Chrome Devtools Mcp — independently scanned and version-tracked by SaferSkills.
SaferSkills independently audited Chrome Devtools Mcp (Plugin) and scored it 100/100 (green). The audit ran 55 deterministic rules across Security, Supply Chain, Maintenance, Transparency, and Community; it found 0 high-severity and 0 lower-severity findings. The full rule-by-rule trace and per-finding evidence are below. Free, methodology-open.
Findings & checks · 0 flagged
Every scanned point with the score it earned and what moved between them.
Aggregate score unchanged between these scans.
The primary manifest — the file an agent reads to learn what this artifact does.
chrome-devtools-mcp lets your coding agent (such as Gemini, Claude, Cursor or Copilot) control and inspect a live Chrome browser. It acts as a Model-Context-Protocol (MCP) server, giving your AI coding assistant access to the full power of Chrome DevTools for reliable automation, in-depth debugging, and performance analysis.
DevTools](https://github.com/ChromeDevTools/devtools-frontend) to record traces and extract actionable performance insights.
check the browser console.
puppeteer to automate actions in Chrome and automatically wait for action results.
chrome-devtools-mcp exposes content of the browser instance to the MCP clients allowing them to inspect, debug, and modify any data in the browser or DevTools. Avoid sharing sensitive or personal information that you don't want to share with MCP clients.
Add the following config to your MCP client:
{
"mcpServers": {
"chrome-devtools": {
"command": "npx",
"args": ["-y", "chrome-devtools-mcp@latest"]
}
}
}[!NOTE] Using chrome-devtools-mcp@latest ensures that your MCP client will always use the latest version of the Chrome DevTools MCP server.<details> <summary>Amp</summary> Follow https://ampcode.com/manual#mcp and use the config provided above. You can also install the Chrome DevTools MCP server using the CLI:
amp mcp add chrome-devtools -- npx chrome-devtools-mcp@latest</details>
<details> <summary>Antigravity</summary>
To use the Chrome DevTools MCP server follow the instructions from <a href="https://antigravity.google/docs/mcp">Antigravity's docs<a/> to install a custom MCP server. Add the following config to the MCP servers config:
{
"mcpServers": {
"chrome-devtools": {
"command": "npx",
"args": [
"chrome-devtools-mcp@latest",
"--browser-url=http://127.0.0.1:9222",
"-y"
]
}
}
}This will make the Chrome DevTools MCP server automatically connect to the browser that Antigravity is using. If you are not using port 9222, make sure to adjust accordingly.
</details>
<details> <summary>Claude Code</summary> Use the Claude Code CLI to add the Chrome DevTools MCP server (<a href="https://docs.anthropic.com/en/docs/claude-code/mcp">guide</a>):
claude mcp add chrome-devtools npx chrome-devtools-mcp@latest</details>
<details> <summary>Cline</summary> Follow https://docs.cline.bot/mcp/configuring-mcp-servers and use the config provided above. </details>
<details> <summary>Codex</summary> Follow the <a href="https://github.com/openai/codex/blob/main/docs/advanced.md#model-context-protocol-mcp">configure MCP guide</a> using the standard config from above. You can also install the Chrome DevTools MCP server using the Codex CLI:
codex mcp add chrome-devtools -- npx chrome-devtools-mcp@latestOn Windows 11
Configure the Chrome install location and increase the startup timeout by updating .codex/config.toml and adding the following env and startup_timeout_ms parameters:
[mcp_servers.chrome-devtools]
command = "cmd"
args = [
"/c",
"npx",
"-y",
"chrome-devtools-mcp@latest",
]
env = { SystemRoot="C:\\Windows", PROGRAMFILES="C:\\Program Files" }
startup_timeout_ms = 20_000</details>
<details> <summary>Copilot CLI</summary>
Start Copilot CLI:
copilotStart the dialog to add a new MCP server by running:
/mcp addConfigure the following fields and press CTRL+S to save the configuration:
chrome-devtools[1] Localnpx -y chrome-devtools-mcp@latest</details>
<details> <summary>Copilot / VS Code</summary> Follow the MCP install <a href="https://code.visualstudio.com/docs/copilot/chat/mcp-servers#_add-an-mcp-server">guide</a>, with the standard config from above. You can also install the Chrome DevTools MCP server using the VS Code CLI:
code --add-mcp '{"name":"chrome-devtools","command":"npx","args":["chrome-devtools-mcp@latest"]}'</details>
<details> <summary>Cursor</summary>
Click the button to install:
<img src="https://cursor.com/deeplink/mcp-install-dark.svg" alt="Install in Cursor">
Or install manually:
Go to Cursor Settings -> MCP -> New MCP Server. Use the config provided above.
