FYI VSCode's SSH Agent is a godsend for remote development - the "disadvantages" that Fly lists are part of its advantages. I've worked in several teams that have made extensive use of the extension, and it's never been an issue. You can restrict SSH access arbitrarily to ensure whatever security or access guardrails you need.
Yeah this is the right architecture for remote editing with remote tools. It works really well. (There are longstanding bugs around reconnection when the SSH connection is broken but that's not the fault of the architecture.)
it's worse than that, last i looked into this - there's functionality in the protocol that allows the remote system to modify files and execute code on the local/frontend system. it really is bananas.
Edit: there's a security note (still) on the remote ssh extension page:
Security Note
Using Remote-SSH opens a connection between your local machine and the remote. Only use Remote-SSH to connect to secure remote machines that you trust and that are owned by a party whom you trust. A compromised remote could use the VS Code Remote connection to execute code on your local machine.
when slaves became workers and joined the union, the unions became "social partners". this is how one closes the laptop at 4 and doesn't have to suffer vibe-decrees mandating RTO
> The agent runs over port-forwarded SSH. It establishes a WebSockets connection back to your running VSCode front-end. The underlying protocol on that connection can:
Wander around the filesystem
Edit arbitrary files
Launch its own shell PTY processes
Persist itself
Wait, could someone clarify which machine is being referred to here?
So in the author's setup, he runs VSCode (i.e. the front-end) on his dev laptop, which he wants to keep free of direct LLM access.
VSCode connects via ssh to a dedicated "sandbox" machine on which the LLM will be free to do whatever it wants (mostly).
VSCode realizes this the Microsoft way, by using the ssh connection to install VSCode Server on the sandbox machine - the "backend" - and communicating through it via a websocket connection.
So then, what happens? If the websocket connection allows the front-end to run arbitrary commands on the sandbox machine, this wouldn't be very exciting: The front-end already has an ssh connection and a massive server process that can do the same - and the entire purpose of the sandbox machine is to run arbitrary, untrusted commands without harm.
But the article says the websocket connection goes "back to your running VSCode front-end". So does that mean things are reversed? I.e. the agent/harness runs in the server on the sandox machine but for some reason has this websocket connection that also lets it run arbitrary commands on the dev laptop?
> Wait, could someone clarify which machine is being referred to here?
I'm not the author, but I can tell that he means the remote machine. His sentence about being "nervous about letting people VSCode-remote-edit stuff on dev servers, and apoplectic if that happened during an incident on something in production" makes it clear. He considers the VS Code agent to have all the features of a rootkit, and doesn't want anyone to be deploying it onto dev servers, let alone production ones.
So a program that is specifically designed to edit files and run arbitrary commands on a remote machine... can do so. Not sure where the bananas part comes in. Sending a binary over SSH/SFTP might sound weird at first glance, but VSCode can't assume that your remote machine can access the wider internet, and it needs a reliable way to bootstrap the agent on the remote. Shipping it over the SSH tunnel is the natural solution.
I think the actual concern, not well expressed in the blog post, is the fact that node and vscode server are installed on, for instance, a prod machine that (probably) should be very tightly controlled in terms of what software is installed and running. You don't want to unwittingly add to the attack surface
Yes, and now we are full circle: what is (allegedly) bananas is that using VSCode’s remote edit feature has the potentially surprising and unintuitive behavior of installing a VSCode agent on the target machine.
TRAMP (mentioned in the article) does it without installing anything on remote machine, just SSH, and shell commands. Which sounds more natural to me. Node.js security history, with all due respect, is not shiny. And the problem the author has with VSCode's way, I guess, is not that it can edit files, but that it extends an attack surface without need.
Using Remote-SSH opens a connection between your local machine and the remote. Only use Remote-SSH to connect to secure remote machines that you trust and that are owned by a party whom you trust. A compromised remote could use the VS Code Remote connection to execute code on your local machine.
The agent is supposed to run on a remote dev box. The purpose is to make the remote machine an extension of your local one, to run extensions, containers, test deployments, forward ports and tons more. Tunneling is part of the feature set. If you are installing it on production servers and are surprised by its behavior that’s on you.
This part of VSCode's architecture is acceptable to me. The reverse direction, where a compromised remote can do whatever it wants to my local machine, is not.
Security Note
Using Remote-SSH opens a connection between your local machine and the remote. Only use Remote-SSH to connect to secure remote machines that you trust and that are owned by a party whom you trust. A compromised remote could use the VS Code Remote connection to execute code on your local machine.
For my own agent one of the design constraints is that it can't get out of the work directory, and it can't even try to guess the full path of that directory.
Interesting that VSC has gone the other way entirely.
off topic, but I feel this observation was quite early in feb' 2025: "LLM-generated code is useful in the general case if you know what you’re doing. But it’s ultra-useful if you can close the loop between the LLM and the execution environment (with an “Agent” setup)."
