199 lines
9.6 KiB
Markdown
199 lines
9.6 KiB
Markdown
# Mailrage - Encrypted e-mail storage over Garage
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## Usage
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Start by running:
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```
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$ cargo run --bin main -- first-login --region garage --k2v-endpoint http://127.0.0.1:3904 --s3-endpoint http://127.0.0.1:3900 --aws-access-key-id GK... --aws-secret-access-key c0ffee... --bucket mailrage-quentin --user-secret poupou
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Please enter your password for key decryption.
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If you are using LDAP login, this must be your LDAP password.
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If you are using the static login provider, enter any password, and this will also become your password for local IMAP access.
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Enter password:
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Confirm password:
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Cryptographic key setup is complete.
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If you are using the static login provider, add the following section to your .toml configuration file:
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[login_static.users.<username>]
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password = "$argon2id$v=19$m=4096,t=3,p=1$..."
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aws_access_key_id = "GK..."
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aws_secret_access_key = "c0ffee..."
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```
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Next create the config file `mailrage.toml`:
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```
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s3_endpoint = "http://127.0.0.1:3900"
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k2v_endpoint = "http://127.0.0.1:3904"
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aws_region = "garage"
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[login_static]
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default_bucket = "mailrage"
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[login_static.users.quentin]
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bucket = "mailrage-quentin"
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user_secret = "poupou"
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alternate_user_secrets = []
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password = "$argon2id$v=19$m=4096,t=3,p=1$..."
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aws_access_key_id = "GK..."
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aws_secret_access_key = "c0ffee..."
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```
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You can dump your keys with:
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```
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$ cargo run --bin main -- show-keys --region garage --k2v-endpoint http://127.0.0.1:3904 --s3-endpoint http://127.0.0.1:3900 --aws-access-key-id GK... --aws-secret-access-key c0ffee... --bucket mailrage-quentin --user-secret poupou
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Enter key decryption password:
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master_key = "..."
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secret_key = "..."
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```
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Run a test instance with:
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```
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$ cargo run --bin main -- server
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---- MAILBOX STATE ----
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UIDVALIDITY 1
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UIDNEXT 2
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INTERNALSEQ 2
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1 c3d4524f557f19108480063f3216afa20000000000000000 \Unseen
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---- MAILBOX STATE ----
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UIDVALIDITY 1
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UIDNEXT 3
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INTERNALSEQ 3
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1 c3d4524f557f19108480063f3216afa20000000000000000 \Unseen
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2 6a1ab4d87af3d424a3a8f8720c4db3b60000000000000000 \Unseen
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```
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## Bayou storage module
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Checkpoints are stored in S3 at `<path>/checkpoint/<timestamp>`. Example:
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```
