot(`kbRoot is not a directory: ${root}`);
}
} else if (!st.isDirectory()) {
return errorSnapshot(`kbRoot is not a directory: ${root}`);
}
} catch {
return errorSnapshot(`kbRoot not found: ${root}`);
}
const located = findManifest(root, maxDepth);
if (located.error)
return errorSnapshot(located.error);
if (located.paths.length === 0) {
return errorSnapshot(`no MANIFEST.json under ${root} (maxDepth=${maxDepth})`);
}
if (located.paths.length > 1) {
return errorSnapshot(`ambiguous MANIFEST.json (${located.paths.length} hits); pick a unique package root`);
}
const manifestPath = located.paths[0];
let raw;
try {
raw = readFileSync(manifestPath, "utf8");
} catch (error) {
return errorSnapshot(`cannot read MANIFEST: ${error instanceof Error ? error.message : String(error)}`);
}
try {
const parsed = parseManifest(raw);
return {
status: "configured",
realRoot: dirname2(manifestPath),
operatorName: parsed.operatorName,
country: parsed.country,
version: parsed.version,
content: parsed.content,
paths: { ...parsed.paths },
errorMessage: ""
};
} catch (error) {
return errorSnapshot(error instanceof Error ? error.message : String(error));
}
}
// src/netx/kb-local-tools.ts
import { defineTool } from "@deepseek-ai/dsh-tools";
// src/netx/kb-local-ops.ts
import {
existsSync as existsSync4,
mkdirSync,
readdirSync as readdirSync2,
readFileSync as readFileSync2,
rmSync,
statSync as statSync3,
writeFileSync
} from "node:fs";
import { dirname as dirname3, join as join5 } from "node:path";
function requireLocalRoot(snapshot) {
const root = resolveKbLocalRoot(snapshot);
if (!root) {
throw new Error("KB local root unavailable (configure kbRoot + MANIFEST paths.local)");
}
return root;
}
function ensureDraftBody(body) {
const trimmed = body.replace(/^\uFEFF/, "");
if (/^---\r?\n[\s\S]*?\r?\nstatus:\s*draft\b/m.test(trimmed) || /^---\r?\n[\s\S]*?\nstatus:\s*["']?draft["']?\s*$/m.test(trimmed)) {
return trimmed.endsWith(`
`) ? trimmed : `${trimmed}
`;
}
if (trimmed.startsWith("---")) {
const end = trimmed.indexOf(`
---`, 3);
if (end !== -1) {
const fm = trimmed.slice(0, end + 4);
const rest = trimmed.slice(end + 4);
if (/\nstatus:\s*/.test(fm))
return trimmed.endsWith(`
`) ? trimmed : `${trimmed}
`;
const injected = fm.replace(/^---\r?\n/, `---
status: draft
`);
const out = `${injected}${rest}`;
return out.endsWith(`
`) ? out : `${out}
`;
}
}
return `---
status: draft
---
${trimmed.endsWith(`
`) ? trimmed : `${trimmed}
`}`;
}
function createMemory(snapshot, args) {
const localRoot = requireLocalRoot(snapshot);
const name = memoryFileName({ date: args.date, slug: args.slug });
const target = resolveWritableLocalPath(localRoot, memoryDir(args.bucket), name);
if (existsSync4(target.absolutePath) && !args.overwrite) {
throw new Error(`file already exists (pass overwrite=true to replace): ${target.relativePath}`);
}
mkdirSync(dirname3(target.absolutePath), { recursive: true });
const existed = existsSync4(target.absolutePath);
writeFileSync(target.absolutePath, args.body.endsWith(`
`) ? args.body : `${args.body}
`, "utf8");
return {
ok: true,
action: existed ? "updated" : "created",
absolutePath: target.absolutePath,
relativePath: target.relativePath
};
}
function createDraft(snapshot, args) {
const localRoot = requireLocalRoot(snapshot);
const name = draftFileName({ date: args.date, slug: args.slug });
const target = resolveWritableLocalPath(localRoot, draftDir(args.domain), name);
if (existsSync4(target.absolutePath) && !args.overwrite) {
throw new Error(`file already exists (pass overwrite=true to replace): ${target.relativePath}`);
}
mkdirSync(dirname3(target.absolutePath), { recursive: true });
const existed = existsSync4(target.absolutePath);
writeFileSync(target.absolutePath, ensureDraftBody(args.body), "utf8");
return {
ok: true,
action: existed ? "updated" : "created",
absolutePath: target.absolutePath,
relativePath: target.relativePath
};
}
function createSuggestion(snapshot, args) {
const localRoot = requireLocalRoot(snapshot);
const name = suggestionFileName({ date: args.date, slug: args.slug });
const target = resolveWritableLocalPath(localRoot, suggestionDir(args.kind), name);
if (existsSync4(target.absolutePath) && !args.overwrite) {
throw new Error(`file already exists (pass overwrite=true to replace): ${target.relativePath}`);
}
mkdirSync(dirname3(target.absolutePath), { recursive: true });
const existed = existsSync4(target.absolutePath);
writeFileSync(target.absolutePath, args.body.endsWith(`
`) ? args.body : `${args.body}
`, "utf8");
return {
ok: true,
action: existed ? "updated" : "created",
absolutePath: target.absolutePath,
relativePath: target.relativePath
};
}
function createRef(snapshot, args) {
const localRoot = requireLocalRoot(snapshot);
const name = refFileName(args.slug);
const target = resolveWritableLocalPath(localRoot, refDir(args.area, args.device), name);
if (existsSync4(target.absolutePath) && !args.overwrite) {
throw new Error(`file already exists (pass overwrite=true to replace): ${target.relativePath}`);
}
mkdirSync(dirname3(target.absolutePath), { recursive: true });
const existed = existsSync4(target.absolutePath);
writeFileSync(target.absolutePath, args.body.endsWith(`
`) ? args.body : `${args.body}
`, "utf8");
return {
ok: true,
action: existed ? "updated" : "created",
absolutePath: target.absolutePath,
relativePath: target.relativePath
};
}
function updateLocalFile(snapshot, args) {
const localRoot = requireLocalRoot(snapshot);
const target = resolveExistingWritableFile(localRoot, args.path);
if (!existsSync4(target.absolutePath)) {
throw new Error(`file not found: ${target.relativePath}`);
}
const body = target.writableRoot === "drafts" ? ensureDraftBody(args.body) : args.body.endsWith(`
`) ? args.body : `${args.body}
`;
writeFileSync(target.absolutePath, body, "utf8");
return {
ok: true,
action: "updated",
absolutePath: target.absolutePath,
relativePath: target.relativePath
};
}
function deleteLocalFile(snapshot, args) {
const localRoot = requireLocalRoot(snapshot);
const target = resolveExistingWritableFile(localRoot, args.path);
if (!existsSync4(target.absolutePath)) {
throw new Error(`file not found: ${target.relativePath}`);
}
rmSync(target.absolutePath, { force: false });
return {
ok: true,
action: "deleted",
absolutePath: target.absolutePath,
relativePath: target.relativePath
};
}
function walkFiles(dir, baseLocal, out) {
let entries;
try {
entries = readdirSync2(dir);
} catch {
return;
}
for (const name of entries) {
if (name === "." || name === "..")
continue;
const full = join5(dir, name);
let st;
try {
st = statSync3(full);
} catch {
continue;
}
if (st.isDirectory()) {
walkFiles(full, baseLocal, out);
} else if (st.isFile() && name.toLowerCase().endsWith(".md")) {
const rel = full.slice(baseLocal.length).replace(/^[/\\]/, "").split(/[/\\]/).join("/");
out.push({
absolutePath: full,
relativePath: rel,
mtimeMs: st.mtimeMs,
size: st.size
});
}
}
}
function listLocalFiles(snapshot, args = {}) {
const localRoot = requireLocalRoot(snapshot);
const roots = args.root && args.root !== "all" ? [args.root] : [...KB_LOCAL_WRITABLE_ROOTS];
const entries = [];
for (const r of roots) {
walkFiles(join5(localRoot, r), localRoot, entries);
}
entries.sort((a, b) => b.mtimeMs - a.mtimeMs);
const limit = Math.min(Math.max(args.limit ?? 50, 1), 200);
return {
ok: true,
localRoot,
entries: entries.slice(0, limit)
};
}
// src/netx/kb-runtime.ts
var STORE_KEY2 = Symbol.for("dsh-netxops.kb-store");
var ENV_KEYS = [
"KB_ROOT",
"KB_LOCAL",
"KB_OPERATOR",
"KB_COUNTRY",
"KB_VERSION",
"KB_CONTENT",
"KB_STATUS"
];
function store2() {
const root = globalThis;
let current = root[STORE_KEY2];
if (current === undefined) {
current = { snapshot: unconfiguredKbSnapshot(), listeners: new Set };
root[STORE_KEY2] = current;
}
return current;
}
function getKbContext() {
const snap = store2().snapshot;
return {
...snap,
content: { ...snap.content },
paths: { ...snap.paths }
};
}
function publishKbContext(next) {
const state = store2();
state.snapshot = {
...next,
content: { ...next.content },
paths: { ...next.paths }
};
for (const listener of state.listeners)
listener();
}
function watchKbContext(listener) {
const state = store2();
state.listeners.add(listener);
return () => {
state.listeners.delete(listener);
};
}
function applyKbEnv(snapshot) {
for (const key of ENV_KEYS) {
delete process.env[key];
}
process.env.KB_STATUS = snapshot.status;
if (snapshot.status !== "configured")
return;
process.env.KB_ROOT = snapshot.realRoot;
const local = resolveKbLocalRoot(snapshot);
if (local)
process.env.KB_LOCAL = local;
process.env.KB_OPERATOR = snapshot.operatorName;
process.env.KB_COUNTRY = snapshot.country;
process.env.KB_VERSION = snapshot.version;
process.env.KB_CONTENT = JSON.stringify(snapshot.content);
}
function resetKbContext() {
publishKbContext(unconfiguredKbSnapshot());
applyKbEnv(unconfiguredKbSnapshot());
}
// src/netx/kb-local-tools.ts
var str = (description) => ({ type: "string", ...description ? { description } : {} });
var bool = (description) => ({ type: "boolean", ...description ? { description } : {} });
var num = (description) => ({ type: "number", ...description ? { description } : {} });
var reqStr = (description) => ({
type: "string",
required: true,
...description ? { description } : {}
});
function renderJson(_args, value) {
return [{ type: "text", text: JSON.stringify(value, null, 0) }];
}
var jsonOut = {
schema: { type: "json" },
render: renderJson
};
function liveSnapshot() {
return getKbContext();
}
function tool(name, description, parameters, execute) {
return defineTool({
name,
description,
parameters,
output: jsonOut,
timeoutMs: 30000,
isConcurrencySafe: () => false,
async execute(args) {
try {
return await execute(args);
} catch (error) {
throw new Error(error instanceof Error ? error.message : String(error));
}
}
});
}
function registerKbLocalTools(ctx, snapshot = getKbContext()) {
if (!kbLocalToolsEnabled(snapshot))
return () => {};
const localRoot = resolveKbLocalRoot(snapshot);
const toolsApi = ctx.tools;
if (!toolsApi || typeof toolsApi.register !== "function")
return () => {};
const entries = [
tool("netx__kbWriteMemory", `Create (or overwrite) one diary-style memory markdown under ${localRoot}/memories/. ` + "bucket: note→日常笔记, rca_review→排障复盘, ai_trace→AI思维链. " + "Default create-only; set overwrite=true to replace same filename. " + "Do not use workspace Write — KB is outside the sandbox.", {
bucket: {
type: "string",
required: true,
enum: ["note", "rca_review", "ai_trace"],
description: "Memory subdirectory"
},
slug: reqStr("Short filename stem (no path separators)"),
body: reqStr("Full markdown body"),
date: str("Optional YYYY-MM-DD (default today)"),
overwrite: bool("Replace if the target file already exists")
}, (args) => createMemory(liveSnapshot(), {
bucket: args.bucket,
slug: String(args.slug ?? ""),
body: String(args.body ?? ""),
date: args.date != null ? String(args.date) : undefined,
overwrite: args.overwrite === true
})),
tool("netx__kbWriteDraft", `Create (or overwrite) a DRAFT case under ${localRoot}/drafts/. ` + "Filename is forced to DRAFT-YYYYMMDD-…; body gets status: draft frontmatter if missing. " + "Set overwrite=true to replace. Not for formal RCA.", {
slug: reqStr("Case stem (DRAFT- prefix added if missing)"),
body: reqStr("Markdown body (RCA-ish draft)"),
domain: str("Optional fault-domain subfolder under drafts/"),
date: str("Optional event date YYYY-MM-DD or YYYYMMDD"),
overwrite: bool("Replace if the target file already exists")
}, (args) => createDraft(liveSnapshot(), {
slug: String(args.slug ?? ""),
body: String(args.body ?? ""),
domain: args.domain != null ? String(args.domain) : undefined,
date: args.date != null ? String(args.date) : undefined,
overwrite: args.overwrite === true
})),
tool("netx__kbWriteSuggestion", `Create (or overwrite) a suggestion under ${localRoot}/suggestions/{theory|improvement}/. ` + "Use for HQ pack/theory corrections or tool/process improvements.", {
kind: {
type: "string",
required: true,
enum: ["theory", "improvement"],
description: "theory = knowledge fix; improvement = tools/skills/process"
},
slug: reqStr("Short filename stem"),
body: reqStr("Full markdown body"),
date: str("Optional YYYY-MM-DD (default today)"),
overwrite: bool("Replace if the target file already exists")
}, (args) => createSuggestion(liveSnapshot(), {
kind: args.kind,
slug: String(args.slug ?? ""),
body: String(args.body ?? ""),
date: args.date != null ? String(args.date) : undefined,
overwrite: args.overwrite === true
})),
tool("netx__kbWriteRef", `Create (or overwrite) site product-knowledge under ${localRoot}/refs/. ` + "area=inventory|devices|topology|business|commands|handbooks. " + "For devices: require device=host_name; default slug PROFILE for the ops profile. " + "Use for NE ledger, per-device profiles, topology/business notes, site command books — not diaries.", {
area: {
type: "string",
required: true,
enum: ["inventory", "devices", "topology", "business", "commands", "handbooks"],
description: "refs/ subtree"
},
slug: reqStr("Filename stem (e.g. PROFILE, neighbors, ledger)"),
body: reqStr("Full markdown body"),
device: str("Required when area=devices — host_name (never UUID)"),
overwrite: bool("Replace if the target file already exists")
}, (args) => createRef(liveSnapshot(), {
area: args.area,
slug: String(args.slug ?? ""),
body: String(args.body ?? ""),
device: args.device != null ? String(args.device) : undefined,
overwrite: args.overwrite === true
})),
tool("netx__kbUpdateLocal", `Replace the body of an existing file under memories|drafts|suggestions|refs ` + `(absolute path or path relative to ${localRoot}). ` + "Drafts keep status: draft.", {
path: reqStr("Absolute path or path relative to KB local root"),
body: reqStr("New full markdown body")
}, (args) => updateLocalFile(liveSnapshot(), {
path: String(args.path ?? ""),
body: String(args.body ?? "")
})),
tool("netx__kbDeleteLocal", `Delete one existing markdown under memories|drafts|suggestions|refs ` + `(absolute or relative to ${localRoot}).`, {
path: reqStr("Absolute path or path relative to KB local root")
}, (args) => deleteLocalFile(liveSnapshot(), {
path: String(args.path ?? "")
})),
tool("netx__kbListLocal", `List recent .md files under ${localRoot} memories|drafts|suggestions|refs (newest first). ` + "Read contents via absolute paths from the listing.", {
root: {
type: "string",
enum: ["memories", "drafts", "suggestions", "refs", "all"],
description: "Subtree to list (default all writable)"
},
limit: num("Max entries 1–200 (default 50)")
}, (args) => listLocalFiles(liveSnapshot(), {
root: args.root ?? "all",
limit: typeof args.limit === "number" ? args.limit : undefined
}))
];
const disposers = entries.map((entry) => toolsApi.register(entry));
ctx.logger.info("netxops: kb local tools registered count=%s localRoot=%s", disposers.length, localRoot);
return () => {
for (const dispose of disposers)
dispose();
};
}
// src/netx/kb-pack-skills.ts
import { readdir as readdir2, stat as stat2 } from "node:fs/promises";
import { join as join6 } from "node:path";
function kbPackSkillsEnabled(snapshot) {
return snapshot.status === "configured" && snapshot.content.hasSkills === true;
}
function resolveKbSkillsRoot(snapshot) {
const rel = snapshot.paths.skills?.trim() || "_skills";
return join6(snapshot.realRoot, rel);
}
function resolveKbLocalSkillsRoot(snapshot) {
const rel = snapshot.paths.localSkills?.trim();
if (!rel)
return null;
return join6(snapshot.realRoot, rel);
}
async function registerSkillsUnderRoot(ctx, skillsApi, root, provider, options) {
let entries;
try {
entries = await readdir2(root);
} catch {
if (options.logMissing) {
ctx.logger.info("netxops: kb %s dir missing at %s — skip", options.label, root);
}
return [];
}
if (entries.length === 0)
return [];
const disposers = [];
for (const entry of entries) {
const full = join6(root, entry);
let isDir = false;
try {
isDir = (await stat2(full)).isDirectory();
} catch {
continue;
}
if (!isDir)
continue;
let skill;
try {
skill = await loadSkillBundle(full);
} catch (error) {
ctx.logger.warn("netxops: kb %s skill load failed at %s: %s", options.label, full, error instanceof Error ? error.message : String(error));
continue;
}
if (!skill) {
ctx.logger.warn("netxops: kb %s skill skipped (invalid SKILL.md): %s", options.label, full);
continue;
}
disposers.push(skillsApi.register({
name: skill.name,
description: skill.description,
content: skill.content,
path: skill.path,
resourceBase: { kind: "directory", path: skill.directory },
provider,
source: "custom"
}));
}
return disposers;
}
async function registerKbPackSkills(ctx, snapshot, options) {
if (!options.enabled || !kbPackSkillsEnabled(snapshot)) {
return () => {};
}
const skillsApi = ctx.skills;
if (!skillsApi || typeof skillsApi.register !== "function") {
return () => {};
}
const provider = options.providerLabel ?? "netxops-kb-pack";
const disposers = [];
const skillsRoot = resolveKbSkillsRoot(snapshot);
disposers.push(...await registerSkillsUnderRoot(ctx, skillsApi, skillsRoot, provider, {
logMissing: true,
label: "pack"
}));
const localRoot = resolveKbLocalSkillsRoot(snapshot);
if (localRoot) {
disposers.push(...await registerSkillsUnderRoot(ctx, skillsApi, localRoot, provider, {
logMissing: false,
label: "local"
}));
}
if (disposers.length > 0) {
ctx.logger.info("netxops: kb pack skills registered count=%s skillsRoot=%s localSkills=%s provider=%s", disposers.length, skillsRoot, localRoot ?? "(none)", provider);
}
return () => {
for (const dispose of disposers)
dispose();
};
}
// src/netx/model-language.ts
var THINKING_LANGUAGE_DEFAULT = "auto";
var REPLY_LANGUAGE_DEFAULT = "follow-user";
var THINKING_LANGUAGE_IDS = ["zh-CN", "en"];
var REPLY_LANGUAGE_IDS = ["zh", "en"];
var THINKING_META = {
"zh-CN": { id: "zh-CN", name: "Simplified Chinese", native: "简体中文" },
en: { id: "en", name: "English", native: "English" }
};
var REPLY_META = {
zh: { id: "zh", name: "Simplified Chinese", native: "简体中文" },
en: { id: "en", name: "English", native: "English" }
};
function normalizeThinkingLanguage(raw) {
const value = String(raw ?? "").trim();
if (!value || value === THINKING_LANGUAGE_DEFAULT)
return THINKING_LANGUAGE_DEFAULT;
const lower = value.toLowerCase().replace(/_/g, "-");
if (lower === "zh" || lower === "zh-cn" || lower === "zh-hans" || lower === "chinese")
return "zh-CN";
if (lower === "en" || lower.startsWith("en-") || lower === "english")
return "en";
if (THINKING_LANGUAGE_IDS.includes(value)) {
return value;
}
return THINKING_LANGUAGE_DEFAULT;
}
function normalizeReplyLanguage(raw) {
const value = String(raw ?? "").trim();
if (!value || value === REPLY_LANGUAGE_DEFAULT || value === "auto" || value === "default") {
return REPLY_LANGUAGE_DEFAULT;
}
const lower = value.toLowerCase().replace(/_/g, "-");
if (lower === "zh" || lower === "zh-cn" || lower === "zh-hans" || lower === "chinese")
return "zh";
if (lower === "en" || lower.startsWith("en-") || lower === "english")
return "en";
if (REPLY_LANGUAGE_IDS.includes(value)) {
return value;
}
return REPLY_LANGUAGE_DEFAULT;
}
function resolveThinkingLanguage(setting, systemLocale) {
const normalized = normalizeThinkingLanguage(setting);
if (normalized !== THINKING_LANGUAGE_DEFAULT)
return normalized;
return languageFromLocale(systemLocale) ?? "en";
}
function languageFromLocale(locale) {
const tag = String(locale ?? "").trim().toLowerCase().replace(/_/g, "-");
if (!tag)
return;
if (tag === "zh" || tag.startsWith("zh-hans") || tag.startsWith("zh-cn") || tag === "zh-sg") {
return "zh-CN";
}
if (tag.startsWith("zh"))
return "zh-CN";
if (tag === "en" || tag.startsWith("en-"))
return "en";
return;
}
function readSystemLocalePreference(settings) {
if (!settings || typeof settings.get !== "function")
return;
let section;
try {
section = settings.get("locale");
} catch {
return;
}
if (section === null || typeof section !== "object" || Array.isArray(section))
return;
const preference = section.preference;
return typeof preference === "string" && preference.trim() ? preference.trim() : undefined;
}
function thinkingInstruction(language) {
const meta = THINKING_META[language];
return [
`The operator configured the language of your thinking/reasoning process: ${meta.native} (${meta.name}).`,
`Write your entire internal reasoning — chain-of-thought, analysis, planning, and deliberation — in ${meta.name}.`,
"Keep code, identifiers, file paths, commands, and technical terms as they are.",
"Your final answer to the user follows the reply-language setting (or the user language when reply language is follow-user); this thinking setting never alone changes the final answer language."
