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Jshookmcp – instrument your real signed-in Chrome via CDP

Jshookmcp released an MCP server that instruments a real signed-in Chrome browser over CDP for front-end reverse engineering, exposing 735 tools across 36 self-discovered domains. The server's search profile loads about 3K tokens of tool metadata while the full profile exposes all 735 tools at roughly 109K tokens, measured 2026-10-10, with agents moving between search, workflow, and full profiles as tasks grow. It adds runtime recovery that restores activated domains, browser attach state, and coverage state after reconnects, plus per-client session isolation so two agents cannot trample each other's CDP sessions.

read8 min views1 publishedOct 11, 2026
Jshookmcp – instrument your real signed-in Chrome via CDP
Image: Michielbdejong (auto-discovered)

A search-first, profile-aware reverse-engineering workspace for AI agents.

Hook the page, capture the network, deobfuscate the bundle, disassemble the WASM, instrument the process — and let one MCP server keep the whole attack surface in reach without drowning the model in schemas.

English · 中文

What's different · Capabilities · Use cases · Highlights · Transport · Registry · Architecture · Build

Documentation · Getting Started · Configuration · Tool Reference

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Most MCP servers for JS analysis expose a handful of hand-rolled tools or wrap a single browser engine. jshook is closer to an operating system for front-end reverse engineering — 36 self-discovered domains, a search-first meta-tool that keeps token cost under control, and runtime recovery that survives broken pages and dropped sessions:

  • Search-first, profile-aware. Thesearch profile loads about 3K tokens of tool metadata; thefull profile exposes all 735 tools at around 109K tokens (measured 2026-10-10 — this figure scales with the tool count, so re-measure it when the catalog grows). Agents move between them as the task grows —search →workflow →full — instead of drowning in schemas from the first turn.
  • Runtime recovery and session isolation. Streamable HTTP sessions restore activated domains, browser attach state, and coverage state after reconnects; per-client browser-side state stays isolated so two agents cannot trample each other's CDP sessions.
  • Full-stack browser automation. Chromium and Camoufox via CDP with anti-detection, an explicit-input CAPTCHA solver (no built-in page/feature probing), a self-signed HTTPS interception CA on demand, and HTTP/2 frame building.
  • Real reverse engineering, not string searches. WASM disassembly via wabt (wasm2wat /wasm-decompile /wasm-objdump ), Frida/Ghidra/IDA bridges, native FFI scanning, hardware breakpoints, PE introspection, GraphQL/Burp Suite proxy bridges, and AST transforms — not a single regex call wrapped as a tool.
  • Dynamic extensibility. Hot-reload plugins, declarative workflows, and auto-discovery keep the server growing without a redeploy.

A scan of what's in the box. Each row links to the detailed Capability overview below.

