2014-02-25 12:20:24 +02:00
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package ethutil
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import (
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"fmt"
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"math/big"
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)
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2014-04-27 18:15:44 +03:00
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// The different number of units
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2014-02-25 12:20:24 +02:00
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var (
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2014-06-06 13:12:27 +03:00
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Douglas = BigPow(10, 42)
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Einstein = BigPow(10, 21)
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Ether = BigPow(10, 18)
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Finney = BigPow(10, 15)
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Szabo = BigPow(10, 12)
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Shannon = BigPow(10, 9)
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Babbage = BigPow(10, 6)
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Ada = BigPow(10, 3)
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Wei = big.NewInt(1)
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2014-02-25 12:20:24 +02:00
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)
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2014-04-27 18:15:44 +03:00
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//
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2014-06-11 11:28:18 +03:00
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// Currency to string
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2014-04-27 18:15:44 +03:00
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// Returns a string representing a human readable format
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2014-02-25 12:20:24 +02:00
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func CurrencyToString(num *big.Int) string {
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switch {
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2014-06-06 13:12:27 +03:00
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case num.Cmp(Douglas) >= 0:
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return fmt.Sprintf("%v Douglas", new(big.Int).Div(num, Douglas))
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case num.Cmp(Einstein) >= 0:
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return fmt.Sprintf("%v Einstein", new(big.Int).Div(num, Einstein))
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2014-02-25 12:20:24 +02:00
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case num.Cmp(Ether) >= 0:
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return fmt.Sprintf("%v Ether", new(big.Int).Div(num, Ether))
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case num.Cmp(Finney) >= 0:
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return fmt.Sprintf("%v Finney", new(big.Int).Div(num, Finney))
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case num.Cmp(Szabo) >= 0:
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return fmt.Sprintf("%v Szabo", new(big.Int).Div(num, Szabo))
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2014-05-20 15:53:34 +03:00
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case num.Cmp(Shannon) >= 0:
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return fmt.Sprintf("%v Shannon", new(big.Int).Div(num, Shannon))
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case num.Cmp(Babbage) >= 0:
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return fmt.Sprintf("%v Babbage", new(big.Int).Div(num, Babbage))
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case num.Cmp(Ada) >= 0:
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return fmt.Sprintf("%v Ada", new(big.Int).Div(num, Ada))
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2014-02-25 12:20:24 +02:00
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}
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return fmt.Sprintf("%v Wei", num)
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}
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2014-03-21 19:22:47 +02:00
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2014-04-27 18:15:44 +03:00
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// Common big integers often used
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2014-03-21 19:22:47 +02:00
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var (
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Big1 = big.NewInt(1)
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2014-06-13 17:06:27 +03:00
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Big2 = big.NewInt(2)
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2014-03-21 19:22:47 +02:00
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Big0 = big.NewInt(0)
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2014-04-27 17:50:44 +03:00
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Big32 = big.NewInt(32)
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2014-03-21 19:22:47 +02:00
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Big256 = big.NewInt(0xff)
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)
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2014-04-27 17:50:44 +03:00
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2014-04-27 18:15:44 +03:00
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// Creates an ethereum address given the bytes and the nonce
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2014-04-27 17:50:44 +03:00
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func CreateAddress(b []byte, nonce *big.Int) []byte {
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addrBytes := append(b, nonce.Bytes()...)
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return Sha3Bin(addrBytes)[12:]
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}
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