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Author | SHA1 | Date |
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Ryan Heywood | 756be9b9d7 | |
Ryan Heywood | ad329131de | |
Anton Livaja | bcfcc8711f | |
Anton Livaja | fc0350a098 | |
Anton Livaja | a18ea7ba0f |
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@ -178,7 +178,8 @@ keyfork recover mnemonic
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This guide assumes you are sharding to an `N`-of-`M` system with `I` smart
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cards per shardholder. The variables will be used in the following commands as
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`$N`, `$M`, and `$I`. The smart cards will be factory reset during the process.
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`$N`, `$M`, and `$I`. The smart card OpenPGP slots will be factory reset during
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the process.
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On an airgapped system, run the following command to generate a file containing
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encrypted shards of a generated seed:
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@ -12,7 +12,7 @@ use keyfork_derive_path_data::guess_target;
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// use keyfork_derive_util::request::{DerivationError, DerivationRequest, DerivationResponse};
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use keyforkd_models::{DerivationError, Error, Request, Response};
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use tower::Service;
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use tracing::info;
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use tracing::{info, warn};
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// NOTE: All values implemented in Keyforkd must implement Clone with low overhead, either by
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// using an Arc or by having a small signature. This is because Service<T> takes &mut self.
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@ -38,6 +38,9 @@ impl std::fmt::Debug for Keyforkd {
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impl Keyforkd {
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/// Create a new instance of Keyfork from a given seed.
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pub fn new(seed: Vec<u8>) -> Self {
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if seed.len() < 16 {
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warn!("Entropy size is lower than 128 bits: {} bits.", seed.len() * 8);
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}
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Self {
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seed: Arc::new(seed),
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}
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