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Let's Encrypt retired X3, introduced E1
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README.md
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README.md
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@ -165,18 +165,20 @@ Go back to the online DNS stamp calculator, and copy&paste the hash (in this exa
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If you are using Let's Encrypt, the last line is likely to be:
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```text
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Advertised cert: [CN=Let's Encrypt Authority X3,O=Let's Encrypt,C=US] [3e1a1a0f6c53f3e97a492d57084b5b9807059ee057ab1505876fd83fda3db838]
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Advertised cert: [CN=Let's Encrypt Authority R3,O=Let's Encrypt,C=US] [444ebd67bb83f8807b3921e938ac9178b882bd50aadb11231f044cf5f08df7ce]
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```
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There you have it. Your certificate hash is `3e1a1a0f6c53f3e97a492d57084b5b9807059ee057ab1505876fd83fda3db838`.
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There you have it. Your certificate hash is `444ebd67bb83f8807b3921e938ac9178b882bd50aadb11231f044cf5f08df7ce`.
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This [Go code snippet](https://gist.github.com/d6cb41742a1ceb54d48cc286f3d5c5fa) can also compute the hash of certificates given a `.der` file.
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### Common certificate hashes
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* Let's Encrypt X3: `3e1a1a0f6c53f3e97a492d57084b5b9807059ee057ab1505876fd83fda3db838`
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* Let's Encrypt R3: `3286ff65a65faf32085eea1388c3738ba7e37873c906cce3c4a28b4cc2a58988`
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* Let's Encrypt E1: `cc1060d39c8329b62b6fbc7d0d6df9309869b981e7e6392d5cd8fa408f4d80e6`
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* Let's Encrypt R3:
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* `3286ff65a65faf32085eea1388c3738ba7e37873c906cce3c4a28b4cc2a58988` and
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* `444ebd67bb83f8807b3921e938ac9178b882bd50aadb11231f044cf5f08df7ce`
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* Let's Encrypt E1:
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* `cc1060d39c8329b62b6fbc7d0d6df9309869b981e7e6392d5cd8fa408f4d80e6`
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## Clients
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