].join(" ");
}
function thinkingReminder(language) {
const meta = THINKING_META[language];
return [
`[Thinking language] The operator wants your reasoning/thinking process written in ${meta.native} (${meta.name}).`,
`Continue your entire chain-of-thought in ${meta.name}.`,
"Final answer language follows the reply-language setting / user language."
].join(" ");
}
function replyInstruction(setting) {
const normalized = normalizeReplyLanguage(setting);
if (normalized === REPLY_LANGUAGE_DEFAULT)
return "";
const meta = REPLY_META[normalized];
const noGloss = normalized === "en" ? 'Never add Chinese glosses or bilingual parentheses such as "communication failure (失联)" or "alarm (告警)"; use one English wording only.' : 'Never add English glosses or bilingual parentheses such as "失联 (communication failure)" or "告警 (alarm)"; use one Chinese wording only.';
return [
"## Reply language requirement (mandatory)",
`The operator set Netx Ops reply language to ${meta.native} (${meta.name}).`,
`You MUST write the entire final reply in ${meta.name} only.`,
`Do not switch to the user's language even if they write in Chinese, English, or any other language.`,
"This includes titles, bullet labels (Result / Evidence / Next may stay as English keywords), explanations, summaries, warnings, and error text.",
noGloss,
"Keep code, commands, file paths, API names, host names, UUIDs, and proper nouns unchanged.",
'This rule outranks persona wording such as "follow the user language" and outranks language hints in the user message.'
].join(" ");
}
function replyReminder(setting) {
const normalized = normalizeReplyLanguage(setting);
if (normalized === REPLY_LANGUAGE_DEFAULT)
return "";
const meta = REPLY_META[normalized];
const noGloss = normalized === "en" ? "No Chinese words or (中文) glosses in the answer." : "No English glosses like (English term) in the answer.";
return [
`[Reply language] Mandatory: write your entire final answer in ${meta.native} (${meta.name}).`,
noGloss,
"Code/paths/host names stay original."
].join(" ");
}
// src/netx/runtime.ts
var STORE_KEY3 = Symbol.for("dsh-netxops.connection-store");
function store3() {
const root = globalThis;
let current = root[STORE_KEY3];
if (current === undefined) {
current = { connection: undefined, listeners: new Set };
root[STORE_KEY3] = current;
}
return current;
}
function publishNetxConnection(next) {
const state = store3();
state.connection = next;
for (const listener of state.listeners)
listener();
}
function getNetxConnection() {
return store3().connection;
}
function watchNetxConnection(listener) {
const state = store3();
state.listeners.add(listener);
return () => {
state.listeners.delete(listener);
};
}
// src/netx/session-export.ts
import { homedir as homedir2, hostname as osHostname } from "node:os";
// node_modules/.pnpm/fflate@0.8.3/node_modules/fflate/esm/index.mjs
import { createRequire as createRequire2 } from "module";
var require2 = createRequire2("/");
var _a;
var Worker;
var isMarkedAsUntransferable;
try {
_a = require2("worker_threads"), Worker = _a.Worker, isMarkedAsUntransferable = _a.isMarkedAsUntransferable;
} catch (e) {}
var u8 = Uint8Array;
var u16 = Uint16Array;
var i32 = Int32Array;
var fleb = new u8([0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5, 0, 0, 0, 0]);
var fdeb = new u8([0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13, 0, 0]);
var clim = new u8([16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15]);
var freb = function(eb, start) {
var b = new u16(31);
for (var i = 0;i < 31; ++i) {
b[i] = start += 1 << eb[i - 1];
}
var r = new i32(b[30]);
for (var i = 1;i < 30; ++i) {
for (var j = b[i];j < b[i + 1]; ++j) {
r[j] = j - b[i] << 5 | i;
}
}
return { b, r };
};
var _a = freb(fleb, 2);
var fl = _a.b;
var revfl = _a.r;
fl[28] = 258, revfl[258] = 28;
var _b = freb(fdeb, 0);
var fd = _b.b;
var revfd = _b.r;
var rev = new u16(32768);
for (i = 0;i < 32768; ++i) {
x = (i & 43690) >> 1 | (i & 21845) << 1;
x = (x & 52428) >> 2 | (x & 13107) << 2;
x = (x & 61680) >> 4 | (x & 3855) << 4;
rev[i] = ((x & 65280) >> 8 | (x & 255) << 8) >> 1;
}
var x;
var i;
var hMap = function(cd, mb, r) {
var s = cd.length;
var i2 = 0;
var l = new u16(mb);
for (;i2 < s; ++i2) {
if (cd[i2])
++l[cd[i2] - 1];
}
var le = new u16(mb);
for (i2 = 1;i2 < mb; ++i2) {
le[i2] = le[i2 - 1] + l[i2 - 1] << 1;
}
var co;
if (r) {
co = new u16(1 << mb);
var rvb = 15 - mb;
for (i2 = 0;i2 < s; ++i2) {
if (cd[i2]) {
var sv = i2 << 4 | cd[i2];
var r_1 = mb - cd[i2];
var v = le[cd[i2] - 1]++ << r_1;
for (var m = v | (1 << r_1) - 1;v <= m; ++v) {
co[rev[v] >> rvb] = sv;
}
}
}
} else {
co = new u16(s);
for (i2 = 0;i2 < s; ++i2) {
if (cd[i2]) {
co[i2] = rev[le[cd[i2] - 1]++] >> 15 - cd[i2];
}
}
}
return co;
};
var flt = new u8(288);
for (i = 0;i < 144; ++i)
flt[i] = 8;
var i;
for (i = 144;i < 256; ++i)
flt[i] = 9;
var i;
for (i = 256;i < 280; ++i)
flt[i] = 7;
var i;
for (i = 280;i < 288; ++i)
flt[i] = 8;
var i;
var fdt = new u8(32);
for (i = 0;i < 32; ++i)
fdt[i] = 5;
var i;
var flm = /* @__PURE__ */ hMap(flt, 9, 0);
var fdm = /* @__PURE__ */ hMap(fdt, 5, 0);
var shft = function(p) {
return (p + 7) / 8 | 0;
};
var slc = function(v, s, e) {
if (s == null || s < 0)
s = 0;
if (e == null || e > v.length)
e = v.length;
return new u8(v.subarray(s, e));
};
var ec = [
"unexpected EOF",
"invalid block type",
"invalid length/literal",
"invalid distance",
"stream finished",
"no stream handler",
,
"no callback",
"invalid UTF-8 data",
"extra field too long",
"date not in range 1980-2099",
"filename too long",
"stream finishing",
"invalid zip data"
];
var err = function(ind, msg, nt) {
var e = new Error(msg || ec[ind]);
e.code = ind;
if (Error.captureStackTrace)
Error.captureStackTrace(e, err);
if (!nt)
throw e;
return e;
};
var wbits = function(d, p, v) {
v <<= p & 7;
var o = p / 8 | 0;
d[o] |= v;
d[o + 1] |= v >> 8;
};
var wbits16 = function(d, p, v) {
v <<= p & 7;
var o = p / 8 | 0;
d[o] |= v;
d[o + 1] |= v >> 8;
d[o + 2] |= v >> 16;
};
var hTree = function(d, mb) {
var t = [];
for (var i2 = 0;i2 < d.length; ++i2) {
if (d[i2])
t.push({ s: i2, f: d[i2] });
}
var s = t.length;
var t2 = t.slice();
if (!s)
return { t: et, l: 0 };
if (s == 1) {
var v = new u8(t[0].s + 1);
v[t[0].s] = 1;
return { t: v, l: 1 };
}
t.sort(function(a, b) {
return a.f - b.f;
});
t.push({ s: -1, f: 25001 });
var l = t[0], r = t[1], i0 = 0, i1 = 1, i22 = 2;
t[0] = { s: -1, f: l.f + r.f, l, r };
while (i1 != s - 1) {
l = t[t[i0].f < t[i22].f ? i0++ : i22++];
r = t[i0 != i1 && t[i0].f < t[i22].f ? i0++ : i22++];
t[i1++] = { s: -1, f: l.f + r.f, l, r };
}
var maxSym = t2[0].s;
for (var i2 = 1;i2 < s; ++i2) {
if (t2[i2].s > maxSym)
maxSym = t2[i2].s;
}
var tr = new u16(maxSym + 1);
var mbt = ln(t[i1 - 1], tr, 0);
if (mbt > mb) {
var i2 = 0, dt = 0;
var lft = mbt - mb, cst = 1 << lft;
t2.sort(function(a, b) {
return tr[b.s] - tr[a.s] || a.f - b.f;
});
for (;i2 < s; ++i2) {
var i2_1 = t2[i2].s;
if (tr[i2_1] > mb) {
dt += cst - (1 << mbt - tr[i2_1]);
tr[i2_1] = mb;
} else
break;
}
dt >>= lft;
while (dt > 0) {
var i2_2 = t2[i2].s;
if (tr[i2_2] < mb)
dt -= 1 << mb - tr[i2_2]++ - 1;
else
++i2;
}
for (;i2 >= 0 && dt; --i2) {
var i2_3 = t2[i2].s;
if (tr[i2_3] == mb) {
--tr[i2_3];
++dt;
}
}
mbt = mb;
}
return { t: new u8(tr), l: mbt };
};
var ln = function(n, l, d) {
return n.s == -1 ? Math.max(ln(n.l, l, d + 1), ln(n.r, l, d + 1)) : l[n.s] = d;
};
var lc = function(c) {
var s = c.length;
while (s && !c[--s])
;
var cl = new u16(++s);
var cli = 0, cln = c[0], cls = 1;
var w = function(v) {
cl[cli++] = v;
};
for (var i2 = 1;i2 <= s; ++i2) {
if (c[i2] == cln && i2 != s)
++cls;
else {
if (!cln && cls > 2) {
for (;cls > 138; cls -= 138)
w(32754);
if (cls > 2) {
w(cls > 10 ? cls - 11 << 5 | 28690 : cls - 3 << 5 | 12305);
cls = 0;
}
} else if (cls > 3) {
w(cln), --cls;
for (;cls > 6; cls -= 6)
w(8304);
if (cls > 2)
w(cls - 3 << 5 | 8208), cls = 0;
}
while (cls--)
w(cln);
cls = 1;
cln = c[i2];
}
}
return { c: cl.subarray(0, cli), n: s };
};
var clen = function(cf, cl) {
var l = 0;
for (var i2 = 0;i2 < cl.length; ++i2)
l += cf[i2] * cl[i2];
return l;
};
var wfblk = function(out, pos, dat) {
var s = dat.length;
var o = shft(pos + 2);
out[o] = s & 255;
out[o + 1] = s >> 8;
out[o + 2] = out[o] ^ 255;
out[o + 3] = out[o + 1] ^ 255;
for (var i2 = 0;i2 < s; ++i2)
out[o + i2 + 4] = dat[i2];
return (o + 4 + s) * 8;
};
var wblk = function(dat, out, final, syms, lf, df, eb, li, bs, bl, p) {
wbits(out, p++, final);
++lf[256];
var _a2 = hTree(lf, 15), dlt = _a2.t, mlb = _a2.l;
var _b2 = hTree(df, 15), ddt = _b2.t, mdb = _b2.l;
var _c = lc(dlt), lclt = _c.c, nlc = _c.n;
var _d = lc(ddt), lcdt = _d.c, ndc = _d.n;
var lcfreq = new u16(19);
for (var i2 = 0;i2 < lclt.length; ++i2)
++lcfreq[lclt[i2] & 31];
for (var i2 = 0;i2 < lcdt.length; ++i2)
++lcfreq[lcdt[i2] & 31];
var _e = hTree(lcfreq, 7), lct = _e.t, mlcb = _e.l;
var nlcc = 19;
for (;nlcc > 4 && !lct[clim[nlcc - 1]]; --nlcc)
;
var flen = bl + 5 << 3;
var ftlen = clen(lf, flt) + clen(df, fdt) + eb;
var dtlen = clen(lf, dlt) + clen(df, ddt) + eb + 14 + 3 * nlcc + clen(lcfreq, lct) + 2 * lcfreq[16] + 3 * lcfreq[17] + 7 * lcfreq[18];
if (bs >= 0 && flen <= ftlen && flen <= dtlen)
return wfblk(out, p, dat.subarray(bs, bs + bl));
var lm, ll, dm, dl;
wbits(out, p, 1 + (dtlen < ftlen)), p += 2;
if (dtlen < ftlen) {
lm = hMap(dlt, mlb, 0), ll = dlt, dm = hMap(ddt, mdb, 0), dl = ddt;
var llm = hMap(lct, mlcb, 0);
wbits(out, p, nlc - 257);
wbits(out, p + 5, ndc - 1);
wbits(out, p + 10, nlcc - 4);
p += 14;
for (var i2 = 0;i2 < nlcc; ++i2)
wbits(out, p + 3 * i2, lct[clim[i2]]);
p += 3 * nlcc;
var lcts = [lclt, lcdt];
for (var it = 0;it < 2; ++it) {
var clct = lcts[it];
for (var i2 = 0;i2 < clct.length; ++i2) {
var len = clct[i2] & 31;
wbits(out, p, llm[len]), p += lct[len];
if (len > 15)
wbits(out, p, clct[i2] >> 5 & 127), p += clct[i2] >> 12;
}
}
} else {
lm = flm, ll = flt, dm = fdm, dl = fdt;
}
for (var i2 = 0;i2 < li; ++i2) {
var sym = syms[i2];
if (sym > 255) {
var len = sym >> 18 & 31;
wbits16(out, p, lm[len + 257]), p += ll[len + 257];
if (len > 7)
wbits(out, p, sym >> 23 & 31), p += fleb[len];
var dst = sym & 31;
wbits16(out, p, dm[dst]), p += dl[dst];
if (dst > 3)
wbits16(out, p, sym >> 5 & 8191), p += fdeb[dst];
} else {
wbits16(out, p, lm[sym]), p += ll[sym];
}
}
wbits16(out, p, lm[256]);
return p + ll[256];
};
var deo = /* @__PURE__ */ new i32([65540, 131080, 131088, 131104, 262176, 1048704, 1048832, 2114560, 2117632]);
var et = /* @__PURE__ */ new u8(0);
var dflt = function(dat, lvl, plvl, pre, post, st) {
var s = st.z || dat.length;
var o = new u8(pre + s + 5 * (1 + Math.ceil(s / 7000)) + post);
var w = o.subarray(pre, o.length - post);
var lst = st.l;
var pos = (st.r || 0) & 7;
if (lvl) {
if (pos)
w[0] = st.r >> 3;
var opt = deo[lvl - 1];
var n = opt >> 13, c = opt & 8191;
var msk_1 = (1 << plvl) - 1;
var prev = st.p || new u16(32768), head = st.h || new u16(msk_1 + 1);
var bs1_1 = Math.ceil(plvl / 3), bs2_1 = 2 * bs1_1;
var hsh = function(i3) {
return (dat[i3] ^ dat[i3 + 1] << bs1_1 ^ dat[i3 + 2] << bs2_1) & msk_1;
};
var syms = new i32(25000);
var lf = new u16(288), df = new u16(32);
var lc_1 = 0, eb = 0, i2 = st.i || 0, li = 0, wi = st.w || 0, bs = 0;
for (;i2 + 2 < s; ++i2) {
var hv = hsh(i2);
var imod = i2 & 32767, pimod = head[hv];
prev[imod] = pimod;
head[hv] = imod;
if (wi <= i2) {
var rem = s - i2;
if ((lc_1 > 7000 || li > 24576) && (rem > 423 || !lst)) {
pos = wblk(dat, w, 0, syms, lf, df, eb, li, bs, i2 - bs, pos);
li = lc_1 = eb = 0, bs = i2;
for (var j = 0;j < 286; ++j)
lf[j] = 0;
for (var j = 0;j < 30; ++j)
df[j] = 0;
}
var l = 2, d = 0, ch_1 = c, dif = imod - pimod & 32767;
if (rem > 2 && hv == hsh(i2 - dif)) {
var maxn = Math.min(n, rem) - 1;
var maxd = Math.min(32767, i2);
var ml = Math.min(258, rem);
while (dif <= maxd && --ch_1 && imod != pimod) {
if (dat[i2 + l] == dat[i2 + l - dif]) {
var nl = 0;
for (;nl < ml && dat[i2 + nl] == dat[i2 + nl - dif]; ++nl)
;
if (nl > l) {
l = nl, d = dif;
if (nl > maxn)
break;
var mmd = Math.min(dif, nl - 2);
