mirror of https://github.com/xwiki-labs/cryptpad
101 lines
4.1 KiB
Plaintext
101 lines
4.1 KiB
Plaintext
# SPDX-FileCopyrightText: 2023 XWiki CryptPad Team <contact@cryptpad.org> and contributors
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#
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# SPDX-License-Identifier: AGPL-3.0-or-later
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# This file is included strictly as an example of how Nginx can be configured
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# to work with CryptPad. This example WILL NOT WORK AS IS. For best results,
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# compare the sections of this configuration file against a working CryptPad
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# installation (http server by the Nodejs process). If you are using CryptPad
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# in production and require professional support please contact sales@cryptpad.fr
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server {
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listen 80;
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listen [::]:80;
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server_name your-main-domain.com your-sandbox-domain.com;
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access_log /dev/null;
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error_log /dev/null emerg;
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# Let's Encrypt webroot
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include letsencrypt-webroot;
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# Redirect all HTTP requests to HTTPS with a 301 Moved Permanently response.
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return 301 https://$host$request_uri;
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}
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server {
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listen 443 ssl;
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listen [::]:443 ssl;
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http2 on;
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# Let's Encrypt webroot
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include letsencrypt-webroot;
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# CryptPad serves static assets over these two domains.
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# `your-main-domain` is what users will enter in their address bar.
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# Privileged computation such as key management is handled in this scope
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# UI content is loaded via the `your-sandbox-domain`.
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# "Content Security Policy" headers prevent content loaded via the sandbox
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# from accessing privileged information.
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# This setup allows to take advantage of CryptPad's sandboxing techniques.
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# In the event of an XSS vulnerability in CryptPad's front-end code
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# this will limit the amount of information accessible to attackers.
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server_name your-main-domain.com your-sandbox-domain.com;
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# You'll need to Set the path to your certificates and keys here
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# IMPORTANT: this config is intended to serve assets for at least two domains
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# (your main domain and your sandbox domain). As such, you'll need to generate a single SSL certificate
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# that includes both domains in order for things to work as expected.
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ssl_certificate /etc/ssl/lets-encrypt/your-main-domain.com/cert;
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ssl_certificate_key /etc/ssl/lets-encrypt/your-main-domain.com/key;
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# diffie-hellman parameters are used to negotiate keys for your session
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# generate strong parameters using the following command
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ssl_dhparam /etc/nginx/dhparam.pem; # openssl dhparam -out /etc/nginx/dhparam.pem 4096
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# Speeds things up a little bit when resuming a session
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ssl_session_timeout 1d;
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ssl_session_cache shared:MozSSL:10m;
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ssl_session_tickets off;
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ssl_protocols TLSv1.2 TLSv1.3;
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ssl_ciphers ECDHE-ECDSA-AES128-GCM-SHA256:ECDHE-RSA-AES128-GCM-SHA256:ECDHE-ECDSA-AES256-GCM-SHA384:ECDHE-RSA-AES256-GCM-SHA384:ECDHE-ECDSA-CHACHA20-POLY1305:ECDHE-RSA-CHACHA20-POLY1305:DHE-RSA-AES128-GCM-SHA256:DHE-RSA-AES256-GCM-SHA384;
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ssl_prefer_server_ciphers off;
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# HSTS (ngx_http_headers_module is required) (63072000 seconds)
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add_header Strict-Transport-Security "max-age=63072000; includeSubDomains" always;
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# OCSP stapling
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ssl_stapling on;
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ssl_stapling_verify on;
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# verify chain of trust of OCSP response using Root CA and Intermediate certs
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ssl_trusted_certificate /etc/ssl/certs/ca-certificates.crt;
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# replace with the IP address of your resolver
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resolver 8.8.8.8 8.8.4.4 1.1.1.1 1.0.0.1 9.9.9.9 149.112.112.112 208.67.222.222 208.67.220.220;
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location / {
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proxy_pass http://localhost:3000;
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proxy_set_header X-Real-IP $remote_addr;
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proxy_set_header Host $host;
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proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
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client_max_body_size 150m;
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proxy_http_version 1.1;
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proxy_set_header Upgrade $http_upgrade;
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proxy_set_header Connection upgrade;
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}
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location ^~ /cryptpad_websocket {
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proxy_pass http://localhost:3003;
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proxy_set_header X-Real-IP $remote_addr;
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proxy_set_header Host $host;
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proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
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proxy_http_version 1.1;
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proxy_set_header Upgrade $http_upgrade;
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proxy_set_header Connection upgrade;
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}
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}
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