This commit is contained in:
swrup 2025-12-15 15:01:40 +01:00
parent 50a6137967
commit 8d30ce2c82
6 changed files with 78 additions and 66 deletions

View file

@ -30,29 +30,3 @@ let read_rsa fname =
RsaPrivateKey.of_octets data |> function RsaPrivateKey.of_octets data |> function
| Error e -> Error (`Msg e) | Error e -> Error (`Msg e)
| Ok v -> Ok (Some v)) | Ok v -> Ok (Some v))
(* todo: move this *)
let db_lookup_signkey_data conn fname priv =
let pub = Crypto.EddsaPrivateKey.pub_of_priv priv in
let* opt = Pg.lookup_signing_key conn pub in
match opt with
| None ->
Fmt.error_msg
"load_signkey error no associated metadata found in database for \
signkey `%s`."
(Fpath.to_string fname)
| Some (stamp_start, stamp_expire, stamp_end) ->
(* TODO master_sig *)
let master_sig = None in
let v =
Signkey.{ pub; priv; stamp_start; stamp_expire; stamp_end; master_sig }
in
Ok v
let load_signkey conn fname =
let* opt = read_eddsa fname in
match opt with
| None -> Ok None
| Some priv ->
let* signkey_data = db_lookup_signkey_data conn fname priv in
Ok (Some signkey_data)

View file

@ -70,23 +70,19 @@ module Keys_get = struct
Secmod_signkey.get_signkeys sm_signkey Secmod_signkey.get_signkeys sm_signkey
|> List.filter (fun k -> Option.is_none k.Signkey.master_sig) |> List.filter (fun k -> Option.is_none k.Signkey.master_sig)
|> List.map (fun signkey -> |> List.map (fun signkey ->
let sm_signkey_priv = let sm_signkey_priv = Secmod_signkey.get_sm_key_priv sm_signkey in
(Secmod_signkey.get_sm_key sm_signkey).Signkey.priv
in
mk_future_signkey ~sm_signkey_priv signkey) mk_future_signkey ~sm_signkey_priv signkey)
in in
let future_denoms = let future_denoms =
Secmod_denom.get_denoms sm_denom Secmod_denom.get_denoms sm_denom
|> List.filter (fun k -> Option.is_none k.Denomination.master_sig) |> List.filter (fun k -> Option.is_none k.Denomination.master_sig)
|> List.map (fun denom -> |> List.map (fun denom ->
let sm_denom_priv = (Secmod_denom.get_sm_key sm_denom).Signkey.priv in let sm_denom_priv = Secmod_denom.get_sm_key_priv sm_denom in
mk_future_denom ~sm_denom_priv denom) mk_future_denom ~sm_denom_priv denom)
in in
let master_pub = Config.Exchange.master_public_key in let master_pub = Config.Exchange.master_public_key in
let denom_secmod_public_key = (Secmod_denom.get_sm_key sm_denom).pub in let denom_secmod_public_key = Secmod_denom.get_sm_key_pub sm_denom in
let signkey_secmod_public_key = let signkey_secmod_public_key = Secmod_signkey.get_sm_key_pub sm_signkey in
(Secmod_signkey.get_sm_key sm_signkey).pub
in
FutureKeysResponse. FutureKeysResponse.
{ {
future_denoms; future_denoms;

