BasisTheory TypeScript Library

The BasisTheory TypeScript library provides convenient access to the BasisTheory APIs from TypeScript.
Table of Contents
Documentation
API reference documentation is available here.
Installation
npm i -s @basis-theory/node-sdk
Reference
A full reference for this library is available here.
Usage
Instantiate and use the client with the following:
import { BasisTheoryClient } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({ apiKey: "YOUR_API_KEY", correlationId: "YOUR_CORRELATION_ID" });
await client.tenants.self.get();
Environments
This SDK allows you to configure different environments for API requests.
import { BasisTheoryClient, BasisTheoryEnvironment } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({
environment: BasisTheoryEnvironment.Default,
});
Request and Response Types
The SDK exports all request and response types as TypeScript interfaces. Simply import them with the
following namespace:
import { BasisTheory } from "@basis-theory/node-sdk";
const request: BasisTheory.ApplicationsListRequest = {
...
};
Exception Handling
When the API returns a non-success status code (4xx or 5xx response), a subclass of the following error
will be thrown.
import { BasisTheoryError } from "@basis-theory/node-sdk";
try {
await client.tenants.self.get(...);
} catch (err) {
if (err instanceof BasisTheoryError) {
console.log(err.statusCode);
console.log(err.message);
console.log(err.body);
console.log(err.rawResponse);
}
}
List endpoints are paginated. The SDK provides an iterator so that you can simply loop over the items:
import { BasisTheoryClient } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({ apiKey: "YOUR_API_KEY", correlationId: "YOUR_CORRELATION_ID" });
const pageableResponse = await client.applications.list({
id: ["id"],
type: ["type"],
page: 1,
start: "start",
size: 1
});
for await (const item of pageableResponse) {
console.log(item);
}
let page = await client.applications.list({
id: ["id"],
type: ["type"],
page: 1,
start: "start",
size: 1
});
while (page.hasNextPage()) {
page = page.getNextPage();
}
const response = page.response;
Advanced
Subpackage Exports
This SDK supports direct imports of subpackage clients, which allows JavaScript bundlers to tree-shake and include only the imported subpackage code. This results in much smaller bundle sizes.
import { ApplicationsClient } from '@basis-theory/node-sdk/applications';
const client = new ApplicationsClient({...});
If you would like to send additional headers as part of the request, use the headers request option.
import { BasisTheoryClient } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({
...
headers: {
'X-Custom-Header': 'custom value'
}
});
const response = await client.tenants.self.get(..., {
headers: {
'X-Custom-Header': 'custom value'
}
});
Additional Query String Parameters
If you would like to send additional query string parameters as part of the request, use the queryParams request option.
const response = await client.tenants.self.get(..., {
queryParams: {
'customQueryParamKey': 'custom query param value'
}
});
Retries
The SDK is instrumented with automatic retries with exponential backoff. A request will be retried as long
as the request is deemed retryable and the number of retry attempts has not grown larger than the configured
retry limit (default: 2).
Which status codes are retried depends on the retryStatusCodes generator configuration:
legacy (current default): retries on
- 408 (Timeout)
- 429 (Too Many Requests)
- 5XX (All server errors, including 500)
recommended: retries on
- 408 (Timeout)
- 429 (Too Many Requests)
- 502 (Bad Gateway)
- 503 (Service Unavailable)
- 504 (Gateway Timeout)
Use the maxRetries request option to configure this behavior.
const response = await client.tenants.self.get(..., {
maxRetries: 0
});
Timeouts
The SDK defaults to a 60 second timeout. Use the timeoutInSeconds option to configure this behavior.
const response = await client.tenants.self.get(..., {
timeoutInSeconds: 30
});
Aborting Requests
The SDK allows users to abort requests at any point by passing in an abort signal.
const controller = new AbortController();
const response = await client.tenants.self.get(..., {
abortSignal: controller.signal
});
controller.abort();
Access Raw Response Data
The SDK provides access to raw response data, including headers, through the .withRawResponse() method.