Area Highlights
Tool profiles search (~3K tokens, BM25 + hybrid vector ranking) ·workflow (composite scripts) ·full (all 735 tools)
Browser automation Chromium and Camoufox · CDP attach to existing targets · anti-detection presets · explicit-input CAPTCHA solver · popup, download, permission, and protocol interceptors
Network interception HTTP/1.1 + HTTP/2 frame building · MITM proxy with auto-generated CA · WebSocket capture · GraphQL introspection helpers · Burp Suite bridge
JS hooks and analysis LLM-powered deobfuscation · crypto routine detection · AST comprehension · source-map reconstruction · script/scriptlet extraction and replay
WASM reverse engineering wabt disassembly / C transpilation ( wasm2wat /wasm-decompile /wasm-objdump /wasm2c ) · Binaryenwasm-opt · pure-TS section parser · import/export listing · section-grouped string extraction with name-section recovery · function-level binary diff · obfuscation detection · function- and basic-block-level instrumentation
Process and memory forensics Native FFI scanning · cross-reference graphs · hardware breakpoints · PE introspection · live process attach · memory read/write with region guards
Binary instrumentation Frida bridge · Ghidra and IDA bridges · syscall hooking · TLS keylog and session tooling · Mojo IPC analysis
Android and APK analysis APK static triage · manifest dump and query · apktool decode / build · jadx decompilation and code search · DEX scanning · native library listing · APK signing · unidbg emulation · runtime DEX dump
Native runtime Native emulator for foreign-architecture samples · platform introspection · Mojo IPC · Dart Inspector · ADB bridge for on-device traffic
Encoding and transform URL/Base64/Hex/JWT/Protobuf encoders · AST transforms · streaming decode pipelines
Coordination Background task queue with progress, cancellation, and async modes · multi-agent coordination · coverage reports
Schema-first meta tools describe_tool ·call_tool with argument validation ·coverage_report ·search_tools
Pluggable extension registry Hot-reload plugins · declarative workflows · auto-discovered domains
Scenario What you do Domains involved
Skim a minified bundle search_tools →deobfuscate →search_in_scripts →understand_code core
Reverse a CAPTCHA challenge Drive a Camoufox page → screenshot → solve with explicit input → replay browser ,canvas
Capture and replay an OAuth flow proxy_start (auto CA) →network_get_requests →graphql_introspect →graphql_replay proxy ,network ,graphql
Reverse a WASM crypto routine wasm_dump →wasm_disassemble →generate_hooks →memory_breakpoint wasm ,binary-instrument ,memory
Triage a suspicious APK apk_static_triage →apk_manifest_dump →jadx_decompile →dex_scan_file binary-instrument
Recover a dropped browser session Reconnect Streamable HTTP → restore activated domains and browser state browser ,coordination
Audit a Node process for credentials process_list →memory_scan_filtered →binary_strings_extract process ,memory ,binary-instrument
Build a custom workflow list_extension_workflows →run_extension_workflow workflow ,extension-registry
Hook a function in a live process frida_spawn →frida_attach_interceptor →frida_run_script →frida_enumerate_functions binary-instrument

No global install needed — add to your MCP client config and you're ready.

Claude Desktop / Cursor (claude_desktop_config.json):

{
  "mcpServers": {
    "jshook": {
      "command": "npx",
      "args": ["-y", "@jshookmcp/jshook@latest"],
      "env": {
        "MCP_TOOL_PROFILE": "search",
        "npm_config_omit": "optional"
      }
    }
  }
}

(Windows: use npx.cmd absolute path if npx is not found.)

This lightweight configuration skips optional ONNX, Z3, Binaryen, Camoufox, and Playwright packages. Remove npm_config_omit when those full-profile runtimes are required.

The default stdio configuration starts one full jshook process per MCP host. To share the embedding model, browser runtime, and caches, start one local Streamable HTTP daemon:

pnpm build
pnpm daemon

Vector search defaults to off for per-client stdio processes and on (lazy-loaded) for the shared HTTP daemon. Set SEARCH_VECTOR_ENABLED=false when lexical search is sufficient.

Then point every MCP client at http://127.0.0.1:3000/mcp using its HTTP/URL server configuration. Each client receives its own MCP session and response route while heavyweight runtime resources remain in one process. Keep the default loopback bind; set MCP_AUTH_TOKEN before exposing the endpoint beyond localhost.

{
  "env": {
    "MCP_TOOL_PROFILE": "search"     // start here, ~3K tokens of metadata
  }
}

Switch MCP_TOOL_PROFILE to workflow once you start chaining composite scripts, or to full when you need every tool. coverage_report shows the active set on demand.