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348 TestMailbox/checkpoint/00000180d77400dc126b16aac546b769
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369 TestMailbox/checkpoint/00000180d776e509b68fdc5c376d0abc
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357 TestMailbox/checkpoint/00000180d77a7fe68f4f76e3b45aa751
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```
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Operations are stored in K2V at PK `<path>`, SK `<timestamp>`. Example:
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```
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TestMailbox 00000180d77400dc126b16aac546b769 RcIsESv7WrjMuHwyI/dvCnkIfy6op5Tiylf0WSnn94aMS2uagl7YeMBwdv09TiSXBpu5nJ5e/9QFSfuEI/NqKrdQkX54MOsnaIGhRb0oqUG3KNaar3BiVSvYvXuzYhk4ii+TUS2Eyd6fCCaNVNM5
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TestMailbox 00000180d775f27f5542a13fc21c665e RrTSOup/zO1Ei+QrjBcDLt4vvFSY+WJPBodwY64wy2ftW+Oh3VSArvlO4SAEPmdsx1gt0HPBZYR/OkVWsZpmix1ZLFUmvdib+rjNkorHQW1p+oLVK8tolGrqk4SRwl88cqu466T4vBEpDu7tRbH0
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TestMailbox 00000180d775f292b3c8da00718389b4 VAwd8SRycIwsipZW5AcSG+EIYZVWn/Uj/TADbWhb4x5LVMceiRBHWVquY08RgT/lJKdhIcUqBA15bVG3klIg8tLsWJVG784NbsZwdGRczWmngcA=
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TestMailbox 00000180d775f29d24842cf375d679e0 /FbXtEwm/bijtvOdqM1XFvKUalQFAOPHp+vF9jZThZn/viY5a6W1PyHeI8kTusF6EsVPAwPHpQyjIv/ghskC0f+zUEsSUhDwQANdwLNqDLAvTA==
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TestMailbox 00000180d7768ab1dc01ff504e887c62 W/fF0WitpxJ05yHeOv96BlpGymT1kVOjkIW00t9e6UE7mxkvNflu9cZSCd8PDJd2ymC0sC9bLVFAXKmNZsmCFEEHMQSyrX61qTYo4KFCZMp5zm6fXubaYuurrzjXzfUP/R7kBvICFZlF0daf0SwX
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TestMailbox 00000180d7768aba629c7ad6adf25228 IPzYGNsSepCX2AEnee/1Eas9a3c5esPSmrNkvaj4XcFb6Ft2KC8N6ubUR3wB+K0oYCTQym6nhHG5dlAxf6NRu7Rk8YtBTBmSqtGqd6kMZ3bU5b8=
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TestMailbox 00000180d7768ac1870cda61784114d4 aaLiaWxfx1mxh6aoKE3xUUfZWhivZ/K7ixabflFDW7FO/qbpvCaa+Y6w4lQemTy6m+leAhXGN+Dbyv2qP20yJ9O4oJF5d3Lz5Iv5uF18OxhVZzw=
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TestMailbox 00000180d776e4fb294ccdab2612b406 EtUPrLgEeOyab2QRnSie4I3Me9dDh10UdwWnUKdGa/8ezMJDtiy7XlW+tUfJdqtu6Vj7nduT0emDOXbBZsNwlcmzgYNwuNu3I9AfhZTFWtwLgB+wnAgB/jim82DDrJfLia8kB2eA2ao5jfJ3uMSZ
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TestMailbox 00000180d776e501528546d340490291 Lz4Z9wCTk1lZ86lL01urhAan4oHcr1NBqdRe+CDpA51D9IncA5+Fhc8I6knUIh2qQ5/woWgISLAVwzSS+0+TxrYoqxf5FumIQtUJfwDER5La3n0=
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TestMailbox 00000180d776e509b68fdc5c376d0abc RUGE2xB3fFX/wRH/p2fHIUa+rMaXSRd7fY9zglw0pRfVPqJfpniOjAe4GHIwGlwbwjtFOwS5a+Q7yr0Wez6QwD+ohhqRFKpbjcFcN7VfMyVAf+k=
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TestMailbox 00000180d7784b987a8ad8106dc400c9 K+0LVEtBbTnWNS67jy9DtTvQyd5arovduvu490tLOE2TzVhuVoF4pfvTMTN12bH3KwEAHeDfuwKkKJFqldOywouTYPzEjZFkJzyagHrkl6dfnE5CqmlDv+Vc5TOQRskxjW+wQiZdjU8wGiBiBGYh
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TestMailbox 00000180d7784bede69ac3cff2c6b724 XMFY3+b1r1//uolVz80JSI3g/84XCk3Tm7/S0BFv+Qe/Xv3/poLrOvAKEe+GzD2s22j8p/T2RXR/JSZckzgjEZeO0wbPDXVQd94di2Pff7jxAH8=
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TestMailbox 00000180d7784bffe2595abe7ed81858 QQZhF+7wSHfikoAp93a+UY/XDIX7TVnnVYOtmQ2XHnDKA2F6snRJCPbYBO4IRHCRfVrjDGi32c41it2C3Mu5PBepabxapsW1rfIV3rlX2lkKHtI=
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TestMailbox 00000180d77a7fb3f01dbb147c20cf7f IHOlOa1JI11RUKVvQUq3HQPxiRr4UCeE+pHmL8DtNMkOh62V4spuP0VvvQTJCQcPQ1EQR/QcxZ3s7uHLkrZAHF30BkpUkGqsLBWpnyug/puhdiixWsMyLLb6G90zFjiComUwptnDc/CCXtGEHdSW
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TestMailbox 00000180d77a7fbb54b100f521ceb347 Ze4KyyTCgrYbZlXlJSY5hNob8sMXvBAmwIx2cADbX5P0M1IHXwXfloEzvvd6WYOtatFC2GnDSrmQ6RdCfeZ3WV9TZilqa0Fv0XEg48sVyVCcguw=
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TestMailbox 00000180d77a7fe68f4f76e3b45aa751 cJJVvvRzTVNKUaIHPCCDY2uY7/HlmkxGgo3ozWBlBSRDeBqU65zgZD3QIPCxa6xaqB/Gc0bQ9BGzfU0cvVmO5jgNeeDnbqqs3oeA2jml/Qv2YO9upApfNQtDT1GiwJ8vrgaIow==
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TestMailbox 00000180d8e513d3ea58c679a13178ac Ce5su2YOxNmTzk2dK8SX8V/Uue5uAC7oklEjhesY9wCMqGphhOkdWjzCqq0xOzcb/ZzzZ58t+mTksNSYIU4kddHIHBFPgqIwKthVk2mlUdqYiN/Y2vEGqv+YmtKY+GST/7Ee87ZHpU/5sv0GoXxT
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TestMailbox 00000180d8e5145a23f8faee86283900 sp3D8xFZcM9icNlDJXIUDJb3mo6VGD9f1aDHD+4RbPdx6mTYF+qNTsPHKCxHHxT/9NfNe8XPg2+8xYRtm7SXfgERZBDB8ye+Xt3fM1k+wbL6RsaJmDHVECeXeL5KHuITzpI22A==
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TestMailbox 00000180d8e51465c38f0585f9bb760e FF0VId2O/bBNzYD5ABWReMs5hHoHwynOoJRKj9vyaUMZ3JykInFmvvRgtCbJBDjTQPwPU8apphKQfwuicO76H7GtZqH009Cbv5l8ZTRJKrmzOQmtjzBQc2eGEUMPfbml5t0GCg==
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```
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The timestamp of a checkpoint corresponds to the timestamp of the first operation NOT included in the checkpoint.