var md = 0;
for (var j = 0;j < mmd; ++j) {
var ti = i2 - dif + j & 32767;
var pti = prev[ti];
var cd = ti - pti & 32767;
if (cd > md)
md = cd, pimod = ti;
}
}
}
imod = pimod, pimod = prev[imod];
dif += imod - pimod & 32767;
}
}
if (d) {
syms[li++] = 268435456 | revfl[l] << 18 | revfd[d];
var lin = revfl[l] & 31, din = revfd[d] & 31;
eb += fleb[lin] + fdeb[din];
++lf[257 + lin];
++df[din];
wi = i2 + l;
++lc_1;
} else {
syms[li++] = dat[i2];
++lf[dat[i2]];
}
}
}
for (i2 = Math.max(i2, wi);i2 < s; ++i2) {
syms[li++] = dat[i2];
++lf[dat[i2]];
}
pos = wblk(dat, w, lst, syms, lf, df, eb, li, bs, i2 - bs, pos);
if (!lst) {
st.r = pos & 7 | w[pos / 8 | 0] << 3;
pos -= 7;
st.h = head, st.p = prev, st.i = i2, st.w = wi;
}
} else {
for (var i2 = st.w || 0;i2 < s + lst; i2 += 65535) {
var e = i2 + 65535;
if (e >= s) {
w[pos / 8 | 0] = lst;
e = s;
}
pos = wfblk(w, pos + 1, dat.subarray(i2, e));
}
st.i = s;
}
return slc(o, 0, pre + shft(pos) + post);
};
var crct = /* @__PURE__ */ function() {
var t = new Int32Array(256);
for (var i2 = 0;i2 < 256; ++i2) {
var c = i2, k = 9;
while (--k)
c = (c & 1 && -306674912) ^ c >>> 1;
t[i2] = c;
}
return t;
}();
var crc = function() {
var c = -1;
return {
p: function(d) {
var cr = c;
for (var i2 = 0;i2 < d.length; ++i2)
cr = crct[cr & 255 ^ d[i2]] ^ cr >>> 8;
c = cr;
},
d: function() {
return ~c;
}
};
};
var dopt = function(dat, opt, pre, post, st) {
if (!st) {
st = { l: 1 };
if (opt.dictionary) {
var dict = opt.dictionary.subarray(-32768);
var newDat = new u8(dict.length + dat.length);
newDat.set(dict);
newDat.set(dat, dict.length);
dat = newDat;
st.w = dict.length;
}
}
return dflt(dat, opt.level == null ? 6 : opt.level, opt.mem == null ? st.l ? Math.ceil(Math.max(8, Math.min(13, Math.log(dat.length))) * 1.5) : 20 : 12 + opt.mem, pre, post, st);
};
var mrg = function(a, b) {
var o = {};
for (var k in a)
o[k] = a[k];
for (var k in b)
o[k] = b[k];
return o;
};
var wbytes = function(d, b, v) {
for (;v; ++b)
d[b] = v, v >>>= 8;
};
var Deflate = /* @__PURE__ */ function() {
function Deflate2(opts, cb) {
if (typeof opts == "function")
cb = opts, opts = {};
this.ondata = cb;
this.o = opts || {};
this.s = { l: 0, i: 32768, w: 32768, z: 32768 };
this.b = new u8(98304);
if (this.o.dictionary) {
var dict = this.o.dictionary.subarray(-32768);
this.b.set(dict, 32768 - dict.length);
this.s.i = 32768 - dict.length;
}
}
Deflate2.prototype.p = function(c, f) {
this.ondata(dopt(c, this.o, 0, 0, this.s), f);
};
Deflate2.prototype.push = function(chunk, final) {
if (!this.ondata)
err(5);
if (this.s.l)
err(4);
var endLen = chunk.length + this.s.z;
if (endLen > this.b.length) {
if (endLen > 2 * this.b.length - 32768) {
var newBuf = new u8(endLen & -32768);
newBuf.set(this.b.subarray(0, this.s.z));
this.b = newBuf;
}
var split = this.b.length - this.s.z;
this.b.set(chunk.subarray(0, split), this.s.z);
this.s.z = this.b.length;
this.p(this.b, false);
this.b.set(this.b.subarray(-32768));
this.b.set(chunk.subarray(split), 32768);
this.s.z = chunk.length - split + 32768;
this.s.i = 32766, this.s.w = 32768;
} else {
this.b.set(chunk, this.s.z);
this.s.z += chunk.length;
}
this.s.l = final & 1;
if (this.s.z > this.s.w + 8191 || final) {
this.p(this.b, final || false);
this.s.w = this.s.i, this.s.i -= 2;
}
if (final) {
this.s = this.o = {};
this.b = et;
}
};
Deflate2.prototype.flush = function(sync) {
if (!this.ondata)
err(5);
if (this.s.l)
err(4);
this.p(this.b, false);
this.s.w = this.s.i, this.s.i -= 2;
if (sync) {
var c = new u8(6);
c[0] = this.s.r >> 3;
var ep = wfblk(c, this.s.r, et);
this.s.r = 0;
this.ondata(c.subarray(0, ep >> 3), false);
}
};
return Deflate2;
}();
var te = typeof TextEncoder != "undefined" && /* @__PURE__ */ new TextEncoder;
var td = typeof TextDecoder != "undefined" && /* @__PURE__ */ new TextDecoder;
var tds = 0;
try {
td.decode(et, { stream: true });
tds = 1;
} catch (e) {}
function strToU8(str2, latin1) {
if (latin1) {
var ar_1 = new u8(str2.length);
for (var i2 = 0;i2 < str2.length; ++i2)
ar_1[i2] = str2.charCodeAt(i2);
return ar_1;
}
if (te)
return te.encode(str2);
var l = str2.length;
var ar = new u8(str2.length + (str2.length >> 1));
var ai = 0;
var w = function(v) {
ar[ai++] = v;
};
for (var i2 = 0;i2 < l; ++i2) {
if (ai + 5 > ar.length) {
var n = new u8(ai + 8 + (l - i2 << 1));
n.set(ar);
ar = n;
}
var c = str2.charCodeAt(i2);
if (c < 128 || latin1)
w(c);
else if (c < 2048)
w(192 | c >> 6), w(128 | c & 63);
else if (c > 55295 && c < 57344)
c = 65536 + (c & 1023 << 10) | str2.charCodeAt(++i2) & 1023, w(240 | c >> 18), w(128 | c >> 12 & 63), w(128 | c >> 6 & 63), w(128 | c & 63);
else
w(224 | c >> 12), w(128 | c >> 6 & 63), w(128 | c & 63);
}
return slc(ar, 0, ai);
}
var dbf = function(l) {
return l == 1 ? 3 : l < 6 ? 2 : l == 9 ? 1 : 0;
};
var exfl = function(ex) {
var le = 0;
if (ex) {
for (var k in ex) {
var l = ex[k].length;
if (l > 65535)
err(9);
le += l + 4;
}
}
return le;
};
var wzh = function(d, b, f, fn, u, c, ce, co) {
var fl2 = fn.length, ex = f.extra, col = co && co.length;
var exl = exfl(ex);
wbytes(d, b, ce != null ? 33639248 : 67324752), b += 4;
if (ce != null)
d[b++] = 20, d[b++] = f.os;
d[b] = 20, b += 2;
d[b++] = f.flag << 1 | (c < 0 && 8), d[b++] = u && 8;
d[b++] = f.compression & 255, d[b++] = f.compression >> 8;
var dt = new Date(f.mtime == null ? Date.now() : f.mtime), y = dt.getFullYear() - 1980;
if (y < 0 || y > 119)
err(10);
wbytes(d, b, y << 25 | dt.getMonth() + 1 << 21 | dt.getDate() << 16 | dt.getHours() << 11 | dt.getMinutes() << 5 | dt.getSeconds() >> 1), b += 4;
if (c != -1) {
wbytes(d, b, f.crc);
wbytes(d, b + 4, c < 0 ? -c - 2 : c);
wbytes(d, b + 8, f.size);
}
wbytes(d, b + 12, fl2);
wbytes(d, b + 14, exl), b += 16;
if (ce != null) {
wbytes(d, b, col);
wbytes(d, b + 6, f.attrs);
wbytes(d, b + 10, ce), b += 14;
}
d.set(fn, b);
b += fl2;
if (exl) {
for (var k in ex) {
var exf = ex[k], l = exf.length;
wbytes(d, b, +k);
wbytes(d, b + 2, l);
d.set(exf, b + 4), b += 4 + l;
}
}
if (col)
d.set(co, b), b += col;
return b;
};
var wzf = function(o, b, c, d, e) {
wbytes(o, b, 101010256);
wbytes(o, b + 8, c);
wbytes(o, b + 10, c);
wbytes(o, b + 12, d);
wbytes(o, b + 16, e);
};
var ZipPassThrough = /* @__PURE__ */ function() {
function ZipPassThrough2(filename) {
this.filename = filename;
this.c = crc();
this.size = 0;
this.compression = 0;
}
ZipPassThrough2.prototype.process = function(chunk, final) {
this.ondata(null, chunk, final);
};
ZipPassThrough2.prototype.push = function(chunk, final) {
if (!this.ondata)
err(5);
this.c.p(chunk);
this.size += chunk.length;
if (final)
this.crc = this.c.d();
this.process(chunk, final || false);
};
return ZipPassThrough2;
}();
var ZipDeflate = /* @__PURE__ */ function() {
function ZipDeflate2(filename, opts) {
var _this = this;
if (!opts)
opts = {};
ZipPassThrough.call(this, filename);
this.d = new Deflate(opts, function(dat, final) {
_this.ondata(null, dat, final);
});
this.compression = 8;
this.flag = dbf(opts.level);
}
ZipDeflate2.prototype.process = function(chunk, final) {
try {
this.d.push(chunk, final);
} catch (e) {
this.ondata(e, null, final);
}
};
ZipDeflate2.prototype.push = function(chunk, final) {
ZipPassThrough.prototype.push.call(this, chunk, final);
};
return ZipDeflate2;
}();
var Zip = /* @__PURE__ */ function() {
function Zip2(cb) {
this.ondata = cb;
this.u = [];
this.d = 1;
}
Zip2.prototype.add = function(file) {
var _this = this;
if (!this.ondata)
err(5);
if (this.d & 2)
this.ondata(err(4 + (this.d & 1) * 8, 0, 1), null, false);
else {
var f = strToU8(file.filename), fl_1 = f.length;
var com = file.comment, o = com && strToU8(com);
var u = fl_1 != file.filename.length || o && com.length != o.length;
var hl_1 = fl_1 + exfl(file.extra) + 30;
if (fl_1 > 65535)
this.ondata(err(11, 0, 1), null, false);
var header = new u8(hl_1);
wzh(header, 0, file, f, u, -1);
var chks_1 = [header];
var pAll_1 = function() {
for (var _i = 0, chks_2 = chks_1;_i < chks_2.length; _i++) {
var chk = chks_2[_i];
_this.ondata(null, chk, false);
}
chks_1 = [];
};
var tr_1 = this.d;
this.d = 0;
var ind_1 = this.u.length;
var uf_1 = mrg(file, {
f,
u,
o,
t: function() {
if (file.terminate)
file.terminate();
},
r: function() {
pAll_1();
if (tr_1) {
var nxt = _this.u[ind_1 + 1];
if (nxt)
nxt.r();
else
_this.d = 1;
}
tr_1 = 1;
}
});
var cl_1 = 0;
file.ondata = function(err2, dat, final) {
if (err2) {
_this.ondata(err2, dat, final);
_this.terminate();
} else {
cl_1 += dat.length;
chks_1.push(dat);
if (final) {
var dd = new u8(16);
wbytes(dd, 0, 134695760);
wbytes(dd, 4, file.crc);
wbytes(dd, 8, cl_1);
wbytes(dd, 12, file.size);
chks_1.push(dd);
uf_1.c = cl_1, uf_1.b = hl_1 + cl_1 + 16, uf_1.crc = file.crc, uf_1.size = file.size;
if (tr_1)
uf_1.r();
tr_1 = 1;
} else if (tr_1)
pAll_1();
}
};
this.u.push(uf_1);
}
};
Zip2.prototype.end = function() {
var _this = this;
if (this.d & 2) {
this.ondata(err(4 + (this.d & 1) * 8, 0, 1), null, true);
return;
}
if (this.d)
this.e();
else
this.u.push({
r: function() {
if (!(_this.d & 1))
return;
_this.u.splice(-1, 1);
_this.e();
},
t: function() {}
});
this.d = 3;
};
Zip2.prototype.e = function() {
var bt = 0, l = 0, tl = 0;
for (var _i = 0, _a2 = this.u;_i < _a2.length; _i++) {
var f = _a2[_i];
tl += 46 + f.f.length + exfl(f.extra) + (f.o ? f.o.length : 0);
}
var out = new u8(tl + 22);
for (var _b2 = 0, _c = this.u;_b2 < _c.length; _b2++) {
var f = _c[_b2];
wzh(out, bt, f, f.f, f.u, -f.c - 2, l, f.o);
bt += 46 + f.f.length + exfl(f.extra) + (f.o ? f.o.length : 0), l += f.b;
}
wzf(out, bt, this.u.length, tl, l);
this.ondata(null, out, true);
this.d = 2;
};
Zip2.prototype.terminate = function() {
for (var _i = 0, _a2 = this.u;_i < _a2.length; _i++) {
var f = _a2[_i];
f.t();
}
this.d = 2;
};
return Zip2;
}();
// src/session-export-shared.ts
var NETXOPS_SESSIONS_EXPORT_PATH = "/api/netxops.sessions.export";
// src/netx/session-export.ts
var COMPRESSION_LEVEL = 6;
var PUSH_CHUNK_CODE_UNITS = 1 << 16;
function resolveSessionPersistence(ctx) {
const fromGet = typeof ctx.get === "function" ? ctx.get("sessionPersistence") : undefined;
const persistence = fromGet ?? ctx.sessionPersistence;
if (!persistence || typeof persistence.list !== "function" || typeof persistence.readRaw !== "function") {
return;
}
return persistence;
}
function resolveSessionStore(ctx) {
const fromGet = typeof ctx.get === "function" ? ctx.get("sessions") : undefined;
const sessions = fromGet ?? ctx.sessions;
if (!sessions || typeof sessions.get !== "function" || typeof sessions.flush !== "function") {
return;
}
return sessions;
}
async function getSessionsExportStatus(ctx, signal) {
const persistence = resolveSessionPersistence(ctx);
if (!persistence) {
return {
available: false,
sessionCount: 0,
supportsRawArtifacts: false,
reasonCode: "no_persistence",
reason: "sessionPersistence unavailable — mount a JSONL session backend (web profile default)"
};
}
if (!persistence.supportsRawArtifacts) {
return {
available: false,
sessionCount: 0,
supportsRawArtifacts: false,
reasonCode: "no_raw_artifacts",
reason: "persistence backend does not expose per-session raw artifacts (SQLite export unsupported)"
};
}
try {
const headers = await persistence.list(signal);
signal?.throwIfAborted();
return {
available: true,
sessionCount: headers.length,
supportsRawArtifacts: true
};
} catch (error) {
return {
available: false,
sessionCount: 0,
supportsRawArtifacts: true,
reasonCode: "list_failed",
reason: error instanceof Error ? error.message : String(error)
};
}
}
function safePathSegment(id) {
const base = String(id || "").replace(/\\/g, "/").split("/").pop() ?? "";
const cleaned = base.replace(/[^A-Za-z0-9._-]/g, "_").replace(/^\.+/, "");
return cleaned || "unnamed";
}
function sessionsExportZipFilename(exportedAt = new Date, host = osHostname()) {
const stamp = [
exportedAt.getUTCFullYear(),
String(exportedAt.getUTCMonth() + 1).padStart(2, "0"),
String(exportedAt.getUTCDate()).padStart(2, "0"),
"-",
String(exportedAt.getUTCHours()).padStart(2, "0"),
String(exportedAt.getUTCMinutes()).padStart(2, "0"),
