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Token Example (CityOfZion/neo-storm#12)
* feat: add token example * feat: code splitted package * feat: use updated apis Imported from CityOfZion/neo-storm (e2bab450d7355b559ae2d70a87f557e8a6dbfff6).
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.gitignore
vendored
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.gitignore
vendored
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@ -13,6 +13,7 @@
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# Added by CoZ developers
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vendor/
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bin/
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!examples/**/vendor
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# text editors
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# vscode
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70
examples/token/token.go
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70
examples/token/token.go
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package token_contract
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import (
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"token"
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"github.com/CityOfZion/neo-storm/interop/storage"
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"github.com/CityOfZion/neo-storm/interop/util"
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)
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const (
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decimals = 8
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multiplier = 100000000
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)
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var owner = util.FromAddress("AK2nJJpJr6o664CWJKi1QRXjqeic2zRp8y")
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// CreateToken initializes the Token Interface for the Smart Contract to operate with
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func CreateToken() token.Token {
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return token.Token{
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Name: "Awesome NEO Token",
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Symbol: "ANT",
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Decimals: decimals,
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Owner: owner,
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TotalSupply: 11000000 * multiplier,
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CirculationKey: "TokenCirculation",
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}
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}
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// Main function = contract entry
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func Main(operation string, args []interface{}) interface{} {
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token := CreateToken()
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if operation == "name" {
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return token.Name
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}
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if operation == "symbol" {
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return token.Symbol
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}
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if operation == "decimals" {
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return token.Decimals
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}
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// The following operations need ctx
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ctx := storage.GetContext()
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if operation == "totalSupply" {
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return token.GetSupply(ctx)
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}
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if operation == "balanceOf" {
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hodler := args[0].([]byte)
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return token.BalanceOf(ctx, hodler)
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}
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if operation == "transfer" && CheckArgs(args, 3) {
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from := args[0].([]byte)
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to := args[1].([]byte)
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amount := args[2].(int)
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return token.Transfer(ctx, from, to, amount)
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}
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return true
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}
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// CheckArgs checks args array against a length indicator
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func CheckArgs(args []interface{}, length int) bool {
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if len(args) == length {
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return true
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}
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return false
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}
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115
examples/token/vendor/token/token.go
vendored
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115
examples/token/vendor/token/token.go
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package token
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import (
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"github.com/CityOfZion/neo-storm/interop/engine"
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"github.com/CityOfZion/neo-storm/interop/runtime"
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"github.com/CityOfZion/neo-storm/interop/storage"
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)
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// Token holds all token info
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type Token struct {
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// Token name
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Name string
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// Ticker symbol
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Symbol string
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// Amount of decimals
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Decimals int
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// Token owner address
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Owner []byte
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// Total tokens * multiplier
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TotalSupply int
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// Storage key for circulation value
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CirculationKey string
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}
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// TODO: Transfer event
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// DoTransfer := action.RegisterAction("transfer", "from", "to", "amount")
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// GetSupply gets the token totalSupply value from VM storage
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func (t Token) GetSupply(ctx storage.Context) interface{} {
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return storage.Get(ctx, t.CirculationKey)
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}
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// BalanceOf gets the token balance of a specific address
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func (t Token) BalanceOf(ctx storage.Context, hodler []byte) interface{} {
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return storage.Get(ctx, hodler)
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}
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// Transfer token from one user to another
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func (t Token) Transfer(ctx storage.Context, from []byte, to []byte, amount int) bool {
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amountFrom := t.CanTransfer(ctx, from, to, amount)
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if amountFrom == -1 {
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return false
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}
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if amountFrom == 0 {
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storage.Delete(ctx, from)
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}
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if amountFrom > 0 {
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diff := amountFrom - amount
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storage.Put(ctx, from, diff)
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}
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amountTo := storage.Get(ctx, to).(int)
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totalAmountTo := amountTo + amount
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storage.Put(ctx, to, totalAmountTo)
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// DoTransfer(from, to, amount)
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return true
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}
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// CanTransfer returns the amount it can transfer
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func (t Token) CanTransfer(ctx storage.Context, from []byte, to []byte, amount int) int {
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if len(to) != 20 && !IsUsableAddress(from) {
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return -1
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}
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amountFrom := storage.Get(ctx, from).(int)
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if amountFrom < amount {
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return -1
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}
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// Tell Transfer the result is equal - special case since it uses Delete
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if amountFrom == amount {
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return 0
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}
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// return amountFrom value back to Transfer, reduces extra Get
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return amountFrom
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}
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// IsUsableAddress checks if the sender is either the correct NEO address or SC address
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func IsUsableAddress(addr []byte) bool {
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if len(addr) == 20 {
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if runtime.CheckWitness(addr) {
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return true
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}
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// Check if a smart contract is calling scripthash
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callingScriptHash := engine.GetCallingScriptHash()
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if EqualAddresses(callingScriptHash, addr) {
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return true
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}
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}
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return false
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}
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// EqualAddresses compares two addresses if they're equal
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// also returns false if one of the two - or both - aren't actual addresses
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func EqualAddresses(a []byte, b []byte) bool {
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aLen := len(a)
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bLen := len(b)
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if aLen != bLen || aLen != 20 || bLen != 20 {
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return false
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}
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for i := 0; i < aLen; i++ {
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if a[i] != b[i] {
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return false
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}
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}
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return true
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}
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