SingleUseKeyRegistry SDK

SingleUseKeyRegistry SDK

Single-use Key Registry client, generated from the OpenAPI spec.

Blooms is a public API that allows users to register and check single-use keys for serverless apps, browser extensions, and software.

Learn more about Single-use Key Registry at blooms-production.up.railway.app.

This is an unofficial SDK for the Single-use Key Registry public API, generated by Voxgig with @voxgig/sdkgen. It is not affiliated with, endorsed by, or sponsored by the upstream API provider.

Learn more about Voxgig SDKs at voxgig.com/sdk.

Metadata kindly supplied by www.freepublicapis.com.

TypeScript, Python, PHP, Golang, Ruby, Lua SDKs, a CLI, an interactive REPL, and an MCP server for AI agents — all generated from one OpenAPI spec by @voxgig/sdkgen.

Entities, not endpoints

This SDK exposes the API as a small set of semantic entities — Key and Stat — that you call directly, instead of assembling URL paths and query strings. Entities are Capitalised to mark them as the primary surface, each with the operations they support (load, create):

const client = new SingleUseKeyRegistrySDK()
const key = await client.Key().load()

Thinking in entities keeps the mental model small — for people and AI agents alike — rather than reasoning about raw HTTP routes and query parameters.

Offline unit testing

Every SDK ships a built-in test mode that swaps the HTTP transport for an in-memory mock, so your unit tests run fully offline — no server, no network, and no credentials:

TypeScript

const client = SingleUseKeyRegistrySDK.test()
const key = await client.Key().load()
// key is a bare Key populated with mock data
console.log(key)

Python

client = SingleUseKeyRegistrySDK.test()
key = client.Key().load()
print(key)

PHP

// Seed fixture data so offline calls resolve without a live server.
$client = SingleUseKeyRegistrySDK::test([
    "entity" => ["key" => ["test01" => []]],
]);
$key = $client->Key()->load();

Golang

client := sdk.Test()
result, err := client.Key(nil).Load(
    nil, nil,
)

Ruby

# Seed fixture data so offline calls resolve without a live server.
client = SingleUseKeyRegistrySDK.test({
  "entity" => { "key" => { "test01" => {} } },
})
key = client.Key.load()

Lua

local client = sdk.test()
local result, err = client:Key():load()

Packages

LanguagePackageInstall
TypeScript@voxgig-sdk/single-use-key-registrypublish pending — install from git tag
Pythonvoxgig-sdk-single-use-key-registrypublish pending — install from git tag
PHPvoxgig-sdk/single-use-key-registrypublish pending — install from git tag
Golanggithub.com/voxgig-sdk/single-use-key-registry-sdk/gogo get github.com/voxgig-sdk/single-use-key-registry-sdk/go@latest
Rubyvoxgig-sdk-single-use-key-registrypublish pending — install from git tag
Luavoxgig-sdk-single-use-key-registrypublish pending — install from git tag
Go CLIgithub.com/voxgig-sdk/single-use-key-registry-sdk/go-cligo install github.com/voxgig-sdk/single-use-key-registry-sdk/go-cli/cmd/single-use-key-registry@latest
Go MCP servergithub.com/voxgig-sdk/single-use-key-registry-sdk/go-mcpgo get github.com/voxgig-sdk/single-use-key-registry-sdk/go-mcp@latest

Quickstart

TypeScript

import { SingleUseKeyRegistrySDK } from '@voxgig-sdk/single-use-key-registry'

const client = new SingleUseKeyRegistrySDK()

// Load key data (returns a Key)
const key = await client.Key().load()
console.log(key)

See the TypeScript README for the full guide.

Surfaces

SurfacePath
SDK (TypeScript, Python, PHP, Golang, Ruby, Lua)ts/ py/ php/ go/ rb/ lua/
CLIgo-cli/
MCP servergo-mcp/

Use it from an AI agent (MCP)

The generated MCP server exposes every operation in this SDK as an MCP tool that Claude, Cursor or Cline can call directly. Build and register it:

cd go-mcp && go build -o single-use-key-registry-mcp .

