← Pipedream + LoopMessage integrations

Send Reaction with LoopMessage API on New Scheduled Tasks from Pipedream API

Pipedream makes it easy to connect APIs for LoopMessage, Pipedream and 2,400+ other apps remarkably fast.

Trigger workflow on
New Scheduled Tasks from the Pipedream API
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Send Reaction with the LoopMessage API
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Developers Pipedream

Getting Started

This integration creates a workflow with a Pipedream trigger and LoopMessage action. When you configure and deploy the workflow, it will run on Pipedream's servers 24x7 for free.

  1. Select this integration
  2. Configure the New Scheduled Tasks trigger
    1. Connect your Pipedream account
    2. Optional- Configure Secret
  3. Configure the Send Reaction action
    1. Connect your LoopMessage account
    2. Configure Recipient
    3. Configure Text
    4. Optional- Configure Sender Name
    5. Optional- Configure Status Callback
    6. Optional- Configure Status Callback Header
    7. Configure Message ID
    8. Select a Reaction
  4. Deploy the workflow
  5. Send a test event to validate your setup
  6. Turn on the trigger

Details

This integration uses pre-built, source-available components from Pipedream's GitHub repo. These components are developed by Pipedream and the community, and verified and maintained by Pipedream.

To contribute an update to an existing component or create a new component, create a PR on GitHub. If you're new to Pipedream component development, you can start with quickstarts for trigger span and action development, and then review the component API reference.

Trigger

Description:Exposes an HTTP API for scheduling messages to be emitted at a future time
Version:0.3.1
Key:pipedream-new-scheduled-tasks

Pipedream Overview

Pipedream is an API that allows you to build applications that can connect to
various data sources and processes them in real-time. You can use Pipedream to
create applications that can perform ETL (Extract, Transform, and Load) tasks,
as well as to create data-driven workflows.

Some examples of applications you can build using the Pipedream API include:

  • An application that can extract data from a database, transform it, and then
    load it into another database.
  • An application that can monitor a data source for changes, and then trigger a
    workflow in response to those changes.
  • An application that can poll an API for new data, and then process that data
    in real-time.

Trigger Code

import pipedream from "../../pipedream.app.mjs";
import sampleEmit from "./test-event.mjs";
import { uuid } from "uuidv4";

export default {
  key: "pipedream-new-scheduled-tasks",
  name: "New Scheduled Tasks",
  type: "source",
  description:
    "Exposes an HTTP API for scheduling messages to be emitted at a future time",
  version: "0.3.1",
  dedupe: "unique", // Dedupe on a UUID generated for every scheduled task
  props: {
    pipedream,
    secret: {
      type: "string",
      secret: true,
      label: "Secret",
      optional: true,
      description:
        "**Optional but recommended**: if you enter a secret here, you must pass this value in the `x-pd-secret` HTTP header when making requests",
    },
    http: {
      label: "Endpoint",
      description: "The endpoint where you'll send task scheduler requests",
      type: "$.interface.http",
      customResponse: true,
    },
    db: "$.service.db",
  },
  methods: {
    // To schedule future emits, we emit to the selfChannel of the component
    selfChannel() {
      return "self";
    },
    // Queue for future emits that haven't yet been delivered
    queuedEventsChannel() {
      return "$in";
    },
    httpRespond({
      status, body,
    }) {
      this.http.respond({
        headers: {
          "content-type": "application/json",
        },
        status,
        body,
      });
    },
    async selfSubscribe() {
      // Subscribe the component to itself. We do this here because even in
      // the activate hook, the component isn't available to take subscriptions.
      // Scheduled tasks are sent to the self channel, which emits the message at
      // the specified delivery_ts to this component.
      const isSubscribedToSelf = this.db.get("isSubscribedToSelf");
      if (!isSubscribedToSelf) {
        const componentId = process.env.PD_COMPONENT;
        const selfChannel = this.selfChannel();
        console.log(`Subscribing to ${selfChannel} channel for event source`);
        console.log(
          await this.pipedream.subscribe(componentId, componentId, selfChannel),
        );
        this.db.set("isSubscribedToSelf", true);
      }
    },
    validateEventBody(event, operation) {
      const errors = [];

