portview
Adds Docker container awareness to port scanning and management, showing container-published ports and enabling container controls in interactive and MCP modes.
Detects MySQL instances exposed on wildcard addresses (0.0.0.0) as part of the doctor's wildcard exposure checks.
Detects Redis instances exposed on wildcard addresses (0.0.0.0) as part of the doctor's wildcard exposure checks.
portview
See what's on your ports, then act on it. So can your AI agent.
lsof -i is slow and cryptic. ss -tlnp is unreadable. netstat is deprecated. You just want to know what's on port 3000 and kill it.
portviewOne command. Every listening port, the process behind it, memory usage, uptime, and the full command — in a colored table. Then inspect, kill, or watch it live.
It's also an MCP server — one binary, no Node, no npx — so Claude Code and Cursor can answer "what's on 3000?" without shelling out to lsof and misparsing the result.
~1 MB single binary. Zero runtime dependencies. Linux, macOS, and Windows.
Install
curl -fsSL https://raw.githubusercontent.com/mapika/portview/main/install.sh | sh # Linux/macOS
irm https://raw.githubusercontent.com/mapika/portview/main/install.ps1 | iex # Windows
brew install mapika/tap/portview # Homebrew
cargo install portview # CargoOr grab a binary from Releases.
Related MCP server: localhost-mcp
What it does
portview # list all listening ports
portview 3000 # inspect port 3000 in detail
portview node # find ports by process name
portview watch # interactive TUI with live refresh
portview watch --docker # TUI with Docker containers as rows
portview kill 3000 --force # kill what's on port 3000
portview doctor # diagnose port conflicts and issues
portview ssh user@server # inspect ports on a remote host
portview ssh user@server watch # remote TUI over SSH
portview ssh user@server --agentless # no portview needed on the remote
portview mcp # run as an MCP server for AI agentsFeatures
Scan
$ portview
╭──────┬───────┬─────┬──────────────┬──────┬────────────┬────────┬────────┬────────────────────────────╮
│ PORT │ PROTO │ PID │ ADDR │ USER │ PROCESS │ UPTIME │ MEM │ COMMAND │
├──────┼───────┼─────┼──────────────┼──────┼────────────┼────────┼────────┼────────────────────────────┤
│ 3000 │ TCP │ 8 │ 127.0.0.1 │ root │ node │ 7s │ 44 MB │ node /opt/app/web.js │
│ 5000 │ TCP │ 11 │ 127.0.0.1 │ root │ python3.12 │ 7s │ 18 MB │ python3 /opt/app/worker.py │
│ 6380 │ TCP │ 12 │ 127.0.0.1 │ root │ node │ 7s │ 1.2 GB │ node /opt/app/cache.js │
│ 7000 │ TCP │ 10 │ 127.0.0.1 │ root │ node │ 7s │ 45 MB │ node /opt/app/ingest.js │
│ 8080 │ TCP │ 9 │ 127.0.0.1 │ root │ node │ 7s │ 44 MB │ node /opt/app/api.js │
╰──────┴───────┴─────┴──────────────┴──────┴────────────┴────────┴────────┴────────────────────────────╯--all includes non-listening connections — one row per connection, so a pile-up of TIME_WAIT or CLOSE_WAIT sockets is visible rather than collapsed. --wide shows full commands. --json for scripting.
Ports whose owner can't be resolved are still listed, with - in the columns that can't be filled. That happens for another user's process without sudo, and for sockets like TIME_WAIT that outlive the process that opened them.
The scan, doctor, and MCP examples below are real output, captured by
demo/record.shinside an isolated namespace — which is why the user isrootand the paths are/opt/app. The Docker example is illustrative, since it needs a running daemon.
MCP server (for AI agents)
Give your coding agent eyes on your ports. portview mcp speaks the Model Context Protocol over stdio, so Claude Code, Cursor, and any other MCP client can query and act on ports directly instead of shelling out to lsof and guessing at the output.
claude mcp add portview -- portview mcpOr configure it manually:
{
"mcpServers": {
"portview": {
"command": "portview",
"args": ["mcp"]
}
}
}Tool | What it does |
| Every listening port with process, user, uptime, memory, full command |
| One port in detail, including each process's working directory |
| Which ports a service is on, by name or command substring |
| Conflicts, wildcard exposure, stale connections, resource hogs |
| Terminate what's on a port (marked destructive to the client) |
No Node, no npx, no runtime. It's the same ~1 MB binary — nothing extra to install. The MCP server added 29 KB, because it pulls in no new dependencies.
Pass --read-only to withhold kill_port entirely, so the agent can look but not touch:
portview mcp --read-onlyListed in the MCP Registry as
mcp-name: io.github.Mapika/portview.
Watch mode (interactive TUI)
portview watch # live-refresh every 1s
portview watch --docker # Docker containers as first-class rows
portview watch --sort mem # sort by memory on launchKey | Action |
| Navigate rows |
| Inspect port (full command, cwd, children, connections) |
| Kill process or manage Docker container |
| Filter across all columns |
| Cycle sort column, reverse direction |
| Toggle process tree view |
| Toggle all/listening-only |
| Quit |
Tree view (t): Groups child processes under their parents with visual connectors. See which workers belong to which master process at a glance.