View file

@ -3,11 +3,14 @@
(missing master_sig for fresh denom) *) (missing master_sig for fresh denom) *)
open Syntax open Syntax
type eddsa_priv = Crypto.EddsaPrivateKey.t
type eddsa_pub = Crypto.EddsaPublicKey.t
type h_denom_pub = Bin_type.DenominationHash.t type h_denom_pub = Bin_type.DenominationHash.t
type t = { type t = {
lock: Miou.Mutex.t; lock: Miou.Mutex.t;
sm_key: Signkey.t; sm_key_priv: eddsa_priv;
sm_key_pub: eddsa_pub;
denom_ht: (h_denom_pub, Denomination.t) Hashtbl.t; denom_ht: (h_denom_pub, Denomination.t) Hashtbl.t;
revoked_ht: revoked_ht:
( h_denom_pub, ( h_denom_pub,
@ -15,7 +18,8 @@ type t = {
Hashtbl.t; Hashtbl.t;
} }
let get_sm_key t = t.sm_key let get_sm_key_pub t = t.sm_key_pub
let get_sm_key_priv t = t.sm_key_priv
let get_denoms t = let get_denoms t =
Miou.Mutex.protect t.lock @@ fun () -> Miou.Mutex.protect t.lock @@ fun () ->
@ -49,7 +53,7 @@ let dir = Fpath.(v "data" / "secmod_signkey")
(* TODO secmod store *) (* TODO secmod store *)
let _store_secmod_data t = let _store_secmod_data t =
let* () = Data_file.write_eddsa Fpath.(dir / "sm_key") t.sm_key.priv in let* () = Data_file.write_eddsa Fpath.(dir / "sm_key") t.sm_key_priv in
get_denoms t get_denoms t
|> List.mapi (fun i key -> |> List.mapi (fun i key ->
let fname = Fpath.(dir / string_of_int i) in let fname = Fpath.(dir / string_of_int i) in
@ -106,7 +110,7 @@ let load conn =
let error_invalid_state = let error_invalid_state =
Fmt.error_msg "secmod_denom load error: invalid store state." Fmt.error_msg "secmod_denom load error: invalid store state."
in in
let* sm_key = Data_file.load_signkey conn Fpath.(dir / "sm_key") in let* sm_key_priv = Data_file.read_eddsa Fpath.(dir / "sm_key") in
let* denoms = let* denoms =
let* l = let* l =
let open Config.Coin in let open Config.Coin in
@ -127,9 +131,10 @@ let load conn =
| Error () -> error_invalid_state | Error () -> error_invalid_state
| Ok opt -> Ok opt | Ok opt -> Ok opt
in in
match (sm_key, denoms) with match (sm_key_priv, denoms) with
| None, None -> Ok None | None, None -> Ok None
| Some sm_key, Some denoms -> | Some sm_key_priv, Some denoms ->
let sm_key_pub = Crypto.EddsaPrivateKey.pub_of_priv sm_key_priv in
let lock = Miou.Mutex.create () in let lock = Miou.Mutex.create () in
let denom_ht = let denom_ht =
denoms denoms
@ -138,12 +143,12 @@ let load conn =
|> Hashtbl.of_seq |> Hashtbl.of_seq
in in
let revoked_ht = Hashtbl.create 0xff in let revoked_ht = Hashtbl.create 0xff in
Ok (Some { lock; sm_key; denom_ht; revoked_ht }) Ok (Some { lock; sm_key_priv; sm_key_pub; denom_ht; revoked_ht })
| _, _ -> error_invalid_state | _, _ -> error_invalid_state
let make_new () = let make_new () =
let lock = Miou.Mutex.create () in let lock = Miou.Mutex.create () in
let sm_key = Signkey.make () in let sm_key_priv, sm_key_pub = Mirage_crypto_ec.Ed25519.generate () in
let denoms = List.map Denomination.make Config.Coin.all_coins in let denoms = List.map Denomination.make Config.Coin.all_coins in
let denom_ht = let denom_ht =
denoms denoms
@ -152,7 +157,7 @@ let make_new () =
|> Hashtbl.of_seq |> Hashtbl.of_seq
in in
let revoked_ht = Hashtbl.create 0xff in let revoked_ht = Hashtbl.create 0xff in
{ lock; sm_key; denom_ht; revoked_ht } { lock; sm_key_priv; sm_key_pub; denom_ht; revoked_ht }
let init conn = let init conn =
match load conn with match load conn with

