shrub/lib/btc.hoon

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/- *btc
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|%
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:: big endian sha256: input and output are both MSB first (big endian)
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::
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++ sha256
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|= =byts
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^- ^byts
:: if there are leading 0s, lshift by their amount after flip to little endian to preserve
=/ pad=@ (sub wid.byts (met 3 dat.byts))
=/ little-endian=@
(lsh 3 pad (swp 3 dat.byts))
:- 32
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%+ swp 3
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(shay wid.byts little-endian)
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++ hash-160
|= pubkey=@ux
^- @ux
=, ripemd:crypto
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%- ripemd-160
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%- sha256 [(met 3 pubkey) pubkey]
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::
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:: list of @ux that is big endian for hashing purposes
:: used to preserve 0s when concatenating byte sequences
::
++ buffer
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|%
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:: from-byts: converts byts to list, preserving leading 0s
::
++ from-byts
|= =byts
^- buffer:tx
=/ b=(list @ux)
(flop (rip 3 dat.byts))
=/ pad=@ (sub wid.byts (lent b))
(weld (reap pad 0x0) b)
::
++ to-byts
|= b=buffer:tx
^- byts
[(lent b) (rep 3 (flop b))]
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--
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::
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++ payments
|%
++ p2pkh
|= script=@ux
:: ^- @ux
^- (list @ux)
=/ chunks=(list (list @))
:~ ~[op-dup:ops]
~[op-hash160:ops]
~[(met 3 script)]
::TODO FLOP rip in HERE
~[op-equalverify:ops]
~[op-checksig:ops]
==
(zing chunks)
--
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:: Converts a list of bits to a list of n-bit numbers
:: input-bits should be big-endian
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::
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++ bits
|%
:: rip atom of bitwidth wordlen. Preserve leading 0s, big endian
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:: returns a list of bits
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::
++ zeros-brip
|= [bitwidth=@ a=@]
^- (list @)
=/ bits=(list @) (flop (rip 0 a))
=/ r=@ (mod (lent bits) bitwidth)
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?: ?&(=(0 r) (gth (lent bits) 0)) :: no remainder & more than 0 bits
bits
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(weld (reap (sub bitwidth r) 0) bits)
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:: converts from bit list to a list of atoms each with bitwidth d(est)
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::
++ convert
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|= [d=@ bits=(list @)]
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^- (list @)
=| ret=(list @)
|- ?~ bits ret
=/ dest-bits (scag d ((list @) bits))
:: left-shift the "missing" number of bits
=/ num=@
%: lsh 0
(sub d (lent dest-bits))
(rep 0 (flop dest-bits))
==
$(ret (snoc ret num), bits (slag d ((list @) bits)))
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:: Converts e.g. ~[0 0 31 31 31 31 0 0] in base32 (5 bitwidth)
:: to ~[0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0]
::
++ from-digits
|= [bitwidth=@ digits=(list @)]
^- (list @)
%- zing
%+ turn digits
|= d=@ (zeros-brip bitwidth d)
:: converts 40 bits: ~[0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0]
:: to 0x3fff.fc00 when cast to hex
::
++ to-atom
|= bits=(list @)
^- @
%+ rep 0
%- flop bits
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--
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::
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++ bech32
|%
++ prefixes
^- (map network tape)
(my [[%main "bc"] [%testnet "tb"] ~])
++ charset "qpzry9x8gf2tvdw0s3jn54khce6mua7l"
+$ raw-decoded [hrp=tape data=(list @) checksum=(list @)]
::
++ polymod
|= values=(list @)
|^ ^- @
=/ gen=(list @ux)
~[0x3b6a.57b2 0x2650.8e6d 0x1ea1.19fa 0x3d42.33dd 0x2a14.62b3]
=/ chk=@ 1
|- ?~ values chk
=/ top (rsh 0 25 chk)
=. chk
(mix i.values (lsh 0 5 (dis chk 0x1ff.ffff)))
$(values t.values, chk (update-chk chk top gen))
::
++ update-chk
|= [chk=@ top=@ gen=(list @ux)]
=/ is (gulf 0 4)
|- ?~ is chk
?: =(1 (dis 1 (rsh 0 i.is top)))
$(is t.is, chk (mix chk (snag i.is gen)))
$(is t.is)
--
::
++ expand-hrp
|= hrp=tape
^- (list @)
=/ front (turn hrp |=(p=@tD (rsh 0 5 p)))
=/ back (turn hrp |=(p=@tD (dis 31 p)))
(zing ~[front ~[0] back])
::
++ verify-checksum
|= [hrp=tape data-and-checksum=(list @)]
^- ?