String(exportedAt.getUTCSeconds()).padStart(2, "0")
].join("");
return `dsh-sessions-${safePathSegment(host)}-${stamp}.zip`;
}
async function flushLiveSession(sessions, id, signal) {
signal?.throwIfAborted();
if (!sessions?.get || !sessions.flush)
return;
const live = sessions.get(id);
if (live === undefined || live === null)
return;
await sessions.flush(live);
signal?.throwIfAborted();
}
async function* sessionsExportEntries(ctx, signal) {
const persistence = resolveSessionPersistence(ctx);
if (!persistence) {
throw new Error("sessionPersistence unavailable");
}
if (!persistence.supportsRawArtifacts) {
throw new Error("persistence backend does not expose per-session raw artifacts");
}
const sessions = resolveSessionStore(ctx);
const headers = await persistence.list(signal);
signal?.throwIfAborted();
const exportedAt = new Date().toISOString();
const host = osHostname();
const included = [];
const skipped = [];
const artifactEntries = [];
for (const header of headers) {
signal?.throwIfAborted();
const id = String(header.id);
try {
await flushLiveSession(sessions, id, signal);
const raw = await persistence.readRaw(id, signal);
signal?.throwIfAborted();
if (raw === undefined) {
skipped.push({ id, reason: "no stored artifact" });
continue;
}
const filename = safePathSegment(raw.filename && raw.filename.length > 0 ? raw.filename : "session.jsonl") || "session.jsonl";
const path = `sessions/${safePathSegment(id)}/${filename}`;
artifactEntries.push({ path, content: raw.content });
included.push({
id,
path,
createdAt: header.createdAt,
cwd: header.cwd,
agentPreset: header.agentPreset,
parentSession: header.parentSession !== undefined ? String(header.parentSession) : undefined,
origin: header.origin
});
} catch (error) {
skipped.push({
id,
reason: error instanceof Error ? error.message : String(error)
});
}
}
const manifest = {
kind: "dsh-netxops-sessions-export",
version: 1,
exportedAt,
hostname: host,
sessionCountListed: headers.length,
sessionCountIncluded: included.length,
sessionCountSkipped: skipped.length,
sessions: included,
skipped
};
yield {
path: "manifest.json",
content: `${JSON.stringify(manifest, null, 2)}
`
};
for (const entry of artifactEntries) {
signal?.throwIfAborted();
yield entry;
}
}
async function pushArtifactChunks(deflate, content, signal) {
const encoder = new TextEncoder;
let offset = 0;
let finalChunk;
do {
signal.throwIfAborted();
let end = Math.min(offset + PUSH_CHUNK_CODE_UNITS, content.length);
if (end < content.length && end - offset > 1) {
const last = content.charCodeAt(end - 1);
if (last >= 55296 && last <= 56319)
end -= 1;
}
finalChunk = end >= content.length;
deflate.push(encoder.encode(content.slice(offset, end)), finalChunk);
offset = end;
} while (!finalChunk);
}
function streamSessionsExportZip(ctx, signal) {
const consumerAbort = new AbortController;
const producerSignal = AbortSignal.any([signal, consumerAbort.signal]);
let zip;
let zipTerminated = false;
const terminateZip = () => {
if (zip === undefined || zipTerminated)
return;
zipTerminated = true;
zip.terminate();
};
return new ReadableStream({
start(controller) {
const archive = new Zip((error, data, final) => {
if (error) {
controller.error(error);
return;
}
if (data.byteLength > 0)
controller.enqueue(data);
if (final)
controller.close();
});
zip = archive;
(async () => {
try {
for await (const entry of sessionsExportEntries(ctx, producerSignal)) {
const deflate = new ZipDeflate(entry.path, { level: COMPRESSION_LEVEL });
archive.add(deflate);
await pushArtifactChunks(deflate, entry.content, producerSignal);
}
archive.end();
} catch (error) {
terminateZip();
controller.error(error instanceof Error ? error : new Error(String(error)));
}
})();
},
cancel(reason) {
consumerAbort.abort(reason instanceof Error ? reason : new Error("sessions export stream cancelled"));
terminateZip();
}
});
}
async function sessionsExportResponse(ctx, request) {
const status = await getSessionsExportStatus(ctx, request.signal);
if (!status.available) {
return new Response(status.reason ?? "sessions export unavailable", {
status: status.supportsRawArtifacts === false && status.reason?.includes("raw artifacts") ? 501 : 500
});
}
const filename = sessionsExportZipFilename();
const body = streamSessionsExportZip(ctx, request.signal);
return new Response(body, {
headers: {
"content-type": "application/zip",
"content-disposition": `attachment; filename="${filename}"`,
"x-netxops-session-count": String(status.sessionCount)
}
});
}
async function sessionsExportHeadResponse(ctx, request) {
const status = await getSessionsExportStatus(ctx, request.signal);
if (!status.available) {
return new Response(null, {
status: status.supportsRawArtifacts === false && status.reason?.includes("raw artifacts") ? 501 : 500,
headers: {
"x-netxops-export-error": status.reason ?? "sessions export unavailable"
}
});
}
const filename = sessionsExportZipFilename();
return new Response(null, {
status: 200,
headers: {
"content-type": "application/zip",
"content-disposition": `attachment; filename="${filename}"`,
"x-netxops-session-count": String(status.sessionCount)
}
});
}
// src/netx/netxops-web-rpc.ts
var NETXOPS_RPC_BODY_MAX = 8 * 1024 * 1024;
var ENDPOINT_SEGMENT_PATTERN = /^[A-Za-z0-9_$.-]+$/;
var INVALID_REQUEST_RPC_ID = "invalid-request";
var LOOPBACK_HOSTNAMES = new Set(["127.0.0.1", "localhost", "::1"]);
function endpointFromPath(channel, pathname) {
if (!pathname.startsWith(`${channel}/`))
return;
const endpoint = pathname.slice(channel.length + 1);
if (endpoint.split("/").some((seg) => seg === "" || seg === "." || seg === ".." || !ENDPOINT_SEGMENT_PATTERN.test(seg))) {
return;
}
return endpoint;
}
function serverResponseJson(rpcId, result) {
return JSON.stringify({ type: "server-response", rpcId, result });
}
function isTrustedLoopbackRequest(req) {
const host = req.headers?.host;
if (!host)
return false;
const hostName = host.split(":")[0];
if (!LOOPBACK_HOSTNAMES.has(hostName ?? ""))
return false;
if (req.headers["sec-fetch-site"] === "cross-site")
return false;
const origin = req.headers.origin;
if (origin === undefined)
return true;
try {
return new URL(origin).host === host;
} catch {
return false;
}
}
function netxopsFetchHandler(channel, handler, log) {
return {
async fetch(request) {
const endpoint = endpointFromPath(channel, new URL(request.url).pathname);
if (request.method !== "POST" || endpoint === undefined) {
return new Response("not found", { status: 404 });
}
const mediaType = request.headers.get("content-type")?.split(";", 1)[0]?.trim().toLowerCase();
if (mediaType !== "application/json") {
return new Response("content type must be application/json", { status: 415 });
}
let body;
try {
body = await request.json();
} catch {
return new Response("body is not JSON", { status: 400 });
}
const row = body;
const rpcId = row && typeof row.rpcId === "string" ? row.rpcId : INVALID_REQUEST_RPC_ID;
const method = row && typeof row.method === "string" ? row.method : null;
if (rpcId === INVALID_REQUEST_RPC_ID || method === null) {
return new Response(serverResponseJson(INVALID_REQUEST_RPC_ID, {
ok: false,
error: { code: "bad-request", message: "invalid client-request message", details: { issues: [] } }
}), { status: 200, headers: { "content-type": "application/json" } });
}
if (method !== endpoint) {
return new Response(serverResponseJson(rpcId, {
ok: false,
error: {
code: "bad-request",
message: `method ${JSON.stringify(method)} does not match endpoint ${JSON.stringify(endpoint)}`,
details: { issues: [] }
}
}), { status: 200, headers: { "content-type": "application/json" } });
}
try {
const result = await handler(endpoint, row?.payload, request.signal);
return new Response(serverResponseJson(rpcId, result), {
status: 200,
headers: { "content-type": "application/json" }
});
} catch (error) {
log.error?.("netxops: rpc %s failed: %s", endpoint, error instanceof Error ? error.message : String(error));
return new Response(`handler failure: ${String(error)}`, { status: 500 });
}
}
};
}
async function httpBridge(req, res, fetchHandler, maxBodyBytes) {
const abort = new AbortController;
res.on("close", () => {
if (!res.writableEnded)
abort.abort();
});
const declaredLen = req.headers["content-length"];
if (declaredLen !== undefined && Number(declaredLen) > maxBodyBytes) {
res.writeHead(413, { connection: "close" });
res.end();
req.destroy();
return;
}
const chunks = [];
let received = 0;
for await (const chunk of req) {
const buffer = chunk;
received += buffer.byteLength;
if (received > maxBodyBytes) {
res.writeHead(413, { connection: "close" });
res.end();
req.destroy();
return;
}
chunks.push(buffer);
}
const url = `http://${req.headers.host ?? "127.0.0.1"}${req.url ?? "/"}`;
const request = new Request(url, {
method: req.method ?? "GET",
headers: Object.fromEntries(Object.entries(req.headers).filter(([, value]) => typeof value === "string")),
...chunks.length > 0 ? { body: Buffer.concat(chunks) } : {},
signal: abort.signal
});
const response = await fetchHandler.fetch(request);
const headers = Object.fromEntries(response.headers.entries());
res.writeHead(response.status, headers);
if (response.body === null) {
res.end();
return;
}
for await (const chunk of response.body) {
if (!res.write(chunk)) {
await new Promise((resolve3) => {
const done = () => {
res.off("drain", done);
res.off("close", done);
resolve3();
};
res.once("drain", done);
res.once("close", done);
});
}
}
res.end();
}
function mountNetxopsWebRoute(ctx, channel, handler) {
const webServer = ctx.webServer;
if (!webServer || typeof webServer.register !== "function")
return null;
const connection = ctx.connection;
const fetchHandler = netxopsFetchHandler(channel, handler, ctx.logger);
const route = {
kind: "prefix",
path: channel,
handler: async (req, res) => {
let rejection;
if (typeof connection?.requestRejection === "function") {
try {
rejection = connection.requestRejection(req);
} catch {
rejection = 403;
}
} else if (!isTrustedLoopbackRequest(req)) {
rejection = 403;
}
if (rejection !== undefined) {
res.writeHead(rejection, { "content-type": "text/plain; charset=utf-8" });
res.end(rejection === 401 ? "unauthorized" : "forbidden");
return;
}
await httpBridge(req, res, fetchHandler, NETXOPS_RPC_BODY_MAX);
}
};
const registered = webServer.register(route);
if (typeof registered === "function") {
return () => {
try {
registered();
} catch {}
};
}
if (registered && typeof registered.then === "function") {
let done = false;
return () => {
if (done)
return;
done = true;
registered.then((dispose) => {
if (typeof dispose === "function")
dispose();
}).catch(() => {});
};
}
return () => {};
}
// src/netx/tools.ts
import { defineTool as defineTool2 } from "@deepseek-ai/dsh-tools";
// src/netx/http.ts
var PROTOCOL_KEY_ZH_TO_EN = {
其他: "Other",
时钟: "Clock",
"OTN/光": "OTN/Optical",
电源: "Power"
};
function localizePayload(lang, data) {
if (!lang.trim().toLowerCase().startsWith("en"))
return data;
const proto = data.protocol_summary;
if (!Array.isArray(proto))
return data;
for (const row of proto) {
if (typeof row !== "object" || row === null || Array.isArray(row))
continue;
const rec = row;
const key = typeof rec.key === "string" ? rec.key : "";
const mapped = PROTOCOL_KEY_ZH_TO_EN[key];
if (mapped !== undefined)
rec.key = mapped;
}
return data;
}
function encodeQuery(params) {
const sp = new URLSearchParams;
for (const [key, value] of Object.entries(params)) {
sp.set(key, String(value));
}
const q = sp.toString();
return q.length > 0 ? `?${q}` : "";
}
function createNetxClient(connection) {
const base = connection.apiUrl.replace(/\/$/, "");
const langParams = () => {
const lang = connection.lang.trim().toLowerCase();
if (lang.startsWith("en"))
return { lang: "en" };
return {};
};
async function request(method, path, options = {}) {
const token = connection.getToken().trim();
if (token.length === 0) {
return {
ok: false,
error: "netx_token_missing",
detail: "Set credential NETX_API_TOKEN (Plugins → Netx Ops or scripts/set-netx-token)."