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In other words, to reconstruct the final state:
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- find timestamp `<ts>` of last checkpoint
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- load checkpoint `<ts>`
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- load and apply all operations starting from `<ts>`, included
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## UID index
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The UID index is an application of the Bayou storage module
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used to assign UID numbers to e-mails.
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See document we sent to NGI for properties on UIDVALIDITY.
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## Cryptography; key management
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Keys that are used:
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- master secret key (for indexes)
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- curve25519 public/private key pair (for incoming mail)
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Keys that are stored in K2V under PK `keys`:
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- `public`: the public curve25519 key (plain text)
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- `salt`: the 32-byte salt `S` used to calculate digests that index keys below
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- if a password is used, `password:<truncated(128bit) argon2 digest of password using salt S>`:
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- a 32-byte salt `Skey`
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- followed a secret box
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- that is encrypted with a strong argon2 digest of the password (using the salt `Skey`) and a user secret (see below)
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- that contains the master secret key and the curve25519 private key
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User secret: an additionnal secret that is added to the password when deriving the encryption key for the secret box.
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This additionnal secret should not be stored in K2V/S3, so that just knowing a user's password isn't enough to be able
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to decrypt their mailbox (supposing the attacker has a dump of their K2V/S3 bucket).
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This user secret should typically be stored in the LDAP database or just in the configuration file when using
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the static login provider.
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Operations:
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- **Initialize**(`user_secret`, `password`):
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- if `"salt"` or `"public"` already exist, BAIL
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- generate salt `S` (32 random bytes)
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- generate `public`, `private` (curve25519 keypair)
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- generate `master` (secretbox secret key)
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- calculate `digest = argon2_S(password)`
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- generate salt `Skey` (32 random bytes)
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- calculate `key = argon2_Skey(user_secret + password)`
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- serialize `box_contents = (private, master)`
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- seal box `blob = seal_key(box_contents)`
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- write `S` at `"salt"`
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- write `concat(Skey, blob)` at `"password:{hex(digest[..16])}"`
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- write `public` at `"public"`
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- **InitializeWithoutPassword**(`private`, `master`):
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- if `"salt"` or `"public"` already exist, BAIL
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- generate salt `S` (32 random bytes)
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- write `S` at `"salt"`
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- calculate `public` the public key associated with `private`
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- write `public` at `"public"`
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- **Open**(`user_secret`, `password`):
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- load `S = read("salt")`
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- calculate `digest = argon2_S(password)`
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- load `blob = read("password:{hex(digest[..16])}")
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- set `Skey = blob[..32]`
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- calculate `key = argon2_Skey(user_secret + password)`
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- open secret box `box_contents = open_key(blob[32..])`
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- retrieve `master` and `private` from `box_contents`
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- retrieve `public = read("public")`
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- **OpenWithoutPassword**(`private`, `master`):
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- load `public = read("public")`
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- check that `public` is the correct public key associated with `private`
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- **AddPassword**(`user_secret`, `existing_password`, `new_password`):
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- load `S = read("salt")`
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- calculate `digest = argon2_S(existing_password)`
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- load `blob = read("existing_password:{hex(digest[..16])}")
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- set `Skey = blob[..32]`
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- calculate `key = argon2_Skey(user_secret + existing_password)`
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- open secret box `box_contents = open_key(blob[32..])`
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- retrieve `master` and `private` from `box_contents`
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- calculate `digest_new = argon2_S(new_password)`
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- generate salt `Skeynew` (32 random bytes)
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- calculate `key_new = argon2_Skeynew(user_secret + new_password)`
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- serialize `box_contents_new = (private, master)`
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- seal box `blob_new = seal_key_new(box_contents_new)`
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- write `concat(Skeynew, blob_new)` at `"new_password:{hex(digest_new[..16])}"`
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- **RemovePassword**(`password`):
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- load `S = read("salt")`
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- calculate `digest = argon2_S(existing_password)`
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- check that `"password:{hex(digest[..16])}"` exists
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- check that other passwords exist ?? (or not)
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- delete `"password:{hex(digest[..16])}"`
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