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%+ |=([a=@ b=@] =(a b))
1
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%- polymod
(weld (expand-hrp hrp) data-and-checksum)
::
++ checksum
|= [hrp=tape data=(list @)]
^- (list @)
:: xor 1 with the polymod
=/ pmod=@
%+ mix 1
%- polymod
(zing ~[(expand-hrp hrp) data (reap 6 0)])
%+ turn (gulf 0 5)
|=(i=@ (dis 31 (rsh 0 (mul 5 (sub 5 i)) pmod)))
::
++ charset-to-value
|= c=@tD
^- (unit @)
(find ~[c] charset)
++ value-to-charset
|= value=@
^- (unit @tD)
?: (gth value 31) ~
`(snag value charset)
::
++ is-valid
|= [bech=tape last-1-pos=@] ^- ?
?& ?|(=((cass bech) bech) =((cuss bech) bech)) :: to upper or to lower is same as bech
(gte last-1-pos 1)
(lte (add last-1-pos 7) (lent bech))
(lte (lent bech) 90)
(levy bech |=(c=@tD (gte c 33)))
(levy bech |=(c=@tD (lte c 126)))
==
:: data should be 5bit words
::
++ encode-raw
|= [hrp=tape data=(list @)]
^- tape
=/ combined=(list @)
(weld data (checksum hrp data))
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(zing ~[hrp "1" (tape (murn combined value-to-charset))])
++ decode-raw
|= bech=tape
^- (unit raw-decoded)
=. bech (cass bech) :: to lowercase
=/ pos (flop (fand "1" bech))
?~ pos ~
=/ last-1=@ i.pos
?. (is-valid bech last-1) :: check bech32 validity (not segwit validity or checksum)
~
=/ hrp (scag last-1 bech)
=/ encoded-data-and-checksum=(list @)
(slag +(last-1) bech)
=/ data-and-checksum=(list @)
%+ murn encoded-data-and-checksum
charset-to-value
?. =((lent encoded-data-and-checksum) (lent data-and-checksum)) :: ensure all were in CHARSET
~
?. (verify-checksum hrp data-and-checksum)
~
=/ checksum-pos (sub (lent data-and-checksum) 6)
`[hrp (scag checksum-pos data-and-checksum) (slag checksum-pos data-and-checksum)]
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:: goes from a bech32 address to hex. Returns byts to preserve leading 0s
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::
++ to-hex
|= bech=tape
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^- byts
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=/ d=(unit raw-decoded) (decode-raw bech)
?~ d ~|("Invalid bech32 address" !!)
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=/ bs=(list @)
(from-digits:bits 5 (slag 1 data.u.d))
?. =(0 (mod (lent bs) 8))
~|("Invalid bech32 address: not 8bit" !!)
[(div (lent bs) 8) (to-atom:bits bs)]
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:: pubkey is the 33 byte ECC compressed public key
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::
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++ encode-pubkey
|= [=network pubkey=@ux]
^- (unit tape)
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?. =(33 (met 3 pubkey))
~|('pubkey must be a 33 byte ECC compressed public key' !!)
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=/ prefix (~(get by prefixes) network)
?~ prefix ~
:- ~
%+ encode-raw u.prefix
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(weld ~[0] (convert:bits 5 (zeros-brip:bits 8 (hash-160 pubkey))))
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--
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::
--