};
}
const merged = { ...langParams(), ...options.params };
const url = `${base}${path}${encodeQuery(merged)}`;
const timeoutMs = options.timeoutMs ?? connection.timeoutMs;
const controller = new AbortController;
const timer = setTimeout(() => {
controller.abort();
}, timeoutMs);
const onOuterAbort = () => {
controller.abort();
};
options.signal?.addEventListener("abort", onOuterAbort, { once: true });
try {
const headers = {
accept: "application/json",
authorization: `Bearer ${token}`
};
if (options.body !== undefined)
headers["content-type"] = "application/json";
const init = {
method,
headers,
signal: controller.signal
};
if (options.body !== undefined)
init.body = JSON.stringify(options.body);
const resp = await fetch(url, init);
const text = await resp.text();
if (!resp.ok) {
return { ok: false, error: `netx_http_${resp.status}`, detail: text.slice(0, 800) };
}
const data = text.length > 0 ? JSON.parse(text) : {};
if (typeof data === "object" && data !== null && !Array.isArray(data)) {
return { ok: true, data: localizePayload(connection.lang, data) };
}
return { ok: true, data: { raw: data } };
} catch (error) {
const detail = error instanceof Error ? error.message : String(error);
return { ok: false, error: "netx_request_failed", detail: detail.slice(0, 800) };
} finally {
clearTimeout(timer);
options.signal?.removeEventListener("abort", onOuterAbort);
}
}
return {
get(path, params, signal, timeoutMs) {
return request("GET", path, { params, signal, timeoutMs });
},
post(path, body, signal, timeoutMs) {
return request("POST", path, { body, signal, timeoutMs });
},
patch(path, body, signal, timeoutMs) {
return request("PATCH", path, { body, signal, timeoutMs });
}
};
}
function quoteNeId(neId) {
return encodeURIComponent(neId.trim());
}
// src/netx/handlers.ts
var EXEC_MAX_COMMANDS = 5;
var UME_RAW_FIELD_PRESETS = {
brief: [
"alarm_alarm_key",
"alarm_host_name",
"alarm_perceived_severity",
"alarm_event_type",
"alarm_last_seen_at",
"ne_host_name",
"ne_user_label",
"ne_ne_name",
"ne_ip_address",
"ne_exists"
],
evidence: [
"alarm_alarm_key",
"alarm_host_name",
"alarm_object_name",
"alarm_event_type",
"alarm_native_probable_cause",
"alarm_perceived_severity",
"alarm_is_cleared",
"alarm_time_created",
"alarm_last_seen_at",
"ne_host_name",
"ne_user_label",
"ne_ne_name",
"ne_ip_address",
"ne_connection_status",
"ne_exists"
],
ne_debug: [
"alarm_alarm_key",
"alarm_ne_id",
"alarm_perceived_severity",
"alarm_last_seen_at",
"ne_user_label",
"ne_ne_name",
"ne_ip_address",
"ne_ipv6_address",
"ne_device_level",
"ne_host_name",
"ne_connection_status",
"ne_admin_status",
"ne_address_type",
"ne_maintain_status",
"ne_exists"
]
};
function asRecord(value) {
return typeof value === "object" && value !== null && !Array.isArray(value) ? value : {};
}
function str2(args, key, fallback = "") {
const v = args[key];
if (typeof v === "string")
return v;
if (typeof v === "number" || typeof v === "boolean")
return String(v);
return fallback;
}
function nmsOrUme(args, nmsKey, umeKey) {
return str2(args, nmsKey).trim() || str2(args, umeKey).trim();
}
function nmsOrUmeList(args, nmsKey, umeKey) {
const primary = strList(args, nmsKey);
return primary.length > 0 ? primary : strList(args, umeKey);
}
function num2(args, key) {
const v = args[key];
return typeof v === "number" && Number.isFinite(v) ? v : undefined;
}
function bool2(args, key) {
const v = args[key];
return typeof v === "boolean" ? v : undefined;
}
function strList(args, key) {
const v = args[key];
if (!Array.isArray(v))
return [];
return v.map((x2) => String(x2).trim()).filter((x2) => x2.length > 0);
}
function clampInt(value, fallback, min, max) {
const n = value === undefined ? fallback : Math.trunc(value);
return Math.max(min, Math.min(max, n));
}
function putStr(params, args, keys) {
for (const key of keys) {
const v = str2(args, key).trim();
if (v)
params[key] = v;
}
}
async function queryUmeAlarms(client, args, signal) {
let page = clampInt(num2(args, "page"), 1, 1, 2);
const pageSize = clampInt(num2(args, "page_size"), 50, 1, 500);
const params = { page, page_size: pageSize };
putStr(params, args, ["severity", "ne_id", "host_name", "time_from", "time_to"]);
const keyword = str2(args, "keyword").trim();
const neName = str2(args, "ne_name").trim();
if (keyword)
params.keyword = keyword;
else if (neName)
params.keyword = neName;
return client.get("/v1/ume/alarms", params, signal);
}
async function aggregateUmeAlarmsRaw(client, args, signal) {
const params = {};
putStr(params, args, [
"group_by",
"group_by2",
"severity",
"is_cleared",
"ne_id",
"event_type",
"keyword",
"time_from",
"time_to",
"limit"
]);
if ("exclude_missing_host" in args) {
const flag = bool2(args, "exclude_missing_host");
if (flag !== undefined)
params.exclude_missing_host = flag;
}
return client.get("/v1/ume/alarms/aggregate/raw", params, signal);
}
async function aggregateUmeAlarms(client, args, signal) {
if (str2(args, "group_by").trim())
return aggregateUmeAlarmsRaw(client, args, signal);
const topNe = clampInt(num2(args, "top_ne"), 50, 0, 500);
const params = { top_ne: topNe };
if ("exclude_missing_host" in args) {
const flag = bool2(args, "exclude_missing_host");
if (flag !== undefined)
params.exclude_missing_host = flag;
}
putStr(params, args, ["severity", "time_from", "time_to"]);
return client.get("/v1/ume/alarms/aggregate", params, signal);
}
async function runUmeDiagnostics(client, _args, signal) {
return client.get("/v1/ume/diagnostics", undefined, signal);
}
async function queryUmeNeInventory(client, args, signal) {
const params = {
page: clampInt(num2(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt(num2(args, "page_size"), 50, 1, 500)
};
putStr(params, args, ["keyword"]);
return client.get("/v1/ume/inventory/ne", params, signal);
}
async function getUmeNe(client, args, signal) {
const neId = str2(args, "ne_id").trim();
if (!neId)
return { ok: false, error: "ne_id_required", error_code: "ne_id_required" };
return client.get(`/v1/ume/inventory/ne/${quoteNeId(neId)}`, undefined, signal);
}
async function queryUmeAlarmsRaw(client, args, signal) {
const params = {
page: clampInt(num2(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt(num2(args, "page_size"), 50, 1, 500)
};
putStr(params, args, [
"severity",
"is_cleared",
"ne_id",
"event_type",
"keyword",
"time_from",
"time_to",
"order_by",
"order"
]);
let fields = strList(args, "select_fields");
if (fields.length === 0) {
const preset = str2(args, "field_preset").trim().toLowerCase();
fields = UME_RAW_FIELD_PRESETS[preset] ?? [];
}
if (fields.length > 0)
params.select_fields = fields.join(",");
return client.get("/v1/ume/alarms/raw", params, signal);
}
async function listUmeAlarmFields(client, _args, signal) {
return client.get("/v1/ume/alarms/fields", undefined, signal);
}
async function sqlQueryUme(client, args, signal) {
const sql = str2(args, "sql").trim();
if (!sql)
return { ok: false, error: "sql_required" };
const limit = clampInt(num2(args, "limit"), 200, 1, 2000);
const statementTimeoutMs = clampInt(num2(args, "statement_timeout_ms"), 0, 0, 30000);
return client.post("/v1/sql/ume_query", {
sql,
limit,
statement_timeout_ms: statementTimeoutMs
}, signal, 60000);
}
async function listManagedNe(client, args, signal) {
const keyword = str2(args, "keyword").trim();
const vendor = str2(args, "vendor").trim();
const connectStatus = str2(args, "connect_status").trim();
if (!(keyword || vendor || connectStatus)) {
return { ok: false, error: "managed_ne_filter_required", error_code: "managed_ne_filter_required" };
}
if (keyword && keyword.length < 2) {
return { ok: false, error: "managed_ne_keyword_too_short", error_code: "managed_ne_keyword_too_short" };
}
const params = {
page: clampInt(num2(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt(num2(args, "page_size"), 20, 1, 100)
};
if (keyword)
params.keyword = keyword;
if (vendor)
params.vendor = vendor;
if (connectStatus)
params.connect_status = connectStatus;
return client.get("/v1/managed-ne", params, signal);
}
async function getManagedNe(client, args, signal) {
const neId = (str2(args, "ne_id") || str2(args, "managed_ne_id") || str2(args, "id")).trim();
if (!neId) {
return {
ok: false,
error: "ne_id_required",
error_code: "ne_id_required",
hint: "Pass managed NE id from listManagedNe/listCliTargets (source=managed). For NMS inventory UUIDs use execManagedNe(nms_ne_id=...) or getNmsNe, not getManagedNe.",
example: { ne_id: "<managed-ne-uuid-from-listManagedNe>" }
};
}
const out = await client.get(`/v1/managed-ne/${quoteNeId(neId)}`, undefined, signal);
if (out.ok === false) {
const detail = `${str2(out, "detail")}${str2(out, "error")}`.toLowerCase();
if (detail.includes("404") || detail.includes("not_found") || detail.includes("not found") || out.error === "netx_http_404") {
return {
...out,
hint: "Managed NE not found for this ne_id. Call listManagedNe(keyword=...) or listCliTargets(source=managed) first. If this is an NMS inventory id, use execManagedNe(nms_ne_id=...) / getNmsNe instead of getManagedNe."
};
}
}
return out;
}
async function execManagedNe(client, args, signal) {
const targetsRaw = args.targets;
const neIds = strList(args, "ne_ids");
const umeNeIds = nmsOrUmeList(args, "nms_ne_ids", "ume_ne_ids");
const sharedCommands = strList(args, "commands");
const multi = Array.isArray(targetsRaw) && targetsRaw.length > 0 || neIds.length > 0 || umeNeIds.length > 0;
if (multi) {
const body2 = {};
if (Array.isArray(targetsRaw) && targetsRaw.length > 0) {
const cleaned = [];
for (const t of targetsRaw) {
if (typeof t !== "object" || t === null || Array.isArray(t))
continue;
const row = t;
const item = {};
const neId2 = str2(row, "ne_id").trim();
const umeNeId2 = nmsOrUme(row, "nms_ne_id", "ume_ne_id");
if (neId2)
item.ne_id = neId2;
if (umeNeId2)
item.ume_ne_id = umeNeId2;
const cmds = Array.isArray(row.commands) ? row.commands.map((c) => String(c).trim()).filter((c) => c.length > 0) : [];
if (cmds.length > 0)
item.commands = cmds;
if (Object.keys(item).length > 0)
cleaned.push(item);
}
body2.targets = cleaned;
}
if (neIds.length > 0)
body2.ne_ids = neIds;
if (umeNeIds.length > 0)
body2.ume_ne_ids = umeNeIds;
if (sharedCommands.length > 0) {
if (sharedCommands.length > EXEC_MAX_COMMANDS) {
return { ok: false, error: "too_many_commands", error_code: "too_many_commands" };
}
body2.commands = sharedCommands;
}
body2.read_timeout_sec = clampInt(num2(args, "read_timeout_sec"), 60, 10, 120);
const concurrency = num2(args, "concurrency");
if (concurrency !== undefined)
body2.concurrency = clampInt(concurrency, 4, 1, 8);
const out2 = await client.post("/v1/managed-ne/exec-batch", body2, signal, 600000);
if (out2.ok !== true)
return out2;
const data2 = asRecord(out2.data);
if (data2.ok === false) {
return { ok: false, data: data2, error: str2(data2, "error", "exec_batch_failed") };
}
return { ok: true, data: data2 };
}
const neId = str2(args, "ne_id").trim();
const umeNeId = nmsOrUme(args, "nms_ne_id", "ume_ne_id");
if (Boolean(neId) === Boolean(umeNeId)) {
return {
ok: false,
error: "exactly_one_of_ne_id_or_nms_ne_id_required",
error_code: "exactly_one_of_ne_id_or_nms_ne_id_required",
hint: "For one NE pass ne_id OR nms_ne_id (alias ume_ne_id). For many NEs pass ne_ids / nms_ne_ids with shared commands, or targets[] — one call, concurrent on server."
};
}
if (sharedCommands.length === 0) {
return { ok: false, error: "commands_required", error_code: "commands_required" };
}
if (sharedCommands.length > EXEC_MAX_COMMANDS) {
return { ok: false, error: "too_many_commands", error_code: "too_many_commands" };
}
const body = {
commands: sharedCommands,
read_timeout_sec: clampInt(num2(args, "read_timeout_sec"), 60, 10, 120)
};
if (neId)
body.ne_id = neId;
if (umeNeId)
body.ume_ne_id = umeNeId;
const out = await client.post("/v1/managed-ne/exec", body, signal, 300000);
if (out.ok !== true)
return out;
const data = asRecord(out.data);
if (data.ok === false) {
return { ok: false, data, error: str2(data, "error", "exec_failed") };
}
return { ok: true, data };
}
async function listCliTargets(client, args, signal) {
const params = {
page: clampInt(num2(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt(num2(args, "page_size"), 50, 1, 500)
};
putStr(params, args, ["source", "keyword"]);
return client.get("/v1/cli/targets", params, signal);
}
async function findTopologyPaths(client, args, signal) {
const fromUid = nmsOrUme(args, "from_nms_ne_id", "from_ume_ne_id");
const fromMid = str2(args, "from_managed_ne_id").trim();
const toUid = nmsOrUme(args, "to_nms_ne_id", "to_ume_ne_id");
const toMid = str2(args, "to_managed_ne_id").trim();
if (Boolean(fromUid) === Boolean(fromMid)) {
return { ok: false, error: "exactly_one_of_from_nms_ne_id_or_from_managed_ne_id_required" };
}
if (Boolean(toUid) === Boolean(toMid)) {
return { ok: false, error: "exactly_one_of_to_nms_ne_id_or_to_managed_ne_id_required" };
}
let detail = str2(args, "detail", "summary").trim().toLowerCase() || "summary";
if (detail !== "summary" && detail !== "full")
detail = "summary";
const body = {
max_paths: clampInt(num2(args, "max_paths"), 3, 1, 10),
max_hops: clampInt(num2(args, "max_hops"), 6, 1, 12),
layer: str2(args, "layer", "physical").trim() || "physical",
detail
};
if (fromUid)
body.from_ume_ne_id = fromUid;
else
body.from_managed_ne_id = fromMid;
if (toUid)
body.to_ume_ne_id = toUid;
else
body.to_managed_ne_id = toMid;
return client.post("/v1/topology/fabric/paths", body, signal, 30000);
}
// src/netx/topology-handlers.ts
function asRecord2(value) {
return typeof value === "object" && value !== null && !Array.isArray(value) ? value : {};
}
function str3(args, key, fallback = "") {
const v = args[key];
if (typeof v === "string")
return v;
if (typeof v === "number" || typeof v === "boolean")
return String(v);
return fallback;
}
function num3(args, key) {
const v = args[key];
return typeof v === "number" && Number.isFinite(v) ? v : undefined;
}
function bool3(args, key) {
const v = args[key];
return typeof v === "boolean" ? v : undefined;
}
function strList2(args, key) {
const v = args[key];
if (!Array.isArray(v))
return [];
return v.map((x2) => String(x2).trim()).filter((x2) => x2.length > 0);
}
function clampInt2(value, fallback, min, max) {
const n = value === undefined ? fallback : Math.trunc(value);
return Math.max(min, Math.min(max, n));
}
function unwrap(out) {
if (out.ok !== true)
return out;
const data = asRecord2(out.data);
if (Object.keys(data).length === 0)
return { ok: true, data: out.data };
return { ok: true, ...data, data };
}
function filterFields(args) {
const out = {};
for (const key of ["keyword", "role", "vendor", "link_status"]) {
const v = str3(args, key).trim();
if (v)
out[key] = v;
}
return out;
}
function edgeEndpoints(edge) {
const a = str3(edge, "a_node_id") || str3(edge, "a");
const b = str3(edge, "b_node_id") || str3(edge, "b");
return [a.trim(), b.trim()];
}
function collapseEdgesToLinks(edges, includeNames = false) {
const buckets = new Map;
for (const raw of edges) {
if (!raw || typeof raw !== "object" || Array.isArray(raw))
continue;
const e = raw;
const [a, b] = edgeEndpoints(e);
if (!a || !b || a === b)
continue;
const lo = a < b ? a : b;
const hi = a < b ? b : a;
const key = `${lo}\x00${hi}`;
const row = buckets.get(key) ?? {
a_node_id: lo,
b_node_id: hi,
link_count: 0
};
row.link_count = Number(row.link_count || 0) + 1;
if (includeNames && !row.a_name) {
if (a === lo) {
row.a_name = str3(e, "a_name");
row.b_name = str3(e, "b_name");
} else {
row.a_name = str3(e, "b_name");
row.b_name = str3(e, "a_name");
}
}
buckets.set(key, row);
}
return [...buckets.values()];
}
function summarizeViewGraph(graph, sample = 20) {
const nodes = Array.isArray(graph.nodes) ? graph.nodes : [];
const edges = Array.isArray(graph.edges) ? graph.edges : Array.isArray(graph.links) ? graph.links : [];
const sampleNodes = nodes.slice(0, Math.max(0, sample)).map((n) => {
const row = asRecord2(n);
return {
id: str3(row, "id") || str3(row, "fabric_node_id"),
name: str3(row, "name"),
x: row.x,
y: row.y,
level: row.level,
role: row.role
};
});
return {
ok: true,
view_id: str3(graph, "id") || str3(graph, "view_id"),
node_count: nodes.length,
edge_count: edges.length,
link_count: collapseEdgesToLinks(edges).length,
links: collapseEdgesToLinks(edges),
sample_nodes: sampleNodes,
detail: "summary"
};
}
function layoutRecipeUnavailable(action) {
return {
ok: false,
error: "layout_recipe_requires_netx_topology_mcp",
action,
hint: "Canvas CRUD/query and move_nodes work in dsh-netxops. Dual-unit / orbit / polish recipes still need the netx-topology MCP layout engine (or enable that MCP alongside)."
