mirror of
https://github.com/ilyakooo0/urbit.git
synced 2024-11-28 03:00:15 +03:00
219 lines
4.8 KiB
Plaintext
219 lines
4.8 KiB
Plaintext
/+ naive, ethereum
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:: Types
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|%
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+$ address address:ethereum
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+$ nonce @ud
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+$ proxy ?(%own %spawn %manage %vote %transfer)
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--
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::
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|%
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::
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:: TODO: does this uniquely produce the pubkey?
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++ verifier
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^- ^verifier:naive
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|= [dat=octs v=@ r=@ s=@]
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?: (gth v 3) ~ :: TODO: move to jet
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=/ result
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%- mule
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|.
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=, secp256k1:secp:crypto
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%- address-from-pub:key:ethereum
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%- serialize-point
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(ecdsa-raw-recover (hash-tx dat) v r s)
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?- -.result
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%| ~
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%& `p.result
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==
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:: Verify signature and produce signer address
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::
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++ verify-sig
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|= [sig=@ txdata=octs]
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^- (unit address)
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|^
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:: Reversed of the usual r-s-v order because Ethereum integers are
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:: big-endian
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::
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=^ v sig (take 3)
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=^ s sig (take 3 32)
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=^ r sig (take 3 32)
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:: In Ethereum, v is generally 27 + recid, and verifier expects a
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:: recid. Old versions of geth used 0 + recid, so most software
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:: now supports either format. See:
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::
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:: https://github.com/ethereum/go-ethereum/issues/2053
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::
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=? v (gte v 27) (sub v 27)
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(verifier txdata v r s)
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::
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++ take
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|= =bite
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[(end bite sig) (rsh bite sig)]
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--
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::
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++ unsigned-tx
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|= [chain-id=@ud =nonce tx=octs]
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^- octs
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=/ prepared-data (prepare-for-sig chain-id nonce tx)
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=/ len (rsh [3 2] (scot %ui p.prepared-data))
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%: cad:naive 3
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26^'\19Ethereum Signed Message:\0a'
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(met 3 len)^len
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prepared-data
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~
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==
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::
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++ sign-tx
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|= [pk=@ =nonce tx=octs] ^- octs
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=/ sign-data
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%- hash-tx
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(unsigned-tx 1.337 nonce tx)
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=+ (ecdsa-raw-sign:secp256k1:secp:crypto sign-data pk)
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(cad:naive 3 1^v 32^s 32^r tx ~)
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::
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++ prepare-for-sig
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|= [chain-id=@ud =nonce tx=octs]
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^- octs
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=/ chain-t (rsh [3 2] (scot %ui chain-id))
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%: cad:naive 3
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14^'UrbitIDV1Chain'
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(met 3 chain-t)^chain-t
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1^':'
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4^nonce
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tx
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~
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==
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::
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++ extract-address
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|= [=raw-tx:naive nas=^state:naive chain-id=@]
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^- (unit @ux)
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?~ point=(get:orm:naive points.nas ship.from.tx.raw-tx)
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~
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=/ =nonce:naive
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=< nonce
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(proxy-from-point:naive proxy.from.tx.raw-tx u.point)
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=/ message=octs
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(unsigned-tx chain-id nonce raw.raw-tx)
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(verify-sig sig.raw-tx message)
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::
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++ gen-tx
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|= [=nonce tx=tx:naive pk=@] ^- octs
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:: takes in a nonce, tx:naive, and private key and returned a signed transactions as octs
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%^ sign-tx pk nonce (gen-tx-octs tx)
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::
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++ gen-tx-octs
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:: generates octs for a transaction
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|= tx=tx:naive
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|^
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^- octs
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=/ raw=octs
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?- +<.tx
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%spawn (get-spawn +>.tx)
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%transfer-point (get-transfer +>.tx)
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%configure-keys (get-keys +>.tx)
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%escape (get-escape +.tx)
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%cancel-escape (get-escape +.tx)
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%adopt (get-escape +.tx)
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%reject (get-escape +.tx)
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%detach (get-escape +.tx)
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%set-management-proxy (get-ship-address +.tx)
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%set-spawn-proxy (get-ship-address +.tx)
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%set-transfer-proxy (get-ship-address +.tx)
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==
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raw
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::
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++ get-spawn
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|= [child=ship to=address] ^- octs
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%: cad:naive 3
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(from-proxy proxy.from.tx)
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4^ship.from.tx
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1^%1 :: %spawn
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4^child
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20^to
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~
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==
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::
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++ get-transfer
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|= [=address reset=?] ^- octs
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%: cad:naive 3
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(from-proxy proxy.from.tx)
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4^ship.from.tx
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1^(can 0 7^%0 1^reset ~) :: %transfer-point
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20^address
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~
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==
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::
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++ get-keys
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|= [crypt=@ auth=@ suite=@ breach=?] ^- octs
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%: cad:naive 3
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(from-proxy proxy.from.tx)
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4^ship.from.tx
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1^(can 0 7^%2 1^breach ~) :: %configure-keys
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32^crypt
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32^auth
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4^suite
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~
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==
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::
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++ get-escape
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|= [action=@tas other=ship] ^- octs
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=/ op
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?+ action !!
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%escape %3
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%cancel-escape %4
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%adopt %5
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%reject %6
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%detach %7
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==
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%: cad:naive 3
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(from-proxy proxy.from.tx)
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4^ship.from.tx
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1^(can 0 7^op 1^0 ~)
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4^other
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~
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==
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::
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++ get-ship-address
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|= [action=@tas =address] ^- octs
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=/ op
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?+ action !!
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%set-management-proxy %8
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%set-spawn-proxy %9
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%set-transfer-proxy %10
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==
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%: cad:naive 3
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(from-proxy proxy.from.tx)
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4^ship.from.tx
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1^(can 0 7^op 1^0 ~)
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20^address
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~
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==
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::
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++ from-proxy
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|= prx=@tas
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^- [@ @]
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=/ proxy
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?+ prx !!
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%own %0
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%spawn %1
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%manage %2
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%vote %3
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%transfer %4
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==
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1^(can 0 3^proxy 5^0 ~)
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::
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--
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::
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++ hash-tx keccak-256:keccak:crypto
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::
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++ hash-raw-tx
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|= raw-tx:naive
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^- @ux
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%- hash-tx
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%: cad:naive 3
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65^sig
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raw
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~
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==
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::
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--
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