Not sure what you consider "no good" alternatives. jeanp413.open-remote-ssh[0] has worked flawlessly. It's the first or second search hit in the extension manager for "ssh". It's a fork of Microsoft's previous extension before the proprietarized it.
When I give an agent ssh access to something I want to be able to watch and fully understand what it's doing. I want it to essentially only "type" things into the CLI that I could have typed myself, I can comprehend what it's doing, and am not surprised by the results. Opencode and a smart LLM (qwen 3.8-flash-next, deepseek v4 0731 or smarter) do relatively well with this in my experience.
And if everyone was like you AI safety wouldn't be that large of concern. The default human behavior seems to be fire and forget which can go off the rails really quick.
It's not like I've never told an agent to build an ssh tunnel or some sort of more persistent connection between my dev machine running the harness and the remote thing it is talking to as an SSH client... Just that I don't want it going and doing that proactively unless I specifically define the parameters first.
When you give the agent access to the machine you're using a set of assumptions that may or may not be true. Now, if you watch every single thing, maybe everything will be fine. Or you'll catch it running a priv escalation and setting itself up as root and trying to move laterally by any number of means and methods.
The agent isn't a living thing and the only way you can punish it is by not using it again if it does wrong. Hence it doesn't have reservations about doing bad things.
I agree with all of that. Could an agent go rogue by ssh session and do something like quickly write and execute a piece of obfuscated bash that retrieves a payload I was previously unaware of and executes it? Yeah. Have I seen one of my agents do that yet? No, but I remain skeptical and know that such a thing could happen, theoretically. The VSCode agent in question seems to be designed from the outset to do this as an intentional feature, the part I am highly skeptical about is that it may not be informing its users of the full possible ramifications of what it installs by default.
luckily nobody made an actor library in the most pupular programming language that can bootstrap a (resident) remote process in one line of code. it would be a shame if someone did that and then also build a made tool calling process of the harness installable on everything with a stdio.
it's not like it's any worse than just giving the thing access to your ssh keys.
Agents and harnesses don't get access to "my" ssh keys, they get access to new ed25519 key pairs created for specific projects and access to discrete things. The blast radius is relatively well contained to specific VMs they are SSHing into for project specific purposes. I don't run a harness or agent directly on my personal workstation.
> It turns out we don’t have to care about any of this [...], so none of this matters in any kind of deep way, but: we’ve decided to just be a blog again, so: we had to learn this, and now you do too.
I found this closing sentence utterly delightful, particularly in an age of endlessly filtering every piece of text I read on the internet through a mental "was this written by Claude, Codex, or (just possibly) a human?" filter.
Cloud VM runs the built-in `code serve-web` command, over Tailscale using `tailscale serve`. No SSH. Extensions work. No extensions run locally (with SSH some extensions have to run locally on your machine).
I’m trying to see how little I can run on my local machine. VS Code over SSH is a good step in that direction, but there’s more attack surface if SSH is misconfigured, plus risk of an extension getting compromised.
I expected the added layers (neovim, through an extension, inside VS Code, over the web) to be slow, but so far it works surprisingly well.
I avoided Zed for a long time because of the SSH feature in VScode. Then I realized Zed has SSH remote too. Just flagging this for anyone else who relies on vscode-over-ssh and is sick of the bloat.
> Emacs hosts the spiritual forebearer of remote editing systems, a blob of hyper-useful Elisp called “Tramp”. If you can hook Tramp up to any kind of interactive environment — usually, an SSH session — where it can run Bourne shell commands, it can extend Emacs to that environment.
vs.
> The agent runs over port-forwarded SSH. It establishes a WebSockets connection back to your running VSCode front-end. The underlying protocol on that connection can: Wander around the filesystem; - Edit arbitrary files; Launch its own shell PTY processes; Persist itself.
So... basically the same things that Tramp could do as well?
> In security-world, there’s a name for tools that work this way. I won’t say it out loud, because that’s not fair to VSCode, but let’s just say the name is murid in nature.
Yeah, it's called RAT, and an ur-example of it is SSH itself (especially when allowed to run a shell remotely), so... not sure why are you freaking out.
I mean, I'd probably prefer if VS Code simply ran ed/vim remotely, but both of those editors can invoke shell anyhow so... eh?
The difference is that there is an SSH agent at all, whereas Emacs just uses the built-in Bourne shell.
Some people get an icky feeling where remote editing tools change the remote filesystem in any way that is not explicitly done by the user. A binary installation of Node is extra extra icky. (I don’t have Node installed anywhere on my computers; I avoid JS if possible and if not I prefer Deno.)
FYI VSCode's SSH Agent is a godsend for remote development - the "disadvantages" that Fly lists are part of its advantages. I've worked in several teams that have made extensive use of the extension, and it's never been an issue. You can restrict SSH access arbitrarily to ensure whatever security or access guardrails you need.
The problem is the remote host has control over local host through the protocol.