};
}
async function getTopologyTree(client, args, signal) {
const out = unwrap(await client.get("/v1/topology/tree", undefined, signal));
if (out.ok !== true)
return out;
const compact = bool3(args, "compact") !== false;
const maxDepth = num3(args, "max_depth");
if (!compact && maxDepth === undefined)
return out;
return { ...out, compact, max_depth: maxDepth ?? null };
}
async function getTopologyView(client, args, signal) {
const viewId = str3(args, "view_id").trim();
if (!viewId)
return { ok: false, error: "view_id_required" };
const out = unwrap(await client.get(`/v1/topology/views/${encodeURIComponent(viewId)}`, undefined, signal, 120000));
if (out.ok !== true)
return out;
const detail = str3(args, "detail", "summary").trim().toLowerCase() || "summary";
if (detail === "full")
return { ...out, detail: "full" };
return summarizeViewGraph(out, clampInt2(num3(args, "sample"), 20, 0, 200));
}
async function createTopologyFolder(client, args, signal) {
const name = str3(args, "name").trim();
if (!name)
return { ok: false, error: "name_required" };
const body = { name };
const parentId = str3(args, "parent_id").trim();
if (parentId)
body.parent_id = parentId;
const locale = str3(args, "locale").trim();
if (locale)
body.locale = locale;
if (num3(args, "sort_order") !== undefined)
body.sort_order = Math.trunc(num3(args, "sort_order"));
return unwrap(await client.post("/v1/topology/folders", body, signal));
}
async function addTopologyViewNodes(client, args, signal) {
const viewId = str3(args, "view_id").trim();
if (!viewId)
return { ok: false, error: "view_id_required" };
if (strList2(args, "managed_ne_ids").length || strList2(args, "ume_ne_ids").length) {
return {
ok: false,
error: "fabric_nodes_only",
detail: "Use keyword/role/vendor/link_status or fabric_node_ids; never managed/UME ids."
};
}
const filters = filterFields(args);
const fabricIds = strList2(args, "fabric_node_ids");
if (Object.keys(filters).length === 0 && fabricIds.length === 0) {
return {
ok: false,
error: "filter_or_fabric_node_ids_required",
detail: "Pass keyword/role/vendor/link_status (preferred) or fabric_node_ids."
};
}
if (num3(args, "max_nodes") !== undefined) {
const got = unwrap(await client.get(`/v1/topology/views/${encodeURIComponent(viewId)}`, undefined, signal));
if (got.ok === true) {
const data = asRecord2(got.data);
const filt = asRecord2(got.filter ?? data.filter);
const membership = asRecord2(filt.membership ?? {});
membership.max_nodes = clampInt2(num3(args, "max_nodes"), 2000, 1, 2000);
filt.membership = membership;
await client.patch(`/v1/topology/views/${encodeURIComponent(viewId)}`, { filter: filt }, signal);
}
}
const layout = str3(args, "layout", "grid").trim() || "grid";
const body = {
managed_ne_ids: [],
layout,
...filters
};
if (fabricIds.length)
body.fabric_node_ids = fabricIds;
if (num3(args, "limit") !== undefined)
body.limit = clampInt2(num3(args, "limit"), 500, 1, 2000);
if (num3(args, "offset") !== undefined)
body.offset = clampInt2(num3(args, "offset"), 0, 0, Number.MAX_SAFE_INTEGER);
return unwrap(await client.post(`/v1/topology/views/${encodeURIComponent(viewId)}/nodes`, body, signal, 180000));
}
async function removeTopologyViewNodes(client, args, signal) {
const viewId = str3(args, "view_id").trim();
if (!viewId)
return { ok: false, error: "view_id_required" };
const body = { ...filterFields(args) };
const fabricIds = strList2(args, "fabric_node_ids");
if (fabricIds.length)
body.fabric_node_ids = fabricIds;
return unwrap(await client.post(`/v1/topology/views/${encodeURIComponent(viewId)}/nodes/remove`, body, signal));
}
async function copyTopologyViewNodes(client, args, signal) {
const sourceId = str3(args, "source_view_id").trim();
const targetId = str3(args, "target_view_id").trim();
if (!sourceId || !targetId) {
return { ok: false, error: "source_view_id_and_target_view_id_required" };
}
const source = unwrap(await client.get(`/v1/topology/views/${encodeURIComponent(sourceId)}`, undefined, signal, 120000));
if (source.ok !== true)
return source;
const nodes = Array.isArray(source.nodes) ? source.nodes : [];
const limit = num3(args, "limit");
const selected = typeof limit === "number" ? nodes.slice(0, clampInt2(limit, nodes.length, 1, 2000)) : nodes;
const fabricIds = selected.map((n) => {
const row = asRecord2(n);
return str3(row, "id") || str3(row, "fabric_node_id");
}).filter(Boolean);
if (bool3(args, "dry_run") === true) {
return { ok: true, dry_run: true, would_copy: fabricIds.length, source_view_id: sourceId, target_view_id: targetId };
}
if (bool3(args, "clear_target") === true) {
await client.post(`/v1/topology/views/${encodeURIComponent(targetId)}/nodes/remove`, {
fabric_node_ids: "ALL",
clear_all: true
}, signal);
}
if (fabricIds.length === 0) {
return { ok: true, added: 0, source_view_id: sourceId, target_view_id: targetId };
}
const add = unwrap(await client.post(`/v1/topology/views/${encodeURIComponent(targetId)}/nodes`, { fabric_node_ids: fabricIds, layout: "keep", managed_ne_ids: [] }, signal, 180000));
if (add.ok !== true)
return add;
if (bool3(args, "copy_positions") !== false) {
const ox = num3(args, "offset_x") ?? 0;
const oy = num3(args, "offset_y") ?? 0;
const positions = selected.map((n) => {
const row = asRecord2(n);
const id = str3(row, "id") || str3(row, "fabric_node_id");
return {
fabric_node_id: id,
x: Number(row.x || 0) + ox,
y: Number(row.y || 0) + oy
};
}).filter((p) => p.fabric_node_id);
if (positions.length) {
await client.patch(`/v1/topology/views/${encodeURIComponent(targetId)}/positions`, { positions }, signal, 120000);
}
}
return { ok: true, added: fabricIds.length, source_view_id: sourceId, target_view_id: targetId, ...asRecord2(add) };
}
async function updateTopologyViewPositions(client, args, signal) {
const viewId = str3(args, "view_id").trim();
if (!viewId)
return { ok: false, error: "view_id_required" };
const body = {};
if (Array.isArray(args.positions))
body.positions = args.positions;
const layout = str3(args, "layout").trim();
if (layout)
body.layout = layout;
Object.assign(body, filterFields(args));
for (const key of ["offset_x", "offset_y", "cols", "gap_x", "gap_y"]) {
if (num3(args, key) !== undefined)
body[key] = num3(args, key);
}
const fabricIds = strList2(args, "fabric_node_ids");
if (fabricIds.length)
body.fabric_node_ids = fabricIds;
return unwrap(await client.patch(`/v1/topology/views/${encodeURIComponent(viewId)}/positions`, body, signal, 120000));
}
async function projectTopologyNeighbors(client, args, signal) {
const viewId = str3(args, "view_id").trim();
if (!viewId)
return { ok: false, error: "view_id_required" };
const body = {};
const seeds = strList2(args, "seed_fabric_node_ids").length ? strList2(args, "seed_fabric_node_ids") : strList2(args, "fabric_node_ids");
if (seeds.length)
body.seed_fabric_node_ids = seeds;
const mids = strList2(args, "managed_ne_ids");
if (mids.length)
body.managed_ne_ids = mids;
const region = str3(args, "region_folder_id").trim();
if (region)
body.region_folder_id = region;
const out = unwrap(await client.post(`/v1/topology/views/${encodeURIComponent(viewId)}/project-neighbors`, body, signal, 180000));
if (out.ok !== true)
return out;
const detail = str3(args, "detail", "summary").trim().toLowerCase() || "summary";
if (detail === "full" || detail === "raw" || detail === "graph") {
return { ...out, detail: "full", projected: true };
}
return { ...summarizeViewGraph(out, clampInt2(num3(args, "sample"), 20, 0, 100)), projected: true, view_id: viewId };
}
async function queryTopologyFabricNodes(client, args, signal) {
let mode = str3(args, "mode").trim().toLowerCase();
const q = str3(args, "q").trim();
const keyword = str3(args, "keyword").trim();
if (!mode) {
if (bool3(args, "summary") === true)
mode = "summary";
else if (q)
mode = "search";
else
mode = "list";
}
if (mode === "summary" || mode === "stats" || mode === "count") {
const out2 = unwrap(await client.get("/v1/topology/fabric/summary", undefined, signal));
return out2.ok === true ? { ...out2, mode: "summary" } : out2;
}
if (mode === "search" || mode === "find") {
const needle = q || keyword;
if (!needle)
return { ok: false, error: "q_required", hint: "mode=search needs q (or keyword)." };
return unwrap(await client.get("/v1/topology/fabric/nodes/search", {
q: needle,
page: clampInt2(num3(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt2(num3(args, "page_size") ?? num3(args, "limit"), 50, 1, 200)
}, signal));
}
const params = {
page: clampInt2(num3(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt2(num3(args, "page_size") ?? num3(args, "limit"), 50, 1, 500)
};
for (const key of ["keyword", "role", "level", "level_major", "region_folder_id", "link_status"]) {
const v = str3(args, key).trim() || (key === "keyword" ? q : "");
if (v)
params[key] = v;
}
const out = unwrap(await client.get("/v1/topology/fabric/nodes", params, signal));
return out.ok === true ? { ...out, mode: "list" } : out;
}
async function classifyTopologyFabricNodes(client, args, signal) {
const action = str3(args, "action").trim().toLowerCase();
if (!action)
return { ok: false, error: "action_required" };
if (action === "match") {
const pattern = str3(args, "pattern").trim() || str3(args, "q").trim();
if (!pattern)
return { ok: false, error: "pattern_required" };
return unwrap(await client.post("/v1/topology/fabric/nodes/match", {
pattern,
match_field: str3(args, "match_field", "name").trim() || "name",
sample_limit: clampInt2(num3(args, "sample_limit"), 50, 1, 200)
}, signal));
}
if (action === "tag") {
const body = {
fabric_node_ids: strList2(args, "fabric_node_ids"),
dry_run: bool3(args, "dry_run") === true
};
const pattern = str3(args, "pattern").trim() || str3(args, "q").trim();
if (pattern)
body.pattern = pattern;
if (args.level !== undefined)
body.level = args.level;
const role = str3(args, "role").trim();
if (role)
body.role = role;
const region = str3(args, "region_folder_id").trim();
if (region)
body.region_folder_id = region;
if (bool3(args, "clear_region") === true)
body.clear_region = true;
return unwrap(await client.post("/v1/topology/fabric/nodes/tags/bulk", body, signal));
}
if (action === "patch") {
const nodeId = str3(args, "fabric_node_id").trim() || str3(args, "node_id").trim();
if (!nodeId)
return { ok: false, error: "fabric_node_id_required" };
const body = {};
if (args.level !== undefined)
body.level = args.level;
const role = str3(args, "role").trim();
if (role)
body.role = role;
const region = str3(args, "region_folder_id").trim();
if (region)
body.region_folder_id = region;
if (bool3(args, "clear_region") === true)
body.clear_region = true;
return unwrap(await client.patch(`/v1/topology/fabric/nodes/${encodeURIComponent(nodeId)}/tags`, body, signal));
}
if (action === "unmatched") {
return unwrap(await client.get("/v1/topology/classify/unmatched", {
kind: str3(args, "kind", "any").trim() || "any",
page: clampInt2(num3(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt2(num3(args, "page_size") ?? num3(args, "limit"), 50, 1, 500)
}, signal));
}
if (action === "preview_rules") {
return unwrap(await client.post("/v1/topology/classify/preview", {}, signal));
}
if (action === "apply_rules") {
const params = {};
if (bool3(args, "overwrite_manual") === true)
params.skip_manual = false;
else if (bool3(args, "skip_manual") !== undefined)
params.skip_manual = bool3(args, "skip_manual") !== false;
if (bool3(args, "fill_empty_only") === true)
params.fill_empty_only = true;
return unwrap(await client.post("/v1/topology/classify/apply", {}, signal));
}
if (action === "list_rules") {
return unwrap(await client.get("/v1/topology/classify/rules", undefined, signal));
}
return { ok: false, error: "unknown_action", action };
}
async function queryTopologyNeighborhood(client, args, signal) {
const nodeId = str3(args, "node_id").trim();
if (!nodeId)
return { ok: false, error: "node_id_required" };
const out = unwrap(await client.get("/v1/topology/fabric/neighborhood", {
node_id: nodeId,
depth: clampInt2(num3(args, "depth"), 1, 1, 3),
layer: str3(args, "layer", "physical").trim() || "physical"
}, signal));
if (out.ok !== true)
return out;
const edges = Array.isArray(out.edges) ? out.edges : [];
return { ...out, links: collapseEdgesToLinks(edges) };
}
async function queryTopologyEdges(client, args, signal) {
const params = {
page: clampInt2(num3(args, "page"), 1, 1, Number.MAX_SAFE_INTEGER),
page_size: clampInt2(num3(args, "page_size"), 100, 1, 500),
layer: str3(args, "layer", "physical").trim() || "physical"
};
for (const key of ["node_id", "keyword", "status", "source"]) {
const v = str3(args, key).trim();
if (v)
params[key] = v;
}
const out = unwrap(await client.get("/v1/topology/fabric/edges", params, signal));
if (out.ok !== true)
return out;
const detail = str3(args, "detail", "adjacency").trim().toLowerCase() || "adjacency";
const items = Array.isArray(out.items) ? out.items : Array.isArray(out.edges) ? out.edges : [];
if (detail === "ports")
return { ...out, detail: "ports", items };
const links = collapseEdgesToLinks(items, true);
return { ...out, detail: "adjacency", links, items: undefined };
}
async function suggestSinkHubs(client, args, signal) {
const viewId = str3(args, "source_view_id").trim() || str3(args, "view_id").trim();
if (!viewId)
return { ok: false, error: "source_view_id_required" };
const out = unwrap(await client.get(`/v1/topology/views/${encodeURIComponent(viewId)}`, undefined, signal, 120000));
if (out.ok !== true)
return out;
const nodes = Array.isArray(out.nodes) ? out.nodes : [];
const edges = Array.isArray(out.edges) ? out.edges : [];
const degree = new Map;
for (const raw of edges) {
const [a, b] = edgeEndpoints(asRecord2(raw));
if (!a || !b)
continue;
degree.set(a, (degree.get(a) || 0) + 1);
degree.set(b, (degree.get(b) || 0) + 1);
}
const exclude = new Set([
...strList2(args, "exclude_portal_ids"),
...strList2(args, "exclude_fabric_node_ids")
]);
const pick = clampInt2(num3(args, "pick"), 5, 1, 50);
const hubs = [...degree.entries()].filter(([id]) => !exclude.has(id)).sort((a, b) => b[1] - a[1]).slice(0, pick).map(([fabric_node_id, deg]) => {
const node = nodes.find((n) => {
const row2 = asRecord2(n);
return (str3(row2, "id") || str3(row2, "fabric_node_id")) === fabric_node_id;
});
const row = asRecord2(node);
return {
fabric_node_id,
degree: deg,
name: str3(row, "name"),
level: row.level,
role: row.role
};
});
return {
ok: true,
source_view_id: viewId,
hubs,
hint: "Degree ranking only — full dual_unit-aware suggestSinkHubs lives in netx-topology MCP."
};
}
async function analyzeTopologyViewLayout(client, args, signal) {
const viewId = str3(args, "view_id").trim();
if (!viewId) {
return {
ok: false,
error: "view_id_required",
hint: "Pass view_id. folder_id sampling without view_id needs netx-topology MCP structure analysis."
};
}
const out = unwrap(await client.get(`/v1/topology/views/${encodeURIComponent(viewId)}`, undefined, signal, 120000));
if (out.ok !== true)
return out;
const nodes = Array.isArray(out.nodes) ? out.nodes : [];
const edges = Array.isArray(out.edges) ? out.edges : [];
let minX = Infinity;
let minY = Infinity;
let maxX = -Infinity;
let maxY = -Infinity;
let missingxy = 0;
for (const raw of nodes) {
const row = asRecord2(raw);
const x2 = Number(row.x);
const y = Number(row.y);
if (!Number.isFinite(x2) || !Number.isFinite(y)) {
missingxy += 1;
continue;
}
minX = Math.min(minX, x2);
minY = Math.min(minY, y);
maxX = Math.max(maxX, x2);
maxY = Math.max(maxY, y);
}
const degree = new Map;
for (const raw of edges) {
const [a, b] = edgeEndpoints(asRecord2(raw));
if (!a || !b)
continue;
degree.set(a, (degree.get(a) || 0) + 1);
degree.set(b, (degree.get(b) || 0) + 1);
}
const hubs = [...degree.entries()].sort((a, b) => b[1] - a[1]).slice(0, 10).map(([id, deg]) => ({ fabric_node_id: id, degree: deg }));
return {
ok: true,
view_id: viewId,
detail: str3(args, "detail", "summary") || "summary",
node_count: nodes.length,
edge_count: edges.length,
link_count: collapseEdgesToLinks(edges).length,
missing_xy: missingxy,
bbox: Number.isFinite(minX) ? { minX, minY, maxX, maxY, width: maxX - minX, height: maxY - minY } : null,
hubs,
hint: "Basic graph stats only. Crossing/dual_unit/score.total analysis needs netx-topology MCP."
};
}
async function sinkTopologyDualUnits(_client, args) {
return {
ok: false,
error: "sink_dual_units_requires_netx_topology_mcp",
source_view_id: str3(args, "source_view_id"),
sink_view_id: str3(args, "sink_view_id"),
hint: "sinkTopologyDualUnits needs the dual_unit layout engine from netx-topology MCP. Use layoutTopologyView(action=move_nodes, park=true) for HTTP-only parking, or enable the topology MCP."