The .withRawResponse() method returns a promise that results to an object with a data and a rawResponse property.
const { data, rawResponse } = await client.tenants.self.get(...).withRawResponse();
console.log(data);
console.log(rawResponse.headers['X-My-Header']);
Logging
The SDK supports logging. You can configure the logger by passing in a logging object to the client options.
import { BasisTheoryClient, logging } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({
...
logging: {
level: logging.LogLevel.Debug,
logger: new logging.ConsoleLogger(),
silent: false,
}
});
The logging object can have the following properties:
level: The log level to use. Defaults to logging.LogLevel.Info.
logger: The logger to use. Defaults to a logging.ConsoleLogger.
silent: Whether to silence the logger. Defaults to true.
The level property can be one of the following values:
logging.LogLevel.Debug
logging.LogLevel.Info
logging.LogLevel.Warn
logging.LogLevel.Error
To provide a custom logger, you can pass in an object that implements the logging.ILogger interface.
Custom logger examples
Here's an example using the popular winston logging library.
import winston from 'winston';
const winstonLogger = winston.createLogger({...});
const logger: logging.ILogger = {
debug: (msg, ...args) => winstonLogger.debug(msg, ...args),
info: (msg, ...args) => winstonLogger.info(msg, ...args),
warn: (msg, ...args) => winstonLogger.warn(msg, ...args),
error: (msg, ...args) => winstonLogger.error(msg, ...args),
};
Here's an example using the popular pino logging library.
import pino from 'pino';
const pinoLogger = pino({...});
const logger: logging.ILogger = {
debug: (msg, ...args) => pinoLogger.debug(args, msg),
info: (msg, ...args) => pinoLogger.info(args, msg),
warn: (msg, ...args) => pinoLogger.warn(args, msg),
error: (msg, ...args) => pinoLogger.error(args, msg),
};
Custom Fetch
The SDK provides a low-level fetch method for making custom HTTP requests while still
benefiting from SDK-level configuration like authentication, retries, timeouts, and logging.
This is useful for calling API endpoints not yet supported in the SDK.
const response = await client.fetch("/v1/custom/endpoint", {
method: "GET",
}, {
timeoutInSeconds: 30,
maxRetries: 3,
headers: {
"X-Custom-Header": "custom-value",
},
});
const data = await response.json();
Custom Fetcher
The SDK provides a way for you to customize the underlying HTTP client / Fetch function. If you're running in an
unsupported environment, this provides a way for you to break glass and ensure the SDK works.
import { BasisTheoryClient } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({
...
fetcher:
});
Runtime Compatibility
The SDK works in the following runtimes:
- Node.js 18+
- Vercel
- Cloudflare Workers
- Deno v1.25+
- Bun 1.0+
- React Native
Contributing
While we value open-source contributions to this SDK, this library is generated programmatically.
Additions made directly to this library would have to be moved over to our generation code,
otherwise they would be overwritten upon the next generated release. Feel free to open a PR as
a proof of concept, but know that we will not be able to merge it as-is. We suggest opening
an issue first to discuss with us!
On the other hand, contributions to the README are always very welcome!
File Uploads
You can upload files using the client:
import { createReadStream } from "fs";
import { BasisTheoryClient } from "@basis-theory/node-sdk";
const client = new BasisTheoryClient({ apiKey: "YOUR_API_KEY", correlationId: "YOUR_CORRELATION_ID" });
await client.documents.upload({});
The client accepts a variety of types for file upload parameters:
- Stream types:
fs.ReadStream, stream.Readable, and ReadableStream
- Buffered types:
Buffer, Blob, File, ArrayBuffer, ArrayBufferView, and Uint8Array
Metadata
You can configure metadata when uploading a file:
const file: Uploadable.WithMetadata = {
data: createReadStream("path/to/file"),
filename: "my-file",
contentType: "audio/mpeg",
contentLength: 1949,
};
Alternatively, you can upload a file directly from a file path:
const file : Uploadable.FromPath = {
path: "path/to/file",
filename: "my-file",
contentType: "audio/mpeg",
contentLength: 1949,
};
The metadata is used to set the Content-Length, Content-Type, and Content-Disposition headers. If not provided, the client will attempt to determine them automatically.
For example, fs.ReadStream has a path property which the SDK uses to retrieve the file size from the filesystem without loading it into memory.