View file

@ -1,10 +1,16 @@
open Bin_sig open Bin_sig
type eddsa_priv = Crypto.EddsaPrivateKey.t
type eddsa_pub = Crypto.EddsaPublicKey.t
type h_denom_pub = Bin_type.DenominationHash.t type h_denom_pub = Bin_type.DenominationHash.t
type t type t
val get_sm_key : t -> Signkey.t val get_sm_key_priv : t -> eddsa_priv
val get_sm_key_pub : t -> eddsa_pub
val get_denoms : t -> Denomination.t list val get_denoms : t -> Denomination.t list
val init : (module Pg.CONN) -> t
(* - management operations - *)
val add_master_signatures : val add_master_signatures :
(module Pg.CONN) -> (module Pg.CONN) ->
@ -14,5 +20,3 @@ val add_master_signatures :
val revoke_denomination : val revoke_denomination :
t -> h_denom_pub -> MasterDenominationKeyRevocation.t -> (unit, string) result t -> h_denom_pub -> MasterDenominationKeyRevocation.t -> (unit, string) result
val init : (module Pg.CONN) -> t

View file

@ -1,20 +1,24 @@
(* TODO (* TODO
- key rotation - key rotation
- how many signkey to use? - how many signkey to use?
we just use 1 for now *) we just use 1 for now
- does the secmod's key as metadata/expiration date? *)
open Syntax open Syntax
type exchange_pub = Crypto.EddsaPublicKey.t type eddsa_priv = Crypto.EddsaPrivateKey.t
type eddsa_pub = Crypto.EddsaPublicKey.t
type t = { type t = {
lock: Miou.Mutex.t; lock: Miou.Mutex.t;
sm_key: Signkey.t; sm_key_priv: eddsa_priv;
signkey_ht: (exchange_pub, Signkey.t) Hashtbl.t; sm_key_pub: eddsa_pub;
signkey_ht: (eddsa_pub, Signkey.t) Hashtbl.t;
revoked_ht: revoked_ht:
(exchange_pub, Signkey.t * Bin_sig.MasterSigningKeyRevocation.t) Hashtbl.t; (eddsa_pub, Signkey.t * Bin_sig.MasterSigningKeyRevocation.t) Hashtbl.t;
} }
let get_sm_key t = t.sm_key let get_sm_key_priv t = t.sm_key_priv
let get_sm_key_pub t = t.sm_key_pub
let get_signkeys t = let get_signkeys t =
Miou.Mutex.protect t.lock @@ fun () -> Miou.Mutex.protect t.lock @@ fun () ->
@ -46,8 +50,33 @@ let revoke_signkey t exchange_pub master_sig =
let dir = Fpath.(v "data" / "secmod_signkey") let dir = Fpath.(v "data" / "secmod_signkey")
let db_lookup_signkey_data conn fname priv =
let pub = Crypto.EddsaPrivateKey.pub_of_priv priv in
let* opt = Pg.lookup_signing_key conn pub in
match opt with
| None ->
Fmt.error_msg
"load_signkey error no associated metadata found in database for \
signkey `%s`."
(Fpath.to_string fname)
| Some (stamp_start, stamp_expire, stamp_end) ->
(* TODO master_sig *)
let master_sig = None in
let v =
Signkey.{ pub; priv; stamp_start; stamp_expire; stamp_end; master_sig }
in
Ok v
let load_signkey conn fname =
let* opt = Data_file.read_eddsa fname in
match opt with
| None -> Ok None
| Some priv ->
let* signkey_data = db_lookup_signkey_data conn fname priv in
Ok (Some signkey_data)
let _store_secmod_data t = let _store_secmod_data t =
let* () = Data_file.write_eddsa Fpath.(dir / "sm_key") t.sm_key.priv in let* () = Data_file.write_eddsa Fpath.(dir / "sm_key") t.sm_key_priv in
get_signkeys t get_signkeys t
|> List.mapi (fun i key -> |> List.mapi (fun i key ->
let fname = Fpath.(dir / string_of_int i) in let fname = Fpath.(dir / string_of_int i) in