Detail view (Enter): Shows the full unwrapped command, working directory, child process list with ports, and open connections (in --all mode).
Doctor
Diagnose common port problems in one command:
$ portview doctor
✓ No port conflicts
✓ No wildcard exposure issues
! Port 7000 has 16 CLOSE_WAIT connections — possible connection leak
! node (PID 12) is listening on port 6380 and using 1.2 GB of memory
2 warnings foundCheck | Flags |
Port conflicts | Multiple PIDs bound to the same port |
Wildcard exposure | Databases (postgres, redis, mysql, mongod, …) listening on |
Docker-host conflicts | A container publishing a port the host already uses |
Stale connections | TIME_WAIT or CLOSE_WAIT pileups on one port — a connection leak |
Resource hogs | Listeners holding more than 1 GB resident |
Docker is auto-detected. portview doctor --json for scripting (exit code 1 on errors).
In CI
There's a GitHub Action, so a workflow can fail when a service ends up exposed or a test run leaks connections:
- uses: mapika/portview@v2
with:
fail-on: error # error | warning | neverIt annotates each finding inline on the run, writes a summary table, and exposes
findings (JSON), count, errors, and warnings as step outputs:
- uses: mapika/portview@v2
id: doctor
with:
fail-on: never
- run: echo '${{ steps.doctor.outputs.findings }}' | jq .Set install: false if portview is already on PATH. Linux and macOS runners.
SSH remote mode
Inspect ports on any machine you can SSH to:
portview ssh user@server # one-shot scan
portview ssh user@server watch # full interactive TUI
portview ssh user@server doctor # remote diagnostics
portview ssh user@server 3000 # inspect a remote port
portview ssh user@server --ssh-opt "-p 2222" # custom SSH portKill actions in the remote TUI are forwarded over SSH.
Nothing to install on the remote host. If portview isn't there, it falls back
automatically to collecting over the same SSH connection with ss and ps —
present on essentially every Linux box:
$ portview ssh user@server
portview not found on user@server — falling back to agentless mode (ss + ps over SSH).
╭──────┬───────┬─────┬──────────────┬──────┬─────────┬────────┬───────┬──────────────────────╮
│ PORT │ PROTO │ PID │ ADDR │ USER │ PROCESS │ UPTIME │ MEM │ COMMAND │
├──────┼───────┼─────┼──────────────┼──────┼─────────┼────────┼───────┼──────────────────────┤
│ 3000 │ TCP │ 6 │ 127.0.0.1 │ root │ node │ 3s │ 45 MB │ node /opt/app/web.js │
│ 8080 │ TCP │ 7 │ 127.0.0.1 │ root │ node │ 3s │ 45 MB │ node /opt/app/api.js │
╰──────┴───────┴─────┴──────────────┴──────┴─────────┴────────┴───────┴──────────────────────╯Force it with --agentless to skip the remote portview entirely. You still get
the process, user, memory, uptime, and full command — it resolves
/proc/<pid>/exe on the remote host, so a Node server reads as node rather
than the MainThread that ss reports.
doctor works agentless too — the checks are pure functions over collected
data, so they run locally against whatever the probe brought back:
portview ssh user@server doctor --agentlessThat produces the same findings as running portview doctor on the host
itself. The Docker check is reported as skipped rather than passed, since the
probe doesn't query Docker on the far end.
Agentless mode covers scans, port inspection, process search, and diagnostics.
watch still needs portview installed remotely — the TUI consumes a streaming
JSON pipe.
Docker integration
Add --docker to any command. Docker-published ports appear as first-class rows:
$ portview --docker
╭──────┬───────┬───────┬──────────────┬────────┬──────────┬────────┬────────┬────────────────────────────╮
│ PORT │ PROTO │ PID │ ADDR │ USER │ PROCESS │ UPTIME │ MEM │ COMMAND │
├──────┼───────┼───────┼──────────────┼────────┼──────────┼────────┼────────┼────────────────────────────┤
│ 3000 │ TCP │ 48291 │ 127.0.0.1 │ mark │ node │ 3h 12m │ 248 MB │ next dev [docker:web] │
│ 8080 │ TCP │ - │ 0.0.0.0 │ docker │ pv-nginx │ - │ - │ nginx:alpine :8080->80/tcp │
╰──────┴───────┴───────┴──────────────┴────────┴──────────┴────────┴────────┴────────────────────────────╯Container-only rows have no host process, so PID, UPTIME, and MEM render as -.
Press d on a Docker row to Stop, Restart, or tail Logs.
JSON output
portview --json # pipe to jq, scripts, dashboards
portview --docker --json # includes Docker ownership data
portview watch --json # streaming JSON, one array per tick
portview doctor --json # machine-readable diagnosticsCustom colors
PORTVIEW_COLORS="port=red,pid=magenta,command=bright_cyan" portviewColumns: port, proto, pid, user, process, uptime, mem, command. Use --no-color to disable.