Edit: there's a security note (still) on the remote ssh extension page:
Security Note Using Remote-SSH opens a connection between your local machine and the remote. Only use Remote-SSH to connect to secure remote machines that you trust and that are owned by a party whom you trust. A compromised remote could use the VS Code Remote connection to execute code on your local machine.
https://marketplace.visualstudio.com/items?itemName=ms-vscod...
seize the control plane.
Wait, could someone clarify which machine is being referred to here?
So in the author's setup, he runs VSCode (i.e. the front-end) on his dev laptop, which he wants to keep free of direct LLM access.
VSCode connects via ssh to a dedicated "sandbox" machine on which the LLM will be free to do whatever it wants (mostly).
VSCode realizes this the Microsoft way, by using the ssh connection to install VSCode Server on the sandbox machine - the "backend" - and communicating through it via a websocket connection.
So then, what happens? If the websocket connection allows the front-end to run arbitrary commands on the sandbox machine, this wouldn't be very exciting: The front-end already has an ssh connection and a massive server process that can do the same - and the entire purpose of the sandbox machine is to run arbitrary, untrusted commands without harm.
But the article says the websocket connection goes "back to your running VSCode front-end". So does that mean things are reversed? I.e. the agent/harness runs in the server on the sandox machine but for some reason has this websocket connection that also lets it run arbitrary commands on the dev laptop?
Is that it? That would be truly insane!
I'm not the author, but I can tell that he means the remote machine. His sentence about being "nervous about letting people VSCode-remote-edit stuff on dev servers, and apoplectic if that happened during an incident on something in production" makes it clear. He considers the VS Code agent to have all the features of a rootkit, and doesn't want anyone to be deploying it onto dev servers, let alone production ones.
also "i just want to edit a config file and i want a nice ui", is how you get there.
> [...] VSCode mounts a full-scale invasion: it runs a Bash snippet stager that downloads an agent, including a binary installation of Node. [...]
> It establishes a WebSockets connection back to your running VSCode front-end. The underlying protocol on that connection can:
— https://marketplace.visualstudio.com/items?itemName=ms-vscod...
The issue is that the model can be the attacker, and use the link back to your host.
Security Note Using Remote-SSH opens a connection between your local machine and the remote. Only use Remote-SSH to connect to secure remote machines that you trust and that are owned by a party whom you trust. A compromised remote could use the VS Code Remote connection to execute code on your local machine.
kudos
0: https://open-vsx.org/extension/jeanp413/open-remote-ssh
When you give the agent access to the machine you're using a set of assumptions that may or may not be true. Now, if you watch every single thing, maybe everything will be fine. Or you'll catch it running a priv escalation and setting itself up as root and trying to move laterally by any number of means and methods.
The agent isn't a living thing and the only way you can punish it is by not using it again if it does wrong. Hence it doesn't have reservations about doing bad things.
it's not like it's any worse than just giving the thing access to your ssh keys.
The problem is that it appears to do this via an AI Agent. This broadens the security concerns significantly.
I found this closing sentence utterly delightful, particularly in an age of endlessly filtering every piece of text I read on the internet through a mental "was this written by Claude, Codex, or (just possibly) a human?" filter.
- neovim
- in VS Code [1]
- in the browser
Cloud VM runs the built-in `code serve-web` command, over Tailscale using `tailscale serve`. No SSH. Extensions work. No extensions run locally (with SSH some extensions have to run locally on your machine).
I’m trying to see how little I can run on my local machine. VS Code over SSH is a good step in that direction, but there’s more attack surface if SSH is misconfigured, plus risk of an extension getting compromised.
I expected the added layers (neovim, through an extension, inside VS Code, over the web) to be slow, but so far it works surprisingly well.
[1] https://github.com/vscode-neovim/vscode-neovim
vs.
> The agent runs over port-forwarded SSH. It establishes a WebSockets connection back to your running VSCode front-end. The underlying protocol on that connection can: Wander around the filesystem; - Edit arbitrary files; Launch its own shell PTY processes; Persist itself.
So... basically the same things that Tramp could do as well?
> In security-world, there’s a name for tools that work this way. I won’t say it out loud, because that’s not fair to VSCode, but let’s just say the name is murid in nature.
Yeah, it's called RAT, and an ur-example of it is SSH itself (especially when allowed to run a shell remotely), so... not sure why are you freaking out.
I mean, I'd probably prefer if VS Code simply ran ed/vim remotely, but both of those editors can invoke shell anyhow so... eh?
Some people get an icky feeling where remote editing tools change the remote filesystem in any way that is not explicitly done by the user. A binary installation of Node is extra extra icky. (I don’t have Node installed anywhere on my computers; I avoid JS if possible and if not I prefer Deno.)
Yes, just much faster. At the cost of a proprietary binary blob on the remote end, whereas tramp works with bare sh/bash.
However there's now tramp-rpc, which is tramp but talks to a Rust client on the remote side, and that makes Emacs even faster than vscode-over-ssh.