mte/src/keys.ml

334 lines
10 KiB
OCaml
Raw Normal View History

2026-02-17 09:30:20 +01:00
open Syntax
open Crypto
(* TODO better error type *)
type 'a result = ('a, string) Result.t
module type S = sig
val sign : eddsa_pub -> string -> eddsa_sig
val sign_denom : rsa_pub -> string -> rsa_sig
val find_signkey : eddsa_pub -> Signkey.t option result
val find_denomination : denom_hash -> Denomination.t option result
val signkeys : unit -> Signkey.t list result
val denominations : unit -> Denomination.t list result
val future_signkeys : unit -> Api.FutureSignKey.t list result
val future_denominations : unit -> Api.FutureDenom.t list result
val make_future_keys_response : unit -> Api.FutureKeysResponse.t result
val certify_future_signkey :
eddsa_pub -> Signatures.ExchangeSigningKeyValidity.t -> unit result
val certify_future_denomination :
denom_hash -> Signatures.DenominationKeyValidity.t -> unit result
val revoke_signkey :
eddsa_pub -> Signatures.MasterSigningKeyRevocation.t -> unit result
val revoke_denomination :
denom_hash -> Signatures.MasterDenominationKeyRevocation.t -> unit result
end
module Make (Conn : Pg.CONN) : S = struct
module Sm_eddsa = Secmod_eddsa.Make ()
module Sm_rsa = Secmod_rsa.Make ()
let conn = (module Conn : Pg.CONN)
(* TODO
error "key not found", either:
- we tried to sign with a key that is not ours
- key was revoked
- bad keyring state *)
let sign pub s =
match Sm_eddsa.sign pub s with
| Error e -> Fmt.failwith "sign failure: %s." e
| Ok v -> v
let sign_denom pub s =
match Sm_rsa.sign pub s with
| Error e -> Fmt.failwith "sign_denom failure: %s." e
| Ok v -> v
(* - *)
let find_signkey pub = Pg.find_signkey conn pub |> unwrap_err_caqti
let find_denomination h_pub = Pg.find_denom conn h_pub |> unwrap_err_caqti
let signkeys () : Signkey.t list result =
let now = Timestamp.of_ptime @@ Ptime_clock.now () in
2026-02-24 16:59:18 +01:00
let+ l = Pg.get_signkeys conn ~now |> unwrap_err_caqti in
let missing_l, l =
List.partition
(fun sk -> Option.is_none @@ Sm_eddsa.find_key sk.Signkey.pub)
2026-02-23 12:29:49 +01:00
l
in
2026-02-24 16:59:18 +01:00
match missing_l with
| [] -> l
| _ ->
Logs.warn (fun m ->
m
"signkeys found in database are missing from secmod, (unclean \
database/secmod state?)");
l
2026-02-23 12:29:49 +01:00
let denominations () =
2026-02-24 16:59:18 +01:00
let+ l = Pg.get_denominations conn () |> unwrap_err_caqti in
let missing_l, l =
List.partition
(fun dn -> Option.is_none @@ Sm_rsa.find_key dn.Denomination.pub)
2026-02-23 12:29:49 +01:00
l
in
2026-02-24 16:59:18 +01:00
match missing_l with
| [] -> l
| _ ->
Logs.warn (fun m ->
m
"denominations found in database are missing from secmod, \
(unclean database/secmod state?)");
l
2026-02-17 09:30:20 +01:00
let make_future_sk ~pub ~start ~expire =
let stamp_start = Timestamp.of_absolute start in
let stamp_expire = Timestamp.of_absolute expire in
let stamp_end =
Timestamp.of_absolute
@@ Time.Absolute.add start Config.Exchange.signkey_legal_duration
in
2026-02-17 09:30:20 +01:00
let signkey_secmod_sig =
let open Signatures.SigningKeyAnnouncement in
let exchange_pub = pub in
let anchor_time = stamp_start in
let duration = Timestamp.diff stamp_start stamp_expire in
signf Sm_eddsa.sign_secmod { exchange_pub; anchor_time; duration }
in
Api.FutureSignKey.