};
}
async function layoutTopologyView(client, args, signal) {
if (bool3(args, "catalog") === true) {
return {
ok: true,
catalog: true,
actions: [
"layout",
"layout_dual_unit",
"move_nodes",
"sink_nodes",
"orbit_sweep",
"level_bands",
"polish_crossings",
"clear_edge_hits",
"compact_bbox",
"pull_far_chains",
"align_reference",
"fix_overlaps",
"resolve_overlaps",
"untangle",
"straighten_channels",
"job_status",
"job_cancel"
],
dsh_supported: ["move_nodes", "sink_nodes", "catalog"],
recipes: ["rings", "corridor", "compact", "unstick"],
hint: "Only move_nodes/sink_nodes/catalog run in dsh-netxops; other actions need netx-topology MCP."
};
}
const action = str3(args, "action", "layout").trim().toLowerCase() || "layout";
if (action === "job_status" || action === "job_cancel") {
return {
ok: false,
error: "layout_jobs_not_in_dsh_host",
hint: "Background layout jobs are owned by netx-topology MCP."
};
}
if (action === "move_nodes" || action === "sink_nodes") {
const toId = str3(args, "view_id").trim();
const fromId = str3(args, "source_view_id").trim();
const ids = strList2(args, "fabric_node_ids");
const params = asRecord2(args.params);
const fabricIds = ids.length ? ids : strList2(params, "fabric_node_ids");
if (!toId || !fromId) {
return { ok: false, error: "view_id_and_source_view_id_required" };
}
if (fabricIds.length === 0) {
return { ok: false, error: "fabric_node_ids_required" };
}
const copyPositions = bool3(params, "copy_positions") !== false && bool3(args, "copy_positions") !== false;
const removeFromSource = bool3(params, "remove_from_source") !== false;
const source = unwrap(await client.get(`/v1/topology/views/${encodeURIComponent(fromId)}`, undefined, signal, 120000));
if (source.ok !== true)
return source;
const nodes = Array.isArray(source.nodes) ? source.nodes : [];
const wanted = new Set(fabricIds);
const selected = nodes.filter((n) => {
const row = asRecord2(n);
const id = str3(row, "id") || str3(row, "fabric_node_id");
return wanted.has(id);
});
const add = unwrap(await client.post(`/v1/topology/views/${encodeURIComponent(toId)}/nodes`, { fabric_node_ids: fabricIds, layout: copyPositions ? "keep" : "grid", managed_ne_ids: [] }, signal, 180000));
if (add.ok !== true)
return add;
if (copyPositions && selected.length) {
const ox = Number(params.offset_x || 0);
const oy = Number(params.offset_y || 0);
const positions = selected.map((n) => {
const row = asRecord2(n);
return {
fabric_node_id: str3(row, "id") || str3(row, "fabric_node_id"),
x: Number(row.x || 0) + ox,
y: Number(row.y || 0) + oy
};
}).filter((p) => p.fabric_node_id);
await client.patch(`/v1/topology/views/${encodeURIComponent(toId)}/positions`, { positions }, signal, 120000);
}
if (removeFromSource) {
await client.post(`/v1/topology/views/${encodeURIComponent(fromId)}/nodes/remove`, { fabric_node_ids: fabricIds }, signal);
}
return {
ok: true,
action,
moved: fabricIds.length,
source_view_id: fromId,
view_id: toId,
park: bool3(params, "park") === true || bool3(args, "park") === true
};
}
return layoutRecipeUnavailable(action);
}
// src/netx/tools.ts
var str4 = (description) => ({ type: "string", ...description ? { description } : {} });
var num4 = (description) => ({ type: "number", ...description ? { description } : {} });
var bool4 = (description) => ({ type: "boolean", ...description ? { description } : {} });
var strArr = (description) => ({
type: "array",
items: { type: "string" },
...description ? { description } : {}
});
var anyObj = (description) => ({
type: "object",
additionalProperties: true,
...description ? { description } : {}
});
function renderJson2(_args, value) {
return [{ type: "text", text: JSON.stringify(value, null, 0) }];
}
var jsonOut2 = {
schema: { type: "json" },
render: renderJson2
};
function tool2(name, description, parameters, handler, getClient, timeoutMs) {
return defineTool2({
name,
description,
parameters,
output: jsonOut2,
timeoutMs,
isConcurrencySafe: () => true,
async execute(args, exec) {
const result = await handler(getClient(), args, exec.signal);
if (result.ok === false) {
throw new Error(JSON.stringify(result));
}
return result;
}
});
}
function registerNetxTools(ctx, connection, options) {
const enabledGroups = options.forceGroups ?? groupsForPlane(connection.groups, options.plane, options.only);
const allow = toolNamesForGroups(enabledGroups);
if (allow.size === 0)
return () => {};
const client = createNetxClient({
apiUrl: connection.apiUrl,
lang: connection.lang,
timeoutMs: Math.min(connection.toolCallTimeoutMs, 45000),
getToken: () => getNetxConnection()?.token ?? ""
});
const getClient = () => client;
const t = connection.toolCallTimeoutMs;
const catalog = [
tool2("netx__queryNmsAlarms", "Query NMS current alarms (each row includes host_name). Supports severity/ne_id/host_name/keyword, last_seen time_from/time_to, pagination. Prefer host_name for display; ne_id is for filters only.", {
severity: str4(),
ne_id: str4("Filter only; do not show UUID to users"),
host_name: str4("Filter by NE host_name"),
ne_name: str4("Legacy alias mapped to keyword"),
keyword: str4("Substring on cause/object/event. Examples: LOS, Fiber Break, bandwidth, CRC."),
time_from: str4("ISO time; filters last_seen_at >="),
time_to: str4("ISO time; filters last_seen_at <="),
page: num4(),
page_size: num4()
}, queryUmeAlarms, getClient, t),
tool2("netx__aggregateNmsAlarms", "Aggregate NMS current alarms (by_severity + top by_ne). If group_by is set, routes to aggregateUmeAlarmsRaw. Always filter severity/keyword/time before paging.", {
severity: str4("Optional perceived_severity filter (critical/major/minor/warning)."),
top_ne: num4("Max NE buckets (default 50). Ignored when group_by is set."),
exclude_missing_host: bool4("Omit missing host_name from by_ne."),
time_from: str4(),
time_to: str4(),
group_by: str4("When set, routes to raw aggregation. Prefer alarm_host_name."),
group_by2: str4(),
is_cleared: str4(),
ne_id: str4(),
event_type: str4(),
keyword: str4(),
limit: num4()
}, aggregateUmeAlarms, getClient, t),
tool2("netx__runNmsDiagnostics", "NMS alarm diagnostics: severity, top_event_types, top_alarm_codes, top_ne, protocol buckets, freshness meta.", {}, runUmeDiagnostics, getClient, t),
tool2("netx__queryNmsNeInventory", "Paged NMS NE inventory synced in netx (keyword matches ne_id/ne_name/user_label/ip/host_name).", {
keyword: str4(),
page: num4(),
page_size: num4()
}, queryUmeNeInventory, getClient, t),
tool2("netx__getNmsNe", "Get single NMS NE detail by ne_id (UUID).", {
ne_id: { type: "string", required: true, description: "NMS inventory ne_id (UUID)." }
}, getUmeNe, getClient, t),
tool2("netx__queryNmsAlarmsRaw", "Power query NMS current alarms with full alarm_* + ne_* fields; optional field_preset or select_fields. Use field_preset=evidence for citations.", {
severity: str4(),
is_cleared: str4(),
ne_id: str4(),
event_type: str4(),
keyword: str4(),
time_from: str4(),
time_to: str4(),
order_by: str4("last_seen_at | time_created | perceived_severity | event_type | ne_id"),
order: str4("asc | desc"),
select_fields: strArr(),
field_preset: str4("brief | evidence | ne_debug"),
page: num4(),
page_size: num4()
}, queryUmeAlarmsRaw, getClient, t),
tool2("netx__aggregateNmsAlarmsRaw", "Dynamic aggregation on NMS raw fields (group_by/group_by2); prefer alarm_host_name.", {
group_by: { type: "string", required: true },
group_by2: str4(),
severity: str4(),
is_cleared: str4(),
ne_id: str4(),
event_type: str4(),
keyword: str4(),
time_from: str4(),
time_to: str4(),
exclude_missing_host: bool4(),
limit: num4()
}, aggregateUmeAlarmsRaw, getClient, t),
tool2("netx__listNmsAlarmFields", "List available fields for NMS raw alarm queries.", {}, listUmeAlarmFields, getClient, t),
tool2("netx__sqlQueryNms", "Read-only SELECT on NMS tables (ume_alarms_current/ume_inventory_ne); server enforces limits. Requires sql:query scope.", {
sql: { type: "string", required: true },
limit: num4(),
statement_timeout_ms: num4()
}, sqlQueryUme, getClient, t),
tool2("netx__listManagedNe", "List filtered netx managed NEs (keyword/vendor/connect_status required); use before execManagedNe.", {
keyword: str4(),
vendor: str4(),
connect_status: str4("unknown | testing | pass | fail"),
page: num4(),
page_size: num4()
}, listManagedNe, getClient, t),
tool2("netx__getManagedNe", "Get one managed NE by managed ne_id (from listManagedNe / listCliTargets source=managed). Do NOT pass NMS inventory UUID here.", {
ne_id: str4("Managed NE id"),
managed_ne_id: str4("Alias for ne_id"),
id: str4("Alias for ne_id")
}, getManagedNe, getClient, t),
tool2("netx__execManagedNe", "Run read-only CLI via netx (show/display/ping/traceroute). Single NE: ne_id OR ume_ne_id + commands. Many NEs: ne_ids[]/ume_ne_ids[] + shared commands, or targets[{ume_ne_id|ne_id, commands}]. Do NOT loop one-NE calls for multi-NE work.", {
ne_id: str4(),
nms_ne_id: str4("NMS inventory id; alias ume_ne_id"),
ume_ne_id: str4("Legacy alias of nms_ne_id"),
ne_ids: strArr("Managed NE ids for concurrent batch (shared commands)."),
nms_ne_ids: strArr("NMS inventory ids; alias ume_ne_ids"),
ume_ne_ids: strArr("Legacy alias of nms_ne_ids"),
targets: {
type: "array",
description: "Per-NE command sets: each item is one NE (ne_id OR ume_ne_id) with commands[].",
items: {
type: "object",
additionalProperties: false,
properties: {
ne_id: str4(),
nms_ne_id: str4(),
ume_ne_id: str4(),
commands: strArr()
}
}
},
commands: strArr("Commands for single NE, or shared commands for batch."),
read_timeout_sec: num4("Per-command read timeout (default 60; use 90–120 for slow show)."),
concurrency: num4("Parallel NEs for batch mode (1–8, default 4)."),
async: bool4("oclaw-only async hint; ignored by native REST client.")
}, execManagedNe, getClient, Math.max(t, 300000)),
tool2("netx__listCliTargets", "List CLI-capable targets (managed NE and/or NMS inventory). Call once per session with keyword/source, cache ids, then execManagedNe.", {
source: str4("managed | nms | ume | all"),
keyword: str4(),
page: num4(),
page_size: num4()
}, listCliTargets, getClient, t),
tool2("netx__findTopologyPaths", "Find up to max_paths simple paths between two fabric nodes (common group — native netx, not NMS-bound). For each endpoint provide exactly one of ume_ne_id or managed_ne_id.", {
from_nms_ne_id: str4("NMS inventory id"),
from_ume_ne_id: str4("Legacy alias of from_nms_ne_id"),
from_managed_ne_id: str4(),
to_nms_ne_id: str4("NMS inventory id"),
to_ume_ne_id: str4("Legacy alias of to_nms_ne_id"),
to_managed_ne_id: str4(),
max_paths: num4(),
max_hops: num4(),
layer: str4(),
detail: str4("summary | full")
}, findTopologyPaths, getClient, t),
tool2("netx__getTopologyTree", "Get topology folder tree (nav roots + Root map canvases). Start here before createTopologyFolder.", { compact: bool4(), max_depth: num4() }, getTopologyTree, getClient, t),
tool2("netx__getTopologyView", "Get a topology view by view_id. Default detail=summary with sample_nodes + links[].", {
view_id: { type: "string", required: true },
detail: str4("summary | full"),
sample: num4()
}, getTopologyView, getClient, t),
tool2("netx__createTopologyFolder", "Create topology folders / region canvases. Only way to create canvases (ne:write).", {
name: { type: "string", required: true },
parent_id: str4(),
locale: str4("zh | en"),
sort_order: num4()
}, createTopologyFolder, getClient, t),
tool2("netx__addTopologyViewNodes", "Bulk-place fabric nodes on a view via filters or fabric_node_ids (never managed/UME ids).", {
view_id: { type: "string", required: true },
max_nodes: num4(),
keyword: str4(),
role: str4(),
vendor: str4(),
link_status: str4(),
limit: num4(),
offset: num4(),
fabric_node_ids: strArr(),
layout: str4("grid | keep")
}, addTopologyViewNodes, getClient, t),
tool2("netx__removeTopologyViewNodes", "Remove placements from a view (not fabric) by filters or fabric_node_ids.", {
view_id: { type: "string", required: true },
keyword: str4(),
role: str4(),
vendor: str4(),
link_status: str4(),
fabric_node_ids: strArr()
}, removeTopologyViewNodes, getClient, t),
tool2("netx__copyTopologyViewNodes", "Clone fabric placements from source_view_id onto target_view_id (optional clear_target / copy_positions).", {
source_view_id: { type: "string", required: true },
target_view_id: { type: "string", required: true },
copy_positions: bool4(),
clear_target: bool4(),
offset_x: num4(),
offset_y: num4(),
limit: num4(),
dry_run: bool4()
}, copyTopologyViewNodes, getClient, t),
tool2("netx__updateTopologyViewPositions", "Move nodes on a view via positions[] or layout=grid|offset|stack + filters.", {
view_id: { type: "string", required: true },
positions: {
type: "array",
description: "Manual placements: [{ fabric_node_id, x, y }, …]",
items: {
type: "object",
additionalProperties: false,
properties: {
fabric_node_id: str4(),
x: num4(),
y: num4()
}
}
},
layout: str4("grid | offset | stack"),
keyword: str4(),
role: str4(),
vendor: str4(),
link_status: str4(),
fabric_node_ids: strArr(),
offset_x: num4(),
offset_y: num4()
}, updateTopologyViewPositions, getClient, t),
tool2("netx__projectTopologyNeighbors", "Project existing fabric neighbors of on-view nodes onto the canvas.", {
view_id: { type: "string", required: true },
seed_fabric_node_ids: strArr(),
managed_ne_ids: strArr(),
region_folder_id: str4(),
detail: str4("summary | full"),
sample: num4()
}, projectTopologyNeighbors, getClient, t),
tool2("netx__queryTopologyFabricNodes", "Fabric inventory: mode=summary|list|search (keyword/role/level/region/link_status).", {
mode: str4("summary | list | search"),
q: str4(),
keyword: str4(),
role: str4(),
level: str4(),
level_major: str4(),
region_folder_id: str4(),
link_status: str4(),
page: num4(),
page_size: num4(),
limit: num4(),
summary: bool4()
}, queryTopologyFabricNodes, getClient, t),
tool2("netx__classifyTopologyFabricNodes", "Classify fabric nodes: action=match|tag|patch|unmatched|preview_rules|apply_rules|list_rules.", {
action: { type: "string", required: true },
pattern: str4(),
q: str4(),
match_field: str4(),
sample_limit: num4(),
fabric_node_ids: strArr(),
fabric_node_id: str4(),
node_id: str4(),
level: str4(),
role: str4(),
region_folder_id: str4(),
clear_region: bool4(),
dry_run: bool4(),
kind: str4(),
page: num4(),
page_size: num4(),
skip_manual: bool4(),
overwrite_manual: bool4(),
fill_empty_only: bool4()
}, classifyTopologyFabricNodes, getClient, t),
tool2("netx__queryTopologyNeighborhood", "Neighborhood around a fabric node (depth 1–3) with compact links[].", {
node_id: { type: "string", required: true },
depth: num4(),
layer: str4()
}, queryTopologyNeighborhood, getClient, t),
tool2("netx__queryTopologyEdges", "Fabric adjacency links[] (detail=adjacency) or port rows (detail=ports).", {
node_id: str4(),
keyword: str4(),
layer: str4(),
status: str4(),
source: str4("lldp | ume | manual"),
detail: str4("adjacency | ports"),
page: num4(),
page_size: num4()
}, queryTopologyEdges, getClient, t),
tool2("netx__suggestSinkHubs", "Rank hub territories on a source view for non-dual move_nodes(park) batches (degree stand-in in DSH).", {
source_view_id: str4(),
view_id: str4(),
pick: num4(),
exclude_portal_ids: strArr(),
exclude_fabric_node_ids: strArr()
}, suggestSinkHubs, getClient, t),
tool2("netx__analyzeTopologyViewLayout", "Basic layout QA for a view (bbox/hubs). Full dual_unit/crossing scores need netx-topology MCP.", {
view_id: str4(),
folder_id: str4(),
detail: str4("summary | structure | hotspots | blocks | both"),
score_profile: str4(),
sight_limit: num4(),
max_views: num4(),
min_nodes: num4(),
max_nodes: num4(),
with_meta: bool4()
}, analyzeTopologyViewLayout, getClient, t),
