Send, read, and manage Gmail messages, drafts, labels, and threads.
Gmail ships in the w6w first-party pack. It declares 25 actions, 2 health checks, and the host runs its code in a sandbox that never sees the credential.
io.w6w.gmailGmail gives a workflow full control over a mailbox — sending messages directly or building a draft first and sending it later, replying to a message or a whole thread, and reading messages and threads by id or in bulk.
Labels are a first-class part of the surface: they can be created, deleted, listed, and added to or removed from a message or an entire thread, which is the mechanism Gmail itself uses for filing and triage — so a workflow can sort mail the same way a person would. Read state and trash are manageable too, marking a message read or unread and trashing or untrashing a thread, rounding out what a mailbox-automation process needs.
Useful for sending transactional or notification email through an actual Gmail account, triaging inbound mail by label as it arrives, or building drafts a person reviews before they go out.
Three routes to the same 25 actions. The Workflow tab is generated from Gmail's own manifest and carries its real ids, so it is copy-pasteable; the Code and CLI examples are the same call for any action on any app, so every app-specific value in them is a blank you fill in.
get-many-messages List Gmail messages. Returns IDs; hydrate individually with Get Message.
A workflow step names the app and the action, and the editor fills in the
connection when you pick one. This is the Step shape from the
workflow spec, carrying Gmail's real ids.
{
"manifestVersion": "2",
"name": "gmail-example",
"steps": [
{
"id": "add-message-labels",
"uses": {
"app": "io.w6w.gmail",
"action": "add-message-labels",
"connection": "conn_YOUR_CONNECTION_ID"
},
"with": {
"messageId": "<messageId>",
"labelIds": "<labelIds>"
}
}
]
}add-message-labels add-thread-labels create-draft create-label get-draft +20 more actions available
Every app-specific value here is a blank you have to fill in. An
app action is reached through the connection that authenticates it, so the
address is a connection id, not the app id — and connections belong to your account,
so a public page cannot know yours. Create one for Gmail, then fill in
the three blanks: conn_YOUR_CONNECTION_ID, the action key, and the
parameters that action declares. The call itself is real — the shape is transcribed
from the studio's own snippet builder, which prints the same kind of blanks — but
nothing in it is specific to Gmail. The Workflow tab is where this app's
real ids are.
npm install @w6w/sdkyarn add @w6w/sdkpnpm add @w6w/sdkdeno add npm:@w6w/sdkimport { W6wClient, isActionRun } from "@w6w/sdk";
// Reads W6W_BASE_URL and W6W_TOKEN from the environment when omitted.
const client = new W6wClient();
const envelope = await client.run({
urn: "conn_YOUR_CONNECTION_ID",
action: "send-message",
payload: {
to: "<value>",
// subject: "<value>",
// text: "<value>",
// html: "<value>",
// from: "<value>",
// cc: "<value>",
// bcc: "<value>",
// replyTo: "<value>",
// threadId: "<value>",
},
});
if (isActionRun(envelope)) console.log(envelope.value); npm install -g @w6w/cli w6w run conn_YOUR_CONNECTION_ID --action send-message --payload '{"to":"<value>"}' Give an AI agent Gmail — without giving it Gmail's credentials. One MCP endpoint exposes every app, function and workflow the caller is entitled to, as tools it can discover and run. Access is granted per team while we onboard.
One tool call{
"name": "w6w_invoke",
"arguments": {
"ref": "app:io.w6w.gmail#add-message-labels",
"input": {
"messageId": "<messageId>",
"labelIds": "<labelIds>"
}
}
}
Every tool names its target with a single ref. The
app: form above doesn't name a connection at all — the
host resolves which of the caller's Gmail connections to sign
with, and refuses rather than guesses when the answer is ambiguous.
The token is attached host-side, at the moment of the call. It is never a tool argument, never in the model's context, and never in a transcript — so a prompt injection has nothing to exfiltrate.
Tools are derived per end user from what that person has actually connected and is entitled to — not one shared bot identity carrying the union of everyone's access.
Multi-step work runs on the workflow engine and returns a run handle the agent can poll — retries, branching and state survive the conversation that started them.
Gmail's declared health checks are on the surface too, so an agent can tell "the vendor is down" from "your credential expired" before it burns a retry on either.
The MCP surface is part of the hosted platform. Gmail itself is MIT, and the runtime that executes it is source-available (FSL).
Gmail declares its own checks, so its health is a property of the app rather than something the host guesses at.
Open incidents for Gmail on the Google Workspace Status Dashboard. Unauthenticated and unsigned.