</details>
<details> <summary>Factory CLI</summary> Use the Factory CLI to add the Chrome DevTools MCP server (<a href="https://docs.factory.ai/cli/configuration/mcp">guide</a>):
droid mcp add chrome-devtools "npx -y chrome-devtools-mcp@latest"</details>
<details> <summary>Gemini CLI</summary> Install the Chrome DevTools MCP server using the Gemini CLI.
Project wide:
gemini mcp add chrome-devtools npx chrome-devtools-mcp@latestGlobally:
gemini mcp add -s user chrome-devtools npx chrome-devtools-mcp@latestAlternatively, follow the <a href="https://github.com/google-gemini/gemini-cli/blob/main/docs/tools/mcp-server.md#how-to-set-up-your-mcp-server">MCP guide</a> and use the standard config from above.
</details>
<details> <summary>Gemini Code Assist</summary> Follow the <a href="https://cloud.google.com/gemini/docs/codeassist/use-agentic-chat-pair-programmer#configure-mcp-servers">configure MCP guide</a> using the standard config from above. </details>
<details> <summary>JetBrains AI Assistant & Junie</summary>
Go to Settings | Tools | AI Assistant | Model Context Protocol (MCP) -> Add. Use the config provided above. The same way chrome-devtools-mcp can be configured for JetBrains Junie in Settings | Tools | Junie | MCP Settings -> Add. Use the config provided above.
</details>
<details> <summary>Kiro</summary>
In Kiro Settings, go to Configure MCP > Open Workspace or User MCP Config > Use the configuration snippet provided above.
Or, from the IDE Activity Bar > Kiro > MCP Servers > Click Open MCP Config. Use the configuration snippet provided above.
</details>
<details> <summary>Qoder</summary>
In Qoder Settings, go to MCP Server > + Add > Use the configuration snippet provided above.
Alternatively, follow the <a href="https://docs.qoder.com/user-guide/chat/model-context-protocol">MCP guide</a> and use the standard config from above.
</details>
<details> <summary>Visual Studio</summary>
Click the button to install:
<details> <summary>Warp</summary>
Go to Settings | AI | Manage MCP Servers -> + Add to add an MCP Server. Use the config provided above.
</details>
<details> <summary>Windsurf</summary> Follow the <a href="https://docs.windsurf.com/windsurf/cascade/mcp#mcp-config-json">configure MCP guide</a> using the standard config from above. </details>
Enter the following prompt in your MCP Client to check if everything is working:
Check the performance of https://developers.chrome.comYour MCP client should open the browser and record a performance trace.
[!NOTE] The MCP server will start the browser automatically once the MCP client uses a tool that requires a running browser instance. Connecting to the Chrome DevTools MCP server on its own will not automatically start the browser.
If you run into any issues, checkout our troubleshooting guide.
<!-- BEGIN AUTO GENERATED TOOLS -->
clickdragfillfill_formhandle_dialoghoverpress_keyupload_fileclose_pagelist_pagesnavigate_pagenew_pageselect_pagewait_foremulateresize_pageperformance_analyze_insightperformance_start_traceperformance_stop_traceget_network_requestlist_network_requestsevaluate_scriptget_console_messagelist_console_messagestake_screenshottake_snapshot<!-- END AUTO GENERATED TOOLS -->
The Chrome DevTools MCP server supports the following configuration option:
<!-- BEGIN AUTO GENERATED OPTIONS -->
Connect to a running Chrome instance using port forwarding. For more details see: https://developer.chrome.com/docs/devtools/remote-debugging/local-server.
WebSocket endpoint to connect to a running Chrome instance (e.g., ws://127.0.0.1:9222/devtools/browser/<id>). Alternative to --browserUrl.
Custom headers for WebSocket connection in JSON format (e.g., '{"Authorization":"Bearer token"}'). Only works with --wsEndpoint.
Whether to run in headless (no UI) mode.
falsePath to custom Chrome executable.
If specified, creates a temporary user-data-dir that is automatically cleaned up after the browser is closed.
falseSpecify a different Chrome channel that should be used. The default is the stable channel version.
stable, canary, beta, devPath to a file to write debug logs to. Set the env variable DEBUG to * to enable verbose logs. Useful for submitting bug reports.
Initial viewport size for the Chrome instances started by the server. For example, 1280x720. In headless mode, max size is 3840x2160px.
