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add nip-37: general methods for dealing with lost keys.
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NIP-37
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======
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Methods for dealing with lost or compromised keys
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-------------------------------------------------
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`draft` `optional` `author:fiatjaf`
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This NIP defines a series of methods that can be used to make catastrophic key loss events less horrible.
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The intention here is not to claim that there is a generalized "key rotation" scheme on Nostr, but still make it
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so that in most cases people are able to move to new keys and not lost 100% of their followers and reputation
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when that happens, and also that it is possible to prevent most of the reputational damage that could be
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caused by having an evil hacker take control of someone else's keys.
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The implementation of this NIP could be done directly in social clients or in dedicated clients that users would
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visit from time to time in order to have an automated scan be done on their contacts and then the dedicated app
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could suggest migrating from old keys to new keys, or suggest stop following compromised keys, or even perform
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these migrations automatically.
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### Method A: Simple Key Deletion
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Based on https://github.com/nostr-protocol/nips/pull/377, the idea is that someone, after noticing that their key
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has been compromised and deciding that it is not possible to use any of the other methods here described, can
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proceed to publish the following event:
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```js
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{
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"kind": 10529,
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"pubkey": "<compromised-pubkey>",
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"tags": [
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["reason", "I typed my key on anigma"]
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// this is unnecessary, but it's an extra requirement to prevent people from making a 10529 event by chance
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["key-compromised"],
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],
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"content": "",
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// ...
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}
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```
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Upon receiving this, relays implementing this NIP SHOULD somehow mark it as invalid and refuse to store any more
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events from this key. Relays MAY also decide to also delete all events from this key.
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Upon receiving this, clients implementing this NIP SHOULD stop following the key.
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Clients may give users the option to "delete your public key" with this type of event. Clients SHOULD display a
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prominent message explaining that the action is not reversible, SHOULD explain that this does not guarantee their
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posts are deleted forever, and SHOULD require special confirmation such as requiring the user to type a message.
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### Method B: Social Key Migration
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The idea here is that users could pick some friends from their contact list and a threshold number to signal to
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the rest that the old key has been lost and what is the new key -- e.g. Alice can determine that, from Bob, Carol
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and Derek, if any 2 of these 3 agree, their recommendation is authoritative.
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This is done by publishing an event like this (for example):
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```js
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{
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"kind": 10520,
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"pubkey": "<user-pubkey-that-will-be-compromised>",
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"tags": [
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["p", "<friend1-pubkey>"],
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["p", "<friend2-pubkey>"],
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["p", "<friend3-pubkey>"],
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["threshold", "2"]
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],
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"content": "",
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// ...
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}
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```
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And then, when the friends want to recommend the switch to a new pubkey, they can publish events like
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```js
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{
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"kind": 1521,
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"pubkey": "<friend1-pubkey>",
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"tags": [
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["p", "<compromised-pubkey>"],
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["e", "<event-of-kind-10520-that-this-refers-to>"],
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["new-key", "<new-key>"]
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],
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"content": "",
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// ...
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}
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```
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Very importantly, when evaluating events of kind `1521` for a given `p`, clients should ensure that their corresponding
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event `10520` is at least 3 months older **and that an OpenTimestamps proof exists for that**.
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### Method C: Hierarchically Pregenerated Keys
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I'll write this later, just a placeholder. It's probably better to see if methods A and B work first.
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