      // Secrets are optional, so we first check if the user configured
      // a secret, then check its value against the prop (validation below)
      if (this.secret && event.headers["x-pd-secret"] !== this.secret) {
        errors.push(
          "Secret on incoming request doesn't match the configured secret",
        );
      }

      if (operation === "schedule") {
        const {
          timestamp,
          message,
        } = event.body;
        // timestamp should be an ISO 8601 string. Parse and check for validity below.
        const epoch = Date.parse(timestamp);

        if (!timestamp) {
          errors.push(
            "No timestamp included in payload. Please provide an ISO8601 timestamp in the 'timestamp' field",
          );
        }
        if (timestamp && !epoch) {
          errors.push("Timestamp isn't a valid ISO 8601 string");
        }
        if (!message) {
          errors.push("No message passed in payload");
        }
      }

      return errors;
    },
    scheduleTask(event) {
      const errors = this.validateEventBody(event, "schedule");
      let status, body;

      if (errors.length) {
        console.log(errors);
        status = 400;
        body = {
          errors,
        };
      } else {
        const id = this.emitScheduleEvent(event.body, event.body.timestamp);
        status = 200;
        body = {
          msg: "Successfully scheduled task",
          id,
        };
      }

      this.httpRespond({
        status,
        body,
      });
    },
    emitScheduleEvent(event, timestamp) {
      const selfChannel = this.selfChannel();
      const epoch = Date.parse(timestamp);
      const $id = uuid();

      console.log(`Scheduled event to emit on: ${new Date(epoch)}`);

      this.$emit(
        {
          ...event,
          $channel: selfChannel,
          $id,
        },
        {
          name: selfChannel,
          id: $id,
          delivery_ts: epoch,
        },
      );

      return $id;
    },
    async cancelTask(event) {
      const errors = this.validateEventBody(event, "cancel");
      let status, msg;

      if (errors.length) {
        console.log(errors);
        status = 400;
        msg = "Secret on incoming request doesn't match the configured secret";
      } else {
        try {
          const id = event.body.id;
          const isCanceled = await this.deleteEvent(event);
          if (isCanceled) {
            status = 200;
            msg = `Cancelled scheduled task for event ${id}`;
          } else {
            status = 404;
            msg = `No event with ${id} found`;
          }
        } catch (error) {
          console.log(error);
          status = 500;
          msg = "Failed to schedule task. Please see the logs";
        }
      }

      this.httpRespond({
        status,
        body: {
          msg,
        },
      });
    },
    async deleteEvent(event) {
      const componentId = process.env.PD_COMPONENT;
      const inChannel = this.queuedEventsChannel();

      // The user must pass a scheduled event UUID they'd like to cancel
      // We lookup the event by ID and delete it
      const { id } = event.body;

      // List events in the $in channel - the queue of scheduled events, to be emitted in the future
      const events = await this.pipedream.listEvents(
        componentId,
        inChannel,
      );
      console.log("Events: ", events);

      // Find the event in the list by id
      const eventToCancel = events.data.find((e) => {
        const { metadata } = e;
        return metadata.id === id;
      });

      console.log("Event to cancel: ", eventToCancel);

      if (!eventToCancel) {
        console.log(`No event with ${id} found`);
        return false;
      }

      // Delete the event
      await this.pipedream.deleteEvent(
        componentId,
        eventToCancel.id,
        inChannel,
      );
      return true;
    },
    emitEvent(event, summary) {
      // Delete the channel name and id from the incoming event, which were used only as metadata
      const id = event.$id;
      delete event.$channel;
      delete event.$id;

      this.$emit(event, {
        summary: summary ?? JSON.stringify(event),
        id,
        ts: +new Date(),
      });
    },
  },
  async run(event) {
    await this.selfSubscribe();

    const { path } = event;
    if (path === "/schedule") {
      this.scheduleTask(event);
    } else if (path === "/cancel") {
      await this.cancelTask(event);
    } else if (event.$channel === this.selfChannel()) {
      this.emitEvent(event);
    }
  },
  sampleEmit,
};