{ key= pub; stamp_start; stamp_expire; stamp_end; signkey_secmod_sig }
let make_future_dn ~coin ~pub ~start =
let Config.Coin.
{
section_name;
value;
duration_withdraw;
duration_spend;
duration_legal;
fee_withdraw;
fee_deposit;
fee_refresh;
fee_refund;
cipher= _;
rsa_keysize= _;
age_restricted= _;
} =
coin
in
let stamp_start = Timestamp.of_absolute start in
let stamp_expire_withdraw =
Timestamp.of_absolute @@ Time.Absolute.add start duration_withdraw
in
let stamp_expire_deposit =
Timestamp.of_absolute @@ Time.Absolute.add start duration_spend
in
let stamp_expire_legal =
Timestamp.of_absolute @@ Time.Absolute.add start duration_legal
in
let open Api in
let rsa_denomination_key =
RsaDenominationKey.{ age_mask= 0; rsa_pub= pub }
in
let denom_pub = DenominationKey.Rsa rsa_denomination_key in
let h_pub = DenominationHash.hash (RsaPublicKey.to_octets pub) in
let denom_secmod_sig =
let open Signatures.DenominationKeyAnnouncement in
signf Sm_rsa.sign_secmod
{
h_denom_pub= h_pub;
h_section_name= Hash.Cstring.H64.hash section_name;
anchor_time= stamp_start;
duration_withdraw= Timestamp.diff stamp_start stamp_expire_withdraw;
}
2026-02-17 09:30:20 +01:00
in
FutureDenom.
{
section_name;
value;
stamp_start;
stamp_expire_withdraw;
stamp_expire_deposit;
stamp_expire_legal;
denom_pub;
fee_withdraw;
fee_deposit;
fee_refresh;
fee_refund;
denom_secmod_sig;
}
let future_signkeys () =
2026-02-23 11:45:27 +01:00
Sm_eddsa.keys ()
2026-02-23 12:29:49 +01:00
|> list_filter_map (fun (pub, (t1, t2)) ->
2026-02-23 11:45:27 +01:00
let* opt = find_signkey pub in
match opt with
| None ->
let future_sk = make_future_sk ~pub ~start:t1 ~expire:t2 in
Ok (Some future_sk)
| Some sk -> (
match Timestamp.of_absolute t1 = sk.stamp_start with
| false ->
Fmt.error
"secmod/database stamp_start mismatch for signkey `%s`"
(EddsaPublicKey.to_b32 pub)
| true -> Ok None))
2026-02-17 09:30:20 +01:00
let future_denominations () =
2026-02-23 11:45:27 +01:00
Sm_rsa.keys ()
2026-02-23 12:29:49 +01:00
|> list_filter_map (fun (pub, (section_name, t1)) ->
2026-02-23 11:45:27 +01:00
let h_pub = Hash.DenominationHash.hash (RsaPublicKey.to_octets pub) in
let* opt = find_denomination h_pub in
match opt with
| None ->
let* coin =
Config.Coin.all_coins
|> List.find_opt (fun coin ->
coin.Config.Coin.section_name = section_name)
|> function
| Some v -> Ok v
| None ->
Fmt.error "coin `%s` not found in configuration" section_name
in
let future_dn = make_future_dn ~coin ~pub ~start:t1 in
Ok (Some future_dn)
| Some sk -> (
match Timestamp.of_absolute t1 = sk.stamp_start with
| false ->
Fmt.error
"secmod/database stamp_start mismatch for denomination `%s`"
section_name
| true -> Ok None))
2026-02-17 09:30:20 +01:00
let make_future_keys_response () =
let* future_signkeys = future_signkeys () in
let* future_denoms = future_denominations () in
Ok
Api.FutureKeysResponse.
{
future_denoms;
future_signkeys;
master_pub= Config.Exchange.master_public_key;
denom_secmod_public_key= Sm_rsa.sm_pub;
signkey_secmod_public_key= Sm_eddsa.sm_pub;
}
let sk_of_future_sk future_sk master_sig =
let Api.FutureSignKey.
