shrub/lib/btc-wallet-store.hoon

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::
::
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/- *btc-wallet-store
/+ bip32, btc
=, secp:crypto
=+ ecc=secp256k1
|%
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++ defaults
|%
++ max-gap 20
++ confs 6
--
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::
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++ hash-xpub
|= [=xpub:btc =chyg =idx]
^- @ux
=/ chygidx=@ (cat 3 ?:(=(%0 chyg) '0' '1') idx)
=/ dat=@ (cat 3 xpub chygidx)
%- ripemd-160:ripemd:crypto
[(met 3 dat) dat]
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::
++ from-xpub
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|= [=xpub:btc scan-to=(unit scon) max-gap=(unit @ud) confs=(unit @ud)]
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^- walt
:* (from-extended:bip32 (trip xpub))
(xpub-type:btc xpub)
*wach
[0 0]
%.n
(fall scan-to *scon)
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(fall max-gap max-gap:defaults)
(fall confs confs:defaults)
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==
:: wad: door for processing walts (wallets)
:: parameterized on a walt and it's chyg account
::
++ wad
|_ [w=walt =chyg]
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++ mk-address
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|= =idx
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^- address:btc
=/ pubkey=@ux
%- compress-point:ecc
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pub:(derive-public:(derive-public:wilt.w (@ chyg)) idx)
?: ?=(%bip84 bipt.w)
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(need (encode-pubkey:bech32:btc %main pubkey))
~|("legacy addresses not supported yet " !!)
:: generates and watches the next available address
::
++ gen-address
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^- (pair address:btc walt)
=/ addr (mk-address nixt-idx)
:- addr
(update-address addr [chyg nixt-idx *(set utxo:btc)])
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:: insert a new address; update "nixt" free address if this one was it
::
++ update-address
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|= [a=address:btc =addi]
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^- walt
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?> =(chyg chyg.addi)
?> =(a (mk-address idx.addi))
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=? nixt.w (is-nixt addi)
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new:bump-nixt
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w(wach (~(put by wach.w) a addi))
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::
++ is-nixt
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|= =addi ^- ?
?: ?=(%0 chyg.addi)
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=(idx.addi p.nixt.w)
=(idx.addi q.nixt.w)
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++ nixt-idx
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?:(?=(%0 chyg) p.nixt.w q.nixt.w)
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:: Returns: the prior idx in the account
:: nixt with account idx bumped
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:: Increments idx until an unwatched address is found
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:: Crashes if max-index is passed
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::
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++ bump-nixt
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|^ ^- [old=idx new=nixt]
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:- nixt-idx
=/ new-idx=idx +(nixt-idx)
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|- ?> (lte new-idx max-index)
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?. (~(has by wach.w) (mk-address new-idx))
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(set-nixt new-idx)
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$(new-idx +(new-idx))
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::
++ set-nixt
|= idx=@ ^- nixt
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?:(?=(%0 chyg) [idx q.nixt.w] [p.nixt.w idx])
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--
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--
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:: sut: door to select utxos
:: targ: target output amount, not including fees
:: feyb: fee in sats per byte
:: outs: number of outputs
::
++ sut
|_ [w=walt eny=@uvJ targ=sats feyb=sats outs=@]
++ meta-weight 10
++ output-weight 31
++ base-weight
^- vbytes
%+ add meta-weight
(mul outs output-weight)
++ input-weight
^- vbytes
?. ?=(%bip84 bipt.w)
~|("Only bech32 wallets supported" !!)
102
::
++ total-vbytes
|= selected=(list input)
^- vbytes
%+ add base-weight
(mul input-weight (lent selected))
:: value of an input after fee
:: 0 if net is <= 0
::
++ net-value
|= val=sats ^- sats
=/ cost (mul input-weight feyb)
?: (lte val cost) 0
(sub val cost)
:: Uses naive random selection. Should switch to branch-and-bound later
::
++ select-utxos
^- (unit (list input))
=/ is=(list input)
%- zing
%+ turn ~(val by wach.w)
|= =addi
%+ turn ~(tap in utxos.addi)
|=(=utxo:btc [utxo chyg.addi idx.addi])
(single-random-draw is)
:: single-random-draw
:: randomly choose utxos until target is hit
:: only use an input if its net-value > 0
::
++ single-random-draw
|= is=(list input)
^- (unit (list input))
=/ rng ~(. og eny)
=/ target (add targ (mul feyb base-weight)) :: add base fees to target
=| [select=(list input) total=sats:btc]
|- ?~ is ~
=^ n rng (rads:rng (lent is))
=/ i=input (snag n ((list input) is))
=/ net-val (net-value value.utxo.i)
=? select (gth net-val 0) [i select] :: select if net-value > 0
=/ new-total (add total net-val)
?: (gte new-total target) `select
%= $
is (oust [n 1] ((list input) is))
total new-total
==
::
--
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--