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customerio-rate-limits客户速率限制

Agent Skill

customerio-rate-limits 用于处理 GitHub 仓库、Issue、Pull Request 和代码协作信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要围绕仓库状态、代码变更或协作事项进行整理时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

总安装

546

周安装

23

GitHub Stars

2,130

下载量

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安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:customerio-rate-limits(客户速率限制)
来源仓库:https://github.com/jeremylongshore/claude-code-plugins-plus-skills
仓库路径:skills/customerio-rate-limits
安装命令:
npx skills add https://github.com/jeremylongshore/claude-code-plugins-plus-skills --skill customerio-rate-limits
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/jeremylongshore/claude-code-plugins-plus-skills --skill customerio-rate-limits

简介

解析 Customer.io API 的滑动窗口限流规则,并提供指数退避重试机制。

  • Track/App API 分别有独立配额:常规操作约 100 req/sec,广播类约 10 req/sec。
  • 实现令牌桶限流器、队列化处理和 429 响应自动降级等防护措施。
  • 高并发场景下必须引入消息队列缓冲层,避免突发流量击穿 API 网关。
  • customerio-rate-limits 属于前端设计类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

Customer.io Rate Limits

Overview

Understand Customer.io's API rate limits and implement proper throttling: token bucket limiters, exponential backoff with jitter, queue-based processing, and 429 response handling.

Rate Limit Reference

APIEndpointLimitScope
Track APIidentify, track, trackAnonymous~100 req/secPer workspace
Track APIBatch operations~100 req/secPer workspace
App APITransactional email/push~100 req/secPer workspace
App APIBroadcasts, queries~10 req/secPer workspace

These are approximate. Customer.io uses sliding window rate limiting. When exceeded, you get a 429 Too Many Requests response.

Instructions

Step 1: Token Bucket Rate Limiter

// lib/rate-limiter.ts
export class TokenBucket {
  private tokens: number;
  private lastRefill: number;

  constructor(
    private readonly maxTokens: number = 80,  // Stay under 100/sec limit
    private readonly refillRate: number = 80   // Tokens per second
  ) {
    this.tokens = maxTokens;
    this.lastRefill = Date.now();
  }

  private refill(): void {
    const now = Date.now();
    const elapsed = (now - this.lastRefill) / 1000;
    this.tokens = Math.min(this.maxTokens, this.tokens + elapsed * this.refillRate);
    this.lastRefill = now;
  }

  async acquire(): Promise<void> {
    this.refill();
    if (this.tokens >= 1) {
      this.tokens -= 1;
      return;
    }
    // Wait until a token is available
    const waitMs = ((1 - this.tokens) / this.refillRate) * 1000;
    await new Promise((r) => setTimeout(r, Math.ceil(waitMs)));
    this.tokens = 0;
    this.lastRefill = Date.now();
  }
}

Step 2: Exponential Backoff with Jitter

// lib/backoff.ts
interface BackoffOptions {
  maxRetries: number;
  baseDelayMs: number;
  maxDelayMs: number;
  jitter: number;         // 0 to 1
}

const DEFAULTS: BackoffOptions = {
  maxRetries: 4,
  baseDelayMs: 1000,
  maxDelayMs: 60000,
  jitter: 0.25,
};

export async function withBackoff<T>(
  fn: () => Promise<T>,
  opts: Partial<BackoffOptions> = {}
): Promise<T> {
  const { maxRetries, baseDelayMs, maxDelayMs, jitter } = { ...DEFAULTS, ...opts };
  let lastErr: Error | undefined;

  for (let attempt = 0; attempt <= maxRetries; attempt++) {
    try {
      return await fn();
    } catch (err: any) {
      lastErr = err;
      const status = err.statusCode ?? err.status;

      // Don't retry 4xx errors (except 429)
      if (status >= 400 && status < 500 && status !== 429) throw err;

      if (attempt === maxRetries) break;

      // Check Retry-After header (429 responses)
      const retryAfter = err.headers?.["retry-after"];
      let delay: number;

      if (retryAfter) {
        delay = parseInt(retryAfter) * 1000;
      } else {
        delay = Math.min(baseDelayMs * Math.pow(2, attempt), maxDelayMs);
      }