  • Profile ladder. Start insearch (~3K tokens of metadata); promote toworkflow when chaining composite scripts; escalate tofull only when every tool is actually needed.coverage_report shows what's active on demand.
  • Meta tools.describe_tool returns the JSON Schema;call_tool validates arguments before invocation; every tool ships withreadOnlyHint /destructiveHint /idempotentHint /openWorldHint .
  • Browser automation. Chromium and Camoufox via CDP, attach to existing targets, anti-detection presets, popup/download/permission interceptors, explicit-input CAPTCHA solver, JS/CSS injection at three document phases, persisted coverage across reconnects.
  • Network interception. Auto-generated HTTPS interception CA, HTTP/1.1 + HTTP/2 frame building, WebSocket capture, GraphQL helpers, Burp Suite bridge — all on the same MCP tool surface.
  • Reverse engineering. wabt WASM disassembly (wasm2wat /wasm-decompile /wasm-objdump ) and Binaryenwasm-opt , Frida/Ghidra/IDA bridges, hardware breakpoints, native FFI scanning, PE introspection, syscall hooking, AST transforms, source-map reconstruction.
  • Session recovery. Streamable HTTP transport restores activated domains, browser attach state, and coverage state after reconnects; browser-side state is isolated per client.
  • Plugins and workflows. Drop a directory, get a domain. Write a YAML pipeline, run it as one tool. The registry self-discovers.

The server supports two transports out of the box.

Transport When to use Notes
stdio Default for Claude Desktop, Cursor, and other single-host clients One full process per MCP host; lightweight profile recommended
Streamable HTTP Multiple agents sharing the embedding model, browser runtime, and caches Loopback bind by default; set MCP_AUTH_TOKEN before exposing externally

Both transports expose the same tool surface. coverage_report shows which domains are activated in each session — long-running sessions restore browser attach state, coverage state, and tool activations across reconnects.

For production deployments see the Security and Production guide.

  • HTTP transport now multiplexes independent MCP sessions and restores runtime state after reconnects.
  • proxy_start auto-generates a local HTTPS interception CA when needed.
  • Browser CAPTCHA solving is now explicit-input driven: pass taskKind ,siteKey ,imageBase64 ,callbackName , andresponseSelector as needed. Built-in widget/page signature probing is intentionally not used.

The built-in surface below is generated from the runtime registry and checked in CI.

  • Package version: 0.4.2

  • Built-in tools: 735

  • Domains: adb-bridge ,binary-instrument ,browser ,canvas ,coordination ,core ,cross-domain ,dart-inspector ,debugger ,encoding ,exploit-dev ,extension-registry ,graphql ,instrumentation ,maintenance ,memory ,mojo-ipc ,native-bridge ,native-emulator ,network ,platform ,process ,protocol-analysis ,proxy ,session ,sourcemap ,streaming ,syscall-hook ,tasks ,tls-inspector ,trace ,transform ,v8-inspector ,wasm ,webgpu ,workflow

  • Note: this snapshot is generated from the runtime registry; do not edit the counts by hand.

  • Runtime registry — domains auto-discovered viamanifest.ts ; add a domain by creating one file.

  • Lazy initialization — handlers instantiated on first call, not at startup.

  • BM25 + vector search —search_tools meta-tool with hybrid ranking and adaptive weights.

  • MCP ToolAnnotations — every tool carries readOnlyHint /destructiveHint /idempotentHint /openWorldHint .

  • Profile ladder —search (~3K tokens) →workflow (composite scripts) →full (all 735 tools).

  • Transport symmetry — stdio and Streamable HTTP expose the same surface; sessions are isolated per client.

See the Architecture guide and Configuration reference for the canonical details.

Requirements: Node.js 22.22.2+, pnpm 10.x.

pnpm install
pnpm build
pnpm start           # run the built server from dist/
pnpm dev             # run from source under tsx watch
pnpm check           # drift guards (metadata + openapi + domain + event contracts) + lint + format check + typecheck + unit tests
pnpm test            # Vitest unit suites
pnpm test:e2e        # end-to-end browser/tooling suites
pnpm daemon          # run the Streamable HTTP daemon after build

Native helpers are bundled via pnpm build; on first run the server may download optional runtimes (ONNX, Z3, Binaryen, Camoufox, Playwright) depending on the profile.

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