{ key; stamp_start; stamp_expire; stamp_end; signkey_secmod_sig= _ } =
future_sk
in
Signkey.{ pub= key; stamp_start; stamp_expire; stamp_end; master_sig }
2026-02-17 09:30:20 +01:00
let dn_of_future_dn future_dn h_pub master_sig =
let Api.FutureDenom.
{
section_name= _;
value;
stamp_start;
stamp_expire_withdraw;
stamp_expire_deposit;
stamp_expire_legal;
denom_pub;
fee_withdraw;
fee_deposit;
fee_refresh;
fee_refund;
denom_secmod_sig= _;
} =
future_dn
in
let rsa_pub =
match denom_pub with
| Rsa Api.RsaDenominationKey.{ age_mask= _; rsa_pub } -> rsa_pub
in
Denomination.
{
pub= rsa_pub;
value;
stamp_start;
stamp_expire_withdraw;
stamp_expire_deposit;
stamp_expire_legal;
fee_withdraw;
fee_deposit;
fee_refresh;
fee_refund;
age_mask= 0;
h_pub;
master_sig;
}
let certify_future_signkey pub master_sig =
2026-02-23 12:29:49 +01:00
match Sm_eddsa.find_key pub with
2026-02-17 09:30:20 +01:00
| None -> Error "future signkey not found"
2026-02-23 12:29:49 +01:00
| Some (pub, (t1, t2)) ->
2026-02-17 09:30:20 +01:00
let* () =
let* opt = find_signkey pub in
match opt with
| None -> Ok ()
| Some _sk -> Error "signkey already certified"
in
(* rebuild it *)
let future_sk = make_future_sk ~pub ~start:t1 ~expire:t2 in
let sk = sk_of_future_sk future_sk master_sig in
let* () = Pg.insert_signkey conn sk |> unwrap_err_caqti in
Ok ()
let certify_future_denomination h_pub master_sig =
2026-02-23 12:29:49 +01:00
(* TODO Sm_rsa.find_key *)
2026-02-17 09:30:20 +01:00
Sm_rsa.keys ()
2026-02-23 12:29:49 +01:00
|> List.find_opt (fun (pub, (_section_name, _t1)) ->
2026-02-17 09:30:20 +01:00
let h_pub' = Hash.DenominationHash.hash (RsaPublicKey.to_octets pub) in
h_pub' = h_pub)
|> function
| None -> Error "future denomination not found"
2026-02-23 12:29:49 +01:00
| Some (pub, (section_name, t1)) ->
2026-02-17 09:30:20 +01:00
let h_pub = Hash.DenominationHash.hash (RsaPublicKey.to_octets pub) in
let* () =
let* opt = find_denomination h_pub in
match opt with
| None -> Ok ()
| Some _sk -> Error "denomination already certified"
in
(* rebuild it *)
let* coin =
Config.Coin.all_coins
|> List.find_opt (fun coin ->
coin.Config.Coin.section_name = section_name)
|> function
| Some v -> Ok v
| None ->
Fmt.error "coin `%s` not found in configuration" section_name
in
let future_dn = make_future_dn ~coin ~pub ~start:t1 in
let dn = dn_of_future_dn future_dn h_pub master_sig in
let* () = Pg.insert_denom conn dn |> unwrap_err_caqti in
Ok ()
let revoke_signkey pub revoked_sig =
let* opt = find_signkey pub in
let* _sk = Option.to_result ~none:"signkey not found" opt in
let* () = Sm_eddsa.revoke pub in
let+ () =
Pg.insert_signkey_revocation conn pub revoked_sig |> unwrap_err_caqti
in
()
let revoke_denomination h_pub revoked_sig =
let* opt = find_denomination h_pub in
let* dn = Option.to_result ~none:"denomination not found" opt in
let pub = dn.pub in
let* () = Sm_rsa.revoke pub in
let+ () =
Pg.insert_denomination_revocation conn h_pub revoked_sig
|> unwrap_err_caqti
in
()
end