Trigger Configuration

This component may be configured based on the props defined in the component code. Pipedream automatically prompts for input values in the UI and CLI.
LabelPropTypeDescription
PipedreampipedreamappThis component uses the Pipedream app.
Secretsecretstring

Optional but recommended: if you enter a secret here, you must pass this value in the x-pd-secret HTTP header when making requests

N/Ahttp$.interface.httpThis component uses $.interface.http to generate a unique URL when the component is first instantiated. Each request to the URL will trigger the run() method of the component.
N/Adb$.service.dbThis component uses $.service.db to maintain state between executions.

Trigger Authentication

Pipedream uses API keys for authentication. When you connect your Pipedream account, Pipedream securely stores the keys so you can easily authenticate to Pipedream APIs in both code and no-code steps.

About Pipedream

Integration platform for developers

Action

Description:Action to submit your request to the sending queue. When a request in the queue will be ready to send a reaction in iMessage, an attempt will be made to deliver it to the recipient. [See the documentation](https://docs.loopmessage.com/imessage-conversation-api/messaging/send-message#send-reaction)
Version:0.0.2
Key:loopmessage-send-reaction

LoopMessage Overview

The LoopMessage API offers you the ability to send, receive, and manage messages within your applications. Through Pipedream's integration, you can harness this API to automate communication processes, organize message flows, and even connect to various data sources or other APIs to create complex messaging workflows. With Pipedream, you can trigger actions based on events, schedule messages, and interact with users in real-time without managing servers or infrastructure.

Action Code

import common from "../common/send-message.mjs";
import constants from "../../common/constants.mjs";

export default {
  ...common,
  key: "loopmessage-send-reaction",
  name: "Send Reaction",
  description: "Action to submit your request to the sending queue. When a request in the queue will be ready to send a reaction in iMessage, an attempt will be made to deliver it to the recipient. [See the documentation](https://docs.loopmessage.com/imessage-conversation-api/messaging/send-message#send-reaction)",
  type: "action",
  version: "0.0.2",
  props: {
    ...common.props,
    messageId: {
      type: "string",
      label: "Message ID",
      description: "The ID of the message to react to. You can get it from the webhook trigger.",
    },
    reaction: {
      type: "string",
      label: "Reaction",
      description: "Reactions that starts with `-` mean *remove* it from the message. You can check the [Apple guide](https://support.apple.com/HT206894) about reactions and tapbacks.",
      options: constants.REACTIONS,
    },
  },
  methods: {
    ...common.methods,
    getSummary(response) {
      return `Successfully sent a reaction to with ID \`${response.message_id}\``;
    },
  },
};

Action Configuration

This component may be configured based on the props defined in the component code. Pipedream automatically prompts for input values in the UI.

LabelPropTypeDescription
LoopMessageappappThis component uses the LoopMessage app.
Recipientrecipientstring

The recipient of the message. This can be a phone number or email address.

Texttextstring

The text of the message.

Sender NamesenderNamestring

Your dedicated sender name. This parameter will be ignored if you send a request to a recipient who is added as a Sandbox contact. If you've connected a phone number, you'll need to keep passing your original sender name. DON'T use a phone number as a value for this parameter.

Status CallbackstatusCallbackstring

The URL that will receive status updates for this message. Check the Webhooks section for details. Max length is 256 characters.

Status Callback HeaderstatusCallbackHeaderstring

The custom Authorization header will be contained in the callback request. Max length is 256 characters.

Message IDmessageIdstring

The ID of the message to react to. You can get it from the webhook trigger.

ReactionreactionstringSelect a value from the drop down menu:lovelikedislikelaughexlaimquestion-love-like-dislike-laugh-exlaim-question

Action Authentication

LoopMessage uses API keys for authentication. When you connect your LoopMessage account, Pipedream securely stores the keys so you can easily authenticate to LoopMessage APIs in both code and no-code steps.

Sign in and copy your API Keys from Conversation API settings.

About LoopMessage

iMessage API for two-way communication

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