Binary Response
You can consume binary data from endpoints using the BinaryResponse type which lets you choose how to consume the data:
const response = await client.documents.data.get(...);
const stream: ReadableStream<Uint8Array> = response.stream();
const bodyUsed = response.bodyUsed;
Save binary response to a file
Node.js
ReadableStream (most-efficient)
import { createWriteStream } from 'fs';
import { Readable } from 'stream';
import { pipeline } from 'stream/promises';
const response = await client.documents.data.get(...);
const stream = response.stream();
const nodeStream = Readable.fromWeb(stream);
const writeStream = createWriteStream('path/to/file');
await pipeline(nodeStream, writeStream);
ArrayBuffer
import { writeFile } from 'fs/promises';
const response = await client.documents.data.get(...);
const arrayBuffer = await response.arrayBuffer();
await writeFile('path/to/file', Buffer.from(arrayBuffer));
Blob
import { writeFile } from 'fs/promises';
const response = await client.documents.data.get(...);
const blob = await response.blob();
const arrayBuffer = await blob.arrayBuffer();
await writeFile('output.bin', Buffer.from(arrayBuffer));
Bytes (UIntArray8)
import { writeFile } from 'fs/promises';
const response = await client.documents.data.get(...);
const bytes = await response.bytes();
await writeFile('path/to/file', bytes);
Bun
ReadableStream (most-efficient)
const response = await client.documents.data.get(...);
const stream = response.stream();
await Bun.write('path/to/file', stream);
ArrayBuffer
const response = await client.documents.data.get(...);
const arrayBuffer = await response.arrayBuffer();
await Bun.write('path/to/file', arrayBuffer);
Blob
const response = await client.documents.data.get(...);
const blob = await response.blob();
await Bun.write('path/to/file', blob);
Bytes (UIntArray8)
const response = await client.documents.data.get(...);
const bytes = await response.bytes();
await Bun.write('path/to/file', bytes);
Deno
ReadableStream (most-efficient)
const response = await client.documents.data.get(...);
const stream = response.stream();
const file = await Deno.open('path/to/file', { write: true, create: true });
await stream.pipeTo(file.writable);
ArrayBuffer
const response = await client.documents.data.get(...);
const arrayBuffer = await response.arrayBuffer();
await Deno.writeFile('path/to/file', new Uint8Array(arrayBuffer));
Blob
const response = await client.documents.data.get(...);
const blob = await response.blob();
const arrayBuffer = await blob.arrayBuffer();
await Deno.writeFile('path/to/file', new Uint8Array(arrayBuffer));
Bytes (UIntArray8)
const response = await client.documents.data.get(...);
const bytes = await response.bytes();
await Deno.writeFile('path/to/file', bytes);
Browser
Blob (most-efficient)
const response = await client.documents.data.get(...);
const blob = await response.blob();
const url = URL.createObjectURL(blob);
const a = document.createElement('a');
a.href = url;
a.download = 'filename';
a.click();
URL.revokeObjectURL(url);
ReadableStream
const response = await client.documents.data.get(...);
const stream = response.stream();
const reader = stream.getReader();
const chunks = [];
while (true) {
const { done, value } = await reader.read();
if (done) break;
chunks.push(value);
}
const blob = new Blob(chunks);
const url = URL.createObjectURL(blob);
const a = document.createElement('a');
a.href = url;
a.download = 'filename';
a.click();
URL.revokeObjectURL(url);
ArrayBuffer
const response = await client.documents.data.get(...);
const arrayBuffer = await response.arrayBuffer();
const blob = new Blob([arrayBuffer]);
const url = URL.createObjectURL(blob);
const a = document.createElement('a');
a.href = url;
a.download = 'filename';
a.click();
URL.revokeObjectURL(url);
Bytes (UIntArray8)
const response = await client.documents.data.get(...);
const bytes = await response.bytes();
const blob = new Blob([bytes]);
const url = URL.createObjectURL(blob);
const a = document.createElement('a');
a.href = url;
a.download = 'filename';
a.click();
URL.revokeObjectURL(url);
Convert binary response to text
ReadableStream
const response = await client.documents.data.get(...);
const stream = response.stream();
const text = await new Response(stream).text();
ArrayBuffer
const response = await client.documents.data.get(...);
const arrayBuffer = await response.arrayBuffer();
const text = new TextDecoder().decode(arrayBuffer);
Blob
const response = await client.documents.data.get(...);
const blob = await response.blob();
const text = await blob.text();
Bytes (UIntArray8)
const response = await client.documents.data.get(...);
const bytes = await response.bytes();
const text = new TextDecoder().decode(bytes);