How it works
All data is read directly from the OS — no shelling out to lsof, ss, or netstat.
Field | Linux | macOS | Windows |
Ports |
|
|
|
PID | inode→pid via |
| Included in socket table |
Process |
|
|
|
Memory |
|
|
|
Uptime |
|
|
|
The process name comes from the executable, not /proc/<pid>/comm. comm is the thread name, and runtimes overwrite it — Node.js renames its main thread to MainThread, which is why ps, ss, and lsof all report a Node dev server as MainThread. It is also truncated to 15 bytes.
Docker integration queries docker ps when --docker is passed. SSH mode runs portview --json on the remote host via the system ssh binary. MCP mode speaks newline-delimited JSON-RPC 2.0 on stdin/stdout, with a hand-rolled JSON reader — no serde, no extra dependency.
Why not...
Tool | What's missing |
| Different flags per OS, cryptic output, slow |
| Unreadable, no uptime/memory/docker, no TUI |
| Deprecated on modern Linux, limited info |
| Requires Node.js, kill-first not diagnostic-first |
| General process viewer, not port-centric |
None of them speak MCP, so none of them can be handed to an agent.
There's also a smaller thing they all get wrong. Start a Node dev server and ask what's on the port:
$ ss -tlnp | grep 3000
LISTEN 0 511 127.0.0.1:3000 0.0.0.0:* users:(("MainThread",pid=6,fd=21))
$ portview 3000
Port 3000 (TCP) — node (PID 6)ps, ss, and lsof all read /proc/<pid>/comm, the thread name — and Node renames its main thread to MainThread. portview reads the executable instead.
portview is diagnostic-first: understand what's on your ports, then act.
Building from source
git clone https://github.com/mapika/portview
cd portview
cargo build --releaseRequires Rust 1.85+ (edition 2024). Shell completions and man page are generated at build time.
There's also a Dockerfile. Note that a container has its own network and PID
namespaces, so portview inside one sees the container's ports — share the
host's namespaces to inspect the host:
docker run --rm -i --network host --pid host portviewContributing
See CONTRIBUTING.md for development setup and guidelines, and demo/README.md for regenerating the recordings.
Changes should type-check on all three platforms, not just yours:
cargo check --target aarch64-apple-darwin
cargo check --target x86_64-pc-windows-msvcLimitations
Linux: Other users' ports are listed, but naming the process needs
sudo(it reads/proc/<pid>/fd/). Rows you can't attribute show-for PID, user, process, and command rather than being hidden.macOS: Other users' ports are not listed without
sudo— sockets are enumerated per process viaproc_pidfdinfo, so a process that can't be opened contributes nothing to enumerate. For the same reason doctor cannot detect TIME_WAIT pileups there; CLOSE_WAIT is detected normally.Windows: Ports owned by inaccessible system processes are listed with the PID but
-for name and user. Kill always force-terminates. Run as Administrator for full detail.Docker: Requires
dockerCLI and daemon accessSSH:
watchrequires portview on the remote host. Scans, inspection, search anddoctorfall back to agentless collection (ss+ps), which needs a Linux remote — macOS and BSD hosts still need portview installed.
License
MIT
This server cannot be installed
Maintenance
Related MCP Servers
- FlicenseAqualityCmaintenanceEnables AI assistants to identify processes listening on specific network ports by returning process names and PIDs. It provides infrastructure introspection capabilities through the Linux ss command to help users monitor and debug local services.Last updated11
- AlicenseAqualityCmaintenanceInspect, manage, and kill local dev servers via MCP. Stop guessing what's on :3000. Five tools: list servers with framework detection, inspect ports, find zombies, diagnose conflicts, safe-kill with dry-run default. Local, no cloud, no telemetry.Last updated5363MIT
- Flicense-qualityCmaintenanceProvides system diagnostic capabilities including CPU, memory, disk usage, top processes, and port status checking.Last updated
- Flicense-qualityDmaintenanceA Model Context Protocol (MCP) server for managing port registrations on your computer. Keep track of which applications are using which ports, find free ports, and maintain a central registry of port allocations.Last updated
Related MCP Connectors
Query WHOIS/RDAP information for domains, IP addresses, CIDR prefixes and ASNs. Self-hostable.
Offline methodology engine for authorized penetration testing, CTF, and security research.
Interact with a global network measurement platform.Run network commands from any point in the world
Latest Blog Posts
- Who's Calling? MCP Hosts Are an Identity Blind Spot (And the Spec Knows It)By Om-Shree-0709 on .mcpAgent IdentityOAuth 2.1
- Your AI Chatbot Just Exposed Your CEO's Salary to an InternBy Om-Shree-0709 on .Agent IdentityMCP SecurityOAuth Delegation
- Why MCP Servers Need Execution Sandboxing (And Why Your Current Stack Isn't Enough)By Om-Shree-0709 on .Agentic AiPrompt InjectionWebAssembly
MCP directory API
We provide all the information about MCP servers via our MCP API.
curl -X GET 'https://glama.ai/api/mcp/v1/servers/Mapika/portview'
If you have feedback or need assistance with the MCP directory API, please join our Discord server