      // Add jitter to prevent thundering herd
      delay += delay * jitter * Math.random();
      console.warn(`CIO retry ${attempt + 1}/${maxRetries} in ${Math.round(delay)}ms`);
      await new Promise((r) => setTimeout(r, delay));
    }
  }
  throw lastErr;
}

Step 3: Rate-Limited Client

// lib/customerio-rate-limited.ts
import { TrackClient, RegionUS } from "customerio-node";
import { TokenBucket } from "./rate-limiter";
import { withBackoff } from "./backoff";

export class RateLimitedCioClient {
  private client: TrackClient;
  private limiter: TokenBucket;

  constructor(siteId: string, apiKey: string, ratePerSec: number = 80) {
    this.client = new TrackClient(siteId, apiKey, { region: RegionUS });
    this.limiter = new TokenBucket(ratePerSec, ratePerSec);
  }

  async identify(userId: string, attrs: Record<string, any>): Promise<void> {
    await this.limiter.acquire();
    return withBackoff(() => this.client.identify(userId, attrs));
  }

  async track(userId: string, event: { name: string; data?: any }): Promise<void> {
    await this.limiter.acquire();
    return withBackoff(() => this.client.track(userId, event));
  }

  async trackAnonymous(event: {
    anonymous_id: string;
    name: string;
    data?: any;
  }): Promise<void> {
    await this.limiter.acquire();
    return withBackoff(() => this.client.trackAnonymous(event));
  }

  async suppress(userId: string): Promise<void> {
    await this.limiter.acquire();
    return withBackoff(() => this.client.suppress(userId));
  }

  async destroy(userId: string): Promise<void> {
    await this.limiter.acquire();
    return withBackoff(() => this.client.destroy(userId));
  }
}

Step 4: Queue-Based Processing with p-queue

For sustained high volume, use p-queue for cleaner concurrency control:

// lib/customerio-queued.ts
import PQueue from "p-queue";
import { TrackClient, RegionUS } from "customerio-node";

const cio = new TrackClient(
  process.env.CUSTOMERIO_SITE_ID!,
  process.env.CUSTOMERIO_TRACK_API_KEY!,
  { region: RegionUS }
);

// Process at most 80 requests per second with max 10 concurrent
const queue = new PQueue({
  concurrency: 10,
  interval: 1000,
  intervalCap: 80,
});

// Queue operations instead of calling directly
export function queueIdentify(userId: string, attrs: Record<string, any>) {
  return queue.add(() => cio.identify(userId, attrs));
}

export function queueTrack(userId: string, name: string, data?: any) {
  return queue.add(() => cio.track(userId, { name, data }));
}

// Monitor queue health
setInterval(() => {
  console.log(
    `CIO queue: pending=${queue.pending} size=${queue.size}`
  );
}, 10000);

Install: npm install p-queue

Step 5: Bulk Import Strategy

For large data imports (>10K users), avoid hitting rate limits with controlled batching:

// scripts/bulk-import.ts
import { RateLimitedCioClient } from "../lib/customerio-rate-limited";

async function bulkImport(users: { id: string; attrs: Record<string, any> }[]) {
  const client = new RateLimitedCioClient(
    process.env.CUSTOMERIO_SITE_ID!,
    process.env.CUSTOMERIO_TRACK_API_KEY!,
    50  // Conservative rate — 50/sec for imports
  );

  let processed = 0;
  let errors = 0;

  for (const user of users) {
    try {
      await client.identify(user.id, user.attrs);
      processed++;
    } catch (err: any) {
      errors++;
      console.error(`Failed user ${user.id}: ${err.message}`);
    }

    if (processed % 1000 === 0) {
      console.log(`Progress: ${processed}/${users.length} (${errors} errors)`);
    }
  }

  console.log(`Done: ${processed} processed, ${errors} errors`);
}

Error Handling

ScenarioStrategy
429 receivedRespect Retry-After header, fall back to exponential backoff
Burst traffic spikeToken bucket absorbs burst, queue holds overflow
Sustained high volumeUse p-queue with interval limiting
Bulk importUse conservative rate (50/sec) with progress logging
Downstream timeoutDon't count as rate limit — retry normally

Resources

Next Steps

After implementing rate limits, proceed to customerio-security-basics for security best practices.

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