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Add docker-compose example with HAProxy SNI router
Turnkey deployment: HAProxy on :443 peeks at the TLS SNI and routes Telegram clients to mtg while forwarding everything else (including DPI probes) to a real Caddy web server with automatic HTTPS. This is the setup recommended in BEST_PRACTICES.md, packaged so that operators can clone and run it with minimal configuration. Refs: #458
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{
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# Caddy listens on 8443 behind HAProxy, which passes raw TLS through.
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# Caddy terminates TLS itself and auto-obtains a Let's Encrypt certificate.
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#
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# If your domain's DNS already points to this server, ACME HTTP-01 challenge
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# works through the HAProxy http frontend (:80 → redirect). For DNS-01
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# or other ACME methods, see https://caddyserver.com/docs/automatic-https
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}
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{$DOMAIN}:8443 {
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tls {
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# Use the ACME HTTP-01 challenge on port 80.
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# HAProxy forwards :80 as HTTP, so Caddy can answer the challenge
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# if you add an acl exception in haproxy.cfg (see README), or use
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# DNS-01 instead.
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}
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root * /srv
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file_server
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}
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# SNI-routing deployment for mtg
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A turnkey `docker compose` setup that puts an SNI-aware TCP router
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(HAProxy) in front of mtg **and** a real web server (Caddy with
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automatic HTTPS).
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## Why
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Modern DPI systems actively probe suspected proxies. If the server
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closes the connection or returns something unexpected, the IP gets
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flagged. With this setup:
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- **Telegram clients** connect to port 443, HAProxy sees the configured
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SNI and routes them to mtg (FakeTLS).
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- **Everything else** (browsers, DPI probes, scanners) is routed to
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Caddy, which responds with a real Let's Encrypt certificate and serves
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genuine web content.
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Because your domain's DNS points to this server, the SNI/IP match is
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natural and passive DPI has nothing to flag.
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## Quick start
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```bash
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# 1. Point your domain's DNS A/AAAA record to this server's IP.
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# 2. Generate an mtg secret:
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docker run --rm nineseconds/mtg:2 generate-secret --hex YOUR_DOMAIN
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# 3. Edit the config files:
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# - mtg-config.toml → paste the secret
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# - haproxy.cfg → replace "example.com" in the SNI ACL
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# - .env or export → DOMAIN=your.domain
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# 4. (Optional) put your site content into www/
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# 5. Start:
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docker compose up -d
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# 6. Verify:
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# - Open https://YOUR_DOMAIN in a browser → you should see the web page
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# - Configure Telegram with the proxy link from:
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docker compose exec mtg mtg access /config/config.toml
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```
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## ACME (Let's Encrypt) notes
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Caddy needs to answer the ACME HTTP-01 challenge on port 80. The
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default `haproxy.cfg` redirects all `:80` traffic to HTTPS. If Caddy
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cannot obtain a certificate, either:
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1. Temporarily stop HAProxy, let Caddy bind `:80` directly for the
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initial certificate, then start the full stack; or
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2. Use DNS-01 validation in the Caddyfile (requires a DNS provider
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plugin); or
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3. Add an HAProxy ACL that passes `/.well-known/acme-challenge/`
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requests to the Caddy backend instead of redirecting.
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## Architecture
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```
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┌──────────────────┐
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:443 ──────>│ HAProxy │
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│ (TCP, SNI peek) │
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└──┬───────────┬───┘
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SNI match │ │ default
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v v
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┌─────────┐ ┌─────────┐
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│ mtg │ │ Caddy │
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│ :3128 │ │ :8443 │
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│ FakeTLS │ │ real TLS│
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└─────────┘ └─────────┘
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```
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## Files
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| File | Purpose |
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|---|---|
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| `docker-compose.yml` | Service definitions |
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| `haproxy.cfg` | SNI routing rules — **edit the domain** |
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| `mtg-config.toml` | mtg proxy config — **paste your secret** |
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| `Caddyfile` | Web server config (auto-HTTPS) |
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| `www/` | Static site content served by Caddy |
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# SNI-routing deployment: HAProxy (443) -> mtg + real web backend
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#
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# This setup puts an SNI-aware TCP router in front of mtg so that:
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# - Telegram clients (FakeTLS with the correct SNI) are routed to mtg
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# - All other TLS traffic (including DPI probes) reaches the real web
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# server, which responds with a genuine certificate
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#
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# The result: active probes see a real website; passive DPI sees matching
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# SNI/IP because the domain resolves to this server's IP.
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#
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# Quick start:
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# 1. Set YOUR_DOMAIN below (and in mtg-config.toml)
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# 2. docker compose up -d
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# 3. mtg generate-secret YOUR_DOMAIN -> put it in mtg-config.toml
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# 4. docker compose restart mtg
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#
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# See BEST_PRACTICES.md and the project wiki for background.
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services:
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haproxy:
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image: haproxy:lts-alpine
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ports:
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- "443:443"
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- "80:80"
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volumes:
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- ./haproxy.cfg:/usr/local/etc/haproxy/haproxy.cfg:ro
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depends_on:
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- mtg
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- web
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restart: unless-stopped
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mtg:
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image: nineseconds/mtg:2
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volumes:
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- ./mtg-config.toml:/config/config.toml:ro
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expose:
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- "3128"
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restart: unless-stopped
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web:
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image: caddy:alpine
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volumes:
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- ./Caddyfile:/etc/caddy/Caddyfile:ro
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- caddy_data:/data
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- ./www:/srv:ro
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expose:
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- "8443"
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environment:
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DOMAIN: ${DOMAIN:-example.com}
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restart: unless-stopped
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volumes:
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caddy_data:
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# HAProxy SNI router — Layer 4 (TCP mode)
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#
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# Inspects the SNI in the TLS ClientHello and routes traffic:
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# - SNI matching the mtg secret domain -> mtg (FakeTLS / MTProto)
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# - Everything else -> real web backend (Caddy)
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#
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# Because routing happens before TLS termination, each backend sees the
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# raw ClientHello and handles TLS itself. The real web backend therefore
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# presents a genuine certificate to any probe or browser.
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global
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log stdout format raw local0 info
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maxconn 4096
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defaults
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log global
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mode tcp
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option tcplog
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timeout connect 5s
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timeout client 60s
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timeout server 60s
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# --- HTTP :80 — redirect to HTTPS -------------------------------------------
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frontend http
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bind *:80
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mode http
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http-request redirect scheme https code 301
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# --- TLS :443 — SNI-based routing -------------------------------------------
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frontend tls
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bind *:443
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tcp-request inspect-delay 5s
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tcp-request content accept if { req_ssl_hello_type 1 }
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# Route Telegram clients to mtg.
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# Replace "example.com" with the domain from your mtg secret.
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use_backend mtg if { req_ssl_sni -i example.com }
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default_backend web
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backend mtg
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server mtg mtg:3128
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backend web
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server web web:8443
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# Minimal mtg configuration for the SNI-router setup.
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#
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# 1. Generate a secret: mtg generate-secret --hex example.com
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# 2. Paste it below.
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# 3. Replace example.com with your actual domain everywhere.
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secret = "PASTE_YOUR_SECRET_HERE"
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bind-to = "0.0.0.0:3128"
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[defense.anti-replay]
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enabled = true
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max-size = "1mib"
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error-rate = 0.001
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@@ -0,0 +1,5 @@
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<!doctype html>
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<html lang="en">
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<head><meta charset="utf-8"><title>Welcome</title></head>
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<body><h1>It works!</h1><p>Replace this with your own content.</p></body>
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</html>
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