tool2("netx__sinkTopologyDualUnits", "Drain dual_unit eyes from source to sink (requires netx-topology MCP layout engine in DSH).", {
source_view_id: str4(),
sink_view_id: str4(),
max_units: num4(),
min_nodes: num4(),
max_nodes: num4(),
max_batch_nodes: num4(),
layout_batch: bool4(),
until_empty: bool4(),
dry_run: bool4()
}, sinkTopologyDualUnits, getClient, t),
tool2("netx__layoutTopologyView", "Layout / polish a canvas. DSH supports catalog + move_nodes|sink_nodes over HTTP; dual_unit/orbit/polish recipes need netx-topology MCP.", {
view_id: str4(),
action: str4(),
source_view_id: str4(),
recipe: str4(),
preset: str4(),
mode: str4("preview | apply"),
tune: bool4(),
params: anyObj("Action-specific options (move_nodes / recipes / polish)."),
catalog: bool4(),
fabric_node_ids: strArr(),
park: bool4(),
copy_positions: bool4()
}, layoutTopologyView, getClient, Math.max(t, 180000))
];
const disposers = catalog.filter((entry) => allow.has(entry.name)).map((entry) => ctx.tools.register(entry));
return () => {
for (const dispose of disposers)
dispose();
};
}
// src/index.ts
var name = "netxops";
var inject = ["credentials"];
var NETXOPS_RPC_CHANNEL = "/netxops";
var NETXOPS_SETTINGS_NAMESPACE = "netxops";
var NETXOPS_PRESET_ID = "netxops";
var DEFAULT_TOKEN_REF = "NETX_API_TOKEN";
var Config = z.object({
apiUrl: z.string().default("http://127.0.0.1:8890"),
lang: z.string().default("zh"),
thinkingLanguage: z.string().default("auto"),
replyLanguage: z.string().default("follow-user"),
tokenCredentialRef: z.string().role("credential-ref").default(DEFAULT_TOKEN_REF),
toolCallTimeoutMs: z.number().step(1).min(1000).default(120000),
installAgentPreset: z.boolean().default(true),
alarmPushEnabled: z.boolean().default(false),
alarmDeliverDsh: z.boolean().default(true),
alarmDeliverIm: z.boolean().default(false),
imTargets: z.string().default(""),
imBotId: z.string().default(""),
imTargetId: z.string().default(""),
nmsProvider: z.string().default("zte-ume"),
groupOpsInPreset: z.boolean().default(true),
groupOpsPublic: z.boolean().default(false),
groupTopologyInPreset: z.boolean().default(false),
groupTopologyPublic: z.boolean().default(false),
kbRoot: z.string().default(""),
groupKbInPreset: z.boolean().default(true),
groupKbPublic: z.boolean().default(false)
});
function packageRoot() {
return join7(dirname4(fileURLToPath2(import.meta.url)), "..");
}
function resolveDshHome() {
const fromEnv = process.env.DSH_HOME?.trim();
if (fromEnv !== undefined && fromEnv.length > 0)
return fromEnv;
return join7(homedir3(), ".dsh");
}
function ensureAgentPresetInstalled(logger) {
const src = join7(packageRoot(), "presets", NETXOPS_PRESET_ID);
const composition = join7(src, "agent.cordis.yml");
if (!existsSync5(composition)) {
logger.warn("netxops: bundled preset missing at %s — skip user-preset install", src);
return;
}
const destParent = join7(resolveDshHome(), ".agent-presets");
const dest = join7(destParent, NETXOPS_PRESET_ID);
try {
mkdirSync2(destParent, { recursive: true });
if (existsSync5(dest)) {
rmSync2(dest, { recursive: true, force: true });
}
cpSync(src, dest, { recursive: true });
writeFileSync2(join7(dest, ".dsh-netxops-managed"), `${new Date().toISOString()}
`, "utf8");
logger.info("netxops: agent preset installed at %s", dest);
} catch (error) {
logger.error("netxops: failed to install agent preset: %s", error);
}
}
async function resolveToken(ctx, refName) {
const hit = await ctx.credentials.resolve(credentialRef(refName));
return hit?.value ?? "";
}
function installNetxopsSettings(ctx, entry, hooks) {
const legacy = DshSettings.installSettingsSection;
if (typeof legacy === "function") {
legacy(ctx, NETXOPS_SETTINGS_NAMESPACE, Config, entry, hooks);
return;
}
ctx.inject(["settings"], (settingsCtx) => {
settingsCtx.settings.installSection(ctx, NETXOPS_SETTINGS_NAMESPACE, Config, entry, hooks);
});
}
function apply(ctx, config = Config({})) {
let source = () => config;
let publishing = Promise.resolve();
let generation = 0;
let stopAlarmPush;
if (config.installAgentPreset) {
ensureAgentPresetInstalled(ctx.logger);
}
const restartAlarmPush = (current, apiUrl, token) => {
stopAlarmPush?.();
stopAlarmPush = undefined;
resetAlarmSession();
if (!current.alarmPushEnabled) {
resetAlarmPushStatus();
return;
}
if (!token.trim()) {
ctx.logger.warn("netxops alarm-push: enabled but token is empty — not connecting");
publishAlarmPushStatus({
phase: "error",
enabled: true,
wsUrl: "",
detail: "missing_token",
lastError: "token empty"
});
return;
}
const lang = current.lang;
const deliverDsh = current.alarmDeliverDsh !== false;
const imTargets = resolveImTargets({
imTargets: current.imTargets ?? "",
imBotId: current.imBotId ?? "",
imTargetId: current.imTargetId ?? ""
});
const deliverIm = imTargets.length > 0;
stopAlarmPush = startAlarmPushClient({
apiUrl,
token,
logger: ctx.logger,
onAlarm: async (payload) => {
await dispatchAlarmToSinks(ctx, payload, {
deliverDsh,
deliverIm,
imTargets,
lang
});
}
});
};
const publish = () => {
publishing = publishing.then(async () => {
const gen = ++generation;
const current = source();
const token = await resolveToken(ctx, current.tokenCredentialRef);
if (gen !== generation)
return;
const apiUrl = current.apiUrl.replace(/\/$/, "");
const tokenConfigured = token.trim().length > 0;
const groups = capabilityGroupsFromSettings(current);
if (current.nmsProvider && current.nmsProvider !== "zte-ume") {
ctx.logger.warn("netxops: nmsProvider=%s is not implemented yet; using zte-ume REST adapter", current.nmsProvider);
}
publishNetxConnection({
apiUrl,
token,
lang: current.lang,
toolCallTimeoutMs: current.toolCallTimeoutMs,
groups,
groupKbInPreset: current.groupKbInPreset !== false,
groupKbPublic: current.groupKbPublic === true
});
const kb = resolveKbRoot(current.kbRoot ?? "");
publishKbContext(kb);
applyKbEnv(kb);
if (kb.status === "configured") {
ctx.logger.info("netxops: knowledge base configured → %s (%s / %s v%s)", kb.realRoot, kb.operatorName, kb.country, kb.version);
} else if (kb.status === "error") {
ctx.logger.warn("netxops: knowledge base error — %s", kb.errorMessage);
}
restartAlarmPush(current, apiUrl, token);
if (!tokenConfigured) {
ctx.logger.warn("netxops: published connection → %s tokenConfigured=false (set credential %s)", apiUrl, current.tokenCredentialRef);
} else {
const imSinkCount = resolveImTargets({
imTargets: current.imTargets ?? "",
imBotId: current.imBotId ?? "",
imTargetId: current.imTargetId ?? ""
}).length;
ctx.logger.info("netxops: published connection → %s tokenConfigured=true alarmPush=%s dsh=%s im=%s public=[%s]", apiUrl, current.alarmPushEnabled === true, current.alarmDeliverDsh !== false, imSinkCount, groupsForPlane(groups, "public").join(",") || "(none)");
}
}).catch((error) => {
ctx.logger.error("netxops: connection publish error: %s", error);
});
};
publish();
installNetxopsSettings(ctx, config, {
setSource: (current) => {
source = current;
},
onChange: () => {
publish();
}
});
ctx.on("credentials/reference-updated", (ref) => {
if (String(ref) === source().tokenCredentialRef)
publish();
});
ctx.inject(["systemPrompt", "settings"], (promptCtx) => {
const systemPrompt = promptCtx.systemPrompt;
const liveConfig = () => {
const settings = promptCtx.get("settings");
const section = typeof settings?.get === "function" ? (() => {
try {
return settings.get(NETXOPS_SETTINGS_NAMESPACE);
} catch {
return;
}
})() : undefined;
if (section !== null && typeof section === "object" && !Array.isArray(section)) {
return { ...source(), ...section };
}
return source();
};
const effectiveThinking = () => {
const settings = promptCtx.get("settings");
const current = liveConfig();
return resolveThinkingLanguage(normalizeThinkingLanguage(current.thinkingLanguage), readSystemLocalePreference(settings));
};
const replySetting = () => normalizeReplyLanguage(liveConfig().replyLanguage);
promptCtx.effect(() => {
const disposers = [];
const push = (dispose) => {
if (typeof dispose === "function")
disposers.push(dispose);
};
push(systemPrompt.section({
name: "netxops:thinking-language",
order: 85,
text: () => thinkingInstruction(effectiveThinking())
}));
push(systemPrompt.context({
name: "netxops:thinking-language-reminder",
order: 1000,
text: () => thinkingReminder(effectiveThinking())
}));
push(systemPrompt.section({
name: "netxops:reply-language",
order: 10150,
text: () => replyInstruction(replySetting())
}));
push(systemPrompt.context({
name: "netxops:reply-language-reminder",
order: 1100,
text: () => replyReminder(replySetting())
}));
promptCtx.logger.info("netxops: model language prompts registered (thinking=%s reply=%s)", normalizeThinkingLanguage(liveConfig().thinkingLanguage), replySetting());
return () => {
for (const dispose of disposers.splice(0))
dispose();
};
}, "netxops: model language prompts");
});
ctx.inject(["tools"], (toolsCtx) => {
let unregisterTools;
let unregisterKbLocal;
const remountPublicTools = () => {
unregisterTools?.();
unregisterTools = undefined;
const connection = getNetxConnection();
if (!connection)
return;
const enabled = groupsForPlane(connection.groups, "public");
unregisterTools = registerNetxTools(toolsCtx, connection, { plane: "public" });
toolsCtx.logger.info("netxops: host public tools groups=[%s]", enabled.join(",") || "(none)");
};
const remountKbLocal = () => {
unregisterKbLocal?.();
unregisterKbLocal = undefined;
const connection = getNetxConnection();
if (!connection || connection.groupKbPublic !== true)
return;
unregisterKbLocal = registerKbLocalTools(toolsCtx, getKbContext());
};
remountPublicTools();
remountKbLocal();
const stopWatch = watchNetxConnection(() => {
remountPublicTools();
remountKbLocal();
});
const stopKbWatch = watchKbContext(() => {
remountKbLocal();
});
toolsCtx.effect(() => () => {
stopWatch();
stopKbWatch();
unregisterTools?.();
unregisterKbLocal?.();
}, "netxops: dispose public tools");
});
ctx.inject(["skills"], (skillsCtx) => {
let unregisterSkills;
let unregisterKbSkill;
let unregisterKbPack;
let generation2 = 0;
let packGeneration = 0;
const remountPublicSkills = () => {
const gen = ++generation2;
unregisterSkills?.();
unregisterSkills = undefined;
const connection = getNetxConnection();
if (!connection)
return;
const enabled = groupsForPlane(connection.groups, "public");
registerGroupSkills(skillsCtx, enabled, "netxops-public").then((dispose) => {
if (gen !== generation2) {
dispose();
return;
}
unregisterSkills = dispose;
skillsCtx.logger.info("netxops: host public skills groups=[%s]", enabled.join(",") || "(none)");
}).catch((error) => {
skillsCtx.logger.warn("netxops: public skill register failed: %s", error);
});
};
const remountKbSkill = () => {
unregisterKbSkill?.();
unregisterKbSkill = undefined;
const snapshot = getKbContext();
unregisterKbSkill = registerKbContextSkill(skillsCtx, snapshot);
skillsCtx.logger.info("netxops: kb-context skill status=%s", snapshot.status);
};
const remountKbPack = () => {
const gen = ++packGeneration;
unregisterKbPack?.();
unregisterKbPack = undefined;
const connection = getNetxConnection();
const enabled = connection?.groupKbPublic === true;
registerKbPackSkills(skillsCtx, getKbContext(), {
enabled,
providerLabel: "netxops-kb-pack-public"
}).then((dispose) => {
if (gen !== packGeneration) {
dispose();
return;
}
unregisterKbPack = dispose;
}).catch((error) => {
skillsCtx.logger.warn("netxops: public kb pack skill register failed: %s", error);
});
};
remountPublicSkills();
remountKbSkill();
remountKbPack();
const stopWatch = watchNetxConnection(() => {
remountPublicSkills();
remountKbPack();
});
const stopKbWatch = watchKbContext(() => {
remountKbSkill();
remountKbPack();
});
skillsCtx.effect(() => () => {
generation2 += 1;
packGeneration += 1;
stopWatch();
stopKbWatch();
unregisterSkills?.();
unregisterKbSkill?.();
unregisterKbPack?.();
}, "netxops: dispose public skills");
});
const handleNetxopsRpc = async (endpoint, payload) => {
if (endpoint === "alarm-push.status") {
return { ok: true, value: getAlarmPushStatus() };
}
if (endpoint === "kb.status") {
return { ok: true, value: getKbContext() };
}
if (endpoint === "kb.reload") {
const current = source();
const kb = resolveKbRoot(current.kbRoot ?? "");
publishKbContext(kb);
applyKbEnv(kb);
if (kb.status === "configured") {
ctx.logger.info("netxops: kb.reload → %s (%s / %s v%s)", kb.realRoot, kb.operatorName, kb.country, kb.version);
} else if (kb.status === "error") {
ctx.logger.warn("netxops: kb.reload error — %s", kb.errorMessage);
} else {
ctx.logger.info("netxops: kb.reload → unconfigured (kbRoot empty)");
}
return { ok: true, value: kb };
}
if (endpoint === "kb.resolve") {
const path = extractKbResolvePath(payload);
return { ok: true, value: resolveKbRoot(path) };
}
if (endpoint === "sessions.export.status") {
const value = await getSessionsExportStatus(ctx);
return { ok: true, value };
}
if (endpoint === "im-delivery.catalog") {
const fromGet = typeof ctx.get === "function" ? ctx.get("dshIm") : undefined;
const im = fromGet ?? ctx.dshIm;
if (!im || typeof im.listDeliveryCatalog !== "function") {
return {
ok: true,
value: {
available: false,
options: [],
reasonCode: "im_catalog_unavailable",
hint: "dsh-im-ops missing or outdated — install ≥ops.24 for delivery picker"
}
};
}
try {
const options = await im.listDeliveryCatalog();
return {
ok: true,
value: {
available: true,
options: Array.isArray(options) ? options : []
}
};
} catch (error) {
return {
ok: true,
value: {
available: false,
options: [],
hint: error instanceof Error ? error.message : String(error)
}
};
}
}
return { ok: false, error: { code: "bad-request", message: "Unknown endpoint." } };
};
ctx.inject(["webServer", "connection"], (mountCtx) => {
mountCtx.effect(() => {
const direct = mountNetxopsWebRoute(mountCtx, NETXOPS_RPC_CHANNEL, (endpoint, payload) => handleNetxopsRpc(endpoint, payload));
if (direct !== null) {
mountCtx.logger.info("netxops: /netxops rpc mounted on webServer");
return direct;
}
const rpc = mountCtx.connection?.rpc;
if (rpc && typeof rpc.handle === "function") {
mountCtx.logger.info("netxops: /netxops rpc mounted via connection.rpc.handle (legacy)");
const legacy = rpc.handle(NETXOPS_RPC_CHANNEL, (endpoint, payload) => handleNetxopsRpc(endpoint, payload));
return () => {
legacy();
};
}
mountCtx.logger.warn("netxops: /netxops rpc unavailable — settings card status disabled");
return () => {};
}, "netxops: /netxops web rpc");
});
ctx.inject(["connection"], (connCtx) => {
const connection = connCtx.connection;
const fetchApi = connection?.fetch;
if (!fetchApi || typeof fetchApi.register !== "function") {
connCtx.logger.warn("netxops: connection.fetch.register unavailable — sessions export download disabled");
} else {
connCtx.effect(() => {
const dispose = fetchApi.register({
path: NETXOPS_SESSIONS_EXPORT_PATH,
methods: ["GET", "HEAD"],
fetch: async (request) => {
if (request.method === "HEAD") {
return sessionsExportHeadResponse(ctx, request);
}
return sessionsExportResponse(ctx, request);
}
});
return () => {
dispose();
};
}, "netxops: sessions export fetch");
}
});
ctx.effect(() => () => {
generation += 1;
stopAlarmPush?.();
stopAlarmPush = undefined;
resetAlarmSession();
resetAlarmPushStatus();
resetKbContext();
}, "netxops: dispose host bridge");
}
function extractKbResolvePath(payload) {
if (payload === null || typeof payload !== "object" || Array.isArray(payload))
return "";
const row = payload;
if (typeof row.path === "string")
return row.path;
const args = row.args;
if (args !== null && typeof args === "object" && !Array.isArray(args)) {
const path = args.path;
if (typeof path === "string")
return path;
}
return "";
}
export {
name,
inject,
ensureAgentPresetInstalled,
apply,
NETXOPS_SETTINGS_NAMESPACE,
NETXOPS_RPC_CHANNEL,
NETXOPS_PRESET_ID,
DEFAULT_TOKEN_REF,
Config
};