Proxy server configuration for Chrome passed as --proxy-server when launching the browser. See https://www.chromium.org/developers/design-documents/network-settings/ for details.
If enabled, ignores errors relative to self-signed and expired certificates. Use with caution.
Additional arguments for Chrome. Only applies when Chrome is launched by chrome-devtools-mcp.
Set to false to exclude tools related to emulation.
trueSet to false to exclude tools related to performance.
trueSet to false to exclude tools related to network.
true<!-- END AUTO GENERATED OPTIONS -->
Pass them via the args property in the JSON configuration. For example:
{
"mcpServers": {
"chrome-devtools": {
"command": "npx",
"args": [
"chrome-devtools-mcp@latest",
"--channel=canary",
"--headless=true",
"--isolated=true"
]
}
}
}You can connect directly to a Chrome WebSocket endpoint and include custom headers (e.g., for authentication):
{
"mcpServers": {
"chrome-devtools": {
"command": "npx",
"args": [
"chrome-devtools-mcp@latest",
"--wsEndpoint=ws://127.0.0.1:9222/devtools/browser/<id>",
"--wsHeaders={\"Authorization\":\"Bearer YOUR_TOKEN\"}"
]
}
}
}To get the WebSocket endpoint from a running Chrome instance, visit http://127.0.0.1:9222/json/version and look for the webSocketDebuggerUrl field.
You can also run npx chrome-devtools-mcp@latest --help to see all available configuration options.
chrome-devtools-mcp starts a Chrome's stable channel instance using the following user data directory:
$HOME/.cache/chrome-devtools-mcp/chrome-profile-$CHANNEL%HOMEPATH%/.cache/chrome-devtools-mcp/chrome-profile-$CHANNELThe user data directory is not cleared between runs and shared across all instances of chrome-devtools-mcp. Set the isolated option to true to use a temporary user data dir instead which will be cleared automatically after the browser is closed.
You can connect to a running Chrome instance by using the --browser-url option. This is useful if you want to use your existing Chrome profile or if you are running the MCP server in a sandboxed environment that does not allow starting a new Chrome instance.
Here is a step-by-step guide on how to connect to a running Chrome Stable instance:
Step 1: Configure the MCP client
Add the --browser-url option to your MCP client configuration. The value of this option should be the URL of the running Chrome instance. http://127.0.0.1:9222 is a common default.
{
"mcpServers": {
"chrome-devtools": {
"command": "npx",
"args": [
"chrome-devtools-mcp@latest",
"--browser-url=http://127.0.0.1:9222"
]
}
}
}Step 2: Start the Chrome browser
[!WARNING] Enabling the remote debugging port opens up a debugging port on the running browser instance. Any application on your machine can connect to this port and control the browser. Make sure that you are not browsing any sensitive websites while the debugging port is open.
Start the Chrome browser with the remote debugging port enabled. Make sure to close any running Chrome instances before starting a new one with the debugging port enabled. The port number you choose must be the same as the one you specified in the --browser-url option in your MCP client configuration.
For security reasons, Chrome requires you to use a non-default user data directory when enabling the remote debugging port. You can specify a custom directory using the --user-data-dir flag. This ensures that your regular browsing profile and data are not exposed to the debugging session.
macOS
/Applications/Google\ Chrome.app/Contents/MacOS/Google\ Chrome --remote-debugging-port=9222 --user-data-dir=/tmp/chrome-profile-stableLinux
/usr/bin/google-chrome --remote-debugging-port=9222 --user-data-dir=/tmp/chrome-profile-stableWindows
"C:\Program Files\Google\Chrome\Application\chrome.exe" --remote-debugging-port=9222 --user-data-dir="%TEMP%\chrome-profile-stable"Step 3: Test your setup
After configuring the MCP client and starting the Chrome browser, you can test your setup by running a simple prompt in your MCP client:
Check the performance of https://developers.chrome.comYour MCP client should connect to the running Chrome instance and receive a performance report.
If you hit VM-to-host port forwarding issues, see the “Remote debugging between virtual machine (VM) and host fails” section in docs/troubleshooting.md.
For more details on remote debugging, see the Chrome DevTools documentation.
Some MCP clients allow sandboxing the MCP server using macOS Seatbelt or Linux containers. If sandboxes are enabled, chrome-devtools-mcp is not able to start Chrome that requires permissions to create its own sandboxes. As a workaround, either disable sandboxing for chrome-devtools-mcp in your MCP client or use --browser-url to connect to a Chrome instance that you start manually outside of the MCP client sandbox.
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