Then add it to your agent’s MCP config (Claude Desktop, Cursor, etc.):

{
  "mcpServers": {
    "single-use-key-registry": {
      "command": "/abs/path/to/single-use-key-registry-mcp"
    }
  }
}

Entities

The API exposes 2 entities:

EntityDescriptionAPI path
KeyThe Key entity (create, load)./api/generate
StatThe Stat entity (load)./api/stats

The operations available across these entities are load, create — see each entity’s own list above for exactly which it supports.

Quickstart in other languages

Python

from singleusekeyregistry_sdk import SingleUseKeyRegistrySDK

client = SingleUseKeyRegistrySDK()


# Load a specific key (returns the record, raises on error)
key = client.Key().load()
print(key)

PHP

<?php
require_once 'singleusekeyregistry_sdk.php';

$client = new SingleUseKeyRegistrySDK();


// Load a specific key (returns the bare record; throws on error)
$key = $client->Key()->load();
print_r($key);

Golang

import sdk "github.com/voxgig-sdk/single-use-key-registry-sdk/go"

client := sdk.New()

// Load key data
key, err := client.Key(nil).Load(nil, nil)
if err != nil {
    panic(err)
}
fmt.Println(key)

Ruby

require_relative "SingleUseKeyRegistry_sdk"

client = SingleUseKeyRegistrySDK.new


# Load a specific key (returns the bare record; raises on error)
key = client.Key.load()
puts key

Lua

local sdk = require("single-use-key-registry_sdk")

local client = sdk.new()


-- Load a specific key
local key, err = client:Key():load()
print(key)

Direct and prepare

For endpoints the entity model doesn’t cover, use the low-level methods:

  • direct(fetchargs) — build and send an HTTP request in one step.
  • prepare(fetchargs) — build the request without sending it.

Both accept a map with path, method, params, query, headers, and body. See the How-to guides below.

How-to guides

Make a direct API call

When the entity interface does not cover an endpoint, use direct:

TypeScript:

const result = await client.direct({
  path: '/api/resource/{id}',
  method: 'GET',
  params: { id: 'example' },
})
if (result instanceof Error) {
  throw result
}
console.log(result.data)

Python:

result = client.direct({
    "path": "/api/resource/{id}",
    "method": "GET",
    "params": {"id": "example"},
})

PHP:

$result = $client->direct([
    "path" => "/api/resource/{id}",
    "method" => "GET",
    "params" => ["id" => "example"],
]);

Go:

result, err := client.Direct(map[string]any{
    "path":   "/api/resource/{id}",
    "method": "GET",
    "params": map[string]any{"id": "example"},
})
if err != nil {
    panic(err)
}
fmt.Println(result)

Ruby:

result = client.direct({
  "path" => "/api/resource/{id}",
  "method" => "GET",
  "params" => { "id" => "example" },
})

Lua:

local result, err = client:direct({
  path = "/api/resource/{id}",
  method = "GET",
  params = { id = "example" },
})

Advanced

Everyday use only needs the sections above. This explains the internals behind every call — relevant when writing custom features.

Every SDK call runs the same five-stage pipeline:

  1. Point — resolve the API endpoint from the operation definition.
  2. Spec — build the HTTP specification (URL, method, headers, body).
  3. Request — send the HTTP request.
  4. Response — receive and parse the response.
  5. Result — extract the result data for the caller.

A feature hook fires at each stage (e.g. PrePoint, PreSpec, PreRequest), so features can inspect or modify the pipeline without forking the SDK.

Features

FeaturePurpose
TestFeatureIn-memory mock transport for testing without a live server

Pass custom features via the extend option at construction time.

Per-language documentation

Upstream API

This SDK is generated from the upstream OpenAPI specification. It is an unofficial client and is not affiliated with the API provider.

Security

Please report security issues to security@voxgig.com. See SECURITY.md. Do not open public issues for suspected vulnerabilities.


Generated from the Single-use Key Registry OpenAPI spec by @voxgig/sdkgen.

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