@ -58,15 +87,16 @@ let load conn =
let error_invalid_state = let error_invalid_state =
Fmt.error_msg "secmod_signkey load error: invalid store state." Fmt.error_msg "secmod_signkey load error: invalid store state."
in in
let* sm_key = Data_file.load_signkey conn Fpath.(dir / "sm_key") in let* sm_key_priv = Data_file.read_eddsa Fpath.(dir / "sm_key") in
let* signkeys = let* signkeys =
let l = List.init 1 (fun i -> Fpath.(dir / string_of_int i)) in let l = List.init 1 (fun i -> Fpath.(dir / string_of_int i)) in
let* l = list_map (fun fname -> Data_file.load_signkey conn fname) l in let* l = list_map (fun fname -> load_signkey conn fname) l in
match opt_list l with Error () -> error_invalid_state | Ok opt -> Ok opt match opt_list l with Error () -> error_invalid_state | Ok opt -> Ok opt
in in
match (sm_key, signkeys) with match (sm_key_priv, signkeys) with
| None, None -> Ok None | None, None -> Ok None
| Some sm_key, Some signkeys -> | Some sm_key_priv, Some signkeys ->
let sm_key_pub = Crypto.EddsaPrivateKey.pub_of_priv sm_key_priv in
let lock = Miou.Mutex.create () in let lock = Miou.Mutex.create () in
let signkey_ht = let signkey_ht =
signkeys signkeys
@ -75,12 +105,12 @@ let load conn =
|> Hashtbl.of_seq |> Hashtbl.of_seq
in in
let revoked_ht = Hashtbl.create 0xff in let revoked_ht = Hashtbl.create 0xff in
Ok (Some { lock; sm_key; signkey_ht; revoked_ht }) Ok (Some { lock; sm_key_priv; sm_key_pub; signkey_ht; revoked_ht })
| _, _ -> error_invalid_state | _, _ -> error_invalid_state
let make_new () = let make_new () =
let lock = Miou.Mutex.create () in let lock = Miou.Mutex.create () in
let sm_key = Signkey.make () in let sm_key_priv, sm_key_pub = Mirage_crypto_ec.Ed25519.generate () in
let signkeys = [ Signkey.make () ] in let signkeys = [ Signkey.make () ] in
let signkey_ht = let signkey_ht =
signkeys signkeys
@ -89,7 +119,7 @@ let make_new () =
|> Hashtbl.of_seq |> Hashtbl.of_seq
in in
let revoked_ht = Hashtbl.create 0xff in let revoked_ht = Hashtbl.create 0xff in
{ lock; sm_key; signkey_ht; revoked_ht } { lock; sm_key_priv; sm_key_pub; signkey_ht; revoked_ht }
let init conn = let init conn =
match load conn with match load conn with

View file

@ -1,19 +1,22 @@
type t type t
type exchange_pub = Crypto.EddsaPublicKey.t type eddsa_priv = Crypto.EddsaPrivateKey.t
type eddsa_pub = Crypto.EddsaPublicKey.t
val get_sm_key : t -> Signkey.t val get_sm_key_priv : t -> eddsa_priv
val get_sm_key_pub : t -> eddsa_pub
val get_signkeys : t -> Signkey.t list val get_signkeys : t -> Signkey.t list
val init : (module Pg.CONN) -> t
(* - management operations - *)
val add_master_signatures : val add_master_signatures :
(module Pg.CONN) -> (module Pg.CONN) ->
t -> t ->
(exchange_pub * Bin_sig.ExchangeSigningKeyValidity.t) list -> (eddsa_pub * Bin_sig.ExchangeSigningKeyValidity.t) list ->
(unit, string) result (unit, string) result
val revoke_signkey : val revoke_signkey :
t -> t ->
exchange_pub -> eddsa_pub ->
Bin_sig.MasterSigningKeyRevocation.t -> Bin_sig.MasterSigningKeyRevocation.t ->
(unit, string) result (unit, string) result
val init : (module Pg.CONN) -> t